1 //===--- SemaAttr.cpp - Semantic Analysis for Attributes ------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file implements semantic analysis for non-trivial attributes and
10 // pragmas.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "clang/AST/ASTConsumer.h"
15 #include "clang/AST/Attr.h"
16 #include "clang/AST/Expr.h"
17 #include "clang/Basic/TargetInfo.h"
18 #include "clang/Lex/Preprocessor.h"
19 #include "clang/Sema/Lookup.h"
20 #include "clang/Sema/SemaInternal.h"
21 using namespace clang;
22 
23 //===----------------------------------------------------------------------===//
24 // Pragma 'pack' and 'options align'
25 //===----------------------------------------------------------------------===//
26 
27 Sema::PragmaStackSentinelRAII::PragmaStackSentinelRAII(Sema &S,
28                                                        StringRef SlotLabel,
29                                                        bool ShouldAct)
30     : S(S), SlotLabel(SlotLabel), ShouldAct(ShouldAct) {
31   if (ShouldAct) {
32     S.VtorDispStack.SentinelAction(PSK_Push, SlotLabel);
33     S.DataSegStack.SentinelAction(PSK_Push, SlotLabel);
34     S.BSSSegStack.SentinelAction(PSK_Push, SlotLabel);
35     S.ConstSegStack.SentinelAction(PSK_Push, SlotLabel);
36     S.CodeSegStack.SentinelAction(PSK_Push, SlotLabel);
37   }
38 }
39 
40 Sema::PragmaStackSentinelRAII::~PragmaStackSentinelRAII() {
41   if (ShouldAct) {
42     S.VtorDispStack.SentinelAction(PSK_Pop, SlotLabel);
43     S.DataSegStack.SentinelAction(PSK_Pop, SlotLabel);
44     S.BSSSegStack.SentinelAction(PSK_Pop, SlotLabel);
45     S.ConstSegStack.SentinelAction(PSK_Pop, SlotLabel);
46     S.CodeSegStack.SentinelAction(PSK_Pop, SlotLabel);
47   }
48 }
49 
50 void Sema::AddAlignmentAttributesForRecord(RecordDecl *RD) {
51   // If there is no pack value, we don't need any attributes.
52   if (!PackStack.CurrentValue)
53     return;
54 
55   // Otherwise, check to see if we need a max field alignment attribute.
56   if (unsigned Alignment = PackStack.CurrentValue) {
57     if (Alignment == Sema::kMac68kAlignmentSentinel)
58       RD->addAttr(AlignMac68kAttr::CreateImplicit(Context));
59     else
60       RD->addAttr(MaxFieldAlignmentAttr::CreateImplicit(Context,
61                                                         Alignment * 8));
62   }
63   if (PackIncludeStack.empty())
64     return;
65   // The #pragma pack affected a record in an included file,  so Clang should
66   // warn when that pragma was written in a file that included the included
67   // file.
68   for (auto &PackedInclude : llvm::reverse(PackIncludeStack)) {
69     if (PackedInclude.CurrentPragmaLocation != PackStack.CurrentPragmaLocation)
70       break;
71     if (PackedInclude.HasNonDefaultValue)
72       PackedInclude.ShouldWarnOnInclude = true;
73   }
74 }
75 
76 void Sema::AddMsStructLayoutForRecord(RecordDecl *RD) {
77   if (MSStructPragmaOn)
78     RD->addAttr(MSStructAttr::CreateImplicit(Context));
79 
80   // FIXME: We should merge AddAlignmentAttributesForRecord with
81   // AddMsStructLayoutForRecord into AddPragmaAttributesForRecord, which takes
82   // all active pragmas and applies them as attributes to class definitions.
83   if (VtorDispStack.CurrentValue != getLangOpts().getVtorDispMode())
84     RD->addAttr(MSVtorDispAttr::CreateImplicit(
85         Context, unsigned(VtorDispStack.CurrentValue)));
86 }
87 
88 template <typename Attribute>
89 static void addGslOwnerPointerAttributeIfNotExisting(ASTContext &Context,
90                                                      CXXRecordDecl *Record) {
91   if (Record->hasAttr<OwnerAttr>() || Record->hasAttr<PointerAttr>())
92     return;
93 
94   for (Decl *Redecl : Record->redecls())
95     Redecl->addAttr(Attribute::CreateImplicit(Context, /*DerefType=*/nullptr));
96 }
97 
98 void Sema::inferGslPointerAttribute(NamedDecl *ND,
99                                     CXXRecordDecl *UnderlyingRecord) {
100   if (!UnderlyingRecord)
101     return;
102 
103   const auto *Parent = dyn_cast<CXXRecordDecl>(ND->getDeclContext());
104   if (!Parent)
105     return;
106 
107   static llvm::StringSet<> Containers{
108       "array",
109       "basic_string",
110       "deque",
111       "forward_list",
112       "vector",
113       "list",
114       "map",
115       "multiset",
116       "multimap",
117       "priority_queue",
118       "queue",
119       "set",
120       "stack",
121       "unordered_set",
122       "unordered_map",
123       "unordered_multiset",
124       "unordered_multimap",
125   };
126 
127   static llvm::StringSet<> Iterators{"iterator", "const_iterator",
128                                      "reverse_iterator",
129                                      "const_reverse_iterator"};
130 
131   if (Parent->isInStdNamespace() && Iterators.count(ND->getName()) &&
132       Containers.count(Parent->getName()))
133     addGslOwnerPointerAttributeIfNotExisting<PointerAttr>(Context,
134                                                           UnderlyingRecord);
135 }
136 
137 void Sema::inferGslPointerAttribute(TypedefNameDecl *TD) {
138 
139   QualType Canonical = TD->getUnderlyingType().getCanonicalType();
140 
141   CXXRecordDecl *RD = Canonical->getAsCXXRecordDecl();
142   if (!RD) {
143     if (auto *TST =
144             dyn_cast<TemplateSpecializationType>(Canonical.getTypePtr())) {
145 
146       RD = dyn_cast_or_null<CXXRecordDecl>(
147           TST->getTemplateName().getAsTemplateDecl()->getTemplatedDecl());
148     }
149   }
150 
151   inferGslPointerAttribute(TD, RD);
152 }
153 
154 void Sema::inferGslOwnerPointerAttribute(CXXRecordDecl *Record) {
155   static llvm::StringSet<> StdOwners{
156       "any",
157       "array",
158       "basic_regex",
159       "basic_string",
160       "deque",
161       "forward_list",
162       "vector",
163       "list",
164       "map",
165       "multiset",
166       "multimap",
167       "optional",
168       "priority_queue",
169       "queue",
170       "set",
171       "stack",
172       "unique_ptr",
173       "unordered_set",
174       "unordered_map",
175       "unordered_multiset",
176       "unordered_multimap",
177       "variant",
178   };
179   static llvm::StringSet<> StdPointers{
180       "basic_string_view",
181       "reference_wrapper",
182       "regex_iterator",
183   };
184 
185   if (!Record->getIdentifier())
186     return;
187 
188   // Handle classes that directly appear in std namespace.
