10b57cec5SDimitry Andric //===--- SemaStmt.cpp - Semantic Analysis for Statements ------------------===// 20b57cec5SDimitry Andric // 30b57cec5SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 40b57cec5SDimitry Andric // See https://llvm.org/LICENSE.txt for license information. 50b57cec5SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 60b57cec5SDimitry Andric // 70b57cec5SDimitry Andric //===----------------------------------------------------------------------===// 80b57cec5SDimitry Andric // 90b57cec5SDimitry Andric // This file implements semantic analysis for statements. 100b57cec5SDimitry Andric // 110b57cec5SDimitry Andric //===----------------------------------------------------------------------===// 120b57cec5SDimitry Andric 130b57cec5SDimitry Andric #include "clang/Sema/Ownership.h" 140b57cec5SDimitry Andric #include "clang/Sema/SemaInternal.h" 150b57cec5SDimitry Andric #include "clang/AST/ASTContext.h" 160b57cec5SDimitry Andric #include "clang/AST/ASTDiagnostic.h" 170b57cec5SDimitry Andric #include "clang/AST/ASTLambda.h" 180b57cec5SDimitry Andric #include "clang/AST/CharUnits.h" 190b57cec5SDimitry Andric #include "clang/AST/CXXInheritance.h" 200b57cec5SDimitry Andric #include "clang/AST/DeclObjC.h" 210b57cec5SDimitry Andric #include "clang/AST/EvaluatedExprVisitor.h" 220b57cec5SDimitry Andric #include "clang/AST/ExprCXX.h" 230b57cec5SDimitry Andric #include "clang/AST/ExprObjC.h" 240b57cec5SDimitry Andric #include "clang/AST/RecursiveASTVisitor.h" 250b57cec5SDimitry Andric #include "clang/AST/StmtCXX.h" 260b57cec5SDimitry Andric #include "clang/AST/StmtObjC.h" 270b57cec5SDimitry Andric #include "clang/AST/TypeLoc.h" 280b57cec5SDimitry Andric #include "clang/AST/TypeOrdering.h" 290b57cec5SDimitry Andric #include "clang/Basic/TargetInfo.h" 300b57cec5SDimitry Andric #include "clang/Lex/Preprocessor.h" 310b57cec5SDimitry Andric #include "clang/Sema/Initialization.h" 320b57cec5SDimitry Andric #include "clang/Sema/Lookup.h" 330b57cec5SDimitry Andric #include "clang/Sema/Scope.h" 340b57cec5SDimitry Andric #include "clang/Sema/ScopeInfo.h" 350b57cec5SDimitry Andric #include "llvm/ADT/ArrayRef.h" 360b57cec5SDimitry Andric #include "llvm/ADT/DenseMap.h" 370b57cec5SDimitry Andric #include "llvm/ADT/STLExtras.h" 380b57cec5SDimitry Andric #include "llvm/ADT/SmallPtrSet.h" 390b57cec5SDimitry Andric #include "llvm/ADT/SmallString.h" 400b57cec5SDimitry Andric #include "llvm/ADT/SmallVector.h" 410b57cec5SDimitry Andric 420b57cec5SDimitry Andric using namespace clang; 430b57cec5SDimitry Andric using namespace sema; 440b57cec5SDimitry Andric 450b57cec5SDimitry Andric StmtResult Sema::ActOnExprStmt(ExprResult FE, bool DiscardedValue) { 460b57cec5SDimitry Andric if (FE.isInvalid()) 470b57cec5SDimitry Andric return StmtError(); 480b57cec5SDimitry Andric 490b57cec5SDimitry Andric FE = ActOnFinishFullExpr(FE.get(), FE.get()->getExprLoc(), DiscardedValue); 500b57cec5SDimitry Andric if (FE.isInvalid()) 510b57cec5SDimitry Andric return StmtError(); 520b57cec5SDimitry Andric 530b57cec5SDimitry Andric // C99 6.8.3p2: The expression in an expression statement is evaluated as a 540b57cec5SDimitry Andric // void expression for its side effects. Conversion to void allows any 550b57cec5SDimitry Andric // operand, even incomplete types. 560b57cec5SDimitry Andric 570b57cec5SDimitry Andric // Same thing in for stmt first clause (when expr) and third clause. 580b57cec5SDimitry Andric return StmtResult(FE.getAs<Stmt>()); 590b57cec5SDimitry Andric } 600b57cec5SDimitry Andric 610b57cec5SDimitry Andric 620b57cec5SDimitry Andric StmtResult Sema::ActOnExprStmtError() { 630b57cec5SDimitry Andric DiscardCleanupsInEvaluationContext(); 640b57cec5SDimitry Andric return StmtError(); 650b57cec5SDimitry Andric } 660b57cec5SDimitry Andric 670b57cec5SDimitry Andric StmtResult Sema::ActOnNullStmt(SourceLocation SemiLoc, 680b57cec5SDimitry Andric bool HasLeadingEmptyMacro) { 690b57cec5SDimitry Andric return new (Context) NullStmt(SemiLoc, HasLeadingEmptyMacro); 700b57cec5SDimitry Andric } 710b57cec5SDimitry Andric 720b57cec5SDimitry Andric StmtResult Sema::ActOnDeclStmt(DeclGroupPtrTy dg, SourceLocation StartLoc, 730b57cec5SDimitry Andric SourceLocation EndLoc) { 740b57cec5SDimitry Andric DeclGroupRef DG = dg.get(); 750b57cec5SDimitry Andric 760b57cec5SDimitry Andric // If we have an invalid decl, just return an error. 770b57cec5SDimitry Andric if (DG.isNull()) return StmtError(); 780b57cec5SDimitry Andric 790b57cec5SDimitry Andric return new (Context) DeclStmt(DG, StartLoc, EndLoc); 800b57cec5SDimitry Andric } 810b57cec5SDimitry Andric 820b57cec5SDimitry Andric void Sema::ActOnForEachDeclStmt(DeclGroupPtrTy dg) { 830b57cec5SDimitry Andric DeclGroupRef DG = dg.get(); 840b57cec5SDimitry Andric 850b57cec5SDimitry Andric // If we don't have a declaration, or we have an invalid declaration, 860b57cec5SDimitry Andric // just return. 870b57cec5SDimitry Andric if (DG.isNull() || !DG.isSingleDecl()) 880b57cec5SDimitry Andric return; 890b57cec5SDimitry Andric 900b57cec5SDimitry Andric Decl *decl = DG.getSingleDecl(); 910b57cec5SDimitry Andric if (!decl || decl->isInvalidDecl()) 920b57cec5SDimitry Andric return; 930b57cec5SDimitry Andric 940b57cec5SDimitry Andric // Only variable declarations are permitted. 950b57cec5SDimitry Andric VarDecl *var = dyn_cast<VarDecl>(decl); 960b57cec5SDimitry Andric if (!var) { 970b57cec5SDimitry Andric Diag(decl->getLocation(), diag::err_non_variable_decl_in_for); 980b57cec5SDimitry Andric decl->setInvalidDecl(); 990b57cec5SDimitry Andric return; 1000b57cec5SDimitry Andric } 1010b57cec5SDimitry Andric 1020b57cec5SDimitry Andric // foreach variables are never actually initialized in the way that 1030b57cec5SDimitry Andric // the parser came up with. 1040b57cec5SDimitry Andric var->setInit(nullptr); 1050b57cec5SDimitry Andric 1060b57cec5SDimitry Andric // In ARC, we don't need to retain the iteration variable of a fast 1070b57cec5SDimitry Andric // enumeration loop. Rather than actually trying to catch that 1080b57cec5SDimitry Andric // during declaration processing, we remove the consequences here. 1090b57cec5SDimitry Andric if (getLangOpts().ObjCAutoRefCount) { 1100b57cec5SDimitry Andric QualType type = var->getType(); 1110b57cec5SDimitry Andric 1120b57cec5SDimitry Andric // Only do this if we inferred the lifetime. Inferred lifetime 1130b57cec5SDimitry Andric // will show up as a local qualifier because explicit lifetime 1140b57cec5SDimitry Andric // should have shown up as an AttributedType instead. 1150b57cec5SDimitry Andric if (type.getLocalQualifiers().getObjCLifetime() == Qualifiers::OCL_Strong) { 1160b57cec5SDimitry Andric // Add 'const' and mark the variable as pseudo-strong. 1170b57cec5SDimitry Andric var->setType(type.withConst()); 1180b57cec5SDimitry Andric var->setARCPseudoStrong(true); 1190b57cec5SDimitry Andric } 1200b57cec5SDimitry Andric } 1210b57cec5SDimitry Andric } 1220b57cec5SDimitry Andric 1230b57cec5SDimitry Andric /// Diagnose unused comparisons, both builtin and overloaded operators. 1240b57cec5SDimitry Andric /// For '==' and '!=', suggest fixits for '=' or '|='. 1250b57cec5SDimitry Andric /// 1260b57cec5SDimitry Andric /// Adding a cast to void (or other expression wrappers) will prevent the 1270b57cec5SDimitry Andric /// warning from firing. 