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Chris Lattner30fdc8d2010-06-08 16:52:24 +00001//===-- ClangASTContext.cpp -------------------------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Eli Friedman932197d2010-06-13 19:06:42 +000010#include "lldb/Symbol/ClangASTContext.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000011
12// C Includes
13// C++ Includes
Greg Claytonff48e4b2015-02-03 02:05:44 +000014#include <mutex> // std::once
Chris Lattner30fdc8d2010-06-08 16:52:24 +000015#include <string>
16
17// Other libraries and framework includes
Greg Clayton6beaaa62011-01-17 03:46:26 +000018
19// Clang headers like to use NDEBUG inside of them to enable/disable debug
Bruce Mitchenerd93c4a32014-07-01 21:22:11 +000020// related features using "#ifndef NDEBUG" preprocessor blocks to do one thing
Greg Clayton6beaaa62011-01-17 03:46:26 +000021// or another. This is bad because it means that if clang was built in release
22// mode, it assumes that you are building in release mode which is not always
23// the case. You can end up with functions that are defined as empty in header
24// files when NDEBUG is not defined, and this can cause link errors with the
25// clang .a files that you have since you might be missing functions in the .a
26// file. So we have to define NDEBUG when including clang headers to avoid any
27// mismatches. This is covered by rdar://problem/8691220
28
Sean Callanan3b1d4f62011-10-26 17:46:51 +000029#if !defined(NDEBUG) && !defined(LLVM_NDEBUG_OFF)
Greg Clayton6beaaa62011-01-17 03:46:26 +000030#define LLDB_DEFINED_NDEBUG_FOR_CLANG
Sean Callanan246549c2010-07-08 18:16:16 +000031#define NDEBUG
Greg Clayton6beaaa62011-01-17 03:46:26 +000032// Need to include assert.h so it is as clang would expect it to be (disabled)
33#include <assert.h>
34#endif
35
Chris Lattner30fdc8d2010-06-08 16:52:24 +000036#include "clang/AST/ASTContext.h"
37#include "clang/AST/ASTImporter.h"
Greg Claytonf74c4032012-12-03 18:29:55 +000038#include "clang/AST/Attr.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000039#include "clang/AST/CXXInheritance.h"
Greg Clayton8cf05932010-07-22 18:30:50 +000040#include "clang/AST/DeclObjC.h"
Greg Claytonf0705c82011-10-22 03:33:13 +000041#include "clang/AST/DeclTemplate.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000042#include "clang/AST/RecordLayout.h"
43#include "clang/AST/Type.h"
Greg Claytond8d4a572015-08-11 21:38:15 +000044#include "clang/AST/VTableBuilder.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000045#include "clang/Basic/Builtins.h"
Sean Callanan7e2863b2012-02-06 21:28:03 +000046#include "clang/Basic/Diagnostic.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000047#include "clang/Basic/FileManager.h"
Sean Callanan79439e82010-11-18 02:56:27 +000048#include "clang/Basic/FileSystemOptions.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000049#include "clang/Basic/SourceManager.h"
50#include "clang/Basic/TargetInfo.h"
51#include "clang/Basic/TargetOptions.h"
52#include "clang/Frontend/FrontendOptions.h"
53#include "clang/Frontend/LangStandard.h"
Greg Clayton6beaaa62011-01-17 03:46:26 +000054
55#ifdef LLDB_DEFINED_NDEBUG_FOR_CLANG
Sean Callanan246549c2010-07-08 18:16:16 +000056#undef NDEBUG
Greg Clayton6beaaa62011-01-17 03:46:26 +000057#undef LLDB_DEFINED_NDEBUG_FOR_CLANG
58// Need to re-include assert.h so it is as _we_ would expect it to be (enabled)
59#include <assert.h>
60#endif
Chris Lattner30fdc8d2010-06-08 16:52:24 +000061
Greg Claytond8d4a572015-08-11 21:38:15 +000062#include "llvm/Support/Signals.h"
63
Greg Clayton514487e2011-02-15 21:59:32 +000064#include "lldb/Core/ArchSpec.h"
Greg Clayton73b472d2010-10-27 03:32:59 +000065#include "lldb/Core/Flags.h"
Sean Callananfb8b7092010-10-28 18:19:36 +000066#include "lldb/Core/Log.h"
Greg Claytonf0705c82011-10-22 03:33:13 +000067#include "lldb/Core/RegularExpression.h"
Greg Claytond8d4a572015-08-11 21:38:15 +000068#include "lldb/Core/StreamFile.h"
Enrico Granata2267ad42014-09-16 17:28:40 +000069#include "lldb/Core/ThreadSafeDenseMap.h"
Greg Clayton57ee3062013-07-11 22:46:58 +000070#include "lldb/Core/UniqueCStringMap.h"
Greg Claytonf0705c82011-10-22 03:33:13 +000071#include "lldb/Expression/ASTDumper.h"
Jim Ingham151c0322015-09-15 21:13:50 +000072#include "lldb/Expression/ASTResultSynthesizer.h"
73#include "lldb/Expression/ClangExpressionDeclMap.h"
74#include "lldb/Expression/ClangUserExpression.h"
75#include "lldb/Expression/ClangFunctionCaller.h"
76#include "lldb/Expression/ClangUtilityFunction.h"
Greg Claytond8d4a572015-08-11 21:38:15 +000077#include "lldb/Symbol/ClangASTContext.h"
Greg Clayton6dc8d582015-08-18 22:32:36 +000078#include "lldb/Symbol/ClangExternalASTSourceCallbacks.h"
Sean Callanan3b107b12011-12-03 03:15:28 +000079#include "lldb/Symbol/ClangExternalASTSourceCommon.h"
Greg Clayton261ac3f2015-08-28 01:01:03 +000080#include "lldb/Symbol/SymbolFile.h"
Sean Callanan5e9e1992011-10-26 01:06:27 +000081#include "lldb/Symbol/VerifyDecl.h"
Jim Inghamd555bac2011-06-24 22:03:24 +000082#include "lldb/Target/ExecutionContext.h"
Jim Inghamd555bac2011-06-24 22:03:24 +000083#include "lldb/Target/ObjCLanguageRuntime.h"
Jim Ingham151c0322015-09-15 21:13:50 +000084#include "lldb/Target/Process.h"
85#include "lldb/Target/Target.h"
Jim Inghamd555bac2011-06-24 22:03:24 +000086
Greg Clayton261ac3f2015-08-28 01:01:03 +000087#include "Plugins/SymbolFile/DWARF/DWARFASTParserClang.h"
88
Eli Friedman932197d2010-06-13 19:06:42 +000089#include <stdio.h>
90
Greg Clayton1341baf2013-07-11 23:36:31 +000091#include <mutex>
92
Greg Claytonc86103d2010-08-05 01:57:25 +000093using namespace lldb;
Chris Lattner30fdc8d2010-06-08 16:52:24 +000094using namespace lldb_private;
95using namespace llvm;
96using namespace clang;
97
Enrico Granata2267ad42014-09-16 17:28:40 +000098typedef lldb_private::ThreadSafeDenseMap<clang::ASTContext *, ClangASTContext*> ClangASTMap;
Enrico Granata5d84a692014-08-19 21:46:37 +000099
100static ClangASTMap &
101GetASTMap()
102{
Enrico Granata2267ad42014-09-16 17:28:40 +0000103 static ClangASTMap *g_map_ptr = nullptr;
104 static std::once_flag g_once_flag;
105 std::call_once(g_once_flag, []() {
106 g_map_ptr = new ClangASTMap(); // leaked on purpose to avoid spins
107 });
108 return *g_map_ptr;
Enrico Granata5d84a692014-08-19 21:46:37 +0000109}
110
111
Greg Clayton57ee3062013-07-11 22:46:58 +0000112clang::AccessSpecifier
113ClangASTContext::ConvertAccessTypeToAccessSpecifier (AccessType access)
Greg Clayton8cf05932010-07-22 18:30:50 +0000114{
115 switch (access)
116 {
Greg Claytonc86103d2010-08-05 01:57:25 +0000117 default: break;
118 case eAccessNone: return AS_none;
119 case eAccessPublic: return AS_public;
120 case eAccessPrivate: return AS_private;
121 case eAccessProtected: return AS_protected;
Greg Clayton8cf05932010-07-22 18:30:50 +0000122 }
123 return AS_none;
124}
125
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000126static void
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +0000127ParseLangArgs (LangOptions &Opts, InputKind IK, const char* triple)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000128{
129 // FIXME: Cleanup per-file based stuff.
130
Bruce Mitchenerd93c4a32014-07-01 21:22:11 +0000131 // Set some properties which depend solely on the input kind; it would be nice
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000132 // to move these to the language standard, and have the driver resolve the
133 // input kind + language standard.
Greg Clayton94e5d782010-06-13 17:34:29 +0000134 if (IK == IK_Asm) {
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000135 Opts.AsmPreprocessor = 1;
Greg Clayton94e5d782010-06-13 17:34:29 +0000136 } else if (IK == IK_ObjC ||
137 IK == IK_ObjCXX ||
138 IK == IK_PreprocessedObjC ||
139 IK == IK_PreprocessedObjCXX) {
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000140 Opts.ObjC1 = Opts.ObjC2 = 1;
141 }
142
143 LangStandard::Kind LangStd = LangStandard::lang_unspecified;
144
145 if (LangStd == LangStandard::lang_unspecified) {
146 // Based on the base language, pick one.
147 switch (IK) {
Greg Clayton94e5d782010-06-13 17:34:29 +0000148 case IK_None:
149 case IK_AST:
Sean Callananfb0b7582011-03-15 00:17:19 +0000150 case IK_LLVM_IR:
Greg Clayton6beaaa62011-01-17 03:46:26 +0000151 assert (!"Invalid input kind!");
Greg Clayton94e5d782010-06-13 17:34:29 +0000152 case IK_OpenCL:
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000153 LangStd = LangStandard::lang_opencl;
154 break;
Sean Callananfb0b7582011-03-15 00:17:19 +0000155 case IK_CUDA:
Artem Belevich52210ae2015-03-19 18:12:26 +0000156 case IK_PreprocessedCuda:
Sean Callananfb0b7582011-03-15 00:17:19 +0000157 LangStd = LangStandard::lang_cuda;
158 break;
Greg Clayton94e5d782010-06-13 17:34:29 +0000159 case IK_Asm:
160 case IK_C:
161 case IK_PreprocessedC:
162 case IK_ObjC:
163 case IK_PreprocessedObjC:
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000164 LangStd = LangStandard::lang_gnu99;
165 break;
Greg Clayton94e5d782010-06-13 17:34:29 +0000166 case IK_CXX:
167 case IK_PreprocessedCXX:
168 case IK_ObjCXX:
169 case IK_PreprocessedObjCXX:
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000170 LangStd = LangStandard::lang_gnucxx98;
171 break;
172 }
173 }
174
175 const LangStandard &Std = LangStandard::getLangStandardForKind(LangStd);
Filipe Cabecinhase818ca22012-11-12 21:26:32 +0000176 Opts.LineComment = Std.hasLineComments();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000177 Opts.C99 = Std.isC99();
178 Opts.CPlusPlus = Std.isCPlusPlus();
Chandler Carruth38336a12013-01-02 12:55:00 +0000179 Opts.CPlusPlus11 = Std.isCPlusPlus11();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000180 Opts.Digraphs = Std.hasDigraphs();
181 Opts.GNUMode = Std.isGNUMode();
182 Opts.GNUInline = !Std.isC99();
183 Opts.HexFloats = Std.hasHexFloats();
184 Opts.ImplicitInt = Std.hasImplicitInt();
Enrico Granatac921e342013-01-10 02:37:22 +0000185
186 Opts.WChar = true;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000187
188 // OpenCL has some additional defaults.
189 if (LangStd == LangStandard::lang_opencl) {
190 Opts.OpenCL = 1;
191 Opts.AltiVec = 1;
192 Opts.CXXOperatorNames = 1;
193 Opts.LaxVectorConversions = 1;
194 }
195
196 // OpenCL and C++ both have bool, true, false keywords.
197 Opts.Bool = Opts.OpenCL || Opts.CPlusPlus;
198
199// if (Opts.CPlusPlus)
200// Opts.CXXOperatorNames = !Args.hasArg(OPT_fno_operator_names);
201//
202// if (Args.hasArg(OPT_fobjc_gc_only))
203// Opts.setGCMode(LangOptions::GCOnly);
204// else if (Args.hasArg(OPT_fobjc_gc))
205// Opts.setGCMode(LangOptions::HybridGC);
206//
207// if (Args.hasArg(OPT_print_ivar_layout))
208// Opts.ObjCGCBitmapPrint = 1;
209//
210// if (Args.hasArg(OPT_faltivec))
211// Opts.AltiVec = 1;
212//
213// if (Args.hasArg(OPT_pthread))
214// Opts.POSIXThreads = 1;
215//
216// llvm::StringRef Vis = getLastArgValue(Args, OPT_fvisibility,
217// "default");
218// if (Vis == "default")
Sean Callanan37f76e52013-02-19 19:16:37 +0000219 Opts.setValueVisibilityMode(DefaultVisibility);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000220// else if (Vis == "hidden")
221// Opts.setVisibilityMode(LangOptions::Hidden);
222// else if (Vis == "protected")
223// Opts.setVisibilityMode(LangOptions::Protected);
224// else
225// Diags.Report(diag::err_drv_invalid_value)
226// << Args.getLastArg(OPT_fvisibility)->getAsString(Args) << Vis;
227
228// Opts.OverflowChecking = Args.hasArg(OPT_ftrapv);
229
230 // Mimicing gcc's behavior, trigraphs are only enabled if -trigraphs
231 // is specified, or -std is set to a conforming mode.
232 Opts.Trigraphs = !Opts.GNUMode;
233// if (Args.hasArg(OPT_trigraphs))
234// Opts.Trigraphs = 1;
235//
236// Opts.DollarIdents = Args.hasFlag(OPT_fdollars_in_identifiers,
237// OPT_fno_dollars_in_identifiers,
238// !Opts.AsmPreprocessor);
239// Opts.PascalStrings = Args.hasArg(OPT_fpascal_strings);
240// Opts.Microsoft = Args.hasArg(OPT_fms_extensions);
241// Opts.WritableStrings = Args.hasArg(OPT_fwritable_strings);
242// if (Args.hasArg(OPT_fno_lax_vector_conversions))
243// Opts.LaxVectorConversions = 0;
244// Opts.Exceptions = Args.hasArg(OPT_fexceptions);
245// Opts.RTTI = !Args.hasArg(OPT_fno_rtti);
246// Opts.Blocks = Args.hasArg(OPT_fblocks);
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +0000247 Opts.CharIsSigned = ArchSpec(triple).CharIsSignedByDefault();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000248// Opts.ShortWChar = Args.hasArg(OPT_fshort_wchar);
249// Opts.Freestanding = Args.hasArg(OPT_ffreestanding);
250// Opts.NoBuiltin = Args.hasArg(OPT_fno_builtin) || Opts.Freestanding;
251// Opts.AssumeSaneOperatorNew = !Args.hasArg(OPT_fno_assume_sane_operator_new);
252// Opts.HeinousExtensions = Args.hasArg(OPT_fheinous_gnu_extensions);
253// Opts.AccessControl = Args.hasArg(OPT_faccess_control);
254// Opts.ElideConstructors = !Args.hasArg(OPT_fno_elide_constructors);
255// Opts.MathErrno = !Args.hasArg(OPT_fno_math_errno);
256// Opts.InstantiationDepth = getLastArgIntValue(Args, OPT_ftemplate_depth, 99,
257// Diags);
258// Opts.NeXTRuntime = !Args.hasArg(OPT_fgnu_runtime);
259// Opts.ObjCConstantStringClass = getLastArgValue(Args,
260// OPT_fconstant_string_class);
261// Opts.ObjCNonFragileABI = Args.hasArg(OPT_fobjc_nonfragile_abi);
262// Opts.CatchUndefined = Args.hasArg(OPT_fcatch_undefined_behavior);
263// Opts.EmitAllDecls = Args.hasArg(OPT_femit_all_decls);
264// Opts.PICLevel = getLastArgIntValue(Args, OPT_pic_level, 0, Diags);
265// Opts.Static = Args.hasArg(OPT_static_define);
266 Opts.OptimizeSize = 0;
267
268 // FIXME: Eliminate this dependency.
269// unsigned Opt =
270// Args.hasArg(OPT_Os) ? 2 : getLastArgIntValue(Args, OPT_O, 0, Diags);
271// Opts.Optimize = Opt != 0;
272 unsigned Opt = 0;
273
274 // This is the __NO_INLINE__ define, which just depends on things like the
275 // optimization level and -fno-inline, not actually whether the backend has
276 // inlining enabled.
277 //
278 // FIXME: This is affected by other options (-fno-inline).
Sean Callanan3d654b32012-09-24 22:25:51 +0000279 Opts.NoInlineDefine = !Opt;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000280
281// unsigned SSP = getLastArgIntValue(Args, OPT_stack_protector, 0, Diags);
282// switch (SSP) {
283// default:
284// Diags.Report(diag::err_drv_invalid_value)
285// << Args.getLastArg(OPT_stack_protector)->getAsString(Args) << SSP;
286// break;
287// case 0: Opts.setStackProtectorMode(LangOptions::SSPOff); break;
288// case 1: Opts.setStackProtectorMode(LangOptions::SSPOn); break;
289// case 2: Opts.setStackProtectorMode(LangOptions::SSPReq); break;
290// }
291}
292
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000293
Greg Claytonf73034f2015-09-08 18:15:05 +0000294ClangASTContext::ClangASTContext (const char *target_triple) :
295 TypeSystem (TypeSystem::eKindClang),
Greg Clayton6dc8d582015-08-18 22:32:36 +0000296 m_target_triple (),
297 m_ast_ap (),
298 m_language_options_ap (),
299 m_source_manager_ap (),
300 m_diagnostics_engine_ap (),
301 m_target_options_rp (),
302 m_target_info_ap (),
303 m_identifier_table_ap (),
304 m_selector_table_ap (),
305 m_builtins_ap (),
Ed Masted4612ad2014-04-20 13:17:36 +0000306 m_callback_tag_decl (nullptr),
307 m_callback_objc_decl (nullptr),
308 m_callback_baton (nullptr),
Greg Claytond8d4a572015-08-11 21:38:15 +0000309 m_pointer_byte_size (0),
Greg Clayton261ac3f2015-08-28 01:01:03 +0000310 m_ast_owned (false)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000311{
312 if (target_triple && target_triple[0])
Greg Clayton880cbb02011-07-30 01:26:02 +0000313 SetTargetTriple (target_triple);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000314}
315
316//----------------------------------------------------------------------
317// Destructor
318//----------------------------------------------------------------------
319ClangASTContext::~ClangASTContext()
320{
Enrico Granata5d84a692014-08-19 21:46:37 +0000321 if (m_ast_ap.get())
322 {
Enrico Granata2267ad42014-09-16 17:28:40 +0000323 GetASTMap().Erase(m_ast_ap.get());
Greg Claytond8d4a572015-08-11 21:38:15 +0000324 if (!m_ast_owned)
325 m_ast_ap.release();
Enrico Granata5d84a692014-08-19 21:46:37 +0000326 }
327
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000328 m_builtins_ap.reset();
329 m_selector_table_ap.reset();
330 m_identifier_table_ap.reset();
331 m_target_info_ap.reset();
Sean Callananc5069ad2012-10-17 22:11:14 +0000332 m_target_options_rp.reset();
Sean Callanan880e6802011-10-07 23:18:13 +0000333 m_diagnostics_engine_ap.reset();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000334 m_source_manager_ap.reset();
335 m_language_options_ap.reset();
Greg Clayton6beaaa62011-01-17 03:46:26 +0000336 m_ast_ap.reset();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000337}
338
339
340void
341ClangASTContext::Clear()
342{
Greg Clayton6beaaa62011-01-17 03:46:26 +0000343 m_ast_ap.reset();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000344 m_language_options_ap.reset();
345 m_source_manager_ap.reset();
Sean Callanan880e6802011-10-07 23:18:13 +0000346 m_diagnostics_engine_ap.reset();
Sean Callananc5069ad2012-10-17 22:11:14 +0000347 m_target_options_rp.reset();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000348 m_target_info_ap.reset();
349 m_identifier_table_ap.reset();
350 m_selector_table_ap.reset();
351 m_builtins_ap.reset();
Greg Clayton57ee3062013-07-11 22:46:58 +0000352 m_pointer_byte_size = 0;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000353}
354
355const char *
356ClangASTContext::GetTargetTriple ()
357{
358 return m_target_triple.c_str();
359}
360
361void
362ClangASTContext::SetTargetTriple (const char *target_triple)
363{
364 Clear();
365 m_target_triple.assign(target_triple);
366}
367
Greg Clayton514487e2011-02-15 21:59:32 +0000368void
369ClangASTContext::SetArchitecture (const ArchSpec &arch)
370{
Greg Clayton880cbb02011-07-30 01:26:02 +0000371 SetTargetTriple(arch.GetTriple().str().c_str());
Greg Clayton514487e2011-02-15 21:59:32 +0000372}
373
Greg Clayton6beaaa62011-01-17 03:46:26 +0000374bool
375ClangASTContext::HasExternalSource ()
376{
377 ASTContext *ast = getASTContext();
378 if (ast)
Ed Masted4612ad2014-04-20 13:17:36 +0000379 return ast->getExternalSource () != nullptr;
Greg Clayton6beaaa62011-01-17 03:46:26 +0000380 return false;
381}
382
383void
Todd Fiala955fe6f2014-02-27 17:18:23 +0000384ClangASTContext::SetExternalSource (llvm::IntrusiveRefCntPtr<ExternalASTSource> &ast_source_ap)
Greg Clayton6beaaa62011-01-17 03:46:26 +0000385{
386 ASTContext *ast = getASTContext();
387 if (ast)
388 {
389 ast->setExternalSource (ast_source_ap);
390 ast->getTranslationUnitDecl()->setHasExternalLexicalStorage(true);
391 //ast->getTranslationUnitDecl()->setHasExternalVisibleStorage(true);
392 }
393}
394
395void
396ClangASTContext::RemoveExternalSource ()
397{
398 ASTContext *ast = getASTContext();
399
400 if (ast)
401 {
Todd Fiala955fe6f2014-02-27 17:18:23 +0000402 llvm::IntrusiveRefCntPtr<ExternalASTSource> empty_ast_source_ap;
Greg Clayton6beaaa62011-01-17 03:46:26 +0000403 ast->setExternalSource (empty_ast_source_ap);
404 ast->getTranslationUnitDecl()->setHasExternalLexicalStorage(false);
405 //ast->getTranslationUnitDecl()->setHasExternalVisibleStorage(false);
406 }
407}
408
Greg Claytond8d4a572015-08-11 21:38:15 +0000409void
410ClangASTContext::setASTContext(clang::ASTContext *ast_ctx)
411{
412 if (!m_ast_owned) {
413 m_ast_ap.release();
414 }
415 m_ast_owned = false;
416 m_ast_ap.reset(ast_ctx);
417 GetASTMap().Insert(ast_ctx, this);
418}
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000419
420ASTContext *
421ClangASTContext::getASTContext()
422{
Ed Masted4612ad2014-04-20 13:17:36 +0000423 if (m_ast_ap.get() == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000424 {
Greg Claytond8d4a572015-08-11 21:38:15 +0000425 m_ast_owned = true;
Greg Clayton6beaaa62011-01-17 03:46:26 +0000426 m_ast_ap.reset(new ASTContext (*getLanguageOptions(),
427 *getSourceManager(),
Greg Clayton6beaaa62011-01-17 03:46:26 +0000428 *getIdentifierTable(),
429 *getSelectorTable(),
Alp Tokercf55e882014-05-03 15:05:45 +0000430 *getBuiltinContext()));
Sean Callanan6d61b632015-04-09 17:42:48 +0000431
432 m_ast_ap->getDiagnostics().setClient(getDiagnosticConsumer(), false);
Greg Clayton28eb7bf2015-05-07 00:07:44 +0000433
434 // This can be NULL if we don't know anything about the architecture or if the
435 // target for an architecture isn't enabled in the llvm/clang that we built
436 TargetInfo *target_info = getTargetInfo();
437 if (target_info)
438 m_ast_ap->InitBuiltinTypes(*target_info);
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000439
Greg Clayton6beaaa62011-01-17 03:46:26 +0000440 if ((m_callback_tag_decl || m_callback_objc_decl) && m_callback_baton)
441 {
442 m_ast_ap->getTranslationUnitDecl()->setHasExternalLexicalStorage();
443 //m_ast_ap->getTranslationUnitDecl()->setHasExternalVisibleStorage();
444 }
445
Enrico Granata2267ad42014-09-16 17:28:40 +0000446 GetASTMap().Insert(m_ast_ap.get(), this);
Greg Clayton6dc8d582015-08-18 22:32:36 +0000447
448 llvm::IntrusiveRefCntPtr<clang::ExternalASTSource> ast_source_ap (new ClangExternalASTSourceCallbacks (ClangASTContext::CompleteTagDecl,
449 ClangASTContext::CompleteObjCInterfaceDecl,
450 nullptr,
451 ClangASTContext::LayoutRecordType,
452 this));
453 SetExternalSource (ast_source_ap);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000454 }
Greg Clayton6beaaa62011-01-17 03:46:26 +0000455 return m_ast_ap.get();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000456}
457
Enrico Granata5d84a692014-08-19 21:46:37 +0000458ClangASTContext*
459ClangASTContext::GetASTContext (clang::ASTContext* ast)
460{
Enrico Granata2267ad42014-09-16 17:28:40 +0000461 ClangASTContext *clang_ast = GetASTMap().Lookup(ast);
Enrico Granata5d84a692014-08-19 21:46:37 +0000462 return clang_ast;
463}
464
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000465Builtin::Context *
466ClangASTContext::getBuiltinContext()
467{
Ed Masted4612ad2014-04-20 13:17:36 +0000468 if (m_builtins_ap.get() == nullptr)
Sean Callanan880e6802011-10-07 23:18:13 +0000469 m_builtins_ap.reset (new Builtin::Context());
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000470 return m_builtins_ap.get();
471}
472
473IdentifierTable *
474ClangASTContext::getIdentifierTable()
475{
Ed Masted4612ad2014-04-20 13:17:36 +0000476 if (m_identifier_table_ap.get() == nullptr)
477 m_identifier_table_ap.reset(new IdentifierTable (*ClangASTContext::getLanguageOptions(), nullptr));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000478 return m_identifier_table_ap.get();
479}
480
481LangOptions *
482ClangASTContext::getLanguageOptions()
483{
Ed Masted4612ad2014-04-20 13:17:36 +0000484 if (m_language_options_ap.get() == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000485 {
486 m_language_options_ap.reset(new LangOptions());
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +0000487 ParseLangArgs(*m_language_options_ap, IK_ObjCXX, GetTargetTriple());
Greg Clayton94e5d782010-06-13 17:34:29 +0000488// InitializeLangOptions(*m_language_options_ap, IK_ObjCXX);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000489 }
490 return m_language_options_ap.get();
491}
492
493SelectorTable *
494ClangASTContext::getSelectorTable()
495{
Ed Masted4612ad2014-04-20 13:17:36 +0000496 if (m_selector_table_ap.get() == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000497 m_selector_table_ap.reset (new SelectorTable());
498 return m_selector_table_ap.get();
499}
500
Sean Callanan79439e82010-11-18 02:56:27 +0000501clang::FileManager *
502ClangASTContext::getFileManager()
503{
Ed Masted4612ad2014-04-20 13:17:36 +0000504 if (m_file_manager_ap.get() == nullptr)
Greg Clayton38a61402010-12-02 23:20:03 +0000505 {
506 clang::FileSystemOptions file_system_options;
507 m_file_manager_ap.reset(new clang::FileManager(file_system_options));
508 }
Sean Callanan79439e82010-11-18 02:56:27 +0000509 return m_file_manager_ap.get();
510}
511
Greg Claytone1a916a2010-07-21 22:12:05 +0000512clang::SourceManager *
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000513ClangASTContext::getSourceManager()
514{
Ed Masted4612ad2014-04-20 13:17:36 +0000515 if (m_source_manager_ap.get() == nullptr)
Sean Callanan880e6802011-10-07 23:18:13 +0000516 m_source_manager_ap.reset(new clang::SourceManager(*getDiagnosticsEngine(), *getFileManager()));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000517 return m_source_manager_ap.get();
518}
519
Sean Callanan880e6802011-10-07 23:18:13 +0000520clang::DiagnosticsEngine *
521ClangASTContext::getDiagnosticsEngine()
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000522{
Ed Masted4612ad2014-04-20 13:17:36 +0000523 if (m_diagnostics_engine_ap.get() == nullptr)
Greg Claytona651b532010-11-19 21:46:54 +0000524 {
525 llvm::IntrusiveRefCntPtr<DiagnosticIDs> diag_id_sp(new DiagnosticIDs());
Sean Callananec8f1ef2012-10-25 01:00:25 +0000526 m_diagnostics_engine_ap.reset(new DiagnosticsEngine(diag_id_sp, new DiagnosticOptions()));
Greg Claytona651b532010-11-19 21:46:54 +0000527 }
Sean Callanan880e6802011-10-07 23:18:13 +0000528 return m_diagnostics_engine_ap.get();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000529}
530
Sean Callanan880e6802011-10-07 23:18:13 +0000531class NullDiagnosticConsumer : public DiagnosticConsumer
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000532{
533public:
Sean Callanan880e6802011-10-07 23:18:13 +0000534 NullDiagnosticConsumer ()
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000535 {
536 m_log = lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_EXPRESSIONS);
537 }
538
Sean Callanan880e6802011-10-07 23:18:13 +0000539 void HandleDiagnostic (DiagnosticsEngine::Level DiagLevel, const Diagnostic &info)
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000540 {
541 if (m_log)
542 {
Sean Callanan5b26f272012-02-04 08:49:35 +0000543 llvm::SmallVector<char, 32> diag_str(10);
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000544 info.FormatDiagnostic(diag_str);
545 diag_str.push_back('\0');
546 m_log->Printf("Compiler diagnostic: %s\n", diag_str.data());
547 }
548 }
Sean Callanan880e6802011-10-07 23:18:13 +0000549
550 DiagnosticConsumer *clone (DiagnosticsEngine &Diags) const
551 {
552 return new NullDiagnosticConsumer ();
553 }
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000554private:
Greg Clayton5160ce52013-03-27 23:08:40 +0000555 Log * m_log;
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000556};
557
Sean Callanan880e6802011-10-07 23:18:13 +0000558DiagnosticConsumer *
559ClangASTContext::getDiagnosticConsumer()
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000560{
Ed Masted4612ad2014-04-20 13:17:36 +0000561 if (m_diagnostic_consumer_ap.get() == nullptr)
Sean Callanan880e6802011-10-07 23:18:13 +0000562 m_diagnostic_consumer_ap.reset(new NullDiagnosticConsumer);
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000563
Sean Callanan880e6802011-10-07 23:18:13 +0000564 return m_diagnostic_consumer_ap.get();
Sean Callanan7fddd4c2010-12-11 00:08:56 +0000565}
566
Jason Molenda45938b92014-07-08 23:46:39 +0000567std::shared_ptr<TargetOptions> &
568ClangASTContext::getTargetOptions() {
Alp Tokeredc902f2014-07-05 03:06:05 +0000569 if (m_target_options_rp.get() == nullptr && !m_target_triple.empty())
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000570 {
Alp Toker5f838642014-07-06 05:36:57 +0000571 m_target_options_rp = std::make_shared<TargetOptions>();
Alp Tokeredc902f2014-07-05 03:06:05 +0000572 if (m_target_options_rp.get() != nullptr)
Sean Callananc5069ad2012-10-17 22:11:14 +0000573 m_target_options_rp->Triple = m_target_triple;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000574 }
Alp Toker5f838642014-07-06 05:36:57 +0000575 return m_target_options_rp;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000576}
577
578
579TargetInfo *
580ClangASTContext::getTargetInfo()
581{
Greg Clayton70512312012-05-08 01:45:38 +0000582 // target_triple should be something like "x86_64-apple-macosx"
Ed Masted4612ad2014-04-20 13:17:36 +0000583 if (m_target_info_ap.get() == nullptr && !m_target_triple.empty())
Greg Clayton38d880a2012-11-16 21:35:22 +0000584 m_target_info_ap.reset (TargetInfo::CreateTargetInfo(*getDiagnosticsEngine(), getTargetOptions()));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000585 return m_target_info_ap.get();
586}
587
588#pragma mark Basic Types
589
590static inline bool
Greg Clayton6beaaa62011-01-17 03:46:26 +0000591QualTypeMatchesBitSize(const uint64_t bit_size, ASTContext *ast, QualType qual_type)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000592{
Greg Clayton6beaaa62011-01-17 03:46:26 +0000593 uint64_t qual_type_bit_size = ast->getTypeSize(qual_type);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000594 if (qual_type_bit_size == bit_size)
595 return true;
596 return false;
597}
Greg Claytona1e5dc82015-08-11 22:53:00 +0000598CompilerType
Greg Claytonc86103d2010-08-05 01:57:25 +0000599ClangASTContext::GetBuiltinTypeForEncodingAndBitSize (Encoding encoding, uint32_t bit_size)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000600{
Greg Clayton57ee3062013-07-11 22:46:58 +0000601 return ClangASTContext::GetBuiltinTypeForEncodingAndBitSize (getASTContext(), encoding, bit_size);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000602}
603
Greg Claytona1e5dc82015-08-11 22:53:00 +0000604CompilerType
Greg Clayton6beaaa62011-01-17 03:46:26 +0000605ClangASTContext::GetBuiltinTypeForEncodingAndBitSize (ASTContext *ast, Encoding encoding, uint32_t bit_size)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000606{
Greg Clayton6beaaa62011-01-17 03:46:26 +0000607 if (!ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +0000608 return CompilerType();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000609 switch (encoding)
610 {
Greg Claytonc86103d2010-08-05 01:57:25 +0000611 case eEncodingInvalid:
Greg Clayton6beaaa62011-01-17 03:46:26 +0000612 if (QualTypeMatchesBitSize (bit_size, ast, ast->VoidPtrTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000613 return CompilerType (ast, ast->VoidPtrTy);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000614 break;
615
Greg Claytonc86103d2010-08-05 01:57:25 +0000616 case eEncodingUint:
Greg Clayton6beaaa62011-01-17 03:46:26 +0000617 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000618 return CompilerType (ast, ast->UnsignedCharTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000619 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000620 return CompilerType (ast, ast->UnsignedShortTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000621 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedIntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000622 return CompilerType (ast, ast->UnsignedIntTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000623 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000624 return CompilerType (ast, ast->UnsignedLongTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000625 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedLongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000626 return CompilerType (ast, ast->UnsignedLongLongTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000627 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedInt128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000628 return CompilerType (ast, ast->UnsignedInt128Ty);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000629 break;
630
Greg Claytonc86103d2010-08-05 01:57:25 +0000631 case eEncodingSint:
Greg Clayton6beaaa62011-01-17 03:46:26 +0000632 if (QualTypeMatchesBitSize (bit_size, ast, ast->CharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000633 return CompilerType (ast, ast->CharTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000634 if (QualTypeMatchesBitSize (bit_size, ast, ast->ShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000635 return CompilerType (ast, ast->ShortTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000636 if (QualTypeMatchesBitSize (bit_size, ast, ast->IntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000637 return CompilerType (ast, ast->IntTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000638 if (QualTypeMatchesBitSize (bit_size, ast, ast->LongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000639 return CompilerType (ast, ast->LongTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000640 if (QualTypeMatchesBitSize (bit_size, ast, ast->LongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000641 return CompilerType (ast, ast->LongLongTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000642 if (QualTypeMatchesBitSize (bit_size, ast, ast->Int128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000643 return CompilerType (ast, ast->Int128Ty);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000644 break;
645
Greg Claytonc86103d2010-08-05 01:57:25 +0000646 case eEncodingIEEE754:
Greg Clayton6beaaa62011-01-17 03:46:26 +0000647 if (QualTypeMatchesBitSize (bit_size, ast, ast->FloatTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000648 return CompilerType (ast, ast->FloatTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000649 if (QualTypeMatchesBitSize (bit_size, ast, ast->DoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000650 return CompilerType (ast, ast->DoubleTy);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000651 if (QualTypeMatchesBitSize (bit_size, ast, ast->LongDoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000652 return CompilerType (ast, ast->LongDoubleTy);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000653 break;
654
Greg Claytonc86103d2010-08-05 01:57:25 +0000655 case eEncodingVector:
Johnny Chenc79c93a2012-03-07 01:12:24 +0000656 // Sanity check that bit_size is a multiple of 8's.
