blob: 140ecba36b6641b42cb051ae5a7576db0394fa6a [file] [log] [blame]
Chris Lattner24943d22010-06-08 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 Friedmanf05633b2010-06-13 19:06:42 +000010#include "lldb/Symbol/ClangASTContext.h"
Chris Lattner24943d22010-06-08 16:52:24 +000011
12// C Includes
13// C++ Includes
14#include <string>
15
16// Other libraries and framework includes
Sean Callananbc4f0f52010-07-08 18:16:16 +000017#define NDEBUG
Chris Lattner24943d22010-06-08 16:52:24 +000018#include "clang/AST/ASTContext.h"
19#include "clang/AST/ASTImporter.h"
20#include "clang/AST/CXXInheritance.h"
Greg Clayton84f80752010-07-22 18:30:50 +000021#include "clang/AST/DeclObjC.h"
Chris Lattner24943d22010-06-08 16:52:24 +000022#include "clang/AST/RecordLayout.h"
23#include "clang/AST/Type.h"
24#include "clang/Basic/Builtins.h"
25#include "clang/Basic/FileManager.h"
26#include "clang/Basic/SourceManager.h"
27#include "clang/Basic/TargetInfo.h"
28#include "clang/Basic/TargetOptions.h"
29#include "clang/Frontend/FrontendOptions.h"
30#include "clang/Frontend/LangStandard.h"
Sean Callananbc4f0f52010-07-08 18:16:16 +000031#undef NDEBUG
Chris Lattner24943d22010-06-08 16:52:24 +000032
Chris Lattner24943d22010-06-08 16:52:24 +000033#include "lldb/Core/dwarf.h"
34
Eli Friedmanf05633b2010-06-13 19:06:42 +000035#include <stdio.h>
36
Chris Lattner24943d22010-06-08 16:52:24 +000037using namespace lldb_private;
38using namespace llvm;
39using namespace clang;
40
Greg Clayton84f80752010-07-22 18:30:50 +000041static AccessSpecifier
42ConvertAccessTypeToAccessSpecifier (ClangASTContext::AccessType access)
43{
44 switch (access)
45 {
46 default: break;
47 case ClangASTContext::eAccessNone: return AS_none;
48 case ClangASTContext::eAccessPublic: return AS_public;
49 case ClangASTContext::eAccessPrivate: return AS_private;
50 case ClangASTContext::eAccessProtected: return AS_protected;
51 }
52 return AS_none;
53}
54
55static ObjCIvarDecl::AccessControl
56ConvertAccessTypeToObjCIvarAccessControl (ClangASTContext::AccessType access)
57{
58 switch (access)
59 {
60 default: break;
61 case ClangASTContext::eAccessNone: return ObjCIvarDecl::None;
62 case ClangASTContext::eAccessPublic: return ObjCIvarDecl::Public;
63 case ClangASTContext::eAccessPrivate: return ObjCIvarDecl::Private;
64 case ClangASTContext::eAccessProtected: return ObjCIvarDecl::Protected;
65 case ClangASTContext::eAccessPackage: return ObjCIvarDecl::Package;
66 }
67 return ObjCIvarDecl::None;
68}
69
70
Chris Lattner24943d22010-06-08 16:52:24 +000071static void
72ParseLangArgs
73(
74 LangOptions &Opts,
Greg Claytone41c4b22010-06-13 17:34:29 +000075 InputKind IK
Chris Lattner24943d22010-06-08 16:52:24 +000076)
77{
78 // FIXME: Cleanup per-file based stuff.
79
80 // Set some properties which depend soley on the input kind; it would be nice
81 // to move these to the language standard, and have the driver resolve the
82 // input kind + language standard.
Greg Claytone41c4b22010-06-13 17:34:29 +000083 if (IK == IK_Asm) {
Chris Lattner24943d22010-06-08 16:52:24 +000084 Opts.AsmPreprocessor = 1;
Greg Claytone41c4b22010-06-13 17:34:29 +000085 } else if (IK == IK_ObjC ||
86 IK == IK_ObjCXX ||
87 IK == IK_PreprocessedObjC ||
88 IK == IK_PreprocessedObjCXX) {
Chris Lattner24943d22010-06-08 16:52:24 +000089 Opts.ObjC1 = Opts.ObjC2 = 1;
90 }
91
92 LangStandard::Kind LangStd = LangStandard::lang_unspecified;
93
94 if (LangStd == LangStandard::lang_unspecified) {
95 // Based on the base language, pick one.
96 switch (IK) {
Greg Claytone41c4b22010-06-13 17:34:29 +000097 case IK_None:
98 case IK_AST:
Chris Lattner24943d22010-06-08 16:52:24 +000099 assert(0 && "Invalid input kind!");
Greg Claytone41c4b22010-06-13 17:34:29 +0000100 case IK_OpenCL:
Chris Lattner24943d22010-06-08 16:52:24 +0000101 LangStd = LangStandard::lang_opencl;
102 break;
Greg Claytone41c4b22010-06-13 17:34:29 +0000103 case IK_Asm:
104 case IK_C:
105 case IK_PreprocessedC:
106 case IK_ObjC:
107 case IK_PreprocessedObjC:
Chris Lattner24943d22010-06-08 16:52:24 +0000108 LangStd = LangStandard::lang_gnu99;
109 break;
Greg Claytone41c4b22010-06-13 17:34:29 +0000110 case IK_CXX:
111 case IK_PreprocessedCXX:
112 case IK_ObjCXX:
113 case IK_PreprocessedObjCXX:
Chris Lattner24943d22010-06-08 16:52:24 +0000114 LangStd = LangStandard::lang_gnucxx98;
115 break;
116 }
117 }
118
119 const LangStandard &Std = LangStandard::getLangStandardForKind(LangStd);
120 Opts.BCPLComment = Std.hasBCPLComments();
121 Opts.C99 = Std.isC99();
122 Opts.CPlusPlus = Std.isCPlusPlus();
123 Opts.CPlusPlus0x = Std.isCPlusPlus0x();
124 Opts.Digraphs = Std.hasDigraphs();
125 Opts.GNUMode = Std.isGNUMode();
126 Opts.GNUInline = !Std.isC99();
127 Opts.HexFloats = Std.hasHexFloats();
128 Opts.ImplicitInt = Std.hasImplicitInt();
129
130 // OpenCL has some additional defaults.
131 if (LangStd == LangStandard::lang_opencl) {
132 Opts.OpenCL = 1;
133 Opts.AltiVec = 1;
134 Opts.CXXOperatorNames = 1;
135 Opts.LaxVectorConversions = 1;
136 }
137
138 // OpenCL and C++ both have bool, true, false keywords.
139 Opts.Bool = Opts.OpenCL || Opts.CPlusPlus;
140
141// if (Opts.CPlusPlus)
142// Opts.CXXOperatorNames = !Args.hasArg(OPT_fno_operator_names);
143//
144// if (Args.hasArg(OPT_fobjc_gc_only))
145// Opts.setGCMode(LangOptions::GCOnly);
146// else if (Args.hasArg(OPT_fobjc_gc))
147// Opts.setGCMode(LangOptions::HybridGC);
148//
149// if (Args.hasArg(OPT_print_ivar_layout))
150// Opts.ObjCGCBitmapPrint = 1;
151//
152// if (Args.hasArg(OPT_faltivec))
153// Opts.AltiVec = 1;
154//
155// if (Args.hasArg(OPT_pthread))
156// Opts.POSIXThreads = 1;
157//
158// llvm::StringRef Vis = getLastArgValue(Args, OPT_fvisibility,
159// "default");
160// if (Vis == "default")
161 Opts.setVisibilityMode(LangOptions::Default);
162// else if (Vis == "hidden")
163// Opts.setVisibilityMode(LangOptions::Hidden);
164// else if (Vis == "protected")
165// Opts.setVisibilityMode(LangOptions::Protected);
166// else
167// Diags.Report(diag::err_drv_invalid_value)
168// << Args.getLastArg(OPT_fvisibility)->getAsString(Args) << Vis;
169
170// Opts.OverflowChecking = Args.hasArg(OPT_ftrapv);
171
172 // Mimicing gcc's behavior, trigraphs are only enabled if -trigraphs
173 // is specified, or -std is set to a conforming mode.
174 Opts.Trigraphs = !Opts.GNUMode;
175// if (Args.hasArg(OPT_trigraphs))
176// Opts.Trigraphs = 1;
177//
178// Opts.DollarIdents = Args.hasFlag(OPT_fdollars_in_identifiers,
179// OPT_fno_dollars_in_identifiers,
180// !Opts.AsmPreprocessor);
181// Opts.PascalStrings = Args.hasArg(OPT_fpascal_strings);
182// Opts.Microsoft = Args.hasArg(OPT_fms_extensions);
183// Opts.WritableStrings = Args.hasArg(OPT_fwritable_strings);
184// if (Args.hasArg(OPT_fno_lax_vector_conversions))
185// Opts.LaxVectorConversions = 0;
186// Opts.Exceptions = Args.hasArg(OPT_fexceptions);
187// Opts.RTTI = !Args.hasArg(OPT_fno_rtti);
188// Opts.Blocks = Args.hasArg(OPT_fblocks);
189// Opts.CharIsSigned = !Args.hasArg(OPT_fno_signed_char);
190// Opts.ShortWChar = Args.hasArg(OPT_fshort_wchar);
191// Opts.Freestanding = Args.hasArg(OPT_ffreestanding);
192// Opts.NoBuiltin = Args.hasArg(OPT_fno_builtin) || Opts.Freestanding;
193// Opts.AssumeSaneOperatorNew = !Args.hasArg(OPT_fno_assume_sane_operator_new);
194// Opts.HeinousExtensions = Args.hasArg(OPT_fheinous_gnu_extensions);
195// Opts.AccessControl = Args.hasArg(OPT_faccess_control);
196// Opts.ElideConstructors = !Args.hasArg(OPT_fno_elide_constructors);
197// Opts.MathErrno = !Args.hasArg(OPT_fno_math_errno);
198// Opts.InstantiationDepth = getLastArgIntValue(Args, OPT_ftemplate_depth, 99,
199// Diags);
200// Opts.NeXTRuntime = !Args.hasArg(OPT_fgnu_runtime);
201// Opts.ObjCConstantStringClass = getLastArgValue(Args,
202// OPT_fconstant_string_class);
203// Opts.ObjCNonFragileABI = Args.hasArg(OPT_fobjc_nonfragile_abi);
204// Opts.CatchUndefined = Args.hasArg(OPT_fcatch_undefined_behavior);
205// Opts.EmitAllDecls = Args.hasArg(OPT_femit_all_decls);
206// Opts.PICLevel = getLastArgIntValue(Args, OPT_pic_level, 0, Diags);
207// Opts.Static = Args.hasArg(OPT_static_define);
208 Opts.OptimizeSize = 0;
209
210 // FIXME: Eliminate this dependency.
211// unsigned Opt =
212// Args.hasArg(OPT_Os) ? 2 : getLastArgIntValue(Args, OPT_O, 0, Diags);
213// Opts.Optimize = Opt != 0;
214 unsigned Opt = 0;
215
216 // This is the __NO_INLINE__ define, which just depends on things like the
217 // optimization level and -fno-inline, not actually whether the backend has
218 // inlining enabled.
219 //
220 // FIXME: This is affected by other options (-fno-inline).