1280b57cec5SDimitry Andric static bool DiagnoseUnusedComparison(Sema &S, const Expr *E) { 1290b57cec5SDimitry Andric SourceLocation Loc; 1300b57cec5SDimitry Andric bool CanAssign; 1310b57cec5SDimitry Andric enum { Equality, Inequality, Relational, ThreeWay } Kind; 1320b57cec5SDimitry Andric 1330b57cec5SDimitry Andric if (const BinaryOperator *Op = dyn_cast<BinaryOperator>(E)) { 1340b57cec5SDimitry Andric if (!Op->isComparisonOp()) 1350b57cec5SDimitry Andric return false; 1360b57cec5SDimitry Andric 1370b57cec5SDimitry Andric if (Op->getOpcode() == BO_EQ) 1380b57cec5SDimitry Andric Kind = Equality; 1390b57cec5SDimitry Andric else if (Op->getOpcode() == BO_NE) 1400b57cec5SDimitry Andric Kind = Inequality; 1410b57cec5SDimitry Andric else if (Op->getOpcode() == BO_Cmp) 1420b57cec5SDimitry Andric Kind = ThreeWay; 1430b57cec5SDimitry Andric else { 1440b57cec5SDimitry Andric assert(Op->isRelationalOp()); 1450b57cec5SDimitry Andric Kind = Relational; 1460b57cec5SDimitry Andric } 1470b57cec5SDimitry Andric Loc = Op->getOperatorLoc(); 1480b57cec5SDimitry Andric CanAssign = Op->getLHS()->IgnoreParenImpCasts()->isLValue(); 1490b57cec5SDimitry Andric } else if (const CXXOperatorCallExpr *Op = dyn_cast<CXXOperatorCallExpr>(E)) { 1500b57cec5SDimitry Andric switch (Op->getOperator()) { 1510b57cec5SDimitry Andric case OO_EqualEqual: 1520b57cec5SDimitry Andric Kind = Equality; 1530b57cec5SDimitry Andric break; 1540b57cec5SDimitry Andric case OO_ExclaimEqual: 1550b57cec5SDimitry Andric Kind = Inequality; 1560b57cec5SDimitry Andric break; 1570b57cec5SDimitry Andric case OO_Less: 1580b57cec5SDimitry Andric case OO_Greater: 1590b57cec5SDimitry Andric case OO_GreaterEqual: 1600b57cec5SDimitry Andric case OO_LessEqual: 1610b57cec5SDimitry Andric Kind = Relational; 1620b57cec5SDimitry Andric break; 1630b57cec5SDimitry Andric case OO_Spaceship: 1640b57cec5SDimitry Andric Kind = ThreeWay; 1650b57cec5SDimitry Andric break; 1660b57cec5SDimitry Andric default: 1670b57cec5SDimitry Andric return false; 1680b57cec5SDimitry Andric } 1690b57cec5SDimitry Andric 1700b57cec5SDimitry Andric Loc = Op->getOperatorLoc(); 1710b57cec5SDimitry Andric CanAssign = Op->getArg(0)->IgnoreParenImpCasts()->isLValue(); 1720b57cec5SDimitry Andric } else { 1730b57cec5SDimitry Andric // Not a typo-prone comparison. 1740b57cec5SDimitry Andric return false; 1750b57cec5SDimitry Andric } 1760b57cec5SDimitry Andric 1770b57cec5SDimitry Andric // Suppress warnings when the operator, suspicious as it may be, comes from 1780b57cec5SDimitry Andric // a macro expansion. 1790b57cec5SDimitry Andric if (S.SourceMgr.isMacroBodyExpansion(Loc)) 1800b57cec5SDimitry Andric return false; 1810b57cec5SDimitry Andric 1820b57cec5SDimitry Andric S.Diag(Loc, diag::warn_unused_comparison) 1830b57cec5SDimitry Andric << (unsigned)Kind << E->getSourceRange(); 1840b57cec5SDimitry Andric 1850b57cec5SDimitry Andric // If the LHS is a plausible entity to assign to, provide a fixit hint to 1860b57cec5SDimitry Andric // correct common typos. 1870b57cec5SDimitry Andric if (CanAssign) { 1880b57cec5SDimitry Andric if (Kind == Inequality) 1890b57cec5SDimitry Andric S.Diag(Loc, diag::note_inequality_comparison_to_or_assign) 1900b57cec5SDimitry Andric << FixItHint::CreateReplacement(Loc, "|="); 1910b57cec5SDimitry Andric else if (Kind == Equality) 1920b57cec5SDimitry Andric S.Diag(Loc, diag::note_equality_comparison_to_assign) 1930b57cec5SDimitry Andric << FixItHint::CreateReplacement(Loc, "="); 1940b57cec5SDimitry Andric } 1950b57cec5SDimitry Andric 1960b57cec5SDimitry Andric return true; 1970b57cec5SDimitry Andric } 1980b57cec5SDimitry Andric 199a7dea167SDimitry Andric static bool DiagnoseNoDiscard(Sema &S, const WarnUnusedResultAttr *A, 200a7dea167SDimitry Andric SourceLocation Loc, SourceRange R1, 201a7dea167SDimitry Andric SourceRange R2, bool IsCtor) { 202a7dea167SDimitry Andric if (!A) 203a7dea167SDimitry Andric return false; 204a7dea167SDimitry Andric StringRef Msg = A->getMessage(); 205a7dea167SDimitry Andric 206a7dea167SDimitry Andric if (Msg.empty()) { 207a7dea167SDimitry Andric if (IsCtor) 208a7dea167SDimitry Andric return S.Diag(Loc, diag::warn_unused_constructor) << A << R1 << R2; 209a7dea167SDimitry Andric return S.Diag(Loc, diag::warn_unused_result) << A << R1 << R2; 210a7dea167SDimitry Andric } 211a7dea167SDimitry Andric 212a7dea167SDimitry Andric if (IsCtor) 213a7dea167SDimitry Andric return S.Diag(Loc, diag::warn_unused_constructor_msg) << A << Msg << R1 214a7dea167SDimitry Andric << R2; 215a7dea167SDimitry Andric return S.Diag(Loc, diag::warn_unused_result_msg) << A << Msg << R1 << R2; 216a7dea167SDimitry Andric } 217a7dea167SDimitry Andric 2180b57cec5SDimitry Andric void Sema::DiagnoseUnusedExprResult(const Stmt *S) { 2190b57cec5SDimitry Andric if (const LabelStmt *Label = dyn_cast_or_null<LabelStmt>(S)) 2200b57cec5SDimitry Andric return DiagnoseUnusedExprResult(Label->getSubStmt()); 2210b57cec5SDimitry Andric 2220b57cec5SDimitry Andric const Expr *E = dyn_cast_or_null<Expr>(S); 2230b57cec5SDimitry Andric if (!E) 2240b57cec5SDimitry Andric return; 2250b57cec5SDimitry Andric 2260b57cec5SDimitry Andric // If we are in an unevaluated expression context, then there can be no unused 2270b57cec5SDimitry Andric // results because the results aren't expected to be used in the first place. 2280b57cec5SDimitry Andric if (isUnevaluatedContext()) 2290b57cec5SDimitry Andric return; 2300b57cec5SDimitry Andric 2310b57cec5SDimitry Andric SourceLocation ExprLoc = E->IgnoreParenImpCasts()->getExprLoc(); 2320b57cec5SDimitry Andric // In most cases, we don't want to warn if the expression is written in a 2330b57cec5SDimitry Andric // macro body, or if the macro comes from a system header. If the offending 2340b57cec5SDimitry Andric // expression is a call to a function with the warn_unused_result attribute, 2350b57cec5SDimitry Andric // we warn no matter the location. Because of the order in which the various 2360b57cec5SDimitry Andric // checks need to happen, we factor out the macro-related test here. 2370b57cec5SDimitry Andric bool ShouldSuppress = 2380b57cec5SDimitry Andric SourceMgr.isMacroBodyExpansion(ExprLoc) || 2390b57cec5SDimitry Andric SourceMgr.isInSystemMacro(ExprLoc); 2400b57cec5SDimitry Andric 2410b57cec5SDimitry Andric const Expr *WarnExpr; 2420b57cec5SDimitry Andric SourceLocation Loc; 2430b57cec5SDimitry Andric SourceRange R1, R2; 2440b57cec5SDimitry Andric if (!E->isUnusedResultAWarning(WarnExpr, Loc, R1, R2, Context)) 2450b57cec5SDimitry Andric return; 2460b57cec5SDimitry Andric 2470b57cec5SDimitry Andric // If this is a GNU statement expression expanded from a macro, it is probably 2480b57cec5SDimitry Andric // unused because it is a function-like macro that can be used as either an 2490b57cec5SDimitry Andric // expression or statement. Don't warn, because it is almost certainly a 2500b57cec5SDimitry Andric // false positive. 2510b57cec5SDimitry Andric if (isa<StmtExpr>(E) && Loc.isMacroID()) 2520b57cec5SDimitry Andric return; 2530b57cec5SDimitry Andric 2540b57cec5SDimitry Andric // Check if this is the UNREFERENCED_PARAMETER from the Microsoft headers. 2550b57cec5SDimitry Andric // That macro is frequently used to suppress "unused parameter" warnings, 2560b57cec5SDimitry Andric // but its implementation makes clang's -Wunused-value fire. Prevent this. 2570b57cec5SDimitry Andric if (isa<ParenExpr>(E->IgnoreImpCasts()) && Loc.isMacroID()) { 2580b57cec5SDimitry Andric SourceLocation SpellLoc = Loc; 2590b57cec5SDimitry Andric if (findMacroSpelling(SpellLoc, "UNREFERENCED_PARAMETER")) 2600b57cec5SDimitry Andric return; 2610b57cec5SDimitry Andric } 2620b57cec5SDimitry Andric 2630b57cec5SDimitry Andric // Okay, we have an unused result. Depending on what the base expression is, 2640b57cec5SDimitry Andric // we might want to make a more specific diagnostic. Check for one of these 2650b57cec5SDimitry Andric // cases now. 2660b57cec5SDimitry Andric unsigned DiagID = diag::warn_unused_expr; 2670b57cec5SDimitry Andric if (const FullExpr *Temps = dyn_cast<FullExpr>(E)) 2680b57cec5SDimitry Andric E = Temps->getSubExpr(); 2690b57cec5SDimitry Andric if (const CXXBindTemporaryExpr *TempExpr = dyn_cast<CXXBindTemporaryExpr>(E)) 2700b57cec5SDimitry Andric E = TempExpr->getSubExpr(); 2710b57cec5SDimitry Andric 2720b57cec5SDimitry Andric if (DiagnoseUnusedComparison(*this, E)) 2730b57cec5SDimitry Andric return; 2740b57cec5SDimitry Andric 2750b57cec5SDimitry Andric E = WarnExpr; 276a7dea167SDimitry Andric if (const auto *Cast = dyn_cast<CastExpr>(E)) 277a7dea167SDimitry Andric if (Cast->getCastKind() == CK_NoOp || 278a7dea167SDimitry Andric Cast->getCastKind() == CK_ConstructorConversion) 279a7dea167SDimitry Andric E = Cast->getSubExpr()->IgnoreImpCasts(); 280a7dea167SDimitry Andric 2810b57cec5SDimitry Andric if (const CallExpr *CE = dyn_cast<CallExpr>(E)) { 2820b57cec5SDimitry Andric if (E->getType()->isVoidType()) 2830b57cec5SDimitry Andric return; 2840b57cec5SDimitry Andric 285a7dea167SDimitry Andric if (DiagnoseNoDiscard(*this, cast_or_null<WarnUnusedResultAttr>( 286a7dea167SDimitry Andric CE->getUnusedResultAttr(Context)), 287a7dea167SDimitry Andric Loc, R1, R2, /*isCtor=*/false)) 2880b57cec5SDimitry Andric return; 2890b57cec5SDimitry Andric 2900b57cec5SDimitry Andric // If the callee has attribute pure, const, or warn_unused_result, warn with 2910b57cec5SDimitry Andric // a more specific message to make it clear what is happening. If the call 2920b57cec5SDimitry Andric // is written in a macro body, only warn if it has the warn_unused_result 2930b57cec5SDimitry Andric // attribute. 