657 if (bit_size && !(bit_size & 0x7u))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000658 return CompilerType (ast, ast->getExtVectorType (ast->UnsignedCharTy, bit_size/8));
Johnny Chenc79c93a2012-03-07 01:12:24 +0000659 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000660 }
661
Greg Claytona1e5dc82015-08-11 22:53:00 +0000662 return CompilerType();
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000663}
664
Greg Clayton57ee3062013-07-11 22:46:58 +0000665
666
667lldb::BasicType
668ClangASTContext::GetBasicTypeEnumeration (const ConstString &name)
669{
670 if (name)
671 {
672 typedef UniqueCStringMap<lldb::BasicType> TypeNameToBasicTypeMap;
673 static TypeNameToBasicTypeMap g_type_map;
674 static std::once_flag g_once_flag;
675 std::call_once(g_once_flag, [](){
676 // "void"
677 g_type_map.Append(ConstString("void").GetCString(), eBasicTypeVoid);
678
679 // "char"
680 g_type_map.Append(ConstString("char").GetCString(), eBasicTypeChar);
681 g_type_map.Append(ConstString("signed char").GetCString(), eBasicTypeSignedChar);
682 g_type_map.Append(ConstString("unsigned char").GetCString(), eBasicTypeUnsignedChar);
683 g_type_map.Append(ConstString("wchar_t").GetCString(), eBasicTypeWChar);
684 g_type_map.Append(ConstString("signed wchar_t").GetCString(), eBasicTypeSignedWChar);
685 g_type_map.Append(ConstString("unsigned wchar_t").GetCString(), eBasicTypeUnsignedWChar);
686 // "short"
687 g_type_map.Append(ConstString("short").GetCString(), eBasicTypeShort);
688 g_type_map.Append(ConstString("short int").GetCString(), eBasicTypeShort);
689 g_type_map.Append(ConstString("unsigned short").GetCString(), eBasicTypeUnsignedShort);
690 g_type_map.Append(ConstString("unsigned short int").GetCString(), eBasicTypeUnsignedShort);
691
692 // "int"
693 g_type_map.Append(ConstString("int").GetCString(), eBasicTypeInt);
694 g_type_map.Append(ConstString("signed int").GetCString(), eBasicTypeInt);
695 g_type_map.Append(ConstString("unsigned int").GetCString(), eBasicTypeUnsignedInt);
696 g_type_map.Append(ConstString("unsigned").GetCString(), eBasicTypeUnsignedInt);
697
698 // "long"
699 g_type_map.Append(ConstString("long").GetCString(), eBasicTypeLong);
700 g_type_map.Append(ConstString("long int").GetCString(), eBasicTypeLong);
701 g_type_map.Append(ConstString("unsigned long").GetCString(), eBasicTypeUnsignedLong);
702 g_type_map.Append(ConstString("unsigned long int").GetCString(), eBasicTypeUnsignedLong);
703
704 // "long long"
705 g_type_map.Append(ConstString("long long").GetCString(), eBasicTypeLongLong);
706 g_type_map.Append(ConstString("long long int").GetCString(), eBasicTypeLongLong);
707 g_type_map.Append(ConstString("unsigned long long").GetCString(), eBasicTypeUnsignedLongLong);
708 g_type_map.Append(ConstString("unsigned long long int").GetCString(), eBasicTypeUnsignedLongLong);
709
710 // "int128"
711 g_type_map.Append(ConstString("__int128_t").GetCString(), eBasicTypeInt128);
712 g_type_map.Append(ConstString("__uint128_t").GetCString(), eBasicTypeUnsignedInt128);
713
Bruce Mitchenerd93c4a32014-07-01 21:22:11 +0000714 // Miscellaneous
Greg Clayton57ee3062013-07-11 22:46:58 +0000715 g_type_map.Append(ConstString("bool").GetCString(), eBasicTypeBool);
716 g_type_map.Append(ConstString("float").GetCString(), eBasicTypeFloat);
717 g_type_map.Append(ConstString("double").GetCString(), eBasicTypeDouble);
718 g_type_map.Append(ConstString("long double").GetCString(), eBasicTypeLongDouble);
719 g_type_map.Append(ConstString("id").GetCString(), eBasicTypeObjCID);
720 g_type_map.Append(ConstString("SEL").GetCString(), eBasicTypeObjCSel);
721 g_type_map.Append(ConstString("nullptr").GetCString(), eBasicTypeNullPtr);
722 g_type_map.Sort();
723 });
724
725 return g_type_map.Find(name.GetCString(), eBasicTypeInvalid);
726 }
727 return eBasicTypeInvalid;
728}
729
Greg Claytona1e5dc82015-08-11 22:53:00 +0000730CompilerType
Greg Clayton57ee3062013-07-11 22:46:58 +0000731ClangASTContext::GetBasicType (ASTContext *ast, const ConstString &name)
732{
733 if (ast)
734 {
735 lldb::BasicType basic_type = ClangASTContext::GetBasicTypeEnumeration (name);
736 return ClangASTContext::GetBasicType (ast, basic_type);
737 }
Greg Claytona1e5dc82015-08-11 22:53:00 +0000738 return CompilerType();
Greg Clayton57ee3062013-07-11 22:46:58 +0000739}
740
741uint32_t
742ClangASTContext::GetPointerByteSize ()
743{
744 if (m_pointer_byte_size == 0)
Enrico Granata1cd5e922015-01-28 00:07:51 +0000745 m_pointer_byte_size = GetBasicType(lldb::eBasicTypeVoid).GetPointerType().GetByteSize(nullptr);
Greg Clayton57ee3062013-07-11 22:46:58 +0000746 return m_pointer_byte_size;
747}
748
Greg Claytona1e5dc82015-08-11 22:53:00 +0000749CompilerType
Greg Clayton57ee3062013-07-11 22:46:58 +0000750ClangASTContext::GetBasicType (lldb::BasicType basic_type)
751{
752 return GetBasicType (getASTContext(), basic_type);
753}
754
Greg Claytona1e5dc82015-08-11 22:53:00 +0000755CompilerType
Greg Clayton57ee3062013-07-11 22:46:58 +0000756ClangASTContext::GetBasicType (ASTContext *ast, lldb::BasicType basic_type)
757{
758 if (ast)
759 {
Ed Masted4612ad2014-04-20 13:17:36 +0000760 clang_type_t clang_type = nullptr;
Greg Clayton57ee3062013-07-11 22:46:58 +0000761
762 switch (basic_type)
763 {
764 case eBasicTypeInvalid:
765 case eBasicTypeOther:
766 break;
767 case eBasicTypeVoid:
768 clang_type = ast->VoidTy.getAsOpaquePtr();
769 break;
770 case eBasicTypeChar:
771 clang_type = ast->CharTy.getAsOpaquePtr();
772 break;
773 case eBasicTypeSignedChar:
774 clang_type = ast->SignedCharTy.getAsOpaquePtr();
775 break;
776 case eBasicTypeUnsignedChar:
777 clang_type = ast->UnsignedCharTy.getAsOpaquePtr();
778 break;
779 case eBasicTypeWChar:
780 clang_type = ast->getWCharType().getAsOpaquePtr();
781 break;
782 case eBasicTypeSignedWChar:
783 clang_type = ast->getSignedWCharType().getAsOpaquePtr();
784 break;
785 case eBasicTypeUnsignedWChar:
786 clang_type = ast->getUnsignedWCharType().getAsOpaquePtr();
787 break;
788 case eBasicTypeChar16:
789 clang_type = ast->Char16Ty.getAsOpaquePtr();
790 break;
791 case eBasicTypeChar32:
792 clang_type = ast->Char32Ty.getAsOpaquePtr();
793 break;
794 case eBasicTypeShort:
795 clang_type = ast->ShortTy.getAsOpaquePtr();
796 break;
797 case eBasicTypeUnsignedShort:
798 clang_type = ast->UnsignedShortTy.getAsOpaquePtr();
799 break;
800 case eBasicTypeInt:
801 clang_type = ast->IntTy.getAsOpaquePtr();
802 break;
803 case eBasicTypeUnsignedInt:
804 clang_type = ast->UnsignedIntTy.getAsOpaquePtr();
805 break;
806 case eBasicTypeLong:
807 clang_type = ast->LongTy.getAsOpaquePtr();
808 break;
809 case eBasicTypeUnsignedLong:
810 clang_type = ast->UnsignedLongTy.getAsOpaquePtr();
811 break;
812 case eBasicTypeLongLong:
813 clang_type = ast->LongLongTy.getAsOpaquePtr();
814 break;
815 case eBasicTypeUnsignedLongLong:
816 clang_type = ast->UnsignedLongLongTy.getAsOpaquePtr();
817 break;
818 case eBasicTypeInt128:
819 clang_type = ast->Int128Ty.getAsOpaquePtr();
820 break;
821 case eBasicTypeUnsignedInt128:
822 clang_type = ast->UnsignedInt128Ty.getAsOpaquePtr();
823 break;
824 case eBasicTypeBool:
825 clang_type = ast->BoolTy.getAsOpaquePtr();
826 break;
827 case eBasicTypeHalf:
828 clang_type = ast->HalfTy.getAsOpaquePtr();
829 break;
830 case eBasicTypeFloat:
831 clang_type = ast->FloatTy.getAsOpaquePtr();
832 break;
833 case eBasicTypeDouble:
834 clang_type = ast->DoubleTy.getAsOpaquePtr();
835 break;
836 case eBasicTypeLongDouble:
837 clang_type = ast->LongDoubleTy.getAsOpaquePtr();
838 break;
839 case eBasicTypeFloatComplex:
840 clang_type = ast->FloatComplexTy.getAsOpaquePtr();
841 break;
842 case eBasicTypeDoubleComplex:
843 clang_type = ast->DoubleComplexTy.getAsOpaquePtr();
844 break;
845 case eBasicTypeLongDoubleComplex:
846 clang_type = ast->LongDoubleComplexTy.getAsOpaquePtr();
847 break;
848 case eBasicTypeObjCID:
849 clang_type = ast->getObjCIdType().getAsOpaquePtr();
850 break;
851 case eBasicTypeObjCClass:
852 clang_type = ast->getObjCClassType().getAsOpaquePtr();
853 break;
854 case eBasicTypeObjCSel:
855 clang_type = ast->getObjCSelType().getAsOpaquePtr();
856 break;
857 case eBasicTypeNullPtr:
858 clang_type = ast->NullPtrTy.getAsOpaquePtr();
859 break;
860 }
861
862 if (clang_type)
Greg Claytona1e5dc82015-08-11 22:53:00 +0000863 return CompilerType (GetASTContext(ast), clang_type);
Greg Clayton57ee3062013-07-11 22:46:58 +0000864 }
Greg Claytona1e5dc82015-08-11 22:53:00 +0000865 return CompilerType();
Greg Clayton57ee3062013-07-11 22:46:58 +0000866}
867
868
Greg Claytona1e5dc82015-08-11 22:53:00 +0000869CompilerType
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000870ClangASTContext::GetBuiltinTypeForDWARFEncodingAndBitSize (const char *type_name, uint32_t dw_ate, uint32_t bit_size)
871{
Greg Clayton6beaaa62011-01-17 03:46:26 +0000872 ASTContext *ast = getASTContext();
Sean Callanan38d4df52012-04-03 01:10:10 +0000873
874#define streq(a,b) strcmp(a,b) == 0
Ed Masted4612ad2014-04-20 13:17:36 +0000875 assert (ast != nullptr);
Greg Clayton6beaaa62011-01-17 03:46:26 +0000876 if (ast)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000877 {
878 switch (dw_ate)
879 {
Sean Callanan38d4df52012-04-03 01:10:10 +0000880 default:
881 break;
Greg Clayton605684e2011-10-28 23:06:08 +0000882
Sean Callanan38d4df52012-04-03 01:10:10 +0000883 case DW_ATE_address:
884 if (QualTypeMatchesBitSize (bit_size, ast, ast->VoidPtrTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000885 return CompilerType (ast, ast->VoidPtrTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000886 break;
887
888 case DW_ATE_boolean:
889 if (QualTypeMatchesBitSize (bit_size, ast, ast->BoolTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000890 return CompilerType (ast, ast->BoolTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000891 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000892 return CompilerType (ast, ast->UnsignedCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000893 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000894 return CompilerType (ast, ast->UnsignedShortTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000895 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedIntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000896 return CompilerType (ast, ast->UnsignedIntTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000897 break;
898
899 case DW_ATE_lo_user:
900 // This has been seen to mean DW_AT_complex_integer
901 if (type_name)
Greg Clayton605684e2011-10-28 23:06:08 +0000902 {
Sean Callanan38d4df52012-04-03 01:10:10 +0000903 if (::strstr(type_name, "complex"))
904 {
Greg Claytona1e5dc82015-08-11 22:53:00 +0000905 CompilerType complex_int_clang_type = GetBuiltinTypeForDWARFEncodingAndBitSize ("int", DW_ATE_signed, bit_size/2);
906 return CompilerType (ast, ast->getComplexType (GetQualType(complex_int_clang_type)));
Sean Callanan38d4df52012-04-03 01:10:10 +0000907 }
Greg Clayton605684e2011-10-28 23:06:08 +0000908 }
Sean Callanan38d4df52012-04-03 01:10:10 +0000909 break;
910
911 case DW_ATE_complex_float:
912 if (QualTypeMatchesBitSize (bit_size, ast, ast->FloatComplexTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000913 return CompilerType (ast, ast->FloatComplexTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000914 else if (QualTypeMatchesBitSize (bit_size, ast, ast->DoubleComplexTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000915 return CompilerType (ast, ast->DoubleComplexTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000916 else if (QualTypeMatchesBitSize (bit_size, ast, ast->LongDoubleComplexTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000917 return CompilerType (ast, ast->LongDoubleComplexTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000918 else
Greg Clayton605684e2011-10-28 23:06:08 +0000919 {
Greg Claytona1e5dc82015-08-11 22:53:00 +0000920 CompilerType complex_float_clang_type = GetBuiltinTypeForDWARFEncodingAndBitSize ("float", DW_ATE_float, bit_size/2);
921 return CompilerType (ast, ast->getComplexType (GetQualType(complex_float_clang_type)));
Greg Clayton605684e2011-10-28 23:06:08 +0000922 }
Sean Callanan38d4df52012-04-03 01:10:10 +0000923 break;
924
925 case DW_ATE_float:
Greg Clayton8012cad2014-11-17 19:39:20 +0000926 if (streq(type_name, "float") && QualTypeMatchesBitSize (bit_size, ast, ast->FloatTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000927 return CompilerType (ast, ast->FloatTy);
Greg Clayton8012cad2014-11-17 19:39:20 +0000928 if (streq(type_name, "double") && QualTypeMatchesBitSize (bit_size, ast, ast->DoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000929 return CompilerType (ast, ast->DoubleTy);
Greg Clayton8012cad2014-11-17 19:39:20 +0000930 if (streq(type_name, "long double") && QualTypeMatchesBitSize (bit_size, ast, ast->LongDoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000931 return CompilerType (ast, ast->LongDoubleTy);
Bruce Mitchenere171da52015-07-22 00:16:02 +0000932 // Fall back to not requiring a name match
Sean Callanan38d4df52012-04-03 01:10:10 +0000933 if (QualTypeMatchesBitSize (bit_size, ast, ast->FloatTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000934 return CompilerType (ast, ast->FloatTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000935 if (QualTypeMatchesBitSize (bit_size, ast, ast->DoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000936 return CompilerType (ast, ast->DoubleTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000937 if (QualTypeMatchesBitSize (bit_size, ast, ast->LongDoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000938 return CompilerType (ast, ast->LongDoubleTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000939 break;
940
941 case DW_ATE_signed:
942 if (type_name)
943 {
944 if (streq(type_name, "wchar_t") &&
Tamas Berghammer3c0d0052015-04-01 09:48:02 +0000945 QualTypeMatchesBitSize (bit_size, ast, ast->WCharTy) &&
Greg Clayton28eb7bf2015-05-07 00:07:44 +0000946 (getTargetInfo() && TargetInfo::isTypeSigned (getTargetInfo()->getWCharType())))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000947 return CompilerType (ast, ast->WCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000948 if (streq(type_name, "void") &&
949 QualTypeMatchesBitSize (bit_size, ast, ast->VoidTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000950 return CompilerType (ast, ast->VoidTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000951 if (strstr(type_name, "long long") &&
952 QualTypeMatchesBitSize (bit_size, ast, ast->LongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000953 return CompilerType (ast, ast->LongLongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000954 if (strstr(type_name, "long") &&
955 QualTypeMatchesBitSize (bit_size, ast, ast->LongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000956 return CompilerType (ast, ast->LongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000957 if (strstr(type_name, "short") &&
958 QualTypeMatchesBitSize (bit_size, ast, ast->ShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000959 return CompilerType (ast, ast->ShortTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000960 if (strstr(type_name, "char"))
961 {
962 if (QualTypeMatchesBitSize (bit_size, ast, ast->CharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000963 return CompilerType (ast, ast->CharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000964 if (QualTypeMatchesBitSize (bit_size, ast, ast->SignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000965 return CompilerType (ast, ast->SignedCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000966 }
967 if (strstr(type_name, "int"))
968 {
969 if (QualTypeMatchesBitSize (bit_size, ast, ast->IntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000970 return CompilerType (ast, ast->IntTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000971 if (QualTypeMatchesBitSize (bit_size, ast, ast->Int128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000972 return CompilerType (ast, ast->Int128Ty);
Sean Callanan38d4df52012-04-03 01:10:10 +0000973 }
974 }
975 // We weren't able to match up a type name, just search by size
976 if (QualTypeMatchesBitSize (bit_size, ast, ast->CharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000977 return CompilerType (ast, ast->CharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000978 if (QualTypeMatchesBitSize (bit_size, ast, ast->ShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000979 return CompilerType (ast, ast->ShortTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000980 if (QualTypeMatchesBitSize (bit_size, ast, ast->IntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000981 return CompilerType (ast, ast->IntTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000982 if (QualTypeMatchesBitSize (bit_size, ast, ast->LongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000983 return CompilerType (ast, ast->LongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000984 if (QualTypeMatchesBitSize (bit_size, ast, ast->LongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000985 return CompilerType (ast, ast->LongLongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000986 if (QualTypeMatchesBitSize (bit_size, ast, ast->Int128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000987 return CompilerType (ast, ast->Int128Ty);
Sean Callanan38d4df52012-04-03 01:10:10 +0000988 break;
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +0000989
Sean Callanan38d4df52012-04-03 01:10:10 +0000990 case DW_ATE_signed_char:
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +0000991 if (ast->getLangOpts().CharIsSigned && type_name && streq(type_name, "char"))
Sean Callanan38d4df52012-04-03 01:10:10 +0000992 {
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +0000993 if (QualTypeMatchesBitSize (bit_size, ast, ast->CharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000994 return CompilerType (ast, ast->CharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000995 }
Sean Callanan38d4df52012-04-03 01:10:10 +0000996 if (QualTypeMatchesBitSize (bit_size, ast, ast->SignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +0000997 return CompilerType (ast, ast->SignedCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +0000998 break;
999
1000 case DW_ATE_unsigned:
1001 if (type_name)
1002 {
Tamas Berghammer3c0d0052015-04-01 09:48:02 +00001003 if (streq(type_name, "wchar_t"))
1004 {
1005 if (QualTypeMatchesBitSize (bit_size, ast, ast->WCharTy))
1006 {
Greg Clayton28eb7bf2015-05-07 00:07:44 +00001007 if (!(getTargetInfo() && TargetInfo::isTypeSigned (getTargetInfo()->getWCharType())))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001008 return CompilerType (ast, ast->WCharTy);
Tamas Berghammer3c0d0052015-04-01 09:48:02 +00001009 }
1010 }
Sean Callanan38d4df52012-04-03 01:10:10 +00001011 if (strstr(type_name, "long long"))
1012 {
1013 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedLongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001014 return CompilerType (ast, ast->UnsignedLongLongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001015 }
1016 else if (strstr(type_name, "long"))
1017 {
1018 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001019 return CompilerType (ast, ast->UnsignedLongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001020 }
1021 else if (strstr(type_name, "short"))
1022 {
1023 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001024 return CompilerType (ast, ast->UnsignedShortTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001025 }
1026 else if (strstr(type_name, "char"))
1027 {
1028 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001029 return CompilerType (ast, ast->UnsignedCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001030 }
1031 else if (strstr(type_name, "int"))
1032 {
1033 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedIntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001034 return CompilerType (ast, ast->UnsignedIntTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001035 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedInt128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001036 return CompilerType (ast, ast->UnsignedInt128Ty);
Sean Callanan38d4df52012-04-03 01:10:10 +00001037 }
1038 }
1039 // We weren't able to match up a type name, just search by size
1040 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001041 return CompilerType (ast, ast->UnsignedCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001042 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001043 return CompilerType (ast, ast->UnsignedShortTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001044 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedIntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001045 return CompilerType (ast, ast->UnsignedIntTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001046 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001047 return CompilerType (ast, ast->UnsignedLongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001048 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedLongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001049 return CompilerType (ast, ast->UnsignedLongLongTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001050 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedInt128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001051 return CompilerType (ast, ast->UnsignedInt128Ty);
Sean Callanan38d4df52012-04-03 01:10:10 +00001052 break;
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +00001053
Sean Callanan38d4df52012-04-03 01:10:10 +00001054 case DW_ATE_unsigned_char:
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +00001055 if (!ast->getLangOpts().CharIsSigned && type_name && streq(type_name, "char"))
1056 {
1057 if (QualTypeMatchesBitSize (bit_size, ast, ast->CharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001058 return CompilerType (ast, ast->CharTy);
Tamas Berghammerdccbfaf2015-03-31 10:21:50 +00001059 }
Sean Callanan38d4df52012-04-03 01:10:10 +00001060 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001061 return CompilerType (ast, ast->UnsignedCharTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001062 if (QualTypeMatchesBitSize (bit_size, ast, ast->UnsignedShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00001063 return CompilerType (ast, ast->UnsignedShortTy);
Sean Callanan38d4df52012-04-03 01:10:10 +00001064 break;
1065
1066 case DW_ATE_imaginary_float:
1067 break;
1068
1069 case DW_ATE_UTF:
1070 if (type_name)
1071 {
1072 if (streq(type_name, "char16_t"))
1073 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00001074 return CompilerType (ast, ast->Char16Ty);
Sean Callanan38d4df52012-04-03 01:10:10 +00001075 }
1076 else if (streq(type_name, "char32_t"))
1077 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00001078 return CompilerType (ast, ast->Char32Ty);
Sean Callanan38d4df52012-04-03 01:10:10 +00001079 }
1080 }
1081 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001082 }
1083 }
1084 // This assert should fire for anything that we don't catch above so we know
1085 // to fix any issues we run into.
Greg Claytondc968d12011-05-17 18:15:05 +00001086 if (type_name)
1087 {
Greg Claytone38a5ed2012-01-05 03:57:59 +00001088 Host::SystemLog (Host::eSystemLogError, "error: need to add support for DW_TAG_base_type '%s' encoded with DW_ATE = 0x%x, bit_size = %u\n", type_name, dw_ate, bit_size);
Greg Claytondc968d12011-05-17 18:15:05 +00001089 }
1090 else
1091 {
Greg Claytone38a5ed2012-01-05 03:57:59 +00001092 Host::SystemLog (Host::eSystemLogError, "error: need to add support for DW_TAG_base_type encoded with DW_ATE = 0x%x, bit_size = %u\n", dw_ate, bit_size);
Greg Claytondc968d12011-05-17 18:15:05 +00001093 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00001094 return CompilerType ();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001095}
1096
Greg Claytona1e5dc82015-08-11 22:53:00 +00001097CompilerType
Sean Callanan77502262011-05-12 23:54:16 +00001098ClangASTContext::GetUnknownAnyType(clang::ASTContext *ast)
1099{
Greg Clayton57ee3062013-07-11 22:46:58 +00001100 if (ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +00001101 return CompilerType (ast, ast->UnknownAnyTy);
1102 return CompilerType();
Sean Callanan77502262011-05-12 23:54:16 +00001103}
1104
Greg Claytona1e5dc82015-08-11 22:53:00 +00001105CompilerType
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001106ClangASTContext::GetCStringType (bool is_const)
1107{
Greg Clayton57ee3062013-07-11 22:46:58 +00001108 ASTContext *ast = getASTContext();
1109 QualType char_type(ast->CharTy);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001110
1111 if (is_const)
1112 char_type.addConst();
1113
Greg Claytona1e5dc82015-08-11 22:53:00 +00001114 return CompilerType (ast, ast->getPointerType(char_type));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001115}
1116
Sean Callanan09ab4b72011-11-30 22:11:59 +00001117clang::DeclContext *
1118ClangASTContext::GetTranslationUnitDecl (clang::ASTContext *ast)
1119{
1120 return ast->getTranslationUnitDecl();
1121}
1122
Greg Clayton526e5af2010-11-13 03:52:47 +00001123clang::Decl *
Greg Clayton38a61402010-12-02 23:20:03 +00001124ClangASTContext::CopyDecl (ASTContext *dst_ast,
1125 ASTContext *src_ast,
Greg Clayton526e5af2010-11-13 03:52:47 +00001126 clang::Decl *source_decl)
Sean Callanan7fddd4c2010-12-11 00:08:56 +00001127{
Sean Callanan79439e82010-11-18 02:56:27 +00001128 FileSystemOptions file_system_options;
Greg Clayton38a61402010-12-02 23:20:03 +00001129 FileManager file_manager (file_system_options);
1130 ASTImporter importer(*dst_ast, file_manager,
Sean Callanan2c777c42011-01-18 23:32:05 +00001131 *src_ast, file_manager,
1132 false);
Greg Clayton526e5af2010-11-13 03:52:47 +00001133
1134 return importer.Import(source_decl);
1135}
1136
Sean Callanan23a30272010-07-16 00:00:27 +00001137bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00001138ClangASTContext::AreTypesSame (CompilerType type1,
1139 CompilerType type2,
Greg Clayton84db9102012-03-26 23:03:23 +00001140 bool ignore_qualifiers)
Sean Callanan4dcca2622010-07-15 22:30:52 +00001141{
Greg Claytonf73034f2015-09-08 18:15:05 +00001142 ClangASTContext *ast = llvm::dyn_cast_or_null<ClangASTContext>(type1.GetTypeSystem());
1143 if (!ast || ast != type2.GetTypeSystem())
Greg Clayton57ee3062013-07-11 22:46:58 +00001144 return false;
1145
1146 if (type1.GetOpaqueQualType() == type2.GetOpaqueQualType())
Greg Clayton55995eb2012-04-06 17:38:55 +00001147 return true;
1148
Greg Claytond8d4a572015-08-11 21:38:15 +00001149 QualType type1_qual = GetQualType(type1);
1150 QualType type2_qual = GetQualType(type2);
Sean Callanan5056ab02012-02-18 02:01:03 +00001151
1152 if (ignore_qualifiers)
1153 {
1154 type1_qual = type1_qual.getUnqualifiedType();
1155 type2_qual = type2_qual.getUnqualifiedType();
1156 }
1157
Greg Claytonf73034f2015-09-08 18:15:05 +00001158 return ast->getASTContext()->hasSameType (type1_qual, type2_qual);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001159}
1160
Greg Claytona1e5dc82015-08-11 22:53:00 +00001161CompilerType
Sean Callanan9998acd2014-12-05 01:21:59 +00001162ClangASTContext::GetTypeForDecl (clang::NamedDecl *decl)
1163{
1164 if (clang::ObjCInterfaceDecl *interface_decl = llvm::dyn_cast<clang::ObjCInterfaceDecl>(decl))
1165 return GetTypeForDecl(interface_decl);
1166 if (clang::TagDecl *tag_decl = llvm::dyn_cast<clang::TagDecl>(decl))
1167 return GetTypeForDecl(tag_decl);
Greg Claytona1e5dc82015-08-11 22:53:00 +00001168 return CompilerType();
Sean Callanan9998acd2014-12-05 01:21:59 +00001169}
1170
Greg Clayton6beaaa62011-01-17 03:46:26 +00001171
Greg Claytona1e5dc82015-08-11 22:53:00 +00001172CompilerType
Greg Clayton6beaaa62011-01-17 03:46:26 +00001173ClangASTContext::GetTypeForDecl (TagDecl *decl)
1174{
1175 // No need to call the getASTContext() accessor (which can create the AST
1176 // if it isn't created yet, because we can't have created a decl in this
1177 // AST if our AST didn't already exist...
Sean Callanan9998acd2014-12-05 01:21:59 +00001178 ASTContext *ast = &decl->getASTContext();
Greg Clayton57ee3062013-07-11 22:46:58 +00001179 if (ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +00001180 return CompilerType (ast, ast->getTagDeclType(decl));
1181 return CompilerType();
Greg Clayton6beaaa62011-01-17 03:46:26 +00001182}
1183
Greg Claytona1e5dc82015-08-11 22:53:00 +00001184CompilerType
Greg Clayton6beaaa62011-01-17 03:46:26 +00001185ClangASTContext::GetTypeForDecl (ObjCInterfaceDecl *decl)
1186{
1187 // No need to call the getASTContext() accessor (which can create the AST
1188 // if it isn't created yet, because we can't have created a decl in this
1189 // AST if our AST didn't already exist...
Sean Callanan9998acd2014-12-05 01:21:59 +00001190 ASTContext *ast = &decl->getASTContext();
Greg Clayton57ee3062013-07-11 22:46:58 +00001191 if (ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +00001192 return CompilerType (ast, ast->getObjCInterfaceType(decl));
1193 return CompilerType();
Greg Clayton6beaaa62011-01-17 03:46:26 +00001194}
1195
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001196#pragma mark Structure, Unions, Classes
1197
Greg Claytona1e5dc82015-08-11 22:53:00 +00001198CompilerType
Greg Claytonc4ffd662013-03-08 01:37:30 +00001199ClangASTContext::CreateRecordType (DeclContext *decl_ctx,
1200 AccessType access_type,
1201 const char *name,
1202 int kind,
1203 LanguageType language,
1204 ClangASTMetadata *metadata)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001205{
Greg Clayton6beaaa62011-01-17 03:46:26 +00001206 ASTContext *ast = getASTContext();
Ed Masted4612ad2014-04-20 13:17:36 +00001207 assert (ast != nullptr);
Sean Callananad880762012-04-18 01:06:17 +00001208
Ed Masted4612ad2014-04-20 13:17:36 +00001209 if (decl_ctx == nullptr)
Greg Clayton6beaaa62011-01-17 03:46:26 +00001210 decl_ctx = ast->getTranslationUnitDecl();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001211
Greg Clayton9e409562010-07-28 02:04:09 +00001212
Greg Claytone1be9962011-08-24 23:50:00 +00001213 if (language == eLanguageTypeObjC || language == eLanguageTypeObjC_plus_plus)
Greg Clayton9e409562010-07-28 02:04:09 +00001214 {
Greg Claytonaaf99e02010-10-11 02:25:34 +00001215 bool isForwardDecl = true;
Greg Clayton9e409562010-07-28 02:04:09 +00001216 bool isInternal = false;
Sean Callananad880762012-04-18 01:06:17 +00001217 return CreateObjCClass (name, decl_ctx, isForwardDecl, isInternal, metadata);
Greg Clayton9e409562010-07-28 02:04:09 +00001218 }
1219
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001220 // NOTE: Eventually CXXRecordDecl will be merged back into RecordDecl and
1221 // we will need to update this code. I was told to currently always use
1222 // the CXXRecordDecl class since we often don't know from debug information
1223 // if something is struct or a class, so we default to always use the more
1224 // complete definition just in case.
Sean Callanan11e32d32014-02-18 00:31:38 +00001225
1226 bool is_anonymous = (!name) || (!name[0]);
1227
Greg Claytonf0705c82011-10-22 03:33:13 +00001228 CXXRecordDecl *decl = CXXRecordDecl::Create (*ast,
1229 (TagDecl::TagKind)kind,
1230 decl_ctx,
1231 SourceLocation(),
1232 SourceLocation(),
Ed Masted4612ad2014-04-20 13:17:36 +00001233 is_anonymous ? nullptr : &ast->Idents.get(name));
Sean Callanan11e32d32014-02-18 00:31:38 +00001234
1235 if (is_anonymous)
1236 decl->setAnonymousStructOrUnion(true);
Sean Callanan7282e2a2012-01-13 22:10:18 +00001237
Greg Claytonc4ffd662013-03-08 01:37:30 +00001238 if (decl)
Greg Clayton55561e92011-10-26 03:31:36 +00001239 {
Greg Claytonc4ffd662013-03-08 01:37:30 +00001240 if (metadata)
Greg Claytond0029442013-03-27 01:48:02 +00001241 SetMetadata(ast, decl, *metadata);
Greg Claytonc4ffd662013-03-08 01:37:30 +00001242
Greg Clayton55561e92011-10-26 03:31:36 +00001243 if (access_type != eAccessNone)
1244 decl->setAccess (ConvertAccessTypeToAccessSpecifier (access_type));
Greg Claytonc4ffd662013-03-08 01:37:30 +00001245
1246 if (decl_ctx)
1247 decl_ctx->addDecl (decl);
1248
Greg Claytona1e5dc82015-08-11 22:53:00 +00001249 return CompilerType(ast, ast->getTagDeclType(decl));
Greg Clayton55561e92011-10-26 03:31:36 +00001250 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00001251 return CompilerType();
Greg Clayton6beaaa62011-01-17 03:46:26 +00001252}
1253
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001254static TemplateParameterList *
1255CreateTemplateParameterList (ASTContext *ast,
Sean Callanan3d654b32012-09-24 22:25:51 +00001256 const ClangASTContext::TemplateParameterInfos &template_param_infos,
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001257 llvm::SmallVector<NamedDecl *, 8> &template_param_decls)
1258{
1259 const bool parameter_pack = false;
1260 const bool is_typename = false;
1261 const unsigned depth = 0;
1262 const size_t num_template_params = template_param_infos.GetSize();
1263 for (size_t i=0; i<num_template_params; ++i)
1264 {
1265 const char *name = template_param_infos.names[i];
Greg Clayton283b2652013-04-23 22:38:02 +00001266
Ed Masted4612ad2014-04-20 13:17:36 +00001267 IdentifierInfo *identifier_info = nullptr;
Greg Clayton283b2652013-04-23 22:38:02 +00001268 if (name && name[0])
1269 identifier_info = &ast->Idents.get(name);
Sean Callanan3d654b32012-09-24 22:25:51 +00001270 if (template_param_infos.args[i].getKind() == TemplateArgument::Integral)
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001271 {
1272 template_param_decls.push_back (NonTypeTemplateParmDecl::Create (*ast,
1273 ast->getTranslationUnitDecl(), // Is this the right decl context?, SourceLocation StartLoc,
1274 SourceLocation(),
1275 SourceLocation(),
1276 depth,
1277 i,
Greg Clayton283b2652013-04-23 22:38:02 +00001278 identifier_info,
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001279 template_param_infos.args[i].getIntegralType(),
1280 parameter_pack,
Ed Masted4612ad2014-04-20 13:17:36 +00001281 nullptr));
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001282
1283 }
1284 else
1285 {
1286 template_param_decls.push_back (TemplateTypeParmDecl::Create (*ast,
1287 ast->getTranslationUnitDecl(), // Is this the right decl context?
1288 SourceLocation(),
1289 SourceLocation(),
1290 depth,
1291 i,
Greg Clayton283b2652013-04-23 22:38:02 +00001292 identifier_info,
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001293 is_typename,
1294 parameter_pack));
1295 }
1296 }
1297
1298 TemplateParameterList *template_param_list = TemplateParameterList::Create (*ast,
1299 SourceLocation(),
1300 SourceLocation(),
1301 &template_param_decls.front(),
1302 template_param_decls.size(),
1303 SourceLocation());
1304 return template_param_list;
1305}
1306
1307clang::FunctionTemplateDecl *
1308ClangASTContext::CreateFunctionTemplateDecl (clang::DeclContext *decl_ctx,
1309 clang::FunctionDecl *func_decl,
1310 const char *name,
1311 const TemplateParameterInfos &template_param_infos)
1312{
1313// /// \brief Create a function template node.
1314 ASTContext *ast = getASTContext();
1315
1316 llvm::SmallVector<NamedDecl *, 8> template_param_decls;
1317
1318 TemplateParameterList *template_param_list = CreateTemplateParameterList (ast,
1319 template_param_infos,
1320 template_param_decls);
1321 FunctionTemplateDecl *func_tmpl_decl = FunctionTemplateDecl::Create (*ast,
1322 decl_ctx,
1323 func_decl->getLocation(),
1324 func_decl->getDeclName(),
1325 template_param_list,
1326 func_decl);
1327
1328 for (size_t i=0, template_param_decl_count = template_param_decls.size();
1329 i < template_param_decl_count;
1330 ++i)
1331 {
1332 // TODO: verify which decl context we should put template_param_decls into..
1333 template_param_decls[i]->setDeclContext (func_decl);
1334 }
1335
1336 return func_tmpl_decl;
1337}
1338
1339void
1340ClangASTContext::CreateFunctionTemplateSpecializationInfo (FunctionDecl *func_decl,
1341 clang::FunctionTemplateDecl *func_tmpl_decl,
1342 const TemplateParameterInfos &infos)
1343{
1344 TemplateArgumentList template_args (TemplateArgumentList::OnStack,
1345 infos.args.data(),
1346 infos.args.size());
1347
1348 func_decl->setFunctionTemplateSpecialization (func_tmpl_decl,
1349 &template_args,
Ed Masted4612ad2014-04-20 13:17:36 +00001350 nullptr);
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001351}
1352
1353
Greg Claytonf0705c82011-10-22 03:33:13 +00001354ClassTemplateDecl *
1355ClangASTContext::CreateClassTemplateDecl (DeclContext *decl_ctx,
Greg Clayton55561e92011-10-26 03:31:36 +00001356 lldb::AccessType access_type,
Greg Claytonf0705c82011-10-22 03:33:13 +00001357 const char *class_name,
1358 int kind,
1359 const TemplateParameterInfos &template_param_infos)
1360{
1361 ASTContext *ast = getASTContext();
1362
Ed Masted4612ad2014-04-20 13:17:36 +00001363 ClassTemplateDecl *class_template_decl = nullptr;
1364 if (decl_ctx == nullptr)
Greg Claytonf0705c82011-10-22 03:33:13 +00001365 decl_ctx = ast->getTranslationUnitDecl();
1366
1367 IdentifierInfo &identifier_info = ast->Idents.get(class_name);
1368 DeclarationName decl_name (&identifier_info);
1369
1370 clang::DeclContext::lookup_result result = decl_ctx->lookup(decl_name);
Sean Callanan5deaa4c2012-12-21 21:34:42 +00001371
1372 for (NamedDecl *decl : result)
Greg Claytonf0705c82011-10-22 03:33:13 +00001373 {
Sean Callanan5deaa4c2012-12-21 21:34:42 +00001374 class_template_decl = dyn_cast<clang::ClassTemplateDecl>(decl);
Greg Claytonf0705c82011-10-22 03:33:13 +00001375 if (class_template_decl)
1376 return class_template_decl;
1377 }
1378
1379 llvm::SmallVector<NamedDecl *, 8> template_param_decls;
Greg Claytonf0705c82011-10-22 03:33:13 +00001380
Greg Clayton3c2e3ae2012-02-06 06:42:51 +00001381 TemplateParameterList *template_param_list = CreateTemplateParameterList (ast,
1382 template_param_infos,
1383 template_param_decls);
Greg Claytonf0705c82011-10-22 03:33:13 +00001384
1385 CXXRecordDecl *template_cxx_decl = CXXRecordDecl::Create (*ast,
1386 (TagDecl::TagKind)kind,
1387 decl_ctx, // What decl context do we use here? TU? The actual decl context?
1388 SourceLocation(),
1389 SourceLocation(),
1390 &identifier_info);
Greg Claytone04741d2011-12-02 02:09:28 +00001391
1392 for (size_t i=0, template_param_decl_count = template_param_decls.size();
1393 i < template_param_decl_count;
1394 ++i)
1395 {
1396 template_param_decls[i]->setDeclContext (template_cxx_decl);
1397 }
1398
Sean Callananb5c79622011-11-19 01:35:08 +00001399 // With templated classes, we say that a class is templated with
1400 // specializations, but that the bare class has no functions.
Sean Callananfa4fab72013-02-01 06:55:48 +00001401 //template_cxx_decl->startDefinition();
1402 //template_cxx_decl->completeDefinition();
Sean Callananb5c79622011-11-19 01:35:08 +00001403
Greg Claytonf0705c82011-10-22 03:33:13 +00001404 class_template_decl = ClassTemplateDecl::Create (*ast,
1405 decl_ctx, // What decl context do we use here? TU? The actual decl context?
1406 SourceLocation(),
1407 decl_name,
1408 template_param_list,
1409 template_cxx_decl,
Ed Masted4612ad2014-04-20 13:17:36 +00001410 nullptr);
Greg Claytonf0705c82011-10-22 03:33:13 +00001411
1412 if (class_template_decl)
Sean Callanan5e9e1992011-10-26 01:06:27 +00001413 {
Greg Clayton55561e92011-10-26 03:31:36 +00001414 if (access_type != eAccessNone)
1415 class_template_decl->setAccess (ConvertAccessTypeToAccessSpecifier (access_type));
Sean Callanan5b26f272012-02-04 08:49:35 +00001416
1417 //if (TagDecl *ctx_tag_decl = dyn_cast<TagDecl>(decl_ctx))
1418 // CompleteTagDeclarationDefinition(GetTypeForDecl(ctx_tag_decl));
1419
Greg Claytonf0705c82011-10-22 03:33:13 +00001420 decl_ctx->addDecl (class_template_decl);
Sean Callanan5e9e1992011-10-26 01:06:27 +00001421
1422#ifdef LLDB_CONFIGURATION_DEBUG
1423 VerifyDecl(class_template_decl);
1424#endif
1425 }
Greg Claytonf0705c82011-10-22 03:33:13 +00001426
1427 return class_template_decl;
1428}
1429
1430
1431ClassTemplateSpecializationDecl *
1432ClangASTContext::CreateClassTemplateSpecializationDecl (DeclContext *decl_ctx,
1433 ClassTemplateDecl *class_template_decl,
1434 int kind,
1435 const TemplateParameterInfos &template_param_infos)
1436{
1437 ASTContext *ast = getASTContext();
1438 ClassTemplateSpecializationDecl *class_template_specialization_decl = ClassTemplateSpecializationDecl::Create (*ast,
1439 (TagDecl::TagKind)kind,
1440 decl_ctx,
1441 SourceLocation(),
1442 SourceLocation(),
1443 class_template_decl,
1444 &template_param_infos.args.front(),
1445 template_param_infos.args.size(),
Ed Masted4612ad2014-04-20 13:17:36 +00001446 nullptr);
Greg Claytonf0705c82011-10-22 03:33:13 +00001447
Sean Callananfa4fab72013-02-01 06:55:48 +00001448 class_template_specialization_decl->setSpecializationKind(TSK_ExplicitSpecialization);
1449
Greg Claytonf0705c82011-10-22 03:33:13 +00001450 return class_template_specialization_decl;
1451}
1452
Greg Claytona1e5dc82015-08-11 22:53:00 +00001453CompilerType
Greg Claytonf0705c82011-10-22 03:33:13 +00001454ClangASTContext::CreateClassTemplateSpecializationType (ClassTemplateSpecializationDecl *class_template_specialization_decl)
1455{
1456 if (class_template_specialization_decl)
1457 {
1458 ASTContext *ast = getASTContext();
1459 if (ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +00001460 return CompilerType(ast, ast->getTagDeclType(class_template_specialization_decl));
Greg Claytonf0705c82011-10-22 03:33:13 +00001461 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00001462 return CompilerType();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001463}
1464
Greg Clayton090d0982011-06-19 03:43:27 +00001465static inline bool
Sean Callanan6d9f5db2011-10-15 01:15:07 +00001466check_op_param (uint32_t op_kind, bool unary, bool binary, uint32_t num_params)
Greg Clayton090d0982011-06-19 03:43:27 +00001467{
Sean Callanan6d9f5db2011-10-15 01:15:07 +00001468 // Special-case call since it can take any number of operands
1469 if(op_kind == OO_Call)
1470 return true;
1471
Bruce Mitchenerd93c4a32014-07-01 21:22:11 +00001472 // The parameter count doesn't include "this"
Greg Clayton090d0982011-06-19 03:43:27 +00001473 if (num_params == 0)
1474 return unary;
1475 if (num_params == 1)
1476 return binary;
Sean Callanan6d9f5db2011-10-15 01:15:07 +00001477 else
Greg Clayton090d0982011-06-19 03:43:27 +00001478 return false;
1479}
Daniel Dunbardacdfb52011-10-31 22:50:57 +00001480
Greg Clayton090d0982011-06-19 03:43:27 +00001481bool
1482ClangASTContext::CheckOverloadedOperatorKindParameterCount (uint32_t op_kind, uint32_t num_params)
1483{
Sean Callanan5b26f272012-02-04 08:49:35 +00001484 switch (op_kind)
1485 {
1486 default:
1487 break;
1488 // C++ standard allows any number of arguments to new/delete
1489 case OO_New:
1490 case OO_Array_New:
1491 case OO_Delete:
1492 case OO_Array_Delete:
1493 return true;
1494 }
1495
Sean Callanan6d9f5db2011-10-15 01:15:07 +00001496#define OVERLOADED_OPERATOR(Name,Spelling,Token,Unary,Binary,MemberOnly) case OO_##Name: return check_op_param (op_kind, Unary, Binary, num_params);
Greg Clayton090d0982011-06-19 03:43:27 +00001497 switch (op_kind)
1498 {
1499#include "clang/Basic/OperatorKinds.def"
1500 default: break;
1501 }
1502 return false;
1503}
1504
Greg Clayton57ee3062013-07-11 22:46:58 +00001505clang::AccessSpecifier
1506ClangASTContext::UnifyAccessSpecifiers (clang::AccessSpecifier lhs, clang::AccessSpecifier rhs)
Sean Callanane8c0cfb2012-03-02 01:03:45 +00001507{
1508 clang::AccessSpecifier ret = lhs;
1509
1510 // Make the access equal to the stricter of the field and the nested field's access
1511 switch (ret)
1512 {
1513 case clang::AS_none:
1514 break;
1515 case clang::AS_private:
1516 break;
1517 case clang::AS_protected:
1518 if (rhs == AS_private)
1519 ret = AS_private;
1520 break;
1521 case clang::AS_public:
1522 ret = rhs;
1523 break;
1524 }
1525
1526 return ret;
1527}
1528
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001529bool
1530ClangASTContext::FieldIsBitfield (FieldDecl* field, uint32_t& bitfield_bit_size)
1531{
1532 return FieldIsBitfield(getASTContext(), field, bitfield_bit_size);
1533}
1534
1535bool
1536ClangASTContext::FieldIsBitfield
1537(
Greg Clayton6beaaa62011-01-17 03:46:26 +00001538 ASTContext *ast,
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001539 FieldDecl* field,
1540 uint32_t& bitfield_bit_size
1541)
1542{
Ed Masted4612ad2014-04-20 13:17:36 +00001543 if (ast == nullptr || field == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001544 return false;
1545
1546 if (field->isBitField())
1547 {
1548 Expr* bit_width_expr = field->getBitWidth();
1549 if (bit_width_expr)
1550 {
1551 llvm::APSInt bit_width_apsint;
Greg Clayton6beaaa62011-01-17 03:46:26 +00001552 if (bit_width_expr->isIntegerConstantExpr(bit_width_apsint, *ast))
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001553 {
1554 bitfield_bit_size = bit_width_apsint.getLimitedValue(UINT32_MAX);
1555 return true;
1556 }
1557 }
1558 }
1559 return false;
1560}
1561
1562bool
1563ClangASTContext::RecordHasFields (const RecordDecl *record_decl)
1564{
Ed Masted4612ad2014-04-20 13:17:36 +00001565 if (record_decl == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001566 return false;
1567
1568 if (!record_decl->field_empty())
1569 return true;
1570
1571 // No fields, lets check this is a CXX record and check the base classes
1572 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1573 if (cxx_record_decl)
1574 {
1575 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1576 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1577 base_class != base_class_end;
1578 ++base_class)
1579 {
1580 const CXXRecordDecl *base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
1581 if (RecordHasFields(base_class_decl))
1582 return true;
1583 }
1584 }
1585 return false;
1586}
1587
Greg Clayton8cf05932010-07-22 18:30:50 +00001588#pragma mark Objective C Classes
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001589
Greg Claytona1e5dc82015-08-11 22:53:00 +00001590CompilerType
Sean Callananad880762012-04-18 01:06:17 +00001591ClangASTContext::CreateObjCClass
Greg Clayton8cf05932010-07-22 18:30:50 +00001592(
1593 const char *name,
1594 DeclContext *decl_ctx,
1595 bool isForwardDecl,
Sean Callananad880762012-04-18 01:06:17 +00001596 bool isInternal,
Jim Ingham379397632012-10-27 02:54:13 +00001597 ClangASTMetadata *metadata
Greg Clayton8cf05932010-07-22 18:30:50 +00001598)
1599{
Greg Clayton6beaaa62011-01-17 03:46:26 +00001600 ASTContext *ast = getASTContext();
Ed Masted4612ad2014-04-20 13:17:36 +00001601 assert (ast != nullptr);
Greg Clayton8cf05932010-07-22 18:30:50 +00001602 assert (name && name[0]);
Ed Masted4612ad2014-04-20 13:17:36 +00001603 if (decl_ctx == nullptr)
Greg Clayton6beaaa62011-01-17 03:46:26 +00001604 decl_ctx = ast->getTranslationUnitDecl();
Greg Clayton8cf05932010-07-22 18:30:50 +00001605
Greg Clayton6beaaa62011-01-17 03:46:26 +00001606 ObjCInterfaceDecl *decl = ObjCInterfaceDecl::Create (*ast,
Greg Clayton8cf05932010-07-22 18:30:50 +00001607 decl_ctx,
1608 SourceLocation(),
Greg Clayton6beaaa62011-01-17 03:46:26 +00001609 &ast->Idents.get(name),
Ed Masted4612ad2014-04-20 13:17:36 +00001610 nullptr,
Pavel Labath67add942015-07-07 10:11:16 +00001611 nullptr,
Greg Clayton8cf05932010-07-22 18:30:50 +00001612 SourceLocation(),
Sean Callanan5b26f272012-02-04 08:49:35 +00001613 /*isForwardDecl,*/
Greg Clayton8cf05932010-07-22 18:30:50 +00001614 isInternal);
Greg Clayton9e409562010-07-28 02:04:09 +00001615
Jim Ingham379397632012-10-27 02:54:13 +00001616 if (decl && metadata)
Greg Claytond0029442013-03-27 01:48:02 +00001617 SetMetadata(ast, decl, *metadata);
Sean Callananad880762012-04-18 01:06:17 +00001618
Greg Claytona1e5dc82015-08-11 22:53:00 +00001619 return CompilerType (ast, ast->getObjCInterfaceType(decl));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001620}
1621
1622static inline bool
1623BaseSpecifierIsEmpty (const CXXBaseSpecifier *b)
1624{
Greg Clayton6beaaa62011-01-17 03:46:26 +00001625 return ClangASTContext::RecordHasFields(b->getType()->getAsCXXRecordDecl()) == false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001626}
1627
Greg Clayton57ee3062013-07-11 22:46:58 +00001628uint32_t
1629ClangASTContext::GetNumBaseClasses (const CXXRecordDecl *cxx_record_decl, bool omit_empty_base_classes)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001630{
1631 uint32_t num_bases = 0;
1632 if (cxx_record_decl)
1633 {
1634 if (omit_empty_base_classes)
1635 {
1636 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1637 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1638 base_class != base_class_end;
1639 ++base_class)
1640 {
1641 // Skip empty base classes
1642 if (omit_empty_base_classes)
1643 {
1644 if (BaseSpecifierIsEmpty (base_class))
1645 continue;
1646 }
1647 ++num_bases;
1648 }
1649 }
1650 else
1651 num_bases = cxx_record_decl->getNumBases();
1652 }
1653 return num_bases;
1654}
1655
1656
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001657#pragma mark Namespace Declarations
1658
1659NamespaceDecl *
Greg Clayton030a2042011-10-14 21:34:45 +00001660ClangASTContext::GetUniqueNamespaceDeclaration (const char *name, DeclContext *decl_ctx)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001661{
Ed Masted4612ad2014-04-20 13:17:36 +00001662 NamespaceDecl *namespace_decl = nullptr;
Greg Clayton9d3d6882011-10-31 23:51:19 +00001663 ASTContext *ast = getASTContext();
1664 TranslationUnitDecl *translation_unit_decl = ast->getTranslationUnitDecl ();
Ed Masted4612ad2014-04-20 13:17:36 +00001665 if (decl_ctx == nullptr)
Greg Clayton9d3d6882011-10-31 23:51:19 +00001666 decl_ctx = translation_unit_decl;
1667
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001668 if (name)
1669 {
Greg Clayton030a2042011-10-14 21:34:45 +00001670 IdentifierInfo &identifier_info = ast->Idents.get(name);
1671 DeclarationName decl_name (&identifier_info);
1672 clang::DeclContext::lookup_result result = decl_ctx->lookup(decl_name);
Sean Callanan5deaa4c2012-12-21 21:34:42 +00001673 for (NamedDecl *decl : result)
Greg Clayton030a2042011-10-14 21:34:45 +00001674 {
Sean Callanan5deaa4c2012-12-21 21:34:42 +00001675 namespace_decl = dyn_cast<clang::NamespaceDecl>(decl);
Greg Clayton030a2042011-10-14 21:34:45 +00001676 if (namespace_decl)
1677 return namespace_decl;
1678 }
1679
Sean Callanan5b26f272012-02-04 08:49:35 +00001680 namespace_decl = NamespaceDecl::Create(*ast,
1681 decl_ctx,
1682 false,
1683 SourceLocation(),
1684 SourceLocation(),
1685 &identifier_info,
Ed Masted4612ad2014-04-20 13:17:36 +00001686 nullptr);
Greg Clayton030a2042011-10-14 21:34:45 +00001687
Greg Clayton9d3d6882011-10-31 23:51:19 +00001688 decl_ctx->addDecl (namespace_decl);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001689 }
Greg Clayton9d3d6882011-10-31 23:51:19 +00001690 else
1691 {
1692 if (decl_ctx == translation_unit_decl)
1693 {
1694 namespace_decl = translation_unit_decl->getAnonymousNamespace();
1695 if (namespace_decl)
1696 return namespace_decl;
1697
Sean Callanan5b26f272012-02-04 08:49:35 +00001698 namespace_decl = NamespaceDecl::Create(*ast,
1699 decl_ctx,
1700 false,
1701 SourceLocation(),
1702 SourceLocation(),
Ed Masted4612ad2014-04-20 13:17:36 +00001703 nullptr,
1704 nullptr);
Greg Clayton9d3d6882011-10-31 23:51:19 +00001705 translation_unit_decl->setAnonymousNamespace (namespace_decl);
1706 translation_unit_decl->addDecl (namespace_decl);
1707 assert (namespace_decl == translation_unit_decl->getAnonymousNamespace());
1708 }
1709 else
1710 {
1711 NamespaceDecl *parent_namespace_decl = cast<NamespaceDecl>(decl_ctx);
1712 if (parent_namespace_decl)
1713 {
1714 namespace_decl = parent_namespace_decl->getAnonymousNamespace();
1715 if (namespace_decl)
1716 return namespace_decl;
Sean Callanan5b26f272012-02-04 08:49:35 +00001717 namespace_decl = NamespaceDecl::Create(*ast,
1718 decl_ctx,
1719 false,
1720 SourceLocation(),
1721 SourceLocation(),
Ed Masted4612ad2014-04-20 13:17:36 +00001722 nullptr,
1723 nullptr);
Greg Clayton9d3d6882011-10-31 23:51:19 +00001724 parent_namespace_decl->setAnonymousNamespace (namespace_decl);
1725 parent_namespace_decl->addDecl (namespace_decl);
1726 assert (namespace_decl == parent_namespace_decl->getAnonymousNamespace());
1727 }
1728 else
1729 {
1730 // BAD!!!