221 Opts.NoInline = !Opt;
222
223// unsigned SSP = getLastArgIntValue(Args, OPT_stack_protector, 0, Diags);
224// switch (SSP) {
225// default:
226// Diags.Report(diag::err_drv_invalid_value)
227// << Args.getLastArg(OPT_stack_protector)->getAsString(Args) << SSP;
228// break;
229// case 0: Opts.setStackProtectorMode(LangOptions::SSPOff); break;
230// case 1: Opts.setStackProtectorMode(LangOptions::SSPOn); break;
231// case 2: Opts.setStackProtectorMode(LangOptions::SSPReq); break;
232// }
233}
234
Chris Lattner24943d22010-06-08 16:52:24 +0000235
Chris Lattner24943d22010-06-08 16:52:24 +0000236ClangASTContext::ClangASTContext(const char *target_triple) :
237 m_target_triple(),
238 m_ast_context_ap(),
239 m_language_options_ap(),
240 m_source_manager_ap(),
241 m_diagnostic_ap(),
242 m_target_options_ap(),
243 m_target_info_ap(),
244 m_identifier_table_ap(),
245 m_selector_table_ap(),
246 m_builtins_ap()
247{
248 if (target_triple && target_triple[0])
249 m_target_triple.assign (target_triple);
250}
251
252//----------------------------------------------------------------------
253// Destructor
254//----------------------------------------------------------------------
255ClangASTContext::~ClangASTContext()
256{
257 m_builtins_ap.reset();
258 m_selector_table_ap.reset();
259 m_identifier_table_ap.reset();
260 m_target_info_ap.reset();
261 m_target_options_ap.reset();
262 m_diagnostic_ap.reset();
263 m_source_manager_ap.reset();
264 m_language_options_ap.reset();
265 m_ast_context_ap.reset();
266}
267
268
269void
270ClangASTContext::Clear()
271{
272 m_ast_context_ap.reset();
273 m_language_options_ap.reset();
274 m_source_manager_ap.reset();
275 m_diagnostic_ap.reset();
276 m_target_options_ap.reset();
277 m_target_info_ap.reset();
278 m_identifier_table_ap.reset();
279 m_selector_table_ap.reset();
280 m_builtins_ap.reset();
281}
282
283const char *
284ClangASTContext::GetTargetTriple ()
285{
286 return m_target_triple.c_str();
287}
288
289void
290ClangASTContext::SetTargetTriple (const char *target_triple)
291{
292 Clear();
293 m_target_triple.assign(target_triple);
294}
295
296
297ASTContext *
298ClangASTContext::getASTContext()
299{
300 if (m_ast_context_ap.get() == NULL)
301 {
302 m_ast_context_ap.reset(
303 new ASTContext(
304 *getLanguageOptions(),
305 *getSourceManager(),
306 *getTargetInfo(),
307 *getIdentifierTable(),
308 *getSelectorTable(),
Greg Clayton6e713402010-07-30 20:30:44 +0000309 *getBuiltinContext(),
310 0));
Chris Lattner24943d22010-06-08 16:52:24 +0000311 }
312 return m_ast_context_ap.get();
313}
314
315Builtin::Context *
316ClangASTContext::getBuiltinContext()
317{
318 if (m_builtins_ap.get() == NULL)
319 m_builtins_ap.reset (new Builtin::Context(*getTargetInfo()));
320 return m_builtins_ap.get();
321}
322
323IdentifierTable *
324ClangASTContext::getIdentifierTable()
325{
326 if (m_identifier_table_ap.get() == NULL)
327 m_identifier_table_ap.reset(new IdentifierTable (*ClangASTContext::getLanguageOptions(), NULL));
328 return m_identifier_table_ap.get();
329}
330
331LangOptions *
332ClangASTContext::getLanguageOptions()
333{
334 if (m_language_options_ap.get() == NULL)
335 {
336 m_language_options_ap.reset(new LangOptions());
Greg Claytone41c4b22010-06-13 17:34:29 +0000337 ParseLangArgs(*m_language_options_ap, IK_ObjCXX);
338// InitializeLangOptions(*m_language_options_ap, IK_ObjCXX);
Chris Lattner24943d22010-06-08 16:52:24 +0000339 }
340 return m_language_options_ap.get();
341}
342
343SelectorTable *
344ClangASTContext::getSelectorTable()
345{
346 if (m_selector_table_ap.get() == NULL)
347 m_selector_table_ap.reset (new SelectorTable());
348 return m_selector_table_ap.get();
349}
350
Greg Clayton1674b122010-07-21 22:12:05 +0000351clang::SourceManager *
Chris Lattner24943d22010-06-08 16:52:24 +0000352ClangASTContext::getSourceManager()
353{
354 if (m_source_manager_ap.get() == NULL)
Greg Clayton1674b122010-07-21 22:12:05 +0000355 m_source_manager_ap.reset(new clang::SourceManager(*getDiagnostic()));
Chris Lattner24943d22010-06-08 16:52:24 +0000356 return m_source_manager_ap.get();
357}
358
359Diagnostic *
360ClangASTContext::getDiagnostic()
361{
362 if (m_diagnostic_ap.get() == NULL)
363 m_diagnostic_ap.reset(new Diagnostic());
364 return m_diagnostic_ap.get();
365}
366
367TargetOptions *
368ClangASTContext::getTargetOptions()
369{
370 if (m_target_options_ap.get() == NULL && !m_target_triple.empty())
371 {
372 m_target_options_ap.reset (new TargetOptions());
373 if (m_target_options_ap.get())
374 m_target_options_ap->Triple = m_target_triple;
375 }
376 return m_target_options_ap.get();
377}
378
379
380TargetInfo *
381ClangASTContext::getTargetInfo()
382{
383 // target_triple should be something like "x86_64-apple-darwin10"
384 if (m_target_info_ap.get() == NULL && !m_target_triple.empty())
385 m_target_info_ap.reset (TargetInfo::CreateTargetInfo(*getDiagnostic(), *getTargetOptions()));
386 return m_target_info_ap.get();
387}
388
389#pragma mark Basic Types
390
391static inline bool
392QualTypeMatchesBitSize(const uint64_t bit_size, ASTContext *ast_context, QualType qual_type)
393{
394 uint64_t qual_type_bit_size = ast_context->getTypeSize(qual_type);
395 if (qual_type_bit_size == bit_size)
396 return true;
397 return false;
398}
399
400void *
401ClangASTContext::GetBuiltinTypeForEncodingAndBitSize (lldb::Encoding encoding, uint32_t bit_size)
402{
403 ASTContext *ast_context = getASTContext();
404
405 assert (ast_context != NULL);
406
407 return GetBuiltinTypeForEncodingAndBitSize (ast_context, encoding, bit_size);
408}
409
410void *
411ClangASTContext::GetBuiltinTypeForEncodingAndBitSize (clang::ASTContext *ast_context, lldb::Encoding encoding, uint32_t bit_size)
412{
413 if (!ast_context)
414 return NULL;
415
416 switch (encoding)
417 {
418 case lldb::eEncodingInvalid:
419 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->VoidPtrTy))
420 return ast_context->VoidPtrTy.getAsOpaquePtr();
421 break;
422
423 case lldb::eEncodingUint:
424 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedCharTy))
425 return ast_context->UnsignedCharTy.getAsOpaquePtr();
426 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedShortTy))
427 return ast_context->UnsignedShortTy.getAsOpaquePtr();
428 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedIntTy))
429 return ast_context->UnsignedIntTy.getAsOpaquePtr();
430 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedLongTy))
431 return ast_context->UnsignedLongTy.getAsOpaquePtr();
432 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedLongLongTy))
433 return ast_context->UnsignedLongLongTy.getAsOpaquePtr();
434 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedInt128Ty))
435 return ast_context->UnsignedInt128Ty.getAsOpaquePtr();
436 break;
437
438 case lldb::eEncodingSint:
439 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->CharTy))
440 return ast_context->CharTy.getAsOpaquePtr();
441 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->ShortTy))
442 return ast_context->ShortTy.getAsOpaquePtr();
443 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->IntTy))
444 return ast_context->IntTy.getAsOpaquePtr();
445 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongTy))
446 return ast_context->LongTy.getAsOpaquePtr();
447 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongLongTy))
448 return ast_context->LongLongTy.getAsOpaquePtr();
449 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->Int128Ty))
450 return ast_context->Int128Ty.getAsOpaquePtr();
451 break;
452
453 case lldb::eEncodingIEEE754:
454 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->FloatTy))
455 return ast_context->FloatTy.getAsOpaquePtr();
456 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->DoubleTy))
457 return ast_context->DoubleTy.getAsOpaquePtr();
458 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongDoubleTy))
459 return ast_context->LongDoubleTy.getAsOpaquePtr();
460 break;
461
462 case lldb::eEncodingVector:
463 default:
464 break;
465 }
466
467 return NULL;
468}
469
470void *
471ClangASTContext::GetBuiltinTypeForDWARFEncodingAndBitSize (const char *type_name, uint32_t dw_ate, uint32_t bit_size)
472{
473 ASTContext *ast_context = getASTContext();
474
475 #define streq(a,b) strcmp(a,b) == 0
476 assert (ast_context != NULL);
477 if (ast_context)
478 {
479 switch (dw_ate)
480 {
481 default:
482 break;
483
484 case DW_ATE_address:
485 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->VoidPtrTy))
486 return ast_context->VoidPtrTy.getAsOpaquePtr();
487 break;
488
489 case DW_ATE_boolean:
490 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->BoolTy))
491 return ast_context->BoolTy.getAsOpaquePtr();
492 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedCharTy))
493 return ast_context->UnsignedCharTy.getAsOpaquePtr();
494 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedShortTy))
495 return ast_context->UnsignedShortTy.getAsOpaquePtr();
496 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedIntTy))
497 return ast_context->UnsignedIntTy.getAsOpaquePtr();
498 break;
499
500 case DW_ATE_complex_float:
501 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->FloatComplexTy))
502 return ast_context->FloatComplexTy.getAsOpaquePtr();
503 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->DoubleComplexTy))
504 return ast_context->DoubleComplexTy.getAsOpaquePtr();
505 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongDoubleComplexTy))
506 return ast_context->LongDoubleComplexTy.getAsOpaquePtr();
507 break;
508
509 case DW_ATE_float:
510 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->FloatTy))
511 return ast_context->FloatTy.getAsOpaquePtr();
512 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->DoubleTy))
513 return ast_context->DoubleTy.getAsOpaquePtr();
514 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongDoubleTy))
515 return ast_context->LongDoubleTy.getAsOpaquePtr();
516 break;
517
518 case DW_ATE_signed:
519 if (type_name)
520 {
521 if (streq(type_name, "int") ||
522 streq(type_name, "signed int"))
523 {
524 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->IntTy))
525 return ast_context->IntTy.getAsOpaquePtr();
526 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->Int128Ty))
527 return ast_context->Int128Ty.getAsOpaquePtr();
528 }
529
530 if (streq(type_name, "long int") ||
531 streq(type_name, "long long int") ||
532 streq(type_name, "signed long long"))
533 {
534 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongTy))
535 return ast_context->LongTy.getAsOpaquePtr();
536 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongLongTy))
537 return ast_context->LongLongTy.getAsOpaquePtr();
538 }
539
540 if (streq(type_name, "short") ||
541 streq(type_name, "short int") ||
542 streq(type_name, "signed short") ||
543 streq(type_name, "short signed int"))
544 {
545 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->ShortTy))
546 return ast_context->ShortTy.getAsOpaquePtr();
547 }
548
549 if (streq(type_name, "char") ||
550 streq(type_name, "signed char"))
551 {
552 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->CharTy))
553 return ast_context->CharTy.getAsOpaquePtr();
554 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->SignedCharTy))
555 return ast_context->SignedCharTy.getAsOpaquePtr();
556 }
557
558 if (streq(type_name, "wchar_t"))
559 {
560 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->WCharTy))
561 return ast_context->WCharTy.getAsOpaquePtr();
562 }
563
564 }
565 // We weren't able to match up a type name, just search by size
566 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->CharTy))
567 return ast_context->CharTy.getAsOpaquePtr();
568 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->ShortTy))
569 return ast_context->ShortTy.getAsOpaquePtr();
570 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->IntTy))
571 return ast_context->IntTy.getAsOpaquePtr();
572 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongTy))
573 return ast_context->LongTy.getAsOpaquePtr();
574 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->LongLongTy))
575 return ast_context->LongLongTy.getAsOpaquePtr();
576 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->Int128Ty))
577 return ast_context->Int128Ty.getAsOpaquePtr();
578 break;
579
580 case DW_ATE_signed_char:
581 if (type_name)
582 {
583 if (streq(type_name, "signed char"))
584 {
585 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->SignedCharTy))
586 return ast_context->SignedCharTy.getAsOpaquePtr();
587 }
588 }
589 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->CharTy))
590 return ast_context->CharTy.getAsOpaquePtr();
591 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->SignedCharTy))
592 return ast_context->SignedCharTy.getAsOpaquePtr();
593 break;
594
595 case DW_ATE_unsigned:
596 if (type_name)
597 {
598 if (streq(type_name, "unsigned int"))
599 {
600 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedIntTy))
601 return ast_context->UnsignedIntTy.getAsOpaquePtr();
602 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedInt128Ty))
603 return ast_context->UnsignedInt128Ty.getAsOpaquePtr();
604 }
605
606 if (streq(type_name, "unsigned int") ||
607 streq(type_name, "long unsigned int") ||
608 streq(type_name, "unsigned long long"))
609 {
610 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedLongTy))
611 return ast_context->UnsignedLongTy.getAsOpaquePtr();
612 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedLongLongTy))
613 return ast_context->UnsignedLongLongTy.getAsOpaquePtr();
614 }
615
616 if (streq(type_name, "unsigned short") ||
617 streq(type_name, "short unsigned int"))
618 {
619 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedShortTy))
620 return ast_context->UnsignedShortTy.getAsOpaquePtr();
621 }
622 if (streq(type_name, "unsigned char"))
623 {
624 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedCharTy))
625 return ast_context->UnsignedCharTy.getAsOpaquePtr();
626 }
627
628 }
629 // We weren't able to match up a type name, just search by size
630 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedCharTy))
631 return ast_context->UnsignedCharTy.getAsOpaquePtr();
632 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedShortTy))
633 return ast_context->UnsignedShortTy.getAsOpaquePtr();
634 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedIntTy))
635 return ast_context->UnsignedIntTy.getAsOpaquePtr();
636 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedLongTy))
637 return ast_context->UnsignedLongTy.getAsOpaquePtr();
638 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedLongLongTy))
639 return ast_context->UnsignedLongLongTy.getAsOpaquePtr();
640 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedInt128Ty))
641 return ast_context->UnsignedInt128Ty.getAsOpaquePtr();
642 break;
643
644 case DW_ATE_unsigned_char:
645 if (QualTypeMatchesBitSize (bit_size, ast_context, ast_context->UnsignedCharTy))
646 return ast_context->UnsignedCharTy.getAsOpaquePtr();
647 break;
648
649 case DW_ATE_imaginary_float:
650 break;
651 }
652 }
653 // This assert should fire for anything that we don't catch above so we know
654 // to fix any issues we run into.
655 assert (!"error: ClangASTContext::GetClangTypeForDWARFEncodingAndSize() contains an unhandled encoding. Fix this ASAP!");
656 return NULL;
657}
658
659void *
Greg Clayton960d6a42010-08-03 00:35:52 +0000660ClangASTContext::GetBuiltInType_void()
Chris Lattner24943d22010-06-08 16:52:24 +0000661{
662 return getASTContext()->VoidTy.getAsOpaquePtr();
663}
664
665void *
Greg Clayton960d6a42010-08-03 00:35:52 +0000666ClangASTContext::GetBuiltInType_objc_id()
667{
668 return getASTContext()->getObjCIdType().getAsOpaquePtr();
669}
670
671void *
672ClangASTContext::GetBuiltInType_objc_Class()
673{
674 return getASTContext()->getObjCClassType().getAsOpaquePtr();
675}
676
677void *
678ClangASTContext::GetBuiltInType_objc_selector()
679{
680 return getASTContext()->getObjCSelType().getAsOpaquePtr();
681}
682
683void *
Chris Lattner24943d22010-06-08 16:52:24 +0000684ClangASTContext::GetCStringType (bool is_const)
685{
686 QualType char_type(getASTContext()->CharTy);
687
688 if (is_const)
689 char_type.addConst();
690
691 return getASTContext()->getPointerType(char_type).getAsOpaquePtr();
692}
693
694void *
695ClangASTContext::GetVoidPtrType (bool is_const)
696{
697 return GetVoidPtrType(getASTContext(), is_const);
698}
699
700void *
701ClangASTContext::GetVoidPtrType (clang::ASTContext *ast_context, bool is_const)
702{
703 QualType void_ptr_type(ast_context->VoidPtrTy);
704
705 if (is_const)
706 void_ptr_type.addConst();
707
708 return void_ptr_type.getAsOpaquePtr();
709}
710
711void *
712ClangASTContext::CopyType(clang::ASTContext *dest_context,
713 clang::ASTContext *source_context,
Greg Clayton84f80752010-07-22 18:30:50 +0000714 void *clang_type)
Chris Lattner24943d22010-06-08 16:52:24 +0000715{
716 Diagnostic diagnostics;
717 FileManager file_manager;
718 ASTImporter importer(diagnostics,
719 *dest_context, file_manager,
720 *source_context, file_manager);
721 QualType ret = importer.Import(QualType::getFromOpaquePtr(clang_type));
722 return ret.getAsOpaquePtr();
723}
724
Sean Callanan8d825062010-07-16 00:00:27 +0000725bool
726ClangASTContext::AreTypesSame(clang::ASTContext *ast_context,
Sean Callanan5510ddd2010-07-15 22:30:52 +0000727 void *type1,
728 void *type2)
729{
730 return ast_context->hasSameType(QualType::getFromOpaquePtr(type1),
731 QualType::getFromOpaquePtr(type2));
732}
733
Chris Lattner24943d22010-06-08 16:52:24 +0000734#pragma mark CVR modifiers
735
736void *
737ClangASTContext::AddConstModifier (void *clang_type)
738{
739 if (clang_type)
740 {
741 QualType result(QualType::getFromOpaquePtr(clang_type));
742 result.addConst();
743 return result.getAsOpaquePtr();
744 }
745 return NULL;
746}
747
748void *
749ClangASTContext::AddRestrictModifier (void *clang_type)
750{
751 if (clang_type)
752 {
753 QualType result(QualType::getFromOpaquePtr(clang_type));
754 result.getQualifiers().setRestrict (true);
755 return result.getAsOpaquePtr();
756 }
757 return NULL;
758}
759
760void *
761ClangASTContext::AddVolatileModifier (void *clang_type)
762{
763 if (clang_type)
764 {
765 QualType result(QualType::getFromOpaquePtr(clang_type));
766 result.getQualifiers().setVolatile (true);
767 return result.getAsOpaquePtr();
768 }
769 return NULL;
770}
771
772#pragma mark Structure, Unions, Classes
773
774void *
Greg Clayton9488b742010-07-28 02:04:09 +0000775ClangASTContext::CreateRecordType (const char *name, int kind, DeclContext *decl_ctx, lldb::LanguageType language)
Chris Lattner24943d22010-06-08 16:52:24 +0000776{
777 ASTContext *ast_context = getASTContext();
778 assert (ast_context != NULL);
779
780 if (decl_ctx == NULL)
781 decl_ctx = ast_context->getTranslationUnitDecl();
782
Greg Clayton9488b742010-07-28 02:04:09 +0000783
784 if (language == lldb::eLanguageTypeObjC)
785 {
786 bool isForwardDecl = false;
787 bool isInternal = false;
788 return CreateObjCClass (name, decl_ctx, isForwardDecl, isInternal);
789 }
790
Chris Lattner24943d22010-06-08 16:52:24 +0000791 // NOTE: Eventually CXXRecordDecl will be merged back into RecordDecl and
792 // we will need to update this code. I was told to currently always use
793 // the CXXRecordDecl class since we often don't know from debug information
794 // if something is struct or a class, so we default to always use the more
795 // complete definition just in case.
