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