1731 }
1732 }
1733
1734
1735 if (namespace_decl)
1736 {
1737 // If we make it here, we are creating the anonymous namespace decl
1738 // for the first time, so we need to do the using directive magic
1739 // like SEMA does
1740 UsingDirectiveDecl* using_directive_decl = UsingDirectiveDecl::Create (*ast,
1741 decl_ctx,
1742 SourceLocation(),
1743 SourceLocation(),
1744 NestedNameSpecifierLoc(),
1745 SourceLocation(),
1746 namespace_decl,
1747 decl_ctx);
1748 using_directive_decl->setImplicit();
1749 decl_ctx->addDecl(using_directive_decl);
1750 }
1751 }
1752#ifdef LLDB_CONFIGURATION_DEBUG
1753 VerifyDecl(namespace_decl);
1754#endif
Greg Clayton030a2042011-10-14 21:34:45 +00001755 return namespace_decl;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001756}
1757
1758
Paul Hermand628cbb2015-09-15 23:44:17 +00001759clang::BlockDecl *
1760ClangASTContext::CreateBlockDeclaration (clang::DeclContext *ctx)
1761{
1762 if (ctx != nullptr)
1763 {
1764 clang::BlockDecl *decl = clang::BlockDecl::Create(*getASTContext(), ctx, clang::SourceLocation());
1765 ctx->addDecl(decl);
1766 return decl;
1767 }
1768 return nullptr;
1769}
1770
1771clang::UsingDirectiveDecl *
1772ClangASTContext::CreateUsingDirectiveDeclaration (clang::DeclContext *decl_ctx, clang::NamespaceDecl *ns_decl)
1773{
1774 if (decl_ctx != nullptr && ns_decl != nullptr)
1775 {
1776 // TODO: run LCA between decl_tx and ns_decl
1777 clang::UsingDirectiveDecl *using_decl = clang::UsingDirectiveDecl::Create(*getASTContext(),
1778 decl_ctx,
1779 clang::SourceLocation(),
1780 clang::SourceLocation(),
1781 clang::NestedNameSpecifierLoc(),
1782 clang::SourceLocation(),
1783 ns_decl,
1784 GetTranslationUnitDecl(getASTContext()));
1785 decl_ctx->addDecl(using_decl);
1786 return using_decl;
1787 }
1788 return nullptr;
1789}
1790
1791clang::UsingDecl *
1792ClangASTContext::CreateUsingDeclaration (clang::DeclContext *current_decl_ctx, clang::NamedDecl *target)
1793{
1794 if (current_decl_ctx != nullptr && target != nullptr)
1795 {
1796 clang::UsingDecl *using_decl = clang::UsingDecl::Create(*getASTContext(),
1797 current_decl_ctx,
1798 clang::SourceLocation(),
1799 clang::NestedNameSpecifierLoc(),
1800 clang::DeclarationNameInfo(),
1801 false);
1802 clang::UsingShadowDecl *shadow_decl = clang::UsingShadowDecl::Create(*getASTContext(),
1803 current_decl_ctx,
1804 clang::SourceLocation(),
1805 using_decl,
1806 target);
1807 using_decl->addShadowDecl(shadow_decl);
1808 current_decl_ctx->addDecl(using_decl);
1809 return using_decl;
1810 }
1811 return nullptr;
1812}
1813
1814clang::VarDecl *
1815ClangASTContext::CreateVariableDeclaration (clang::DeclContext *decl_context, const char *name, clang::QualType type)
1816{
1817 if (decl_context != nullptr)
1818 {
1819 clang::VarDecl *var_decl = clang::VarDecl::Create(*getASTContext(),
1820 decl_context,
1821 clang::SourceLocation(),
1822 clang::SourceLocation(),
1823 name && name[0] ? &getASTContext()->Idents.getOwn(name) : nullptr,
1824 type,
1825 nullptr,
1826 clang::SC_None);
1827 var_decl->setAccess(clang::AS_public);
1828 decl_context->addDecl(var_decl);
1829 decl_context->makeDeclVisibleInContext(var_decl);
1830 return var_decl;
1831 }
1832 return nullptr;
1833}
1834
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001835#pragma mark Function Types
1836
1837FunctionDecl *
Greg Clayton57ee3062013-07-11 22:46:58 +00001838ClangASTContext::CreateFunctionDeclaration (DeclContext *decl_ctx,
1839 const char *name,
Greg Claytona1e5dc82015-08-11 22:53:00 +00001840 const CompilerType &function_clang_type,
Greg Clayton57ee3062013-07-11 22:46:58 +00001841 int storage,
1842 bool is_inline)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001843{
Ed Masted4612ad2014-04-20 13:17:36 +00001844 FunctionDecl *func_decl = nullptr;
Greg Clayton147e1fa2011-10-14 22:47:18 +00001845 ASTContext *ast = getASTContext();
Ed Masted4612ad2014-04-20 13:17:36 +00001846 if (decl_ctx == nullptr)
Greg Clayton147e1fa2011-10-14 22:47:18 +00001847 decl_ctx = ast->getTranslationUnitDecl();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001848
Greg Clayton0d551042013-06-28 21:08:47 +00001849
1850 const bool hasWrittenPrototype = true;
1851 const bool isConstexprSpecified = false;
1852
Greg Clayton147e1fa2011-10-14 22:47:18 +00001853 if (name && name[0])
1854 {
1855 func_decl = FunctionDecl::Create (*ast,
1856 decl_ctx,
1857 SourceLocation(),
1858 SourceLocation(),
1859 DeclarationName (&ast->Idents.get(name)),
Greg Claytond8d4a572015-08-11 21:38:15 +00001860 GetQualType(function_clang_type),
Ed Masted4612ad2014-04-20 13:17:36 +00001861 nullptr,
Shawn Best3ab672d2014-10-31 23:20:13 +00001862 (clang::StorageClass)storage,
Greg Clayton0d551042013-06-28 21:08:47 +00001863 is_inline,
1864 hasWrittenPrototype,
1865 isConstexprSpecified);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001866 }
Greg Clayton147e1fa2011-10-14 22:47:18 +00001867 else
1868 {
1869 func_decl = FunctionDecl::Create (*ast,
1870 decl_ctx,
1871 SourceLocation(),
1872 SourceLocation(),
1873 DeclarationName (),
Greg Claytond8d4a572015-08-11 21:38:15 +00001874 GetQualType(function_clang_type),
Ed Masted4612ad2014-04-20 13:17:36 +00001875 nullptr,
Shawn Best3ab672d2014-10-31 23:20:13 +00001876 (clang::StorageClass)storage,
Greg Clayton0d551042013-06-28 21:08:47 +00001877 is_inline,
1878 hasWrittenPrototype,
1879 isConstexprSpecified);
Greg Clayton147e1fa2011-10-14 22:47:18 +00001880 }
1881 if (func_decl)
1882 decl_ctx->addDecl (func_decl);
Sean Callanan5e9e1992011-10-26 01:06:27 +00001883
1884#ifdef LLDB_CONFIGURATION_DEBUG
1885 VerifyDecl(func_decl);
1886#endif
1887
Greg Clayton147e1fa2011-10-14 22:47:18 +00001888 return func_decl;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001889}
1890
Greg Claytona1e5dc82015-08-11 22:53:00 +00001891CompilerType
Greg Clayton6beaaa62011-01-17 03:46:26 +00001892ClangASTContext::CreateFunctionType (ASTContext *ast,
Greg Claytona1e5dc82015-08-11 22:53:00 +00001893 const CompilerType& result_type,
1894 const CompilerType *args,
Sean Callananc81256a2010-09-16 20:40:25 +00001895 unsigned num_args,
1896 bool is_variadic,
1897 unsigned type_quals)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001898{
Ed Masted4612ad2014-04-20 13:17:36 +00001899 assert (ast != nullptr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001900 std::vector<QualType> qual_type_args;
1901 for (unsigned i=0; i<num_args; ++i)
Greg Claytond8d4a572015-08-11 21:38:15 +00001902 qual_type_args.push_back (GetQualType(args[i]));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001903
1904 // TODO: Detect calling convention in DWARF?
Sean Callanan2c777c42011-01-18 23:32:05 +00001905 FunctionProtoType::ExtProtoInfo proto_info;
1906 proto_info.Variadic = is_variadic;
Sylvestre Ledru186ca7d2014-08-01 12:19:15 +00001907 proto_info.ExceptionSpec = EST_None;
Sean Callanan2c777c42011-01-18 23:32:05 +00001908 proto_info.TypeQuals = type_quals;
Sean Callananfb0b7582011-03-15 00:17:19 +00001909 proto_info.RefQualifier = RQ_None;
Sylvestre Ledru186ca7d2014-08-01 12:19:15 +00001910
Greg Claytona1e5dc82015-08-11 22:53:00 +00001911 return CompilerType (ast, ast->getFunctionType (GetQualType(result_type),
Greg Clayton57ee3062013-07-11 22:46:58 +00001912 qual_type_args,
Greg Claytond8d4a572015-08-11 21:38:15 +00001913 proto_info));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001914}
1915
1916ParmVarDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00001917ClangASTContext::CreateParameterDeclaration (const char *name, const CompilerType &param_type, int storage)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001918{
Greg Clayton6beaaa62011-01-17 03:46:26 +00001919 ASTContext *ast = getASTContext();
Ed Masted4612ad2014-04-20 13:17:36 +00001920 assert (ast != nullptr);
Greg Clayton6beaaa62011-01-17 03:46:26 +00001921 return ParmVarDecl::Create(*ast,
1922 ast->getTranslationUnitDecl(),
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001923 SourceLocation(),
Sean Callananfb0b7582011-03-15 00:17:19 +00001924 SourceLocation(),
Ed Masted4612ad2014-04-20 13:17:36 +00001925 name && name[0] ? &ast->Idents.get(name) : nullptr,
Greg Claytond8d4a572015-08-11 21:38:15 +00001926 GetQualType(param_type),
Ed Masted4612ad2014-04-20 13:17:36 +00001927 nullptr,
Shawn Best3ab672d2014-10-31 23:20:13 +00001928 (clang::StorageClass)storage,
Ed Masted4612ad2014-04-20 13:17:36 +00001929 nullptr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001930}
1931
1932void
1933ClangASTContext::SetFunctionParameters (FunctionDecl *function_decl, ParmVarDecl **params, unsigned num_params)
1934{
1935 if (function_decl)
Sean Callanan880e6802011-10-07 23:18:13 +00001936 function_decl->setParams (ArrayRef<ParmVarDecl*>(params, num_params));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001937}
1938
1939
1940#pragma mark Array Types
1941
Greg Claytona1e5dc82015-08-11 22:53:00 +00001942CompilerType
1943ClangASTContext::CreateArrayType (const CompilerType &element_type,
Greg Clayton1c8ef472013-04-05 23:27:21 +00001944 size_t element_count,
1945 bool is_vector)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001946{
Greg Clayton57ee3062013-07-11 22:46:58 +00001947 if (element_type.IsValid())
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001948 {
Greg Clayton6beaaa62011-01-17 03:46:26 +00001949 ASTContext *ast = getASTContext();
Ed Masted4612ad2014-04-20 13:17:36 +00001950 assert (ast != nullptr);
Greg Clayton4ef877f2012-12-06 02:33:54 +00001951
Greg Clayton1c8ef472013-04-05 23:27:21 +00001952 if (is_vector)
1953 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00001954 return CompilerType (ast, ast->getExtVectorType(GetQualType(element_type), element_count));
Greg Clayton4ef877f2012-12-06 02:33:54 +00001955 }
1956 else
1957 {
Greg Clayton1c8ef472013-04-05 23:27:21 +00001958
1959 llvm::APInt ap_element_count (64, element_count);
1960 if (element_count == 0)
1961 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00001962 return CompilerType (ast, ast->getIncompleteArrayType (GetQualType(element_type),
Greg Clayton57ee3062013-07-11 22:46:58 +00001963 ArrayType::Normal,
Greg Claytond8d4a572015-08-11 21:38:15 +00001964 0));
Greg Clayton1c8ef472013-04-05 23:27:21 +00001965 }
1966 else
1967 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00001968 return CompilerType (ast, ast->getConstantArrayType (GetQualType(element_type),
Greg Clayton57ee3062013-07-11 22:46:58 +00001969 ap_element_count,
1970 ArrayType::Normal,
Greg Claytond8d4a572015-08-11 21:38:15 +00001971 0));
Greg Clayton1c8ef472013-04-05 23:27:21 +00001972 }
Greg Clayton4ef877f2012-12-06 02:33:54 +00001973 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001974 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00001975 return CompilerType();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001976}
1977
Greg Claytona1e5dc82015-08-11 22:53:00 +00001978CompilerType
Enrico Granata76b08d52014-10-29 23:08:02 +00001979ClangASTContext::GetOrCreateStructForIdentifier (const ConstString &type_name,
Greg Claytona1e5dc82015-08-11 22:53:00 +00001980 const std::initializer_list< std::pair < const char *, CompilerType > >& type_fields,
Enrico Granataa449e862014-10-30 00:53:28 +00001981 bool packed)
Enrico Granata76b08d52014-10-29 23:08:02 +00001982{
Greg Claytona1e5dc82015-08-11 22:53:00 +00001983 CompilerType type;
Enrico Granata76b08d52014-10-29 23:08:02 +00001984 if ((type = GetTypeForIdentifier<clang::CXXRecordDecl>(type_name)).IsValid())
1985 return type;
1986 type = CreateRecordType(nullptr, lldb::eAccessPublic, type_name.GetCString(), clang::TTK_Struct, lldb::eLanguageTypeC);
Greg Claytond8d4a572015-08-11 21:38:15 +00001987 StartTagDeclarationDefinition(type);
Enrico Granata76b08d52014-10-29 23:08:02 +00001988 for (const auto& field : type_fields)
Greg Claytond8d4a572015-08-11 21:38:15 +00001989 AddFieldToRecordType(type, field.first, field.second, lldb::eAccessPublic, 0);
Enrico Granataa449e862014-10-30 00:53:28 +00001990 if (packed)
Greg Claytond8d4a572015-08-11 21:38:15 +00001991 SetIsPacked(type);
1992 CompleteTagDeclarationDefinition(type);
Enrico Granata76b08d52014-10-29 23:08:02 +00001993 return type;
1994}
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001995
1996#pragma mark Enumeration Types
1997
Greg Claytona1e5dc82015-08-11 22:53:00 +00001998CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00001999ClangASTContext::CreateEnumerationType
Greg Claytonca512b32011-01-14 04:54:56 +00002000(
Greg Claytond8d4a572015-08-11 21:38:15 +00002001 const char *name,
2002 DeclContext *decl_ctx,
2003 const Declaration &decl,
Greg Claytona1e5dc82015-08-11 22:53:00 +00002004 const CompilerType &integer_clang_type
Greg Claytond8d4a572015-08-11 21:38:15 +00002005 )
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002006{
2007 // TODO: Do something intelligent with the Declaration object passed in
2008 // like maybe filling in the SourceLocation with it...
Greg Clayton6beaaa62011-01-17 03:46:26 +00002009 ASTContext *ast = getASTContext();
Greg Claytond8d4a572015-08-11 21:38:15 +00002010
Greg Claytone02b8502010-10-12 04:29:14 +00002011 // TODO: ask about these...
Greg Claytond8d4a572015-08-11 21:38:15 +00002012 // const bool IsScoped = false;
2013 // const bool IsFixed = false;
2014
Greg Clayton6beaaa62011-01-17 03:46:26 +00002015 EnumDecl *enum_decl = EnumDecl::Create (*ast,
Greg Claytonca512b32011-01-14 04:54:56 +00002016 decl_ctx,
Greg Claytone02b8502010-10-12 04:29:14 +00002017 SourceLocation(),
Greg Claytone02b8502010-10-12 04:29:14 +00002018 SourceLocation(),
Ed Masted4612ad2014-04-20 13:17:36 +00002019 name && name[0] ? &ast->Idents.get(name) : nullptr,
2020 nullptr,
Sean Callanan48114472010-12-13 01:26:27 +00002021 false, // IsScoped
2022 false, // IsScopedUsingClassTag
2023 false); // IsFixed
Sean Callanan2652ad22011-01-18 01:03:44 +00002024
2025
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002026 if (enum_decl)
Greg Clayton83ff3892010-09-12 23:17:56 +00002027 {
2028 // TODO: check if we should be setting the promotion type too?
Greg Claytond8d4a572015-08-11 21:38:15 +00002029 enum_decl->setIntegerType(GetQualType(integer_clang_type));
Sean Callanan2652ad22011-01-18 01:03:44 +00002030
2031 enum_decl->setAccess(AS_public); // TODO respect what's in the debug info
2032
Greg Claytona1e5dc82015-08-11 22:53:00 +00002033 return CompilerType (ast, ast->getTagDeclType(enum_decl));
Greg Clayton83ff3892010-09-12 23:17:56 +00002034 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00002035 return CompilerType();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002036}
2037
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002038// Disable this for now since I can't seem to get a nicely formatted float
2039// out of the APFloat class without just getting the float, double or quad
2040// and then using a formatted print on it which defeats the purpose. We ideally
2041// would like to get perfect string values for any kind of float semantics
2042// so we can support remote targets. The code below also requires a patch to
2043// llvm::APInt.
2044//bool
Greg Clayton6beaaa62011-01-17 03:46:26 +00002045//ClangASTContext::ConvertFloatValueToString (ASTContext *ast, clang_type_t clang_type, const uint8_t* bytes, size_t byte_size, int apint_byte_order, std::string &float_str)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002046//{
2047// uint32_t count = 0;
2048// bool is_complex = false;
2049// if (ClangASTContext::IsFloatingPointType (clang_type, count, is_complex))
2050// {
2051// unsigned num_bytes_per_float = byte_size / count;
2052// unsigned num_bits_per_float = num_bytes_per_float * 8;
2053//
2054// float_str.clear();
2055// uint32_t i;
2056// for (i=0; i<count; i++)
2057// {
2058// APInt ap_int(num_bits_per_float, bytes + i * num_bytes_per_float, (APInt::ByteOrder)apint_byte_order);
2059// bool is_ieee = false;
2060// APFloat ap_float(ap_int, is_ieee);
2061// char s[1024];
2062// unsigned int hex_digits = 0;
2063// bool upper_case = false;
2064//
2065// if (ap_float.convertToHexString(s, hex_digits, upper_case, APFloat::rmNearestTiesToEven) > 0)
2066// {
2067// if (i > 0)
2068// float_str.append(", ");
2069// float_str.append(s);
2070// if (i == 1 && is_complex)
2071// float_str.append(1, 'i');
2072// }
2073// }
2074// return !float_str.empty();
2075// }
2076// return false;
2077//}
2078
Greg Claytona1e5dc82015-08-11 22:53:00 +00002079CompilerType
Enrico Granatae8bf7492014-08-15 23:00:02 +00002080ClangASTContext::GetIntTypeFromBitSize (clang::ASTContext *ast,
2081 size_t bit_size, bool is_signed)
2082{
2083 if (ast)
2084 {
2085 if (is_signed)
2086 {
2087 if (bit_size == ast->getTypeSize(ast->SignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002088 return CompilerType(ast, ast->SignedCharTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002089
2090 if (bit_size == ast->getTypeSize(ast->ShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002091 return CompilerType(ast, ast->ShortTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002092
2093 if (bit_size == ast->getTypeSize(ast->IntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002094 return CompilerType(ast, ast->IntTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002095
2096 if (bit_size == ast->getTypeSize(ast->LongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002097 return CompilerType(ast, ast->LongTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002098
2099 if (bit_size == ast->getTypeSize(ast->LongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002100 return CompilerType(ast, ast->LongLongTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002101
2102 if (bit_size == ast->getTypeSize(ast->Int128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002103 return CompilerType(ast, ast->Int128Ty);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002104 }
2105 else
2106 {
2107 if (bit_size == ast->getTypeSize(ast->UnsignedCharTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002108 return CompilerType(ast, ast->UnsignedCharTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002109
2110 if (bit_size == ast->getTypeSize(ast->UnsignedShortTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002111 return CompilerType(ast, ast->UnsignedShortTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002112
2113 if (bit_size == ast->getTypeSize(ast->UnsignedIntTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002114 return CompilerType(ast, ast->UnsignedIntTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002115
2116 if (bit_size == ast->getTypeSize(ast->UnsignedLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002117 return CompilerType(ast, ast->UnsignedLongTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002118
2119 if (bit_size == ast->getTypeSize(ast->UnsignedLongLongTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002120 return CompilerType(ast, ast->UnsignedLongLongTy);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002121
2122 if (bit_size == ast->getTypeSize(ast->UnsignedInt128Ty))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002123 return CompilerType(ast, ast->UnsignedInt128Ty);
Enrico Granatae8bf7492014-08-15 23:00:02 +00002124 }
2125 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00002126 return CompilerType();
Enrico Granatae8bf7492014-08-15 23:00:02 +00002127}
2128
Greg Claytona1e5dc82015-08-11 22:53:00 +00002129CompilerType
Enrico Granatae8bf7492014-08-15 23:00:02 +00002130ClangASTContext::GetPointerSizedIntType (clang::ASTContext *ast, bool is_signed)
2131{
2132 if (ast)
2133 return GetIntTypeFromBitSize(ast, ast->getTypeSize(ast->VoidPtrTy), is_signed);
Greg Claytona1e5dc82015-08-11 22:53:00 +00002134 return CompilerType();
Enrico Granatae8bf7492014-08-15 23:00:02 +00002135}
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002136
Greg Claytona1e5dc82015-08-11 22:53:00 +00002137CompilerType
Greg Claytonbc8fc0f2013-06-11 21:56:55 +00002138ClangASTContext::GetFloatTypeFromBitSize (clang::ASTContext *ast,
2139 size_t bit_size)
2140{
2141 if (ast)
2142 {
2143 if (bit_size == ast->getTypeSize(ast->FloatTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002144 return CompilerType(ast, ast->FloatTy);
Greg Claytonbc8fc0f2013-06-11 21:56:55 +00002145 else if (bit_size == ast->getTypeSize(ast->DoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002146 return CompilerType(ast, ast->DoubleTy);
Greg Claytonbc8fc0f2013-06-11 21:56:55 +00002147 else if (bit_size == ast->getTypeSize(ast->LongDoubleTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002148 return CompilerType(ast, ast->LongDoubleTy);
Greg Claytonbc8fc0f2013-06-11 21:56:55 +00002149 else if (bit_size == ast->getTypeSize(ast->HalfTy))
Greg Claytona1e5dc82015-08-11 22:53:00 +00002150 return CompilerType(ast, ast->HalfTy);
Greg Claytonbc8fc0f2013-06-11 21:56:55 +00002151 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00002152 return CompilerType();
Enrico Granata86027e92012-03-24 01:11:14 +00002153}
2154
2155bool
Greg Claytona2721472011-06-25 00:44:06 +00002156ClangASTContext::GetCompleteDecl (clang::ASTContext *ast,
2157 clang::Decl *decl)
2158{
2159 if (!decl)
2160 return false;
2161
2162 ExternalASTSource *ast_source = ast->getExternalSource();
2163
2164 if (!ast_source)
2165 return false;
2166
2167 if (clang::TagDecl *tag_decl = llvm::dyn_cast<clang::TagDecl>(decl))
2168 {
Greg Clayton219cf312012-03-30 00:51:13 +00002169 if (tag_decl->isCompleteDefinition())
Greg Claytona2721472011-06-25 00:44:06 +00002170 return true;
2171
2172 if (!tag_decl->hasExternalLexicalStorage())
2173 return false;
2174
2175 ast_source->CompleteType(tag_decl);
2176
2177 return !tag_decl->getTypeForDecl()->isIncompleteType();
2178 }
2179 else if (clang::ObjCInterfaceDecl *objc_interface_decl = llvm::dyn_cast<clang::ObjCInterfaceDecl>(decl))
2180 {
Sean Callanan5b26f272012-02-04 08:49:35 +00002181 if (objc_interface_decl->getDefinition())
Greg Claytona2721472011-06-25 00:44:06 +00002182 return true;
2183
2184 if (!objc_interface_decl->hasExternalLexicalStorage())
2185 return false;
2186
2187 ast_source->CompleteType(objc_interface_decl);
2188
Sean Callanan5b26f272012-02-04 08:49:35 +00002189 return !objc_interface_decl->getTypeForDecl()->isIncompleteType();
Greg Claytona2721472011-06-25 00:44:06 +00002190 }
2191 else
2192 {
2193 return false;
2194 }
2195}
2196
Sean Callanan60217122012-04-13 00:10:03 +00002197void
Greg Claytond0029442013-03-27 01:48:02 +00002198ClangASTContext::SetMetadataAsUserID (const void *object,
Jim Ingham379397632012-10-27 02:54:13 +00002199 user_id_t user_id)
2200{
2201 ClangASTMetadata meta_data;
2202 meta_data.SetUserID (user_id);
2203 SetMetadata (object, meta_data);
2204}
2205
2206void
Sean Callanan60217122012-04-13 00:10:03 +00002207ClangASTContext::SetMetadata (clang::ASTContext *ast,
Greg Claytond0029442013-03-27 01:48:02 +00002208 const void *object,
Jim Ingham379397632012-10-27 02:54:13 +00002209 ClangASTMetadata &metadata)
Sean Callanan60217122012-04-13 00:10:03 +00002210{
2211 ClangExternalASTSourceCommon *external_source =
Sean Callananceeb74e2014-12-06 01:03:30 +00002212 ClangExternalASTSourceCommon::Lookup(ast->getExternalSource());
Sean Callanan60217122012-04-13 00:10:03 +00002213
2214 if (external_source)
2215 external_source->SetMetadata(object, metadata);
2216}
2217
Jim Ingham379397632012-10-27 02:54:13 +00002218ClangASTMetadata *
Sean Callanan60217122012-04-13 00:10:03 +00002219ClangASTContext::GetMetadata (clang::ASTContext *ast,
Greg Claytond0029442013-03-27 01:48:02 +00002220 const void *object)
Sean Callanan60217122012-04-13 00:10:03 +00002221{
2222 ClangExternalASTSourceCommon *external_source =
Sean Callananceeb74e2014-12-06 01:03:30 +00002223 ClangExternalASTSourceCommon::Lookup(ast->getExternalSource());
Sean Callanan60217122012-04-13 00:10:03 +00002224
2225 if (external_source && external_source->HasMetadata(object))
2226 return external_source->GetMetadata(object);
2227 else
Ed Masted4612ad2014-04-20 13:17:36 +00002228 return nullptr;
Sean Callanan60217122012-04-13 00:10:03 +00002229}
2230
Greg Clayton2c5f0e92011-08-04 21:02:57 +00002231clang::DeclContext *
2232ClangASTContext::GetAsDeclContext (clang::CXXMethodDecl *cxx_method_decl)
2233{
Sean Callanana87bee82011-08-19 06:19:25 +00002234 return llvm::dyn_cast<clang::DeclContext>(cxx_method_decl);
Greg Clayton2c5f0e92011-08-04 21:02:57 +00002235}
2236
2237clang::DeclContext *
2238ClangASTContext::GetAsDeclContext (clang::ObjCMethodDecl *objc_method_decl)
2239{
Sean Callanana87bee82011-08-19 06:19:25 +00002240 return llvm::dyn_cast<clang::DeclContext>(objc_method_decl);
Greg Clayton2c5f0e92011-08-04 21:02:57 +00002241}
2242
Greg Claytond8d4a572015-08-11 21:38:15 +00002243bool
2244ClangASTContext::SetTagTypeKind (clang::QualType tag_qual_type, int kind) const
2245{
2246 const clang::Type *clang_type = tag_qual_type.getTypePtr();
2247 if (clang_type)
2248 {
2249 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(clang_type);
2250 if (tag_type)
2251 {
2252 clang::TagDecl *tag_decl = llvm::dyn_cast<clang::TagDecl>(tag_type->getDecl());
2253 if (tag_decl)
2254 {
2255 tag_decl->setTagKind ((clang::TagDecl::TagKind)kind);
2256 return true;
2257 }
2258 }
2259 }
2260 return false;
2261}
2262
2263
2264bool
2265ClangASTContext::SetDefaultAccessForRecordFields (clang::RecordDecl* record_decl,
2266 int default_accessibility,
2267 int *assigned_accessibilities,
2268 size_t num_assigned_accessibilities)
2269{
2270 if (record_decl)
2271 {
2272 uint32_t field_idx;
2273 clang::RecordDecl::field_iterator field, field_end;
2274 for (field = record_decl->field_begin(), field_end = record_decl->field_end(), field_idx = 0;
2275 field != field_end;
2276 ++field, ++field_idx)
2277 {
2278 // If no accessibility was assigned, assign the correct one
2279 if (field_idx < num_assigned_accessibilities && assigned_accessibilities[field_idx] == clang::AS_none)
2280 field->setAccess ((clang::AccessSpecifier)default_accessibility);
2281 }
2282 return true;
2283 }
2284 return false;
2285}
2286
2287clang::DeclContext *
Greg Clayton99558cc42015-08-24 23:46:31 +00002288ClangASTContext::GetDeclContextForType (const CompilerType& type)
2289{
2290 return GetDeclContextForType(GetQualType(type));
2291}
2292
2293clang::DeclContext *
Greg Claytond8d4a572015-08-11 21:38:15 +00002294ClangASTContext::GetDeclContextForType (clang::QualType type)
2295{
2296 if (type.isNull())
2297 return nullptr;
2298
2299 clang::QualType qual_type = type.getCanonicalType();
2300 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2301 switch (type_class)
2302 {
Greg Claytond8d4a572015-08-11 21:38:15 +00002303 case clang::Type::ObjCInterface: return llvm::cast<clang::ObjCObjectType>(qual_type.getTypePtr())->getInterface();
2304 case clang::Type::ObjCObjectPointer: return GetDeclContextForType (llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr())->getPointeeType());
2305 case clang::Type::Record: return llvm::cast<clang::RecordType>(qual_type)->getDecl();
2306 case clang::Type::Enum: return llvm::cast<clang::EnumType>(qual_type)->getDecl();
2307 case clang::Type::Typedef: return GetDeclContextForType (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType());
2308 case clang::Type::Elaborated: return GetDeclContextForType (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType());
2309 case clang::Type::Paren: return GetDeclContextForType (llvm::cast<clang::ParenType>(qual_type)->desugar());
Greg Clayton99558cc42015-08-24 23:46:31 +00002310 default:
2311 break;
Greg Claytond8d4a572015-08-11 21:38:15 +00002312 }
2313 // No DeclContext in this type...
2314 return nullptr;
2315}
2316
2317static bool
2318GetCompleteQualType (clang::ASTContext *ast, clang::QualType qual_type, bool allow_completion = true)
2319{
2320 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2321 switch (type_class)
2322 {
2323 case clang::Type::ConstantArray:
2324 case clang::Type::IncompleteArray:
2325 case clang::Type::VariableArray:
2326 {
2327 const clang::ArrayType *array_type = llvm::dyn_cast<clang::ArrayType>(qual_type.getTypePtr());
2328
2329 if (array_type)
2330 return GetCompleteQualType (ast, array_type->getElementType(), allow_completion);
2331 }
2332 break;
2333
2334 case clang::Type::Record:
2335 case clang::Type::Enum:
2336 {
2337 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(qual_type.getTypePtr());
2338 if (tag_type)
2339 {
2340 clang::TagDecl *tag_decl = tag_type->getDecl();
2341 if (tag_decl)
2342 {
2343 if (tag_decl->isCompleteDefinition())
2344 return true;
2345
2346 if (!allow_completion)
2347 return false;
2348
2349 if (tag_decl->hasExternalLexicalStorage())
2350 {
2351 if (ast)
2352 {
2353 clang::ExternalASTSource *external_ast_source = ast->getExternalSource();
2354 if (external_ast_source)
2355 {
2356 external_ast_source->CompleteType(tag_decl);
2357 return !tag_type->isIncompleteType();
2358 }
2359 }
2360 }
2361 return false;
2362 }
2363 }
2364
2365 }
2366 break;
2367
2368 case clang::Type::ObjCObject:
2369 case clang::Type::ObjCInterface:
2370 {
2371 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type);
2372 if (objc_class_type)
2373 {
2374 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
2375 // We currently can't complete objective C types through the newly added ASTContext
2376 // because it only supports TagDecl objects right now...
2377 if (class_interface_decl)
2378 {
2379 if (class_interface_decl->getDefinition())
2380 return true;
2381
2382 if (!allow_completion)
2383 return false;
2384
2385 if (class_interface_decl->hasExternalLexicalStorage())
2386 {
2387 if (ast)
2388 {
2389 clang::ExternalASTSource *external_ast_source = ast->getExternalSource();
2390 if (external_ast_source)
2391 {
2392 external_ast_source->CompleteType (class_interface_decl);
2393 return !objc_class_type->isIncompleteType();
2394 }
2395 }
2396 }
2397 return false;
2398 }
2399 }
2400 }
2401 break;
2402
2403 case clang::Type::Typedef:
2404 return GetCompleteQualType (ast, llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType(), allow_completion);
2405
2406 case clang::Type::Elaborated:
2407 return GetCompleteQualType (ast, llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType(), allow_completion);
2408
2409 case clang::Type::Paren:
2410 return GetCompleteQualType (ast, llvm::cast<clang::ParenType>(qual_type)->desugar(), allow_completion);
2411
2412 default:
2413 break;
2414 }
2415
2416 return true;
2417}
2418
2419static clang::ObjCIvarDecl::AccessControl
2420ConvertAccessTypeToObjCIvarAccessControl (AccessType access)
2421{
2422 switch (access)
2423 {
2424 case eAccessNone: return clang::ObjCIvarDecl::None;
2425 case eAccessPublic: return clang::ObjCIvarDecl::Public;
2426 case eAccessPrivate: return clang::ObjCIvarDecl::Private;
2427 case eAccessProtected: return clang::ObjCIvarDecl::Protected;
2428 case eAccessPackage: return clang::ObjCIvarDecl::Package;
2429 }
2430 return clang::ObjCIvarDecl::None;
2431}
2432
2433
2434//----------------------------------------------------------------------
2435// Tests
2436//----------------------------------------------------------------------
2437
2438bool
2439ClangASTContext::IsAggregateType (void* type)
2440{
2441 clang::QualType qual_type (GetCanonicalQualType(type));
2442
2443 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2444 switch (type_class)
2445 {
2446 case clang::Type::IncompleteArray:
2447 case clang::Type::VariableArray:
2448 case clang::Type::ConstantArray:
2449 case clang::Type::ExtVector:
2450 case clang::Type::Vector:
2451 case clang::Type::Record:
2452 case clang::Type::ObjCObject:
2453 case clang::Type::ObjCInterface:
2454 return true;
2455 case clang::Type::Elaborated:
2456 return IsAggregateType(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr());
2457 case clang::Type::Typedef:
2458 return IsAggregateType(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr());
2459 case clang::Type::Paren:
2460 return IsAggregateType(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr());
2461 default:
2462 break;
2463 }
2464 // The clang type does have a value
2465 return false;
2466}
2467
2468bool
2469ClangASTContext::IsArrayType (void* type,
Greg Claytona1e5dc82015-08-11 22:53:00 +00002470 CompilerType *element_type_ptr,
Greg Claytond8d4a572015-08-11 21:38:15 +00002471 uint64_t *size,
2472 bool *is_incomplete)
2473{
2474 clang::QualType qual_type (GetCanonicalQualType(type));
2475
2476 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2477 switch (type_class)
2478 {
2479 default:
2480 break;
2481
2482 case clang::Type::ConstantArray:
2483 if (element_type_ptr)
Greg Clayton99558cc42015-08-24 23:46:31 +00002484 element_type_ptr->SetCompilerType (getASTContext(), llvm::cast<clang::ConstantArrayType>(qual_type)->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002485 if (size)
2486 *size = llvm::cast<clang::ConstantArrayType>(qual_type)->getSize().getLimitedValue(ULLONG_MAX);
2487 return true;
2488
2489 case clang::Type::IncompleteArray:
2490 if (element_type_ptr)
Greg Clayton99558cc42015-08-24 23:46:31 +00002491 element_type_ptr->SetCompilerType (getASTContext(), llvm::cast<clang::IncompleteArrayType>(qual_type)->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002492 if (size)
2493 *size = 0;
2494 if (is_incomplete)
2495 *is_incomplete = true;
2496 return true;
2497
2498 case clang::Type::VariableArray:
2499 if (element_type_ptr)
Greg Clayton99558cc42015-08-24 23:46:31 +00002500 element_type_ptr->SetCompilerType (getASTContext(), llvm::cast<clang::VariableArrayType>(qual_type)->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002501 if (size)
2502 *size = 0;
2503 return true;
2504
2505 case clang::Type::DependentSizedArray:
2506 if (element_type_ptr)
Greg Clayton99558cc42015-08-24 23:46:31 +00002507 element_type_ptr->SetCompilerType (getASTContext(), llvm::cast<clang::DependentSizedArrayType>(qual_type)->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002508 if (size)
2509 *size = 0;
2510 return true;
2511
2512 case clang::Type::Typedef:
2513 return IsArrayType(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(),
2514 element_type_ptr,
2515 size,
2516 is_incomplete);
2517 case clang::Type::Elaborated:
2518 return IsArrayType(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(),
2519 element_type_ptr,
2520 size,
2521 is_incomplete);
2522 case clang::Type::Paren:
2523 return IsArrayType(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(),
2524 element_type_ptr,
2525 size,
2526 is_incomplete);
2527 }
2528 if (element_type_ptr)
2529 element_type_ptr->Clear();
2530 if (size)
2531 *size = 0;
2532 if (is_incomplete)
2533 *is_incomplete = false;
Bruce Mitchener778e7ab2015-09-16 00:00:16 +00002534 return false;
Greg Claytond8d4a572015-08-11 21:38:15 +00002535}
2536
2537bool
2538ClangASTContext::IsVectorType (void* type,
Greg Claytona1e5dc82015-08-11 22:53:00 +00002539 CompilerType *element_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00002540 uint64_t *size)
2541{
2542 clang::QualType qual_type (GetCanonicalQualType(type));
2543
2544 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2545 switch (type_class)
2546 {
2547 case clang::Type::Vector:
2548 {
2549 const clang::VectorType *vector_type = qual_type->getAs<clang::VectorType>();
2550 if (vector_type)
2551 {
2552 if (size)
2553 *size = vector_type->getNumElements();
2554 if (element_type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00002555 *element_type = CompilerType(getASTContext(), vector_type->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002556 }
2557 return true;
2558 }
2559 break;
2560 case clang::Type::ExtVector:
2561 {
2562 const clang::ExtVectorType *ext_vector_type = qual_type->getAs<clang::ExtVectorType>();
2563 if (ext_vector_type)
2564 {
2565 if (size)
2566 *size = ext_vector_type->getNumElements();
2567 if (element_type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00002568 *element_type = CompilerType(getASTContext(), ext_vector_type->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002569 }
2570 return true;
2571 }
2572 default:
2573 break;
2574 }
2575 return false;
2576}
2577
2578bool
2579ClangASTContext::IsRuntimeGeneratedType (void* type)
2580{
2581 clang::DeclContext* decl_ctx = ClangASTContext::GetASTContext(getASTContext())->GetDeclContextForType(GetQualType(type));
2582 if (!decl_ctx)
2583 return false;
2584
2585 if (!llvm::isa<clang::ObjCInterfaceDecl>(decl_ctx))
2586 return false;
2587
2588 clang::ObjCInterfaceDecl *result_iface_decl = llvm::dyn_cast<clang::ObjCInterfaceDecl>(decl_ctx);
2589
2590 ClangASTMetadata* ast_metadata = ClangASTContext::GetMetadata(getASTContext(), result_iface_decl);
2591 if (!ast_metadata)
2592 return false;
2593 return (ast_metadata->GetISAPtr() != 0);
2594}
2595
2596bool
2597ClangASTContext::IsCharType (void* type)
2598{
2599 return GetQualType(type).getUnqualifiedType()->isCharType();
2600}
2601
2602
2603bool
2604ClangASTContext::IsCompleteType (void* type)
2605{
2606 const bool allow_completion = false;
2607 return GetCompleteQualType (getASTContext(), GetQualType(type), allow_completion);
2608}
2609
2610bool
2611ClangASTContext::IsConst(void* type)
2612{
2613 return GetQualType(type).isConstQualified();
2614}
2615
2616bool
2617ClangASTContext::IsCStringType (void* type, uint32_t &length)
2618{
Greg Claytona1e5dc82015-08-11 22:53:00 +00002619 CompilerType pointee_or_element_clang_type;
Greg Claytond8d4a572015-08-11 21:38:15 +00002620 length = 0;
2621 Flags type_flags (GetTypeInfo (type, &pointee_or_element_clang_type));
2622
2623 if (!pointee_or_element_clang_type.IsValid())
2624 return false;
2625
2626 if (type_flags.AnySet (eTypeIsArray | eTypeIsPointer))
2627 {
2628 if (pointee_or_element_clang_type.IsCharType())
2629 {
2630 if (type_flags.Test (eTypeIsArray))
2631 {
2632 // We know the size of the array and it could be a C string
2633 // since it is an array of characters
2634 length = llvm::cast<clang::ConstantArrayType>(GetCanonicalQualType(type).getTypePtr())->getSize().getLimitedValue();
2635 }
2636 return true;
2637
2638 }
2639 }
2640 return false;
2641}
2642
2643bool
2644ClangASTContext::IsFunctionType (void* type, bool *is_variadic_ptr)
2645{
2646 if (type)
2647 {
2648 clang::QualType qual_type (GetCanonicalQualType(type));
2649
2650 if (qual_type->isFunctionType())
2651 {
2652 if (is_variadic_ptr)
2653 {
2654 const clang::FunctionProtoType *function_proto_type = llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
2655 if (function_proto_type)
2656 *is_variadic_ptr = function_proto_type->isVariadic();
2657 else
2658 *is_variadic_ptr = false;
2659 }
2660 return true;
2661 }
2662
2663 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2664 switch (type_class)
2665 {
2666 default:
2667 break;
2668 case clang::Type::Typedef:
2669 return IsFunctionType(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), nullptr);
2670 case clang::Type::Elaborated:
2671 return IsFunctionType(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), nullptr);
2672 case clang::Type::Paren:
2673 return IsFunctionType(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), nullptr);
2674 case clang::Type::LValueReference:
2675 case clang::Type::RValueReference:
2676 {
2677 const clang::ReferenceType *reference_type = llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
2678 if (reference_type)
2679 return IsFunctionType(reference_type->getPointeeType().getAsOpaquePtr(), nullptr);
2680 }
2681 break;
2682 }
2683 }
2684 return false;
2685}
2686
2687// Used to detect "Homogeneous Floating-point Aggregates"
2688uint32_t
Greg Claytona1e5dc82015-08-11 22:53:00 +00002689ClangASTContext::IsHomogeneousAggregate (void* type, CompilerType* base_type_ptr)
Greg Claytond8d4a572015-08-11 21:38:15 +00002690{
2691 if (!type)
2692 return 0;
2693
2694 clang::QualType qual_type(GetCanonicalQualType(type));
2695 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2696 switch (type_class)
2697 {
2698 case clang::Type::Record:
2699 if (GetCompleteType (type))
2700 {
2701 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
2702 if (cxx_record_decl)
2703 {
2704 if (cxx_record_decl->getNumBases() ||
2705 cxx_record_decl->isDynamicClass())
2706 return 0;
2707 }
2708 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
2709 if (record_type)
2710 {
2711 const clang::RecordDecl *record_decl = record_type->getDecl();
2712 if (record_decl)
2713 {
2714 // We are looking for a structure that contains only floating point types
2715 clang::RecordDecl::field_iterator field_pos, field_end = record_decl->field_end();
2716 uint32_t num_fields = 0;
2717 bool is_hva = false;
2718 bool is_hfa = false;
2719 clang::QualType base_qual_type;
2720 for (field_pos = record_decl->field_begin(); field_pos != field_end; ++field_pos)
2721 {
2722 clang::QualType field_qual_type = field_pos->getType();
2723 if (field_qual_type->isFloatingType())
2724 {
2725 if (field_qual_type->isComplexType())
2726 return 0;
2727 else
2728 {
2729 if (num_fields == 0)
2730 base_qual_type = field_qual_type;
2731 else
2732 {
2733 if (is_hva)
2734 return 0;
2735 is_hfa = true;
2736 if (field_qual_type.getTypePtr() != base_qual_type.getTypePtr())
2737 return 0;
2738 }
2739 }
2740 }
2741 else if (field_qual_type->isVectorType() || field_qual_type->isExtVectorType())
2742 {
2743 const clang::VectorType *array = field_qual_type.getTypePtr()->getAs<clang::VectorType>();
2744 if (array && array->getNumElements() <= 4)
2745 {
2746 if (num_fields == 0)
2747 base_qual_type = array->getElementType();
2748 else
2749 {
2750 if (is_hfa)
2751 return 0;
2752 is_hva = true;
2753 if (field_qual_type.getTypePtr() != base_qual_type.getTypePtr())
2754 return 0;
2755 }
2756 }
2757 else
2758 return 0;
2759 }
2760 else
2761 return 0;
2762 ++num_fields;
2763 }
2764 if (base_type_ptr)
Greg Claytona1e5dc82015-08-11 22:53:00 +00002765 *base_type_ptr = CompilerType (getASTContext(), base_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00002766 return num_fields;
2767 }
2768 }
2769 }
2770 break;
2771
2772 case clang::Type::Typedef:
2773 return IsHomogeneousAggregate(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), base_type_ptr);
2774
2775 case clang::Type::Elaborated:
2776 return IsHomogeneousAggregate(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), base_type_ptr);
2777 default:
2778 break;
2779 }
2780 return 0;
2781}
2782
2783size_t
2784ClangASTContext::GetNumberOfFunctionArguments (void* type)
2785{
2786 if (type)
2787 {
2788 clang::QualType qual_type (GetCanonicalQualType(type));
2789 const clang::FunctionProtoType* func = llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
2790 if (func)
2791 return func->getNumParams();
2792 }
2793 return 0;
2794}
2795
Greg Claytona1e5dc82015-08-11 22:53:00 +00002796CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00002797ClangASTContext::GetFunctionArgumentAtIndex (void* type, const size_t index)
2798{
2799 if (type)
2800 {
2801 clang::QualType qual_type (GetCanonicalQualType(type));
2802 const clang::FunctionProtoType* func = llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
2803 if (func)
2804 {
2805 if (index < func->getNumParams())
Greg Claytona1e5dc82015-08-11 22:53:00 +00002806 return CompilerType(getASTContext(), func->getParamType(index));
Greg Claytond8d4a572015-08-11 21:38:15 +00002807 }
2808 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00002809 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00002810}
2811
2812bool
2813ClangASTContext::IsFunctionPointerType (void* type)
2814{
2815 if (type)
2816 {
2817 clang::QualType qual_type (GetCanonicalQualType(type));
2818
2819 if (qual_type->isFunctionPointerType())
2820 return true;
2821
2822 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2823 switch (type_class)
2824 {
2825 default:
2826 break;
2827 case clang::Type::Typedef:
2828 return IsFunctionPointerType (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr());
2829 case clang::Type::Elaborated:
2830 return IsFunctionPointerType (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr());
2831 case clang::Type::Paren:
2832 return IsFunctionPointerType (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr());
2833
2834 case clang::Type::LValueReference:
2835 case clang::Type::RValueReference:
2836 {
2837 const clang::ReferenceType *reference_type = llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
2838 if (reference_type)
2839 return IsFunctionPointerType(reference_type->getPointeeType().getAsOpaquePtr());
2840 }
2841 break;
2842 }
2843 }
2844 return false;
2845
2846}
2847
2848bool
2849ClangASTContext::IsIntegerType (void* type, bool &is_signed)
2850{
2851 if (!type)
2852 return false;
2853
2854 clang::QualType qual_type (GetCanonicalQualType(type));
2855 const clang::BuiltinType *builtin_type = llvm::dyn_cast<clang::BuiltinType>(qual_type->getCanonicalTypeInternal());
2856
2857 if (builtin_type)
2858 {
2859 if (builtin_type->isInteger())
2860 {
2861 is_signed = builtin_type->isSignedInteger();
2862 return true;
2863 }
2864 }
2865
2866 return false;
2867}
2868
2869bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00002870ClangASTContext::IsPointerType (void* type, CompilerType *pointee_type)
Greg Claytond8d4a572015-08-11 21:38:15 +00002871{
2872 if (type)
2873 {
2874 clang::QualType qual_type (GetCanonicalQualType(type));
2875 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2876 switch (type_class)
2877 {
2878 case clang::Type::Builtin:
2879 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
2880 {
2881 default:
2882 break;
2883 case clang::BuiltinType::ObjCId:
2884 case clang::BuiltinType::ObjCClass:
2885 return true;
2886 }
2887 return false;
2888 case clang::Type::ObjCObjectPointer:
2889 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002890 pointee_type->SetCompilerType (getASTContext(), llvm::cast<clang::ObjCObjectPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002891 return true;
2892 case clang::Type::BlockPointer:
2893 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002894 pointee_type->SetCompilerType (getASTContext(), llvm::cast<clang::BlockPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002895 return true;
2896 case clang::Type::Pointer:
2897 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002898 pointee_type->SetCompilerType (getASTContext(), llvm::cast<clang::PointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002899 return true;
2900 case clang::Type::MemberPointer:
2901 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002902 pointee_type->SetCompilerType (getASTContext(), llvm::cast<clang::MemberPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002903 return true;
2904 case clang::Type::Typedef:
2905 return IsPointerType (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), pointee_type);
2906 case clang::Type::Elaborated:
2907 return IsPointerType (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), pointee_type);
2908 case clang::Type::Paren:
2909 return IsPointerType (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), pointee_type);
2910 default:
2911 break;
2912 }
2913 }
2914 if (pointee_type)
2915 pointee_type->Clear();
2916 return false;
2917}
2918
2919
2920bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00002921ClangASTContext::IsPointerOrReferenceType (void* type, CompilerType *pointee_type)
Greg Claytond8d4a572015-08-11 21:38:15 +00002922{
2923 if (type)
2924 {
2925 clang::QualType qual_type (GetCanonicalQualType(type));
2926 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2927 switch (type_class)
2928 {
2929 case clang::Type::Builtin:
2930 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
2931 {
2932 default:
2933 break;
2934 case clang::BuiltinType::ObjCId:
2935 case clang::BuiltinType::ObjCClass:
2936 return true;
2937 }
2938 return false;
2939 case clang::Type::ObjCObjectPointer:
2940 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002941 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::ObjCObjectPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002942 return true;
2943 case clang::Type::BlockPointer:
2944 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002945 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::BlockPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002946 return true;
2947 case clang::Type::Pointer:
2948 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002949 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::PointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002950 return true;
2951 case clang::Type::MemberPointer:
2952 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002953 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::MemberPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00002954 return true;
2955 case clang::Type::LValueReference:
2956 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002957 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::LValueReferenceType>(qual_type)->desugar());
Greg Claytond8d4a572015-08-11 21:38:15 +00002958 return true;
2959 case clang::Type::RValueReference:
2960 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002961 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::RValueReferenceType>(qual_type)->desugar());
Greg Claytond8d4a572015-08-11 21:38:15 +00002962 return true;
2963 case clang::Type::Typedef:
2964 return IsPointerOrReferenceType(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), pointee_type);
2965 case clang::Type::Elaborated:
2966 return IsPointerOrReferenceType(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), pointee_type);
2967 case clang::Type::Paren:
2968 return IsPointerOrReferenceType(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), pointee_type);
2969 default:
2970 break;
2971 }
2972 }
2973 if (pointee_type)
2974 pointee_type->Clear();
2975 return false;
2976}
2977
2978
2979bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00002980ClangASTContext::IsReferenceType (void* type, CompilerType *pointee_type, bool* is_rvalue)
Greg Claytond8d4a572015-08-11 21:38:15 +00002981{
2982 if (type)
2983 {
2984 clang::QualType qual_type (GetCanonicalQualType(type));
2985 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
2986
2987 switch (type_class)
2988 {
2989 case clang::Type::LValueReference:
2990 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002991 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::LValueReferenceType>(qual_type)->desugar());
Greg Claytond8d4a572015-08-11 21:38:15 +00002992 if (is_rvalue)
2993 *is_rvalue = false;
2994 return true;
2995 case clang::Type::RValueReference:
2996 if (pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00002997 pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::RValueReferenceType>(qual_type)->desugar());
Greg Claytond8d4a572015-08-11 21:38:15 +00002998 if (is_rvalue)
2999 *is_rvalue = true;
3000 return true;
3001 case clang::Type::Typedef:
3002 return IsReferenceType (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), pointee_type, is_rvalue);
3003 case clang::Type::Elaborated:
3004 return IsReferenceType (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), pointee_type, is_rvalue);
3005 case clang::Type::Paren:
3006 return IsReferenceType (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), pointee_type, is_rvalue);
3007
3008 default:
3009 break;
3010 }
3011 }
3012 if (pointee_type)
3013 pointee_type->Clear();
3014 return false;
3015}
3016
3017bool
3018ClangASTContext::IsFloatingPointType (void* type, uint32_t &count, bool &is_complex)
3019{
3020 if (type)
3021 {
3022 clang::QualType qual_type (GetCanonicalQualType(type));
3023
3024 if (const clang::BuiltinType *BT = llvm::dyn_cast<clang::BuiltinType>(qual_type->getCanonicalTypeInternal()))
3025 {
3026 clang::BuiltinType::Kind kind = BT->getKind();
3027 if (kind >= clang::BuiltinType::Float && kind <= clang::BuiltinType::LongDouble)
3028 {
3029 count = 1;
3030 is_complex = false;
3031 return true;
3032 }
3033 }
3034 else if (const clang::ComplexType *CT = llvm::dyn_cast<clang::ComplexType>(qual_type->getCanonicalTypeInternal()))
3035 {
3036 if (IsFloatingPointType (CT->getElementType().getAsOpaquePtr(), count, is_complex))
3037 {
3038 count = 2;
3039 is_complex = true;
3040 return true;
3041 }
3042 }
3043 else if (const clang::VectorType *VT = llvm::dyn_cast<clang::VectorType>(qual_type->getCanonicalTypeInternal()))
3044 {
3045 if (IsFloatingPointType (VT->getElementType().getAsOpaquePtr(), count, is_complex))
3046 {
3047 count = VT->getNumElements();
3048 is_complex = false;
3049 return true;
3050 }
3051 }
3052 }
3053 count = 0;
3054 is_complex = false;
3055 return false;
3056}
3057
3058
3059bool
3060ClangASTContext::IsDefined(void* type)
3061{
3062 if (!type)
3063 return false;
3064
3065 clang::QualType qual_type(GetQualType(type));
3066 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(qual_type.getTypePtr());
3067 if (tag_type)
3068 {
3069 clang::TagDecl *tag_decl = tag_type->getDecl();
3070 if (tag_decl)
3071 return tag_decl->isCompleteDefinition();
3072 return false;
3073 }
3074 else
3075 {
3076 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type);
3077 if (objc_class_type)
3078 {
3079 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
3080 if (class_interface_decl)
3081 return class_interface_decl->getDefinition() != nullptr;
3082 return false;
3083 }
3084 }
3085 return true;
3086}
3087
3088bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003089ClangASTContext::IsObjCClassType (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003090{
3091 if (type)
3092 {
3093 clang::QualType qual_type (GetCanonicalQualType(type));
3094
3095 const clang::ObjCObjectPointerType *obj_pointer_type = llvm::dyn_cast<clang::ObjCObjectPointerType>(qual_type);
3096
3097 if (obj_pointer_type)
3098 return obj_pointer_type->isObjCClassType();
3099 }
3100 return false;
3101}
3102
3103bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003104ClangASTContext::IsObjCObjectOrInterfaceType (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003105{
Ryan Brown57bee1e2015-09-14 22:45:11 +00003106 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00003107 return GetCanonicalQualType(type)->isObjCObjectOrInterfaceType();
3108 return false;
3109}
3110
3111bool
3112ClangASTContext::IsPolymorphicClass (void* type)
3113{
3114 if (type)
3115 {
3116 clang::QualType qual_type(GetCanonicalQualType(type));
3117 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3118 switch (type_class)
3119 {
3120 case clang::Type::Record:
3121 if (GetCompleteType(type))
3122 {
3123 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
3124 const clang::RecordDecl *record_decl = record_type->getDecl();
3125 if (record_decl)
3126 {
3127 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
3128 if (cxx_record_decl)
3129 return cxx_record_decl->isPolymorphic();
3130 }
3131 }
3132 break;
3133
3134 default:
3135 break;
3136 }
3137 }
3138 return false;
3139}
3140
3141bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003142ClangASTContext::IsPossibleDynamicType (void* type, CompilerType *dynamic_pointee_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00003143 bool check_cplusplus,
3144 bool check_objc)
3145{
3146 clang::QualType pointee_qual_type;
3147 if (type)
3148 {
3149 clang::QualType qual_type (GetCanonicalQualType(type));
3150 bool success = false;
3151 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3152 switch (type_class)
3153 {
3154 case clang::Type::Builtin:
3155 if (check_objc && llvm::cast<clang::BuiltinType>(qual_type)->getKind() == clang::BuiltinType::ObjCId)
3156 {
3157 if (dynamic_pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003158 dynamic_pointee_type->SetCompilerType(this, type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003159 return true;
3160 }
3161 break;
3162
3163 case clang::Type::ObjCObjectPointer:
3164 if (check_objc)
3165 {
3166 if (dynamic_pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003167 dynamic_pointee_type->SetCompilerType(getASTContext(), llvm::cast<clang::ObjCObjectPointerType>(qual_type)->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003168 return true;
3169 }
3170 break;
3171
3172 case clang::Type::Pointer:
3173 pointee_qual_type = llvm::cast<clang::PointerType>(qual_type)->getPointeeType();
3174 success = true;
3175 break;
3176
3177 case clang::Type::LValueReference:
3178 case clang::Type::RValueReference:
3179 pointee_qual_type = llvm::cast<clang::ReferenceType>(qual_type)->getPointeeType();
3180 success = true;
3181 break;
3182
3183 case clang::Type::Typedef:
3184 return IsPossibleDynamicType (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(),
3185 dynamic_pointee_type,
3186 check_cplusplus,
3187 check_objc);
3188
3189 case clang::Type::Elaborated:
3190 return IsPossibleDynamicType (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(),
3191 dynamic_pointee_type,
3192 check_cplusplus,
3193 check_objc);
3194
3195 case clang::Type::Paren:
3196 return IsPossibleDynamicType (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(),
3197 dynamic_pointee_type,
3198 check_cplusplus,
3199 check_objc);
3200 default:
3201 break;
3202 }
3203
3204 if (success)
3205 {
3206 // Check to make sure what we are pointing too is a possible dynamic C++ type
3207 // We currently accept any "void *" (in case we have a class that has been
3208 // watered down to an opaque pointer) and virtual C++ classes.