796 CXXRecordDecl *decl = CXXRecordDecl::Create(*ast_context,
797 (TagDecl::TagKind)kind,
798 decl_ctx,
799 SourceLocation(),
800 name && name[0] ? &ast_context->Idents.get(name) : NULL);
801
802 return ast_context->getTagDeclType(decl).getAsOpaquePtr();
803}
804
805bool
Greg Clayton84f80752010-07-22 18:30:50 +0000806ClangASTContext::AddFieldToRecordType
807(
808 void *record_clang_type,
809 const char *name,
810 void *field_type,
811 AccessType access,
812 uint32_t bitfield_bit_size
813)
Chris Lattner24943d22010-06-08 16:52:24 +0000814{
815 if (record_clang_type == NULL || field_type == NULL)
816 return false;
817
818 ASTContext *ast_context = getASTContext();
819 IdentifierTable *identifier_table = getIdentifierTable();
820
821 assert (ast_context != NULL);
822 assert (identifier_table != NULL);
823
824 QualType record_qual_type(QualType::getFromOpaquePtr(record_clang_type));
825
Greg Clayton1674b122010-07-21 22:12:05 +0000826 clang::Type *clang_type = record_qual_type.getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +0000827 if (clang_type)
828 {
829 const RecordType *record_type = dyn_cast<RecordType>(clang_type);
830
831 if (record_type)
832 {
833 RecordDecl *record_decl = record_type->getDecl();
834
835 CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
836 if (cxx_record_decl)
837 cxx_record_decl->setEmpty (false);
838
839 clang::Expr *bit_width = NULL;
840 if (bitfield_bit_size != 0)
841 {
842 APInt bitfield_bit_size_apint(ast_context->getTypeSize(ast_context->IntTy), bitfield_bit_size);
843 bit_width = new (*ast_context)IntegerLiteral (bitfield_bit_size_apint, ast_context->IntTy, SourceLocation());
844 }
Greg Clayton84f80752010-07-22 18:30:50 +0000845 FieldDecl *field = FieldDecl::Create (*ast_context,
846 record_decl,
847 SourceLocation(),
848 name ? &identifier_table->get(name) : NULL, // Identifier
849 QualType::getFromOpaquePtr(field_type), // Field type
850 NULL, // DeclaratorInfo *
851 bit_width, // BitWidth
852 false); // Mutable
Chris Lattner24943d22010-06-08 16:52:24 +0000853
Greg Clayton84f80752010-07-22 18:30:50 +0000854 field->setAccess (ConvertAccessTypeToAccessSpecifier (access));
Chris Lattner24943d22010-06-08 16:52:24 +0000855
856 if (field)
857 {
858 record_decl->addDecl(field);
859 return true;
860 }
861 }
Greg Clayton9488b742010-07-28 02:04:09 +0000862 else
863 {
864 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(clang_type);
865 if (objc_class_type)
866 {
867 bool isSynthesized = false;
868 ClangASTContext::AddObjCClassIVar (record_clang_type,
869 name,
870 field_type,
871 access,
872 bitfield_bit_size,
873 isSynthesized);
874 }
875 }
Chris Lattner24943d22010-06-08 16:52:24 +0000876 }
877 return false;
878}
879
880bool
881ClangASTContext::FieldIsBitfield (FieldDecl* field, uint32_t& bitfield_bit_size)
882{
883 return FieldIsBitfield(getASTContext(), field, bitfield_bit_size);
884}
885
886bool
887ClangASTContext::FieldIsBitfield
888(
889 ASTContext *ast_context,
890 FieldDecl* field,
891 uint32_t& bitfield_bit_size
892)
893{
894 if (ast_context == NULL || field == NULL)
895 return false;
896
897 if (field->isBitField())
898 {
899 Expr* bit_width_expr = field->getBitWidth();
900 if (bit_width_expr)
901 {
902 llvm::APSInt bit_width_apsint;
903 if (bit_width_expr->isIntegerConstantExpr(bit_width_apsint, *ast_context))
904 {
905 bitfield_bit_size = bit_width_apsint.getLimitedValue(UINT32_MAX);
906 return true;
907 }
908 }
909 }
910 return false;
911}
912
913bool
914ClangASTContext::RecordHasFields (const RecordDecl *record_decl)
915{
916 if (record_decl == NULL)
917 return false;
918
919 if (!record_decl->field_empty())
920 return true;
921
922 // No fields, lets check this is a CXX record and check the base classes
923 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
924 if (cxx_record_decl)
925 {
926 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
927 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
928 base_class != base_class_end;
929 ++base_class)
930 {
931 const CXXRecordDecl *base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
932 if (RecordHasFields(base_class_decl))
933 return true;
934 }
935 }
936 return false;
937}
938
939void
940ClangASTContext::SetDefaultAccessForRecordFields (void *clang_qual_type, int default_accessibility, int *assigned_accessibilities, size_t num_assigned_accessibilities)
941{
942 if (clang_qual_type)
943 {
944 QualType qual_type(QualType::getFromOpaquePtr(clang_qual_type));
Greg Clayton1674b122010-07-21 22:12:05 +0000945 clang::Type *clang_type = qual_type.getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +0000946 if (clang_type)
947 {
948 RecordType *record_type = dyn_cast<RecordType>(clang_type);
949 if (record_type)
950 {
951 RecordDecl *record_decl = record_type->getDecl();
952 if (record_decl)
953 {
954 uint32_t field_idx;
955 RecordDecl::field_iterator field, field_end;
956 for (field = record_decl->field_begin(), field_end = record_decl->field_end(), field_idx = 0;
957 field != field_end;
958 ++field, ++field_idx)
959 {
960 // If no accessibility was assigned, assign the correct one
961 if (field_idx < num_assigned_accessibilities && assigned_accessibilities[field_idx] == clang::AS_none)
962 field->setAccess ((AccessSpecifier)default_accessibility);
963 }
964 }
965 }
966 }
967 }
968}
969
970#pragma mark C++ Base Classes
971
972CXXBaseSpecifier *
Greg Clayton84f80752010-07-22 18:30:50 +0000973ClangASTContext::CreateBaseClassSpecifier (void *base_class_type, AccessType access, bool is_virtual, bool base_of_class)
Chris Lattner24943d22010-06-08 16:52:24 +0000974{
975 if (base_class_type)
Greg Clayton6e713402010-07-30 20:30:44 +0000976 return new CXXBaseSpecifier (SourceRange(),
977 is_virtual,
978 base_of_class,
979 ConvertAccessTypeToAccessSpecifier (access),
980 getASTContext()->CreateTypeSourceInfo (QualType::getFromOpaquePtr(base_class_type)));
Chris Lattner24943d22010-06-08 16:52:24 +0000981 return NULL;
982}
983
Greg Claytone9d0df42010-07-02 01:29:13 +0000984void
985ClangASTContext::DeleteBaseClassSpecifiers (CXXBaseSpecifier **base_classes, unsigned num_base_classes)
986{
987 for (unsigned i=0; i<num_base_classes; ++i)
988 {
989 delete base_classes[i];
990 base_classes[i] = NULL;
991 }
992}
993
Chris Lattner24943d22010-06-08 16:52:24 +0000994bool
995ClangASTContext::SetBaseClassesForClassType (void *class_clang_type, CXXBaseSpecifier const * const *base_classes, unsigned num_base_classes)
996{
997 if (class_clang_type)
998 {
Greg Clayton1674b122010-07-21 22:12:05 +0000999 clang::Type *clang_type = QualType::getFromOpaquePtr(class_clang_type).getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00001000 if (clang_type)
1001 {
1002 RecordType *record_type = dyn_cast<RecordType>(clang_type);
1003 if (record_type)
1004 {
1005 CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_type->getDecl());
1006 if (cxx_record_decl)
1007 {
1008 //cxx_record_decl->setEmpty (false);
1009 cxx_record_decl->setBases(base_classes, num_base_classes);
1010 return true;
1011 }
1012 }
1013 }
1014 }
1015 return false;
1016}
Greg Clayton84f80752010-07-22 18:30:50 +00001017#pragma mark Objective C Classes
Chris Lattner24943d22010-06-08 16:52:24 +00001018
Greg Clayton84f80752010-07-22 18:30:50 +00001019void *
1020ClangASTContext::CreateObjCClass
1021(
1022 const char *name,
1023 DeclContext *decl_ctx,
1024 bool isForwardDecl,
1025 bool isInternal
1026)
1027{
1028 ASTContext *ast_context = getASTContext();
1029 assert (ast_context != NULL);
1030 assert (name && name[0]);
1031 if (decl_ctx == NULL)
1032 decl_ctx = ast_context->getTranslationUnitDecl();
1033
1034 // NOTE: Eventually CXXRecordDecl will be merged back into RecordDecl and
1035 // we will need to update this code. I was told to currently always use
1036 // the CXXRecordDecl class since we often don't know from debug information
1037 // if something is struct or a class, so we default to always use the more
1038 // complete definition just in case.