2940b57cec5SDimitry Andric if (const Decl *FD = CE->getCalleeDecl()) { 2950b57cec5SDimitry Andric if (ShouldSuppress) 2960b57cec5SDimitry Andric return; 2970b57cec5SDimitry Andric if (FD->hasAttr<PureAttr>()) { 2980b57cec5SDimitry Andric Diag(Loc, diag::warn_unused_call) << R1 << R2 << "pure"; 2990b57cec5SDimitry Andric return; 3000b57cec5SDimitry Andric } 3010b57cec5SDimitry Andric if (FD->hasAttr<ConstAttr>()) { 3020b57cec5SDimitry Andric Diag(Loc, diag::warn_unused_call) << R1 << R2 << "const"; 3030b57cec5SDimitry Andric return; 3040b57cec5SDimitry Andric } 3050b57cec5SDimitry Andric } 306a7dea167SDimitry Andric } else if (const auto *CE = dyn_cast<CXXConstructExpr>(E)) { 307a7dea167SDimitry Andric if (const CXXConstructorDecl *Ctor = CE->getConstructor()) { 308a7dea167SDimitry Andric const auto *A = Ctor->getAttr<WarnUnusedResultAttr>(); 309a7dea167SDimitry Andric A = A ? A : Ctor->getParent()->getAttr<WarnUnusedResultAttr>(); 310a7dea167SDimitry Andric if (DiagnoseNoDiscard(*this, A, Loc, R1, R2, /*isCtor=*/true)) 311a7dea167SDimitry Andric return; 312a7dea167SDimitry Andric } 313a7dea167SDimitry Andric } else if (const auto *ILE = dyn_cast<InitListExpr>(E)) { 314a7dea167SDimitry Andric if (const TagDecl *TD = ILE->getType()->getAsTagDecl()) { 315a7dea167SDimitry Andric 316a7dea167SDimitry Andric if (DiagnoseNoDiscard(*this, TD->getAttr<WarnUnusedResultAttr>(), Loc, R1, 317a7dea167SDimitry Andric R2, /*isCtor=*/false)) 318a7dea167SDimitry Andric return; 319a7dea167SDimitry Andric } 3200b57cec5SDimitry Andric } else if (ShouldSuppress) 3210b57cec5SDimitry Andric return; 3220b57cec5SDimitry Andric 323a7dea167SDimitry Andric E = WarnExpr; 3240b57cec5SDimitry Andric if (const ObjCMessageExpr *ME = dyn_cast<ObjCMessageExpr>(E)) { 3250b57cec5SDimitry Andric if (getLangOpts().ObjCAutoRefCount && ME->isDelegateInitCall()) { 3260b57cec5SDimitry Andric Diag(Loc, diag::err_arc_unused_init_message) << R1; 3270b57cec5SDimitry Andric return; 3280b57cec5SDimitry Andric } 3290b57cec5SDimitry Andric const ObjCMethodDecl *MD = ME->getMethodDecl(); 3300b57cec5SDimitry Andric if (MD) { 331a7dea167SDimitry Andric if (DiagnoseNoDiscard(*this, MD->getAttr<WarnUnusedResultAttr>(), Loc, R1, 332a7dea167SDimitry Andric R2, /*isCtor=*/false)) 3330b57cec5SDimitry Andric return; 3340b57cec5SDimitry Andric } 3350b57cec5SDimitry Andric } else if (const PseudoObjectExpr *POE = dyn_cast<PseudoObjectExpr>(E)) { 3360b57cec5SDimitry Andric const Expr *Source = POE->getSyntacticForm(); 3375ffd83dbSDimitry Andric // Handle the actually selected call of an OpenMP specialized call. 3385ffd83dbSDimitry Andric if (LangOpts.OpenMP && isa<CallExpr>(Source) && 3395ffd83dbSDimitry Andric POE->getNumSemanticExprs() == 1 && 3405ffd83dbSDimitry Andric isa<CallExpr>(POE->getSemanticExpr(0))) 3415ffd83dbSDimitry Andric return DiagnoseUnusedExprResult(POE->getSemanticExpr(0)); 3420b57cec5SDimitry Andric if (isa<ObjCSubscriptRefExpr>(Source)) 3430b57cec5SDimitry Andric DiagID = diag::warn_unused_container_subscript_expr; 3440b57cec5SDimitry Andric else 3450b57cec5SDimitry Andric DiagID = diag::warn_unused_property_expr; 3460b57cec5SDimitry Andric } else if (const CXXFunctionalCastExpr *FC 3470b57cec5SDimitry Andric = dyn_cast<CXXFunctionalCastExpr>(E)) { 3480b57cec5SDimitry Andric const Expr *E = FC->getSubExpr(); 3490b57cec5SDimitry Andric if (const CXXBindTemporaryExpr *TE = dyn_cast<CXXBindTemporaryExpr>(E)) 3500b57cec5SDimitry Andric E = TE->getSubExpr(); 3510b57cec5SDimitry Andric if (isa<CXXTemporaryObjectExpr>(E)) 3520b57cec5SDimitry Andric return; 3530b57cec5SDimitry Andric if (const CXXConstructExpr *CE = dyn_cast<CXXConstructExpr>(E)) 3540b57cec5SDimitry Andric if (const CXXRecordDecl *RD = CE->getType()->getAsCXXRecordDecl()) 3550b57cec5SDimitry Andric if (!RD->getAttr<WarnUnusedAttr>()) 3560b57cec5SDimitry Andric return; 3570b57cec5SDimitry Andric } 3580b57cec5SDimitry Andric // Diagnose "(void*) blah" as a typo for "(void) blah". 3590b57cec5SDimitry Andric else if (const CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(E)) { 3600b57cec5SDimitry Andric TypeSourceInfo *TI = CE->getTypeInfoAsWritten(); 3610b57cec5SDimitry Andric QualType T = TI->getType(); 3620b57cec5SDimitry Andric 3630b57cec5SDimitry Andric // We really do want to use the non-canonical type here. 3640b57cec5SDimitry Andric if (T == Context.VoidPtrTy) { 3650b57cec5SDimitry Andric PointerTypeLoc TL = TI->getTypeLoc().castAs<PointerTypeLoc>(); 3660b57cec5SDimitry Andric 3670b57cec5SDimitry Andric Diag(Loc, diag::warn_unused_voidptr) 3680b57cec5SDimitry Andric << FixItHint::CreateRemoval(TL.getStarLoc()); 3690b57cec5SDimitry Andric return; 3700b57cec5SDimitry Andric } 3710b57cec5SDimitry Andric } 3720b57cec5SDimitry Andric 3735ffd83dbSDimitry Andric // Tell the user to assign it into a variable to force a volatile load if this 3745ffd83dbSDimitry Andric // isn't an array. 3755ffd83dbSDimitry Andric if (E->isGLValue() && E->getType().isVolatileQualified() && 3765ffd83dbSDimitry Andric !E->getType()->isArrayType()) { 3770b57cec5SDimitry Andric Diag(Loc, diag::warn_unused_volatile) << R1 << R2; 3780b57cec5SDimitry Andric return; 3790b57cec5SDimitry Andric } 3800b57cec5SDimitry Andric 3810b57cec5SDimitry Andric DiagRuntimeBehavior(Loc, nullptr, PDiag(DiagID) << R1 << R2); 3820b57cec5SDimitry Andric } 3830b57cec5SDimitry Andric 3840b57cec5SDimitry Andric void Sema::ActOnStartOfCompoundStmt(bool IsStmtExpr) { 3850b57cec5SDimitry Andric PushCompoundScope(IsStmtExpr); 3860b57cec5SDimitry Andric } 3870b57cec5SDimitry Andric 388*e8d8bef9SDimitry Andric void Sema::ActOnAfterCompoundStatementLeadingPragmas() { 389*e8d8bef9SDimitry Andric if (getCurFPFeatures().isFPConstrained()) { 390*e8d8bef9SDimitry Andric FunctionScopeInfo *FSI = getCurFunction(); 391*e8d8bef9SDimitry Andric assert(FSI); 392*e8d8bef9SDimitry Andric FSI->setUsesFPIntrin(); 393*e8d8bef9SDimitry Andric } 394*e8d8bef9SDimitry Andric } 395*e8d8bef9SDimitry Andric 3960b57cec5SDimitry Andric void Sema::ActOnFinishOfCompoundStmt() { 3970b57cec5SDimitry Andric PopCompoundScope(); 3980b57cec5SDimitry Andric } 3990b57cec5SDimitry Andric 4000b57cec5SDimitry Andric sema::CompoundScopeInfo &Sema::getCurCompoundScope() const { 4010b57cec5SDimitry Andric return getCurFunction()->CompoundScopes.back(); 4020b57cec5SDimitry Andric } 4030b57cec5SDimitry Andric 4040b57cec5SDimitry Andric StmtResult Sema::ActOnCompoundStmt(SourceLocation L, SourceLocation R, 4050b57cec5SDimitry Andric ArrayRef<Stmt *> Elts, bool isStmtExpr) { 4060b57cec5SDimitry Andric const unsigned NumElts = Elts.size(); 4070b57cec5SDimitry Andric 4080b57cec5SDimitry Andric // If we're in C89 mode, check that we don't have any decls after stmts. If 4090b57cec5SDimitry Andric // so, emit an extension diagnostic. 4100b57cec5SDimitry Andric if (!getLangOpts().C99 && !getLangOpts().CPlusPlus) { 4110b57cec5SDimitry Andric // Note that __extension__ can be around a decl. 4120b57cec5SDimitry Andric unsigned i = 0; 4130b57cec5SDimitry Andric // Skip over all declarations. 4140b57cec5SDimitry Andric for (; i != NumElts && isa<DeclStmt>(Elts[i]); ++i) 4150b57cec5SDimitry Andric /*empty*/; 4160b57cec5SDimitry Andric 4170b57cec5SDimitry Andric // We found the end of the list or a statement. Scan for another declstmt. 4180b57cec5SDimitry Andric for (; i != NumElts && !isa<DeclStmt>(Elts[i]); ++i) 4190b57cec5SDimitry Andric /*empty*/; 4200b57cec5SDimitry Andric 4210b57cec5SDimitry Andric if (i != NumElts) { 4220b57cec5SDimitry Andric Decl *D = *cast<DeclStmt>(Elts[i])->decl_begin(); 4230b57cec5SDimitry Andric Diag(D->getLocation(), diag::ext_mixed_decls_code); 4240b57cec5SDimitry Andric } 4250b57cec5SDimitry Andric } 4260b57cec5SDimitry Andric 4270b57cec5SDimitry Andric // Check for suspicious empty body (null statement) in `for' and `while' 4280b57cec5SDimitry Andric // statements. Don't do anything for template instantiations, this just adds 4290b57cec5SDimitry Andric // noise. 