3209 const clang::Type::TypeClass pointee_type_class = pointee_qual_type.getCanonicalType()->getTypeClass();
3210 switch (pointee_type_class)
3211 {
3212 case clang::Type::Builtin:
3213 switch (llvm::cast<clang::BuiltinType>(pointee_qual_type)->getKind())
3214 {
3215 case clang::BuiltinType::UnknownAny:
3216 case clang::BuiltinType::Void:
3217 if (dynamic_pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003218 dynamic_pointee_type->SetCompilerType(getASTContext(), pointee_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003219 return true;
Zachary Turnerdd07e002015-09-16 18:08:45 +00003220 default:
Greg Claytond8d4a572015-08-11 21:38:15 +00003221 break;
3222 }
3223 break;
3224
3225 case clang::Type::Record:
3226 if (check_cplusplus)
3227 {
3228 clang::CXXRecordDecl *cxx_record_decl = pointee_qual_type->getAsCXXRecordDecl();
3229 if (cxx_record_decl)
3230 {
3231 bool is_complete = cxx_record_decl->isCompleteDefinition();
3232
3233 if (is_complete)
3234 success = cxx_record_decl->isDynamicClass();
3235 else
3236 {
3237 ClangASTMetadata *metadata = ClangASTContext::GetMetadata (getASTContext(), cxx_record_decl);
3238 if (metadata)
3239 success = metadata->GetIsDynamicCXXType();
3240 else
3241 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00003242 is_complete = CompilerType(getASTContext(), pointee_qual_type).GetCompleteType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003243 if (is_complete)
3244 success = cxx_record_decl->isDynamicClass();
3245 else
3246 success = false;
3247 }
3248 }
3249
3250 if (success)
3251 {
3252 if (dynamic_pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003253 dynamic_pointee_type->SetCompilerType(getASTContext(), pointee_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003254 return true;
3255 }
3256 }
3257 }
3258 break;
3259
3260 case clang::Type::ObjCObject:
3261 case clang::Type::ObjCInterface:
3262 if (check_objc)
3263 {
3264 if (dynamic_pointee_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003265 dynamic_pointee_type->SetCompilerType(getASTContext(), pointee_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003266 return true;
3267 }
3268 break;
3269
3270 default:
3271 break;
3272 }
3273 }
3274 }
3275 if (dynamic_pointee_type)
3276 dynamic_pointee_type->Clear();
3277 return false;
3278}
3279
3280
3281bool
3282ClangASTContext::IsScalarType (void* type)
3283{
3284 if (!type)
3285 return false;
3286
3287 return (GetTypeInfo (type, nullptr) & eTypeIsScalar) != 0;
3288}
3289
3290bool
3291ClangASTContext::IsTypedefType (void* type)
3292{
3293 if (!type)
3294 return false;
3295 return GetQualType(type)->getTypeClass() == clang::Type::Typedef;
3296}
3297
3298bool
3299ClangASTContext::IsVoidType (void* type)
3300{
3301 if (!type)
3302 return false;
3303 return GetCanonicalQualType(type)->isVoidType();
3304}
3305
3306bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003307ClangASTContext::GetCXXClassName (const CompilerType& type, std::string &class_name)
Greg Claytond8d4a572015-08-11 21:38:15 +00003308{
3309 if (type)
3310 {
3311 clang::QualType qual_type (GetCanonicalQualType(type));
Ryan Brown57bee1e2015-09-14 22:45:11 +00003312 if (!qual_type.isNull())
Greg Claytond8d4a572015-08-11 21:38:15 +00003313 {
Ryan Brown57bee1e2015-09-14 22:45:11 +00003314 clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
3315 if (cxx_record_decl)
3316 {
3317 class_name.assign(cxx_record_decl->getIdentifier()->getNameStart());
3318 return true;
3319 }
Greg Claytond8d4a572015-08-11 21:38:15 +00003320 }
3321 }
3322 class_name.clear();
3323 return false;
3324}
3325
3326
3327bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003328ClangASTContext::IsCXXClassType (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003329{
3330 if (!type)
3331 return false;
3332
3333 clang::QualType qual_type (GetCanonicalQualType(type));
Ryan Brown57bee1e2015-09-14 22:45:11 +00003334 if (!qual_type.isNull() && qual_type->getAsCXXRecordDecl() != nullptr)
Greg Claytond8d4a572015-08-11 21:38:15 +00003335 return true;
3336 return false;
3337}
3338
3339bool
3340ClangASTContext::IsBeingDefined (void* type)
3341{
3342 if (!type)
3343 return false;
3344 clang::QualType qual_type (GetCanonicalQualType(type));
3345 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(qual_type);
3346 if (tag_type)
3347 return tag_type->isBeingDefined();
3348 return false;
3349}
3350
3351bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003352ClangASTContext::IsObjCObjectPointerType (const CompilerType& type, CompilerType *class_type_ptr)
Greg Claytond8d4a572015-08-11 21:38:15 +00003353{
3354 if (!type)
3355 return false;
3356
3357 clang::QualType qual_type (GetCanonicalQualType(type));
Ryan Brown57bee1e2015-09-14 22:45:11 +00003358
3359 if (!qual_type.isNull() && qual_type->isObjCObjectPointerType())
Greg Claytond8d4a572015-08-11 21:38:15 +00003360 {
3361 if (class_type_ptr)
3362 {
3363 if (!qual_type->isObjCClassType() &&
3364 !qual_type->isObjCIdType())
3365 {
3366 const clang::ObjCObjectPointerType *obj_pointer_type = llvm::dyn_cast<clang::ObjCObjectPointerType>(qual_type);
3367 if (obj_pointer_type == nullptr)
3368 class_type_ptr->Clear();
3369 else
Greg Clayton99558cc42015-08-24 23:46:31 +00003370 class_type_ptr->SetCompilerType (type.GetTypeSystem(), clang::QualType(obj_pointer_type->getInterfaceType(), 0).getAsOpaquePtr());
Greg Claytond8d4a572015-08-11 21:38:15 +00003371 }
3372 }
3373 return true;
3374 }
3375 if (class_type_ptr)
3376 class_type_ptr->Clear();
3377 return false;
3378}
3379
3380bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00003381ClangASTContext::GetObjCClassName (const CompilerType& type, std::string &class_name)
Greg Claytond8d4a572015-08-11 21:38:15 +00003382{
3383 if (!type)
3384 return false;
3385
3386 clang::QualType qual_type (GetCanonicalQualType(type));
3387
3388 const clang::ObjCObjectType *object_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type);
3389 if (object_type)
3390 {
3391 const clang::ObjCInterfaceDecl *interface = object_type->getInterface();
3392 if (interface)
3393 {
3394 class_name = interface->getNameAsString();
3395 return true;
3396 }
3397 }
3398 return false;
3399}
3400
3401
3402//----------------------------------------------------------------------
3403// Type Completion
3404//----------------------------------------------------------------------
3405
3406bool
3407ClangASTContext::GetCompleteType (void* type)
3408{
3409 if (!type)
3410 return false;
3411 const bool allow_completion = true;
3412 return GetCompleteQualType (getASTContext(), GetQualType(type), allow_completion);
3413}
3414
3415ConstString
3416ClangASTContext::GetTypeName (void* type)
3417{
3418 std::string type_name;
3419 if (type)
3420 {
3421 clang::PrintingPolicy printing_policy (getASTContext()->getPrintingPolicy());
3422 clang::QualType qual_type(GetQualType(type));
3423 printing_policy.SuppressTagKeyword = true;
3424 printing_policy.LangOpts.WChar = true;
3425 const clang::TypedefType *typedef_type = qual_type->getAs<clang::TypedefType>();
3426 if (typedef_type)
3427 {
3428 const clang::TypedefNameDecl *typedef_decl = typedef_type->getDecl();
3429 type_name = typedef_decl->getQualifiedNameAsString();
3430 }
3431 else
3432 {
3433 type_name = qual_type.getAsString(printing_policy);
3434 }
3435 }
3436 return ConstString(type_name);
3437}
3438
3439uint32_t
Greg Claytona1e5dc82015-08-11 22:53:00 +00003440ClangASTContext::GetTypeInfo (void* type, CompilerType *pointee_or_element_clang_type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003441{
3442 if (!type)
3443 return 0;
3444
3445 if (pointee_or_element_clang_type)
3446 pointee_or_element_clang_type->Clear();
3447
3448 clang::QualType qual_type (GetQualType(type));
3449
3450 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
3451 switch (type_class)
3452 {
3453 case clang::Type::Builtin:
3454 {
3455 const clang::BuiltinType *builtin_type = llvm::dyn_cast<clang::BuiltinType>(qual_type->getCanonicalTypeInternal());
3456
3457 uint32_t builtin_type_flags = eTypeIsBuiltIn | eTypeHasValue;
3458 switch (builtin_type->getKind())
3459 {
3460 case clang::BuiltinType::ObjCId:
3461 case clang::BuiltinType::ObjCClass:
3462 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003463 pointee_or_element_clang_type->SetCompilerType(getASTContext(), getASTContext()->ObjCBuiltinClassTy);
Greg Claytond8d4a572015-08-11 21:38:15 +00003464 builtin_type_flags |= eTypeIsPointer | eTypeIsObjC;
3465 break;
3466
3467 case clang::BuiltinType::ObjCSel:
3468 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003469 pointee_or_element_clang_type->SetCompilerType(getASTContext(), getASTContext()->CharTy);
Greg Claytond8d4a572015-08-11 21:38:15 +00003470 builtin_type_flags |= eTypeIsPointer | eTypeIsObjC;
3471 break;
3472
3473 case clang::BuiltinType::Bool:
3474 case clang::BuiltinType::Char_U:
3475 case clang::BuiltinType::UChar:
3476 case clang::BuiltinType::WChar_U:
3477 case clang::BuiltinType::Char16:
3478 case clang::BuiltinType::Char32:
3479 case clang::BuiltinType::UShort:
3480 case clang::BuiltinType::UInt:
3481 case clang::BuiltinType::ULong:
3482 case clang::BuiltinType::ULongLong:
3483 case clang::BuiltinType::UInt128:
3484 case clang::BuiltinType::Char_S:
3485 case clang::BuiltinType::SChar:
3486 case clang::BuiltinType::WChar_S:
3487 case clang::BuiltinType::Short:
3488 case clang::BuiltinType::Int:
3489 case clang::BuiltinType::Long:
3490 case clang::BuiltinType::LongLong:
3491 case clang::BuiltinType::Int128:
3492 case clang::BuiltinType::Float:
3493 case clang::BuiltinType::Double:
3494 case clang::BuiltinType::LongDouble:
3495 builtin_type_flags |= eTypeIsScalar;
3496 if (builtin_type->isInteger())
3497 {
3498 builtin_type_flags |= eTypeIsInteger;
3499 if (builtin_type->isSignedInteger())
3500 builtin_type_flags |= eTypeIsSigned;
3501 }
3502 else if (builtin_type->isFloatingPoint())
3503 builtin_type_flags |= eTypeIsFloat;
3504 break;
3505 default:
3506 break;
3507 }
3508 return builtin_type_flags;
3509 }
3510
3511 case clang::Type::BlockPointer:
3512 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003513 pointee_or_element_clang_type->SetCompilerType(getASTContext(), qual_type->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003514 return eTypeIsPointer | eTypeHasChildren | eTypeIsBlock;
3515
3516 case clang::Type::Complex:
3517 {
3518 uint32_t complex_type_flags = eTypeIsBuiltIn | eTypeHasValue | eTypeIsComplex;
3519 const clang::ComplexType *complex_type = llvm::dyn_cast<clang::ComplexType>(qual_type->getCanonicalTypeInternal());
3520 if (complex_type)
3521 {
3522 clang::QualType complex_element_type (complex_type->getElementType());
3523 if (complex_element_type->isIntegerType())
3524 complex_type_flags |= eTypeIsFloat;
3525 else if (complex_element_type->isFloatingType())
3526 complex_type_flags |= eTypeIsInteger;
3527 }
3528 return complex_type_flags;
3529 }
3530 break;
3531
3532 case clang::Type::ConstantArray:
3533 case clang::Type::DependentSizedArray:
3534 case clang::Type::IncompleteArray:
3535 case clang::Type::VariableArray:
3536 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003537 pointee_or_element_clang_type->SetCompilerType(getASTContext(), llvm::cast<clang::ArrayType>(qual_type.getTypePtr())->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003538 return eTypeHasChildren | eTypeIsArray;
3539
3540 case clang::Type::DependentName: return 0;
3541 case clang::Type::DependentSizedExtVector: return eTypeHasChildren | eTypeIsVector;
3542 case clang::Type::DependentTemplateSpecialization: return eTypeIsTemplate;
3543 case clang::Type::Decltype: return 0;
3544
3545 case clang::Type::Enum:
3546 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003547 pointee_or_element_clang_type->SetCompilerType(getASTContext(), llvm::cast<clang::EnumType>(qual_type)->getDecl()->getIntegerType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003548 return eTypeIsEnumeration | eTypeHasValue;
3549
3550 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003551 return CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetTypeInfo (pointee_or_element_clang_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003552 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003553 return CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetTypeInfo (pointee_or_element_clang_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003554
3555 case clang::Type::FunctionProto: return eTypeIsFuncPrototype | eTypeHasValue;
3556 case clang::Type::FunctionNoProto: return eTypeIsFuncPrototype | eTypeHasValue;
3557 case clang::Type::InjectedClassName: return 0;
3558
3559 case clang::Type::LValueReference:
3560 case clang::Type::RValueReference:
3561 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003562 pointee_or_element_clang_type->SetCompilerType(getASTContext(), llvm::cast<clang::ReferenceType>(qual_type.getTypePtr())->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003563 return eTypeHasChildren | eTypeIsReference | eTypeHasValue;
3564
3565 case clang::Type::MemberPointer: return eTypeIsPointer | eTypeIsMember | eTypeHasValue;
3566
3567 case clang::Type::ObjCObjectPointer:
3568 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003569 pointee_or_element_clang_type->SetCompilerType(getASTContext(), qual_type->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003570 return eTypeHasChildren | eTypeIsObjC | eTypeIsClass | eTypeIsPointer | eTypeHasValue;
3571
3572 case clang::Type::ObjCObject: return eTypeHasChildren | eTypeIsObjC | eTypeIsClass;
3573 case clang::Type::ObjCInterface: return eTypeHasChildren | eTypeIsObjC | eTypeIsClass;
3574
3575 case clang::Type::Pointer:
3576 if (pointee_or_element_clang_type)
Greg Clayton99558cc42015-08-24 23:46:31 +00003577 pointee_or_element_clang_type->SetCompilerType(getASTContext(), qual_type->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003578 return eTypeHasChildren | eTypeIsPointer | eTypeHasValue;
3579
3580 case clang::Type::Record:
3581 if (qual_type->getAsCXXRecordDecl())
3582 return eTypeHasChildren | eTypeIsClass | eTypeIsCPlusPlus;
3583 else
3584 return eTypeHasChildren | eTypeIsStructUnion;
3585 break;
3586 case clang::Type::SubstTemplateTypeParm: return eTypeIsTemplate;
3587 case clang::Type::TemplateTypeParm: return eTypeIsTemplate;
3588 case clang::Type::TemplateSpecialization: return eTypeIsTemplate;
3589
3590 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003591 return eTypeIsTypedef | CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetTypeInfo (pointee_or_element_clang_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00003592 case clang::Type::TypeOfExpr: return 0;
3593 case clang::Type::TypeOf: return 0;
3594 case clang::Type::UnresolvedUsing: return 0;
3595
3596 case clang::Type::ExtVector:
3597 case clang::Type::Vector:
3598 {
3599 uint32_t vector_type_flags = eTypeHasChildren | eTypeIsVector;
3600 const clang::VectorType *vector_type = llvm::dyn_cast<clang::VectorType>(qual_type->getCanonicalTypeInternal());
3601 if (vector_type)
3602 {
3603 if (vector_type->isIntegerType())
3604 vector_type_flags |= eTypeIsFloat;
3605 else if (vector_type->isFloatingType())
3606 vector_type_flags |= eTypeIsInteger;
3607 }
3608 return vector_type_flags;
3609 }
3610 default: return 0;
3611 }
3612 return 0;
3613}
3614
3615
3616
3617lldb::LanguageType
3618ClangASTContext::GetMinimumLanguage (void* type)
3619{
3620 if (!type)
3621 return lldb::eLanguageTypeC;
3622
3623 // If the type is a reference, then resolve it to what it refers to first:
3624 clang::QualType qual_type (GetCanonicalQualType(type).getNonReferenceType());
3625 if (qual_type->isAnyPointerType())
3626 {
3627 if (qual_type->isObjCObjectPointerType())
3628 return lldb::eLanguageTypeObjC;
3629
3630 clang::QualType pointee_type (qual_type->getPointeeType());
3631 if (pointee_type->getPointeeCXXRecordDecl() != nullptr)
3632 return lldb::eLanguageTypeC_plus_plus;
3633 if (pointee_type->isObjCObjectOrInterfaceType())
3634 return lldb::eLanguageTypeObjC;
3635 if (pointee_type->isObjCClassType())
3636 return lldb::eLanguageTypeObjC;
3637 if (pointee_type.getTypePtr() == getASTContext()->ObjCBuiltinIdTy.getTypePtr())
3638 return lldb::eLanguageTypeObjC;
3639 }
3640 else
3641 {
3642 if (qual_type->isObjCObjectOrInterfaceType())
3643 return lldb::eLanguageTypeObjC;
3644 if (qual_type->getAsCXXRecordDecl())
3645 return lldb::eLanguageTypeC_plus_plus;
3646 switch (qual_type->getTypeClass())
3647 {
3648 default:
3649 break;
3650 case clang::Type::Builtin:
3651 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
3652 {
3653 default:
3654 case clang::BuiltinType::Void:
3655 case clang::BuiltinType::Bool:
3656 case clang::BuiltinType::Char_U:
3657 case clang::BuiltinType::UChar:
3658 case clang::BuiltinType::WChar_U:
3659 case clang::BuiltinType::Char16:
3660 case clang::BuiltinType::Char32:
3661 case clang::BuiltinType::UShort:
3662 case clang::BuiltinType::UInt:
3663 case clang::BuiltinType::ULong:
3664 case clang::BuiltinType::ULongLong:
3665 case clang::BuiltinType::UInt128:
3666 case clang::BuiltinType::Char_S:
3667 case clang::BuiltinType::SChar:
3668 case clang::BuiltinType::WChar_S:
3669 case clang::BuiltinType::Short:
3670 case clang::BuiltinType::Int:
3671 case clang::BuiltinType::Long:
3672 case clang::BuiltinType::LongLong:
3673 case clang::BuiltinType::Int128:
3674 case clang::BuiltinType::Float:
3675 case clang::BuiltinType::Double:
3676 case clang::BuiltinType::LongDouble:
3677 break;
3678
3679 case clang::BuiltinType::NullPtr:
3680 return eLanguageTypeC_plus_plus;
3681
3682 case clang::BuiltinType::ObjCId:
3683 case clang::BuiltinType::ObjCClass:
3684 case clang::BuiltinType::ObjCSel:
3685 return eLanguageTypeObjC;
3686
3687 case clang::BuiltinType::Dependent:
3688 case clang::BuiltinType::Overload:
3689 case clang::BuiltinType::BoundMember:
3690 case clang::BuiltinType::UnknownAny:
3691 break;
3692 }
3693 break;
3694 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003695 return CompilerType(getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetMinimumLanguage();
Greg Claytond8d4a572015-08-11 21:38:15 +00003696 }
3697 }
3698 return lldb::eLanguageTypeC;
3699}
3700
3701lldb::TypeClass
3702ClangASTContext::GetTypeClass (void* type)
3703{
3704 if (!type)
3705 return lldb::eTypeClassInvalid;
3706
3707 clang::QualType qual_type(GetQualType(type));
3708
3709 switch (qual_type->getTypeClass())
3710 {
3711 case clang::Type::UnaryTransform: break;
3712 case clang::Type::FunctionNoProto: return lldb::eTypeClassFunction;
3713 case clang::Type::FunctionProto: return lldb::eTypeClassFunction;
3714 case clang::Type::IncompleteArray: return lldb::eTypeClassArray;
3715 case clang::Type::VariableArray: return lldb::eTypeClassArray;
3716 case clang::Type::ConstantArray: return lldb::eTypeClassArray;
3717 case clang::Type::DependentSizedArray: return lldb::eTypeClassArray;
3718 case clang::Type::DependentSizedExtVector: return lldb::eTypeClassVector;
3719 case clang::Type::ExtVector: return lldb::eTypeClassVector;
3720 case clang::Type::Vector: return lldb::eTypeClassVector;
3721 case clang::Type::Builtin: return lldb::eTypeClassBuiltin;
3722 case clang::Type::ObjCObjectPointer: return lldb::eTypeClassObjCObjectPointer;
3723 case clang::Type::BlockPointer: return lldb::eTypeClassBlockPointer;
3724 case clang::Type::Pointer: return lldb::eTypeClassPointer;
3725 case clang::Type::LValueReference: return lldb::eTypeClassReference;
3726 case clang::Type::RValueReference: return lldb::eTypeClassReference;
3727 case clang::Type::MemberPointer: return lldb::eTypeClassMemberPointer;
3728 case clang::Type::Complex:
3729 if (qual_type->isComplexType())
3730 return lldb::eTypeClassComplexFloat;
3731 else
3732 return lldb::eTypeClassComplexInteger;
3733 case clang::Type::ObjCObject: return lldb::eTypeClassObjCObject;
3734 case clang::Type::ObjCInterface: return lldb::eTypeClassObjCInterface;
3735 case clang::Type::Record:
3736 {
3737 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
3738 const clang::RecordDecl *record_decl = record_type->getDecl();
3739 if (record_decl->isUnion())
3740 return lldb::eTypeClassUnion;
3741 else if (record_decl->isStruct())
3742 return lldb::eTypeClassStruct;
3743 else
3744 return lldb::eTypeClassClass;
3745 }
3746 break;
3747 case clang::Type::Enum: return lldb::eTypeClassEnumeration;
3748 case clang::Type::Typedef: return lldb::eTypeClassTypedef;
3749 case clang::Type::UnresolvedUsing: break;
3750 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003751 return CompilerType(getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetTypeClass();
Greg Claytond8d4a572015-08-11 21:38:15 +00003752 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003753 return CompilerType(getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetTypeClass();
Greg Claytond8d4a572015-08-11 21:38:15 +00003754
3755 case clang::Type::Attributed: break;
3756 case clang::Type::TemplateTypeParm: break;
3757 case clang::Type::SubstTemplateTypeParm: break;
3758 case clang::Type::SubstTemplateTypeParmPack:break;
3759 case clang::Type::Auto: break;
3760 case clang::Type::InjectedClassName: break;
3761 case clang::Type::DependentName: break;
3762 case clang::Type::DependentTemplateSpecialization: break;
3763 case clang::Type::PackExpansion: break;
3764
3765 case clang::Type::TypeOfExpr: break;
3766 case clang::Type::TypeOf: break;
3767 case clang::Type::Decltype: break;
3768 case clang::Type::TemplateSpecialization: break;
3769 case clang::Type::Atomic: break;
3770
3771 // pointer type decayed from an array or function type.
3772 case clang::Type::Decayed: break;
3773 case clang::Type::Adjusted: break;
3774 }
3775 // We don't know hot to display this type...
3776 return lldb::eTypeClassOther;
3777
3778}
3779
3780unsigned
3781ClangASTContext::GetTypeQualifiers(void* type)
3782{
3783 if (type)
3784 return GetQualType(type).getQualifiers().getCVRQualifiers();
3785 return 0;
3786}
3787
3788//----------------------------------------------------------------------
3789// Creating related types
3790//----------------------------------------------------------------------
3791
Greg Claytona1e5dc82015-08-11 22:53:00 +00003792CompilerType
3793ClangASTContext::AddConstModifier (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003794{
Ryan Brown57bee1e2015-09-14 22:45:11 +00003795 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00003796 {
Greg Claytonf73034f2015-09-08 18:15:05 +00003797 // Make sure this type is a clang AST type
Greg Claytond8d4a572015-08-11 21:38:15 +00003798 clang::QualType result(GetQualType(type));
3799 result.addConst();
Greg Claytona1e5dc82015-08-11 22:53:00 +00003800 return CompilerType (type.GetTypeSystem(), result.getAsOpaquePtr());
Greg Claytond8d4a572015-08-11 21:38:15 +00003801 }
Greg Claytonf73034f2015-09-08 18:15:05 +00003802
Greg Claytona1e5dc82015-08-11 22:53:00 +00003803 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003804}
3805
Greg Claytona1e5dc82015-08-11 22:53:00 +00003806CompilerType
3807ClangASTContext::AddRestrictModifier (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003808{
Ryan Brown57bee1e2015-09-14 22:45:11 +00003809 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00003810 {
3811 clang::QualType result(GetQualType(type));
3812 result.getQualifiers().setRestrict (true);
Greg Claytona1e5dc82015-08-11 22:53:00 +00003813 return CompilerType (type.GetTypeSystem(), result.getAsOpaquePtr());
Greg Claytond8d4a572015-08-11 21:38:15 +00003814 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00003815 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003816}
3817
Greg Claytona1e5dc82015-08-11 22:53:00 +00003818CompilerType
3819ClangASTContext::AddVolatileModifier (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00003820{
Ryan Brown57bee1e2015-09-14 22:45:11 +00003821 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00003822 {
3823 clang::QualType result(GetQualType(type));
3824 result.getQualifiers().setVolatile (true);
Greg Claytona1e5dc82015-08-11 22:53:00 +00003825 return CompilerType (type.GetTypeSystem(), result.getAsOpaquePtr());
Greg Claytond8d4a572015-08-11 21:38:15 +00003826 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00003827 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003828}
3829
Greg Claytona1e5dc82015-08-11 22:53:00 +00003830CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00003831ClangASTContext::GetArrayElementType (void* type, uint64_t *stride)
3832{
3833 if (type)
3834 {
3835 clang::QualType qual_type(GetCanonicalQualType(type));
3836
3837 const clang::Type *array_eletype = qual_type.getTypePtr()->getArrayElementTypeNoTypeQual();
3838
3839 if (!array_eletype)
Greg Claytona1e5dc82015-08-11 22:53:00 +00003840 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003841
Greg Claytona1e5dc82015-08-11 22:53:00 +00003842 CompilerType element_type (getASTContext(), array_eletype->getCanonicalTypeUnqualified());
Greg Claytond8d4a572015-08-11 21:38:15 +00003843
3844 // TODO: the real stride will be >= this value.. find the real one!
3845 if (stride)
3846 *stride = element_type.GetByteSize(nullptr);
3847
3848 return element_type;
3849
3850 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00003851 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003852}
3853
Greg Claytona1e5dc82015-08-11 22:53:00 +00003854CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00003855ClangASTContext::GetCanonicalType (void* type)
3856{
3857 if (type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00003858 return CompilerType (getASTContext(), GetCanonicalQualType(type));
3859 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003860}
3861
3862static clang::QualType
3863GetFullyUnqualifiedType_Impl (clang::ASTContext *ast, clang::QualType qual_type)
3864{
3865 if (qual_type->isPointerType())
3866 qual_type = ast->getPointerType(GetFullyUnqualifiedType_Impl(ast, qual_type->getPointeeType()));
3867 else
3868 qual_type = qual_type.getUnqualifiedType();
3869 qual_type.removeLocalConst();
3870 qual_type.removeLocalRestrict();
3871 qual_type.removeLocalVolatile();
3872 return qual_type;
3873}
3874
Greg Claytona1e5dc82015-08-11 22:53:00 +00003875CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00003876ClangASTContext::GetFullyUnqualifiedType (void* type)
3877{
3878 if (type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00003879 return CompilerType(getASTContext(), GetFullyUnqualifiedType_Impl(getASTContext(), GetQualType(type)));
3880 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003881}
3882
3883
3884int
3885ClangASTContext::GetFunctionArgumentCount (void* type)
3886{
3887 if (type)
3888 {
3889 const clang::FunctionProtoType* func = llvm::dyn_cast<clang::FunctionProtoType>(GetCanonicalQualType(type));
3890 if (func)
3891 return func->getNumParams();
3892 }
3893 return -1;
3894}
3895
Greg Claytona1e5dc82015-08-11 22:53:00 +00003896CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00003897ClangASTContext::GetFunctionArgumentTypeAtIndex (void* type, size_t idx)
3898{
3899 if (type)
3900 {
3901 const clang::FunctionProtoType* func = llvm::dyn_cast<clang::FunctionProtoType>(GetCanonicalQualType(type));
3902 if (func)
3903 {
3904 const uint32_t num_args = func->getNumParams();
3905 if (idx < num_args)
Greg Claytona1e5dc82015-08-11 22:53:00 +00003906 return CompilerType(getASTContext(), func->getParamType(idx));
Greg Claytond8d4a572015-08-11 21:38:15 +00003907 }
3908 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00003909 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003910}
3911
Greg Claytona1e5dc82015-08-11 22:53:00 +00003912CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00003913ClangASTContext::GetFunctionReturnType (void* type)
3914{
3915 if (type)
3916 {
3917 clang::QualType qual_type(GetCanonicalQualType(type));
3918 const clang::FunctionProtoType* func = llvm::dyn_cast<clang::FunctionProtoType>(qual_type.getTypePtr());
3919 if (func)
Greg Claytona1e5dc82015-08-11 22:53:00 +00003920 return CompilerType(getASTContext(), func->getReturnType());
Greg Claytond8d4a572015-08-11 21:38:15 +00003921 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00003922 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00003923}
3924
3925size_t
3926ClangASTContext::GetNumMemberFunctions (void* type)
3927{
3928 size_t num_functions = 0;
3929 if (type)
3930 {
3931 clang::QualType qual_type(GetCanonicalQualType(type));
3932 switch (qual_type->getTypeClass()) {
3933 case clang::Type::Record:
3934 if (GetCompleteQualType (getASTContext(), qual_type))
3935 {
3936 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
3937 const clang::RecordDecl *record_decl = record_type->getDecl();
3938 assert(record_decl);
3939 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
3940 if (cxx_record_decl)
3941 num_functions = std::distance(cxx_record_decl->method_begin(), cxx_record_decl->method_end());
3942 }
3943 break;
3944
3945 case clang::Type::ObjCObjectPointer:
3946 if (GetCompleteType(type))
3947 {
3948 const clang::ObjCObjectPointerType *objc_class_type = qual_type->getAsObjCInterfacePointerType();
3949 if (objc_class_type)
3950 {
3951 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterfaceDecl();
3952 if (class_interface_decl)
3953 num_functions = std::distance(class_interface_decl->meth_begin(), class_interface_decl->meth_end());
3954 }
3955 }
3956 break;
3957
3958 case clang::Type::ObjCObject:
3959 case clang::Type::ObjCInterface:
3960 if (GetCompleteType(type))
3961 {
3962 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
3963 if (objc_class_type)
3964 {
3965 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
3966 if (class_interface_decl)
3967 num_functions = std::distance(class_interface_decl->meth_begin(), class_interface_decl->meth_end());
3968 }
3969 }
3970 break;
3971
3972
3973 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003974 return CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetNumMemberFunctions();
Greg Claytond8d4a572015-08-11 21:38:15 +00003975
3976 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003977 return CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetNumMemberFunctions();
Greg Claytond8d4a572015-08-11 21:38:15 +00003978
3979 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00003980 return CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetNumMemberFunctions();
Greg Claytond8d4a572015-08-11 21:38:15 +00003981
3982 default:
3983 break;
3984 }
3985 }
3986 return num_functions;
3987}
3988
3989TypeMemberFunctionImpl
3990ClangASTContext::GetMemberFunctionAtIndex (void* type, size_t idx)
3991{
3992 std::string name("");
3993 MemberFunctionKind kind(MemberFunctionKind::eMemberFunctionKindUnknown);
Greg Claytona1e5dc82015-08-11 22:53:00 +00003994 CompilerType clang_type{};
Greg Claytond8d4a572015-08-11 21:38:15 +00003995 clang::ObjCMethodDecl *method_decl(nullptr);
3996 if (type)
3997 {
3998 clang::QualType qual_type(GetCanonicalQualType(type));
3999 switch (qual_type->getTypeClass()) {
4000 case clang::Type::Record:
4001 if (GetCompleteQualType (getASTContext(), qual_type))
4002 {
4003 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
4004 const clang::RecordDecl *record_decl = record_type->getDecl();
4005 assert(record_decl);
4006 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
4007 if (cxx_record_decl)
4008 {
4009 auto method_iter = cxx_record_decl->method_begin();
4010 auto method_end = cxx_record_decl->method_end();
4011 if (idx < static_cast<size_t>(std::distance(method_iter, method_end)))
4012 {
4013 std::advance(method_iter, idx);
4014 auto method_decl = method_iter->getCanonicalDecl();
4015 if (method_decl)
4016 {
4017 if (!method_decl->getName().empty())
4018 name.assign(method_decl->getName().data());
4019 else
4020 name.clear();
4021 if (method_decl->isStatic())
4022 kind = lldb::eMemberFunctionKindStaticMethod;
4023 else if (llvm::isa<clang::CXXConstructorDecl>(method_decl))
4024 kind = lldb::eMemberFunctionKindConstructor;
4025 else if (llvm::isa<clang::CXXDestructorDecl>(method_decl))
4026 kind = lldb::eMemberFunctionKindDestructor;
4027 else
4028 kind = lldb::eMemberFunctionKindInstanceMethod;
Greg Claytona1e5dc82015-08-11 22:53:00 +00004029 clang_type = CompilerType(getASTContext(),method_decl->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00004030 }
4031 }
4032 }
4033 }
4034 break;
4035
4036 case clang::Type::ObjCObjectPointer:
4037 if (GetCompleteType(type))
4038 {
4039 const clang::ObjCObjectPointerType *objc_class_type = qual_type->getAsObjCInterfacePointerType();
4040 if (objc_class_type)
4041 {
4042 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterfaceDecl();
4043 if (class_interface_decl)
4044 {
4045 auto method_iter = class_interface_decl->meth_begin();
4046 auto method_end = class_interface_decl->meth_end();
4047 if (idx < static_cast<size_t>(std::distance(method_iter, method_end)))
4048 {
4049 std::advance(method_iter, idx);
4050 method_decl = method_iter->getCanonicalDecl();
4051 if (method_decl)
4052 {
4053 name = method_decl->getSelector().getAsString();
4054 if (method_decl->isClassMethod())
4055 kind = lldb::eMemberFunctionKindStaticMethod;
4056 else
4057 kind = lldb::eMemberFunctionKindInstanceMethod;
4058 }
4059 }
4060 }
4061 }
4062 }
4063 break;
4064
4065 case clang::Type::ObjCObject:
4066 case clang::Type::ObjCInterface:
4067 if (GetCompleteType(type))
4068 {
4069 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
4070 if (objc_class_type)
4071 {
4072 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
4073 if (class_interface_decl)
4074 {
4075 auto method_iter = class_interface_decl->meth_begin();
4076 auto method_end = class_interface_decl->meth_end();
4077 if (idx < static_cast<size_t>(std::distance(method_iter, method_end)))
4078 {
4079 std::advance(method_iter, idx);
4080 method_decl = method_iter->getCanonicalDecl();
4081 if (method_decl)
4082 {
4083 name = method_decl->getSelector().getAsString();
4084 if (method_decl->isClassMethod())
4085 kind = lldb::eMemberFunctionKindStaticMethod;
4086 else
4087 kind = lldb::eMemberFunctionKindInstanceMethod;
4088 }
4089 }
4090 }
4091 }
4092 }
4093 break;
4094
4095 case clang::Type::Typedef:
4096 return GetMemberFunctionAtIndex(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), idx);
4097
4098 case clang::Type::Elaborated:
4099 return GetMemberFunctionAtIndex(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), idx);
4100
4101 case clang::Type::Paren:
4102 return GetMemberFunctionAtIndex(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), idx);
4103
4104 default:
4105 break;
4106 }
4107 }
4108
4109 if (kind == eMemberFunctionKindUnknown)
4110 return TypeMemberFunctionImpl();
4111 if (method_decl)
4112 return TypeMemberFunctionImpl(method_decl, name, kind);
4113 if (type)
4114 return TypeMemberFunctionImpl(clang_type, name, kind);
4115
4116 return TypeMemberFunctionImpl();
4117}
4118
Greg Claytona1e5dc82015-08-11 22:53:00 +00004119CompilerType
4120ClangASTContext::GetLValueReferenceType (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00004121{
Ryan Brown57bee1e2015-09-14 22:45:11 +00004122 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00004123 {
Greg Claytonf73034f2015-09-08 18:15:05 +00004124 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Ryan Brown57bee1e2015-09-14 22:45:11 +00004125 return CompilerType(ast->getASTContext(), ast->getASTContext()->getLValueReferenceType(GetQualType(type)));
Greg Claytond8d4a572015-08-11 21:38:15 +00004126 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00004127 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004128}
4129
Greg Claytona1e5dc82015-08-11 22:53:00 +00004130CompilerType
4131ClangASTContext::GetRValueReferenceType (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00004132{
Ryan Brown57bee1e2015-09-14 22:45:11 +00004133 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00004134 {
Greg Claytonf73034f2015-09-08 18:15:05 +00004135 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Ryan Brown57bee1e2015-09-14 22:45:11 +00004136 return CompilerType(ast->getASTContext(), ast->getASTContext()->getRValueReferenceType(GetQualType(type)));
Greg Claytond8d4a572015-08-11 21:38:15 +00004137 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00004138 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004139}
4140
Greg Claytona1e5dc82015-08-11 22:53:00 +00004141CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00004142ClangASTContext::GetNonReferenceType (void* type)
4143{
4144 if (type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00004145 return CompilerType(getASTContext(), GetQualType(type).getNonReferenceType());
4146 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004147}
4148
Greg Claytona1e5dc82015-08-11 22:53:00 +00004149CompilerType
4150ClangASTContext::CreateTypedefType (const CompilerType& type,
Greg Claytond8d4a572015-08-11 21:38:15 +00004151 const char *typedef_name,
Greg Clayton99558cc42015-08-24 23:46:31 +00004152 const CompilerDeclContext &compiler_decl_ctx)
Greg Claytond8d4a572015-08-11 21:38:15 +00004153{
4154 if (type && typedef_name && typedef_name[0])
4155 {
Greg Claytonf73034f2015-09-08 18:15:05 +00004156 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00004157 if (!ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +00004158 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004159 clang::ASTContext* clang_ast = ast->getASTContext();
4160 clang::QualType qual_type (GetQualType(type));
Greg Clayton99558cc42015-08-24 23:46:31 +00004161
4162 clang::DeclContext *decl_ctx = ClangASTContext::DeclContextGetAsDeclContext(compiler_decl_ctx);
Greg Claytond8d4a572015-08-11 21:38:15 +00004163 if (decl_ctx == nullptr)
4164 decl_ctx = ast->getASTContext()->getTranslationUnitDecl();
Greg Clayton99558cc42015-08-24 23:46:31 +00004165
Greg Claytond8d4a572015-08-11 21:38:15 +00004166 clang::TypedefDecl *decl = clang::TypedefDecl::Create (*clang_ast,
4167 decl_ctx,
4168 clang::SourceLocation(),
4169 clang::SourceLocation(),
4170 &clang_ast->Idents.get(typedef_name),
4171 clang_ast->getTrivialTypeSourceInfo(qual_type));
4172
4173 decl->setAccess(clang::AS_public); // TODO respect proper access specifier
4174
4175 // Get a uniqued clang::QualType for the typedef decl type
Greg Claytona1e5dc82015-08-11 22:53:00 +00004176 return CompilerType (clang_ast, clang_ast->getTypedefType (decl));
Greg Claytond8d4a572015-08-11 21:38:15 +00004177 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00004178 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004179
4180}
4181
Greg Claytona1e5dc82015-08-11 22:53:00 +00004182CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00004183ClangASTContext::GetPointeeType (void* type)
4184{
4185 if (type)
4186 {
4187 clang::QualType qual_type(GetQualType(type));
Greg Claytona1e5dc82015-08-11 22:53:00 +00004188 return CompilerType (getASTContext(), qual_type.getTypePtr()->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00004189 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00004190 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004191}
4192
Greg Claytona1e5dc82015-08-11 22:53:00 +00004193CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00004194ClangASTContext::GetPointerType (void* type)
4195{
4196 if (type)
4197 {
4198 clang::QualType qual_type (GetQualType(type));
4199
4200 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
4201 switch (type_class)
4202 {
4203 case clang::Type::ObjCObject:
4204 case clang::Type::ObjCInterface:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004205 return CompilerType(getASTContext(), getASTContext()->getObjCObjectPointerType(qual_type));
Greg Claytond8d4a572015-08-11 21:38:15 +00004206
4207 default:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004208 return CompilerType(getASTContext(), getASTContext()->getPointerType(qual_type));
Greg Claytond8d4a572015-08-11 21:38:15 +00004209 }
4210 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00004211 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004212}
4213
Greg Claytona1e5dc82015-08-11 22:53:00 +00004214CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00004215ClangASTContext::GetTypedefedType (void* type)
4216{
4217 if (type)
4218 {
4219 const clang::TypedefType *typedef_type = llvm::dyn_cast<clang::TypedefType>(GetQualType(type));
4220 if (typedef_type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00004221 return CompilerType (getASTContext(), typedef_type->getDecl()->getUnderlyingType());
Greg Claytond8d4a572015-08-11 21:38:15 +00004222 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00004223 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004224}
4225
Greg Claytona1e5dc82015-08-11 22:53:00 +00004226CompilerType
4227ClangASTContext::RemoveFastQualifiers (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00004228{
Ryan Brown57bee1e2015-09-14 22:45:11 +00004229 if (IsClangType(type))
Greg Claytond8d4a572015-08-11 21:38:15 +00004230 {
4231 clang::QualType qual_type(GetQualType(type));
4232 qual_type.getQualifiers().removeFastQualifiers();
Greg Claytona1e5dc82015-08-11 22:53:00 +00004233 return CompilerType (type.GetTypeSystem(), qual_type.getAsOpaquePtr());
Greg Claytond8d4a572015-08-11 21:38:15 +00004234 }
4235 return type;
4236}
4237
4238
4239//----------------------------------------------------------------------
4240// Create related types using the current type's AST
4241//----------------------------------------------------------------------
4242
Greg Claytona1e5dc82015-08-11 22:53:00 +00004243CompilerType
Greg Clayton99558cc42015-08-24 23:46:31 +00004244ClangASTContext::GetBasicTypeFromAST (lldb::BasicType basic_type)
Greg Claytond8d4a572015-08-11 21:38:15 +00004245{
Greg Clayton99558cc42015-08-24 23:46:31 +00004246 return ClangASTContext::GetBasicType(getASTContext(), basic_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00004247}
4248//----------------------------------------------------------------------
4249// Exploring the type
4250//----------------------------------------------------------------------
4251
4252uint64_t
4253ClangASTContext::GetBitSize (void* type, ExecutionContextScope *exe_scope)
4254{
4255 if (GetCompleteType (type))
4256 {
4257 clang::QualType qual_type(GetCanonicalQualType(type));
4258 switch (qual_type->getTypeClass())
4259 {
4260 case clang::Type::ObjCInterface:
4261 case clang::Type::ObjCObject:
4262 {
4263 ExecutionContext exe_ctx (exe_scope);
4264 Process *process = exe_ctx.GetProcessPtr();
4265 if (process)
4266 {
4267 ObjCLanguageRuntime *objc_runtime = process->GetObjCLanguageRuntime();
4268 if (objc_runtime)
4269 {
4270 uint64_t bit_size = 0;
Greg Claytona1e5dc82015-08-11 22:53:00 +00004271 if (objc_runtime->GetTypeBitSize(CompilerType(getASTContext(), qual_type), bit_size))
Greg Claytond8d4a572015-08-11 21:38:15 +00004272 return bit_size;
4273 }
4274 }
4275 else
4276 {
4277 static bool g_printed = false;
4278 if (!g_printed)
4279 {
4280 StreamString s;
4281 DumpTypeDescription(&s);
4282
4283 llvm::outs() << "warning: trying to determine the size of type ";
4284 llvm::outs() << s.GetString() << "\n";
4285 llvm::outs() << "without a valid ExecutionContext. this is not reliable. please file a bug against LLDB.\n";
4286 llvm::outs() << "backtrace:\n";
4287 llvm::sys::PrintStackTrace(llvm::outs());
4288 llvm::outs() << "\n";
4289 g_printed = true;
4290 }
4291 }
4292 }
4293 // fallthrough
4294 default:
4295 const uint32_t bit_size = getASTContext()->getTypeSize (qual_type);
4296 if (bit_size == 0)
4297 {
4298 if (qual_type->isIncompleteArrayType())
4299 return getASTContext()->getTypeSize (qual_type->getArrayElementTypeNoTypeQual()->getCanonicalTypeUnqualified());
4300 }
4301 if (qual_type->isObjCObjectOrInterfaceType())
4302 return bit_size + getASTContext()->getTypeSize(getASTContext()->ObjCBuiltinClassTy);
4303 return bit_size;
4304 }
4305 }
4306 return 0;
4307}
4308
4309size_t
4310ClangASTContext::GetTypeBitAlign (void* type)
4311{
4312 if (GetCompleteType(type))
4313 return getASTContext()->getTypeAlign(GetQualType(type));
4314 return 0;
4315}
4316
4317
4318lldb::Encoding
4319ClangASTContext::GetEncoding (void* type, uint64_t &count)
4320{
4321 if (!type)
4322 return lldb::eEncodingInvalid;
4323
4324 count = 1;
4325 clang::QualType qual_type(GetCanonicalQualType(type));
4326
4327 switch (qual_type->getTypeClass())
4328 {
4329 case clang::Type::UnaryTransform:
4330 break;
4331
4332 case clang::Type::FunctionNoProto:
4333 case clang::Type::FunctionProto:
4334 break;
4335
4336 case clang::Type::IncompleteArray:
4337 case clang::Type::VariableArray:
4338 break;
4339
4340 case clang::Type::ConstantArray:
4341 break;
4342
4343 case clang::Type::ExtVector:
4344 case clang::Type::Vector:
4345 // TODO: Set this to more than one???