189   if (Record->isInStdNamespace()) {
190     if (Record->hasAttr<OwnerAttr>() || Record->hasAttr<PointerAttr>())
191       return;
192 
193     if (StdOwners.count(Record->getName()))
194       addGslOwnerPointerAttributeIfNotExisting<OwnerAttr>(Context, Record);
195     else if (StdPointers.count(Record->getName()))
196       addGslOwnerPointerAttributeIfNotExisting<PointerAttr>(Context, Record);
197 
198     return;
199   }
200 
201   // Handle nested classes that could be a gsl::Pointer.
202   inferGslPointerAttribute(Record, Record);
203 }
204 
205 void Sema::ActOnPragmaOptionsAlign(PragmaOptionsAlignKind Kind,
206                                    SourceLocation PragmaLoc) {
207   PragmaMsStackAction Action = Sema::PSK_Reset;
208   unsigned Alignment = 0;
209   switch (Kind) {
210     // For all targets we support native and natural are the same.
211     //
212     // FIXME: This is not true on Darwin/PPC.
213   case POAK_Native:
214   case POAK_Power:
215   case POAK_Natural:
216     Action = Sema::PSK_Push_Set;
217     Alignment = 0;
218     break;
219 
220     // Note that '#pragma options align=packed' is not equivalent to attribute
221     // packed, it has a different precedence relative to attribute aligned.
222   case POAK_Packed:
223     Action = Sema::PSK_Push_Set;
224     Alignment = 1;
225     break;
226 
227   case POAK_Mac68k:
228     // Check if the target supports this.
229     if (!this->Context.getTargetInfo().hasAlignMac68kSupport()) {
230       Diag(PragmaLoc, diag::err_pragma_options_align_mac68k_target_unsupported);
231       return;
232     }
233     Action = Sema::PSK_Push_Set;
234     Alignment = Sema::kMac68kAlignmentSentinel;
235     break;
236 
237   case POAK_Reset:
238     // Reset just pops the top of the stack, or resets the current alignment to
239     // default.
240     Action = Sema::PSK_Pop;
241     if (PackStack.Stack.empty()) {
242       if (PackStack.CurrentValue) {
243         Action = Sema::PSK_Reset;
244       } else {
245         Diag(PragmaLoc, diag::warn_pragma_options_align_reset_failed)
246             << "stack empty";
247         return;
248       }
249     }
250     break;
251   }
252 
253   PackStack.Act(PragmaLoc, Action, StringRef(), Alignment);
254 }
255 
256 void Sema::ActOnPragmaClangSection(SourceLocation PragmaLoc, PragmaClangSectionAction Action,
257                                    PragmaClangSectionKind SecKind, StringRef SecName) {
258   PragmaClangSection *CSec;
259   int SectionFlags = ASTContext::PSF_Read;
260   switch (SecKind) {
261     case PragmaClangSectionKind::PCSK_BSS:
262       CSec = &PragmaClangBSSSection;
263       SectionFlags |= ASTContext::PSF_Write | ASTContext::PSF_ZeroInit;
264       break;
265     case PragmaClangSectionKind::PCSK_Data:
266       CSec = &PragmaClangDataSection;
267       SectionFlags |= ASTContext::PSF_Write;
268       break;
269     case PragmaClangSectionKind::PCSK_Rodata:
270       CSec = &PragmaClangRodataSection;
271       break;
272     case PragmaClangSectionKind::PCSK_Relro:
273       CSec = &PragmaClangRelroSection;
274       break;
275     case PragmaClangSectionKind::PCSK_Text:
276       CSec = &PragmaClangTextSection;
277       SectionFlags |= ASTContext::PSF_Execute;
278       break;
279     default:
280       llvm_unreachable("invalid clang section kind");
281   }
282 
283   if (Action == PragmaClangSectionAction::PCSA_Clear) {
284     CSec->Valid = false;
285     return;
286   }
287 
288   if (UnifySection(SecName, SectionFlags, PragmaLoc))
289     return;
290 
291   CSec->Valid = true;
292   CSec->SectionName = std::string(SecName);
293   CSec->PragmaLocation = PragmaLoc;
294 }
295 
296 void Sema::ActOnPragmaPack(SourceLocation PragmaLoc, PragmaMsStackAction Action,
297                            StringRef SlotLabel, Expr *alignment) {
298   Expr *Alignment = static_cast<Expr *>(alignment);
299 
300   // If specified then alignment must be a "small" power of two.
301   unsigned AlignmentVal = 0;
302   if (Alignment) {
303     llvm::APSInt Val;
304 
305     // pack(0) is like pack(), which just works out since that is what
306     // we use 0 for in PackAttr.
307     if (Alignment->isTypeDependent() ||
308         Alignment->isValueDependent() ||
309         !Alignment->isIntegerConstantExpr(Val, Context) ||
310         !(Val == 0 || Val.isPowerOf2()) ||
311         Val.getZExtValue() > 16) {
312       Diag(PragmaLoc, diag::warn_pragma_pack_invalid_alignment);
313       return; // Ignore
314     }
315 
316     AlignmentVal = (unsigned) Val.getZExtValue();
317   }
318   if (Action == Sema::PSK_Show) {
319     // Show the current alignment, making sure to show the right value
320     // for the default.