1039 ObjCInterfaceDecl *decl = ObjCInterfaceDecl::Create (*ast_context,
1040 decl_ctx,
1041 SourceLocation(),
1042 &ast_context->Idents.get(name),
1043 SourceLocation(),
1044 isForwardDecl,
1045 isInternal);
Greg Clayton9488b742010-07-28 02:04:09 +00001046
1047 return ast_context->getObjCInterfaceType(decl).getAsOpaquePtr();
Greg Clayton84f80752010-07-22 18:30:50 +00001048}
1049
1050bool
1051ClangASTContext::SetObjCSuperClass (void *class_opaque_type, void *super_opaque_type)
1052{
1053 if (class_opaque_type && super_opaque_type)
1054 {
1055 QualType class_qual_type(QualType::getFromOpaquePtr(class_opaque_type));
1056 QualType super_qual_type(QualType::getFromOpaquePtr(super_opaque_type));
1057 clang::Type *class_type = class_qual_type.getTypePtr();
1058 clang::Type *super_type = super_qual_type.getTypePtr();
1059 if (class_type && super_type)
1060 {
1061 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(class_type);
1062 ObjCObjectType *objc_super_type = dyn_cast<ObjCObjectType>(super_type);
1063 if (objc_class_type && objc_super_type)
1064 {
1065 ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
1066 ObjCInterfaceDecl *super_interface_decl = objc_super_type->getInterface();
1067 if (class_interface_decl && super_interface_decl)
1068 {
1069 class_interface_decl->setSuperClass(super_interface_decl);
1070 return true;
1071 }
1072 }
1073 }
1074 }
1075 return false;
1076}
1077
1078
1079bool
1080ClangASTContext::AddObjCClassIVar
1081(
1082 void *class_opaque_type,
1083 const char *name,
1084 void *ivar_opaque_type,
1085 AccessType access,
1086 uint32_t bitfield_bit_size,
1087 bool isSynthesized
1088)
1089{
1090 if (class_opaque_type == NULL || ivar_opaque_type == NULL)
1091 return false;
1092
1093 ASTContext *ast_context = getASTContext();
1094 IdentifierTable *identifier_table = getIdentifierTable();
1095
1096 assert (ast_context != NULL);
1097 assert (identifier_table != NULL);
1098
1099 QualType class_qual_type(QualType::getFromOpaquePtr(class_opaque_type));
1100
1101 clang::Type *class_type = class_qual_type.getTypePtr();
1102 if (class_type)
1103 {
1104 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(class_type);
1105
1106 if (objc_class_type)
1107 {
1108 ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
1109
1110 if (class_interface_decl)
1111 {
1112 clang::Expr *bit_width = NULL;
1113 if (bitfield_bit_size != 0)
1114 {
1115 APInt bitfield_bit_size_apint(ast_context->getTypeSize(ast_context->IntTy), bitfield_bit_size);
1116 bit_width = new (*ast_context)IntegerLiteral (bitfield_bit_size_apint, ast_context->IntTy, SourceLocation());
1117 }
1118
Greg Clayton9488b742010-07-28 02:04:09 +00001119 ObjCIvarDecl *field = ObjCIvarDecl::Create (*ast_context,
1120 class_interface_decl,
1121 SourceLocation(),
1122 &identifier_table->get(name), // Identifier
1123 QualType::getFromOpaquePtr(ivar_opaque_type), // Field type
1124 NULL, // TypeSourceInfo *
1125 ConvertAccessTypeToObjCIvarAccessControl (access),
1126 bit_width,
1127 isSynthesized);
1128
1129 if (field)
1130 {
1131 class_interface_decl->addDecl(field);
1132 return true;
1133 }
Greg Clayton84f80752010-07-22 18:30:50 +00001134 }
1135 }
1136 }
1137 return false;
1138}
Chris Lattner24943d22010-06-08 16:52:24 +00001139
Greg Clayton9488b742010-07-28 02:04:09 +00001140
1141bool
1142ClangASTContext::ObjCTypeHasIVars (void *class_opaque_type, bool check_superclass)
1143{
1144 QualType class_qual_type(QualType::getFromOpaquePtr(class_opaque_type));
1145
1146 clang::Type *class_type = class_qual_type.getTypePtr();
1147 if (class_type)
1148 {
1149 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(class_type);
1150
1151 if (objc_class_type)
1152 return ObjCDeclHasIVars (objc_class_type->getInterface(), check_superclass);
1153 }
1154 return false;
1155}
1156
1157bool
1158ClangASTContext::ObjCDeclHasIVars (ObjCInterfaceDecl *class_interface_decl, bool check_superclass)
1159{
1160 while (class_interface_decl)
1161 {
1162 if (class_interface_decl->ivar_size() > 0)
1163 return true;
1164
1165 if (check_superclass)
1166 class_interface_decl = class_interface_decl->getSuperClass();
1167 else
1168 break;
1169 }
1170 return false;
1171}
1172
1173
Chris Lattner24943d22010-06-08 16:52:24 +00001174#pragma mark Aggregate Types
1175
1176bool
1177ClangASTContext::IsAggregateType (void *clang_type)
1178{
1179 if (clang_type == NULL)
1180 return false;
1181
1182 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
1183
1184 if (qual_type->isAggregateType ())
1185 return true;
1186
1187 switch (qual_type->getTypeClass())
1188 {
Greg Clayton1674b122010-07-21 22:12:05 +00001189 case clang::Type::IncompleteArray:
1190 case clang::Type::VariableArray:
1191 case clang::Type::ConstantArray:
1192 case clang::Type::ExtVector:
1193 case clang::Type::Vector:
1194 case clang::Type::Record:
Greg Clayton9488b742010-07-28 02:04:09 +00001195 case clang::Type::ObjCObject:
1196 case clang::Type::ObjCInterface:
Chris Lattner24943d22010-06-08 16:52:24 +00001197 return true;
1198
Greg Clayton1674b122010-07-21 22:12:05 +00001199 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00001200 return ClangASTContext::IsAggregateType (cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr());
1201
1202 default:
1203 break;
1204 }
1205 // The clang type does have a value
1206 return false;
1207}
1208
1209uint32_t
1210ClangASTContext::GetNumChildren (void *clang_qual_type, bool omit_empty_base_classes)
1211{
1212 if (clang_qual_type == NULL)
1213 return 0;
1214
1215 uint32_t num_children = 0;
1216 QualType qual_type(QualType::getFromOpaquePtr(clang_qual_type));
Greg Clayton9488b742010-07-28 02:04:09 +00001217 const clang::Type::TypeClass type_class = qual_type->getTypeClass();
1218 switch (type_class)
Chris Lattner24943d22010-06-08 16:52:24 +00001219 {
Greg Clayton960d6a42010-08-03 00:35:52 +00001220 case clang::Type::Builtin:
1221 switch (cast<clang::BuiltinType>(qual_type)->getKind())
1222 {
1223 case clang::BuiltinType::ObjCId: // Child is Class
1224 case clang::BuiltinType::ObjCClass: // child is Class
1225 case clang::BuiltinType::ObjCSel: // child is const char *
1226 num_children = 1;
1227
1228 default:
1229 break;
1230 }
1231 break;
1232
Greg Clayton1674b122010-07-21 22:12:05 +00001233 case clang::Type::Record:
Chris Lattner24943d22010-06-08 16:52:24 +00001234 {
1235 const RecordType *record_type = cast<RecordType>(qual_type.getTypePtr());
1236 const RecordDecl *record_decl = record_type->getDecl();
1237 assert(record_decl);
1238 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1239 if (cxx_record_decl)
1240 {
1241 if (omit_empty_base_classes)
1242 {
1243 // Check each base classes to see if it or any of its
1244 // base classes contain any fields. This can help
1245 // limit the noise in variable views by not having to
1246 // show base classes that contain no members.
1247 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1248 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1249 base_class != base_class_end;
1250 ++base_class)
1251 {
1252 const CXXRecordDecl *base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
1253
1254 // Skip empty base classes
1255 if (RecordHasFields(base_class_decl) == false)
1256 continue;
1257
1258 num_children++;
1259 }
1260 }
1261 else
1262 {
1263 // Include all base classes
1264 num_children += cxx_record_decl->getNumBases();
1265 }
1266
1267 }
1268 RecordDecl::field_iterator field, field_end;
1269 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field)
1270 ++num_children;
1271 }
1272 break;
1273
Greg Clayton9488b742010-07-28 02:04:09 +00001274 case clang::Type::ObjCObject:
1275 case clang::Type::ObjCInterface:
1276 {
1277 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(qual_type.getTypePtr());
1278 assert (objc_class_type);
1279 if (objc_class_type)
1280 {
1281 ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
1282
1283 if (class_interface_decl)
1284 {
1285
1286 ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
1287 if (superclass_interface_decl)
1288 {
1289 if (omit_empty_base_classes)
1290 {
1291 if (ClangASTContext::ObjCDeclHasIVars (superclass_interface_decl, true))
1292 ++num_children;
1293 }
1294 else
1295 ++num_children;
1296 }
1297
1298 num_children += class_interface_decl->ivar_size();
1299 }
1300 }
1301 }
1302 break;
1303
1304 case clang::Type::ObjCObjectPointer:
Greg Clayton960d6a42010-08-03 00:35:52 +00001305 {
1306 ObjCObjectPointerType *pointer_type = cast<ObjCObjectPointerType>(qual_type.getTypePtr());
1307 QualType pointee_type = pointer_type->getPointeeType();
1308 uint32_t num_pointee_children = ClangASTContext::GetNumChildren (pointee_type.getAsOpaquePtr(),
1309 omit_empty_base_classes);
1310 // If this type points to a simple type, then it has 1 child
1311 if (num_pointee_children == 0)
1312 num_children = 1;
1313 else
1314 num_children = num_pointee_children;
1315 }
1316 break;
Greg Clayton9488b742010-07-28 02:04:09 +00001317
Greg Clayton1674b122010-07-21 22:12:05 +00001318 case clang::Type::ConstantArray:
Chris Lattner24943d22010-06-08 16:52:24 +00001319 num_children = cast<ConstantArrayType>(qual_type.getTypePtr())->getSize().getLimitedValue();
1320 break;
1321
Greg Clayton1674b122010-07-21 22:12:05 +00001322 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00001323 {
1324 PointerType *pointer_type = cast<PointerType>(qual_type.getTypePtr());
1325 QualType pointee_type = pointer_type->getPointeeType();
Greg Clayton9488b742010-07-28 02:04:09 +00001326 uint32_t num_pointee_children = ClangASTContext::GetNumChildren (pointee_type.getAsOpaquePtr(),
1327 omit_empty_base_classes);
Chris Lattner24943d22010-06-08 16:52:24 +00001328 // If this type points to a simple type, then it has 1 child
1329 if (num_pointee_children == 0)
1330 num_children = 1;
1331 else
1332 num_children = num_pointee_children;
1333 }
1334 break;
1335
Greg Clayton1674b122010-07-21 22:12:05 +00001336 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00001337 num_children = ClangASTContext::GetNumChildren (cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr(), omit_empty_base_classes);
1338 break;
1339
1340 default:
1341 break;
1342 }
1343 return num_children;
1344}
1345
1346
1347void *
1348ClangASTContext::GetChildClangTypeAtIndex
1349(
1350 const char *parent_name,
1351 void *parent_clang_type,
1352 uint32_t idx,
1353 bool transparent_pointers,
1354 bool omit_empty_base_classes,
1355 std::string& child_name,
1356 uint32_t &child_byte_size,
1357 int32_t &child_byte_offset,
1358 uint32_t &child_bitfield_bit_size,
1359 uint32_t &child_bitfield_bit_offset
1360)
1361{
1362 if (parent_clang_type)
1363
1364 return GetChildClangTypeAtIndex (getASTContext(),
1365 parent_name,
1366 parent_clang_type,
1367 idx,
1368 transparent_pointers,
1369 omit_empty_base_classes,
1370 child_name,
1371 child_byte_size,
1372 child_byte_offset,
1373 child_bitfield_bit_size,
1374 child_bitfield_bit_offset);
1375 return NULL;
1376}
1377
1378void *
1379ClangASTContext::GetChildClangTypeAtIndex
1380(
1381 ASTContext *ast_context,
1382 const char *parent_name,
1383 void *parent_clang_type,
1384 uint32_t idx,
1385 bool transparent_pointers,
1386 bool omit_empty_base_classes,
1387 std::string& child_name,
1388 uint32_t &child_byte_size,
1389 int32_t &child_byte_offset,
1390 uint32_t &child_bitfield_bit_size,
1391 uint32_t &child_bitfield_bit_offset
1392)
1393{
1394 if (parent_clang_type == NULL)
1395 return NULL;
1396
1397 if (idx < ClangASTContext::GetNumChildren (parent_clang_type, omit_empty_base_classes))
1398 {
1399 uint32_t bit_offset;
1400 child_bitfield_bit_size = 0;
1401 child_bitfield_bit_offset = 0;
1402 QualType parent_qual_type(QualType::getFromOpaquePtr(parent_clang_type));
1403 switch (parent_qual_type->getTypeClass())
1404 {
Greg Clayton960d6a42010-08-03 00:35:52 +00001405 case clang::Type::Builtin:
1406 switch (cast<clang::BuiltinType>(parent_qual_type)->getKind())
1407 {
1408 case clang::BuiltinType::ObjCId:
1409 case clang::BuiltinType::ObjCClass:
1410 return ast_context->ObjCBuiltinClassTy.getAsOpaquePtr();
1411
1412 case clang::BuiltinType::ObjCSel:
1413 {
1414 QualType char_type(ast_context->CharTy);
1415 char_type.addConst();
1416 return ast_context->getPointerType(char_type).getAsOpaquePtr();
1417 }
1418 break;
1419
1420 default:
1421 break;
1422 }
1423 break;
1424
1425
Greg Clayton1674b122010-07-21 22:12:05 +00001426 case clang::Type::Record:
Chris Lattner24943d22010-06-08 16:52:24 +00001427 {
1428 const RecordType *record_type = cast<RecordType>(parent_qual_type.getTypePtr());
1429 const RecordDecl *record_decl = record_type->getDecl();
1430 assert(record_decl);
1431 const ASTRecordLayout &record_layout = ast_context->getASTRecordLayout(record_decl);
1432 uint32_t child_idx = 0;
1433
1434 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1435 if (cxx_record_decl)
1436 {
1437 // We might have base classes to print out first
1438 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1439 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1440 base_class != base_class_end;
1441 ++base_class)
1442 {
1443 const CXXRecordDecl *base_class_decl = NULL;
1444
1445 // Skip empty base classes
1446 if (omit_empty_base_classes)
1447 {
1448 base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
1449 if (RecordHasFields(base_class_decl) == false)
1450 continue;
1451 }
1452
1453 if (idx == child_idx)
1454 {
1455 if (base_class_decl == NULL)
1456 base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
1457
1458
1459 if (base_class->isVirtual())
1460 bit_offset = record_layout.getVBaseClassOffset(base_class_decl);
1461 else
1462 bit_offset = record_layout.getBaseClassOffset(base_class_decl);
1463
1464 // Base classes should be a multiple of 8 bits in size
1465 assert (bit_offset % 8 == 0);
1466 child_byte_offset = bit_offset/8;
1467 std::string base_class_type_name(base_class->getType().getAsString());
1468
1469 child_name.assign(base_class_type_name.c_str());
1470
1471 uint64_t clang_type_info_bit_size = ast_context->getTypeSize(base_class->getType());
1472
1473 // Base classes biut sizes should be a multiple of 8 bits in size
1474 assert (clang_type_info_bit_size % 8 == 0);
1475 child_byte_size = clang_type_info_bit_size / 8;
1476 return base_class->getType().getAsOpaquePtr();
1477 }
1478 // We don't increment the child index in the for loop since we might
1479 // be skipping empty base classes
1480 ++child_idx;
1481 }
1482 }
Chris Lattner24943d22010-06-08 16:52:24 +00001483 // Make sure index is in range...
1484 uint32_t field_idx = 0;
1485 RecordDecl::field_iterator field, field_end;
1486 for (field = record_decl->field_begin(), field_end = record_decl->field_end(); field != field_end; ++field, ++field_idx, ++child_idx)
1487 {
1488 if (idx == child_idx)
1489 {
1490 // Print the member type if requested
1491 // Print the member name and equal sign
1492 child_name.assign(field->getNameAsString().c_str());
1493
1494 // Figure out the type byte size (field_type_info.first) and
1495 // alignment (field_type_info.second) from the AST context.