4346 break;
4347
4348 case clang::Type::Builtin:
4349 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
4350 {
4351 default: assert(0 && "Unknown builtin type!");
4352 case clang::BuiltinType::Void:
4353 break;
4354
4355 case clang::BuiltinType::Bool:
4356 case clang::BuiltinType::Char_S:
4357 case clang::BuiltinType::SChar:
4358 case clang::BuiltinType::WChar_S:
4359 case clang::BuiltinType::Char16:
4360 case clang::BuiltinType::Char32:
4361 case clang::BuiltinType::Short:
4362 case clang::BuiltinType::Int:
4363 case clang::BuiltinType::Long:
4364 case clang::BuiltinType::LongLong:
4365 case clang::BuiltinType::Int128: return lldb::eEncodingSint;
4366
4367 case clang::BuiltinType::Char_U:
4368 case clang::BuiltinType::UChar:
4369 case clang::BuiltinType::WChar_U:
4370 case clang::BuiltinType::UShort:
4371 case clang::BuiltinType::UInt:
4372 case clang::BuiltinType::ULong:
4373 case clang::BuiltinType::ULongLong:
4374 case clang::BuiltinType::UInt128: return lldb::eEncodingUint;
4375
4376 case clang::BuiltinType::Float:
4377 case clang::BuiltinType::Double:
4378 case clang::BuiltinType::LongDouble: return lldb::eEncodingIEEE754;
4379
4380 case clang::BuiltinType::ObjCClass:
4381 case clang::BuiltinType::ObjCId:
4382 case clang::BuiltinType::ObjCSel: return lldb::eEncodingUint;
4383
4384 case clang::BuiltinType::NullPtr: return lldb::eEncodingUint;
4385
4386 case clang::BuiltinType::Kind::ARCUnbridgedCast:
4387 case clang::BuiltinType::Kind::BoundMember:
4388 case clang::BuiltinType::Kind::BuiltinFn:
4389 case clang::BuiltinType::Kind::Dependent:
4390 case clang::BuiltinType::Kind::Half:
4391 case clang::BuiltinType::Kind::OCLEvent:
4392 case clang::BuiltinType::Kind::OCLImage1d:
4393 case clang::BuiltinType::Kind::OCLImage1dArray:
4394 case clang::BuiltinType::Kind::OCLImage1dBuffer:
4395 case clang::BuiltinType::Kind::OCLImage2d:
4396 case clang::BuiltinType::Kind::OCLImage2dArray:
4397 case clang::BuiltinType::Kind::OCLImage3d:
4398 case clang::BuiltinType::Kind::OCLSampler:
4399 case clang::BuiltinType::Kind::Overload:
4400 case clang::BuiltinType::Kind::PseudoObject:
4401 case clang::BuiltinType::Kind::UnknownAny:
4402 break;
4403 }
4404 break;
4405 // All pointer types are represented as unsigned integer encodings.
4406 // We may nee to add a eEncodingPointer if we ever need to know the
4407 // difference
4408 case clang::Type::ObjCObjectPointer:
4409 case clang::Type::BlockPointer:
4410 case clang::Type::Pointer:
4411 case clang::Type::LValueReference:
4412 case clang::Type::RValueReference:
4413 case clang::Type::MemberPointer: return lldb::eEncodingUint;
4414 case clang::Type::Complex:
4415 {
4416 lldb::Encoding encoding = lldb::eEncodingIEEE754;
4417 if (qual_type->isComplexType())
4418 encoding = lldb::eEncodingIEEE754;
4419 else
4420 {
4421 const clang::ComplexType *complex_type = qual_type->getAsComplexIntegerType();
4422 if (complex_type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00004423 encoding = CompilerType(getASTContext(), complex_type->getElementType()).GetEncoding(count);
Greg Claytond8d4a572015-08-11 21:38:15 +00004424 else
4425 encoding = lldb::eEncodingSint;
4426 }
4427 count = 2;
4428 return encoding;
4429 }
4430
4431 case clang::Type::ObjCInterface: break;
4432 case clang::Type::Record: break;
4433 case clang::Type::Enum: return lldb::eEncodingSint;
4434 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004435 return CompilerType(getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetEncoding(count);
Greg Claytond8d4a572015-08-11 21:38:15 +00004436
4437 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004438 return CompilerType(getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetEncoding(count);
Greg Claytond8d4a572015-08-11 21:38:15 +00004439
4440 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004441 return CompilerType(getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetEncoding(count);
Greg Claytond8d4a572015-08-11 21:38:15 +00004442
4443 case clang::Type::DependentSizedArray:
4444 case clang::Type::DependentSizedExtVector:
4445 case clang::Type::UnresolvedUsing:
4446 case clang::Type::Attributed:
4447 case clang::Type::TemplateTypeParm:
4448 case clang::Type::SubstTemplateTypeParm:
4449 case clang::Type::SubstTemplateTypeParmPack:
4450 case clang::Type::Auto:
4451 case clang::Type::InjectedClassName:
4452 case clang::Type::DependentName:
4453 case clang::Type::DependentTemplateSpecialization:
4454 case clang::Type::PackExpansion:
4455 case clang::Type::ObjCObject:
4456
4457 case clang::Type::TypeOfExpr:
4458 case clang::Type::TypeOf:
4459 case clang::Type::Decltype:
4460 case clang::Type::TemplateSpecialization:
4461 case clang::Type::Atomic:
4462 case clang::Type::Adjusted:
4463 break;
4464
4465 // pointer type decayed from an array or function type.
4466 case clang::Type::Decayed:
4467 break;
4468 }
4469 count = 0;
4470 return lldb::eEncodingInvalid;
4471}
4472
4473lldb::Format
4474ClangASTContext::GetFormat (void* type)
4475{
4476 if (!type)
4477 return lldb::eFormatDefault;
4478
4479 clang::QualType qual_type(GetCanonicalQualType(type));
4480
4481 switch (qual_type->getTypeClass())
4482 {
4483 case clang::Type::UnaryTransform:
4484 break;
4485
4486 case clang::Type::FunctionNoProto:
4487 case clang::Type::FunctionProto:
4488 break;
4489
4490 case clang::Type::IncompleteArray:
4491 case clang::Type::VariableArray:
4492 break;
4493
4494 case clang::Type::ConstantArray:
4495 return lldb::eFormatVoid; // no value
4496
4497 case clang::Type::ExtVector:
4498 case clang::Type::Vector:
4499 break;
4500
4501 case clang::Type::Builtin:
4502 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
4503 {
4504 //default: assert(0 && "Unknown builtin type!");
4505 case clang::BuiltinType::UnknownAny:
4506 case clang::BuiltinType::Void:
4507 case clang::BuiltinType::BoundMember:
4508 break;
4509
4510 case clang::BuiltinType::Bool: return lldb::eFormatBoolean;
4511 case clang::BuiltinType::Char_S:
4512 case clang::BuiltinType::SChar:
4513 case clang::BuiltinType::WChar_S:
4514 case clang::BuiltinType::Char_U:
4515 case clang::BuiltinType::UChar:
4516 case clang::BuiltinType::WChar_U: return lldb::eFormatChar;
4517 case clang::BuiltinType::Char16: return lldb::eFormatUnicode16;
4518 case clang::BuiltinType::Char32: return lldb::eFormatUnicode32;
4519 case clang::BuiltinType::UShort: return lldb::eFormatUnsigned;
4520 case clang::BuiltinType::Short: return lldb::eFormatDecimal;
4521 case clang::BuiltinType::UInt: return lldb::eFormatUnsigned;
4522 case clang::BuiltinType::Int: return lldb::eFormatDecimal;
4523 case clang::BuiltinType::ULong: return lldb::eFormatUnsigned;
4524 case clang::BuiltinType::Long: return lldb::eFormatDecimal;
4525 case clang::BuiltinType::ULongLong: return lldb::eFormatUnsigned;
4526 case clang::BuiltinType::LongLong: return lldb::eFormatDecimal;
4527 case clang::BuiltinType::UInt128: return lldb::eFormatUnsigned;
4528 case clang::BuiltinType::Int128: return lldb::eFormatDecimal;
4529 case clang::BuiltinType::Float: return lldb::eFormatFloat;
4530 case clang::BuiltinType::Double: return lldb::eFormatFloat;
4531 case clang::BuiltinType::LongDouble: return lldb::eFormatFloat;
Zachary Turnerdd07e002015-09-16 18:08:45 +00004532 default:
Greg Claytond8d4a572015-08-11 21:38:15 +00004533 return lldb::eFormatHex;
4534 }
4535 break;
4536 case clang::Type::ObjCObjectPointer: return lldb::eFormatHex;
4537 case clang::Type::BlockPointer: return lldb::eFormatHex;
4538 case clang::Type::Pointer: return lldb::eFormatHex;
4539 case clang::Type::LValueReference:
4540 case clang::Type::RValueReference: return lldb::eFormatHex;
4541 case clang::Type::MemberPointer: break;
4542 case clang::Type::Complex:
4543 {
4544 if (qual_type->isComplexType())
4545 return lldb::eFormatComplex;
4546 else
4547 return lldb::eFormatComplexInteger;
4548 }
4549 case clang::Type::ObjCInterface: break;
4550 case clang::Type::Record: break;
4551 case clang::Type::Enum: return lldb::eFormatEnum;
4552 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004553 return CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetFormat();
Greg Claytond8d4a572015-08-11 21:38:15 +00004554 case clang::Type::Auto:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004555 return CompilerType (getASTContext(), llvm::cast<clang::AutoType>(qual_type)->desugar()).GetFormat();
Greg Claytond8d4a572015-08-11 21:38:15 +00004556 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004557 return CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetFormat();
Greg Claytond8d4a572015-08-11 21:38:15 +00004558 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004559 return CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetFormat();
Greg Claytond8d4a572015-08-11 21:38:15 +00004560 case clang::Type::DependentSizedArray:
4561 case clang::Type::DependentSizedExtVector:
4562 case clang::Type::UnresolvedUsing:
4563 case clang::Type::Attributed:
4564 case clang::Type::TemplateTypeParm:
4565 case clang::Type::SubstTemplateTypeParm:
4566 case clang::Type::SubstTemplateTypeParmPack:
4567 case clang::Type::InjectedClassName:
4568 case clang::Type::DependentName:
4569 case clang::Type::DependentTemplateSpecialization:
4570 case clang::Type::PackExpansion:
4571 case clang::Type::ObjCObject:
4572
4573 case clang::Type::TypeOfExpr:
4574 case clang::Type::TypeOf:
4575 case clang::Type::Decltype:
4576 case clang::Type::TemplateSpecialization:
4577 case clang::Type::Atomic:
4578 case clang::Type::Adjusted:
4579 break;
4580
4581 // pointer type decayed from an array or function type.
4582 case clang::Type::Decayed:
4583 break;
4584 }
4585 // We don't know hot to display this type...
4586 return lldb::eFormatBytes;
4587}
4588
4589static bool
4590ObjCDeclHasIVars (clang::ObjCInterfaceDecl *class_interface_decl, bool check_superclass)
4591{
4592 while (class_interface_decl)
4593 {
4594 if (class_interface_decl->ivar_size() > 0)
4595 return true;
4596
4597 if (check_superclass)
4598 class_interface_decl = class_interface_decl->getSuperClass();
4599 else
4600 break;
4601 }
4602 return false;
4603}
4604
4605uint32_t
4606ClangASTContext::GetNumChildren (void* type, bool omit_empty_base_classes)
4607{
4608 if (!type)
4609 return 0;
4610
4611 uint32_t num_children = 0;
4612 clang::QualType qual_type(GetQualType(type));
4613 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
4614 switch (type_class)
4615 {
4616 case clang::Type::Builtin:
4617 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
4618 {
4619 case clang::BuiltinType::ObjCId: // child is Class
4620 case clang::BuiltinType::ObjCClass: // child is Class
4621 num_children = 1;
4622 break;
4623
4624 default:
4625 break;
4626 }
4627 break;
4628
4629 case clang::Type::Complex: return 0;
4630
4631 case clang::Type::Record:
4632 if (GetCompleteQualType (getASTContext(), qual_type))
4633 {
4634 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
4635 const clang::RecordDecl *record_decl = record_type->getDecl();
4636 assert(record_decl);
4637 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
4638 if (cxx_record_decl)
4639 {
4640 if (omit_empty_base_classes)
4641 {
4642 // Check each base classes to see if it or any of its
4643 // base classes contain any fields. This can help
4644 // limit the noise in variable views by not having to
4645 // show base classes that contain no members.
4646 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
4647 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
4648 base_class != base_class_end;
4649 ++base_class)
4650 {
4651 const clang::CXXRecordDecl *base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
4652
4653 // Skip empty base classes
4654 if (ClangASTContext::RecordHasFields(base_class_decl) == false)
4655 continue;
4656
4657 num_children++;
4658 }
4659 }
4660 else
4661 {
4662 // Include all base classes
4663 num_children += cxx_record_decl->getNumBases();
4664 }
4665
4666 }
4667 clang::RecordDecl::field_iterator field, field_end;
4668 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field)
4669 ++num_children;
4670 }
4671 break;
4672
4673 case clang::Type::ObjCObject:
4674 case clang::Type::ObjCInterface:
4675 if (GetCompleteQualType (getASTContext(), qual_type))
4676 {
4677 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
4678 assert (objc_class_type);
4679 if (objc_class_type)
4680 {
4681 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
4682
4683 if (class_interface_decl)
4684 {
4685
4686 clang::ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
4687 if (superclass_interface_decl)
4688 {
4689 if (omit_empty_base_classes)
4690 {
4691 if (ObjCDeclHasIVars (superclass_interface_decl, true))
4692 ++num_children;
4693 }
4694 else
4695 ++num_children;
4696 }
4697
4698 num_children += class_interface_decl->ivar_size();
4699 }
4700 }
4701 }
4702 break;
4703
4704 case clang::Type::ObjCObjectPointer:
4705 {
4706 const clang::ObjCObjectPointerType *pointer_type = llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr());
4707 clang::QualType pointee_type = pointer_type->getPointeeType();
Greg Claytona1e5dc82015-08-11 22:53:00 +00004708 uint32_t num_pointee_children = CompilerType (getASTContext(),pointee_type).GetNumChildren (omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00004709 // If this type points to a simple type, then it has 1 child
4710 if (num_pointee_children == 0)
4711 num_children = 1;
4712 else
4713 num_children = num_pointee_children;
4714 }
4715 break;
4716
4717 case clang::Type::Vector:
4718 case clang::Type::ExtVector:
4719 num_children = llvm::cast<clang::VectorType>(qual_type.getTypePtr())->getNumElements();
4720 break;
4721
4722 case clang::Type::ConstantArray:
4723 num_children = llvm::cast<clang::ConstantArrayType>(qual_type.getTypePtr())->getSize().getLimitedValue();
4724 break;
4725
4726 case clang::Type::Pointer:
4727 {
4728 const clang::PointerType *pointer_type = llvm::cast<clang::PointerType>(qual_type.getTypePtr());
4729 clang::QualType pointee_type (pointer_type->getPointeeType());
Greg Claytona1e5dc82015-08-11 22:53:00 +00004730 uint32_t num_pointee_children = CompilerType (getASTContext(),pointee_type).GetNumChildren (omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00004731 if (num_pointee_children == 0)
4732 {
4733 // We have a pointer to a pointee type that claims it has no children.
4734 // We will want to look at
4735 num_children = GetNumPointeeChildren (pointee_type);
4736 }
4737 else
4738 num_children = num_pointee_children;
4739 }
4740 break;
4741
4742 case clang::Type::LValueReference:
4743 case clang::Type::RValueReference:
4744 {
4745 const clang::ReferenceType *reference_type = llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
4746 clang::QualType pointee_type = reference_type->getPointeeType();
Greg Claytona1e5dc82015-08-11 22:53:00 +00004747 uint32_t num_pointee_children = CompilerType (getASTContext(), pointee_type).GetNumChildren (omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00004748 // If this type points to a simple type, then it has 1 child
4749 if (num_pointee_children == 0)
4750 num_children = 1;
4751 else
4752 num_children = num_pointee_children;
4753 }
4754 break;
4755
4756
4757 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004758 num_children = CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetNumChildren (omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00004759 break;
4760
4761 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004762 num_children = CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetNumChildren (omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00004763 break;
4764
4765 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004766 num_children = CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetNumChildren (omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00004767 break;
4768 default:
4769 break;
4770 }
4771 return num_children;
4772}
4773
4774lldb::BasicType
4775ClangASTContext::GetBasicTypeEnumeration (void* type)
4776{
4777 if (type)
4778 {
4779 clang::QualType qual_type(GetQualType(type));
4780 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
4781 if (type_class == clang::Type::Builtin)
4782 {
4783 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
4784 {
4785 case clang::BuiltinType::Void: return eBasicTypeVoid;
4786 case clang::BuiltinType::Bool: return eBasicTypeBool;
4787 case clang::BuiltinType::Char_S: return eBasicTypeSignedChar;
4788 case clang::BuiltinType::Char_U: return eBasicTypeUnsignedChar;
4789 case clang::BuiltinType::Char16: return eBasicTypeChar16;
4790 case clang::BuiltinType::Char32: return eBasicTypeChar32;
4791 case clang::BuiltinType::UChar: return eBasicTypeUnsignedChar;
4792 case clang::BuiltinType::SChar: return eBasicTypeSignedChar;
4793 case clang::BuiltinType::WChar_S: return eBasicTypeSignedWChar;
4794 case clang::BuiltinType::WChar_U: return eBasicTypeUnsignedWChar;
4795 case clang::BuiltinType::Short: return eBasicTypeShort;
4796 case clang::BuiltinType::UShort: return eBasicTypeUnsignedShort;
4797 case clang::BuiltinType::Int: return eBasicTypeInt;
4798 case clang::BuiltinType::UInt: return eBasicTypeUnsignedInt;
4799 case clang::BuiltinType::Long: return eBasicTypeLong;
4800 case clang::BuiltinType::ULong: return eBasicTypeUnsignedLong;
4801 case clang::BuiltinType::LongLong: return eBasicTypeLongLong;
4802 case clang::BuiltinType::ULongLong: return eBasicTypeUnsignedLongLong;
4803 case clang::BuiltinType::Int128: return eBasicTypeInt128;
4804 case clang::BuiltinType::UInt128: return eBasicTypeUnsignedInt128;
4805
4806 case clang::BuiltinType::Half: return eBasicTypeHalf;
4807 case clang::BuiltinType::Float: return eBasicTypeFloat;
4808 case clang::BuiltinType::Double: return eBasicTypeDouble;
4809 case clang::BuiltinType::LongDouble:return eBasicTypeLongDouble;
4810
4811 case clang::BuiltinType::NullPtr: return eBasicTypeNullPtr;
4812 case clang::BuiltinType::ObjCId: return eBasicTypeObjCID;
4813 case clang::BuiltinType::ObjCClass: return eBasicTypeObjCClass;
4814 case clang::BuiltinType::ObjCSel: return eBasicTypeObjCSel;
Zachary Turnerdd07e002015-09-16 18:08:45 +00004815 default:
Greg Claytond8d4a572015-08-11 21:38:15 +00004816 return eBasicTypeOther;
4817 }
4818 }
4819 }
4820 return eBasicTypeInvalid;
4821}
4822
Greg Clayton99558cc42015-08-24 23:46:31 +00004823void
4824ClangASTContext::ForEachEnumerator (void* type, std::function <bool (const CompilerType &integer_type, const ConstString &name, const llvm::APSInt &value)> const &callback)
4825{
4826 const clang::EnumType *enum_type = llvm::dyn_cast<clang::EnumType>(GetCanonicalQualType(type));
4827 if (enum_type)
4828 {
4829 const clang::EnumDecl *enum_decl = enum_type->getDecl();
4830 if (enum_decl)
4831 {
4832 CompilerType integer_type(this, enum_decl->getIntegerType().getAsOpaquePtr());
4833
4834 clang::EnumDecl::enumerator_iterator enum_pos, enum_end_pos;
4835 for (enum_pos = enum_decl->enumerator_begin(), enum_end_pos = enum_decl->enumerator_end(); enum_pos != enum_end_pos; ++enum_pos)
4836 {
4837 ConstString name(enum_pos->getNameAsString().c_str());
4838 if (!callback (integer_type, name, enum_pos->getInitVal()))
4839 break;
4840 }
4841 }
4842 }
4843}
4844
Greg Claytond8d4a572015-08-11 21:38:15 +00004845
4846#pragma mark Aggregate Types
4847
4848uint32_t
Greg Claytond8d4a572015-08-11 21:38:15 +00004849ClangASTContext::GetNumFields (void* type)
4850{
4851 if (!type)
4852 return 0;
4853
4854 uint32_t count = 0;
4855 clang::QualType qual_type(GetCanonicalQualType(type));
4856 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
4857 switch (type_class)
4858 {
4859 case clang::Type::Record:
4860 if (GetCompleteType(type))
4861 {
4862 const clang::RecordType *record_type = llvm::dyn_cast<clang::RecordType>(qual_type.getTypePtr());
4863 if (record_type)
4864 {
4865 clang::RecordDecl *record_decl = record_type->getDecl();
4866 if (record_decl)
4867 {
4868 uint32_t field_idx = 0;
4869 clang::RecordDecl::field_iterator field, field_end;
4870 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field)
4871 ++field_idx;
4872 count = field_idx;
4873 }
4874 }
4875 }
4876 break;
4877
4878 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004879 count = CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetNumFields();
Greg Claytond8d4a572015-08-11 21:38:15 +00004880 break;
4881
4882 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004883 count = CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetNumFields();
Greg Claytond8d4a572015-08-11 21:38:15 +00004884 break;
4885
4886 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00004887 count = CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetNumFields();
Greg Claytond8d4a572015-08-11 21:38:15 +00004888 break;
4889
4890 case clang::Type::ObjCObjectPointer:
4891 if (GetCompleteType(type))
4892 {
4893 const clang::ObjCObjectPointerType *objc_class_type = qual_type->getAsObjCInterfacePointerType();
4894 if (objc_class_type)
4895 {
4896 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterfaceDecl();
4897
4898 if (class_interface_decl)
4899 count = class_interface_decl->ivar_size();
4900 }
4901 }
4902 break;
4903
4904 case clang::Type::ObjCObject:
4905 case clang::Type::ObjCInterface:
4906 if (GetCompleteType(type))
4907 {
4908 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
4909 if (objc_class_type)
4910 {
4911 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
4912
4913 if (class_interface_decl)
4914 count = class_interface_decl->ivar_size();
4915 }
4916 }
4917 break;
4918
4919 default:
4920 break;
4921 }
4922 return count;
4923}
4924
Greg Claytond8d4a572015-08-11 21:38:15 +00004925static clang_type_t
4926GetObjCFieldAtIndex (clang::ASTContext *ast,
4927 clang::ObjCInterfaceDecl *class_interface_decl,
4928 size_t idx,
4929 std::string& name,
4930 uint64_t *bit_offset_ptr,
4931 uint32_t *bitfield_bit_size_ptr,
4932 bool *is_bitfield_ptr)
4933{
4934 if (class_interface_decl)
4935 {
4936 if (idx < (class_interface_decl->ivar_size()))
4937 {
4938 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
4939 uint32_t ivar_idx = 0;
4940
4941 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos, ++ivar_idx)
4942 {
4943 if (ivar_idx == idx)
4944 {
4945 const clang::ObjCIvarDecl* ivar_decl = *ivar_pos;
4946
4947 clang::QualType ivar_qual_type(ivar_decl->getType());
4948
4949 name.assign(ivar_decl->getNameAsString());
4950
4951 if (bit_offset_ptr)
4952 {
4953 const clang::ASTRecordLayout &interface_layout = ast->getASTObjCInterfaceLayout(class_interface_decl);
4954 *bit_offset_ptr = interface_layout.getFieldOffset (ivar_idx);
4955 }
4956
4957 const bool is_bitfield = ivar_pos->isBitField();
4958
4959 if (bitfield_bit_size_ptr)
4960 {
4961 *bitfield_bit_size_ptr = 0;
4962
4963 if (is_bitfield && ast)
4964 {
4965 clang::Expr *bitfield_bit_size_expr = ivar_pos->getBitWidth();
4966 llvm::APSInt bitfield_apsint;
4967 if (bitfield_bit_size_expr && bitfield_bit_size_expr->EvaluateAsInt(bitfield_apsint, *ast))
4968 {
4969 *bitfield_bit_size_ptr = bitfield_apsint.getLimitedValue();
4970 }
4971 }
4972 }
4973 if (is_bitfield_ptr)
4974 *is_bitfield_ptr = is_bitfield;
4975
4976 return ivar_qual_type.getAsOpaquePtr();
4977 }
4978 }
4979 }
4980 }
4981 return nullptr;
4982}
4983
Greg Claytona1e5dc82015-08-11 22:53:00 +00004984CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00004985ClangASTContext::GetFieldAtIndex (void* type, size_t idx,
4986 std::string& name,
4987 uint64_t *bit_offset_ptr,
4988 uint32_t *bitfield_bit_size_ptr,
4989 bool *is_bitfield_ptr)
4990{
4991 if (!type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00004992 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00004993
4994 clang::QualType qual_type(GetCanonicalQualType(type));
4995 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
4996 switch (type_class)
4997 {
4998 case clang::Type::Record:
4999 if (GetCompleteType(type))
5000 {
5001 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
5002 const clang::RecordDecl *record_decl = record_type->getDecl();
5003 uint32_t field_idx = 0;
5004 clang::RecordDecl::field_iterator field, field_end;
5005 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field, ++field_idx)
5006 {
5007 if (idx == field_idx)
5008 {
5009 // Print the member type if requested
5010 // Print the member name and equal sign
5011 name.assign(field->getNameAsString());
5012
5013 // Figure out the type byte size (field_type_info.first) and
5014 // alignment (field_type_info.second) from the AST context.
5015 if (bit_offset_ptr)
5016 {
5017 const clang::ASTRecordLayout &record_layout = getASTContext()->getASTRecordLayout(record_decl);
5018 *bit_offset_ptr = record_layout.getFieldOffset (field_idx);
5019 }
5020
5021 const bool is_bitfield = field->isBitField();
5022
5023 if (bitfield_bit_size_ptr)
5024 {
5025 *bitfield_bit_size_ptr = 0;
5026
5027 if (is_bitfield)
5028 {
5029 clang::Expr *bitfield_bit_size_expr = field->getBitWidth();
5030 llvm::APSInt bitfield_apsint;
5031 if (bitfield_bit_size_expr && bitfield_bit_size_expr->EvaluateAsInt(bitfield_apsint, *getASTContext()))
5032 {
5033 *bitfield_bit_size_ptr = bitfield_apsint.getLimitedValue();
5034 }
5035 }
5036 }
5037 if (is_bitfield_ptr)
5038 *is_bitfield_ptr = is_bitfield;
5039
Greg Claytona1e5dc82015-08-11 22:53:00 +00005040 return CompilerType (getASTContext(), field->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005041 }
5042 }
5043 }
5044 break;
5045
5046 case clang::Type::ObjCObjectPointer:
5047 if (GetCompleteType(type))
5048 {
5049 const clang::ObjCObjectPointerType *objc_class_type = qual_type->getAsObjCInterfacePointerType();
5050 if (objc_class_type)
5051 {
5052 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterfaceDecl();
Greg Claytona1e5dc82015-08-11 22:53:00 +00005053 return CompilerType (this, GetObjCFieldAtIndex(getASTContext(), class_interface_decl, idx, name, bit_offset_ptr, bitfield_bit_size_ptr, is_bitfield_ptr));
Greg Claytond8d4a572015-08-11 21:38:15 +00005054 }
5055 }
5056 break;
5057
5058 case clang::Type::ObjCObject:
5059 case clang::Type::ObjCInterface:
5060 if (GetCompleteType(type))
5061 {
5062 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
5063 assert (objc_class_type);
5064 if (objc_class_type)
5065 {
5066 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
Greg Claytona1e5dc82015-08-11 22:53:00 +00005067 return CompilerType (this, GetObjCFieldAtIndex(getASTContext(), class_interface_decl, idx, name, bit_offset_ptr, bitfield_bit_size_ptr, is_bitfield_ptr));
Greg Claytond8d4a572015-08-11 21:38:15 +00005068 }
5069 }
5070 break;
5071
5072
5073 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00005074 return CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).
Greg Claytond8d4a572015-08-11 21:38:15 +00005075 GetFieldAtIndex (idx,
5076 name,
5077 bit_offset_ptr,
5078 bitfield_bit_size_ptr,
5079 is_bitfield_ptr);
5080
5081 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00005082 return CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).
Greg Claytond8d4a572015-08-11 21:38:15 +00005083 GetFieldAtIndex (idx,
5084 name,
5085 bit_offset_ptr,
5086 bitfield_bit_size_ptr,
5087 is_bitfield_ptr);
5088
5089 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00005090 return CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).
Greg Claytond8d4a572015-08-11 21:38:15 +00005091 GetFieldAtIndex (idx,
5092 name,
5093 bit_offset_ptr,
5094 bitfield_bit_size_ptr,
5095 is_bitfield_ptr);
5096
5097 default:
5098 break;
5099 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00005100 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00005101}
5102
Greg Clayton99558cc42015-08-24 23:46:31 +00005103uint32_t
5104ClangASTContext::GetNumDirectBaseClasses (void *type)
5105{
5106 uint32_t count = 0;
5107 clang::QualType qual_type(GetCanonicalQualType(type));
5108 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5109 switch (type_class)
5110 {
5111 case clang::Type::Record:
5112 if (GetCompleteType(type))
5113 {
5114 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
5115 if (cxx_record_decl)
5116 count = cxx_record_decl->getNumBases();
5117 }
5118 break;
5119
5120 case clang::Type::ObjCObjectPointer:
5121 count = GetPointeeType(type).GetNumDirectBaseClasses();
5122 break;
5123
5124 case clang::Type::ObjCObject:
5125 if (GetCompleteType(type))
5126 {
5127 const clang::ObjCObjectType *objc_class_type = qual_type->getAsObjCQualifiedInterfaceType();
5128 if (objc_class_type)
5129 {
5130 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
5131
5132 if (class_interface_decl && class_interface_decl->getSuperClass())
5133 count = 1;
5134 }
5135 }
5136 break;
5137 case clang::Type::ObjCInterface:
5138 if (GetCompleteType(type))
5139 {
5140 const clang::ObjCInterfaceType *objc_interface_type = qual_type->getAs<clang::ObjCInterfaceType>();
5141 if (objc_interface_type)
5142 {
5143 clang::ObjCInterfaceDecl *class_interface_decl = objc_interface_type->getInterface();
5144
5145 if (class_interface_decl && class_interface_decl->getSuperClass())
5146 count = 1;
5147 }
5148 }
5149 break;
5150
5151
5152 case clang::Type::Typedef:
5153 count = GetNumDirectBaseClasses(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr());
5154 break;
5155
5156 case clang::Type::Elaborated:
5157 count = GetNumDirectBaseClasses(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr());
5158 break;
5159
5160 case clang::Type::Paren:
5161 return GetNumDirectBaseClasses(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr());
5162
5163 default:
5164 break;
5165 }
5166 return count;
5167
5168}
5169
5170uint32_t
5171ClangASTContext::GetNumVirtualBaseClasses (void *type)
5172{
5173 uint32_t count = 0;
5174 clang::QualType qual_type(GetCanonicalQualType(type));
5175 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5176 switch (type_class)
5177 {
5178 case clang::Type::Record:
5179 if (GetCompleteType(type))
5180 {
5181 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
5182 if (cxx_record_decl)
5183 count = cxx_record_decl->getNumVBases();
5184 }
5185 break;
5186
5187 case clang::Type::Typedef:
5188 count = GetNumVirtualBaseClasses(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr());
5189 break;
5190
5191 case clang::Type::Elaborated:
5192 count = GetNumVirtualBaseClasses(llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr());
5193 break;
5194
5195 case clang::Type::Paren:
5196 count = GetNumVirtualBaseClasses(llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr());
5197 break;
5198
5199 default:
5200 break;
5201 }
5202 return count;
5203
5204}
5205
5206CompilerType
5207ClangASTContext::GetDirectBaseClassAtIndex (void *type, size_t idx, uint32_t *bit_offset_ptr)
5208{
5209 clang::QualType qual_type(GetCanonicalQualType(type));
5210 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5211 switch (type_class)
5212 {
5213 case clang::Type::Record:
5214 if (GetCompleteType(type))
5215 {
5216 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
5217 if (cxx_record_decl)
5218 {
5219 uint32_t curr_idx = 0;
5220 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
5221 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
5222 base_class != base_class_end;
5223 ++base_class, ++curr_idx)
5224 {
5225 if (curr_idx == idx)
5226 {
5227 if (bit_offset_ptr)
5228 {
5229 const clang::ASTRecordLayout &record_layout = getASTContext()->getASTRecordLayout(cxx_record_decl);
5230 const clang::CXXRecordDecl *base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
5231 if (base_class->isVirtual())
5232 *bit_offset_ptr = record_layout.getVBaseClassOffset(base_class_decl).getQuantity() * 8;
5233 else
5234 *bit_offset_ptr = record_layout.getBaseClassOffset(base_class_decl).getQuantity() * 8;
5235 }
5236 return CompilerType (this, base_class->getType().getAsOpaquePtr());
5237 }
5238 }
5239 }
5240 }
5241 break;
5242
5243 case clang::Type::ObjCObjectPointer:
5244 return GetPointeeType(type).GetDirectBaseClassAtIndex(idx, bit_offset_ptr);
5245
5246 case clang::Type::ObjCObject:
5247 if (idx == 0 && GetCompleteType(type))
5248 {
5249 const clang::ObjCObjectType *objc_class_type = qual_type->getAsObjCQualifiedInterfaceType();
5250 if (objc_class_type)
5251 {
5252 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
5253
5254 if (class_interface_decl)
5255 {
5256 clang::ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
5257 if (superclass_interface_decl)
5258 {
5259 if (bit_offset_ptr)
5260 *bit_offset_ptr = 0;
5261 return CompilerType (getASTContext(), getASTContext()->getObjCInterfaceType(superclass_interface_decl));
5262 }
5263 }
5264 }
5265 }
5266 break;
5267 case clang::Type::ObjCInterface:
5268 if (idx == 0 && GetCompleteType(type))
5269 {
5270 const clang::ObjCObjectType *objc_interface_type = qual_type->getAs<clang::ObjCInterfaceType>();
5271 if (objc_interface_type)
5272 {
5273 clang::ObjCInterfaceDecl *class_interface_decl = objc_interface_type->getInterface();
5274
5275 if (class_interface_decl)
5276 {
5277 clang::ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
5278 if (superclass_interface_decl)
5279 {
5280 if (bit_offset_ptr)
5281 *bit_offset_ptr = 0;
5282 return CompilerType (getASTContext(), getASTContext()->getObjCInterfaceType(superclass_interface_decl));
5283 }
5284 }
5285 }
5286 }
5287 break;
5288
5289
5290 case clang::Type::Typedef:
5291 return GetDirectBaseClassAtIndex (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), idx, bit_offset_ptr);
5292
5293 case clang::Type::Elaborated:
5294 return GetDirectBaseClassAtIndex (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), idx, bit_offset_ptr);
5295
5296 case clang::Type::Paren:
5297 return GetDirectBaseClassAtIndex (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), idx, bit_offset_ptr);
5298
5299 default:
5300 break;
5301 }
5302 return CompilerType();
5303}
5304
5305CompilerType
5306ClangASTContext::GetVirtualBaseClassAtIndex (void *type,
5307 size_t idx,
5308 uint32_t *bit_offset_ptr)
5309{
5310 clang::QualType qual_type(GetCanonicalQualType(type));
5311 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5312 switch (type_class)
5313 {
5314 case clang::Type::Record:
5315 if (GetCompleteType(type))
5316 {
5317 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
5318 if (cxx_record_decl)
5319 {
5320 uint32_t curr_idx = 0;
5321 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
5322 for (base_class = cxx_record_decl->vbases_begin(), base_class_end = cxx_record_decl->vbases_end();
5323 base_class != base_class_end;
5324 ++base_class, ++curr_idx)
5325 {
5326 if (curr_idx == idx)
5327 {
5328 if (bit_offset_ptr)
5329 {
5330 const clang::ASTRecordLayout &record_layout = getASTContext()->getASTRecordLayout(cxx_record_decl);
5331 const clang::CXXRecordDecl *base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
5332 *bit_offset_ptr = record_layout.getVBaseClassOffset(base_class_decl).getQuantity() * 8;
5333
5334 }
5335 return CompilerType (this, base_class->getType().getAsOpaquePtr());
5336 }
5337 }
5338 }
5339 }
5340 break;
5341
5342 case clang::Type::Typedef:
5343 return GetVirtualBaseClassAtIndex (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), idx, bit_offset_ptr);
5344
5345 case clang::Type::Elaborated:
5346 return GetVirtualBaseClassAtIndex (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), idx, bit_offset_ptr);
5347
5348 case clang::Type::Paren:
5349 return GetVirtualBaseClassAtIndex (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), idx, bit_offset_ptr);
5350
5351 default:
5352 break;
5353 }
5354 return CompilerType();
5355
5356}
5357
Greg Claytond8d4a572015-08-11 21:38:15 +00005358// If a pointer to a pointee type (the clang_type arg) says that it has no
5359// children, then we either need to trust it, or override it and return a
5360// different result. For example, an "int *" has one child that is an integer,
5361// but a function pointer doesn't have any children. Likewise if a Record type
5362// claims it has no children, then there really is nothing to show.
5363uint32_t
5364ClangASTContext::GetNumPointeeChildren (clang::QualType type)
5365{
5366 if (type.isNull())
5367 return 0;
5368
5369 clang::QualType qual_type(type.getCanonicalType());
5370 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
5371 switch (type_class)
5372 {
5373 case clang::Type::Builtin:
5374 switch (llvm::cast<clang::BuiltinType>(qual_type)->getKind())
5375 {
5376 case clang::BuiltinType::UnknownAny:
5377 case clang::BuiltinType::Void:
5378 case clang::BuiltinType::NullPtr:
5379 case clang::BuiltinType::OCLEvent:
5380 case clang::BuiltinType::OCLImage1d:
5381 case clang::BuiltinType::OCLImage1dArray:
5382 case clang::BuiltinType::OCLImage1dBuffer:
5383 case clang::BuiltinType::OCLImage2d:
5384 case clang::BuiltinType::OCLImage2dArray:
5385 case clang::BuiltinType::OCLImage3d:
5386 case clang::BuiltinType::OCLSampler:
5387 return 0;
5388 case clang::BuiltinType::Bool:
5389 case clang::BuiltinType::Char_U:
5390 case clang::BuiltinType::UChar:
5391 case clang::BuiltinType::WChar_U:
5392 case clang::BuiltinType::Char16:
5393 case clang::BuiltinType::Char32:
5394 case clang::BuiltinType::UShort:
5395 case clang::BuiltinType::UInt:
5396 case clang::BuiltinType::ULong:
5397 case clang::BuiltinType::ULongLong:
5398 case clang::BuiltinType::UInt128:
5399 case clang::BuiltinType::Char_S:
5400 case clang::BuiltinType::SChar:
5401 case clang::BuiltinType::WChar_S:
5402 case clang::BuiltinType::Short:
5403 case clang::BuiltinType::Int:
5404 case clang::BuiltinType::Long:
5405 case clang::BuiltinType::LongLong:
5406 case clang::BuiltinType::Int128:
5407 case clang::BuiltinType::Float:
5408 case clang::BuiltinType::Double:
5409 case clang::BuiltinType::LongDouble:
5410 case clang::BuiltinType::Dependent:
5411 case clang::BuiltinType::Overload:
5412 case clang::BuiltinType::ObjCId:
5413 case clang::BuiltinType::ObjCClass:
5414 case clang::BuiltinType::ObjCSel:
5415 case clang::BuiltinType::BoundMember:
5416 case clang::BuiltinType::Half:
5417 case clang::BuiltinType::ARCUnbridgedCast:
5418 case clang::BuiltinType::PseudoObject:
5419 case clang::BuiltinType::BuiltinFn:
Zachary Turner84f5b0d2015-09-09 17:25:43 +00005420 case clang::BuiltinType::OMPArraySection:
Greg Claytond8d4a572015-08-11 21:38:15 +00005421 return 1;
Zachary Turnerdd07e002015-09-16 18:08:45 +00005422 default:
5423 return 0;
Greg Claytond8d4a572015-08-11 21:38:15 +00005424 }
5425 break;
5426
5427 case clang::Type::Complex: return 1;
5428 case clang::Type::Pointer: return 1;
5429 case clang::Type::BlockPointer: return 0; // If block pointers don't have debug info, then no children for them
5430 case clang::Type::LValueReference: return 1;
5431 case clang::Type::RValueReference: return 1;
5432 case clang::Type::MemberPointer: return 0;
5433 case clang::Type::ConstantArray: return 0;
5434 case clang::Type::IncompleteArray: return 0;
5435 case clang::Type::VariableArray: return 0;
5436 case clang::Type::DependentSizedArray: return 0;
5437 case clang::Type::DependentSizedExtVector: return 0;
5438 case clang::Type::Vector: return 0;
5439 case clang::Type::ExtVector: return 0;
5440 case clang::Type::FunctionProto: return 0; // When we function pointers, they have no children...
5441 case clang::Type::FunctionNoProto: return 0; // When we function pointers, they have no children...