321     // FIXME: This should come from the target.
322     AlignmentVal = PackStack.CurrentValue;
323     if (AlignmentVal == 0)
324       AlignmentVal = 8;
325     if (AlignmentVal == Sema::kMac68kAlignmentSentinel)
326       Diag(PragmaLoc, diag::warn_pragma_pack_show) << "mac68k";
327     else
328       Diag(PragmaLoc, diag::warn_pragma_pack_show) << AlignmentVal;
329   }
330   // MSDN, C/C++ Preprocessor Reference > Pragma Directives > pack:
331   // "#pragma pack(pop, identifier, n) is undefined"
332   if (Action & Sema::PSK_Pop) {
333     if (Alignment && !SlotLabel.empty())
334       Diag(PragmaLoc, diag::warn_pragma_pack_pop_identifier_and_alignment);
335     if (PackStack.Stack.empty())
336       Diag(PragmaLoc, diag::warn_pragma_pop_failed) << "pack" << "stack empty";
337   }
338 
339   PackStack.Act(PragmaLoc, Action, SlotLabel, AlignmentVal);
340 }
341 
342 void Sema::DiagnoseNonDefaultPragmaPack(PragmaPackDiagnoseKind Kind,
343                                         SourceLocation IncludeLoc) {
344   if (Kind == PragmaPackDiagnoseKind::NonDefaultStateAtInclude) {
345     SourceLocation PrevLocation = PackStack.CurrentPragmaLocation;
346     // Warn about non-default alignment at #includes (without redundant
347     // warnings for the same directive in nested includes).
348     // The warning is delayed until the end of the file to avoid warnings
349     // for files that don't have any records that are affected by the modified
350     // alignment.
351     bool HasNonDefaultValue =
352         PackStack.hasValue() &&
353         (PackIncludeStack.empty() ||
354          PackIncludeStack.back().CurrentPragmaLocation != PrevLocation);
355     PackIncludeStack.push_back(
356         {PackStack.CurrentValue,
357          PackStack.hasValue() ? PrevLocation : SourceLocation(),
358          HasNonDefaultValue, /*ShouldWarnOnInclude*/ false});
359     return;
360   }
361 
362   assert(Kind == PragmaPackDiagnoseKind::ChangedStateAtExit && "invalid kind");
363   PackIncludeState PrevPackState = PackIncludeStack.pop_back_val();
364   if (PrevPackState.ShouldWarnOnInclude) {
365     // Emit the delayed non-default alignment at #include warning.
366     Diag(IncludeLoc, diag::warn_pragma_pack_non_default_at_include);
367     Diag(PrevPackState.CurrentPragmaLocation, diag::note_pragma_pack_here);
368   }
369   // Warn about modified alignment after #includes.
370   if (PrevPackState.CurrentValue != PackStack.CurrentValue) {
371     Diag(IncludeLoc, diag::warn_pragma_pack_modified_after_include);
372     Diag(PackStack.CurrentPragmaLocation, diag::note_pragma_pack_here);
373   }
374 }
375 
376 void Sema::DiagnoseUnterminatedPragmaPack() {
377   if (PackStack.Stack.empty())
378     return;
379   bool IsInnermost = true;
380   for (const auto &StackSlot : llvm::reverse(PackStack.Stack)) {
381     Diag(StackSlot.PragmaPushLocation, diag::warn_pragma_pack_no_pop_eof);
382     // The user might have already reset the alignment, so suggest replacing
383     // the reset with a pop.
384     if (IsInnermost && PackStack.CurrentValue == PackStack.DefaultValue) {
385       DiagnosticBuilder DB = Diag(PackStack.CurrentPragmaLocation,
386                                   diag::note_pragma_pack_pop_instead_reset);
387       SourceLocation FixItLoc = Lexer::findLocationAfterToken(
388           PackStack.CurrentPragmaLocation, tok::l_paren, SourceMgr, LangOpts,
389           /*SkipTrailing=*/false);
390       if (FixItLoc.isValid())
391         DB << FixItHint::CreateInsertion(FixItLoc, "pop");
392     }
393     IsInnermost = false;
394   }
395 }
396 
397 void Sema::ActOnPragmaMSStruct(PragmaMSStructKind Kind) {
398   MSStructPragmaOn = (Kind == PMSST_ON);
399 }
400 
401 void Sema::ActOnPragmaMSComment(SourceLocation CommentLoc,
402                                 PragmaMSCommentKind Kind, StringRef Arg) {
403   auto *PCD = PragmaCommentDecl::Create(
404       Context, Context.getTranslationUnitDecl(), CommentLoc, Kind, Arg);
405   Context.getTranslationUnitDecl()->addDecl(PCD);
406   Consumer.HandleTopLevelDecl(DeclGroupRef(PCD));
407 }
408 
409 void Sema::ActOnPragmaDetectMismatch(SourceLocation Loc, StringRef Name,
410                                      StringRef Value) {
411   auto *PDMD = PragmaDetectMismatchDecl::Create(
412       Context, Context.getTranslationUnitDecl(), Loc, Name, Value);
413   Context.getTranslationUnitDecl()->addDecl(PDMD);
414   Consumer.HandleTopLevelDecl(DeclGroupRef(PDMD));
415 }
416 
417 void Sema::ActOnPragmaFloatControl(SourceLocation Loc,
418                                    PragmaMsStackAction Action,
419                                    PragmaFloatControlKind Value) {
420   auto NewValue = FpPragmaStack.CurrentValue;
421   FPOptions NewFPFeatures(NewValue);
422   if ((Action == PSK_Push_Set || Action == PSK_Push || Action == PSK_Pop) &&
423       !(CurContext->isTranslationUnit()) && !CurContext->isNamespace()) {
424     // Push and pop can only occur at file or namespace scope.