1496 std::pair<uint64_t, unsigned> field_type_info = ast_context->getTypeInfo(field->getType());
Greg Clayton54e7afa2010-07-09 20:39:50 +00001497 assert(field_idx < record_layout.getFieldCount());
Chris Lattner24943d22010-06-08 16:52:24 +00001498
1499 child_byte_size = field_type_info.first / 8;
1500
1501 // Figure out the field offset within the current struct/union/class type
1502 bit_offset = record_layout.getFieldOffset (field_idx);
1503 child_byte_offset = bit_offset / 8;
1504 if (ClangASTContext::FieldIsBitfield (ast_context, *field, child_bitfield_bit_size))
1505 child_bitfield_bit_offset = bit_offset % 8;
1506
1507 return field->getType().getAsOpaquePtr();
1508 }
1509 }
1510 }
1511 break;
1512
Greg Clayton9488b742010-07-28 02:04:09 +00001513 case clang::Type::ObjCObject:
1514 case clang::Type::ObjCInterface:
1515 {
1516 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(parent_qual_type.getTypePtr());
1517 assert (objc_class_type);
1518 if (objc_class_type)
1519 {
1520 uint32_t child_idx = 0;
1521 ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
1522
1523 if (class_interface_decl)
1524 {
1525
1526 const ASTRecordLayout &interface_layout = ast_context->getASTObjCInterfaceLayout(class_interface_decl);
1527 ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
1528 if (superclass_interface_decl)
1529 {
1530 if (omit_empty_base_classes)
1531 {
Greg Clayton960d6a42010-08-03 00:35:52 +00001532 if (ClangASTContext::GetNumChildren(ast_context->getObjCInterfaceType(superclass_interface_decl).getAsOpaquePtr(), omit_empty_base_classes) > 0)
Greg Clayton9488b742010-07-28 02:04:09 +00001533 {
1534 if (idx == 0)
1535 {
1536 QualType ivar_qual_type(ast_context->getObjCInterfaceType(superclass_interface_decl));
1537
1538
1539 child_name.assign(superclass_interface_decl->getNameAsString().c_str());
1540
1541 std::pair<uint64_t, unsigned> ivar_type_info = ast_context->getTypeInfo(ivar_qual_type.getTypePtr());
1542
1543 child_byte_size = ivar_type_info.first / 8;
Greg Clayton960d6a42010-08-03 00:35:52 +00001544 child_byte_offset = 0;
Greg Clayton9488b742010-07-28 02:04:09 +00001545
1546 return ivar_qual_type.getAsOpaquePtr();
1547 }
1548
1549 ++child_idx;
1550 }
1551 }
1552 else
1553 ++child_idx;
1554 }
Greg Clayton960d6a42010-08-03 00:35:52 +00001555
1556 const uint32_t superclass_idx = child_idx;
Greg Clayton9488b742010-07-28 02:04:09 +00001557
1558 if (idx < (child_idx + class_interface_decl->ivar_size()))
1559 {
1560 ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
1561
1562 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos)
1563 {
1564 if (child_idx == idx)
1565 {
1566 const ObjCIvarDecl* ivar_decl = *ivar_pos;
1567
1568 QualType ivar_qual_type(ivar_decl->getType());
1569
1570 child_name.assign(ivar_decl->getNameAsString().c_str());
1571
1572 std::pair<uint64_t, unsigned> ivar_type_info = ast_context->getTypeInfo(ivar_qual_type.getTypePtr());
1573
1574 child_byte_size = ivar_type_info.first / 8;
1575
1576 // Figure out the field offset within the current struct/union/class type
Greg Clayton960d6a42010-08-03 00:35:52 +00001577 bit_offset = interface_layout.getFieldOffset (child_idx - superclass_idx);
Greg Clayton9488b742010-07-28 02:04:09 +00001578 child_byte_offset = bit_offset / 8;
1579
1580 return ivar_qual_type.getAsOpaquePtr();
1581 }
1582 ++child_idx;
1583 }
1584 }
1585 }
1586 }
1587 }
1588 break;
1589
1590 case clang::Type::ObjCObjectPointer:
1591 {
Greg Clayton960d6a42010-08-03 00:35:52 +00001592 ObjCObjectPointerType *pointer_type = cast<ObjCObjectPointerType>(parent_qual_type.getTypePtr());
1593 QualType pointee_type = pointer_type->getPointeeType();
1594
1595 if (transparent_pointers && ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
1596 {
1597 return GetChildClangTypeAtIndex (ast_context,
1598 parent_name,
1599 pointer_type->getPointeeType().getAsOpaquePtr(),
1600 idx,
1601 transparent_pointers,
1602 omit_empty_base_classes,
1603 child_name,
1604 child_byte_size,
1605 child_byte_offset,
1606 child_bitfield_bit_size,
1607 child_bitfield_bit_offset);
1608 }
1609 else
1610 {
1611 if (parent_name)
1612 {
1613 child_name.assign(1, '*');
1614 child_name += parent_name;
1615 }
1616
1617 // We have a pointer to an simple type
1618 if (idx == 0)
1619 {
1620 std::pair<uint64_t, unsigned> clang_type_info = ast_context->getTypeInfo(pointee_type);
1621 assert(clang_type_info.first % 8 == 0);
1622 child_byte_size = clang_type_info.first / 8;
1623 child_byte_offset = 0;
1624 return pointee_type.getAsOpaquePtr();
1625 }
1626 }
Greg Clayton9488b742010-07-28 02:04:09 +00001627 }
1628 break;
1629
Greg Clayton1674b122010-07-21 22:12:05 +00001630 case clang::Type::ConstantArray:
Chris Lattner24943d22010-06-08 16:52:24 +00001631 {
1632 const ConstantArrayType *array = cast<ConstantArrayType>(parent_qual_type.getTypePtr());
1633 const uint64_t element_count = array->getSize().getLimitedValue();
1634
1635 if (idx < element_count)
1636 {
1637 std::pair<uint64_t, unsigned> field_type_info = ast_context->getTypeInfo(array->getElementType());
1638
1639 char element_name[32];
1640 ::snprintf (element_name, sizeof (element_name), "%s[%u]", parent_name ? parent_name : "", idx);
1641
1642 child_name.assign(element_name);
1643 assert(field_type_info.first % 8 == 0);
1644 child_byte_size = field_type_info.first / 8;
1645 child_byte_offset = idx * child_byte_size;
1646 return array->getElementType().getAsOpaquePtr();
1647 }
1648 }
1649 break;
1650
Greg Clayton1674b122010-07-21 22:12:05 +00001651 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00001652 {
1653 PointerType *pointer_type = cast<PointerType>(parent_qual_type.getTypePtr());
1654 QualType pointee_type = pointer_type->getPointeeType();
1655
1656 if (transparent_pointers && ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
1657 {
1658 return GetChildClangTypeAtIndex (ast_context,
1659 parent_name,
1660 pointer_type->getPointeeType().getAsOpaquePtr(),
1661 idx,
1662 transparent_pointers,
1663 omit_empty_base_classes,
1664 child_name,
1665 child_byte_size,
1666 child_byte_offset,
1667 child_bitfield_bit_size,
1668 child_bitfield_bit_offset);
1669 }
1670 else
1671 {
1672 if (parent_name)
1673 {
1674 child_name.assign(1, '*');
1675 child_name += parent_name;
1676 }
1677
1678 // We have a pointer to an simple type
1679 if (idx == 0)
1680 {
1681 std::pair<uint64_t, unsigned> clang_type_info = ast_context->getTypeInfo(pointee_type);
1682 assert(clang_type_info.first % 8 == 0);
1683 child_byte_size = clang_type_info.first / 8;
1684 child_byte_offset = 0;
1685 return pointee_type.getAsOpaquePtr();
1686 }
1687 }
1688 }
1689 break;
1690
Greg Clayton1674b122010-07-21 22:12:05 +00001691 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00001692 return GetChildClangTypeAtIndex (ast_context,
1693 parent_name,
1694 cast<TypedefType>(parent_qual_type)->LookThroughTypedefs().getAsOpaquePtr(),
1695 idx,
1696 transparent_pointers,
1697 omit_empty_base_classes,
1698 child_name,
1699 child_byte_size,
1700 child_byte_offset,
1701 child_bitfield_bit_size,
1702 child_bitfield_bit_offset);
1703 break;
1704
1705 default:
1706 break;
1707 }
1708 }
Greg Claytonf8e98a62010-07-23 15:37:46 +00001709 return NULL;
Chris Lattner24943d22010-06-08 16:52:24 +00001710}
1711
1712static inline bool
1713BaseSpecifierIsEmpty (const CXXBaseSpecifier *b)
1714{
1715 return ClangASTContext::RecordHasFields(cast<CXXRecordDecl>(b->getType()->getAs<RecordType>()->getDecl())) == false;
1716}
1717
1718static uint32_t
1719GetNumBaseClasses (const CXXRecordDecl *cxx_record_decl, bool omit_empty_base_classes)
1720{
1721 uint32_t num_bases = 0;
1722 if (cxx_record_decl)
1723 {
1724 if (omit_empty_base_classes)
1725 {
1726 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1727 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1728 base_class != base_class_end;
1729 ++base_class)
1730 {
1731 // Skip empty base classes
1732 if (omit_empty_base_classes)
1733 {
1734 if (BaseSpecifierIsEmpty (base_class))
1735 continue;
1736 }
1737 ++num_bases;
1738 }
1739 }
1740 else
1741 num_bases = cxx_record_decl->getNumBases();
1742 }
1743 return num_bases;
1744}
1745
1746
1747static uint32_t
1748GetIndexForRecordBase
1749(
1750 const RecordDecl *record_decl,
1751 const CXXBaseSpecifier *base_spec,
1752 bool omit_empty_base_classes
1753)
1754{
1755 uint32_t child_idx = 0;
1756
1757 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1758
1759// const char *super_name = record_decl->getNameAsCString();
1760// const char *base_name = base_spec->getType()->getAs<RecordType>()->getDecl()->getNameAsCString();
1761// printf ("GetIndexForRecordChild (%s, %s)\n", super_name, base_name);
1762//
1763 if (cxx_record_decl)
1764 {
1765 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1766 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1767 base_class != base_class_end;
1768 ++base_class)
1769 {
1770 if (omit_empty_base_classes)
1771 {
1772 if (BaseSpecifierIsEmpty (base_class))
1773 continue;
1774 }
1775
1776// printf ("GetIndexForRecordChild (%s, %s) base[%u] = %s\n", super_name, base_name,
1777// child_idx,
1778// base_class->getType()->getAs<RecordType>()->getDecl()->getNameAsCString());
1779//
1780//
1781 if (base_class == base_spec)
1782 return child_idx;
1783 ++child_idx;
1784 }
1785 }
1786
1787 return UINT32_MAX;
1788}
1789
1790
1791static uint32_t
1792GetIndexForRecordChild
1793(
1794 const RecordDecl *record_decl,
1795 NamedDecl *canonical_decl,
1796 bool omit_empty_base_classes
1797)
1798{
1799 uint32_t child_idx = GetNumBaseClasses (dyn_cast<CXXRecordDecl>(record_decl), omit_empty_base_classes);
1800
1801// const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1802//
1803//// printf ("GetIndexForRecordChild (%s, %s)\n", record_decl->getNameAsCString(), canonical_decl->getNameAsCString());
1804// if (cxx_record_decl)
1805// {
1806// CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
1807// for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
1808// base_class != base_class_end;
1809// ++base_class)
1810// {
1811// if (omit_empty_base_classes)
1812// {
1813// if (BaseSpecifierIsEmpty (base_class))
1814// continue;
1815// }
1816//
1817//// printf ("GetIndexForRecordChild (%s, %s) base[%u] = %s\n",
1818//// record_decl->getNameAsCString(),
1819//// canonical_decl->getNameAsCString(),
1820//// child_idx,
1821//// base_class->getType()->getAs<RecordType>()->getDecl()->getNameAsCString());
1822//
1823//
1824// CXXRecordDecl *curr_base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
1825// if (curr_base_class_decl == canonical_decl)
1826// {
1827// return child_idx;
1828// }
1829// ++child_idx;
1830// }
1831// }
1832//
1833// const uint32_t num_bases = child_idx;
1834 RecordDecl::field_iterator field, field_end;
1835 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
1836 field != field_end;
1837 ++field, ++child_idx)
1838 {
1839// printf ("GetIndexForRecordChild (%s, %s) field[%u] = %s\n",
1840// record_decl->getNameAsCString(),
1841// canonical_decl->getNameAsCString(),
1842// child_idx - num_bases,
1843// field->getNameAsCString());
1844
1845 if (field->getCanonicalDecl() == canonical_decl)
1846 return child_idx;
1847 }
1848
1849 return UINT32_MAX;
1850}
1851
1852// Look for a child member (doesn't include base classes, but it does include
1853// their members) in the type hierarchy. Returns an index path into "clang_type"
1854// on how to reach the appropriate member.
1855//
1856// class A
1857// {
1858// public:
1859// int m_a;
1860// int m_b;
1861// };
1862//
1863// class B
1864// {
1865// };
1866//
1867// class C :
1868// public B,
1869// public A
1870// {
1871// };
1872//
1873// If we have a clang type that describes "class C", and we wanted to looked
1874// "m_b" in it:
1875//
1876// With omit_empty_base_classes == false we would get an integer array back with:
1877// { 1, 1 }
1878// The first index 1 is the child index for "class A" within class C
1879// The second index 1 is the child index for "m_b" within class A
1880//
1881// With omit_empty_base_classes == true we would get an integer array back with:
1882// { 0, 1 }
1883// 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)
1884// The second index 1 is the child index for "m_b" within class A
1885
1886size_t
1887ClangASTContext::GetIndexOfChildMemberWithName
1888(
1889 ASTContext *ast_context,
1890 void *clang_type,
1891 const char *name,
1892 bool omit_empty_base_classes,
1893 std::vector<uint32_t>& child_indexes
1894)
1895{
1896 if (clang_type && name && name[0])
1897 {
1898 QualType qual_type(QualType::getFromOpaquePtr(clang_type));
1899 switch (qual_type->getTypeClass())
1900 {
Greg Clayton1674b122010-07-21 22:12:05 +00001901 case clang::Type::Record:
Chris Lattner24943d22010-06-08 16:52:24 +00001902 {
1903 const RecordType *record_type = cast<RecordType>(qual_type.getTypePtr());
1904 const RecordDecl *record_decl = record_type->getDecl();
1905
1906 assert(record_decl);
1907 uint32_t child_idx = 0;
1908
1909 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
1910
1911 // Try and find a field that matches NAME
1912 RecordDecl::field_iterator field, field_end;
1913 StringRef name_sref(name);
1914 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
1915 field != field_end;
1916 ++field, ++child_idx)
1917 {
1918 if (field->getName().equals (name_sref))
1919 {
1920 // We have to add on the number of base classes to this index!
1921 child_indexes.push_back (child_idx + GetNumBaseClasses (cxx_record_decl, omit_empty_base_classes));
1922 return child_indexes.size();
1923 }
1924 }
1925
1926 if (cxx_record_decl)
1927 {
1928 const RecordDecl *parent_record_decl = cxx_record_decl;
1929
1930 //printf ("parent = %s\n", parent_record_decl->getNameAsCString());
1931
1932 //const Decl *root_cdecl = cxx_record_decl->getCanonicalDecl();
1933 // Didn't find things easily, lets let clang do its thang...