4300b57cec5SDimitry Andric if (NumElts != 0 && !CurrentInstantiationScope && 4310b57cec5SDimitry Andric getCurCompoundScope().HasEmptyLoopBodies) { 4320b57cec5SDimitry Andric for (unsigned i = 0; i != NumElts - 1; ++i) 4330b57cec5SDimitry Andric DiagnoseEmptyLoopBody(Elts[i], Elts[i + 1]); 4340b57cec5SDimitry Andric } 4350b57cec5SDimitry Andric 4360b57cec5SDimitry Andric return CompoundStmt::Create(Context, Elts, L, R); 4370b57cec5SDimitry Andric } 4380b57cec5SDimitry Andric 4390b57cec5SDimitry Andric ExprResult 4400b57cec5SDimitry Andric Sema::ActOnCaseExpr(SourceLocation CaseLoc, ExprResult Val) { 4410b57cec5SDimitry Andric if (!Val.get()) 4420b57cec5SDimitry Andric return Val; 4430b57cec5SDimitry Andric 4440b57cec5SDimitry Andric if (DiagnoseUnexpandedParameterPack(Val.get())) 4450b57cec5SDimitry Andric return ExprError(); 4460b57cec5SDimitry Andric 4470b57cec5SDimitry Andric // If we're not inside a switch, let the 'case' statement handling diagnose 4480b57cec5SDimitry Andric // this. Just clean up after the expression as best we can. 449a7dea167SDimitry Andric if (getCurFunction()->SwitchStack.empty()) 450a7dea167SDimitry Andric return ActOnFinishFullExpr(Val.get(), Val.get()->getExprLoc(), false, 451a7dea167SDimitry Andric getLangOpts().CPlusPlus11); 452a7dea167SDimitry Andric 4530b57cec5SDimitry Andric Expr *CondExpr = 4540b57cec5SDimitry Andric getCurFunction()->SwitchStack.back().getPointer()->getCond(); 4550b57cec5SDimitry Andric if (!CondExpr) 4560b57cec5SDimitry Andric return ExprError(); 4570b57cec5SDimitry Andric QualType CondType = CondExpr->getType(); 4580b57cec5SDimitry Andric 4590b57cec5SDimitry Andric auto CheckAndFinish = [&](Expr *E) { 4600b57cec5SDimitry Andric if (CondType->isDependentType() || E->isTypeDependent()) 4610b57cec5SDimitry Andric return ExprResult(E); 4620b57cec5SDimitry Andric 4630b57cec5SDimitry Andric if (getLangOpts().CPlusPlus11) { 4640b57cec5SDimitry Andric // C++11 [stmt.switch]p2: the constant-expression shall be a converted 4650b57cec5SDimitry Andric // constant expression of the promoted type of the switch condition. 4660b57cec5SDimitry Andric llvm::APSInt TempVal; 4670b57cec5SDimitry Andric return CheckConvertedConstantExpression(E, CondType, TempVal, 4680b57cec5SDimitry Andric CCEK_CaseValue); 4690b57cec5SDimitry Andric } 4700b57cec5SDimitry Andric 4710b57cec5SDimitry Andric ExprResult ER = E; 4720b57cec5SDimitry Andric if (!E->isValueDependent()) 473*e8d8bef9SDimitry Andric ER = VerifyIntegerConstantExpression(E, AllowFold); 4740b57cec5SDimitry Andric if (!ER.isInvalid()) 4750b57cec5SDimitry Andric ER = DefaultLvalueConversion(ER.get()); 4760b57cec5SDimitry Andric if (!ER.isInvalid()) 4770b57cec5SDimitry Andric ER = ImpCastExprToType(ER.get(), CondType, CK_IntegralCast); 478a7dea167SDimitry Andric if (!ER.isInvalid()) 479a7dea167SDimitry Andric ER = ActOnFinishFullExpr(ER.get(), ER.get()->getExprLoc(), false); 4800b57cec5SDimitry Andric return ER; 4810b57cec5SDimitry Andric }; 4820b57cec5SDimitry Andric 4835ffd83dbSDimitry Andric ExprResult Converted = CorrectDelayedTyposInExpr( 4845ffd83dbSDimitry Andric Val, /*InitDecl=*/nullptr, /*RecoverUncorrectedTypos=*/false, 4855ffd83dbSDimitry Andric CheckAndFinish); 4860b57cec5SDimitry Andric if (Converted.get() == Val.get()) 4870b57cec5SDimitry Andric Converted = CheckAndFinish(Val.get()); 488a7dea167SDimitry Andric return Converted; 4890b57cec5SDimitry Andric } 4900b57cec5SDimitry Andric 4910b57cec5SDimitry Andric StmtResult 4920b57cec5SDimitry Andric Sema::ActOnCaseStmt(SourceLocation CaseLoc, ExprResult LHSVal, 4930b57cec5SDimitry Andric SourceLocation DotDotDotLoc, ExprResult RHSVal, 4940b57cec5SDimitry Andric SourceLocation ColonLoc) { 4950b57cec5SDimitry Andric assert((LHSVal.isInvalid() || LHSVal.get()) && "missing LHS value"); 4960b57cec5SDimitry Andric assert((DotDotDotLoc.isInvalid() ? RHSVal.isUnset() 4970b57cec5SDimitry Andric : RHSVal.isInvalid() || RHSVal.get()) && 4980b57cec5SDimitry Andric "missing RHS value"); 4990b57cec5SDimitry Andric 5000b57cec5SDimitry Andric if (getCurFunction()->SwitchStack.empty()) { 5010b57cec5SDimitry Andric Diag(CaseLoc, diag::err_case_not_in_switch); 5020b57cec5SDimitry Andric return StmtError(); 5030b57cec5SDimitry Andric } 5040b57cec5SDimitry Andric 5050b57cec5SDimitry Andric if (LHSVal.isInvalid() || RHSVal.isInvalid()) { 5060b57cec5SDimitry Andric getCurFunction()->SwitchStack.back().setInt(true); 5070b57cec5SDimitry Andric return StmtError(); 5080b57cec5SDimitry Andric } 5090b57cec5SDimitry Andric 5100b57cec5SDimitry Andric auto *CS = CaseStmt::Create(Context, LHSVal.get(), RHSVal.get(), 5110b57cec5SDimitry Andric CaseLoc, DotDotDotLoc, ColonLoc); 5120b57cec5SDimitry Andric getCurFunction()->SwitchStack.back().getPointer()->addSwitchCase(CS); 5130b57cec5SDimitry Andric return CS; 5140b57cec5SDimitry Andric } 5150b57cec5SDimitry Andric 5160b57cec5SDimitry Andric /// ActOnCaseStmtBody - This installs a statement as the body of a case. 5170b57cec5SDimitry Andric void Sema::ActOnCaseStmtBody(Stmt *S, Stmt *SubStmt) { 5180b57cec5SDimitry Andric cast<CaseStmt>(S)->setSubStmt(SubStmt); 5190b57cec5SDimitry Andric } 5200b57cec5SDimitry Andric 5210b57cec5SDimitry Andric StmtResult 5220b57cec5SDimitry Andric Sema::ActOnDefaultStmt(SourceLocation DefaultLoc, SourceLocation ColonLoc, 5230b57cec5SDimitry Andric Stmt *SubStmt, Scope *CurScope) { 5240b57cec5SDimitry Andric if (getCurFunction()->SwitchStack.empty()) { 5250b57cec5SDimitry Andric Diag(DefaultLoc, diag::err_default_not_in_switch); 5260b57cec5SDimitry Andric return SubStmt; 5270b57cec5SDimitry Andric } 5280b57cec5SDimitry Andric 5290b57cec5SDimitry Andric DefaultStmt *DS = new (Context) DefaultStmt(DefaultLoc, ColonLoc, SubStmt); 5300b57cec5SDimitry Andric getCurFunction()->SwitchStack.back().getPointer()->addSwitchCase(DS); 5310b57cec5SDimitry Andric return DS; 5320b57cec5SDimitry Andric } 5330b57cec5SDimitry Andric 5340b57cec5SDimitry Andric StmtResult 5350b57cec5SDimitry Andric Sema::ActOnLabelStmt(SourceLocation IdentLoc, LabelDecl *TheDecl, 5360b57cec5SDimitry Andric SourceLocation ColonLoc, Stmt *SubStmt) { 5370b57cec5SDimitry Andric // If the label was multiply defined, reject it now. 5380b57cec5SDimitry Andric if (TheDecl->getStmt()) { 5390b57cec5SDimitry Andric Diag(IdentLoc, diag::err_redefinition_of_label) << TheDecl->getDeclName(); 5400b57cec5SDimitry Andric Diag(TheDecl->getLocation(), diag::note_previous_definition); 5410b57cec5SDimitry Andric return SubStmt; 5420b57cec5SDimitry Andric } 5430b57cec5SDimitry Andric 5440b57cec5SDimitry Andric // Otherwise, things are good. Fill in the declaration and return it. 5450b57cec5SDimitry Andric LabelStmt *LS = new (Context) LabelStmt(IdentLoc, TheDecl, SubStmt); 5460b57cec5SDimitry Andric TheDecl->setStmt(LS); 5470b57cec5SDimitry Andric if (!TheDecl->isGnuLocal()) { 5480b57cec5SDimitry Andric TheDecl->setLocStart(IdentLoc); 5490b57cec5SDimitry Andric if (!TheDecl->isMSAsmLabel()) { 5500b57cec5SDimitry Andric // Don't update the location of MS ASM labels. These will result in 5510b57cec5SDimitry Andric // a diagnostic, and changing the location here will mess that up. 5520b57cec5SDimitry Andric TheDecl->setLocation(IdentLoc); 5530b57cec5SDimitry Andric } 5540b57cec5SDimitry Andric } 5550b57cec5SDimitry Andric return LS; 5560b57cec5SDimitry Andric } 5570b57cec5SDimitry Andric 5580b57cec5SDimitry Andric StmtResult Sema::ActOnAttributedStmt(SourceLocation AttrLoc, 5590b57cec5SDimitry Andric ArrayRef<const Attr*> Attrs, 5600b57cec5SDimitry Andric Stmt *SubStmt) { 5610b57cec5SDimitry Andric // Fill in the declaration and return it. 5620b57cec5SDimitry Andric AttributedStmt *LS = AttributedStmt::Create(Context, AttrLoc, Attrs, SubStmt); 5630b57cec5SDimitry Andric return LS; 5640b57cec5SDimitry Andric } 5650b57cec5SDimitry Andric 5660b57cec5SDimitry Andric namespace { 5670b57cec5SDimitry Andric class CommaVisitor : public EvaluatedExprVisitor<CommaVisitor> { 5680b57cec5SDimitry Andric typedef EvaluatedExprVisitor<CommaVisitor> Inherited; 5690b57cec5SDimitry Andric Sema &SemaRef; 5700b57cec5SDimitry Andric public: 5710b57cec5SDimitry Andric CommaVisitor(Sema &SemaRef) : Inherited(SemaRef.Context), SemaRef(SemaRef) {} 5720b57cec5SDimitry Andric void VisitBinaryOperator(BinaryOperator *E) { 5730b57cec5SDimitry Andric if (E->getOpcode() == BO_Comma) 5740b57cec5SDimitry Andric SemaRef.DiagnoseCommaOperator(E->getLHS(), E->getExprLoc()); 5750b57cec5SDimitry Andric EvaluatedExprVisitor<CommaVisitor>::VisitBinaryOperator(E); 5760b57cec5SDimitry Andric } 5770b57cec5SDimitry Andric }; 5780b57cec5SDimitry Andric } 5790b57cec5SDimitry Andric 580*e8d8bef9SDimitry Andric StmtResult Sema::ActOnIfStmt(SourceLocation IfLoc, bool IsConstexpr, 581*e8d8bef9SDimitry Andric SourceLocation LParenLoc, Stmt *InitStmt, 582*e8d8bef9SDimitry Andric ConditionResult Cond, SourceLocation RParenLoc, 5830b57cec5SDimitry Andric Stmt *thenStmt, SourceLocation ElseLoc, 5840b57cec5SDimitry Andric Stmt *elseStmt) { 5850b57cec5SDimitry Andric if (Cond.isInvalid()) 5860b57cec5SDimitry Andric Cond = ConditionResult( 5870b57cec5SDimitry Andric *this, nullptr, 5880b57cec5SDimitry Andric MakeFullExpr(new (Context) OpaqueValueExpr(SourceLocation(), 5890b57cec5SDimitry Andric Context.BoolTy, VK_RValue), 5900b57cec5SDimitry Andric IfLoc), 5910b57cec5SDimitry Andric false); 5920b57cec5SDimitry Andric 5930b57cec5SDimitry Andric Expr *CondExpr = Cond.get().second; 5940b57cec5SDimitry Andric // Only call the CommaVisitor when not C89 due to differences in scope flags. 