5442 case clang::Type::UnresolvedUsing: return 0;
5443 case clang::Type::Paren: return GetNumPointeeChildren (llvm::cast<clang::ParenType>(qual_type)->desugar());
5444 case clang::Type::Typedef: return GetNumPointeeChildren (llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType());
5445 case clang::Type::Elaborated: return GetNumPointeeChildren (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType());
5446 case clang::Type::TypeOfExpr: return 0;
5447 case clang::Type::TypeOf: return 0;
5448 case clang::Type::Decltype: return 0;
5449 case clang::Type::Record: return 0;
5450 case clang::Type::Enum: return 1;
5451 case clang::Type::TemplateTypeParm: return 1;
5452 case clang::Type::SubstTemplateTypeParm: return 1;
5453 case clang::Type::TemplateSpecialization: return 1;
5454 case clang::Type::InjectedClassName: return 0;
5455 case clang::Type::DependentName: return 1;
5456 case clang::Type::DependentTemplateSpecialization: return 1;
5457 case clang::Type::ObjCObject: return 0;
5458 case clang::Type::ObjCInterface: return 0;
5459 case clang::Type::ObjCObjectPointer: return 1;
5460 default:
5461 break;
5462 }
5463 return 0;
5464}
5465
5466
Greg Claytona1e5dc82015-08-11 22:53:00 +00005467CompilerType
Greg Clayton99558cc42015-08-24 23:46:31 +00005468ClangASTContext::GetChildClangTypeAtIndex (void* type,
5469 ExecutionContext *exe_ctx,
5470 size_t idx,
5471 bool transparent_pointers,
5472 bool omit_empty_base_classes,
5473 bool ignore_array_bounds,
5474 std::string& child_name,
5475 uint32_t &child_byte_size,
5476 int32_t &child_byte_offset,
5477 uint32_t &child_bitfield_bit_size,
5478 uint32_t &child_bitfield_bit_offset,
5479 bool &child_is_base_class,
5480 bool &child_is_deref_of_parent,
5481 ValueObject *valobj)
Greg Claytond8d4a572015-08-11 21:38:15 +00005482{
5483 if (!type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00005484 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00005485
5486 clang::QualType parent_qual_type(GetCanonicalQualType(type));
5487 const clang::Type::TypeClass parent_type_class = parent_qual_type->getTypeClass();
5488 child_bitfield_bit_size = 0;
5489 child_bitfield_bit_offset = 0;
5490 child_is_base_class = false;
5491
5492 const bool idx_is_valid = idx < GetNumChildren (type, omit_empty_base_classes);
5493 uint32_t bit_offset;
5494 switch (parent_type_class)
5495 {
5496 case clang::Type::Builtin:
5497 if (idx_is_valid)
5498 {
5499 switch (llvm::cast<clang::BuiltinType>(parent_qual_type)->getKind())
5500 {
5501 case clang::BuiltinType::ObjCId:
5502 case clang::BuiltinType::ObjCClass:
5503 child_name = "isa";
5504 child_byte_size = getASTContext()->getTypeSize(getASTContext()->ObjCBuiltinClassTy) / CHAR_BIT;
Greg Claytona1e5dc82015-08-11 22:53:00 +00005505 return CompilerType (getASTContext(), getASTContext()->ObjCBuiltinClassTy);
Greg Claytond8d4a572015-08-11 21:38:15 +00005506
5507 default:
5508 break;
5509 }
5510 }
5511 break;
5512
5513 case clang::Type::Record:
5514 if (idx_is_valid && GetCompleteType(type))
5515 {
5516 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(parent_qual_type.getTypePtr());
5517 const clang::RecordDecl *record_decl = record_type->getDecl();
5518 assert(record_decl);
5519 const clang::ASTRecordLayout &record_layout = getASTContext()->getASTRecordLayout(record_decl);
5520 uint32_t child_idx = 0;
5521
5522 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
5523 if (cxx_record_decl)
5524 {
5525 // We might have base classes to print out first
5526 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
5527 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
5528 base_class != base_class_end;
5529 ++base_class)
5530 {
5531 const clang::CXXRecordDecl *base_class_decl = nullptr;
5532
5533 // Skip empty base classes
5534 if (omit_empty_base_classes)
5535 {
5536 base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
5537 if (ClangASTContext::RecordHasFields(base_class_decl) == false)
5538 continue;
5539 }
5540
5541 if (idx == child_idx)
5542 {
5543 if (base_class_decl == nullptr)
5544 base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
5545
5546
5547 if (base_class->isVirtual())
5548 {
5549 bool handled = false;
5550 if (valobj)
5551 {
5552 Error err;
5553 AddressType addr_type = eAddressTypeInvalid;
5554 lldb::addr_t vtable_ptr_addr = valobj->GetCPPVTableAddress(addr_type);
5555
5556 if (vtable_ptr_addr != LLDB_INVALID_ADDRESS && addr_type == eAddressTypeLoad)
5557 {
5558
5559 ExecutionContext exe_ctx (valobj->GetExecutionContextRef());
5560 Process *process = exe_ctx.GetProcessPtr();
5561 if (process)
5562 {
5563 clang::VTableContextBase *vtable_ctx = getASTContext()->getVTableContext();
5564 if (vtable_ctx)
5565 {
5566 if (vtable_ctx->isMicrosoft())
5567 {
5568 clang::MicrosoftVTableContext *msoft_vtable_ctx = static_cast<clang::MicrosoftVTableContext *>(vtable_ctx);
5569
5570 if (vtable_ptr_addr)
5571 {
5572 const lldb::addr_t vbtable_ptr_addr = vtable_ptr_addr + record_layout.getVBPtrOffset().getQuantity();
5573
5574 const lldb::addr_t vbtable_ptr = process->ReadPointerFromMemory(vbtable_ptr_addr, err);
5575 if (vbtable_ptr != LLDB_INVALID_ADDRESS)
5576 {
5577 // Get the index into the virtual base table. The index is the index in uint32_t from vbtable_ptr
5578 const unsigned vbtable_index = msoft_vtable_ctx->getVBTableIndex(cxx_record_decl, base_class_decl);
5579 const lldb::addr_t base_offset_addr = vbtable_ptr + vbtable_index * 4;
5580 const uint32_t base_offset = process->ReadUnsignedIntegerFromMemory(base_offset_addr, 4, UINT32_MAX, err);
5581 if (base_offset != UINT32_MAX)
5582 {
5583 handled = true;
5584 bit_offset = base_offset * 8;
5585 }
5586 }
5587 }
5588 }
5589 else
5590 {
5591 clang::ItaniumVTableContext *itanium_vtable_ctx = static_cast<clang::ItaniumVTableContext *>(vtable_ctx);
5592 if (vtable_ptr_addr)
5593 {
5594 const lldb::addr_t vtable_ptr = process->ReadPointerFromMemory(vtable_ptr_addr, err);
5595 if (vtable_ptr != LLDB_INVALID_ADDRESS)
5596 {
5597 clang::CharUnits base_offset_offset = itanium_vtable_ctx->getVirtualBaseOffsetOffset(cxx_record_decl, base_class_decl);
5598 const lldb::addr_t base_offset_addr = vtable_ptr + base_offset_offset.getQuantity();
5599 const uint32_t base_offset = process->ReadUnsignedIntegerFromMemory(base_offset_addr, 4, UINT32_MAX, err);
5600 if (base_offset != UINT32_MAX)
5601 {
5602 handled = true;
5603 bit_offset = base_offset * 8;
5604 }
5605 }
5606 }
5607 }
5608 }
5609 }
5610 }
5611
5612 }
5613 if (!handled)
5614 bit_offset = record_layout.getVBaseClassOffset(base_class_decl).getQuantity() * 8;
5615 }
5616 else
5617 bit_offset = record_layout.getBaseClassOffset(base_class_decl).getQuantity() * 8;
5618
5619 // Base classes should be a multiple of 8 bits in size
5620 child_byte_offset = bit_offset/8;
Greg Claytona1e5dc82015-08-11 22:53:00 +00005621 CompilerType base_class_clang_type(getASTContext(), base_class->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005622 child_name = base_class_clang_type.GetTypeName().AsCString("");
5623 uint64_t base_class_clang_type_bit_size = base_class_clang_type.GetBitSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5624
5625 // Base classes bit sizes should be a multiple of 8 bits in size
5626 assert (base_class_clang_type_bit_size % 8 == 0);
5627 child_byte_size = base_class_clang_type_bit_size / 8;
5628 child_is_base_class = true;
5629 return base_class_clang_type;
5630 }
5631 // We don't increment the child index in the for loop since we might
5632 // be skipping empty base classes
5633 ++child_idx;
5634 }
5635 }
5636 // Make sure index is in range...
5637 uint32_t field_idx = 0;
5638 clang::RecordDecl::field_iterator field, field_end;
5639 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field, ++field_idx, ++child_idx)
5640 {
5641 if (idx == child_idx)
5642 {
5643 // Print the member type if requested
5644 // Print the member name and equal sign
5645 child_name.assign(field->getNameAsString().c_str());
5646
5647 // Figure out the type byte size (field_type_info.first) and
5648 // alignment (field_type_info.second) from the AST context.
Greg Claytona1e5dc82015-08-11 22:53:00 +00005649 CompilerType field_clang_type (getASTContext(), field->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005650 assert(field_idx < record_layout.getFieldCount());
5651 child_byte_size = field_clang_type.GetByteSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5652
5653 // Figure out the field offset within the current struct/union/class type
5654 bit_offset = record_layout.getFieldOffset (field_idx);
5655 child_byte_offset = bit_offset / 8;
5656 if (ClangASTContext::FieldIsBitfield (getASTContext(), *field, child_bitfield_bit_size))
5657 child_bitfield_bit_offset = bit_offset % 8;
5658
5659 return field_clang_type;
5660 }
5661 }
5662 }
5663 break;
5664
5665 case clang::Type::ObjCObject:
5666 case clang::Type::ObjCInterface:
5667 if (idx_is_valid && GetCompleteType(type))
5668 {
5669 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(parent_qual_type.getTypePtr());
5670 assert (objc_class_type);
5671 if (objc_class_type)
5672 {
5673 uint32_t child_idx = 0;
5674 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
5675
5676 if (class_interface_decl)
5677 {
5678
5679 const clang::ASTRecordLayout &interface_layout = getASTContext()->getASTObjCInterfaceLayout(class_interface_decl);
5680 clang::ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
5681 if (superclass_interface_decl)
5682 {
5683 if (omit_empty_base_classes)
5684 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005685 CompilerType base_class_clang_type (getASTContext(), getASTContext()->getObjCInterfaceType(superclass_interface_decl));
Greg Claytond8d4a572015-08-11 21:38:15 +00005686 if (base_class_clang_type.GetNumChildren(omit_empty_base_classes) > 0)
5687 {
5688 if (idx == 0)
5689 {
5690 clang::QualType ivar_qual_type(getASTContext()->getObjCInterfaceType(superclass_interface_decl));
5691
5692
5693 child_name.assign(superclass_interface_decl->getNameAsString().c_str());
5694
5695 clang::TypeInfo ivar_type_info = getASTContext()->getTypeInfo(ivar_qual_type.getTypePtr());
5696
5697 child_byte_size = ivar_type_info.Width / 8;
5698 child_byte_offset = 0;
5699 child_is_base_class = true;
5700
Greg Claytona1e5dc82015-08-11 22:53:00 +00005701 return CompilerType (getASTContext(), ivar_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00005702 }
5703
5704 ++child_idx;
5705 }
5706 }
5707 else
5708 ++child_idx;
5709 }
5710
5711 const uint32_t superclass_idx = child_idx;
5712
5713 if (idx < (child_idx + class_interface_decl->ivar_size()))
5714 {
5715 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
5716
5717 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos)
5718 {
5719 if (child_idx == idx)
5720 {
5721 clang::ObjCIvarDecl* ivar_decl = *ivar_pos;
5722
5723 clang::QualType ivar_qual_type(ivar_decl->getType());
5724
5725 child_name.assign(ivar_decl->getNameAsString().c_str());
5726
5727 clang::TypeInfo ivar_type_info = getASTContext()->getTypeInfo(ivar_qual_type.getTypePtr());
5728
5729 child_byte_size = ivar_type_info.Width / 8;
5730
5731 // Figure out the field offset within the current struct/union/class type
5732 // For ObjC objects, we can't trust the bit offset we get from the Clang AST, since
5733 // that doesn't account for the space taken up by unbacked properties, or from
5734 // the changing size of base classes that are newer than this class.
5735 // So if we have a process around that we can ask about this object, do so.
5736 child_byte_offset = LLDB_INVALID_IVAR_OFFSET;
5737 Process *process = nullptr;
5738 if (exe_ctx)
5739 process = exe_ctx->GetProcessPtr();
5740 if (process)
5741 {
5742 ObjCLanguageRuntime *objc_runtime = process->GetObjCLanguageRuntime();
5743 if (objc_runtime != nullptr)
5744 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005745 CompilerType parent_ast_type (getASTContext(), parent_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00005746 child_byte_offset = objc_runtime->GetByteOffsetForIvar (parent_ast_type, ivar_decl->getNameAsString().c_str());
5747 }
5748 }
5749
5750 // Setting this to UINT32_MAX to make sure we don't compute it twice...
5751 bit_offset = UINT32_MAX;
5752
5753 if (child_byte_offset == static_cast<int32_t>(LLDB_INVALID_IVAR_OFFSET))
5754 {
5755 bit_offset = interface_layout.getFieldOffset (child_idx - superclass_idx);
5756 child_byte_offset = bit_offset / 8;
5757 }
5758
5759 // Note, the ObjC Ivar Byte offset is just that, it doesn't account for the bit offset
5760 // of a bitfield within its containing object. So regardless of where we get the byte
5761 // offset from, we still need to get the bit offset for bitfields from the layout.
5762
5763 if (ClangASTContext::FieldIsBitfield (getASTContext(), ivar_decl, child_bitfield_bit_size))
5764 {
5765 if (bit_offset == UINT32_MAX)
5766 bit_offset = interface_layout.getFieldOffset (child_idx - superclass_idx);
5767
5768 child_bitfield_bit_offset = bit_offset % 8;
5769 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00005770 return CompilerType (getASTContext(), ivar_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00005771 }
5772 ++child_idx;
5773 }
5774 }
5775 }
5776 }
5777 }
5778 break;
5779
5780 case clang::Type::ObjCObjectPointer:
5781 if (idx_is_valid)
5782 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005783 CompilerType pointee_clang_type (GetPointeeType(type));
Greg Claytond8d4a572015-08-11 21:38:15 +00005784
5785 if (transparent_pointers && pointee_clang_type.IsAggregateType())
5786 {
5787 child_is_deref_of_parent = false;
5788 bool tmp_child_is_deref_of_parent = false;
5789 return pointee_clang_type.GetChildClangTypeAtIndex (exe_ctx,
5790 idx,
5791 transparent_pointers,
5792 omit_empty_base_classes,
5793 ignore_array_bounds,
5794 child_name,
5795 child_byte_size,
5796 child_byte_offset,
5797 child_bitfield_bit_size,
5798 child_bitfield_bit_offset,
5799 child_is_base_class,
5800 tmp_child_is_deref_of_parent,
5801 valobj);
5802 }
5803 else
5804 {
5805 child_is_deref_of_parent = true;
5806 const char *parent_name = valobj ? valobj->GetName().GetCString() : NULL;
5807 if (parent_name)
5808 {
5809 child_name.assign(1, '*');
5810 child_name += parent_name;
5811 }
5812
5813 // We have a pointer to an simple type
5814 if (idx == 0 && pointee_clang_type.GetCompleteType())
5815 {
5816 child_byte_size = pointee_clang_type.GetByteSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5817 child_byte_offset = 0;
5818 return pointee_clang_type;
5819 }
5820 }
5821 }
5822 break;
5823
5824 case clang::Type::Vector:
5825 case clang::Type::ExtVector:
5826 if (idx_is_valid)
5827 {
5828 const clang::VectorType *array = llvm::cast<clang::VectorType>(parent_qual_type.getTypePtr());
5829 if (array)
5830 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005831 CompilerType element_type (getASTContext(), array->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005832 if (element_type.GetCompleteType())
5833 {
5834 char element_name[64];
5835 ::snprintf (element_name, sizeof (element_name), "[%" PRIu64 "]", static_cast<uint64_t>(idx));
5836 child_name.assign(element_name);
5837 child_byte_size = element_type.GetByteSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5838 child_byte_offset = (int32_t)idx * (int32_t)child_byte_size;
5839 return element_type;
5840 }
5841 }
5842 }
5843 break;
5844
5845 case clang::Type::ConstantArray:
5846 case clang::Type::IncompleteArray:
5847 if (ignore_array_bounds || idx_is_valid)
5848 {
5849 const clang::ArrayType *array = GetQualType(type)->getAsArrayTypeUnsafe();
5850 if (array)
5851 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005852 CompilerType element_type (getASTContext(), array->getElementType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005853 if (element_type.GetCompleteType())
5854 {
5855 char element_name[64];
5856 ::snprintf (element_name, sizeof (element_name), "[%" PRIu64 "]", static_cast<uint64_t>(idx));
5857 child_name.assign(element_name);
5858 child_byte_size = element_type.GetByteSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5859 child_byte_offset = (int32_t)idx * (int32_t)child_byte_size;
5860 return element_type;
5861 }
5862 }
5863 }
5864 break;
5865
5866
5867 case clang::Type::Pointer:
5868 if (idx_is_valid)
5869 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005870 CompilerType pointee_clang_type (GetPointeeType(type));
Greg Claytond8d4a572015-08-11 21:38:15 +00005871
5872 // Don't dereference "void *" pointers
5873 if (pointee_clang_type.IsVoidType())
Greg Claytona1e5dc82015-08-11 22:53:00 +00005874 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00005875
5876 if (transparent_pointers && pointee_clang_type.IsAggregateType ())
5877 {
5878 child_is_deref_of_parent = false;
5879 bool tmp_child_is_deref_of_parent = false;
5880 return pointee_clang_type.GetChildClangTypeAtIndex (exe_ctx,
5881 idx,
5882 transparent_pointers,
5883 omit_empty_base_classes,
5884 ignore_array_bounds,
5885 child_name,
5886 child_byte_size,
5887 child_byte_offset,
5888 child_bitfield_bit_size,
5889 child_bitfield_bit_offset,
5890 child_is_base_class,
5891 tmp_child_is_deref_of_parent,
5892 valobj);
5893 }
5894 else
5895 {
5896 child_is_deref_of_parent = true;
5897
5898 const char *parent_name = valobj ? valobj->GetName().GetCString() : NULL;
5899 if (parent_name)
5900 {
5901 child_name.assign(1, '*');
5902 child_name += parent_name;
5903 }
5904
5905 // We have a pointer to an simple type
5906 if (idx == 0)
5907 {
5908 child_byte_size = pointee_clang_type.GetByteSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5909 child_byte_offset = 0;
5910 return pointee_clang_type;
5911 }
5912 }
5913 }
5914 break;
5915
5916 case clang::Type::LValueReference:
5917 case clang::Type::RValueReference:
5918 if (idx_is_valid)
5919 {
5920 const clang::ReferenceType *reference_type = llvm::cast<clang::ReferenceType>(parent_qual_type.getTypePtr());
Greg Claytona1e5dc82015-08-11 22:53:00 +00005921 CompilerType pointee_clang_type (getASTContext(), reference_type->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005922 if (transparent_pointers && pointee_clang_type.IsAggregateType ())
5923 {
5924 child_is_deref_of_parent = false;
5925 bool tmp_child_is_deref_of_parent = false;
5926 return pointee_clang_type.GetChildClangTypeAtIndex (exe_ctx,
5927 idx,
5928 transparent_pointers,
5929 omit_empty_base_classes,
5930 ignore_array_bounds,
5931 child_name,
5932 child_byte_size,
5933 child_byte_offset,
5934 child_bitfield_bit_size,
5935 child_bitfield_bit_offset,
5936 child_is_base_class,
5937 tmp_child_is_deref_of_parent,
5938 valobj);
5939 }
5940 else
5941 {
5942 const char *parent_name = valobj ? valobj->GetName().GetCString() : NULL;
5943 if (parent_name)
5944 {
5945 child_name.assign(1, '&');
5946 child_name += parent_name;
5947 }
5948
5949 // We have a pointer to an simple type
5950 if (idx == 0)
5951 {
5952 child_byte_size = pointee_clang_type.GetByteSize(exe_ctx ? exe_ctx->GetBestExecutionContextScope() : NULL);
5953 child_byte_offset = 0;
5954 return pointee_clang_type;
5955 }
5956 }
5957 }
5958 break;
5959
5960 case clang::Type::Typedef:
5961 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005962 CompilerType typedefed_clang_type (getASTContext(), llvm::cast<clang::TypedefType>(parent_qual_type)->getDecl()->getUnderlyingType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005963 return typedefed_clang_type.GetChildClangTypeAtIndex (exe_ctx,
5964 idx,
5965 transparent_pointers,
5966 omit_empty_base_classes,
5967 ignore_array_bounds,
5968 child_name,
5969 child_byte_size,
5970 child_byte_offset,
5971 child_bitfield_bit_size,
5972 child_bitfield_bit_offset,
5973 child_is_base_class,
5974 child_is_deref_of_parent,
5975 valobj);
5976 }
5977 break;
5978
5979 case clang::Type::Elaborated:
5980 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005981 CompilerType elaborated_clang_type (getASTContext(), llvm::cast<clang::ElaboratedType>(parent_qual_type)->getNamedType());
Greg Claytond8d4a572015-08-11 21:38:15 +00005982 return elaborated_clang_type.GetChildClangTypeAtIndex (exe_ctx,
5983 idx,
5984 transparent_pointers,
5985 omit_empty_base_classes,
5986 ignore_array_bounds,
5987 child_name,
5988 child_byte_size,
5989 child_byte_offset,
5990 child_bitfield_bit_size,
5991 child_bitfield_bit_offset,
5992 child_is_base_class,
5993 child_is_deref_of_parent,
5994 valobj);
5995 }
5996
5997 case clang::Type::Paren:
5998 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00005999 CompilerType paren_clang_type (getASTContext(), llvm::cast<clang::ParenType>(parent_qual_type)->desugar());
Greg Claytond8d4a572015-08-11 21:38:15 +00006000 return paren_clang_type.GetChildClangTypeAtIndex (exe_ctx,
6001 idx,
6002 transparent_pointers,
6003 omit_empty_base_classes,
6004 ignore_array_bounds,
6005 child_name,
6006 child_byte_size,
6007 child_byte_offset,
6008 child_bitfield_bit_size,
6009 child_bitfield_bit_offset,
6010 child_is_base_class,
6011 child_is_deref_of_parent,
6012 valobj);
6013 }
6014
6015
6016 default:
6017 break;
6018 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00006019 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00006020}
6021
6022static uint32_t
6023GetIndexForRecordBase
6024(
6025 const clang::RecordDecl *record_decl,
6026 const clang::CXXBaseSpecifier *base_spec,
6027 bool omit_empty_base_classes
6028 )
6029{
6030 uint32_t child_idx = 0;
6031
6032 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
6033
6034 // const char *super_name = record_decl->getNameAsCString();
6035 // const char *base_name = base_spec->getType()->getAs<clang::RecordType>()->getDecl()->getNameAsCString();
6036 // printf ("GetIndexForRecordChild (%s, %s)\n", super_name, base_name);
6037 //
6038 if (cxx_record_decl)
6039 {
6040 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
6041 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
6042 base_class != base_class_end;
6043 ++base_class)
6044 {
6045 if (omit_empty_base_classes)
6046 {
6047 if (BaseSpecifierIsEmpty (base_class))
6048 continue;
6049 }
6050
6051 // printf ("GetIndexForRecordChild (%s, %s) base[%u] = %s\n", super_name, base_name,
6052 // child_idx,
6053 // base_class->getType()->getAs<clang::RecordType>()->getDecl()->getNameAsCString());
6054 //
6055 //
6056 if (base_class == base_spec)
6057 return child_idx;
6058 ++child_idx;
6059 }
6060 }
6061
6062 return UINT32_MAX;
6063}
6064
6065
6066static uint32_t
6067GetIndexForRecordChild (const clang::RecordDecl *record_decl,
6068 clang::NamedDecl *canonical_decl,
6069 bool omit_empty_base_classes)
6070{
6071 uint32_t child_idx = ClangASTContext::GetNumBaseClasses (llvm::dyn_cast<clang::CXXRecordDecl>(record_decl),
6072 omit_empty_base_classes);
6073
6074 clang::RecordDecl::field_iterator field, field_end;
6075 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
6076 field != field_end;
6077 ++field, ++child_idx)
6078 {
6079 if (field->getCanonicalDecl() == canonical_decl)
6080 return child_idx;
6081 }
6082
6083 return UINT32_MAX;
6084}
6085
6086// Look for a child member (doesn't include base classes, but it does include
6087// their members) in the type hierarchy. Returns an index path into "clang_type"
6088// on how to reach the appropriate member.
6089//
6090// class A
6091// {
6092// public:
6093// int m_a;
6094// int m_b;
6095// };
6096//
6097// class B
6098// {
6099// };
6100//
6101// class C :
6102// public B,
6103// public A
6104// {
6105// };
6106//
6107// If we have a clang type that describes "class C", and we wanted to looked
6108// "m_b" in it:
6109//
6110// With omit_empty_base_classes == false we would get an integer array back with:
6111// { 1, 1 }
6112// The first index 1 is the child index for "class A" within class C
6113// The second index 1 is the child index for "m_b" within class A
6114//
6115// With omit_empty_base_classes == true we would get an integer array back with:
6116// { 0, 1 }
6117// The first index 0 is the child index for "class A" within class C (since class B doesn't have any members it doesn't count)
6118// The second index 1 is the child index for "m_b" within class A
6119
6120size_t
6121ClangASTContext::GetIndexOfChildMemberWithName (void* type, const char *name,
6122 bool omit_empty_base_classes,
6123 std::vector<uint32_t>& child_indexes)
6124{
6125 if (type && name && name[0])
6126 {
6127 clang::QualType qual_type(GetCanonicalQualType(type));
6128 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6129 switch (type_class)
6130 {
6131 case clang::Type::Record:
6132 if (GetCompleteType(type))
6133 {
6134 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
6135 const clang::RecordDecl *record_decl = record_type->getDecl();
6136
6137 assert(record_decl);
6138 uint32_t child_idx = 0;
6139
6140 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
6141
6142 // Try and find a field that matches NAME
6143 clang::RecordDecl::field_iterator field, field_end;
6144 llvm::StringRef name_sref(name);
6145 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
6146 field != field_end;
6147 ++field, ++child_idx)
6148 {
6149 llvm::StringRef field_name = field->getName();
6150 if (field_name.empty())
6151 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00006152 CompilerType field_type(getASTContext(),field->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00006153 child_indexes.push_back(child_idx);
6154 if (field_type.GetIndexOfChildMemberWithName(name, omit_empty_base_classes, child_indexes))
6155 return child_indexes.size();
6156 child_indexes.pop_back();
6157
6158 }
6159 else if (field_name.equals (name_sref))
6160 {
6161 // We have to add on the number of base classes to this index!
6162 child_indexes.push_back (child_idx + ClangASTContext::GetNumBaseClasses (cxx_record_decl, omit_empty_base_classes));
6163 return child_indexes.size();
6164 }
6165 }
6166
6167 if (cxx_record_decl)
6168 {
6169 const clang::RecordDecl *parent_record_decl = cxx_record_decl;
6170
6171 //printf ("parent = %s\n", parent_record_decl->getNameAsCString());
6172
6173 //const Decl *root_cdecl = cxx_record_decl->getCanonicalDecl();
6174 // Didn't find things easily, lets let clang do its thang...
6175 clang::IdentifierInfo & ident_ref = getASTContext()->Idents.get(name_sref);
6176 clang::DeclarationName decl_name(&ident_ref);
6177
6178 clang::CXXBasePaths paths;
6179 if (cxx_record_decl->lookupInBases([decl_name](const clang::CXXBaseSpecifier *specifier, clang::CXXBasePath &path) {
6180 return clang::CXXRecordDecl::FindOrdinaryMember(specifier, path, decl_name);
6181 },
6182 paths))
6183 {
6184 clang::CXXBasePaths::const_paths_iterator path, path_end = paths.end();
6185 for (path = paths.begin(); path != path_end; ++path)
6186 {
6187 const size_t num_path_elements = path->size();
6188 for (size_t e=0; e<num_path_elements; ++e)
6189 {
6190 clang::CXXBasePathElement elem = (*path)[e];
6191
6192 child_idx = GetIndexForRecordBase (parent_record_decl, elem.Base, omit_empty_base_classes);
6193 if (child_idx == UINT32_MAX)
6194 {
6195 child_indexes.clear();
6196 return 0;
6197 }
6198 else
6199 {
6200 child_indexes.push_back (child_idx);
6201 parent_record_decl = llvm::cast<clang::RecordDecl>(elem.Base->getType()->getAs<clang::RecordType>()->getDecl());
6202 }
6203 }
6204 for (clang::NamedDecl *path_decl : path->Decls)
6205 {
6206 child_idx = GetIndexForRecordChild (parent_record_decl, path_decl, omit_empty_base_classes);
6207 if (child_idx == UINT32_MAX)
6208 {
6209 child_indexes.clear();
6210 return 0;
6211 }
6212 else
6213 {
6214 child_indexes.push_back (child_idx);
6215 }
6216 }
6217 }
6218 return child_indexes.size();
6219 }
6220 }
6221
6222 }
6223 break;
6224
6225 case clang::Type::ObjCObject:
6226 case clang::Type::ObjCInterface:
6227 if (GetCompleteType(type))
6228 {
6229 llvm::StringRef name_sref(name);
6230 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
6231 assert (objc_class_type);
6232 if (objc_class_type)
6233 {
6234 uint32_t child_idx = 0;
6235 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
6236
6237 if (class_interface_decl)
6238 {
6239 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
6240 clang::ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
6241
6242 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos, ++child_idx)
6243 {
6244 const clang::ObjCIvarDecl* ivar_decl = *ivar_pos;
6245
6246 if (ivar_decl->getName().equals (name_sref))
6247 {
6248 if ((!omit_empty_base_classes && superclass_interface_decl) ||
6249 ( omit_empty_base_classes && ObjCDeclHasIVars (superclass_interface_decl, true)))
6250 ++child_idx;
6251
6252 child_indexes.push_back (child_idx);
6253 return child_indexes.size();
6254 }
6255 }
6256
6257 if (superclass_interface_decl)
6258 {
6259 // The super class index is always zero for ObjC classes,
6260 // so we push it onto the child indexes in case we find
6261 // an ivar in our superclass...
6262 child_indexes.push_back (0);
6263
Greg Claytona1e5dc82015-08-11 22:53:00 +00006264 CompilerType superclass_clang_type (getASTContext(), getASTContext()->getObjCInterfaceType(superclass_interface_decl));
Greg Claytond8d4a572015-08-11 21:38:15 +00006265 if (superclass_clang_type.GetIndexOfChildMemberWithName (name,
6266 omit_empty_base_classes,
6267 child_indexes))
6268 {
6269 // We did find an ivar in a superclass so just
6270 // return the results!
6271 return child_indexes.size();
6272 }
6273
6274 // We didn't find an ivar matching "name" in our
6275 // superclass, pop the superclass zero index that
6276 // we pushed on above.
6277 child_indexes.pop_back();
6278 }
6279 }
6280 }
6281 }
6282 break;
6283
6284 case clang::Type::ObjCObjectPointer:
6285 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00006286 CompilerType objc_object_clang_type (getASTContext(), llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr())->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00006287 return objc_object_clang_type.GetIndexOfChildMemberWithName (name,
6288 omit_empty_base_classes,
6289 child_indexes);
6290 }
6291 break;
6292
6293
6294 case clang::Type::ConstantArray:
6295 {
6296 // const clang::ConstantArrayType *array = llvm::cast<clang::ConstantArrayType>(parent_qual_type.getTypePtr());
6297 // const uint64_t element_count = array->getSize().getLimitedValue();
6298 //
6299 // if (idx < element_count)
6300 // {
6301 // std::pair<uint64_t, unsigned> field_type_info = ast->getTypeInfo(array->getElementType());
6302 //
6303 // char element_name[32];
6304 // ::snprintf (element_name, sizeof (element_name), "%s[%u]", parent_name ? parent_name : "", idx);
6305 //
6306 // child_name.assign(element_name);
6307 // assert(field_type_info.first % 8 == 0);
6308 // child_byte_size = field_type_info.first / 8;
6309 // child_byte_offset = idx * child_byte_size;
6310 // return array->getElementType().getAsOpaquePtr();
6311 // }
6312 }
6313 break;
6314
6315 // case clang::Type::MemberPointerType:
6316 // {
6317 // MemberPointerType *mem_ptr_type = llvm::cast<MemberPointerType>(qual_type.getTypePtr());
6318 // clang::QualType pointee_type = mem_ptr_type->getPointeeType();
6319 //
6320 // if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
6321 // {
6322 // return GetIndexOfChildWithName (ast,
6323 // mem_ptr_type->getPointeeType().getAsOpaquePtr(),
6324 // name);
6325 // }
6326 // }
6327 // break;
6328 //
6329 case clang::Type::LValueReference:
6330 case clang::Type::RValueReference:
6331 {
6332 const clang::ReferenceType *reference_type = llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
6333 clang::QualType pointee_type(reference_type->getPointeeType());
Greg Claytona1e5dc82015-08-11 22:53:00 +00006334 CompilerType pointee_clang_type (getASTContext(), pointee_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00006335
6336 if (pointee_clang_type.IsAggregateType ())
6337 {
6338 return pointee_clang_type.GetIndexOfChildMemberWithName (name,
6339 omit_empty_base_classes,
6340 child_indexes);
6341 }
6342 }
6343 break;
6344
6345 case clang::Type::Pointer:
6346 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00006347 CompilerType pointee_clang_type (GetPointeeType(type));
Greg Claytond8d4a572015-08-11 21:38:15 +00006348
6349 if (pointee_clang_type.IsAggregateType ())
6350 {
6351 return pointee_clang_type.GetIndexOfChildMemberWithName (name,
6352 omit_empty_base_classes,
6353 child_indexes);
6354 }
6355 }
6356 break;
6357
6358 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00006359 return CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetIndexOfChildMemberWithName (name,
Greg Claytond8d4a572015-08-11 21:38:15 +00006360 omit_empty_base_classes,
6361 child_indexes);
6362
6363 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00006364 return CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetIndexOfChildMemberWithName (name,
Greg Claytond8d4a572015-08-11 21:38:15 +00006365 omit_empty_base_classes,
6366 child_indexes);
6367
6368 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00006369 return CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetIndexOfChildMemberWithName (name,
Greg Claytond8d4a572015-08-11 21:38:15 +00006370 omit_empty_base_classes,
6371 child_indexes);
6372
6373 default:
6374 break;
6375 }
6376 }
6377 return 0;
6378}
6379
6380
6381// Get the index of the child of "clang_type" whose name matches. This function
6382// doesn't descend into the children, but only looks one level deep and name
6383// matches can include base class names.
6384
6385uint32_t
6386ClangASTContext::GetIndexOfChildWithName (void* type, const char *name, bool omit_empty_base_classes)
6387{
6388 if (type && name && name[0])
6389 {
6390 clang::QualType qual_type(GetCanonicalQualType(type));
6391
6392 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6393
6394 switch (type_class)
6395 {
6396 case clang::Type::Record:
6397 if (GetCompleteType(type))
6398 {
6399 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
6400 const clang::RecordDecl *record_decl = record_type->getDecl();
6401
6402 assert(record_decl);
6403 uint32_t child_idx = 0;
6404
6405 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
6406
6407 if (cxx_record_decl)
6408 {
6409 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
6410 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
6411 base_class != base_class_end;
6412 ++base_class)
6413 {
6414 // Skip empty base classes
6415 clang::CXXRecordDecl *base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
6416 if (omit_empty_base_classes && ClangASTContext::RecordHasFields(base_class_decl) == false)
6417 continue;
6418
Greg Claytona1e5dc82015-08-11 22:53:00 +00006419 CompilerType base_class_clang_type (getASTContext(), base_class->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00006420 std::string base_class_type_name (base_class_clang_type.GetTypeName().AsCString(""));
6421 if (base_class_type_name.compare (name) == 0)
6422 return child_idx;
6423 ++child_idx;
6424 }
6425 }
6426
6427 // Try and find a field that matches NAME
6428 clang::RecordDecl::field_iterator field, field_end;
6429 llvm::StringRef name_sref(name);
6430 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
6431 field != field_end;
6432 ++field, ++child_idx)
6433 {
6434 if (field->getName().equals (name_sref))
6435 return child_idx;
6436 }
6437
6438 }
6439 break;
6440
6441 case clang::Type::ObjCObject:
6442 case clang::Type::ObjCInterface:
6443 if (GetCompleteType(type))
6444 {
6445 llvm::StringRef name_sref(name);
6446 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
6447 assert (objc_class_type);
6448 if (objc_class_type)
6449 {
6450 uint32_t child_idx = 0;
6451 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
6452
6453 if (class_interface_decl)
6454 {
6455 clang::ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
6456 clang::ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
6457
6458 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos, ++child_idx)
6459 {
6460 const clang::ObjCIvarDecl* ivar_decl = *ivar_pos;
6461
6462 if (ivar_decl->getName().equals (name_sref))
6463 {
6464 if ((!omit_empty_base_classes && superclass_interface_decl) ||
6465 ( omit_empty_base_classes && ObjCDeclHasIVars (superclass_interface_decl, true)))
6466 ++child_idx;
6467
6468 return child_idx;
6469 }
6470 }
6471
6472 if (superclass_interface_decl)
6473 {
6474 if (superclass_interface_decl->getName().equals (name_sref))
6475 return 0;
6476 }
6477 }
6478 }
6479 }
6480 break;
6481
6482 case clang::Type::ObjCObjectPointer:
6483 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00006484 CompilerType pointee_clang_type (getASTContext(), llvm::cast<clang::ObjCObjectPointerType>(qual_type.getTypePtr())->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00006485 return pointee_clang_type.GetIndexOfChildWithName (name, omit_empty_base_classes);
6486 }
6487 break;
6488
6489 case clang::Type::ConstantArray:
6490 {
6491 // const clang::ConstantArrayType *array = llvm::cast<clang::ConstantArrayType>(parent_qual_type.getTypePtr());
6492 // const uint64_t element_count = array->getSize().getLimitedValue();
6493 //
6494 // if (idx < element_count)
6495 // {
6496 // std::pair<uint64_t, unsigned> field_type_info = ast->getTypeInfo(array->getElementType());
6497 //
6498 // char element_name[32];
6499 // ::snprintf (element_name, sizeof (element_name), "%s[%u]", parent_name ? parent_name : "", idx);
6500 //
6501 // child_name.assign(element_name);
6502 // assert(field_type_info.first % 8 == 0);
6503 // child_byte_size = field_type_info.first / 8;
6504 // child_byte_offset = idx * child_byte_size;
6505 // return array->getElementType().getAsOpaquePtr();
6506 // }
6507 }
6508 break;
6509
6510 // case clang::Type::MemberPointerType:
6511 // {
6512 // MemberPointerType *mem_ptr_type = llvm::cast<MemberPointerType>(qual_type.getTypePtr());
6513 // clang::QualType pointee_type = mem_ptr_type->getPointeeType();
6514 //
6515 // if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
6516 // {
6517 // return GetIndexOfChildWithName (ast,
6518 // mem_ptr_type->getPointeeType().getAsOpaquePtr(),
6519 // name);
6520 // }
6521 // }
6522 // break;
6523 //
6524 case clang::Type::LValueReference:
6525 case clang::Type::RValueReference:
6526 {
6527 const clang::ReferenceType *reference_type = llvm::cast<clang::ReferenceType>(qual_type.getTypePtr());
Greg Claytona1e5dc82015-08-11 22:53:00 +00006528 CompilerType pointee_type (getASTContext(), reference_type->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00006529
6530 if (pointee_type.IsAggregateType ())
6531 {
6532 return pointee_type.GetIndexOfChildWithName (name, omit_empty_base_classes);
6533 }
6534 }
6535 break;
6536
6537 case clang::Type::Pointer:
6538 {
6539 const clang::PointerType *pointer_type = llvm::cast<clang::PointerType>(qual_type.getTypePtr());
Greg Claytona1e5dc82015-08-11 22:53:00 +00006540 CompilerType pointee_type (getASTContext(), pointer_type->getPointeeType());
Greg Claytond8d4a572015-08-11 21:38:15 +00006541
6542 if (pointee_type.IsAggregateType ())
6543 {
6544 return pointee_type.GetIndexOfChildWithName (name, omit_empty_base_classes);
6545 }
6546 else
6547 {
6548 // if (parent_name)
6549 // {
6550 // child_name.assign(1, '*');
6551 // child_name += parent_name;
6552 // }
6553 //
6554 // // We have a pointer to an simple type
6555 // if (idx == 0)
6556 // {
6557 // std::pair<uint64_t, unsigned> clang_type_info = ast->getTypeInfo(pointee_type);
6558 // assert(clang_type_info.first % 8 == 0);
6559 // child_byte_size = clang_type_info.first / 8;
6560 // child_byte_offset = 0;
6561 // return pointee_type.getAsOpaquePtr();
6562 // }
6563 }
6564 }
6565 break;
6566
6567 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00006568 return CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).GetIndexOfChildWithName (name, omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00006569
6570 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00006571 return CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).GetIndexOfChildWithName (name, omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00006572
6573 case clang::Type::Typedef:
Greg Claytona1e5dc82015-08-11 22:53:00 +00006574 return CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType()).GetIndexOfChildWithName (name, omit_empty_base_classes);
Greg Claytond8d4a572015-08-11 21:38:15 +00006575
6576 default:
6577 break;
6578 }
6579 }
6580 return UINT32_MAX;
6581}
6582
6583
6584size_t
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006585ClangASTContext::GetNumTemplateArguments (void* type)
Greg Claytond8d4a572015-08-11 21:38:15 +00006586{
6587 if (!type)
6588 return 0;
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006589
6590 clang::QualType qual_type (GetCanonicalQualType(type));
6591 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6592 switch (type_class)
Greg Claytond8d4a572015-08-11 21:38:15 +00006593 {
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006594 case clang::Type::Record:
6595 if (GetCompleteType(type))
6596 {
6597 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
6598 if (cxx_record_decl)
Greg Claytond8d4a572015-08-11 21:38:15 +00006599 {
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006600 const clang::ClassTemplateSpecializationDecl *template_decl = llvm::dyn_cast<clang::ClassTemplateSpecializationDecl>(cxx_record_decl);
6601 if (template_decl)
6602 return template_decl->getTemplateArgs().size();
Greg Claytond8d4a572015-08-11 21:38:15 +00006603 }
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006604 }
6605 break;
6606
6607 case clang::Type::Typedef:
6608 return (CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType())).GetNumTemplateArguments();
6609
6610 case clang::Type::Elaborated:
6611 return (CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType())).GetNumTemplateArguments();
6612
6613 case clang::Type::Paren:
6614 return (CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar())).GetNumTemplateArguments();
6615
6616 default:
6617 break;
Greg Claytond8d4a572015-08-11 21:38:15 +00006618 }
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006619
Greg Claytond8d4a572015-08-11 21:38:15 +00006620 return 0;
6621}
6622
Greg Claytona1e5dc82015-08-11 22:53:00 +00006623CompilerType
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006624ClangASTContext::GetTemplateArgument (void* type, size_t arg_idx, lldb::TemplateArgumentKind &kind)
Greg Claytond8d4a572015-08-11 21:38:15 +00006625{
6626 if (!type)
Greg Claytona1e5dc82015-08-11 22:53:00 +00006627 return CompilerType();
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006628
6629 clang::QualType qual_type (GetCanonicalQualType(type));
6630 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
6631 switch (type_class)
Greg Claytond8d4a572015-08-11 21:38:15 +00006632 {
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006633 case clang::Type::Record:
6634 if (GetCompleteType(type))
6635 {
6636 const clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
6637 if (cxx_record_decl)
Greg Claytond8d4a572015-08-11 21:38:15 +00006638 {
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006639 const clang::ClassTemplateSpecializationDecl *template_decl = llvm::dyn_cast<clang::ClassTemplateSpecializationDecl>(cxx_record_decl);
6640 if (template_decl && arg_idx < template_decl->getTemplateArgs().size())
Greg Claytond8d4a572015-08-11 21:38:15 +00006641 {
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006642 const clang::TemplateArgument &template_arg = template_decl->getTemplateArgs()[arg_idx];
6643 switch (template_arg.getKind())
Greg Claytond8d4a572015-08-11 21:38:15 +00006644 {
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006645 case clang::TemplateArgument::Null:
6646 kind = eTemplateArgumentKindNull;
6647 return CompilerType();
6648
6649 case clang::TemplateArgument::Type:
6650 kind = eTemplateArgumentKindType;
6651 return CompilerType(getASTContext(), template_arg.getAsType());
6652
6653 case clang::TemplateArgument::Declaration:
6654 kind = eTemplateArgumentKindDeclaration;
6655 return CompilerType();
6656
6657 case clang::TemplateArgument::Integral:
6658 kind = eTemplateArgumentKindIntegral;
6659 return CompilerType(getASTContext(), template_arg.getIntegralType());
6660
6661 case clang::TemplateArgument::Template:
6662 kind = eTemplateArgumentKindTemplate;
6663 return CompilerType();
6664
6665 case clang::TemplateArgument::TemplateExpansion:
6666 kind = eTemplateArgumentKindTemplateExpansion;
6667 return CompilerType();
6668
6669 case clang::TemplateArgument::Expression:
6670 kind = eTemplateArgumentKindExpression;
6671 return CompilerType();
6672
6673 case clang::TemplateArgument::Pack:
6674 kind = eTemplateArgumentKindPack;
6675 return CompilerType();
6676
6677 default:
6678 assert (!"Unhandled clang::TemplateArgument::ArgKind");
6679 break;
Greg Claytond8d4a572015-08-11 21:38:15 +00006680 }
6681 }
6682 }
Enrico Granata53f2a4a2015-08-13 00:24:24 +00006683 }
6684 break;
6685
6686 case clang::Type::Typedef:
6687 return (CompilerType (getASTContext(), llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType())).GetTemplateArgument(arg_idx, kind);
6688
6689 case clang::Type::Elaborated:
6690 return (CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType())).GetTemplateArgument(arg_idx, kind);
6691
6692 case clang::Type::Paren:
6693 return (CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar())).GetTemplateArgument(arg_idx, kind);
6694
6695 default:
6696 break;
Greg Claytond8d4a572015-08-11 21:38:15 +00006697 }
6698 kind = eTemplateArgumentKindNull;
Greg Claytona1e5dc82015-08-11 22:53:00 +00006699 return CompilerType ();
Greg Claytond8d4a572015-08-11 21:38:15 +00006700}
6701
6702static bool
6703IsOperator (const char *name, clang::OverloadedOperatorKind &op_kind)
6704{
6705 if (name == nullptr || name[0] == '\0')
6706 return false;
6707
6708#define OPERATOR_PREFIX "operator"
6709#define OPERATOR_PREFIX_LENGTH (sizeof (OPERATOR_PREFIX) - 1)
6710
6711 const char *post_op_name = nullptr;
6712
6713 bool no_space = true;
6714
6715 if (::strncmp(name, OPERATOR_PREFIX, OPERATOR_PREFIX_LENGTH))
6716 return false;
6717
6718 post_op_name = name + OPERATOR_PREFIX_LENGTH;
6719
6720 if (post_op_name[0] == ' ')
6721 {
6722 post_op_name++;
6723 no_space = false;
6724 }
6725
6726#undef OPERATOR_PREFIX
6727#undef OPERATOR_PREFIX_LENGTH
6728
6729 // This is an operator, set the overloaded operator kind to invalid
6730 // in case this is a conversion operator...