1934 IdentifierInfo & ident_ref = ast_context->Idents.get(name, name + strlen (name));
1935 DeclarationName decl_name(&ident_ref);
1936
1937 CXXBasePaths paths;
1938 if (cxx_record_decl->lookupInBases(CXXRecordDecl::FindOrdinaryMember,
1939 decl_name.getAsOpaquePtr(),
1940 paths))
1941 {
Chris Lattner24943d22010-06-08 16:52:24 +00001942 CXXBasePaths::const_paths_iterator path, path_end = paths.end();
1943 for (path = paths.begin(); path != path_end; ++path)
1944 {
1945 const size_t num_path_elements = path->size();
1946 for (size_t e=0; e<num_path_elements; ++e)
1947 {
1948 CXXBasePathElement elem = (*path)[e];
1949
1950 child_idx = GetIndexForRecordBase (parent_record_decl, elem.Base, omit_empty_base_classes);
1951 if (child_idx == UINT32_MAX)
1952 {
1953 child_indexes.clear();
1954 return 0;
1955 }
1956 else
1957 {
1958 child_indexes.push_back (child_idx);
1959 parent_record_decl = cast<RecordDecl>(elem.Base->getType()->getAs<RecordType>()->getDecl());
1960 }
1961 }
1962 DeclContext::lookup_iterator named_decl_pos;
1963 for (named_decl_pos = path->Decls.first;
1964 named_decl_pos != path->Decls.second && parent_record_decl;
1965 ++named_decl_pos)
1966 {
1967 //printf ("path[%zu] = %s\n", child_indexes.size(), (*named_decl_pos)->getNameAsCString());
1968
1969 child_idx = GetIndexForRecordChild (parent_record_decl, *named_decl_pos, omit_empty_base_classes);
1970 if (child_idx == UINT32_MAX)
1971 {
1972 child_indexes.clear();
1973 return 0;
1974 }
1975 else
1976 {
1977 child_indexes.push_back (child_idx);
1978 }
1979 }
1980 }
1981 return child_indexes.size();
1982 }
1983 }
1984
1985 }
1986 break;
1987
Greg Clayton9488b742010-07-28 02:04:09 +00001988 case clang::Type::ObjCObject:
1989 case clang::Type::ObjCInterface:
1990 {
1991 StringRef name_sref(name);
1992 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(qual_type.getTypePtr());
1993 assert (objc_class_type);
1994 if (objc_class_type)
1995 {
1996 uint32_t child_idx = 0;
1997 ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
1998
1999 if (class_interface_decl)
2000 {
2001 ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
2002 ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
2003
2004 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos)
2005 {
2006 const ObjCIvarDecl* ivar_decl = *ivar_pos;
2007
2008 if (ivar_decl->getName().equals (name_sref))
2009 {
2010 if ((!omit_empty_base_classes && superclass_interface_decl) ||
2011 ( omit_empty_base_classes && ObjCDeclHasIVars (superclass_interface_decl, true)))
2012 ++child_idx;
2013
2014 child_indexes.push_back (child_idx);
2015 return child_indexes.size();
2016 }
2017 }
2018
2019 if (superclass_interface_decl)
2020 {
2021 // The super class index is always zero for ObjC classes,
2022 // so we push it onto the child indexes in case we find
2023 // an ivar in our superclass...
2024 child_indexes.push_back (0);
2025
2026 if (GetIndexOfChildMemberWithName (ast_context,
2027 ast_context->getObjCInterfaceType(superclass_interface_decl).getAsOpaquePtr(),
2028 name,
2029 omit_empty_base_classes,
2030 child_indexes))
2031 {
2032 // We did find an ivar in a superclass so just
2033 // return the results!
2034 return child_indexes.size();
2035 }
2036
2037 // We didn't find an ivar matching "name" in our
2038 // superclass, pop the superclass zero index that
2039 // we pushed on above.
2040 child_indexes.pop_back();
2041 }
2042 }
2043 }
2044 }
2045 break;
2046
2047 case clang::Type::ObjCObjectPointer:
2048 {
2049 return GetIndexOfChildMemberWithName (ast_context,
2050 cast<ObjCObjectPointerType>(qual_type.getTypePtr())->getPointeeType().getAsOpaquePtr(),
2051 name,
2052 omit_empty_base_classes,
2053 child_indexes);
2054 }
2055 break;
2056
2057
Greg Clayton1674b122010-07-21 22:12:05 +00002058 case clang::Type::ConstantArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002059 {
2060// const ConstantArrayType *array = cast<ConstantArrayType>(parent_qual_type.getTypePtr());
2061// const uint64_t element_count = array->getSize().getLimitedValue();
2062//
2063// if (idx < element_count)
2064// {
2065// std::pair<uint64_t, unsigned> field_type_info = ast_context->getTypeInfo(array->getElementType());
2066//
2067// char element_name[32];
2068// ::snprintf (element_name, sizeof (element_name), "%s[%u]", parent_name ? parent_name : "", idx);
2069//
2070// child_name.assign(element_name);
2071// assert(field_type_info.first % 8 == 0);
2072// child_byte_size = field_type_info.first / 8;
2073// child_byte_offset = idx * child_byte_size;
2074// return array->getElementType().getAsOpaquePtr();
2075// }
2076 }
2077 break;
2078
Greg Clayton1674b122010-07-21 22:12:05 +00002079// case clang::Type::MemberPointerType:
Chris Lattner24943d22010-06-08 16:52:24 +00002080// {
2081// MemberPointerType *mem_ptr_type = cast<MemberPointerType>(qual_type.getTypePtr());
2082// QualType pointee_type = mem_ptr_type->getPointeeType();
2083//
2084// if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
2085// {
2086// return GetIndexOfChildWithName (ast_context,
2087// mem_ptr_type->getPointeeType().getAsOpaquePtr(),
2088// name);
2089// }
2090// }
2091// break;
2092//
Greg Clayton1674b122010-07-21 22:12:05 +00002093 case clang::Type::LValueReference:
2094 case clang::Type::RValueReference:
Chris Lattner24943d22010-06-08 16:52:24 +00002095 {
2096 ReferenceType *reference_type = cast<ReferenceType>(qual_type.getTypePtr());
2097 QualType pointee_type = reference_type->getPointeeType();
2098
2099 if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
2100 {
2101 return GetIndexOfChildMemberWithName (ast_context,
2102 reference_type->getPointeeType().getAsOpaquePtr(),
2103 name,
2104 omit_empty_base_classes,
2105 child_indexes);
2106 }
2107 }
2108 break;
2109
Greg Clayton1674b122010-07-21 22:12:05 +00002110 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002111 {
2112 PointerType *pointer_type = cast<PointerType>(qual_type.getTypePtr());
2113 QualType pointee_type = pointer_type->getPointeeType();
2114
2115 if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
2116 {
2117 return GetIndexOfChildMemberWithName (ast_context,
2118 pointer_type->getPointeeType().getAsOpaquePtr(),
2119 name,
2120 omit_empty_base_classes,
2121 child_indexes);
2122 }
2123 else
2124 {
2125// if (parent_name)
2126// {
2127// child_name.assign(1, '*');
2128// child_name += parent_name;
2129// }
2130//
2131// // We have a pointer to an simple type
2132// if (idx == 0)
2133// {
2134// std::pair<uint64_t, unsigned> clang_type_info = ast_context->getTypeInfo(pointee_type);
2135// assert(clang_type_info.first % 8 == 0);
2136// child_byte_size = clang_type_info.first / 8;
2137// child_byte_offset = 0;
2138// return pointee_type.getAsOpaquePtr();
2139// }
2140 }
2141 }
2142 break;
2143
Greg Clayton1674b122010-07-21 22:12:05 +00002144 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00002145 return GetIndexOfChildMemberWithName (ast_context,
2146 cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr(),
2147 name,
2148 omit_empty_base_classes,
2149 child_indexes);
2150
2151 default:
2152 break;
2153 }
2154 }
2155 return 0;
2156}
2157
2158
2159// Get the index of the child of "clang_type" whose name matches. This function
2160// doesn't descend into the children, but only looks one level deep and name
2161// matches can include base class names.
2162
2163uint32_t
2164ClangASTContext::GetIndexOfChildWithName
2165(
2166 ASTContext *ast_context,
2167 void *clang_type,
2168 const char *name,
2169 bool omit_empty_base_classes
2170)
2171{
2172 if (clang_type && name && name[0])
2173 {
2174 QualType qual_type(QualType::getFromOpaquePtr(clang_type));
Greg Clayton9488b742010-07-28 02:04:09 +00002175
2176 clang::Type::TypeClass qual_type_class = qual_type->getTypeClass();
2177
2178 switch (qual_type_class)
Chris Lattner24943d22010-06-08 16:52:24 +00002179 {
Greg Clayton1674b122010-07-21 22:12:05 +00002180 case clang::Type::Record:
Chris Lattner24943d22010-06-08 16:52:24 +00002181 {
2182 const RecordType *record_type = cast<RecordType>(qual_type.getTypePtr());
2183 const RecordDecl *record_decl = record_type->getDecl();
2184
2185 assert(record_decl);
2186 uint32_t child_idx = 0;
2187
2188 const CXXRecordDecl *cxx_record_decl = dyn_cast<CXXRecordDecl>(record_decl);
2189
2190 if (cxx_record_decl)
2191 {
2192 CXXRecordDecl::base_class_const_iterator base_class, base_class_end;
2193 for (base_class = cxx_record_decl->bases_begin(), base_class_end = cxx_record_decl->bases_end();
2194 base_class != base_class_end;
2195 ++base_class)
2196 {
2197 // Skip empty base classes
2198 CXXRecordDecl *base_class_decl = cast<CXXRecordDecl>(base_class->getType()->getAs<RecordType>()->getDecl());
2199 if (omit_empty_base_classes && RecordHasFields(base_class_decl) == false)
2200 continue;
2201
2202 if (base_class->getType().getAsString().compare (name) == 0)
2203 return child_idx;
2204 ++child_idx;
2205 }
2206 }
2207
2208 // Try and find a field that matches NAME
2209 RecordDecl::field_iterator field, field_end;
2210 StringRef name_sref(name);
2211 for (field = record_decl->field_begin(), field_end = record_decl->field_end();
2212 field != field_end;
2213 ++field, ++child_idx)
2214 {
2215 if (field->getName().equals (name_sref))
2216 return child_idx;
2217 }
2218
2219 }
2220 break;
2221
Greg Clayton9488b742010-07-28 02:04:09 +00002222 case clang::Type::ObjCObject:
2223 case clang::Type::ObjCInterface:
2224 {
2225 StringRef name_sref(name);
2226 ObjCObjectType *objc_class_type = dyn_cast<ObjCObjectType>(qual_type.getTypePtr());
2227 assert (objc_class_type);
2228 if (objc_class_type)
2229 {
2230 uint32_t child_idx = 0;
2231 ObjCInterfaceDecl *class_interface_decl = objc_class_type->getInterface();
2232
2233 if (class_interface_decl)
2234 {
2235 ObjCInterfaceDecl::ivar_iterator ivar_pos, ivar_end = class_interface_decl->ivar_end();
2236 ObjCInterfaceDecl *superclass_interface_decl = class_interface_decl->getSuperClass();
2237
2238 for (ivar_pos = class_interface_decl->ivar_begin(); ivar_pos != ivar_end; ++ivar_pos)
2239 {
2240 const ObjCIvarDecl* ivar_decl = *ivar_pos;
2241
2242 if (ivar_decl->getName().equals (name_sref))
2243 {
2244 if ((!omit_empty_base_classes && superclass_interface_decl) ||
2245 ( omit_empty_base_classes && ObjCDeclHasIVars (superclass_interface_decl, true)))
2246 ++child_idx;
2247
2248 return child_idx;
2249 }
2250 }
2251
2252 if (superclass_interface_decl)
2253 {
2254 if (superclass_interface_decl->getName().equals (name_sref))
2255 return 0;
2256 }
2257 }
2258 }
2259 }
2260 break;
2261
2262 case clang::Type::ObjCObjectPointer:
2263 {
2264 return GetIndexOfChildWithName (ast_context,
2265 cast<ObjCObjectPointerType>(qual_type.getTypePtr())->getPointeeType().getAsOpaquePtr(),
2266 name,
2267 omit_empty_base_classes);
2268 }
2269 break;
2270
Greg Clayton1674b122010-07-21 22:12:05 +00002271 case clang::Type::ConstantArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002272 {
2273// const ConstantArrayType *array = cast<ConstantArrayType>(parent_qual_type.getTypePtr());
2274// const uint64_t element_count = array->getSize().getLimitedValue();
2275//
2276// if (idx < element_count)
2277// {
2278// std::pair<uint64_t, unsigned> field_type_info = ast_context->getTypeInfo(array->getElementType());
2279//
2280// char element_name[32];
2281// ::snprintf (element_name, sizeof (element_name), "%s[%u]", parent_name ? parent_name : "", idx);
2282//
2283// child_name.assign(element_name);
2284// assert(field_type_info.first % 8 == 0);
2285// child_byte_size = field_type_info.first / 8;
2286// child_byte_offset = idx * child_byte_size;
2287// return array->getElementType().getAsOpaquePtr();
2288// }
2289 }
2290 break;
2291
Greg Clayton1674b122010-07-21 22:12:05 +00002292// case clang::Type::MemberPointerType:
Chris Lattner24943d22010-06-08 16:52:24 +00002293// {
2294// MemberPointerType *mem_ptr_type = cast<MemberPointerType>(qual_type.getTypePtr());
2295// QualType pointee_type = mem_ptr_type->getPointeeType();
2296//
2297// if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
2298// {
2299// return GetIndexOfChildWithName (ast_context,
2300// mem_ptr_type->getPointeeType().getAsOpaquePtr(),
2301// name);
2302// }
2303// }
2304// break;
2305//
Greg Clayton1674b122010-07-21 22:12:05 +00002306 case clang::Type::LValueReference:
2307 case clang::Type::RValueReference:
Chris Lattner24943d22010-06-08 16:52:24 +00002308 {
2309 ReferenceType *reference_type = cast<ReferenceType>(qual_type.getTypePtr());
2310 QualType pointee_type = reference_type->getPointeeType();
2311
2312 if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
2313 {
2314 return GetIndexOfChildWithName (ast_context,
2315 reference_type->getPointeeType().getAsOpaquePtr(),
2316 name,
2317 omit_empty_base_classes);
2318 }
2319 }
2320 break;
2321
Greg Clayton1674b122010-07-21 22:12:05 +00002322 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002323 {
2324 PointerType *pointer_type = cast<PointerType>(qual_type.getTypePtr());
2325 QualType pointee_type = pointer_type->getPointeeType();
2326
2327 if (ClangASTContext::IsAggregateType (pointee_type.getAsOpaquePtr()))
2328 {
2329 return GetIndexOfChildWithName (ast_context,
2330 pointer_type->getPointeeType().getAsOpaquePtr(),
2331 name,
2332 omit_empty_base_classes);
2333 }
2334 else
2335 {
2336// if (parent_name)
2337// {
2338// child_name.assign(1, '*');
2339// child_name += parent_name;
2340// }
2341//
2342// // We have a pointer to an simple type
2343// if (idx == 0)
2344// {
2345// std::pair<uint64_t, unsigned> clang_type_info = ast_context->getTypeInfo(pointee_type);
2346// assert(clang_type_info.first % 8 == 0);
2347// child_byte_size = clang_type_info.first / 8;
2348// child_byte_offset = 0;
2349// return pointee_type.getAsOpaquePtr();
2350// }
2351 }
2352 }
2353 break;
2354
Greg Clayton1674b122010-07-21 22:12:05 +00002355 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00002356 return GetIndexOfChildWithName (ast_context,
2357 cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr(),
2358 name,
2359 omit_empty_base_classes);
2360
2361 default:
2362 break;
2363 }
2364 }
2365 return UINT32_MAX;
2366}
2367
2368#pragma mark TagType
2369
2370bool
2371ClangASTContext::SetTagTypeKind (void *tag_clang_type, int kind)
2372{
2373 if (tag_clang_type)
2374 {
2375 QualType tag_qual_type(QualType::getFromOpaquePtr(tag_clang_type));
Greg Clayton1674b122010-07-21 22:12:05 +00002376 clang::Type *clang_type = tag_qual_type.getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002377 if (clang_type)
2378 {
2379 TagType *tag_type = dyn_cast<TagType>(clang_type);
2380 if (tag_type)
2381 {
2382 TagDecl *tag_decl = dyn_cast<TagDecl>(tag_type->getDecl());
2383 if (tag_decl)
2384 {
2385 tag_decl->setTagKind ((TagDecl::TagKind)kind);
2386 return true;
2387 }
2388 }
2389 }
2390 }
2391 return false;
2392}
2393
2394
2395#pragma mark DeclContext Functions
2396
2397DeclContext *
2398ClangASTContext::GetDeclContextForType (void *clang_type)
2399{
2400 if (clang_type == NULL)
2401 return NULL;
2402
2403 QualType qual_type(QualType::getFromOpaquePtr(clang_type));
2404 switch (qual_type->getTypeClass())
2405 {
Greg Clayton9488b742010-07-28 02:04:09 +00002406 case clang::Type::FunctionNoProto: break;
2407 case clang::Type::FunctionProto: break;
2408 case clang::Type::IncompleteArray: break;
2409 case clang::Type::VariableArray: break;
2410 case clang::Type::ConstantArray: break;
2411 case clang::Type::ExtVector: break;
2412 case clang::Type::Vector: break;
2413 case clang::Type::Builtin: break;
2414 case clang::Type::BlockPointer: break;
2415 case clang::Type::Pointer: break;
2416 case clang::Type::LValueReference: break;
2417 case clang::Type::RValueReference: break;
2418 case clang::Type::MemberPointer: break;
2419 case clang::Type::Complex: break;
2420 case clang::Type::ObjCObject: break;
2421 case clang::Type::ObjCInterface: return cast<ObjCObjectType>(qual_type.getTypePtr())->getInterface();
2422 case clang::Type::ObjCObjectPointer: return ClangASTContext::GetDeclContextForType (cast<ObjCObjectPointerType>(qual_type.getTypePtr())->getPointeeType().getAsOpaquePtr());
2423 case clang::Type::Record: return cast<RecordType>(qual_type)->getDecl();
2424 case clang::Type::Enum: return cast<EnumType>(qual_type)->getDecl();
2425 case clang::Type::Typedef: return ClangASTContext::GetDeclContextForType (cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr());
Chris Lattner24943d22010-06-08 16:52:24 +00002426
Greg Clayton9488b742010-07-28 02:04:09 +00002427 case clang::Type::TypeOfExpr: break;
2428 case clang::Type::TypeOf: break;
2429 case clang::Type::Decltype: break;
2430 //case clang::Type::QualifiedName: break;
2431 case clang::Type::TemplateSpecialization: break;
Chris Lattner24943d22010-06-08 16:52:24 +00002432 }
2433 // No DeclContext in this type...