5950b57cec5SDimitry Andric if ((getLangOpts().C99 || getLangOpts().CPlusPlus) && 5960b57cec5SDimitry Andric !Diags.isIgnored(diag::warn_comma_operator, CondExpr->getExprLoc())) 5970b57cec5SDimitry Andric CommaVisitor(*this).Visit(CondExpr); 5980b57cec5SDimitry Andric 5990b57cec5SDimitry Andric if (!elseStmt) 6000b57cec5SDimitry Andric DiagnoseEmptyStmtBody(CondExpr->getEndLoc(), thenStmt, 6010b57cec5SDimitry Andric diag::warn_empty_if_body); 6020b57cec5SDimitry Andric 603*e8d8bef9SDimitry Andric if (IsConstexpr) { 604*e8d8bef9SDimitry Andric auto DiagnoseLikelihood = [&](const Stmt *S) { 605*e8d8bef9SDimitry Andric if (const Attr *A = Stmt::getLikelihoodAttr(S)) { 606*e8d8bef9SDimitry Andric Diags.Report(A->getLocation(), 607*e8d8bef9SDimitry Andric diag::warn_attribute_has_no_effect_on_if_constexpr) 608*e8d8bef9SDimitry Andric << A << A->getRange(); 609*e8d8bef9SDimitry Andric Diags.Report(IfLoc, 610*e8d8bef9SDimitry Andric diag::note_attribute_has_no_effect_on_if_constexpr_here) 611*e8d8bef9SDimitry Andric << SourceRange(IfLoc, LParenLoc.getLocWithOffset(-1)); 612*e8d8bef9SDimitry Andric } 613*e8d8bef9SDimitry Andric }; 614*e8d8bef9SDimitry Andric DiagnoseLikelihood(thenStmt); 615*e8d8bef9SDimitry Andric DiagnoseLikelihood(elseStmt); 616*e8d8bef9SDimitry Andric } else { 617*e8d8bef9SDimitry Andric std::tuple<bool, const Attr *, const Attr *> LHC = 618*e8d8bef9SDimitry Andric Stmt::determineLikelihoodConflict(thenStmt, elseStmt); 619*e8d8bef9SDimitry Andric if (std::get<0>(LHC)) { 620*e8d8bef9SDimitry Andric const Attr *ThenAttr = std::get<1>(LHC); 621*e8d8bef9SDimitry Andric const Attr *ElseAttr = std::get<2>(LHC); 622*e8d8bef9SDimitry Andric Diags.Report(ThenAttr->getLocation(), 623*e8d8bef9SDimitry Andric diag::warn_attributes_likelihood_ifstmt_conflict) 624*e8d8bef9SDimitry Andric << ThenAttr << ThenAttr->getRange(); 625*e8d8bef9SDimitry Andric Diags.Report(ElseAttr->getLocation(), diag::note_conflicting_attribute) 626*e8d8bef9SDimitry Andric << ElseAttr << ElseAttr->getRange(); 627*e8d8bef9SDimitry Andric } 628*e8d8bef9SDimitry Andric } 629*e8d8bef9SDimitry Andric 630*e8d8bef9SDimitry Andric return BuildIfStmt(IfLoc, IsConstexpr, LParenLoc, InitStmt, Cond, RParenLoc, 631*e8d8bef9SDimitry Andric thenStmt, ElseLoc, elseStmt); 6320b57cec5SDimitry Andric } 6330b57cec5SDimitry Andric 6340b57cec5SDimitry Andric StmtResult Sema::BuildIfStmt(SourceLocation IfLoc, bool IsConstexpr, 635*e8d8bef9SDimitry Andric SourceLocation LParenLoc, Stmt *InitStmt, 636*e8d8bef9SDimitry Andric ConditionResult Cond, SourceLocation RParenLoc, 6370b57cec5SDimitry Andric Stmt *thenStmt, SourceLocation ElseLoc, 6380b57cec5SDimitry Andric Stmt *elseStmt) { 6390b57cec5SDimitry Andric if (Cond.isInvalid()) 6400b57cec5SDimitry Andric return StmtError(); 6410b57cec5SDimitry Andric 6420b57cec5SDimitry Andric if (IsConstexpr || isa<ObjCAvailabilityCheckExpr>(Cond.get().second)) 6430b57cec5SDimitry Andric setFunctionHasBranchProtectedScope(); 6440b57cec5SDimitry Andric 6450b57cec5SDimitry Andric return IfStmt::Create(Context, IfLoc, IsConstexpr, InitStmt, Cond.get().first, 646*e8d8bef9SDimitry Andric Cond.get().second, LParenLoc, RParenLoc, thenStmt, 647*e8d8bef9SDimitry Andric ElseLoc, elseStmt); 6480b57cec5SDimitry Andric } 6490b57cec5SDimitry Andric 6500b57cec5SDimitry Andric namespace { 6510b57cec5SDimitry Andric struct CaseCompareFunctor { 6520b57cec5SDimitry Andric bool operator()(const std::pair<llvm::APSInt, CaseStmt*> &LHS, 6530b57cec5SDimitry Andric const llvm::APSInt &RHS) { 6540b57cec5SDimitry Andric return LHS.first < RHS; 6550b57cec5SDimitry Andric } 6560b57cec5SDimitry Andric bool operator()(const std::pair<llvm::APSInt, CaseStmt*> &LHS, 6570b57cec5SDimitry Andric const std::pair<llvm::APSInt, CaseStmt*> &RHS) { 6580b57cec5SDimitry Andric return LHS.first < RHS.first; 6590b57cec5SDimitry Andric } 6600b57cec5SDimitry Andric bool operator()(const llvm::APSInt &LHS, 6610b57cec5SDimitry Andric const std::pair<llvm::APSInt, CaseStmt*> &RHS) { 6620b57cec5SDimitry Andric return LHS < RHS.first; 6630b57cec5SDimitry Andric } 6640b57cec5SDimitry Andric }; 6650b57cec5SDimitry Andric } 6660b57cec5SDimitry Andric 6670b57cec5SDimitry Andric /// CmpCaseVals - Comparison predicate for sorting case values. 6680b57cec5SDimitry Andric /// 6690b57cec5SDimitry Andric static bool CmpCaseVals(const std::pair<llvm::APSInt, CaseStmt*>& lhs, 6700b57cec5SDimitry Andric const std::pair<llvm::APSInt, CaseStmt*>& rhs) { 6710b57cec5SDimitry Andric if (lhs.first < rhs.first) 6720b57cec5SDimitry Andric return true; 6730b57cec5SDimitry Andric 6740b57cec5SDimitry Andric if (lhs.first == rhs.first && 675*e8d8bef9SDimitry Andric lhs.second->getCaseLoc() < rhs.second->getCaseLoc()) 6760b57cec5SDimitry Andric return true; 6770b57cec5SDimitry Andric return false; 6780b57cec5SDimitry Andric } 6790b57cec5SDimitry Andric 6800b57cec5SDimitry Andric /// CmpEnumVals - Comparison predicate for sorting enumeration values. 6810b57cec5SDimitry Andric /// 6820b57cec5SDimitry Andric static bool CmpEnumVals(const std::pair<llvm::APSInt, EnumConstantDecl*>& lhs, 6830b57cec5SDimitry Andric const std::pair<llvm::APSInt, EnumConstantDecl*>& rhs) 6840b57cec5SDimitry Andric { 6850b57cec5SDimitry Andric return lhs.first < rhs.first; 6860b57cec5SDimitry Andric } 6870b57cec5SDimitry Andric 6880b57cec5SDimitry Andric /// EqEnumVals - Comparison preficate for uniqing enumeration values. 6890b57cec5SDimitry Andric /// 6900b57cec5SDimitry Andric static bool EqEnumVals(const std::pair<llvm::APSInt, EnumConstantDecl*>& lhs, 6910b57cec5SDimitry Andric const std::pair<llvm::APSInt, EnumConstantDecl*>& rhs) 6920b57cec5SDimitry Andric { 6930b57cec5SDimitry Andric return lhs.first == rhs.first; 6940b57cec5SDimitry Andric } 6950b57cec5SDimitry Andric 6960b57cec5SDimitry Andric /// GetTypeBeforeIntegralPromotion - Returns the pre-promotion type of 6970b57cec5SDimitry Andric /// potentially integral-promoted expression @p expr. 6980b57cec5SDimitry Andric static QualType GetTypeBeforeIntegralPromotion(const Expr *&E) { 6990b57cec5SDimitry Andric if (const auto *FE = dyn_cast<FullExpr>(E)) 7000b57cec5SDimitry Andric E = FE->getSubExpr(); 7010b57cec5SDimitry Andric while (const auto *ImpCast = dyn_cast<ImplicitCastExpr>(E)) { 7020b57cec5SDimitry Andric if (ImpCast->getCastKind() != CK_IntegralCast) break; 7030b57cec5SDimitry Andric E = ImpCast->getSubExpr(); 7040b57cec5SDimitry Andric } 7050b57cec5SDimitry Andric return E->getType(); 7060b57cec5SDimitry Andric } 7070b57cec5SDimitry Andric 7080b57cec5SDimitry Andric ExprResult Sema::CheckSwitchCondition(SourceLocation SwitchLoc, Expr *Cond) { 7090b57cec5SDimitry Andric class SwitchConvertDiagnoser : public ICEConvertDiagnoser { 7100b57cec5SDimitry Andric Expr *Cond; 7110b57cec5SDimitry Andric 7120b57cec5SDimitry Andric public: 7130b57cec5SDimitry Andric SwitchConvertDiagnoser(Expr *Cond) 7140b57cec5SDimitry Andric : ICEConvertDiagnoser(/*AllowScopedEnumerations*/true, false, true), 7150b57cec5SDimitry Andric Cond(Cond) {} 7160b57cec5SDimitry Andric 7170b57cec5SDimitry Andric SemaDiagnosticBuilder diagnoseNotInt(Sema &S, SourceLocation Loc, 7180b57cec5SDimitry Andric QualType T) override { 7190b57cec5SDimitry Andric return S.Diag(Loc, diag::err_typecheck_statement_requires_integer) << T; 7200b57cec5SDimitry Andric } 7210b57cec5SDimitry Andric 7220b57cec5SDimitry Andric SemaDiagnosticBuilder