425     Diag(Loc, diag::err_pragma_fc_pp_scope);
426     return;
427   }
428   switch (Value) {
429   default:
430     llvm_unreachable("invalid pragma float_control kind");
431   case PFC_Precise:
432     CurFPFeatures.setFPPreciseEnabled(true);
433     NewValue = CurFPFeatures.getAsOpaqueInt();
434     FpPragmaStack.Act(Loc, Action, StringRef(), NewValue);
435     break;
436   case PFC_NoPrecise:
437     if (CurFPFeatures.getExceptionMode() == LangOptions::FPE_Strict)
438       Diag(Loc, diag::err_pragma_fc_noprecise_requires_noexcept);
439     else if (CurFPFeatures.allowFEnvAccess())
440       Diag(Loc, diag::err_pragma_fc_noprecise_requires_nofenv);
441     else
442       CurFPFeatures.setFPPreciseEnabled(false);
443     NewValue = CurFPFeatures.getAsOpaqueInt();
444     FpPragmaStack.Act(Loc, Action, StringRef(), NewValue);
445     break;
446   case PFC_Except:
447     if (!isPreciseFPEnabled())
448       Diag(Loc, diag::err_pragma_fc_except_requires_precise);
449     else
450       CurFPFeatures.setExceptionMode(LangOptions::FPE_Strict);
451     NewValue = CurFPFeatures.getAsOpaqueInt();
452     FpPragmaStack.Act(Loc, Action, StringRef(), NewValue);
453     break;
454   case PFC_NoExcept:
455     CurFPFeatures.setExceptionMode(LangOptions::FPE_Ignore);
456     NewValue = CurFPFeatures.getAsOpaqueInt();
457     FpPragmaStack.Act(Loc, Action, StringRef(), NewValue);
458     break;
459   case PFC_Push:
460     if (FpPragmaStack.Stack.empty()) {
461       FpPragmaStack.Act(Loc, Sema::PSK_Set, StringRef(),
462                         CurFPFeatures.getAsOpaqueInt());
463     }
464     FpPragmaStack.Act(Loc, Sema::PSK_Push_Set, StringRef(),
465                       NewFPFeatures.getAsOpaqueInt());
466     break;
467   case PFC_Pop:
468     if (FpPragmaStack.Stack.empty()) {
469       Diag(Loc, diag::warn_pragma_pop_failed) << "float_control"
470                                               << "stack empty";
471       return;
472     }
473     FpPragmaStack.Act(Loc, Action, StringRef(), NewFPFeatures.getAsOpaqueInt());
474     NewValue = FpPragmaStack.CurrentValue;
475     CurFPFeatures.getFromOpaqueInt(NewValue);
476     break;
477   }
478 }
479 
480 void Sema::ActOnPragmaMSPointersToMembers(
481     LangOptions::PragmaMSPointersToMembersKind RepresentationMethod,
482     SourceLocation PragmaLoc) {
483   MSPointerToMemberRepresentationMethod = RepresentationMethod;
484   ImplicitMSInheritanceAttrLoc = PragmaLoc;
485 }
486 
487 void Sema::ActOnPragmaMSVtorDisp(PragmaMsStackAction Action,
488                                  SourceLocation PragmaLoc,
489                                  MSVtorDispMode Mode) {
490   if (Action & PSK_Pop && VtorDispStack.Stack.empty())
491     Diag(PragmaLoc, diag::warn_pragma_pop_failed) << "vtordisp"
492                                                   << "stack empty";
493   VtorDispStack.Act(PragmaLoc, Action, StringRef(), Mode);
494 }
495 
496 template<typename ValueType>
497 void Sema::PragmaStack<ValueType>::Act(SourceLocation PragmaLocation,
498                                        PragmaMsStackAction Action,
499                                        llvm::StringRef StackSlotLabel,
500                                        ValueType Value) {
501   if (Action == PSK_Reset) {
502     CurrentValue = DefaultValue;
503     CurrentPragmaLocation = PragmaLocation;
504     return;
505   }
506   if (Action & PSK_Push)
507     Stack.emplace_back(StackSlotLabel, CurrentValue, CurrentPragmaLocation,
508                        PragmaLocation);
509   else if (Action & PSK_Pop) {
510     if (!StackSlotLabel.empty()) {
511       // If we've got a label, try to find it and jump there.
512       auto I = llvm::find_if(llvm::reverse(Stack), [&](const Slot &x) {
513         return x.StackSlotLabel == StackSlotLabel;
514       });
515       // If we found the label so pop from there.
516       if (I != Stack.rend()) {
517         CurrentValue = I->Value;
518         CurrentPragmaLocation = I->PragmaLocation;
519         Stack.erase(std::prev(I.base()), Stack.end());
520       }
521     } else if (!Stack.empty()) {
522       // We do not have a label, just pop the last entry.
523       CurrentValue = Stack.back().Value;
524       CurrentPragmaLocation = Stack.back().PragmaLocation;
525       Stack.pop_back();
526     }
527   }
528   if (Action & PSK_Set) {
529     CurrentValue = Value;
530     CurrentPragmaLocation = PragmaLocation;
531   }
532 }
533 
534 bool Sema::UnifySection(StringRef SectionName,
535                         int SectionFlags,
536                         DeclaratorDecl *Decl) {
537   SourceLocation PragmaLocation;
538   if (auto A = Decl->getAttr<SectionAttr>())
539     if (A->isImplicit())
540       PragmaLocation = A->getLocation();
541   auto SectionIt = Context.SectionInfos.find(SectionName);
542   if (SectionIt == Context.SectionInfos.end()) {
543     Context.SectionInfos[SectionName] =
544         ASTContext::SectionInfo(Decl, PragmaLocation, SectionFlags);
545     return false;
546   }
547   // A pre-declared section takes precedence w/o diagnostic.