6731 op_kind = clang::NUM_OVERLOADED_OPERATORS;
6732
6733 switch (post_op_name[0])
6734 {
6735 default:
6736 if (no_space)
6737 return false;
6738 break;
6739 case 'n':
6740 if (no_space)
6741 return false;
6742 if (strcmp (post_op_name, "new") == 0)
6743 op_kind = clang::OO_New;
6744 else if (strcmp (post_op_name, "new[]") == 0)
6745 op_kind = clang::OO_Array_New;
6746 break;
6747
6748 case 'd':
6749 if (no_space)
6750 return false;
6751 if (strcmp (post_op_name, "delete") == 0)
6752 op_kind = clang::OO_Delete;
6753 else if (strcmp (post_op_name, "delete[]") == 0)
6754 op_kind = clang::OO_Array_Delete;
6755 break;
6756
6757 case '+':
6758 if (post_op_name[1] == '\0')
6759 op_kind = clang::OO_Plus;
6760 else if (post_op_name[2] == '\0')
6761 {
6762 if (post_op_name[1] == '=')
6763 op_kind = clang::OO_PlusEqual;
6764 else if (post_op_name[1] == '+')
6765 op_kind = clang::OO_PlusPlus;
6766 }
6767 break;
6768
6769 case '-':
6770 if (post_op_name[1] == '\0')
6771 op_kind = clang::OO_Minus;
6772 else if (post_op_name[2] == '\0')
6773 {
6774 switch (post_op_name[1])
6775 {
6776 case '=': op_kind = clang::OO_MinusEqual; break;
6777 case '-': op_kind = clang::OO_MinusMinus; break;
6778 case '>': op_kind = clang::OO_Arrow; break;
6779 }
6780 }
6781 else if (post_op_name[3] == '\0')
6782 {
6783 if (post_op_name[2] == '*')
6784 op_kind = clang::OO_ArrowStar; break;
6785 }
6786 break;
6787
6788 case '*':
6789 if (post_op_name[1] == '\0')
6790 op_kind = clang::OO_Star;
6791 else if (post_op_name[1] == '=' && post_op_name[2] == '\0')
6792 op_kind = clang::OO_StarEqual;
6793 break;
6794
6795 case '/':
6796 if (post_op_name[1] == '\0')
6797 op_kind = clang::OO_Slash;
6798 else if (post_op_name[1] == '=' && post_op_name[2] == '\0')
6799 op_kind = clang::OO_SlashEqual;
6800 break;
6801
6802 case '%':
6803 if (post_op_name[1] == '\0')
6804 op_kind = clang::OO_Percent;
6805 else if (post_op_name[1] == '=' && post_op_name[2] == '\0')
6806 op_kind = clang::OO_PercentEqual;
6807 break;
6808
6809
6810 case '^':
6811 if (post_op_name[1] == '\0')
6812 op_kind = clang::OO_Caret;
6813 else if (post_op_name[1] == '=' && post_op_name[2] == '\0')
6814 op_kind = clang::OO_CaretEqual;
6815 break;
6816
6817 case '&':
6818 if (post_op_name[1] == '\0')
6819 op_kind = clang::OO_Amp;
6820 else if (post_op_name[2] == '\0')
6821 {
6822 switch (post_op_name[1])
6823 {
6824 case '=': op_kind = clang::OO_AmpEqual; break;
6825 case '&': op_kind = clang::OO_AmpAmp; break;
6826 }
6827 }
6828 break;
6829
6830 case '|':
6831 if (post_op_name[1] == '\0')
6832 op_kind = clang::OO_Pipe;
6833 else if (post_op_name[2] == '\0')
6834 {
6835 switch (post_op_name[1])
6836 {
6837 case '=': op_kind = clang::OO_PipeEqual; break;
6838 case '|': op_kind = clang::OO_PipePipe; break;
6839 }
6840 }
6841 break;
6842
6843 case '~':
6844 if (post_op_name[1] == '\0')
6845 op_kind = clang::OO_Tilde;
6846 break;
6847
6848 case '!':
6849 if (post_op_name[1] == '\0')
6850 op_kind = clang::OO_Exclaim;
6851 else if (post_op_name[1] == '=' && post_op_name[2] == '\0')
6852 op_kind = clang::OO_ExclaimEqual;
6853 break;
6854
6855 case '=':
6856 if (post_op_name[1] == '\0')
6857 op_kind = clang::OO_Equal;
6858 else if (post_op_name[1] == '=' && post_op_name[2] == '\0')
6859 op_kind = clang::OO_EqualEqual;
6860 break;
6861
6862 case '<':
6863 if (post_op_name[1] == '\0')
6864 op_kind = clang::OO_Less;
6865 else if (post_op_name[2] == '\0')
6866 {
6867 switch (post_op_name[1])
6868 {
6869 case '<': op_kind = clang::OO_LessLess; break;
6870 case '=': op_kind = clang::OO_LessEqual; break;
6871 }
6872 }
6873 else if (post_op_name[3] == '\0')
6874 {
6875 if (post_op_name[2] == '=')
6876 op_kind = clang::OO_LessLessEqual;
6877 }
6878 break;
6879
6880 case '>':
6881 if (post_op_name[1] == '\0')
6882 op_kind = clang::OO_Greater;
6883 else if (post_op_name[2] == '\0')
6884 {
6885 switch (post_op_name[1])
6886 {
6887 case '>': op_kind = clang::OO_GreaterGreater; break;
6888 case '=': op_kind = clang::OO_GreaterEqual; break;
6889 }
6890 }
6891 else if (post_op_name[1] == '>' &&
6892 post_op_name[2] == '=' &&
6893 post_op_name[3] == '\0')
6894 {
6895 op_kind = clang::OO_GreaterGreaterEqual;
6896 }
6897 break;
6898
6899 case ',':
6900 if (post_op_name[1] == '\0')
6901 op_kind = clang::OO_Comma;
6902 break;
6903
6904 case '(':
6905 if (post_op_name[1] == ')' && post_op_name[2] == '\0')
6906 op_kind = clang::OO_Call;
6907 break;
6908
6909 case '[':
6910 if (post_op_name[1] == ']' && post_op_name[2] == '\0')
6911 op_kind = clang::OO_Subscript;
6912 break;
6913 }
6914
6915 return true;
6916}
6917
6918clang::EnumDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00006919ClangASTContext::GetAsEnumDecl (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00006920{
6921 const clang::EnumType *enutype = llvm::dyn_cast<clang::EnumType>(GetCanonicalQualType(type));
6922 if (enutype)
6923 return enutype->getDecl();
6924 return NULL;
6925}
6926
6927clang::RecordDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00006928ClangASTContext::GetAsRecordDecl (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00006929{
6930 const clang::RecordType *record_type = llvm::dyn_cast<clang::RecordType>(GetCanonicalQualType(type));
6931 if (record_type)
6932 return record_type->getDecl();
6933 return nullptr;
6934}
6935
6936clang::CXXRecordDecl *
6937ClangASTContext::GetAsCXXRecordDecl (void* type)
6938{
6939 return GetCanonicalQualType(type)->getAsCXXRecordDecl();
6940}
6941
6942clang::ObjCInterfaceDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00006943ClangASTContext::GetAsObjCInterfaceDecl (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00006944{
6945 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(GetCanonicalQualType(type));
6946 if (objc_class_type)
6947 return objc_class_type->getInterface();
6948 return nullptr;
6949}
6950
6951clang::FieldDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00006952ClangASTContext::AddFieldToRecordType (const CompilerType& type, const char *name,
6953 const CompilerType &field_clang_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00006954 AccessType access,
6955 uint32_t bitfield_bit_size)
6956{
6957 if (!type.IsValid() || !field_clang_type.IsValid())
6958 return nullptr;
Greg Claytonf73034f2015-09-08 18:15:05 +00006959 ClangASTContext *ast = llvm::dyn_cast_or_null<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00006960 if (!ast)
6961 return nullptr;
6962 clang::ASTContext* clang_ast = ast->getASTContext();
6963
6964 clang::FieldDecl *field = nullptr;
6965
6966 clang::Expr *bit_width = nullptr;
6967 if (bitfield_bit_size != 0)
6968 {
6969 llvm::APInt bitfield_bit_size_apint(clang_ast->getTypeSize(clang_ast->IntTy), bitfield_bit_size);
6970 bit_width = new (*clang_ast)clang::IntegerLiteral (*clang_ast, bitfield_bit_size_apint, clang_ast->IntTy, clang::SourceLocation());
6971 }
6972
6973 clang::RecordDecl *record_decl = ast->GetAsRecordDecl (type);
6974 if (record_decl)
6975 {
6976 field = clang::FieldDecl::Create (*clang_ast,
6977 record_decl,
6978 clang::SourceLocation(),
6979 clang::SourceLocation(),
6980 name ? &clang_ast->Idents.get(name) : nullptr, // Identifier
6981 GetQualType(field_clang_type), // Field type
6982 nullptr, // TInfo *
6983 bit_width, // BitWidth
6984 false, // Mutable
6985 clang::ICIS_NoInit); // HasInit
6986
6987 if (!name)
6988 {
6989 // Determine whether this field corresponds to an anonymous
6990 // struct or union.
6991 if (const clang::TagType *TagT = field->getType()->getAs<clang::TagType>()) {
6992 if (clang::RecordDecl *Rec = llvm::dyn_cast<clang::RecordDecl>(TagT->getDecl()))
6993 if (!Rec->getDeclName()) {
6994 Rec->setAnonymousStructOrUnion(true);
6995 field->setImplicit();
6996
6997 }
6998 }
6999 }
7000
7001 if (field)
7002 {
7003 field->setAccess (ClangASTContext::ConvertAccessTypeToAccessSpecifier (access));
7004
7005 record_decl->addDecl(field);
7006
7007#ifdef LLDB_CONFIGURATION_DEBUG
7008 VerifyDecl(field);
7009#endif
7010 }
7011 }
7012 else
7013 {
7014 clang::ObjCInterfaceDecl *class_interface_decl = ast->GetAsObjCInterfaceDecl (type);
7015
7016 if (class_interface_decl)
7017 {
7018 const bool is_synthesized = false;
7019
7020 field_clang_type.GetCompleteType();
7021
7022 field = clang::ObjCIvarDecl::Create (*clang_ast,
7023 class_interface_decl,
7024 clang::SourceLocation(),
7025 clang::SourceLocation(),
7026 name ? &clang_ast->Idents.get(name) : nullptr, // Identifier
7027 GetQualType(field_clang_type), // Field type
7028 nullptr, // TypeSourceInfo *
7029 ConvertAccessTypeToObjCIvarAccessControl (access),
7030 bit_width,
7031 is_synthesized);
7032
7033 if (field)
7034 {
7035 class_interface_decl->addDecl(field);
7036
7037#ifdef LLDB_CONFIGURATION_DEBUG
7038 VerifyDecl(field);
7039#endif
7040 }
7041 }
7042 }
7043 return field;
7044}
7045
7046void
Greg Claytona1e5dc82015-08-11 22:53:00 +00007047ClangASTContext::BuildIndirectFields (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00007048{
Greg Claytonf73034f2015-09-08 18:15:05 +00007049 if (!type)
7050 return;
7051
7052 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00007053 if (!ast)
7054 return;
7055
7056 clang::RecordDecl *record_decl = ast->GetAsRecordDecl(type);
7057
7058 if (!record_decl)
7059 return;
7060
7061 typedef llvm::SmallVector <clang::IndirectFieldDecl *, 1> IndirectFieldVector;
7062
7063 IndirectFieldVector indirect_fields;
7064 clang::RecordDecl::field_iterator field_pos;
7065 clang::RecordDecl::field_iterator field_end_pos = record_decl->field_end();
7066 clang::RecordDecl::field_iterator last_field_pos = field_end_pos;
7067 for (field_pos = record_decl->field_begin(); field_pos != field_end_pos; last_field_pos = field_pos++)
7068 {
7069 if (field_pos->isAnonymousStructOrUnion())
7070 {
7071 clang::QualType field_qual_type = field_pos->getType();
7072
7073 const clang::RecordType *field_record_type = field_qual_type->getAs<clang::RecordType>();
7074
7075 if (!field_record_type)
7076 continue;
7077
7078 clang::RecordDecl *field_record_decl = field_record_type->getDecl();
7079
7080 if (!field_record_decl)
7081 continue;
7082
7083 for (clang::RecordDecl::decl_iterator di = field_record_decl->decls_begin(), de = field_record_decl->decls_end();
7084 di != de;
7085 ++di)
7086 {
7087 if (clang::FieldDecl *nested_field_decl = llvm::dyn_cast<clang::FieldDecl>(*di))
7088 {
7089 clang::NamedDecl **chain = new (*ast->getASTContext()) clang::NamedDecl*[2];
7090 chain[0] = *field_pos;
7091 chain[1] = nested_field_decl;
7092 clang::IndirectFieldDecl *indirect_field = clang::IndirectFieldDecl::Create(*ast->getASTContext(),
7093 record_decl,
7094 clang::SourceLocation(),
7095 nested_field_decl->getIdentifier(),
7096 nested_field_decl->getType(),
7097 chain,
7098 2);
7099
7100 indirect_field->setImplicit();
7101
7102 indirect_field->setAccess(ClangASTContext::UnifyAccessSpecifiers(field_pos->getAccess(),
7103 nested_field_decl->getAccess()));
7104
7105 indirect_fields.push_back(indirect_field);
7106 }
7107 else if (clang::IndirectFieldDecl *nested_indirect_field_decl = llvm::dyn_cast<clang::IndirectFieldDecl>(*di))
7108 {
7109 int nested_chain_size = nested_indirect_field_decl->getChainingSize();
7110 clang::NamedDecl **chain = new (*ast->getASTContext()) clang::NamedDecl*[nested_chain_size + 1];
7111 chain[0] = *field_pos;
7112
7113 int chain_index = 1;
7114 for (clang::IndirectFieldDecl::chain_iterator nci = nested_indirect_field_decl->chain_begin(),
7115 nce = nested_indirect_field_decl->chain_end();
7116 nci < nce;
7117 ++nci)
7118 {
7119 chain[chain_index] = *nci;
7120 chain_index++;
7121 }
7122
7123 clang::IndirectFieldDecl *indirect_field = clang::IndirectFieldDecl::Create(*ast->getASTContext(),
7124 record_decl,
7125 clang::SourceLocation(),
7126 nested_indirect_field_decl->getIdentifier(),
7127 nested_indirect_field_decl->getType(),
7128 chain,
7129 nested_chain_size + 1);
7130
7131 indirect_field->setImplicit();
7132
7133 indirect_field->setAccess(ClangASTContext::UnifyAccessSpecifiers(field_pos->getAccess(),
7134 nested_indirect_field_decl->getAccess()));
7135
7136 indirect_fields.push_back(indirect_field);
7137 }
7138 }
7139 }
7140 }
7141
7142 // Check the last field to see if it has an incomplete array type as its
7143 // last member and if it does, the tell the record decl about it
7144 if (last_field_pos != field_end_pos)
7145 {
7146 if (last_field_pos->getType()->isIncompleteArrayType())
7147 record_decl->hasFlexibleArrayMember();
7148 }
7149
7150 for (IndirectFieldVector::iterator ifi = indirect_fields.begin(), ife = indirect_fields.end();
7151 ifi < ife;
7152 ++ifi)
7153 {
7154 record_decl->addDecl(*ifi);
7155 }
7156}
7157
7158void
Greg Claytona1e5dc82015-08-11 22:53:00 +00007159ClangASTContext::SetIsPacked (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00007160{
Greg Claytonf73034f2015-09-08 18:15:05 +00007161 if (type)
7162 {
7163 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
7164 if (ast)
7165 {
7166 clang::RecordDecl *record_decl = GetAsRecordDecl(type);
Greg Claytond8d4a572015-08-11 21:38:15 +00007167
Greg Claytonf73034f2015-09-08 18:15:05 +00007168 if (!record_decl)
7169 return;
Greg Claytond8d4a572015-08-11 21:38:15 +00007170
Greg Claytonf73034f2015-09-08 18:15:05 +00007171 record_decl->addAttr(clang::PackedAttr::CreateImplicit(*ast->getASTContext()));
7172 }
7173 }
Greg Claytond8d4a572015-08-11 21:38:15 +00007174}
7175
7176clang::VarDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00007177ClangASTContext::AddVariableToRecordType (const CompilerType& type, const char *name,
7178 const CompilerType &var_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00007179 AccessType access)
7180{
7181 clang::VarDecl *var_decl = nullptr;
7182
7183 if (!type.IsValid() || !var_type.IsValid())
7184 return nullptr;
Greg Claytonf73034f2015-09-08 18:15:05 +00007185 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00007186 if (!ast)
7187 return nullptr;
7188
7189 clang::RecordDecl *record_decl = ast->GetAsRecordDecl (type);
7190 if (record_decl)
7191 {
7192 var_decl = clang::VarDecl::Create (*ast->getASTContext(), // ASTContext &
7193 record_decl, // DeclContext *
7194 clang::SourceLocation(), // clang::SourceLocation StartLoc
7195 clang::SourceLocation(), // clang::SourceLocation IdLoc
7196 name ? &ast->getASTContext()->Idents.get(name) : nullptr, // clang::IdentifierInfo *
7197 GetQualType(var_type), // Variable clang::QualType
7198 nullptr, // TypeSourceInfo *
7199 clang::SC_Static); // StorageClass
7200 if (var_decl)
7201 {
7202 var_decl->setAccess(ClangASTContext::ConvertAccessTypeToAccessSpecifier (access));
7203 record_decl->addDecl(var_decl);
7204
7205#ifdef LLDB_CONFIGURATION_DEBUG
7206 VerifyDecl(var_decl);
7207#endif
7208 }
7209 }
7210 return var_decl;
7211}
7212
7213
7214clang::CXXMethodDecl *
7215ClangASTContext::AddMethodToCXXRecordType (void* type, const char *name,
Greg Claytona1e5dc82015-08-11 22:53:00 +00007216 const CompilerType &method_clang_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00007217 lldb::AccessType access,
7218 bool is_virtual,
7219 bool is_static,
7220 bool is_inline,
7221 bool is_explicit,
7222 bool is_attr_used,
7223 bool is_artificial)
7224{
7225 if (!type || !method_clang_type.IsValid() || name == nullptr || name[0] == '\0')
7226 return nullptr;
7227
7228 clang::QualType record_qual_type(GetCanonicalQualType(type));
7229
7230 clang::CXXRecordDecl *cxx_record_decl = record_qual_type->getAsCXXRecordDecl();
7231
7232 if (cxx_record_decl == nullptr)
7233 return nullptr;
7234
7235 clang::QualType method_qual_type (GetQualType(method_clang_type));
7236
7237 clang::CXXMethodDecl *cxx_method_decl = nullptr;
7238
7239 clang::DeclarationName decl_name (&getASTContext()->Idents.get(name));
7240
7241 const clang::FunctionType *function_type = llvm::dyn_cast<clang::FunctionType>(method_qual_type.getTypePtr());
7242
7243 if (function_type == nullptr)
7244 return nullptr;
7245
7246 const clang::FunctionProtoType *method_function_prototype (llvm::dyn_cast<clang::FunctionProtoType>(function_type));
7247
7248 if (!method_function_prototype)
7249 return nullptr;
7250
7251 unsigned int num_params = method_function_prototype->getNumParams();
7252
7253 clang::CXXDestructorDecl *cxx_dtor_decl(nullptr);
7254 clang::CXXConstructorDecl *cxx_ctor_decl(nullptr);
7255
7256 if (is_artificial)
7257 return nullptr; // skip everything artificial
7258
7259 if (name[0] == '~')
7260 {
7261 cxx_dtor_decl = clang::CXXDestructorDecl::Create (*getASTContext(),
7262 cxx_record_decl,
7263 clang::SourceLocation(),
7264 clang::DeclarationNameInfo (getASTContext()->DeclarationNames.getCXXDestructorName (getASTContext()->getCanonicalType (record_qual_type)), clang::SourceLocation()),
7265 method_qual_type,
7266 nullptr,
7267 is_inline,
7268 is_artificial);
7269 cxx_method_decl = cxx_dtor_decl;
7270 }
7271 else if (decl_name == cxx_record_decl->getDeclName())
7272 {
7273 cxx_ctor_decl = clang::CXXConstructorDecl::Create (*getASTContext(),
7274 cxx_record_decl,
7275 clang::SourceLocation(),
7276 clang::DeclarationNameInfo (getASTContext()->DeclarationNames.getCXXConstructorName (getASTContext()->getCanonicalType (record_qual_type)), clang::SourceLocation()),
7277 method_qual_type,
7278 nullptr, // TypeSourceInfo *
7279 is_explicit,
7280 is_inline,
7281 is_artificial,
7282 false /*is_constexpr*/);
7283 cxx_method_decl = cxx_ctor_decl;
7284 }
7285 else
7286 {
7287 clang::StorageClass SC = is_static ? clang::SC_Static : clang::SC_None;
7288 clang::OverloadedOperatorKind op_kind = clang::NUM_OVERLOADED_OPERATORS;
7289
7290 if (IsOperator (name, op_kind))
7291 {
7292 if (op_kind != clang::NUM_OVERLOADED_OPERATORS)
7293 {
7294 // Check the number of operator parameters. Sometimes we have
7295 // seen bad DWARF that doesn't correctly describe operators and
7296 // if we try to create a method and add it to the class, clang
7297 // will assert and crash, so we need to make sure things are
7298 // acceptable.
7299 if (!ClangASTContext::CheckOverloadedOperatorKindParameterCount (op_kind, num_params))
7300 return nullptr;
7301 cxx_method_decl = clang::CXXMethodDecl::Create (*getASTContext(),
7302 cxx_record_decl,
7303 clang::SourceLocation(),
7304 clang::DeclarationNameInfo (getASTContext()->DeclarationNames.getCXXOperatorName (op_kind), clang::SourceLocation()),
7305 method_qual_type,
7306 nullptr, // TypeSourceInfo *
7307 SC,
7308 is_inline,
7309 false /*is_constexpr*/,
7310 clang::SourceLocation());
7311 }
7312 else if (num_params == 0)
7313 {
7314 // Conversion operators don't take params...
7315 cxx_method_decl = clang::CXXConversionDecl::Create (*getASTContext(),
7316 cxx_record_decl,
7317 clang::SourceLocation(),
7318 clang::DeclarationNameInfo (getASTContext()->DeclarationNames.getCXXConversionFunctionName (getASTContext()->getCanonicalType (function_type->getReturnType())), clang::SourceLocation()),
7319 method_qual_type,
7320 nullptr, // TypeSourceInfo *
7321 is_inline,
7322 is_explicit,
7323 false /*is_constexpr*/,
7324 clang::SourceLocation());
7325 }
7326 }
7327
7328 if (cxx_method_decl == nullptr)
7329 {
7330 cxx_method_decl = clang::CXXMethodDecl::Create (*getASTContext(),
7331 cxx_record_decl,
7332 clang::SourceLocation(),
7333 clang::DeclarationNameInfo (decl_name, clang::SourceLocation()),
7334 method_qual_type,
7335 nullptr, // TypeSourceInfo *
7336 SC,
7337 is_inline,
7338 false /*is_constexpr*/,
7339 clang::SourceLocation());
7340 }
7341 }
7342
7343 clang::AccessSpecifier access_specifier = ClangASTContext::ConvertAccessTypeToAccessSpecifier (access);
7344
7345 cxx_method_decl->setAccess (access_specifier);
7346 cxx_method_decl->setVirtualAsWritten (is_virtual);
7347
7348 if (is_attr_used)
7349 cxx_method_decl->addAttr(clang::UsedAttr::CreateImplicit(*getASTContext()));
7350
7351 // Populate the method decl with parameter decls
7352
7353 llvm::SmallVector<clang::ParmVarDecl *, 12> params;
7354
7355 for (unsigned param_index = 0;
7356 param_index < num_params;
7357 ++param_index)
7358 {
7359 params.push_back (clang::ParmVarDecl::Create (*getASTContext(),
7360 cxx_method_decl,
7361 clang::SourceLocation(),
7362 clang::SourceLocation(),
7363 nullptr, // anonymous
7364 method_function_prototype->getParamType(param_index),
7365 nullptr,
7366 clang::SC_None,
7367 nullptr));
7368 }
7369
7370 cxx_method_decl->setParams (llvm::ArrayRef<clang::ParmVarDecl*>(params));
7371
7372 cxx_record_decl->addDecl (cxx_method_decl);
7373
7374 // Sometimes the debug info will mention a constructor (default/copy/move),
7375 // destructor, or assignment operator (copy/move) but there won't be any
7376 // version of this in the code. So we check if the function was artificially
7377 // generated and if it is trivial and this lets the compiler/backend know
7378 // that it can inline the IR for these when it needs to and we can avoid a
7379 // "missing function" error when running expressions.
7380
7381 if (is_artificial)
7382 {
7383 if (cxx_ctor_decl &&
7384 ((cxx_ctor_decl->isDefaultConstructor() && cxx_record_decl->hasTrivialDefaultConstructor ()) ||
7385 (cxx_ctor_decl->isCopyConstructor() && cxx_record_decl->hasTrivialCopyConstructor ()) ||
7386 (cxx_ctor_decl->isMoveConstructor() && cxx_record_decl->hasTrivialMoveConstructor ()) ))
7387 {
7388 cxx_ctor_decl->setDefaulted();
7389 cxx_ctor_decl->setTrivial(true);
7390 }
7391 else if (cxx_dtor_decl)
7392 {
7393 if (cxx_record_decl->hasTrivialDestructor())
7394 {
7395 cxx_dtor_decl->setDefaulted();
7396 cxx_dtor_decl->setTrivial(true);
7397 }
7398 }
7399 else if ((cxx_method_decl->isCopyAssignmentOperator() && cxx_record_decl->hasTrivialCopyAssignment()) ||
7400 (cxx_method_decl->isMoveAssignmentOperator() && cxx_record_decl->hasTrivialMoveAssignment()))
7401 {
7402 cxx_method_decl->setDefaulted();
7403 cxx_method_decl->setTrivial(true);
7404 }
7405 }
7406
7407#ifdef LLDB_CONFIGURATION_DEBUG
7408 VerifyDecl(cxx_method_decl);
7409#endif
7410
7411 // printf ("decl->isPolymorphic() = %i\n", cxx_record_decl->isPolymorphic());
7412 // printf ("decl->isAggregate() = %i\n", cxx_record_decl->isAggregate());
7413 // printf ("decl->isPOD() = %i\n", cxx_record_decl->isPOD());
7414 // printf ("decl->isEmpty() = %i\n", cxx_record_decl->isEmpty());
7415 // printf ("decl->isAbstract() = %i\n", cxx_record_decl->isAbstract());
7416 // printf ("decl->hasTrivialConstructor() = %i\n", cxx_record_decl->hasTrivialConstructor());
7417 // printf ("decl->hasTrivialCopyConstructor() = %i\n", cxx_record_decl->hasTrivialCopyConstructor());
7418 // printf ("decl->hasTrivialCopyAssignment() = %i\n", cxx_record_decl->hasTrivialCopyAssignment());
7419 // printf ("decl->hasTrivialDestructor() = %i\n", cxx_record_decl->hasTrivialDestructor());
7420 return cxx_method_decl;
7421}
7422
7423
7424#pragma mark C++ Base Classes
7425
7426clang::CXXBaseSpecifier *
7427ClangASTContext::CreateBaseClassSpecifier (void* type, AccessType access, bool is_virtual, bool base_of_class)
7428{
7429 if (type)
7430 return new clang::CXXBaseSpecifier (clang::SourceRange(),
7431 is_virtual,
7432 base_of_class,
7433 ClangASTContext::ConvertAccessTypeToAccessSpecifier (access),
7434 getASTContext()->getTrivialTypeSourceInfo (GetQualType(type)),
7435 clang::SourceLocation());
7436 return nullptr;
7437}
7438
7439void
7440ClangASTContext::DeleteBaseClassSpecifiers (clang::CXXBaseSpecifier **base_classes, unsigned num_base_classes)
7441{
7442 for (unsigned i=0; i<num_base_classes; ++i)
7443 {
7444 delete base_classes[i];
7445 base_classes[i] = nullptr;
7446 }
7447}
7448
7449bool
7450ClangASTContext::SetBaseClassesForClassType (void* type, clang::CXXBaseSpecifier const * const *base_classes,
7451 unsigned num_base_classes)
7452{
7453 if (type)
7454 {
7455 clang::CXXRecordDecl *cxx_record_decl = GetAsCXXRecordDecl(type);
7456 if (cxx_record_decl)
7457 {
7458 cxx_record_decl->setBases(base_classes, num_base_classes);
7459 return true;
7460 }
7461 }
7462 return false;
7463}
7464
7465bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00007466ClangASTContext::SetObjCSuperClass (const CompilerType& type, const CompilerType &superclass_clang_type)
Greg Claytond8d4a572015-08-11 21:38:15 +00007467{
Greg Claytonf73034f2015-09-08 18:15:05 +00007468 ClangASTContext *ast = llvm::dyn_cast_or_null<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00007469 if (!ast)
7470 return false;
7471 clang::ASTContext* clang_ast = ast->getASTContext();
7472
7473 if (type && superclass_clang_type.IsValid() && superclass_clang_type.GetTypeSystem() == type.GetTypeSystem())
7474 {
7475 clang::ObjCInterfaceDecl *class_interface_decl = GetAsObjCInterfaceDecl (type);
7476 clang::ObjCInterfaceDecl *super_interface_decl = GetAsObjCInterfaceDecl (superclass_clang_type);
7477 if (class_interface_decl && super_interface_decl)
7478 {
7479 class_interface_decl->setSuperClass(clang_ast->getTrivialTypeSourceInfo(clang_ast->getObjCInterfaceType(super_interface_decl)));
7480 return true;
7481 }
7482 }
7483 return false;
7484}
7485
7486bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00007487ClangASTContext::AddObjCClassProperty (const CompilerType& type,
Greg Claytond8d4a572015-08-11 21:38:15 +00007488 const char *property_name,
Greg Claytona1e5dc82015-08-11 22:53:00 +00007489 const CompilerType &property_clang_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00007490 clang::ObjCIvarDecl *ivar_decl,
7491 const char *property_setter_name,
7492 const char *property_getter_name,
7493 uint32_t property_attributes,
7494 ClangASTMetadata *metadata)
7495{
7496 if (!type || !property_clang_type.IsValid() || property_name == nullptr || property_name[0] == '\0')
7497 return false;
Greg Claytonf73034f2015-09-08 18:15:05 +00007498 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00007499 if (!ast)
7500 return false;
7501 clang::ASTContext* clang_ast = ast->getASTContext();
7502
7503 clang::ObjCInterfaceDecl *class_interface_decl = GetAsObjCInterfaceDecl (type);
7504
7505 if (class_interface_decl)
7506 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00007507 CompilerType property_clang_type_to_access;
Greg Claytond8d4a572015-08-11 21:38:15 +00007508
7509 if (property_clang_type.IsValid())
7510 property_clang_type_to_access = property_clang_type;
7511 else if (ivar_decl)
Greg Claytona1e5dc82015-08-11 22:53:00 +00007512 property_clang_type_to_access = CompilerType (clang_ast, ivar_decl->getType());
Greg Claytond8d4a572015-08-11 21:38:15 +00007513
7514 if (class_interface_decl && property_clang_type_to_access.IsValid())
7515 {
7516 clang::TypeSourceInfo *prop_type_source;
7517 if (ivar_decl)
7518 prop_type_source = clang_ast->getTrivialTypeSourceInfo (ivar_decl->getType());
7519 else
7520 prop_type_source = clang_ast->getTrivialTypeSourceInfo (GetQualType(property_clang_type));
7521
7522 clang::ObjCPropertyDecl *property_decl = clang::ObjCPropertyDecl::Create (*clang_ast,
7523 class_interface_decl,
7524 clang::SourceLocation(), // Source Location
7525 &clang_ast->Idents.get(property_name),
7526 clang::SourceLocation(), //Source Location for AT
7527 clang::SourceLocation(), //Source location for (
7528 ivar_decl ? ivar_decl->getType() : ClangASTContext::GetQualType(property_clang_type),
7529 prop_type_source);
7530
7531 if (property_decl)
7532 {
7533 if (metadata)
7534 ClangASTContext::SetMetadata(clang_ast, property_decl, *metadata);
7535
7536 class_interface_decl->addDecl (property_decl);
7537
7538 clang::Selector setter_sel, getter_sel;
7539
7540 if (property_setter_name != nullptr)
7541 {
7542 std::string property_setter_no_colon(property_setter_name, strlen(property_setter_name) - 1);
7543 clang::IdentifierInfo *setter_ident = &clang_ast->Idents.get(property_setter_no_colon.c_str());
7544 setter_sel = clang_ast->Selectors.getSelector(1, &setter_ident);
7545 }
7546 else if (!(property_attributes & DW_APPLE_PROPERTY_readonly))
7547 {
7548 std::string setter_sel_string("set");
7549 setter_sel_string.push_back(::toupper(property_name[0]));
7550 setter_sel_string.append(&property_name[1]);
7551 clang::IdentifierInfo *setter_ident = &clang_ast->Idents.get(setter_sel_string.c_str());
7552 setter_sel = clang_ast->Selectors.getSelector(1, &setter_ident);
7553 }
7554 property_decl->setSetterName(setter_sel);
7555 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_setter);
7556
7557 if (property_getter_name != nullptr)
7558 {
7559 clang::IdentifierInfo *getter_ident = &clang_ast->Idents.get(property_getter_name);
7560 getter_sel = clang_ast->Selectors.getSelector(0, &getter_ident);
7561 }
7562 else
7563 {
7564 clang::IdentifierInfo *getter_ident = &clang_ast->Idents.get(property_name);
7565 getter_sel = clang_ast->Selectors.getSelector(0, &getter_ident);
7566 }
7567 property_decl->setGetterName(getter_sel);
7568 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_getter);
7569
7570 if (ivar_decl)
7571 property_decl->setPropertyIvarDecl (ivar_decl);
7572
7573 if (property_attributes & DW_APPLE_PROPERTY_readonly)
7574 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_readonly);
7575 if (property_attributes & DW_APPLE_PROPERTY_readwrite)
7576 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_readwrite);
7577 if (property_attributes & DW_APPLE_PROPERTY_assign)
7578 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_assign);
7579 if (property_attributes & DW_APPLE_PROPERTY_retain)
7580 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_retain);
7581 if (property_attributes & DW_APPLE_PROPERTY_copy)
7582 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_copy);
7583 if (property_attributes & DW_APPLE_PROPERTY_nonatomic)
7584 property_decl->setPropertyAttributes (clang::ObjCPropertyDecl::OBJC_PR_nonatomic);
7585
7586 if (!getter_sel.isNull() && !class_interface_decl->lookupInstanceMethod(getter_sel))
7587 {
7588 const bool isInstance = true;
7589 const bool isVariadic = false;
7590 const bool isSynthesized = false;
7591 const bool isImplicitlyDeclared = true;
7592 const bool isDefined = false;
7593 const clang::ObjCMethodDecl::ImplementationControl impControl = clang::ObjCMethodDecl::None;
7594 const bool HasRelatedResultType = false;
7595
7596 clang::ObjCMethodDecl *getter = clang::ObjCMethodDecl::Create (*clang_ast,
7597 clang::SourceLocation(),
7598 clang::SourceLocation(),
7599 getter_sel,
7600 GetQualType(property_clang_type_to_access),
7601 nullptr,
7602 class_interface_decl,
7603 isInstance,
7604 isVariadic,
7605 isSynthesized,
7606 isImplicitlyDeclared,
7607 isDefined,
7608 impControl,
7609 HasRelatedResultType);
7610
7611 if (getter && metadata)
7612 ClangASTContext::SetMetadata(clang_ast, getter, *metadata);
7613
7614 if (getter)
7615 {
7616 getter->setMethodParams(*clang_ast, llvm::ArrayRef<clang::ParmVarDecl*>(), llvm::ArrayRef<clang::SourceLocation>());
7617
7618 class_interface_decl->addDecl(getter);
7619 }
7620 }
7621
7622 if (!setter_sel.isNull() && !class_interface_decl->lookupInstanceMethod(setter_sel))
7623 {
7624 clang::QualType result_type = clang_ast->VoidTy;
7625
7626 const bool isInstance = true;
7627 const bool isVariadic = false;
7628 const bool isSynthesized = false;
7629 const bool isImplicitlyDeclared = true;
7630 const bool isDefined = false;
7631 const clang::ObjCMethodDecl::ImplementationControl impControl = clang::ObjCMethodDecl::None;
7632 const bool HasRelatedResultType = false;
7633
7634 clang::ObjCMethodDecl *setter = clang::ObjCMethodDecl::Create (*clang_ast,
7635 clang::SourceLocation(),
7636 clang::SourceLocation(),
7637 setter_sel,
7638 result_type,
7639 nullptr,
7640 class_interface_decl,
7641 isInstance,
7642 isVariadic,
7643 isSynthesized,
7644 isImplicitlyDeclared,
7645 isDefined,
7646 impControl,
7647 HasRelatedResultType);
7648
7649 if (setter && metadata)
7650 ClangASTContext::SetMetadata(clang_ast, setter, *metadata);
7651
7652 llvm::SmallVector<clang::ParmVarDecl *, 1> params;
7653
7654 params.push_back (clang::ParmVarDecl::Create (*clang_ast,
7655 setter,
7656 clang::SourceLocation(),
7657 clang::SourceLocation(),
7658 nullptr, // anonymous
7659 GetQualType(property_clang_type_to_access),
7660 nullptr,
7661 clang::SC_Auto,
7662 nullptr));
7663
7664 if (setter)
7665 {
7666 setter->setMethodParams(*clang_ast, llvm::ArrayRef<clang::ParmVarDecl*>(params), llvm::ArrayRef<clang::SourceLocation>());
7667
7668 class_interface_decl->addDecl(setter);
7669 }
7670 }
7671
7672 return true;
7673 }
7674 }
7675 }
7676 return false;
7677}
7678
7679bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00007680ClangASTContext::IsObjCClassTypeAndHasIVars (const CompilerType& type, bool check_superclass)
Greg Claytond8d4a572015-08-11 21:38:15 +00007681{
7682 clang::ObjCInterfaceDecl *class_interface_decl = GetAsObjCInterfaceDecl (type);
7683 if (class_interface_decl)
7684 return ObjCDeclHasIVars (class_interface_decl, check_superclass);
7685 return false;
7686}
7687
7688
7689clang::ObjCMethodDecl *
Greg Claytona1e5dc82015-08-11 22:53:00 +00007690ClangASTContext::AddMethodToObjCObjectType (const CompilerType& type,
Greg Claytond8d4a572015-08-11 21:38:15 +00007691 const char *name, // the full symbol name as seen in the symbol table (void* type, "-[NString stringWithCString:]")
Greg Claytona1e5dc82015-08-11 22:53:00 +00007692 const CompilerType &method_clang_type,
Greg Claytond8d4a572015-08-11 21:38:15 +00007693 lldb::AccessType access,
7694 bool is_artificial)
7695{
7696 if (!type || !method_clang_type.IsValid())
7697 return nullptr;
7698
7699 clang::ObjCInterfaceDecl *class_interface_decl = GetAsObjCInterfaceDecl(type);
7700
7701 if (class_interface_decl == nullptr)
7702 return nullptr;
Greg Claytonf73034f2015-09-08 18:15:05 +00007703 ClangASTContext *lldb_ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
7704 if (lldb_ast == nullptr)
7705 return nullptr;
7706 clang::ASTContext *ast = lldb_ast->getASTContext();
7707
Greg Claytond8d4a572015-08-11 21:38:15 +00007708 const char *selector_start = ::strchr (name, ' ');
7709 if (selector_start == nullptr)
7710 return nullptr;
7711
7712 selector_start++;
7713 llvm::SmallVector<clang::IdentifierInfo *, 12> selector_idents;
7714
7715 size_t len = 0;
7716 const char *start;
7717 //printf ("name = '%s'\n", name);
7718
7719 unsigned num_selectors_with_args = 0;
7720 for (start = selector_start;
7721 start && *start != '\0' && *start != ']';
7722 start += len)
7723 {
7724 len = ::strcspn(start, ":]");
7725 bool has_arg = (start[len] == ':');
7726 if (has_arg)
7727 ++num_selectors_with_args;
7728 selector_idents.push_back (&ast->Idents.get (llvm::StringRef (start, len)));
7729 if (has_arg)
7730 len += 1;
7731 }
7732
7733
7734 if (selector_idents.size() == 0)
7735 return nullptr;
7736
7737 clang::Selector method_selector = ast->Selectors.getSelector (num_selectors_with_args ? selector_idents.size() : 0,
7738 selector_idents.data());
7739
7740 clang::QualType method_qual_type (GetQualType(method_clang_type));
7741
7742 // Populate the method decl with parameter decls
7743 const clang::Type *method_type(method_qual_type.getTypePtr());
7744
7745 if (method_type == nullptr)
7746 return nullptr;
7747
7748 const clang::FunctionProtoType *method_function_prototype (llvm::dyn_cast<clang::FunctionProtoType>(method_type));
7749
7750 if (!method_function_prototype)
7751 return nullptr;
7752
7753
7754 bool is_variadic = false;
7755 bool is_synthesized = false;
7756 bool is_defined = false;
7757 clang::ObjCMethodDecl::ImplementationControl imp_control = clang::ObjCMethodDecl::None;
7758
7759 const unsigned num_args = method_function_prototype->getNumParams();
7760
7761 if (num_args != num_selectors_with_args)
7762 return nullptr; // some debug information is corrupt. We are not going to deal with it.
7763
7764 clang::ObjCMethodDecl *objc_method_decl = clang::ObjCMethodDecl::Create (*ast,
7765 clang::SourceLocation(), // beginLoc,
7766 clang::SourceLocation(), // endLoc,
7767 method_selector,
7768 method_function_prototype->getReturnType(),
7769 nullptr, // TypeSourceInfo *ResultTInfo,
7770 ClangASTContext::GetASTContext(ast)->GetDeclContextForType(GetQualType(type)),
7771 name[0] == '-',
7772 is_variadic,
7773 is_synthesized,
7774 true, // is_implicitly_declared; we force this to true because we don't have source locations
7775 is_defined,
7776 imp_control,
7777 false /*has_related_result_type*/);
7778
7779
7780 if (objc_method_decl == nullptr)
7781 return nullptr;
7782
7783 if (num_args > 0)
7784 {
7785 llvm::SmallVector<clang::ParmVarDecl *, 12> params;
7786
7787 for (unsigned param_index = 0; param_index < num_args; ++param_index)
7788 {
7789 params.push_back (clang::ParmVarDecl::Create (*ast,
7790 objc_method_decl,
7791 clang::SourceLocation(),
7792 clang::SourceLocation(),
7793 nullptr, // anonymous
7794 method_function_prototype->getParamType(param_index),
7795 nullptr,
7796 clang::SC_Auto,
7797 nullptr));
7798 }
7799
7800 objc_method_decl->setMethodParams(*ast, llvm::ArrayRef<clang::ParmVarDecl*>(params), llvm::ArrayRef<clang::SourceLocation>());
7801 }
7802
7803 class_interface_decl->addDecl (objc_method_decl);
7804
7805#ifdef LLDB_CONFIGURATION_DEBUG
7806 VerifyDecl(objc_method_decl);
7807#endif
7808
7809 return objc_method_decl;
7810}
7811
7812bool
7813ClangASTContext::SetHasExternalStorage (void* type, bool has_extern)
7814{
7815 if (!type)
7816 return false;
7817
7818 clang::QualType qual_type (GetCanonicalQualType(type));
7819
7820 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
7821 switch (type_class)
7822 {
7823 case clang::Type::Record:
7824 {
7825 clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
7826 if (cxx_record_decl)
7827 {
7828 cxx_record_decl->setHasExternalLexicalStorage (has_extern);
7829 cxx_record_decl->setHasExternalVisibleStorage (has_extern);
7830 return true;
7831 }
7832 }
7833 break;
7834
7835 case clang::Type::Enum:
7836 {
7837 clang::EnumDecl *enum_decl = llvm::cast<clang::EnumType>(qual_type)->getDecl();
7838 if (enum_decl)
7839 {
7840 enum_decl->setHasExternalLexicalStorage (has_extern);
7841 enum_decl->setHasExternalVisibleStorage (has_extern);
7842 return true;
7843 }
7844 }
7845 break;
7846
7847 case clang::Type::ObjCObject:
7848 case clang::Type::ObjCInterface:
7849 {
7850 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
7851 assert (objc_class_type);
7852 if (objc_class_type)
7853 {
7854 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
7855
7856 if (class_interface_decl)
7857 {
7858 class_interface_decl->setHasExternalLexicalStorage (has_extern);
7859 class_interface_decl->setHasExternalVisibleStorage (has_extern);
7860 return true;
7861 }
7862 }
7863 }
7864 break;
7865
7866 case clang::Type::Typedef:
7867 return SetHasExternalStorage(llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType().getAsOpaquePtr(), has_extern);
7868
7869 case clang::Type::Elaborated:
7870 return SetHasExternalStorage (llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType().getAsOpaquePtr(), has_extern);
7871
7872 case clang::Type::Paren:
7873 return SetHasExternalStorage (llvm::cast<clang::ParenType>(qual_type)->desugar().getAsOpaquePtr(), has_extern);
7874
7875 default:
7876 break;
7877 }
7878 return false;
7879}
7880
7881
7882#pragma mark TagDecl
7883
7884bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00007885ClangASTContext::StartTagDeclarationDefinition (const CompilerType &type)
Greg Claytond8d4a572015-08-11 21:38:15 +00007886{
7887 if (type)
7888 {
7889
7890 clang::QualType qual_type (GetQualType(type));
7891 const clang::Type *t = qual_type.getTypePtr();
7892 if (t)
7893 {
7894 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(t);
7895 if (tag_type)
7896 {
7897 clang::TagDecl *tag_decl = tag_type->getDecl();
7898 if (tag_decl)
7899 {
7900 tag_decl->startDefinition();
7901 return true;
7902 }
7903 }
7904
7905 const clang::ObjCObjectType *object_type = llvm::dyn_cast<clang::ObjCObjectType>(t);
7906 if (object_type)
7907 {
7908 clang::ObjCInterfaceDecl *interface_decl = object_type->getInterface();
7909 if (interface_decl)
7910 {
7911 interface_decl->startDefinition();
7912 return true;
7913 }
7914 }
7915 }
7916 }
7917 return false;
7918}
7919
7920bool
Greg Claytona1e5dc82015-08-11 22:53:00 +00007921ClangASTContext::CompleteTagDeclarationDefinition (const CompilerType& type)
Greg Claytond8d4a572015-08-11 21:38:15 +00007922{
7923 if (type)
7924 {
7925 clang::QualType qual_type (GetQualType(type));
7926 if (qual_type.isNull())
7927 return false;
Greg Claytonf73034f2015-09-08 18:15:05 +00007928 ClangASTContext *lldb_ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
7929 if (lldb_ast == nullptr)
7930 return false;
7931 clang::ASTContext *ast = lldb_ast->getASTContext();
7932
Greg Claytond8d4a572015-08-11 21:38:15 +00007933 clang::CXXRecordDecl *cxx_record_decl = qual_type->getAsCXXRecordDecl();
7934
7935 if (cxx_record_decl)
7936 {
7937 cxx_record_decl->completeDefinition();
7938
7939 return true;
7940 }
7941
7942 const clang::EnumType *enutype = llvm::dyn_cast<clang::EnumType>(qual_type.getTypePtr());
7943
7944 if (enutype)
7945 {
7946 clang::EnumDecl *enum_decl = enutype->getDecl();
7947
7948 if (enum_decl)
7949 {
7950 /// TODO This really needs to be fixed.
7951
7952 unsigned NumPositiveBits = 1;
7953 unsigned NumNegativeBits = 0;
7954
7955 clang::QualType promotion_qual_type;
7956 // If the enum integer type is less than an integer in bit width,
7957 // then we must promote it to an integer size.