diagnoseIncomplete( 7230b57cec5SDimitry Andric Sema &S, SourceLocation Loc, QualType T) override { 7240b57cec5SDimitry Andric return S.Diag(Loc, diag::err_switch_incomplete_class_type) 7250b57cec5SDimitry Andric << T << Cond->getSourceRange(); 7260b57cec5SDimitry Andric } 7270b57cec5SDimitry Andric 7280b57cec5SDimitry Andric SemaDiagnosticBuilder diagnoseExplicitConv( 7290b57cec5SDimitry Andric Sema &S, SourceLocation Loc, QualType T, QualType ConvTy) override { 7300b57cec5SDimitry Andric return S.Diag(Loc, diag::err_switch_explicit_conversion) << T << ConvTy; 7310b57cec5SDimitry Andric } 7320b57cec5SDimitry Andric 7330b57cec5SDimitry Andric SemaDiagnosticBuilder noteExplicitConv( 7340b57cec5SDimitry Andric Sema &S, CXXConversionDecl *Conv, QualType ConvTy) override { 7350b57cec5SDimitry Andric return S.Diag(Conv->getLocation(), diag::note_switch_conversion) 7360b57cec5SDimitry Andric << ConvTy->isEnumeralType() << ConvTy; 7370b57cec5SDimitry Andric } 7380b57cec5SDimitry Andric 7390b57cec5SDimitry Andric SemaDiagnosticBuilder diagnoseAmbiguous(Sema &S, SourceLocation Loc, 7400b57cec5SDimitry Andric QualType T) override { 7410b57cec5SDimitry Andric return S.Diag(Loc, diag::err_switch_multiple_conversions) << T; 7420b57cec5SDimitry Andric } 7430b57cec5SDimitry Andric 7440b57cec5SDimitry Andric SemaDiagnosticBuilder noteAmbiguous( 7450b57cec5SDimitry Andric Sema &S, CXXConversionDecl *Conv, QualType ConvTy) override { 7460b57cec5SDimitry Andric return S.Diag(Conv->getLocation(), diag::note_switch_conversion) 7470b57cec5SDimitry Andric << ConvTy->isEnumeralType() << ConvTy; 7480b57cec5SDimitry Andric } 7490b57cec5SDimitry Andric 7500b57cec5SDimitry Andric SemaDiagnosticBuilder diagnoseConversion( 7510b57cec5SDimitry Andric Sema &S, SourceLocation Loc, QualType T, QualType ConvTy) override { 7520b57cec5SDimitry Andric llvm_unreachable("conversion functions are permitted"); 7530b57cec5SDimitry Andric } 7540b57cec5SDimitry Andric } SwitchDiagnoser(Cond); 7550b57cec5SDimitry Andric 7560b57cec5SDimitry Andric ExprResult CondResult = 7570b57cec5SDimitry Andric PerformContextualImplicitConversion(SwitchLoc, Cond, SwitchDiagnoser); 7580b57cec5SDimitry Andric if (CondResult.isInvalid()) 7590b57cec5SDimitry Andric return ExprError(); 7600b57cec5SDimitry Andric 7610b57cec5SDimitry Andric // FIXME: PerformContextualImplicitConversion doesn't always tell us if it 7620b57cec5SDimitry Andric // failed and produced a diagnostic. 7630b57cec5SDimitry Andric Cond = CondResult.get(); 7640b57cec5SDimitry Andric if (!Cond->isTypeDependent() && 7650b57cec5SDimitry Andric !Cond->getType()->isIntegralOrEnumerationType()) 7660b57cec5SDimitry Andric return ExprError(); 7670b57cec5SDimitry Andric 7680b57cec5SDimitry Andric // C99 6.8.4.2p5 - Integer promotions are performed on the controlling expr. 7690b57cec5SDimitry Andric return UsualUnaryConversions(Cond); 7700b57cec5SDimitry Andric } 7710b57cec5SDimitry Andric 7720b57cec5SDimitry Andric StmtResult Sema::ActOnStartOfSwitchStmt(SourceLocation SwitchLoc, 773*e8d8bef9SDimitry Andric SourceLocation LParenLoc, 774*e8d8bef9SDimitry Andric Stmt *InitStmt, ConditionResult Cond, 775*e8d8bef9SDimitry Andric SourceLocation RParenLoc) { 7760b57cec5SDimitry Andric Expr *CondExpr = Cond.get().second; 7770b57cec5SDimitry Andric assert((Cond.isInvalid() || CondExpr) && "switch with no condition"); 7780b57cec5SDimitry Andric 7790b57cec5SDimitry Andric if (CondExpr && !CondExpr->isTypeDependent()) { 7800b57cec5SDimitry Andric // We have already converted the expression to an integral or enumeration 7815ffd83dbSDimitry Andric // type, when we parsed the switch condition. There are cases where we don't 7825ffd83dbSDimitry Andric // have an appropriate type, e.g. a typo-expr Cond was corrected to an 7835ffd83dbSDimitry Andric // inappropriate-type expr, we just return an error. 7845ffd83dbSDimitry Andric if (!CondExpr->getType()->isIntegralOrEnumerationType()) 7855ffd83dbSDimitry Andric return StmtError(); 7860b57cec5SDimitry Andric if (CondExpr->isKnownToHaveBooleanValue()) { 7870b57cec5SDimitry Andric // switch(bool_expr) {...} is often a programmer error, e.g. 7880b57cec5SDimitry Andric // switch(n && mask) { ... } // Doh - should be "n & mask". 7890b57cec5SDimitry Andric // One can always use an if statement instead of switch(bool_expr). 7900b57cec5SDimitry Andric Diag(SwitchLoc, diag::warn_bool_switch_condition) 7910b57cec5SDimitry Andric << CondExpr->getSourceRange(); 7920b57cec5SDimitry Andric } 7930b57cec5SDimitry Andric } 7940b57cec5SDimitry Andric 7950b57cec5SDimitry Andric setFunctionHasBranchIntoScope(); 7960b57cec5SDimitry Andric 797*e8d8bef9SDimitry Andric auto *SS = SwitchStmt::Create(Context, InitStmt, Cond.get().first, CondExpr, 798*e8d8bef9SDimitry Andric LParenLoc, RParenLoc); 7990b57cec5SDimitry Andric getCurFunction()->SwitchStack.push_back( 8000b57cec5SDimitry Andric FunctionScopeInfo::SwitchInfo(SS, false)); 8010b57cec5SDimitry Andric return SS; 8020b57cec5SDimitry Andric } 8030b57cec5SDimitry Andric 8040b57cec5SDimitry Andric static void AdjustAPSInt(llvm::APSInt &Val, unsigned BitWidth, bool IsSigned) { 8050b57cec5SDimitry Andric Val = Val.extOrTrunc(BitWidth); 8060b57cec5SDimitry Andric Val.setIsSigned(IsSigned); 8070b57cec5SDimitry Andric } 8080b57cec5SDimitry Andric 8090b57cec5SDimitry Andric /// Check the specified case value is in range for the given unpromoted switch 8100b57cec5SDimitry Andric /// type. 8110b57cec5SDimitry Andric static void checkCaseValue(Sema &S, SourceLocation Loc, const llvm::APSInt &Val, 8120b57cec5SDimitry Andric unsigned UnpromotedWidth, bool UnpromotedSign) { 8130b57cec5SDimitry Andric // In C++11 onwards, this is checked by the language rules. 8140b57cec5SDimitry Andric if (S.getLangOpts().CPlusPlus11) 8150b57cec5SDimitry Andric return; 8160b57cec5SDimitry Andric 8170b57cec5SDimitry Andric // If the case value was signed and negative and the switch expression is 8180b57cec5SDimitry Andric // unsigned, don't bother to warn: this is implementation-defined behavior. 8190b57cec5SDimitry Andric // FIXME: Introduce a second, default-ignored warning for this case? 8200b57cec5SDimitry Andric if (UnpromotedWidth < Val.getBitWidth()) { 8210b57cec5SDimitry Andric llvm::APSInt ConvVal(Val); 8220b57cec5SDimitry Andric AdjustAPSInt(ConvVal, UnpromotedWidth, UnpromotedSign); 8230b57cec5SDimitry Andric AdjustAPSInt(ConvVal, Val.getBitWidth(), Val.isSigned()); 8240b57cec5SDimitry Andric // FIXME: Use different diagnostics for overflow in conversion to promoted 8250b57cec5SDimitry Andric // type versus "switch expression cannot have this value". Use proper 8260b57cec5SDimitry Andric // IntRange checking rather than just looking at the unpromoted type here. 8270b57cec5SDimitry Andric if (ConvVal != Val) 8280b57cec5SDimitry Andric S.Diag(Loc, diag::warn_case_value_overflow) << Val.toString(10) 8290b57cec5SDimitry Andric << ConvVal.toString(10); 8300b57cec5SDimitry Andric } 8310b57cec5SDimitry Andric } 8320b57cec5SDimitry Andric 8330b57cec5SDimitry Andric typedef SmallVector<std::pair<llvm::APSInt, EnumConstantDecl*>, 64> EnumValsTy; 8340b57cec5SDimitry Andric 8350b57cec5SDimitry Andric /// Returns true if we should emit a diagnostic about this case expression not 8360b57cec5SDimitry Andric /// being a part of the enum used in the switch controlling expression. 