548   const auto &Section = SectionIt->second;
549   if (Section.SectionFlags == SectionFlags ||
550       ((SectionFlags & ASTContext::PSF_Implicit) &&
551        !(Section.SectionFlags & ASTContext::PSF_Implicit)))
552     return false;
553   Diag(Decl->getLocation(), diag::err_section_conflict) << Decl << Section;
554   if (Section.Decl)
555     Diag(Section.Decl->getLocation(), diag::note_declared_at)
556         << Section.Decl->getName();
557   if (PragmaLocation.isValid())
558     Diag(PragmaLocation, diag::note_pragma_entered_here);
559   if (Section.PragmaSectionLocation.isValid())
560     Diag(Section.PragmaSectionLocation, diag::note_pragma_entered_here);
561   return true;
562 }
563 
564 bool Sema::UnifySection(StringRef SectionName,
565                         int SectionFlags,
566                         SourceLocation PragmaSectionLocation) {
567   auto SectionIt = Context.SectionInfos.find(SectionName);
568   if (SectionIt != Context.SectionInfos.end()) {
569     const auto &Section = SectionIt->second;
570     if (Section.SectionFlags == SectionFlags)
571       return false;
572     if (!(Section.SectionFlags & ASTContext::PSF_Implicit)) {
573       Diag(PragmaSectionLocation, diag::err_section_conflict)
574           << "this" << Section;
575       if (Section.Decl)
576         Diag(Section.Decl->getLocation(), diag::note_declared_at)
577             << Section.Decl->getName();
578       if (Section.PragmaSectionLocation.isValid())
579         Diag(Section.PragmaSectionLocation, diag::note_pragma_entered_here);
580       return true;
581     }
582   }
583   Context.SectionInfos[SectionName] =
584       ASTContext::SectionInfo(nullptr, PragmaSectionLocation, SectionFlags);
585   return false;
586 }
587 
588 /// Called on well formed \#pragma bss_seg().
589 void Sema::ActOnPragmaMSSeg(SourceLocation PragmaLocation,
590                             PragmaMsStackAction Action,
591                             llvm::StringRef StackSlotLabel,
592                             StringLiteral *SegmentName,
593                             llvm::StringRef PragmaName) {
594   PragmaStack<StringLiteral *> *Stack =
595     llvm::StringSwitch<PragmaStack<StringLiteral *> *>(PragmaName)
596         .Case("data_seg", &DataSegStack)
597         .Case("bss_seg", &BSSSegStack)
598         .Case("const_seg", &ConstSegStack)
599         .Case("code_seg", &CodeSegStack);
600   if (Action & PSK_Pop && Stack->Stack.empty())
601     Diag(PragmaLocation, diag::warn_pragma_pop_failed) << PragmaName
602         << "stack empty";
603   if (SegmentName) {
604     if (!checkSectionName(SegmentName->getBeginLoc(), SegmentName->getString()))
605       return;
606 
607     if (SegmentName->getString() == ".drectve" &&
608         Context.getTargetInfo().getCXXABI().isMicrosoft())
609       Diag(PragmaLocation, diag::warn_attribute_section_drectve) << PragmaName;
610   }
611 
612   Stack->Act(PragmaLocation, Action, StackSlotLabel, SegmentName);
613 }
614 
615 /// Called on well formed \#pragma bss_seg().
616 void Sema::ActOnPragmaMSSection(SourceLocation PragmaLocation,
617                                 int SectionFlags, StringLiteral *SegmentName) {
618   UnifySection(SegmentName->getString(), SectionFlags, PragmaLocation);
619 }
620 
621 void Sema::ActOnPragmaMSInitSeg(SourceLocation PragmaLocation,
622                                 StringLiteral *SegmentName) {
623   // There's no stack to maintain, so we just have a current section.  When we
624   // see the default section, reset our current section back to null so we stop
625   // tacking on unnecessary attributes.
626   CurInitSeg = SegmentName->getString() == ".CRT$XCU" ? nullptr : SegmentName;
627   CurInitSegLoc = PragmaLocation;
628 }
629 
630 void Sema::ActOnPragmaUnused(const Token &IdTok, Scope *curScope,
631                              SourceLocation PragmaLoc) {
632 
633   IdentifierInfo *Name = IdTok.getIdentifierInfo();
634   LookupResult Lookup(*this, Name, IdTok.getLocation(), LookupOrdinaryName);
635   LookupParsedName(Lookup, curScope, nullptr, true);
636 
637   if (Lookup.empty()) {
638     Diag(PragmaLoc, diag::warn_pragma_unused_undeclared_var)
639       << Name << SourceRange(IdTok.getLocation());
640     return;
641   }
642 
643   VarDecl *VD = Lookup.getAsSingle<VarDecl>();
644   if (!VD) {
645     Diag(PragmaLoc, diag::warn_pragma_unused_expected_var_arg)
646       << Name << SourceRange(IdTok.getLocation());
647     return;
648   }
649 
650   // Warn if this was used before being marked unused.
651   if (VD->isUsed())
652     Diag(PragmaLoc, diag::warn_used_but_marked_unused) << Name;
653 
654   VD->addAttr(UnusedAttr::CreateImplicit(Context, IdTok.getLocation(),
655                                          AttributeCommonInfo::AS_Pragma,
656                                          UnusedAttr::GNU_unused));
657 }
658 
659 void Sema::AddCFAuditedAttribute(Decl *D) {
660   IdentifierInfo *Ident;
661   SourceLocation Loc;
662   std::tie(Ident, Loc) = PP.getPragmaARCCFCodeAuditedInfo();
663   if (!Loc.isValid()) return;
664 
665   // Don't add a redundant or conflicting attribute.
666   if (D->hasAttr<CFAuditedTransferAttr>() ||
667       D->hasAttr<CFUnknownTransferAttr>())
668     return;
669 
670   AttributeCommonInfo Info(Ident, SourceRange(Loc),
671                            AttributeCommonInfo::AS_Pragma);
672   D->addAttr(CFAuditedTransferAttr::CreateImplicit(Context, Info));
673 }
674 
675 namespace {
676 
677 Optional<attr::SubjectMatchRule>
678 getParentAttrMatcherRule(attr::SubjectMatchRule Rule) {
679   using namespace attr;
680   switch (Rule) {
681   default:
682     return None;
683 #define ATTR_MATCH_RULE(Value, Spelling, IsAbstract)
684 #define ATTR_MATCH_SUB_RULE(Value, Spelling, IsAbstract, Parent, IsNegated)    \
685   case Value:                                                                  \
686     return Parent;
687 #include "clang/Basic/AttrSubMatchRulesList.inc"
688   }
689 }
690 
691 bool isNegatedAttrMatcherSubRule(attr::SubjectMatchRule Rule) {
692   using namespace attr;
693   switch (Rule) {
694   default:
695     return false;
696 #define ATTR_MATCH_RULE(Value, Spelling, IsAbstract)
697 #define ATTR_MATCH_SUB_RULE(Value, Spelling, IsAbstract, Parent, IsNegated)    \
698   case Value:                                                                  \
699     return IsNegated;
700 #include "clang/Basic/AttrSubMatchRulesList.inc"
701   }
702 }
703 
704 CharSourceRange replacementRangeForListElement(const Sema &S,
705                                                SourceRange Range) {
706   // Make sure that the ',' is removed as well.