2434 return NULL;
2435}
2436
2437#pragma mark Namespace Declarations
2438
2439NamespaceDecl *
2440ClangASTContext::GetUniqueNamespaceDeclaration (const char *name, const Declaration &decl, DeclContext *decl_ctx)
2441{
2442 // TODO: Do something intelligent with the Declaration object passed in
2443 // like maybe filling in the SourceLocation with it...
2444 if (name)
2445 {
2446 ASTContext *ast_context = getASTContext();
2447 if (decl_ctx == NULL)
2448 decl_ctx = ast_context->getTranslationUnitDecl();
2449 return NamespaceDecl::Create(*ast_context, decl_ctx, SourceLocation(), &ast_context->Idents.get(name));
2450 }
2451 return NULL;
2452}
2453
2454
2455#pragma mark Function Types
2456
2457FunctionDecl *
2458ClangASTContext::CreateFunctionDeclaration (const char *name, void *function_clang_type, int storage, bool is_inline)
2459{
2460 if (name)
2461 {
2462 ASTContext *ast_context = getASTContext();
2463 assert (ast_context != NULL);
2464
2465 if (name && name[0])
2466 {
2467 return FunctionDecl::Create(*ast_context,
2468 ast_context->getTranslationUnitDecl(),
2469 SourceLocation(),
2470 DeclarationName (&ast_context->Idents.get(name)),
2471 QualType::getFromOpaquePtr(function_clang_type),
2472 NULL,
2473 (FunctionDecl::StorageClass)storage,
2474 (FunctionDecl::StorageClass)storage,
2475 is_inline);
2476 }
2477 else
2478 {
2479 return FunctionDecl::Create(*ast_context,
2480 ast_context->getTranslationUnitDecl(),
2481 SourceLocation(),
2482 DeclarationName (),
2483 QualType::getFromOpaquePtr(function_clang_type),
2484 NULL,
2485 (FunctionDecl::StorageClass)storage,
2486 (FunctionDecl::StorageClass)storage,
2487 is_inline);
2488 }
2489 }
2490 return NULL;
2491}
2492
2493void *
2494ClangASTContext::CreateFunctionType (void *result_type, void **args, unsigned num_args, bool isVariadic, unsigned TypeQuals)
2495{
2496 ASTContext *ast_context = getASTContext();
2497 assert (ast_context != NULL);
2498 std::vector<QualType> qual_type_args;
2499 for (unsigned i=0; i<num_args; ++i)
2500 qual_type_args.push_back (QualType::getFromOpaquePtr(args[i]));
2501
2502 // TODO: Detect calling convention in DWARF?
2503 return ast_context->getFunctionType(QualType::getFromOpaquePtr(result_type),
Greg Clayton53d68e72010-07-20 22:52:08 +00002504 qual_type_args.empty() ? NULL : &qual_type_args.front(),
Chris Lattner24943d22010-06-08 16:52:24 +00002505 qual_type_args.size(),
2506 isVariadic,
2507 TypeQuals,
2508 false, // hasExceptionSpec
2509 false, // hasAnyExceptionSpec,
2510 0, // NumExs
2511 0, // const QualType *ExArray
2512 FunctionType::ExtInfo ()).getAsOpaquePtr(); // NoReturn);
2513}
2514
2515ParmVarDecl *
Greg Clayton84f80752010-07-22 18:30:50 +00002516ClangASTContext::CreateParmeterDeclaration (const char *name, void *return_type, int storage)
Chris Lattner24943d22010-06-08 16:52:24 +00002517{
2518 ASTContext *ast_context = getASTContext();
2519 assert (ast_context != NULL);
2520 return ParmVarDecl::Create(*ast_context,
2521 ast_context->getTranslationUnitDecl(),
2522 SourceLocation(),
2523 name && name[0] ? &ast_context->Idents.get(name) : NULL,
2524 QualType::getFromOpaquePtr(return_type),
2525 NULL,
2526 (VarDecl::StorageClass)storage,
2527 (VarDecl::StorageClass)storage,
2528 0);
2529}
2530
2531void
2532ClangASTContext::SetFunctionParameters (FunctionDecl *function_decl, ParmVarDecl **params, unsigned num_params)
2533{
2534 if (function_decl)
2535 function_decl->setParams (params, num_params);
2536}
2537
2538
2539#pragma mark Array Types
2540
2541void *
2542ClangASTContext::CreateArrayType (void *element_type, size_t element_count, uint32_t bit_stride)
2543{
2544 if (element_type)
2545 {
2546 ASTContext *ast_context = getASTContext();
2547 assert (ast_context != NULL);
2548 llvm::APInt ap_element_count (64, element_count);
2549 return ast_context->getConstantArrayType(QualType::getFromOpaquePtr(element_type),
2550 ap_element_count,
2551 ArrayType::Normal,
2552 0).getAsOpaquePtr(); // ElemQuals
2553 }
2554 return NULL;
2555}
2556
2557
2558#pragma mark TagDecl
2559
2560bool
2561ClangASTContext::StartTagDeclarationDefinition (void *clang_type)
2562{
2563 if (clang_type)
2564 {
2565 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
Greg Clayton1674b122010-07-21 22:12:05 +00002566 clang::Type *t = qual_type.getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002567 if (t)
2568 {
2569 TagType *tag_type = dyn_cast<TagType>(t);
2570 if (tag_type)
2571 {
2572 TagDecl *tag_decl = tag_type->getDecl();
2573 if (tag_decl)
2574 {
2575 tag_decl->startDefinition();
2576 return true;
2577 }
2578 }
2579 }
2580 }
2581 return false;
2582}
2583
2584bool
2585ClangASTContext::CompleteTagDeclarationDefinition (void *clang_type)
2586{
2587 if (clang_type)
2588 {
2589 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
Greg Clayton1674b122010-07-21 22:12:05 +00002590 clang::Type *t = qual_type.getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002591 if (t)
2592 {
2593 TagType *tag_type = dyn_cast<TagType>(t);
2594 if (tag_type)
2595 {
2596 TagDecl *tag_decl = tag_type->getDecl();
2597 if (tag_decl)
2598 {
2599 tag_decl->completeDefinition();
2600 return true;
2601 }
2602 }
2603 }
2604 }
2605 return false;
2606}
2607
2608
2609#pragma mark Enumeration Types
2610
2611void *
2612ClangASTContext::CreateEnumerationType (const Declaration &decl, const char *name)
2613{
2614 // TODO: Do something intelligent with the Declaration object passed in
2615 // like maybe filling in the SourceLocation with it...
2616 ASTContext *ast_context = getASTContext();
2617 assert (ast_context != NULL);
2618 EnumDecl *enum_decl = EnumDecl::Create(*ast_context,
2619 ast_context->getTranslationUnitDecl(),
2620 SourceLocation(),
2621 name && name[0] ? &ast_context->Idents.get(name) : NULL,
2622 SourceLocation(),
2623 NULL);
2624 if (enum_decl)
2625 return ast_context->getTagDeclType(enum_decl).getAsOpaquePtr();
2626 return NULL;
2627}
2628
2629bool
2630ClangASTContext::AddEnumerationValueToEnumerationType
2631(
2632 void *enum_clang_type,
2633 void *enumerator_clang_type,
2634 const Declaration &decl,
2635 const char *name,
2636 int64_t enum_value,
2637 uint32_t enum_value_bit_size
2638)
2639{
2640 if (enum_clang_type && enumerator_clang_type && name)
2641 {
2642 // TODO: Do something intelligent with the Declaration object passed in
2643 // like maybe filling in the SourceLocation with it...