7958 if (ast->getTypeSize(enum_decl->getIntegerType()) < ast->getTypeSize(ast->IntTy))
7959 {
7960 if (enum_decl->getIntegerType()->isSignedIntegerType())
7961 promotion_qual_type = ast->IntTy;
7962 else
7963 promotion_qual_type = ast->UnsignedIntTy;
7964 }
7965 else
7966 promotion_qual_type = enum_decl->getIntegerType();
7967
7968 enum_decl->completeDefinition(enum_decl->getIntegerType(), promotion_qual_type, NumPositiveBits, NumNegativeBits);
7969 return true;
7970 }
7971 }
7972 }
7973 return false;
7974}
7975
Greg Claytond8d4a572015-08-11 21:38:15 +00007976bool
Greg Clayton8b4edba2015-08-14 20:02:05 +00007977ClangASTContext::AddEnumerationValueToEnumerationType (void* type,
7978 const CompilerType &enumerator_clang_type,
7979 const Declaration &decl,
7980 const char *name,
7981 int64_t enum_value,
7982 uint32_t enum_value_bit_size)
Greg Claytond8d4a572015-08-11 21:38:15 +00007983{
7984 if (type && enumerator_clang_type.IsValid() && name && name[0])
7985 {
7986 clang::QualType enum_qual_type (GetCanonicalQualType(type));
7987
7988 bool is_signed = false;
7989 enumerator_clang_type.IsIntegerType (is_signed);
7990 const clang::Type *clang_type = enum_qual_type.getTypePtr();
7991 if (clang_type)
7992 {
7993 const clang::EnumType *enutype = llvm::dyn_cast<clang::EnumType>(clang_type);
7994
7995 if (enutype)
7996 {
7997 llvm::APSInt enum_llvm_apsint(enum_value_bit_size, is_signed);
7998 enum_llvm_apsint = enum_value;
7999 clang::EnumConstantDecl *enumerator_decl =
8000 clang::EnumConstantDecl::Create (*getASTContext(),
8001 enutype->getDecl(),
8002 clang::SourceLocation(),
8003 name ? &getASTContext()->Idents.get(name) : nullptr, // Identifier
8004 GetQualType(enumerator_clang_type),
8005 nullptr,
8006 enum_llvm_apsint);
8007
8008 if (enumerator_decl)
8009 {
8010 enutype->getDecl()->addDecl(enumerator_decl);
8011
8012#ifdef LLDB_CONFIGURATION_DEBUG
8013 VerifyDecl(enumerator_decl);
8014#endif
8015
8016 return true;
8017 }
8018 }
8019 }
8020 }
8021 return false;
8022}
8023
Greg Claytona1e5dc82015-08-11 22:53:00 +00008024CompilerType
Greg Claytond8d4a572015-08-11 21:38:15 +00008025ClangASTContext::GetEnumerationIntegerType (void* type)
8026{
8027 clang::QualType enum_qual_type (GetCanonicalQualType(type));
8028 const clang::Type *clang_type = enum_qual_type.getTypePtr();
8029 if (clang_type)
8030 {
8031 const clang::EnumType *enutype = llvm::dyn_cast<clang::EnumType>(clang_type);
8032 if (enutype)
8033 {
8034 clang::EnumDecl *enum_decl = enutype->getDecl();
8035 if (enum_decl)
Greg Claytona1e5dc82015-08-11 22:53:00 +00008036 return CompilerType (getASTContext(), enum_decl->getIntegerType());
Greg Claytond8d4a572015-08-11 21:38:15 +00008037 }
8038 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00008039 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00008040}
8041
Greg Claytona1e5dc82015-08-11 22:53:00 +00008042CompilerType
8043ClangASTContext::CreateMemberPointerType (const CompilerType& type, const CompilerType &pointee_type)
Greg Claytond8d4a572015-08-11 21:38:15 +00008044{
8045 if (type && pointee_type.IsValid() && type.GetTypeSystem() == pointee_type.GetTypeSystem())
8046 {
Greg Claytonf73034f2015-09-08 18:15:05 +00008047 ClangASTContext *ast = llvm::dyn_cast<ClangASTContext>(type.GetTypeSystem());
Greg Claytond8d4a572015-08-11 21:38:15 +00008048 if (!ast)
Greg Claytona1e5dc82015-08-11 22:53:00 +00008049 return CompilerType();
8050 return CompilerType (ast->getASTContext(),
Greg Claytond8d4a572015-08-11 21:38:15 +00008051 ast->getASTContext()->getMemberPointerType (GetQualType(pointee_type),
8052 GetQualType(type).getTypePtr()));
8053 }
Greg Claytona1e5dc82015-08-11 22:53:00 +00008054 return CompilerType();
Greg Claytond8d4a572015-08-11 21:38:15 +00008055}
8056
8057
8058size_t
8059ClangASTContext::ConvertStringToFloatValue (void* type, const char *s, uint8_t *dst, size_t dst_size)
8060{
8061 if (type)
8062 {
8063 clang::QualType qual_type (GetCanonicalQualType(type));
8064 uint32_t count = 0;
8065 bool is_complex = false;
8066 if (IsFloatingPointType (type, count, is_complex))
8067 {
8068 // TODO: handle complex and vector types
8069 if (count != 1)
8070 return false;
8071
8072 llvm::StringRef s_sref(s);
8073 llvm::APFloat ap_float(getASTContext()->getFloatTypeSemantics(qual_type), s_sref);
8074
8075 const uint64_t bit_size = getASTContext()->getTypeSize (qual_type);
8076 const uint64_t byte_size = bit_size / 8;
8077 if (dst_size >= byte_size)
8078 {
8079 if (bit_size == sizeof(float)*8)
8080 {
8081 float float32 = ap_float.convertToFloat();
8082 ::memcpy (dst, &float32, byte_size);
8083 return byte_size;
8084 }
8085 else if (bit_size >= 64)
8086 {
8087 llvm::APInt ap_int(ap_float.bitcastToAPInt());
8088 ::memcpy (dst, ap_int.getRawData(), byte_size);
8089 return byte_size;
8090 }
8091 }
8092 }
8093 }
8094 return 0;
8095}
8096
8097
8098
8099//----------------------------------------------------------------------
8100// Dumping types
8101//----------------------------------------------------------------------
8102#define DEPTH_INCREMENT 2
8103
8104void
8105ClangASTContext::DumpValue (void* type, ExecutionContext *exe_ctx,
8106 Stream *s,
8107 lldb::Format format,
8108 const lldb_private::DataExtractor &data,
8109 lldb::offset_t data_byte_offset,
8110 size_t data_byte_size,
8111 uint32_t bitfield_bit_size,
8112 uint32_t bitfield_bit_offset,
8113 bool show_types,
8114 bool show_summary,
8115 bool verbose,
8116 uint32_t depth)
8117{
8118 if (!type)
8119 return;
8120
8121 clang::QualType qual_type(GetQualType(type));
8122 switch (qual_type->getTypeClass())
8123 {
8124 case clang::Type::Record:
8125 if (GetCompleteType(type))
8126 {
8127 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
8128 const clang::RecordDecl *record_decl = record_type->getDecl();
8129 assert(record_decl);
8130 uint32_t field_bit_offset = 0;
8131 uint32_t field_byte_offset = 0;
8132 const clang::ASTRecordLayout &record_layout = getASTContext()->getASTRecordLayout(record_decl);
8133 uint32_t child_idx = 0;
8134
8135 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
8136 if (cxx_record_decl)
8137 {
8138 // We might have base classes to print out first
8139 clang::CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
8140 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
8141 base_class != base_class_end;
8142 ++base_class)
8143 {
8144 const clang::CXXRecordDecl *base_class_decl = llvm::cast<clang::CXXRecordDecl>(base_class->getType()->getAs<clang::RecordType>()->getDecl());
8145
8146 // Skip empty base classes
8147 if (verbose == false && ClangASTContext::RecordHasFields(base_class_decl) == false)
8148 continue;
8149
8150 if (base_class->isVirtual())
8151 field_bit_offset = record_layout.getVBaseClassOffset(base_class_decl).getQuantity() * 8;
8152 else
8153 field_bit_offset = record_layout.getBaseClassOffset(base_class_decl).getQuantity() * 8;
8154 field_byte_offset = field_bit_offset / 8;
8155 assert (field_bit_offset % 8 == 0);
8156 if (child_idx == 0)
8157 s->PutChar('{');
8158 else
8159 s->PutChar(',');
8160
8161 clang::QualType base_class_qual_type = base_class->getType();
8162 std::string base_class_type_name(base_class_qual_type.getAsString());
8163
8164 // Indent and print the base class type name
8165 s->Printf("\n%*s%s ", depth + DEPTH_INCREMENT, "", base_class_type_name.c_str());
8166
8167 clang::TypeInfo base_class_type_info = getASTContext()->getTypeInfo(base_class_qual_type);
8168
8169 // Dump the value of the member
Greg Claytona1e5dc82015-08-11 22:53:00 +00008170 CompilerType base_clang_type(getASTContext(), base_class_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008171 base_clang_type.DumpValue (exe_ctx,
8172 s, // Stream to dump to
8173 base_clang_type.GetFormat(), // The format with which to display the member
8174 data, // Data buffer containing all bytes for this type
8175 data_byte_offset + field_byte_offset,// Offset into "data" where to grab value from
8176 base_class_type_info.Width / 8, // Size of this type in bytes
8177 0, // Bitfield bit size
8178 0, // Bitfield bit offset
8179 show_types, // Boolean indicating if we should show the variable types
8180 show_summary, // Boolean indicating if we should show a summary for the current type
8181 verbose, // Verbose output?
8182 depth + DEPTH_INCREMENT); // Scope depth for any types that have children
8183
8184 ++child_idx;
8185 }
8186 }
8187 uint32_t field_idx = 0;
8188 clang::RecordDecl::field_iterator field, field_end;
8189 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field, ++field_idx, ++child_idx)
8190 {
8191 // Print the starting squiggly bracket (if this is the
8192 // first member) or comma (for member 2 and beyond) for
8193 // the struct/union/class member.
8194 if (child_idx == 0)
8195 s->PutChar('{');
8196 else
8197 s->PutChar(',');
8198
8199 // Indent
8200 s->Printf("\n%*s", depth + DEPTH_INCREMENT, "");
8201
8202 clang::QualType field_type = field->getType();
8203 // Print the member type if requested
8204 // Figure out the type byte size (field_type_info.first) and
8205 // alignment (field_type_info.second) from the AST context.
8206 clang::TypeInfo field_type_info = getASTContext()->getTypeInfo(field_type);
8207 assert(field_idx < record_layout.getFieldCount());
8208 // Figure out the field offset within the current struct/union/class type
8209 field_bit_offset = record_layout.getFieldOffset (field_idx);
8210 field_byte_offset = field_bit_offset / 8;
8211 uint32_t field_bitfield_bit_size = 0;
8212 uint32_t field_bitfield_bit_offset = 0;
8213 if (ClangASTContext::FieldIsBitfield (getASTContext(), *field, field_bitfield_bit_size))
8214 field_bitfield_bit_offset = field_bit_offset % 8;
8215
8216 if (show_types)
8217 {
8218 std::string field_type_name(field_type.getAsString());
8219 if (field_bitfield_bit_size > 0)
8220 s->Printf("(%s:%u) ", field_type_name.c_str(), field_bitfield_bit_size);
8221 else
8222 s->Printf("(%s) ", field_type_name.c_str());
8223 }
8224 // Print the member name and equal sign
8225 s->Printf("%s = ", field->getNameAsString().c_str());
8226
8227
8228 // Dump the value of the member
Greg Claytona1e5dc82015-08-11 22:53:00 +00008229 CompilerType field_clang_type (getASTContext(), field_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008230 field_clang_type.DumpValue (exe_ctx,
8231 s, // Stream to dump to
8232 field_clang_type.GetFormat(), // The format with which to display the member
8233 data, // Data buffer containing all bytes for this type
8234 data_byte_offset + field_byte_offset,// Offset into "data" where to grab value from
8235 field_type_info.Width / 8, // Size of this type in bytes
8236 field_bitfield_bit_size, // Bitfield bit size
8237 field_bitfield_bit_offset, // Bitfield bit offset
8238 show_types, // Boolean indicating if we should show the variable types
8239 show_summary, // Boolean indicating if we should show a summary for the current type
8240 verbose, // Verbose output?
8241 depth + DEPTH_INCREMENT); // Scope depth for any types that have children
8242 }
8243
8244 // Indent the trailing squiggly bracket
8245 if (child_idx > 0)
8246 s->Printf("\n%*s}", depth, "");
8247 }
8248 return;
8249
8250 case clang::Type::Enum:
8251 if (GetCompleteType(type))
8252 {
8253 const clang::EnumType *enutype = llvm::cast<clang::EnumType>(qual_type.getTypePtr());
8254 const clang::EnumDecl *enum_decl = enutype->getDecl();
8255 assert(enum_decl);
8256 clang::EnumDecl::enumerator_iterator enum_pos, enum_end_pos;
8257 lldb::offset_t offset = data_byte_offset;
8258 const int64_t enum_value = data.GetMaxU64Bitfield(&offset, data_byte_size, bitfield_bit_size, bitfield_bit_offset);
8259 for (enum_pos = enum_decl->enumerator_begin(), enum_end_pos = enum_decl->enumerator_end(); enum_pos != enum_end_pos; ++enum_pos)
8260 {
8261 if (enum_pos->getInitVal() == enum_value)
8262 {
8263 s->Printf("%s", enum_pos->getNameAsString().c_str());
8264 return;
8265 }
8266 }
8267 // If we have gotten here we didn't get find the enumerator in the
8268 // enum decl, so just print the integer.
8269 s->Printf("%" PRIi64, enum_value);
8270 }
8271 return;
8272
8273 case clang::Type::ConstantArray:
8274 {
8275 const clang::ConstantArrayType *array = llvm::cast<clang::ConstantArrayType>(qual_type.getTypePtr());
8276 bool is_array_of_characters = false;
8277 clang::QualType element_qual_type = array->getElementType();
8278
8279 const clang::Type *canonical_type = element_qual_type->getCanonicalTypeInternal().getTypePtr();
8280 if (canonical_type)
8281 is_array_of_characters = canonical_type->isCharType();
8282
8283 const uint64_t element_count = array->getSize().getLimitedValue();
8284
8285 clang::TypeInfo field_type_info = getASTContext()->getTypeInfo(element_qual_type);
8286
8287 uint32_t element_idx = 0;
8288 uint32_t element_offset = 0;
8289 uint64_t element_byte_size = field_type_info.Width / 8;
8290 uint32_t element_stride = element_byte_size;
8291
8292 if (is_array_of_characters)
8293 {
8294 s->PutChar('"');
8295 data.Dump(s, data_byte_offset, lldb::eFormatChar, element_byte_size, element_count, UINT32_MAX, LLDB_INVALID_ADDRESS, 0, 0);
8296 s->PutChar('"');
8297 return;
8298 }
8299 else
8300 {
Greg Claytona1e5dc82015-08-11 22:53:00 +00008301 CompilerType element_clang_type(getASTContext(), element_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008302 lldb::Format element_format = element_clang_type.GetFormat();
8303
8304 for (element_idx = 0; element_idx < element_count; ++element_idx)
8305 {
8306 // Print the starting squiggly bracket (if this is the
8307 // first member) or comman (for member 2 and beyong) for
8308 // the struct/union/class member.
8309 if (element_idx == 0)
8310 s->PutChar('{');
8311 else
8312 s->PutChar(',');
8313
8314 // Indent and print the index
8315 s->Printf("\n%*s[%u] ", depth + DEPTH_INCREMENT, "", element_idx);
8316
8317 // Figure out the field offset within the current struct/union/class type
8318 element_offset = element_idx * element_stride;
8319
8320 // Dump the value of the member
8321 element_clang_type.DumpValue (exe_ctx,
8322 s, // Stream to dump to
8323 element_format, // The format with which to display the element
8324 data, // Data buffer containing all bytes for this type
8325 data_byte_offset + element_offset,// Offset into "data" where to grab value from
8326 element_byte_size, // Size of this type in bytes
8327 0, // Bitfield bit size
8328 0, // Bitfield bit offset
8329 show_types, // Boolean indicating if we should show the variable types
8330 show_summary, // Boolean indicating if we should show a summary for the current type
8331 verbose, // Verbose output?
8332 depth + DEPTH_INCREMENT); // Scope depth for any types that have children
8333 }
8334
8335 // Indent the trailing squiggly bracket
8336 if (element_idx > 0)
8337 s->Printf("\n%*s}", depth, "");
8338 }
8339 }
8340 return;
8341
8342 case clang::Type::Typedef:
8343 {
8344 clang::QualType typedef_qual_type = llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType();
8345
Greg Claytona1e5dc82015-08-11 22:53:00 +00008346 CompilerType typedef_clang_type (getASTContext(), typedef_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008347 lldb::Format typedef_format = typedef_clang_type.GetFormat();
8348 clang::TypeInfo typedef_type_info = getASTContext()->getTypeInfo(typedef_qual_type);
8349 uint64_t typedef_byte_size = typedef_type_info.Width / 8;
8350
8351 return typedef_clang_type.DumpValue (exe_ctx,
8352 s, // Stream to dump to
8353 typedef_format, // The format with which to display the element
8354 data, // Data buffer containing all bytes for this type
8355 data_byte_offset, // Offset into "data" where to grab value from
8356 typedef_byte_size, // Size of this type in bytes
8357 bitfield_bit_size, // Bitfield bit size
8358 bitfield_bit_offset,// Bitfield bit offset
8359 show_types, // Boolean indicating if we should show the variable types
8360 show_summary, // Boolean indicating if we should show a summary for the current type
8361 verbose, // Verbose output?
8362 depth); // Scope depth for any types that have children
8363 }
8364 break;
8365
8366 case clang::Type::Elaborated:
8367 {
8368 clang::QualType elaborated_qual_type = llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType();
Greg Claytona1e5dc82015-08-11 22:53:00 +00008369 CompilerType elaborated_clang_type (getASTContext(), elaborated_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008370 lldb::Format elaborated_format = elaborated_clang_type.GetFormat();
8371 clang::TypeInfo elaborated_type_info = getASTContext()->getTypeInfo(elaborated_qual_type);
8372 uint64_t elaborated_byte_size = elaborated_type_info.Width / 8;
8373
8374 return elaborated_clang_type.DumpValue (exe_ctx,
8375 s, // Stream to dump to
8376 elaborated_format, // The format with which to display the element
8377 data, // Data buffer containing all bytes for this type
8378 data_byte_offset, // Offset into "data" where to grab value from
8379 elaborated_byte_size, // Size of this type in bytes
8380 bitfield_bit_size, // Bitfield bit size
8381 bitfield_bit_offset,// Bitfield bit offset
8382 show_types, // Boolean indicating if we should show the variable types
8383 show_summary, // Boolean indicating if we should show a summary for the current type
8384 verbose, // Verbose output?
8385 depth); // Scope depth for any types that have children
8386 }
8387 break;
8388
8389 case clang::Type::Paren:
8390 {
8391 clang::QualType desugar_qual_type = llvm::cast<clang::ParenType>(qual_type)->desugar();
Greg Claytona1e5dc82015-08-11 22:53:00 +00008392 CompilerType desugar_clang_type (getASTContext(), desugar_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008393
8394 lldb::Format desugar_format = desugar_clang_type.GetFormat();
8395 clang::TypeInfo desugar_type_info = getASTContext()->getTypeInfo(desugar_qual_type);
8396 uint64_t desugar_byte_size = desugar_type_info.Width / 8;
8397
8398 return desugar_clang_type.DumpValue (exe_ctx,
8399 s, // Stream to dump to
8400 desugar_format, // The format with which to display the element
8401 data, // Data buffer containing all bytes for this type
8402 data_byte_offset, // Offset into "data" where to grab value from
8403 desugar_byte_size, // Size of this type in bytes
8404 bitfield_bit_size, // Bitfield bit size
8405 bitfield_bit_offset,// Bitfield bit offset
8406 show_types, // Boolean indicating if we should show the variable types
8407 show_summary, // Boolean indicating if we should show a summary for the current type
8408 verbose, // Verbose output?
8409 depth); // Scope depth for any types that have children
8410 }
8411 break;
8412
8413 default:
8414 // We are down to a scalar type that we just need to display.
8415 data.Dump(s,
8416 data_byte_offset,
8417 format,
8418 data_byte_size,
8419 1,
8420 UINT32_MAX,
8421 LLDB_INVALID_ADDRESS,
8422 bitfield_bit_size,
8423 bitfield_bit_offset);
8424
8425 if (show_summary)
8426 DumpSummary (type, exe_ctx, s, data, data_byte_offset, data_byte_size);
8427 break;
8428 }
8429}
8430
8431
8432
8433
8434bool
8435ClangASTContext::DumpTypeValue (void* type, Stream *s,
8436 lldb::Format format,
8437 const lldb_private::DataExtractor &data,
8438 lldb::offset_t byte_offset,
8439 size_t byte_size,
8440 uint32_t bitfield_bit_size,
8441 uint32_t bitfield_bit_offset,
8442 ExecutionContextScope *exe_scope)
8443{
8444 if (!type)
8445 return false;
8446 if (IsAggregateType(type))
8447 {
8448 return false;
8449 }
8450 else
8451 {
8452 clang::QualType qual_type(GetQualType(type));
8453
8454 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
8455 switch (type_class)
8456 {
8457 case clang::Type::Typedef:
8458 {
8459 clang::QualType typedef_qual_type = llvm::cast<clang::TypedefType>(qual_type)->getDecl()->getUnderlyingType();
Greg Claytona1e5dc82015-08-11 22:53:00 +00008460 CompilerType typedef_clang_type (getASTContext(), typedef_qual_type);
Greg Claytond8d4a572015-08-11 21:38:15 +00008461 if (format == eFormatDefault)
8462 format = typedef_clang_type.GetFormat();
8463 clang::TypeInfo typedef_type_info = getASTContext()->getTypeInfo(typedef_qual_type);
8464 uint64_t typedef_byte_size = typedef_type_info.Width / 8;
8465
8466 return typedef_clang_type.DumpTypeValue (s,
8467 format, // The format with which to display the element
8468 data, // Data buffer containing all bytes for this type
8469 byte_offset, // Offset into "data" where to grab value from
8470 typedef_byte_size, // Size of this type in bytes
8471 bitfield_bit_size, // Size in bits of a bitfield value, if zero don't treat as a bitfield
8472 bitfield_bit_offset, // Offset in bits of a bitfield value if bitfield_bit_size != 0
8473 exe_scope);
8474 }
8475 break;
8476
8477 case clang::Type::Enum:
8478 // If our format is enum or default, show the enumeration value as
8479 // its enumeration string value, else just display it as requested.
8480 if ((format == eFormatEnum || format == eFormatDefault) && GetCompleteType(type))
8481 {
8482 const clang::EnumType *enutype = llvm::cast<clang::EnumType>(qual_type.getTypePtr());
8483 const clang::EnumDecl *enum_decl = enutype->getDecl();
8484 assert(enum_decl);
8485 clang::EnumDecl::enumerator_iterator enum_pos, enum_end_pos;
8486 const bool is_signed = qual_type->isSignedIntegerOrEnumerationType();
8487 lldb::offset_t offset = byte_offset;
8488 if (is_signed)
8489 {
8490 const int64_t enum_svalue = data.GetMaxS64Bitfield (&offset, byte_size, bitfield_bit_size, bitfield_bit_offset);
8491 for (enum_pos = enum_decl->enumerator_begin(), enum_end_pos = enum_decl->enumerator_end(); enum_pos != enum_end_pos; ++enum_pos)
8492 {
8493 if (enum_pos->getInitVal().getSExtValue() == enum_svalue)
8494 {
8495 s->PutCString (enum_pos->getNameAsString().c_str());
8496 return true;
8497 }
8498 }
8499 // If we have gotten here we didn't get find the enumerator in the
8500 // enum decl, so just print the integer.
8501 s->Printf("%" PRIi64, enum_svalue);
8502 }
8503 else
8504 {
8505 const uint64_t enum_uvalue = data.GetMaxU64Bitfield (&offset, byte_size, bitfield_bit_size, bitfield_bit_offset);
8506 for (enum_pos = enum_decl->enumerator_begin(), enum_end_pos = enum_decl->enumerator_end(); enum_pos != enum_end_pos; ++enum_pos)
8507 {
8508 if (enum_pos->getInitVal().getZExtValue() == enum_uvalue)
8509 {
8510 s->PutCString (enum_pos->getNameAsString().c_str());
8511 return true;
8512 }
8513 }
8514 // If we have gotten here we didn't get find the enumerator in the
8515 // enum decl, so just print the integer.
8516 s->Printf("%" PRIu64, enum_uvalue);
8517 }
8518 return true;
8519 }
8520 // format was not enum, just fall through and dump the value as requested....
8521
8522 default:
8523 // We are down to a scalar type that we just need to display.
8524 {
8525 uint32_t item_count = 1;
8526 // A few formats, we might need to modify our size and count for depending
8527 // on how we are trying to display the value...
8528 switch (format)
8529 {
8530 default:
8531 case eFormatBoolean:
8532 case eFormatBinary:
8533 case eFormatComplex:
8534 case eFormatCString: // NULL terminated C strings
8535 case eFormatDecimal:
8536 case eFormatEnum:
8537 case eFormatHex:
8538 case eFormatHexUppercase:
8539 case eFormatFloat:
8540 case eFormatOctal:
8541 case eFormatOSType:
8542 case eFormatUnsigned:
8543 case eFormatPointer:
8544 case eFormatVectorOfChar:
8545 case eFormatVectorOfSInt8:
8546 case eFormatVectorOfUInt8:
8547 case eFormatVectorOfSInt16:
8548 case eFormatVectorOfUInt16:
8549 case eFormatVectorOfSInt32:
8550 case eFormatVectorOfUInt32:
8551 case eFormatVectorOfSInt64:
8552 case eFormatVectorOfUInt64:
8553 case eFormatVectorOfFloat32:
8554 case eFormatVectorOfFloat64:
8555 case eFormatVectorOfUInt128:
8556 break;
8557
8558 case eFormatChar:
8559 case eFormatCharPrintable:
8560 case eFormatCharArray:
8561 case eFormatBytes:
8562 case eFormatBytesWithASCII:
8563 item_count = byte_size;
8564 byte_size = 1;
8565 break;
8566
8567 case eFormatUnicode16:
8568 item_count = byte_size / 2;
8569 byte_size = 2;
8570 break;
8571
8572 case eFormatUnicode32:
8573 item_count = byte_size / 4;
8574 byte_size = 4;
8575 break;
8576 }
8577 return data.Dump (s,
8578 byte_offset,
8579 format,
8580 byte_size,
8581 item_count,
8582 UINT32_MAX,
8583 LLDB_INVALID_ADDRESS,
8584 bitfield_bit_size,
8585 bitfield_bit_offset,
8586 exe_scope);
8587 }
8588 break;
8589 }
8590 }
8591 return 0;
8592}
8593
8594
8595
8596void
8597ClangASTContext::DumpSummary (void* type, ExecutionContext *exe_ctx,
8598 Stream *s,
8599 const lldb_private::DataExtractor &data,
8600 lldb::offset_t data_byte_offset,
8601 size_t data_byte_size)
8602{
8603 uint32_t length = 0;
8604 if (IsCStringType (type, length))
8605 {
8606 if (exe_ctx)
8607 {
8608 Process *process = exe_ctx->GetProcessPtr();
8609 if (process)
8610 {
8611 lldb::offset_t offset = data_byte_offset;
8612 lldb::addr_t pointer_address = data.GetMaxU64(&offset, data_byte_size);
8613 std::vector<uint8_t> buf;
8614 if (length > 0)
8615 buf.resize (length);
8616 else
8617 buf.resize (256);
8618
8619 lldb_private::DataExtractor cstr_data(&buf.front(), buf.size(), process->GetByteOrder(), 4);
8620 buf.back() = '\0';
8621 size_t bytes_read;
8622 size_t total_cstr_len = 0;
8623 Error error;
8624 while ((bytes_read = process->ReadMemory (pointer_address, &buf.front(), buf.size(), error)) > 0)
8625 {
8626 const size_t len = strlen((const char *)&buf.front());
8627 if (len == 0)
8628 break;
8629 if (total_cstr_len == 0)
8630 s->PutCString (" \"");
8631 cstr_data.Dump(s, 0, lldb::eFormatChar, 1, len, UINT32_MAX, LLDB_INVALID_ADDRESS, 0, 0);
8632 total_cstr_len += len;
8633 if (len < buf.size())
8634 break;
8635 pointer_address += total_cstr_len;
8636 }
8637 if (total_cstr_len > 0)
8638 s->PutChar ('"');
8639 }
8640 }
8641 }
8642}
8643
8644void
8645ClangASTContext::DumpTypeDescription (void* type)
8646{
8647 StreamFile s (stdout, false);
8648 DumpTypeDescription (&s);
8649 ClangASTMetadata *metadata = ClangASTContext::GetMetadata (getASTContext(), type);
8650 if (metadata)
8651 {
8652 metadata->Dump (&s);
8653 }
8654}
8655
8656void
8657ClangASTContext::DumpTypeDescription (void* type, Stream *s)
8658{
8659 if (type)
8660 {
8661 clang::QualType qual_type(GetQualType(type));
8662
8663 llvm::SmallVector<char, 1024> buf;
8664 llvm::raw_svector_ostream llvm_ostrm (buf);
8665
8666 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
8667 switch (type_class)
8668 {
8669 case clang::Type::ObjCObject:
8670 case clang::Type::ObjCInterface:
8671 {
8672 GetCompleteType(type);
8673
8674 const clang::ObjCObjectType *objc_class_type = llvm::dyn_cast<clang::ObjCObjectType>(qual_type.getTypePtr());
8675 assert (objc_class_type);
8676 if (objc_class_type)
8677 {
8678 clang::ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
8679 if (class_interface_decl)
8680 {
8681 clang::PrintingPolicy policy = getASTContext()->getPrintingPolicy();
8682 class_interface_decl->print(llvm_ostrm, policy, s->GetIndentLevel());
8683 }
8684 }
8685 }
8686 break;
8687
8688 case clang::Type::Typedef:
8689 {
8690 const clang::TypedefType *typedef_type = qual_type->getAs<clang::TypedefType>();
8691 if (typedef_type)
8692 {
8693 const clang::TypedefNameDecl *typedef_decl = typedef_type->getDecl();
8694 std::string clang_typedef_name (typedef_decl->getQualifiedNameAsString());
8695 if (!clang_typedef_name.empty())
8696 {
8697 s->PutCString ("typedef ");
8698 s->PutCString (clang_typedef_name.c_str());
8699 }
8700 }
8701 }
8702 break;
8703
8704 case clang::Type::Elaborated:
Greg Claytona1e5dc82015-08-11 22:53:00 +00008705 CompilerType (getASTContext(), llvm::cast<clang::ElaboratedType>(qual_type)->getNamedType()).DumpTypeDescription(s);
Greg Claytond8d4a572015-08-11 21:38:15 +00008706 return;
8707
8708 case clang::Type::Paren:
Greg Claytona1e5dc82015-08-11 22:53:00 +00008709 CompilerType (getASTContext(), llvm::cast<clang::ParenType>(qual_type)->desugar()).DumpTypeDescription(s);
Greg Claytond8d4a572015-08-11 21:38:15 +00008710 return;
8711
8712 case clang::Type::Record:
8713 {
8714 GetCompleteType(type);
8715
8716 const clang::RecordType *record_type = llvm::cast<clang::RecordType>(qual_type.getTypePtr());
8717 const clang::RecordDecl *record_decl = record_type->getDecl();
8718 const clang::CXXRecordDecl *cxx_record_decl = llvm::dyn_cast<clang::CXXRecordDecl>(record_decl);
8719
8720 if (cxx_record_decl)
8721 cxx_record_decl->print(llvm_ostrm, getASTContext()->getPrintingPolicy(), s->GetIndentLevel());
8722 else
8723 record_decl->print(llvm_ostrm, getASTContext()->getPrintingPolicy(), s->GetIndentLevel());
8724 }
8725 break;
8726
8727 default:
8728 {
8729 const clang::TagType *tag_type = llvm::dyn_cast<clang::TagType>(qual_type.getTypePtr());
8730 if (tag_type)
8731 {
8732 clang::TagDecl *tag_decl = tag_type->getDecl();
8733 if (tag_decl)
8734 tag_decl->print(llvm_ostrm, 0);
8735 }
8736 else
8737 {
8738 std::string clang_type_name(qual_type.getAsString());
8739 if (!clang_type_name.empty())
8740 s->PutCString (clang_type_name.c_str());
8741 }
8742 }
8743 }
8744
Greg Claytond8d4a572015-08-11 21:38:15 +00008745 if (buf.size() > 0)
8746 {
8747 s->Write (buf.data(), buf.size());
8748 }
8749 }
8750}
Greg Clayton8b4edba2015-08-14 20:02:05 +00008751
Greg Clayton8b4edba2015-08-14 20:02:05 +00008752clang::ClassTemplateDecl *
Greg Clayton6071e6f2015-08-26 22:57:51 +00008753ClangASTContext::ParseClassTemplateDecl (clang::DeclContext *decl_ctx,
Greg Clayton8b4edba2015-08-14 20:02:05 +00008754 lldb::AccessType access_type,
8755 const char *parent_name,
8756 int tag_decl_kind,
8757 const ClangASTContext::TemplateParameterInfos &template_param_infos)
8758{
8759 if (template_param_infos.IsValid())
8760 {
8761 std::string template_basename(parent_name);
8762 template_basename.erase (template_basename.find('<'));
8763
8764 return CreateClassTemplateDecl (decl_ctx,
8765 access_type,
8766 template_basename.c_str(),
8767 tag_decl_kind,
8768 template_param_infos);
8769 }
8770 return NULL;
8771}
8772
Greg Clayton6dc8d582015-08-18 22:32:36 +00008773void
8774ClangASTContext::CompleteTagDecl (void *baton, clang::TagDecl *decl)
8775{
8776 ClangASTContext *ast = (ClangASTContext *)baton;
8777 SymbolFile *sym_file = ast->GetSymbolFile();
8778 if (sym_file)
8779 {
8780 CompilerType clang_type = GetTypeForDecl (decl);
8781 if (clang_type)
8782 sym_file->CompleteType (clang_type);
8783 }
8784}
8785
8786void
8787ClangASTContext::CompleteObjCInterfaceDecl (void *baton, clang::ObjCInterfaceDecl *decl)
8788{
8789 ClangASTContext *ast = (ClangASTContext *)baton;
8790 SymbolFile *sym_file = ast->GetSymbolFile();
8791 if (sym_file)
8792 {
8793 CompilerType clang_type = GetTypeForDecl (decl);
8794 if (clang_type)
8795 sym_file->CompleteType (clang_type);
8796 }
8797}
Greg Clayton8b4edba2015-08-14 20:02:05 +00008798
Greg Clayton261ac3f2015-08-28 01:01:03 +00008799
8800DWARFASTParser *
8801ClangASTContext::GetDWARFParser ()
8802{
8803 if (!m_dwarf_ast_parser_ap)
8804 m_dwarf_ast_parser_ap.reset(new DWARFASTParserClang(*this));
8805 return m_dwarf_ast_parser_ap.get();
8806}
8807
8808
Greg Clayton8b4edba2015-08-14 20:02:05 +00008809bool
Greg Clayton6dc8d582015-08-18 22:32:36 +00008810ClangASTContext::LayoutRecordType(void *baton,
Greg Clayton8b4edba2015-08-14 20:02:05 +00008811 const clang::RecordDecl *record_decl,
8812 uint64_t &bit_size,
8813 uint64_t &alignment,
8814 llvm::DenseMap<const clang::FieldDecl *, uint64_t> &field_offsets,
8815 llvm::DenseMap<const clang::CXXRecordDecl *, clang::CharUnits> &base_offsets,
8816 llvm::DenseMap<const clang::CXXRecordDecl *, clang::CharUnits> &vbase_offsets)
8817{
Greg Clayton6dc8d582015-08-18 22:32:36 +00008818 ClangASTContext *ast = (ClangASTContext *)baton;
Greg Clayton261ac3f2015-08-28 01:01:03 +00008819 DWARFASTParserClang *dwarf_ast_parser = (DWARFASTParserClang *)ast->GetDWARFParser();
8820 return dwarf_ast_parser->LayoutRecordType(record_decl, bit_size, alignment, field_offsets, base_offsets, vbase_offsets);
Greg Clayton8b4edba2015-08-14 20:02:05 +00008821}
8822
Greg Clayton99558cc42015-08-24 23:46:31 +00008823//----------------------------------------------------------------------
Paul Hermand628cbb2015-09-15 23:44:17 +00008824// CompilerDecl override functions
8825//----------------------------------------------------------------------
8826lldb::VariableSP
8827ClangASTContext::DeclGetVariable (void *opaque_decl)
8828{
8829 if (llvm::dyn_cast<clang::VarDecl>((clang::Decl *)opaque_decl))
8830 {
8831 auto decl_search_it = m_decl_objects.find(opaque_decl);
8832 if (decl_search_it != m_decl_objects.end())
8833 return std::static_pointer_cast<Variable>(decl_search_it->second);
8834 }
8835 return VariableSP();
8836}
8837
8838void
8839ClangASTContext::DeclLinkToObject (void *opaque_decl, std::shared_ptr<void> object)
8840{
8841 if (m_decl_objects.find(opaque_decl) == m_decl_objects.end())
8842 m_decl_objects.insert(std::make_pair(opaque_decl, object));
8843}
8844
8845ConstString
8846ClangASTContext::DeclGetName (void *opaque_decl)
8847{
8848 if (opaque_decl)
8849 {
8850 clang::NamedDecl *nd = llvm::dyn_cast<NamedDecl>((clang::Decl*)opaque_decl);
8851 if (nd != nullptr)
8852 return ConstString(nd->getName());
8853 }
8854 return ConstString();
8855}
8856
8857//----------------------------------------------------------------------
Greg Clayton99558cc42015-08-24 23:46:31 +00008858// CompilerDeclContext functions
8859//----------------------------------------------------------------------
8860
Paul Hermand628cbb2015-09-15 23:44:17 +00008861std::vector<void *>
8862ClangASTContext::DeclContextFindDeclByName(void *opaque_decl_ctx, ConstString name)
8863{
8864 std::vector<void *> found_decls;
8865 if (opaque_decl_ctx)
8866 {
8867 DeclContext *root_decl_ctx = (DeclContext *)opaque_decl_ctx;
8868 std::set<DeclContext *> searched;
8869 std::multimap<DeclContext *, DeclContext *> search_queue;
8870
8871 for (clang::DeclContext *decl_context = root_decl_ctx; decl_context != nullptr && found_decls.empty(); decl_context = decl_context->getParent())
8872 {
8873 search_queue.insert(std::make_pair(decl_context, decl_context));
8874
8875 for (auto it = search_queue.find(decl_context); it != search_queue.end(); it++)
8876 {
8877 searched.insert(it->second);
8878 for (clang::Decl *child : it->second->decls())
8879 {
8880 if (clang::NamedDecl *nd = llvm::dyn_cast<clang::NamedDecl>(child))
8881 {
8882 IdentifierInfo *ii = nd->getIdentifier();
8883 if (ii != nullptr && ii->getName().equals(name.AsCString(nullptr)))
8884 found_decls.push_back(nd);
8885 }
8886 else if (clang::UsingDirectiveDecl *ud = llvm::dyn_cast<clang::UsingDirectiveDecl>(child))
8887 {
8888 clang::DeclContext *from = ud->getCommonAncestor();
8889 if (searched.find(ud->getNominatedNamespace()) == searched.end())
8890 search_queue.insert(std::make_pair(from, ud->getNominatedNamespace()));
8891 }
8892 else if (clang::UsingDecl *ud = llvm::dyn_cast<clang::UsingDecl>(child))
8893 {
8894 for (clang::UsingShadowDecl *usd : ud->shadows())
8895 {
8896 clang::Decl *target = usd->getTargetDecl();
8897 if (clang::NamedDecl *nd = llvm::dyn_cast<clang::NamedDecl>(target))
8898 {
8899 IdentifierInfo *ii = nd->getIdentifier();
8900 if (ii != nullptr && ii->getName().equals(name.AsCString(nullptr)))
8901 found_decls.push_back(nd);
8902 }
8903 }
8904 }
8905 }
8906 }
8907 }
8908 }
8909 return found_decls;
8910}
8911
Greg Clayton99558cc42015-08-24 23:46:31 +00008912bool
8913ClangASTContext::DeclContextIsStructUnionOrClass (void *opaque_decl_ctx)
Greg Clayton8b4edba2015-08-14 20:02:05 +00008914{
Greg Clayton99558cc42015-08-24 23:46:31 +00008915 if (opaque_decl_ctx)
8916 return ((clang::DeclContext *)opaque_decl_ctx)->isRecord();
8917 else
8918 return false;
Greg Clayton8b4edba2015-08-14 20:02:05 +00008919}
8920
Greg Clayton99558cc42015-08-24 23:46:31 +00008921ConstString
8922ClangASTContext::DeclContextGetName (void *opaque_decl_ctx)
Greg Clayton8b4edba2015-08-14 20:02:05 +00008923{
Greg Clayton99558cc42015-08-24 23:46:31 +00008924 if (opaque_decl_ctx)
8925 {
8926 clang::NamedDecl *named_decl = llvm::dyn_cast<clang::NamedDecl>((clang::DeclContext *)opaque_decl_ctx);
8927 if (named_decl)
8928 return ConstString(named_decl->getName());
8929 }
8930 return ConstString();
8931}
8932
8933bool
8934ClangASTContext::DeclContextIsClassMethod (void *opaque_decl_ctx,
8935 lldb::LanguageType *language_ptr,
8936 bool *is_instance_method_ptr,
8937 ConstString *language_object_name_ptr)
8938{
8939 if (opaque_decl_ctx)
8940 {
8941 clang::DeclContext *decl_ctx = (clang::DeclContext *)opaque_decl_ctx;
8942 if (ObjCMethodDecl *objc_method = llvm::dyn_cast<clang::ObjCMethodDecl>(decl_ctx))
8943 {
8944 if (is_instance_method_ptr)
8945 *is_instance_method_ptr = objc_method->isInstanceMethod();
8946 if (language_ptr)
8947 *language_ptr = eLanguageTypeObjC;
8948 if (language_object_name_ptr)
8949 language_object_name_ptr->SetCString("self");
8950 return true;
8951 }
8952 else if (CXXMethodDecl *cxx_method = llvm::dyn_cast<clang::CXXMethodDecl>(decl_ctx))
8953 {
8954 if (is_instance_method_ptr)
8955 *is_instance_method_ptr = cxx_method->isInstance();
8956 if (language_ptr)
8957 *language_ptr = eLanguageTypeC_plus_plus;
8958 if (language_object_name_ptr)
8959 language_object_name_ptr->SetCString("this");
8960 return true;
8961 }
8962 else if (clang::FunctionDecl *function_decl = llvm::dyn_cast<clang::FunctionDecl>(decl_ctx))
8963 {
8964 ClangASTMetadata *metadata = GetMetadata (&decl_ctx->getParentASTContext(), function_decl);
8965 if (metadata && metadata->HasObjectPtr())
8966 {
8967 if (is_instance_method_ptr)
8968 *is_instance_method_ptr = true;
8969 if (language_ptr)
8970 *language_ptr = eLanguageTypeObjC;
8971 if (language_object_name_ptr)
8972 language_object_name_ptr->SetCString (metadata->GetObjectPtrName());
8973 return true;
8974 }
8975 }
8976 }
8977 return false;
8978}
8979
8980clang::DeclContext *
8981ClangASTContext::DeclContextGetAsDeclContext (const CompilerDeclContext &dc)
8982{
8983 if (dc.IsClang())
8984 return (clang::DeclContext *)dc.GetOpaqueDeclContext();
8985 return nullptr;
8986}
8987
8988
8989ObjCMethodDecl *
8990ClangASTContext::DeclContextGetAsObjCMethodDecl (const CompilerDeclContext &dc)
8991{
8992 if (dc.IsClang())
8993 return llvm::dyn_cast<clang::ObjCMethodDecl>((clang::DeclContext *)dc.GetOpaqueDeclContext());
8994 return nullptr;
8995}
8996
8997CXXMethodDecl *
8998ClangASTContext::DeclContextGetAsCXXMethodDecl (const CompilerDeclContext &dc)
8999{
9000 if (dc.IsClang())
9001 return llvm::dyn_cast<clang::CXXMethodDecl>((clang::DeclContext *)dc.GetOpaqueDeclContext());
9002 return nullptr;
9003}
9004
9005clang::FunctionDecl *
9006ClangASTContext::DeclContextGetAsFunctionDecl (const CompilerDeclContext &dc)
9007{
9008 if (dc.IsClang())
9009 return llvm::dyn_cast<clang::FunctionDecl>((clang::DeclContext *)dc.GetOpaqueDeclContext());
9010 return nullptr;
9011}
9012
9013clang::NamespaceDecl *
9014ClangASTContext::DeclContextGetAsNamespaceDecl (const CompilerDeclContext &dc)
9015{
9016 if (dc.IsClang())
9017 return llvm::dyn_cast<clang::NamespaceDecl>((clang::DeclContext *)dc.GetOpaqueDeclContext());
9018 return nullptr;
9019}
9020
9021ClangASTMetadata *
9022ClangASTContext::DeclContextGetMetaData (const CompilerDeclContext &dc, const void *object)
9023{
9024 clang::ASTContext *ast = DeclContextGetClangASTContext (dc);
9025 if (ast)
9026 return ClangASTContext::GetMetadata (ast, object);
9027 return nullptr;
9028}
9029
9030clang::ASTContext *
9031ClangASTContext::DeclContextGetClangASTContext (const CompilerDeclContext &dc)
9032{
Greg Claytonf73034f2015-09-08 18:15:05 +00009033 ClangASTContext *ast = llvm::dyn_cast_or_null<ClangASTContext>(dc.GetTypeSystem());
9034 if (ast)
9035 return ast->getASTContext();
Greg Clayton99558cc42015-08-24 23:46:31 +00009036 return nullptr;
Greg Clayton8b4edba2015-08-14 20:02:05 +00009037}
9038
Jim Ingham151c0322015-09-15 21:13:50 +00009039ClangASTContextForExpressions::ClangASTContextForExpressions (Target &target) :
9040 ClangASTContext (target.GetArchitecture().GetTriple().getTriple().c_str()),
9041 m_target_wp(target.shared_from_this())
9042{
9043}
9044
9045UserExpression *
9046ClangASTContextForExpressions::GetUserExpression (const char *expr,
9047 const char *expr_prefix,
9048 lldb::LanguageType language,
9049 Expression::ResultType desired_type)
9050{
9051 TargetSP target_sp = m_target_wp.lock();
9052 if (!target_sp)
9053 return nullptr;
9054
9055 return new ClangUserExpression(*target_sp.get(), expr, expr_prefix, language, desired_type);
9056}
9057
9058FunctionCaller *
9059ClangASTContextForExpressions::GetFunctionCaller (const CompilerType &return_type,
9060 const Address& function_address,
9061 const ValueList &arg_value_list,
9062 const char *name)
9063{
9064 TargetSP target_sp = m_target_wp.lock();
9065 if (!target_sp)
9066 return nullptr;
9067
9068 Process *process = target_sp->GetProcessSP().get();
9069 if (!process)
9070 return nullptr;
9071
9072 return new ClangFunctionCaller (*process, return_type, function_address, arg_value_list, name);
9073}
9074
9075UtilityFunction *
9076ClangASTContextForExpressions::GetUtilityFunction (const char *text,
9077 const char *name)
9078{
9079 TargetSP target_sp = m_target_wp.lock();
9080 if (!target_sp)
9081 return nullptr;
9082
9083 return new ClangUtilityFunction(*target_sp.get(), text, name);
9084}