8370b57cec5SDimitry Andric static bool ShouldDiagnoseSwitchCaseNotInEnum(const Sema &S, 8380b57cec5SDimitry Andric const EnumDecl *ED, 8390b57cec5SDimitry Andric const Expr *CaseExpr, 8400b57cec5SDimitry Andric EnumValsTy::iterator &EI, 8410b57cec5SDimitry Andric EnumValsTy::iterator &EIEnd, 8420b57cec5SDimitry Andric const llvm::APSInt &Val) { 8430b57cec5SDimitry Andric if (!ED->isClosed()) 8440b57cec5SDimitry Andric return false; 8450b57cec5SDimitry Andric 8460b57cec5SDimitry Andric if (const DeclRefExpr *DRE = 8470b57cec5SDimitry Andric dyn_cast<DeclRefExpr>(CaseExpr->IgnoreParenImpCasts())) { 8480b57cec5SDimitry Andric if (const VarDecl *VD = dyn_cast<VarDecl>(DRE->getDecl())) { 8490b57cec5SDimitry Andric QualType VarType = VD->getType(); 8500b57cec5SDimitry Andric QualType EnumType = S.Context.getTypeDeclType(ED); 8510b57cec5SDimitry Andric if (VD->hasGlobalStorage() && VarType.isConstQualified() && 8520b57cec5SDimitry Andric S.Context.hasSameUnqualifiedType(EnumType, VarType)) 8530b57cec5SDimitry Andric return false; 8540b57cec5SDimitry Andric } 8550b57cec5SDimitry Andric } 8560b57cec5SDimitry Andric 8570b57cec5SDimitry Andric if (ED->hasAttr<FlagEnumAttr>()) 8580b57cec5SDimitry Andric return !S.IsValueInFlagEnum(ED, Val, false); 8590b57cec5SDimitry Andric 8600b57cec5SDimitry Andric while (EI != EIEnd && EI->first < Val) 8610b57cec5SDimitry Andric EI++; 8620b57cec5SDimitry Andric 8630b57cec5SDimitry Andric if (EI != EIEnd && EI->first == Val) 8640b57cec5SDimitry Andric return false; 8650b57cec5SDimitry Andric 8660b57cec5SDimitry Andric return true; 8670b57cec5SDimitry Andric } 8680b57cec5SDimitry Andric 8690b57cec5SDimitry Andric static void checkEnumTypesInSwitchStmt(Sema &S, const Expr *Cond, 8700b57cec5SDimitry Andric const Expr *Case) { 8710b57cec5SDimitry Andric QualType CondType = Cond->getType(); 8720b57cec5SDimitry Andric QualType CaseType = Case->getType(); 8730b57cec5SDimitry Andric 8740b57cec5SDimitry Andric const EnumType *CondEnumType = CondType->getAs<EnumType>(); 8750b57cec5SDimitry Andric const EnumType *CaseEnumType = CaseType->getAs<EnumType>(); 8760b57cec5SDimitry Andric if (!CondEnumType || !CaseEnumType) 8770b57cec5SDimitry Andric return; 8780b57cec5SDimitry Andric 8790b57cec5SDimitry Andric // Ignore anonymous enums. 8800b57cec5SDimitry Andric if (!CondEnumType->getDecl()->getIdentifier() && 8810b57cec5SDimitry Andric !CondEnumType->getDecl()->getTypedefNameForAnonDecl()) 8820b57cec5SDimitry Andric return; 8830b57cec5SDimitry Andric if (!CaseEnumType->getDecl()->getIdentifier() && 8840b57cec5SDimitry Andric !CaseEnumType->getDecl()->getTypedefNameForAnonDecl()) 8850b57cec5SDimitry Andric return; 8860b57cec5SDimitry Andric 8870b57cec5SDimitry Andric if (S.Context.hasSameUnqualifiedType(CondType, CaseType)) 8880b57cec5SDimitry Andric return; 8890b57cec5SDimitry Andric 8900b57cec5SDimitry Andric S.Diag(Case->getExprLoc(), diag::warn_comparison_of_mixed_enum_types_switch) 8910b57cec5SDimitry Andric << CondType << CaseType << Cond->getSourceRange() 8920b57cec5SDimitry Andric << Case->getSourceRange(); 8930b57cec5SDimitry Andric } 8940b57cec5SDimitry Andric 8950b57cec5SDimitry Andric StmtResult 8960b57cec5SDimitry Andric Sema::ActOnFinishSwitchStmt(SourceLocation SwitchLoc, Stmt *Switch, 8970b57cec5SDimitry Andric Stmt *BodyStmt) { 8980b57cec5SDimitry Andric SwitchStmt *SS = cast<SwitchStmt>(Switch); 8990b57cec5SDimitry Andric bool CaseListIsIncomplete = getCurFunction()->SwitchStack.back().getInt(); 9000b57cec5SDimitry Andric assert(SS == getCurFunction()->SwitchStack.back().getPointer() && 9010b57cec5SDimitry Andric "switch stack missing push/pop!"); 9020b57cec5SDimitry Andric 9030b57cec5SDimitry Andric getCurFunction()->SwitchStack.pop_back(); 9040b57cec5SDimitry Andric 9050b57cec5SDimitry Andric if (!BodyStmt) return StmtError(); 9060b57cec5SDimitry Andric SS->setBody(BodyStmt, SwitchLoc); 9070b57cec5SDimitry Andric 9080b57cec5SDimitry Andric Expr *CondExpr = SS->getCond(); 9090b57cec5SDimitry Andric if (!CondExpr) return StmtError(); 9100b57cec5SDimitry Andric 9110b57cec5SDimitry Andric QualType CondType = CondExpr->getType(); 9120b57cec5SDimitry Andric 9130b57cec5SDimitry Andric // C++ 6.4.2.p2: 9140b57cec5SDimitry Andric // Integral promotions are performed (on the switch condition). 9150b57cec5SDimitry Andric // 9160b57cec5SDimitry Andric // A case value unrepresentable by the original switch condition 9170b57cec5SDimitry Andric // type (before the promotion) doesn't make sense, even when it can 9180b57cec5SDimitry Andric // be represented by the promoted type. Therefore we need to find 9190b57cec5SDimitry Andric // the pre-promotion type of the switch condition. 9200b57cec5SDimitry Andric const Expr *CondExprBeforePromotion = CondExpr; 9210b57cec5SDimitry Andric QualType CondTypeBeforePromotion = 9220b57cec5SDimitry Andric GetTypeBeforeIntegralPromotion(CondExprBeforePromotion); 9230b57cec5SDimitry Andric 9240b57cec5SDimitry Andric // Get the bitwidth of the switched-on value after promotions. We must 9250b57cec5SDimitry Andric // convert the integer case values to this width before comparison. 9260b57cec5SDimitry Andric bool HasDependentValue 9270b57cec5SDimitry Andric = CondExpr->isTypeDependent() || CondExpr->isValueDependent(); 9280b57cec5SDimitry Andric unsigned CondWidth = HasDependentValue ? 0 : Context.getIntWidth(CondType); 9290b57cec5SDimitry Andric bool CondIsSigned = CondType->isSignedIntegerOrEnumerationType(); 9300b57cec5SDimitry Andric 9310b57cec5SDimitry Andric // Get the width and signedness that the condition might actually have, for 9320b57cec5SDimitry Andric // warning purposes. 9330b57cec5SDimitry Andric // FIXME: Grab an IntRange for the condition rather than using the unpromoted 9340b57cec5SDimitry Andric // type. 9350b57cec5SDimitry Andric unsigned CondWidthBeforePromotion 9360b57cec5SDimitry Andric = HasDependentValue ? 0 : Context.getIntWidth(CondTypeBeforePromotion); 9370b57cec5SDimitry Andric bool CondIsSignedBeforePromotion 9380b57cec5SDimitry Andric = CondTypeBeforePromotion->isSignedIntegerOrEnumerationType(); 9390b57cec5SDimitry Andric 9400b57cec5SDimitry Andric // Accumulate all of the case values in a vector so that we can sort them 9410b57cec5SDimitry Andric // and detect duplicates. This vector contains the APInt for the case after 9420b57cec5SDimitry Andric // it has been converted to the condition type. 9430b57cec5SDimitry Andric typedef SmallVector<std::pair<llvm::APSInt, CaseStmt*>, 64> CaseValsTy; 9440b57cec5SDimitry Andric CaseValsTy CaseVals; 9450b57cec5SDimitry Andric 9460b57cec5SDimitry Andric // Keep track of any GNU case ranges we see. The APSInt is the low value. 9470b57cec5SDimitry Andric typedef std::vector<std::pair<llvm::APSInt, CaseStmt*> > CaseRangesTy; 9480b57cec5SDimitry Andric CaseRangesTy CaseRanges; 9490b57cec5SDimitry Andric 9500b57cec5SDimitry Andric DefaultStmt *TheDefaultStmt = nullptr; 9510b57cec5SDimitry Andric 9520b57cec5SDimitry Andric bool CaseListIsErroneous = false; 9530b57cec5SDimitry Andric 9540b57cec5SDimitry Andric for (SwitchCase *SC = SS->getSwitchCaseList(); SC && !HasDependentValue; 9550b57cec5SDimitry Andric SC = SC->getNextSwitchCase()) { 9560b57cec5SDimitry Andric 9570b57cec5SDimitry Andric if (DefaultStmt *DS = dyn_cast<DefaultStmt>(SC)) { 9580b57cec5SDimitry Andric if (TheDefaultStmt) { 9590b57cec5SDimitry Andric Diag(DS->getDefaultLoc(), diag::err_multiple_default_labels_defined); 9600b57cec5SDimitry Andric Diag(TheDefaultStmt->getDefaultLoc(), diag::note_duplicate_case_prev); 9610b57cec5SDimitry Andric 9620b57cec5SDimitry Andric // FIXME: Remove the default statement from the switch block so that 9630b57cec5SDimitry Andric // we'll return a valid AST. This requires recursing down the AST and 9640b57cec5SDimitry Andric // finding it, not something we are set up to do right now. For now, 9650b57cec5SDimitry Andric // just lop the entire switch stmt out of the AST. 9660b57cec5SDimitry Andric CaseListIsErroneous = true; 9670b57cec5SDimitry Andric } 9680b57cec5SDimitry Andric TheDefaultStmt = DS; 9690b57cec5SDimitry Andric 9700b57cec5SDimitry Andric } else { 9710b57cec5SDimitry Andric CaseStmt *CS = cast<CaseStmt>(SC); 9720b57cec5SDimitry Andric 9730b57cec5SDimitry Andric Expr *Lo = CS->getLHS(); 9740b57cec5SDimitry Andric 9750b57cec5SDimitry Andric if (Lo->isValueDependent()) { 9760b57cec5SDimitry Andric HasDependentValue = true; 9770b57cec5SDimitry Andric break; 9780b57cec5SDimitry Andric } 9790b57cec5SDimitry Andric 9800b57cec5SDimitry Andric // We already verified that the expression has a constant value; 9810b57cec5SDimitry Andric // get that value (prior to conversions). 9820b57cec5SDimitry Andric const Expr *LoBeforePromotion = Lo; 9830b57cec5SDimitry Andric GetTypeBeforeIntegralPromotion(LoBeforePromotion); 9840b57cec5SDimitry Andric llvm::APSInt LoVal = LoBeforePromotion->EvaluateKnownConstInt(Context); 9850b57cec5SDimitry Andric 9860b57cec5SDimitry Andric // Check the unconverted value is within the range of possible values of 9870b57cec5SDimitry Andric // the switch expression. 9880b57cec5SDimitry Andric checkCaseValue(*this, Lo->getBeginLoc(), LoVal, CondWidthBeforePromotion, 9890b57cec5SDimitry Andric CondIsSignedBeforePromotion); 9900b57cec5SDimitry Andric 9910b57cec5SDimitry Andric // FIXME: This duplicates the check performed for warn_not_in_enum below. 