2644 ASTContext *ast_context = getASTContext();
2645 IdentifierTable *identifier_table = getIdentifierTable();
2646
2647 assert (ast_context != NULL);
2648 assert (identifier_table != NULL);
2649 QualType enum_qual_type (QualType::getFromOpaquePtr(enum_clang_type));
2650
Greg Clayton1674b122010-07-21 22:12:05 +00002651 clang::Type *clang_type = enum_qual_type.getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002652 if (clang_type)
2653 {
2654 const EnumType *enum_type = dyn_cast<EnumType>(clang_type);
2655
2656 if (enum_type)
2657 {
2658 llvm::APSInt enum_llvm_apsint(enum_value_bit_size, false);
2659 enum_llvm_apsint = enum_value;
2660 EnumConstantDecl *enumerator_decl =
2661 EnumConstantDecl::Create(*ast_context,
2662 enum_type->getDecl(),
2663 SourceLocation(),
2664 name ? &identifier_table->get(name) : NULL, // Identifier
2665 QualType::getFromOpaquePtr(enumerator_clang_type),
2666 NULL,
2667 enum_llvm_apsint);
2668
2669 if (enumerator_decl)
2670 {
2671 enum_type->getDecl()->addDecl(enumerator_decl);
2672 return true;
2673 }
2674 }
2675 }
2676 }
2677 return false;
2678}
2679
2680#pragma mark Pointers & References
2681
2682void *
2683ClangASTContext::CreatePointerType (void *clang_type)
2684{
2685 if (clang_type)
Greg Clayton7b541032010-07-29 20:06:32 +00002686 {
2687 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2688
2689 switch (qual_type->getTypeClass())
2690 {
2691 case clang::Type::ObjCObject:
2692 case clang::Type::ObjCInterface:
Greg Clayton7b541032010-07-29 20:06:32 +00002693 return getASTContext()->getObjCObjectPointerType(qual_type).getAsOpaquePtr();
2694
Greg Clayton7b541032010-07-29 20:06:32 +00002695 default:
2696 return getASTContext()->getPointerType(qual_type).getAsOpaquePtr();
2697 }
2698 }
Chris Lattner24943d22010-06-08 16:52:24 +00002699 return NULL;
2700}
2701
2702void *
2703ClangASTContext::CreateLValueReferenceType (void *clang_type)
2704{
2705 if (clang_type)
2706 return getASTContext()->getLValueReferenceType (QualType::getFromOpaquePtr(clang_type)).getAsOpaquePtr();
2707 return NULL;
2708}
2709
2710void *
2711ClangASTContext::CreateRValueReferenceType (void *clang_type)
2712{
2713 if (clang_type)
2714 return getASTContext()->getRValueReferenceType (QualType::getFromOpaquePtr(clang_type)).getAsOpaquePtr();
2715 return NULL;
2716}
2717
Greg Claytonfa970692010-06-12 01:20:30 +00002718void *
Greg Clayton84f80752010-07-22 18:30:50 +00002719ClangASTContext::CreateMemberPointerType (void *clang_pointee_type, void *clang_class_type)
Greg Claytonfa970692010-06-12 01:20:30 +00002720{
2721 if (clang_pointee_type && clang_pointee_type)
2722 return getASTContext()->getMemberPointerType(QualType::getFromOpaquePtr(clang_pointee_type),
2723 QualType::getFromOpaquePtr(clang_class_type).getTypePtr()).getAsOpaquePtr();
2724 return NULL;
2725}
2726
Chris Lattner24943d22010-06-08 16:52:24 +00002727size_t
2728ClangASTContext::GetPointerBitSize ()
2729{
2730 ASTContext *ast_context = getASTContext();
2731 return ast_context->getTypeSize(ast_context->VoidPtrTy);
2732}
2733
2734bool
2735ClangASTContext::IsPointerOrReferenceType (void *clang_type, void **target_type)
2736{
2737 if (clang_type == NULL)
2738 return false;
2739
2740 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2741 switch (qual_type->getTypeClass())
2742 {
Greg Clayton1674b122010-07-21 22:12:05 +00002743 case clang::Type::ObjCObjectPointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002744 if (target_type)
2745 *target_type = cast<ObjCObjectPointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2746 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002747 case clang::Type::BlockPointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002748 if (target_type)
2749 *target_type = cast<BlockPointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2750 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002751 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002752 if (target_type)
2753 *target_type = cast<PointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2754 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002755 case clang::Type::MemberPointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002756 if (target_type)
2757 *target_type = cast<MemberPointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2758 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002759 case clang::Type::LValueReference:
Chris Lattner24943d22010-06-08 16:52:24 +00002760 if (target_type)
2761 *target_type = cast<LValueReferenceType>(qual_type)->desugar().getAsOpaquePtr();
2762 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002763 case clang::Type::RValueReference:
Chris Lattner24943d22010-06-08 16:52:24 +00002764 if (target_type)
2765 *target_type = cast<LValueReferenceType>(qual_type)->desugar().getAsOpaquePtr();
2766 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002767 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00002768 return ClangASTContext::IsPointerOrReferenceType (cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr());
2769 default:
2770 break;
2771 }
2772 return false;
2773}
2774
Chris Lattner24943d22010-06-08 16:52:24 +00002775bool
Greg Clayton84f80752010-07-22 18:30:50 +00002776ClangASTContext::IsIntegerType (void *clang_type, bool &is_signed)
Chris Lattner24943d22010-06-08 16:52:24 +00002777{
2778 if (!clang_type)
2779 return false;
2780
2781 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2782 const BuiltinType *builtin_type = dyn_cast<BuiltinType>(qual_type->getCanonicalTypeInternal());
2783
2784 if (builtin_type)
2785 {
2786 if (builtin_type->isInteger())
2787 is_signed = builtin_type->isSignedInteger();
2788
2789 return true;
2790 }
2791
2792 return false;
2793}
2794
2795bool
2796ClangASTContext::IsPointerType (void *clang_type, void **target_type)
2797{
2798 if (clang_type)
2799 {
2800 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2801 switch (qual_type->getTypeClass())
2802 {
Greg Clayton1674b122010-07-21 22:12:05 +00002803 case clang::Type::ObjCObjectPointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002804 if (target_type)
2805 *target_type = cast<ObjCObjectPointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2806 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002807 case clang::Type::BlockPointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002808 if (target_type)
2809 *target_type = cast<BlockPointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2810 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002811 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002812 if (target_type)
2813 *target_type = cast<PointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2814 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002815 case clang::Type::MemberPointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002816 if (target_type)
2817 *target_type = cast<MemberPointerType>(qual_type)->getPointeeType().getAsOpaquePtr();
2818 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002819 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00002820 return ClangASTContext::IsPointerOrReferenceType (cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr(), target_type);
2821 default:
2822 break;
2823 }
2824 }
2825 return false;
2826}
2827
2828bool
2829ClangASTContext::IsFloatingPointType (void *clang_type, uint32_t &count, bool &is_complex)
2830{
2831 if (clang_type)
2832 {
2833 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2834
2835 if (const BuiltinType *BT = dyn_cast<BuiltinType>(qual_type->getCanonicalTypeInternal()))
2836 {
2837 clang::BuiltinType::Kind kind = BT->getKind();
2838 if (kind >= BuiltinType::Float && kind <= BuiltinType::LongDouble)
2839 {
2840 count = 1;
2841 is_complex = false;
2842 return true;
2843 }
2844 }
2845 else if (const ComplexType *CT = dyn_cast<ComplexType>(qual_type->getCanonicalTypeInternal()))
2846 {
2847 if (IsFloatingPointType(CT->getElementType().getAsOpaquePtr(), count, is_complex))
2848 {
2849 count = 2;
2850 is_complex = true;
2851 return true;
2852 }
2853 }
2854 else if (const VectorType *VT = dyn_cast<VectorType>(qual_type->getCanonicalTypeInternal()))
2855 {
2856 if (IsFloatingPointType(VT->getElementType().getAsOpaquePtr(), count, is_complex))
2857 {
2858 count = VT->getNumElements();
2859 is_complex = false;
2860 return true;
2861 }
2862 }
2863 }
2864 return false;
2865}
2866
2867
2868bool
2869ClangASTContext::IsCStringType (void *clang_type, uint32_t &length)
2870{
2871 if (clang_type)
2872 {
2873 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2874 switch (qual_type->getTypeClass())
2875 {
Greg Clayton1674b122010-07-21 22:12:05 +00002876 case clang::Type::ConstantArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002877 {
2878 ConstantArrayType *array = cast<ConstantArrayType>(qual_type.getTypePtr());
2879 QualType element_qual_type = array->getElementType();
Greg Clayton1674b122010-07-21 22:12:05 +00002880 clang::Type *canonical_type = element_qual_type->getCanonicalTypeInternal().getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002881 if (canonical_type && canonical_type->isCharType())
2882 {
2883 // We know the size of the array and it could be a C string
2884 // since it is an array of characters
2885 length = array->getSize().getLimitedValue();
2886 return true;
2887 }
2888 }
2889 break;
2890
Greg Clayton1674b122010-07-21 22:12:05 +00002891 case clang::Type::Pointer:
Chris Lattner24943d22010-06-08 16:52:24 +00002892 {
2893 PointerType *pointer_type = cast<PointerType>(qual_type.getTypePtr());
Greg Clayton1674b122010-07-21 22:12:05 +00002894 clang::Type *pointee_type_ptr = pointer_type->getPointeeType().getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002895 if (pointee_type_ptr)
2896 {
Greg Clayton1674b122010-07-21 22:12:05 +00002897 clang::Type *canonical_type_ptr = pointee_type_ptr->getCanonicalTypeInternal().getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002898 length = 0; // No length info, read until a NULL terminator is received
2899 if (canonical_type_ptr)
2900 return canonical_type_ptr->isCharType();
2901 else
2902 return pointee_type_ptr->isCharType();
2903 }
2904 }
2905 break;
2906
Greg Clayton1674b122010-07-21 22:12:05 +00002907 case clang::Type::Typedef:
Chris Lattner24943d22010-06-08 16:52:24 +00002908 return ClangASTContext::IsCStringType (cast<TypedefType>(qual_type)->LookThroughTypedefs().getAsOpaquePtr(), length);
2909
Greg Clayton1674b122010-07-21 22:12:05 +00002910 case clang::Type::LValueReference:
2911 case clang::Type::RValueReference:
Chris Lattner24943d22010-06-08 16:52:24 +00002912 {
2913 ReferenceType *reference_type = cast<ReferenceType>(qual_type.getTypePtr());
Greg Clayton1674b122010-07-21 22:12:05 +00002914 clang::Type *pointee_type_ptr = reference_type->getPointeeType().getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002915 if (pointee_type_ptr)
2916 {
Greg Clayton1674b122010-07-21 22:12:05 +00002917 clang::Type *canonical_type_ptr = pointee_type_ptr->getCanonicalTypeInternal().getTypePtr();
Chris Lattner24943d22010-06-08 16:52:24 +00002918 length = 0; // No length info, read until a NULL terminator is received
2919 if (canonical_type_ptr)
2920 return canonical_type_ptr->isCharType();
2921 else
2922 return pointee_type_ptr->isCharType();
2923 }
2924 }
2925 break;
2926 }
2927 }
2928 return false;
2929}
2930
2931bool
Greg Clayton84f80752010-07-22 18:30:50 +00002932ClangASTContext::IsArrayType (void *clang_type, void **member_type, uint64_t *size)
Chris Lattner24943d22010-06-08 16:52:24 +00002933{
2934 if (!clang_type)
2935 return false;
2936
2937 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2938
2939 switch (qual_type->getTypeClass())
2940 {
Greg Clayton1674b122010-07-21 22:12:05 +00002941 case clang::Type::ConstantArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002942 if (member_type)
2943 *member_type = cast<ConstantArrayType>(qual_type)->getElementType().getAsOpaquePtr();
2944 if (size)
2945 *size = cast<ConstantArrayType>(qual_type)->getSize().getLimitedValue(ULONG_LONG_MAX);
2946 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002947 case clang::Type::IncompleteArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002948 if (member_type)
2949 *member_type = cast<IncompleteArrayType>(qual_type)->getElementType().getAsOpaquePtr();
2950 if (size)
2951 *size = 0;
2952 return true;
Greg Clayton1674b122010-07-21 22:12:05 +00002953 case clang::Type::VariableArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002954 if (member_type)
2955 *member_type = cast<VariableArrayType>(qual_type)->getElementType().getAsOpaquePtr();
2956 if (size)
2957 *size = 0;
Greg Clayton1674b122010-07-21 22:12:05 +00002958 case clang::Type::DependentSizedArray:
Chris Lattner24943d22010-06-08 16:52:24 +00002959 if (member_type)
2960 *member_type = cast<DependentSizedArrayType>(qual_type)->getElementType().getAsOpaquePtr();
2961 if (size)
2962 *size = 0;
2963 return true;
2964 }
2965 return false;
2966}
2967
2968
2969#pragma mark Typedefs
2970
2971void *
2972ClangASTContext::CreateTypedefType (const char *name, void *clang_type, DeclContext *decl_ctx)
2973{
2974 if (clang_type)
2975 {
2976 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
2977 ASTContext *ast_context = getASTContext();
2978 IdentifierTable *identifier_table = getIdentifierTable();
2979 assert (ast_context != NULL);
2980 assert (identifier_table != NULL);
2981 if (decl_ctx == NULL)
2982 decl_ctx = ast_context->getTranslationUnitDecl();
2983 TypedefDecl *decl = TypedefDecl::Create(*ast_context,
2984 decl_ctx,
2985 SourceLocation(),
2986 name ? &identifier_table->get(name) : NULL, // Identifier
2987 ast_context->CreateTypeSourceInfo(qual_type));
2988
2989 // Get a uniqued QualType for the typedef decl type
2990 return ast_context->getTypedefType (decl).getAsOpaquePtr();
2991 }
2992 return NULL;
2993}
2994
2995
2996std::string
2997ClangASTContext::GetTypeName (void *opaque_qual_type)
2998{
2999 std::string return_name;
3000
3001 clang::QualType qual_type(clang::QualType::getFromOpaquePtr(opaque_qual_type));
3002
3003 const clang::TypedefType *typedef_type = qual_type->getAs<clang::TypedefType>();
3004 if (typedef_type)
3005 {
3006 const clang::TypedefDecl *typedef_decl = typedef_type->getDecl();
3007 return_name = typedef_decl->getQualifiedNameAsString();
3008 }
3009 else
3010 {
3011 return_name = qual_type.getAsString();
3012 }
3013
3014 return return_name;
3015}
3016
3017// Disable this for now since I can't seem to get a nicely formatted float
3018// out of the APFloat class without just getting the float, double or quad
3019// and then using a formatted print on it which defeats the purpose. We ideally
3020// would like to get perfect string values for any kind of float semantics
3021// so we can support remote targets. The code below also requires a patch to
3022// llvm::APInt.
3023//bool
3024//ClangASTContext::ConvertFloatValueToString (ASTContext *ast_context, void *clang_type, const uint8_t* bytes, size_t byte_size, int apint_byte_order, std::string &float_str)
3025//{
3026// uint32_t count = 0;
3027// bool is_complex = false;
3028// if (ClangASTContext::IsFloatingPointType (clang_type, count, is_complex))
3029// {
3030// unsigned num_bytes_per_float = byte_size / count;
3031// unsigned num_bits_per_float = num_bytes_per_float * 8;
3032//
3033// float_str.clear();
3034// uint32_t i;
3035// for (i=0; i<count; i++)
3036// {
3037// APInt ap_int(num_bits_per_float, bytes + i * num_bytes_per_float, (APInt::ByteOrder)apint_byte_order);
3038// bool is_ieee = false;
3039// APFloat ap_float(ap_int, is_ieee);
3040// char s[1024];
3041// unsigned int hex_digits = 0;
3042// bool upper_case = false;
3043//
3044// if (ap_float.convertToHexString(s, hex_digits, upper_case, APFloat::rmNearestTiesToEven) > 0)
3045// {
3046// if (i > 0)
3047// float_str.append(", ");
3048// float_str.append(s);
3049// if (i == 1 && is_complex)
3050// float_str.append(1, 'i');
3051// }
3052// }
3053// return !float_str.empty();
3054// }
3055// return false;
3056//}
3057
3058size_t
3059ClangASTContext::ConvertStringToFloatValue (ASTContext *ast_context, void *clang_type, const char *s, uint8_t *dst, size_t dst_size)
3060{
3061 if (clang_type)
3062 {
3063 QualType qual_type (QualType::getFromOpaquePtr(clang_type));
3064 uint32_t count = 0;
3065 bool is_complex = false;
3066 if (ClangASTContext::IsFloatingPointType (clang_type, count, is_complex))
3067 {
3068 // TODO: handle complex and vector types
3069 if (count != 1)
3070 return false;
3071
3072 StringRef s_sref(s);
3073 APFloat ap_float(ast_context->getFloatTypeSemantics(qual_type), s_sref);
3074
3075 const uint64_t bit_size = ast_context->getTypeSize (qual_type);
3076 const uint64_t byte_size = bit_size / 8;
3077 if (dst_size >= byte_size)
3078 {
3079 if (bit_size == sizeof(float)*8)
3080 {
3081 float float32 = ap_float.convertToFloat();
3082 ::memcpy (dst, &float32, byte_size);
3083 return byte_size;
3084 }
3085 else if (bit_size >= 64)
3086 {
3087 llvm::APInt ap_int(ap_float.bitcastToAPInt());
3088 ::memcpy (dst, ap_int.getRawData(), byte_size);
3089 return byte_size;
3090 }
3091 }
3092 }
3093 }
3094 return 0;
3095}