707   SourceLocation AfterCommaLoc = Lexer::findLocationAfterToken(
708       Range.getEnd(), tok::comma, S.getSourceManager(), S.getLangOpts(),
709       /*SkipTrailingWhitespaceAndNewLine=*/false);
710   if (AfterCommaLoc.isValid())
711     return CharSourceRange::getCharRange(Range.getBegin(), AfterCommaLoc);
712   else
713     return CharSourceRange::getTokenRange(Range);
714 }
715 
716 std::string
717 attrMatcherRuleListToString(ArrayRef<attr::SubjectMatchRule> Rules) {
718   std::string Result;
719   llvm::raw_string_ostream OS(Result);
720   for (const auto &I : llvm::enumerate(Rules)) {
721     if (I.index())
722       OS << (I.index() == Rules.size() - 1 ? ", and " : ", ");
723     OS << "'" << attr::getSubjectMatchRuleSpelling(I.value()) << "'";
724   }
725   return OS.str();
726 }
727 
728 } // end anonymous namespace
729 
730 void Sema::ActOnPragmaAttributeAttribute(
731     ParsedAttr &Attribute, SourceLocation PragmaLoc,
732     attr::ParsedSubjectMatchRuleSet Rules) {
733   Attribute.setIsPragmaClangAttribute();
734   SmallVector<attr::SubjectMatchRule, 4> SubjectMatchRules;
735   // Gather the subject match rules that are supported by the attribute.
736   SmallVector<std::pair<attr::SubjectMatchRule, bool>, 4>
737       StrictSubjectMatchRuleSet;
738   Attribute.getMatchRules(LangOpts, StrictSubjectMatchRuleSet);
739 
740   // Figure out which subject matching rules are valid.
741   if (StrictSubjectMatchRuleSet.empty()) {
742     // Check for contradicting match rules. Contradicting match rules are
743     // either:
744     //  - a top-level rule and one of its sub-rules. E.g. variable and
745     //    variable(is_parameter).
746     //  - a sub-rule and a sibling that's negated. E.g.
747     //    variable(is_thread_local) and variable(unless(is_parameter))
748     llvm::SmallDenseMap<int, std::pair<int, SourceRange>, 2>
749         RulesToFirstSpecifiedNegatedSubRule;
750     for (const auto &Rule : Rules) {
751       attr::SubjectMatchRule MatchRule = attr::SubjectMatchRule(Rule.first);
752       Optional<attr::SubjectMatchRule> ParentRule =
753           getParentAttrMatcherRule(MatchRule);
754       if (!ParentRule)
755         continue;
756       auto It = Rules.find(*ParentRule);
757       if (It != Rules.end()) {
758         // A sub-rule contradicts a parent rule.
759         Diag(Rule.second.getBegin(),
760              diag::err_pragma_attribute_matcher_subrule_contradicts_rule)
761             << attr::getSubjectMatchRuleSpelling(MatchRule)
762             << attr::getSubjectMatchRuleSpelling(*ParentRule) << It->second
763             << FixItHint::CreateRemoval(
764                    replacementRangeForListElement(*this, Rule.second));
765         // Keep going without removing this rule as it won't change the set of
766         // declarations that receive the attribute.
767         continue;
768       }
769       if (isNegatedAttrMatcherSubRule(MatchRule))
770         RulesToFirstSpecifiedNegatedSubRule.insert(
771             std::make_pair(*ParentRule, Rule));
772     }
773     bool IgnoreNegatedSubRules = false;
774     for (const auto &Rule : Rules) {
775       attr::SubjectMatchRule MatchRule = attr::SubjectMatchRule(Rule.first);
776       Optional<attr::SubjectMatchRule> ParentRule =
777           getParentAttrMatcherRule(MatchRule);
778       if (!ParentRule)
779         continue;
780       auto It = RulesToFirstSpecifiedNegatedSubRule.find(*ParentRule);
781       if (It != RulesToFirstSpecifiedNegatedSubRule.end() &&
782           It->second != Rule) {
783         // Negated sub-rule contradicts another sub-rule.
784         Diag(
785             It->second.second.getBegin(),
786             diag::
787                 err_pragma_attribute_matcher_negated_subrule_contradicts_subrule)
788             << attr::getSubjectMatchRuleSpelling(
789                    attr::SubjectMatchRule(It->second.first))
790             << attr::getSubjectMatchRuleSpelling(MatchRule) << Rule.second
791             << FixItHint::CreateRemoval(
792                    replacementRangeForListElement(*this, It->second.second));
793         // Keep going but ignore all of the negated sub-rules.
794         IgnoreNegatedSubRules = true;
795         RulesToFirstSpecifiedNegatedSubRule.erase(It);
796       }
797     }
798 
799     if (!IgnoreNegatedSubRules) {
800       for (const auto &Rule : Rules)
801         SubjectMatchRules.push_back(attr::SubjectMatchRule(Rule.first));
802     } else {
803       for (const auto &Rule : Rules) {
804         if (!isNegatedAttrMatcherSubRule(attr::SubjectMatchRule(Rule.first)))
805           SubjectMatchRules.push_back(attr::SubjectMatchRule(Rule.first));
806       }
807     }
808     Rules.clear();
809   } else {
810     for (const auto &Rule : StrictSubjectMatchRuleSet) {
811       if (Rules.erase(Rule.first)) {
812         // Add the rule to the set of attribute receivers only if it's supported
813         // in the current language mode.
814         if (Rule.second)
815           SubjectMatchRules.push_back(Rule.first);
816       }
817     }
818   }
819 
820   if (!Rules.empty()) {
821     auto Diagnostic =
822         Diag(PragmaLoc, diag::err_pragma_attribute_invalid_matchers)
823         << Attribute;
824     SmallVector<attr::SubjectMatchRule, 2> ExtraRules;
825     for (const auto &Rule : Rules) {
826       ExtraRules.push_back(attr::SubjectMatchRule(Rule.first));
827       Diagnostic << FixItHint::CreateRemoval(
828           replacementRangeForListElement(*this, Rule.second));
829     }
830     Diagnostic << attrMatcherRuleListToString(ExtraRules);
831   }
832 
833   if (PragmaAttributeStack.empty()) {
834     Diag(PragmaLoc, diag::err_pragma_attr_attr_no_push);
835     return;
836   }
837 
838   PragmaAttributeStack.back().Entries.push_back(
839       {PragmaLoc, &Attribute, std::move(SubjectMatchRules), /*IsUsed=*/false});
840 }
841 
842 void Sema::ActOnPragmaAttributeEmptyPush(SourceLocation PragmaLoc,
843                                          const IdentifierInfo *Namespace) {
844   PragmaAttributeStack.emplace_back();
845   PragmaAttributeStack.back().Loc = PragmaLoc;
846   PragmaAttributeStack.back().Namespace = Namespace;
847 }
848 
849 void Sema::ActOnPragmaAttributePop(SourceLocation PragmaLoc,
850                                    const IdentifierInfo *Namespace) {
851   if (PragmaAttributeStack.empty()) {
852     Diag(PragmaLoc, diag::err_pragma_attribute_stack_mismatch) << 1;
853     return;
854   }
855 
856   // Dig back through the stack trying to find the most recently pushed group
857   // that in Namespace. Note that this works fine if no namespace is present,
858   // think of push/pops without namespaces as having an implicit "nullptr"
859   // namespace.
860   for (size_t Index = PragmaAttributeStack.size(); Index;) {
861     --Index;
862     if (PragmaAttributeStack[Index].Namespace == Namespace) {
863       for (const PragmaAttributeEntry &Entry :
864            PragmaAttributeStack[Index].Entries) {
865         if (!Entry.IsUsed) {
866           assert(Entry.Attribute && "Expected an attribute");
867           Diag(Entry.Attribute->getLoc(), diag::warn_pragma_attribute_unused)
868               << *Entry.Attribute;
869           Diag(PragmaLoc, diag::note_pragma_attribute_region_ends_here);
870         }
871       }
872       PragmaAttributeStack.erase(PragmaAttributeStack.begin() + Index);
873       return;
874     }
875   }
876 
877   if (Namespace)
878     Diag(PragmaLoc, diag::err_pragma_attribute_stack_mismatch)
879         << 0 << Namespace->getName();
880   else
881     Diag(PragmaLoc, diag::err_pragma_attribute_stack_mismatch) << 1;
882 }
883 
884 void Sema::AddPragmaAttributes(Scope *S, Decl *D) {
885   if (PragmaAttributeStack.empty())
886     return;
887   for (auto &Group : PragmaAttributeStack) {
888     for (auto &Entry : Group.Entries) {
889       ParsedAttr *Attribute = Entry.Attribute;
890       assert(Attribute && "Expected an attribute");
891       assert(Attribute->isPragmaClangAttribute() &&
892              "expected #pragma clang attribute");
893 
894       // Ensure that the attribute can be applied to the given declaration.
895       bool Applies = false;
896       for (const auto &Rule : Entry.MatchRules) {
897         if (Attribute->appliesToDecl(D, Rule)) {
898           Applies = true;
899           break;
900         }
901       }
902       if (!Applies)
903         continue;
904       Entry.IsUsed = true;
905       PragmaAttributeCurrentTargetDecl = D;
906       ParsedAttributesView Attrs;
907       Attrs.addAtEnd(Attribute);
908       ProcessDeclAttributeList(S, D, Attrs);
909       PragmaAttributeCurrentTargetDecl = nullptr;
910     }
911   }
912 }
913 
914 void Sema::PrintPragmaAttributeInstantiationPoint() {
915   assert(PragmaAttributeCurrentTargetDecl && "Expected an active declaration");
916   Diags.Report(PragmaAttributeCurrentTargetDecl->getBeginLoc(),
917                diag::note_pragma_attribute_applied_decl_here);
918 }
919 
920 void Sema::DiagnoseUnterminatedPragmaAttribute() {
921   if (PragmaAttributeStack.empty())
922     return;
923   Diag(PragmaAttributeStack.back().Loc, diag::err_pragma_attribute_no_pop_eof);
924 }
925 
926 void Sema::ActOnPragmaOptimize(bool On, SourceLocation PragmaLoc) {
927   if(On)
928     OptimizeOffPragmaLocation = SourceLocation();
929   else
930     OptimizeOffPragmaLocation = PragmaLoc;
931 }
932 
933 void Sema::AddRangeBasedOptnone(FunctionDecl *FD) {
934   // In the future, check other pragmas if they're implemented (e.g. pragma
935   // optimize 0 will probably map to this functionality too).
936   if(OptimizeOffPragmaLocation.isValid())
937     AddOptnoneAttributeIfNoConflicts(FD, OptimizeOffPragmaLocation);
938 }
939 
940 void Sema::AddOptnoneAttributeIfNoConflicts(FunctionDecl *FD,
941                                             SourceLocation Loc) {
942   // Don't add a conflicting attribute. No diagnostic is needed.
943   if (FD->hasAttr<MinSizeAttr>() || FD->hasAttr<AlwaysInlineAttr>())
944     return;
945 
946   // Add attributes only if required. Optnone requires noinline as well, but if
947   // either is already present then don't bother adding them.
948   if (!FD->hasAttr<OptimizeNoneAttr>())
949     FD->addAttr(OptimizeNoneAttr::CreateImplicit(Context, Loc));
950   if (!FD->hasAttr<NoInlineAttr>())
951     FD->addAttr(NoInlineAttr::CreateImplicit(Context, Loc));
952 }
953 
954 typedef std::vector<std::pair<unsigned, SourceLocation> > VisStack;
955 enum : unsigned { NoVisibility = ~0U };
956 
957 void Sema::AddPushedVisibilityAttribute(Decl *D) {
958   if (!VisContext)
959     return;
960 
961   NamedDecl *ND = dyn_cast<NamedDecl>(D);
962   if (ND && ND->getExplicitVisibility(NamedDecl::VisibilityForValue))
963     return;
964 
965   VisStack *Stack = static_cast<VisStack*>(VisContext);
966   unsigned rawType = Stack->back().first;
967   if (rawType == NoVisibility) return;
968 
969   VisibilityAttr::VisibilityType type
970     = (VisibilityAttr::VisibilityType) rawType;
971   SourceLocation loc = Stack->back().second;
972 
973   D->addAttr(VisibilityAttr::CreateImplicit(Context, type, loc));
974 }
975 
976 /// FreeVisContext - Deallocate and null out VisContext.
977 void Sema::FreeVisContext() {
978   delete static_cast<VisStack*>(VisContext);
979   VisContext = nullptr;
980 }
981 
982 static void PushPragmaVisibility(Sema &S, unsigned type, SourceLocation loc) {
983   // Put visibility on stack.
984   if (!S.VisContext)
985     S.VisContext = new VisStack;
986 
987   VisStack *Stack = static_cast<VisStack*>(S.VisContext);
988   Stack->push_back(std::make_pair(type, loc));
989 }
990 
991 void Sema::ActOnPragmaVisibility(const IdentifierInfo* VisType,
992                                  SourceLocation PragmaLoc) {
993   if (VisType) {
994     // Compute visibility to use.
995     VisibilityAttr::VisibilityType T;
996     if (!VisibilityAttr::ConvertStrToVisibilityType(VisType->getName(), T)) {
997       Diag(PragmaLoc, diag::warn_attribute_unknown_visibility) << VisType;
998       return;
999     }
1000     PushPragmaVisibility(*this, T, PragmaLoc);
1001   } else {
1002     PopPragmaVisibility(false, PragmaLoc);
1003   }
1004 }
1005 
1006 void Sema::ActOnPragmaFPContract(LangOptions::FPModeKind FPC) {
1007   switch (FPC) {
1008   case LangOptions::FPM_On:
1009     CurFPFeatures.setAllowFPContractWithinStatement();
1010     break;
1011   case LangOptions::FPM_Fast:
1012     CurFPFeatures.setAllowFPContractAcrossStatement();
1013     break;
1014   case LangOptions::FPM_Off:
1015     CurFPFeatures.setDisallowFPContract();
1016     break;
1017   }
1018 }
1019 
1020 void Sema::ActOnPragmaFPReassociate(bool IsEnabled) {
1021   CurFPFeatures.setAllowAssociativeMath(IsEnabled);
1022 }
1023 
1024 void Sema::setRoundingMode(llvm::RoundingMode FPR) {
1025   CurFPFeatures.setRoundingMode(FPR);
1026 }
1027 
1028 void Sema::setExceptionMode(LangOptions::FPExceptionModeKind FPE) {
1029   CurFPFeatures.setExceptionMode(FPE);
1030 }
1031 
1032 void Sema::ActOnPragmaFEnvAccess(SourceLocation Loc, bool IsEnabled) {
1033   if (IsEnabled) {
1034     // Verify Microsoft restriction:
1035     // You can't enable fenv_access unless precise semantics are enabled.
1036     // Precise semantics can be enabled either by the float_control
1037     // pragma, or by using the /fp:precise or /fp:strict compiler options
1038     if (!isPreciseFPEnabled())
1039       Diag(Loc, diag::err_pragma_fenv_requires_precise);
1040     CurFPFeatures.setAllowFEnvAccess();
1041   } else
1042     CurFPFeatures.setDisallowFEnvAccess();
1043 }
1044 
1045 void Sema::PushNamespaceVisibilityAttr(const VisibilityAttr *Attr,
1046                                        SourceLocation Loc) {
1047   // Visibility calculations will consider the namespace's visibility.
1048   // Here we just want to note that we're in a visibility context
1049   // which overrides any enclosing #pragma context, but doesn't itself
1050   // contribute visibility.
1051   PushPragmaVisibility(*this, NoVisibility, Loc);
1052 }
1053 
1054 void Sema::PopPragmaVisibility(bool IsNamespaceEnd, SourceLocation EndLoc) {
1055   if (!VisContext) {
1056     Diag(EndLoc, diag::err_pragma_pop_visibility_mismatch);
1057     return;
1058   }
1059 
1060   // Pop visibility from stack
1061   VisStack *Stack = static_cast<VisStack*>(VisContext);
1062 
1063   const std::pair<unsigned, SourceLocation> *Back = &Stack->back();
1064   bool StartsWithPragma = Back->first != NoVisibility;
1065   if (StartsWithPragma && IsNamespaceEnd) {
1066     Diag(Back->second, diag::err_pragma_push_visibility_mismatch);
1067     Diag(EndLoc, diag::note_surrounding_namespace_ends_here);
1068 
1069     // For better error recovery, eat all pushes inside the namespace.
1070     do {
1071       Stack->pop_back();
1072       Back = &Stack->back();
1073       StartsWithPragma = Back->first != NoVisibility;
1074     } while (StartsWithPragma);
1075   } else if (!StartsWithPragma && !IsNamespaceEnd) {
1076     Diag(EndLoc, diag::err_pragma_pop_visibility_mismatch);
1077     Diag(Back->second, diag::note_surrounding_namespace_starts_here);
1078     return;
1079   }
1080 
1081   Stack->pop_back();
1082   // To simplify the implementation, never keep around an empty stack.
1083   if (Stack->empty())
1084     FreeVisContext();
1085 }
1086