9920b57cec5SDimitry Andric checkEnumTypesInSwitchStmt(*this, CondExprBeforePromotion, 9930b57cec5SDimitry Andric LoBeforePromotion); 9940b57cec5SDimitry Andric 9950b57cec5SDimitry Andric // Convert the value to the same width/sign as the condition. 9960b57cec5SDimitry Andric AdjustAPSInt(LoVal, CondWidth, CondIsSigned); 9970b57cec5SDimitry Andric 9980b57cec5SDimitry Andric // If this is a case range, remember it in CaseRanges, otherwise CaseVals. 9990b57cec5SDimitry Andric if (CS->getRHS()) { 10000b57cec5SDimitry Andric if (CS->getRHS()->isValueDependent()) { 10010b57cec5SDimitry Andric HasDependentValue = true; 10020b57cec5SDimitry Andric break; 10030b57cec5SDimitry Andric } 10040b57cec5SDimitry Andric CaseRanges.push_back(std::make_pair(LoVal, CS)); 10050b57cec5SDimitry Andric } else 10060b57cec5SDimitry Andric CaseVals.push_back(std::make_pair(LoVal, CS)); 10070b57cec5SDimitry Andric } 10080b57cec5SDimitry Andric } 10090b57cec5SDimitry Andric 10100b57cec5SDimitry Andric if (!HasDependentValue) { 10110b57cec5SDimitry Andric // If we don't have a default statement, check whether the 10120b57cec5SDimitry Andric // condition is constant. 10130b57cec5SDimitry Andric llvm::APSInt ConstantCondValue; 10140b57cec5SDimitry Andric bool HasConstantCond = false; 1015a7dea167SDimitry Andric if (!TheDefaultStmt) { 10160b57cec5SDimitry Andric Expr::EvalResult Result; 10170b57cec5SDimitry Andric HasConstantCond = CondExpr->EvaluateAsInt(Result, Context, 10180b57cec5SDimitry Andric Expr::SE_AllowSideEffects); 10190b57cec5SDimitry Andric if (Result.Val.isInt()) 10200b57cec5SDimitry Andric ConstantCondValue = Result.Val.getInt(); 10210b57cec5SDimitry Andric assert(!HasConstantCond || 10220b57cec5SDimitry Andric (ConstantCondValue.getBitWidth() == CondWidth && 10230b57cec5SDimitry Andric ConstantCondValue.isSigned() == CondIsSigned)); 10240b57cec5SDimitry Andric } 10250b57cec5SDimitry Andric bool ShouldCheckConstantCond = HasConstantCond; 10260b57cec5SDimitry Andric 10270b57cec5SDimitry Andric // Sort all the scalar case values so we can easily detect duplicates. 10280b57cec5SDimitry Andric llvm::stable_sort(CaseVals, CmpCaseVals); 10290b57cec5SDimitry Andric 10300b57cec5SDimitry Andric if (!CaseVals.empty()) { 10310b57cec5SDimitry Andric for (unsigned i = 0, e = CaseVals.size(); i != e; ++i) { 10320b57cec5SDimitry Andric if (ShouldCheckConstantCond && 10330b57cec5SDimitry Andric CaseVals[i].first == ConstantCondValue) 10340b57cec5SDimitry Andric ShouldCheckConstantCond = false; 10350b57cec5SDimitry Andric 10360b57cec5SDimitry Andric if (i != 0 && CaseVals[i].first == CaseVals[i-1].first) { 10370b57cec5SDimitry Andric // If we have a duplicate, report it. 10380b57cec5SDimitry Andric // First, determine if either case value has a name 10390b57cec5SDimitry Andric StringRef PrevString, CurrString; 10400b57cec5SDimitry Andric Expr *PrevCase = CaseVals[i-1].second->getLHS()->IgnoreParenCasts(); 10410b57cec5SDimitry Andric Expr *CurrCase = CaseVals[i].second->getLHS()->IgnoreParenCasts(); 10420b57cec5SDimitry Andric if (DeclRefExpr *DeclRef = dyn_cast<DeclRefExpr>(PrevCase)) { 10430b57cec5SDimitry Andric PrevString = DeclRef->getDecl()->getName(); 10440b57cec5SDimitry Andric } 10450b57cec5SDimitry Andric if (DeclRefExpr *DeclRef = dyn_cast<DeclRefExpr>(CurrCase)) { 10460b57cec5SDimitry Andric CurrString = DeclRef->getDecl()->getName(); 10470b57cec5SDimitry Andric } 10480b57cec5SDimitry Andric SmallString<16> CaseValStr; 10490b57cec5SDimitry Andric CaseVals[i-1].first.toString(CaseValStr); 10500b57cec5SDimitry Andric 10510b57cec5SDimitry Andric if (PrevString == CurrString) 10520b57cec5SDimitry Andric Diag(CaseVals[i].second->getLHS()->getBeginLoc(), 10530b57cec5SDimitry Andric diag::err_duplicate_case) 10540b57cec5SDimitry Andric << (PrevString.empty() ? StringRef(CaseValStr) : PrevString); 10550b57cec5SDimitry Andric else 10560b57cec5SDimitry Andric Diag(CaseVals[i].second->getLHS()->getBeginLoc(), 10570b57cec5SDimitry Andric diag::err_duplicate_case_differing_expr) 10580b57cec5SDimitry Andric << (PrevString.empty() ? StringRef(CaseValStr) : PrevString) 10590b57cec5SDimitry Andric << (CurrString.empty() ? StringRef(CaseValStr) : CurrString) 10600b57cec5SDimitry Andric << CaseValStr; 10610b57cec5SDimitry Andric 10620b57cec5SDimitry Andric Diag(CaseVals[i - 1].second->getLHS()->getBeginLoc(), 10630b57cec5SDimitry Andric diag::note_duplicate_case_prev); 10640b57cec5SDimitry Andric // FIXME: We really want to remove the bogus case stmt from the 10650b57cec5SDimitry Andric // substmt, but we have no way to do this right now. 10660b57cec5SDimitry Andric CaseListIsErroneous = true; 10670b57cec5SDimitry Andric } 10680b57cec5SDimitry Andric } 10690b57cec5SDimitry Andric } 10700b57cec5SDimitry Andric 10710b57cec5SDimitry Andric // Detect duplicate case ranges, which usually don't exist at all in 10720b57cec5SDimitry Andric // the first place. 10730b57cec5SDimitry Andric if (!CaseRanges.empty()) { 10740b57cec5SDimitry Andric // Sort all the case ranges by their low value so we can easily detect 10750b57cec5SDimitry Andric // overlaps between ranges. 10760b57cec5SDimitry Andric llvm::stable_sort(CaseRanges); 10770b57cec5SDimitry Andric 10780b57cec5SDimitry Andric // Scan the ranges, computing the high values and removing empty ranges. 10790b57cec5SDimitry Andric std::vector<llvm::APSInt> HiVals; 10800b57cec5SDimitry Andric for (unsigned i = 0, e = CaseRanges.size(); i != e; ++i) { 10810b57cec5SDimitry Andric llvm::APSInt &LoVal = CaseRanges[i].first; 10820b57cec5SDimitry Andric CaseStmt *CR = CaseRanges[i].second; 10830b57cec5SDimitry Andric Expr *Hi = CR->getRHS(); 10840b57cec5SDimitry Andric 10850b57cec5SDimitry Andric const Expr *HiBeforePromotion = Hi; 10860b57cec5SDimitry Andric GetTypeBeforeIntegralPromotion(HiBeforePromotion); 10870b57cec5SDimitry Andric llvm::APSInt HiVal = HiBeforePromotion->EvaluateKnownConstInt(Context); 10880b57cec5SDimitry Andric 10890b57cec5SDimitry Andric // Check the unconverted value is within the range of possible values of 10900b57cec5SDimitry Andric // the switch expression. 10910b57cec5SDimitry Andric checkCaseValue(*this, Hi->getBeginLoc(), HiVal, 10920b57cec5SDimitry Andric CondWidthBeforePromotion, CondIsSignedBeforePromotion); 10930b57cec5SDimitry Andric 10940b57cec5SDimitry Andric // Convert the value to the same width/sign as the condition. 10950b57cec5SDimitry Andric AdjustAPSInt(HiVal, CondWidth, CondIsSigned); 10960b57cec5SDimitry Andric 10970b57cec5SDimitry Andric // If the low value is bigger than the high value, the case is empty. 10980b57cec5SDimitry Andric if (LoVal > HiVal) { 10990b57cec5SDimitry Andric Diag(CR->getLHS()->getBeginLoc(), diag::warn_case_empty_range) 11000b57cec5SDimitry Andric << SourceRange(CR->getLHS()->getBeginLoc(), Hi->getEndLoc()); 11010b57cec5SDimitry Andric CaseRanges.erase(CaseRanges.begin()+i); 11020b57cec5SDimitry Andric --i; 11030b57cec5SDimitry Andric --e; 11040b57cec5SDimitry Andric continue; 11050b57cec5SDimitry Andric } 11060b57cec5SDimitry Andric 11070b57cec5SDimitry Andric if (ShouldCheckConstantCond && 11080b57cec5SDimitry Andric LoVal <= ConstantCondValue && 11090b57cec5SDimitry Andric ConstantCondValue <= HiVal) 11100b57cec5SDimitry Andric ShouldCheckConstantCond = false; 11110b57cec5SDimitry Andric 11120b57cec5SDimitry Andric HiVals.push_back(HiVal); 11130b57cec5SDimitry Andric } 11140b57cec5SDimitry Andric 11150b57cec5SDimitry Andric // Rescan the ranges, looking for overlap with singleton values and other 11160b57cec5SDimitry Andric // ranges. Since the range list is sorted, we only need to compare case 11170b57cec5SDimitry Andric // ranges with their neighbors. 11180b57cec5SDimitry Andric for (unsigned i = 0, e = CaseRanges.size(); i != e; ++i) { 11190b57cec5SDimitry Andric llvm::APSInt &CRLo = CaseRanges[i].first; 11200b57cec5SDimitry Andric llvm::APSInt &CRHi = HiVals[i]; 11210b57cec5SDimitry Andric CaseStmt *CR = CaseRanges[i].second; 11220b57cec5SDimitry Andric 11230b57cec5SDimitry Andric // Check to see whether the case range overlaps with any 11240b57cec5SDimitry Andric // singleton cases. 11250b57cec5SDimitry Andric CaseStmt *OverlapStmt = nullptr; 11260b57cec5SDimitry Andric llvm::APSInt OverlapVal(32); 11270b57cec5SDimitry Andric 11280b57cec5SDimitry Andric // Find the smallest value >= the lower bound. If I is in the 11290b57cec5SDimitry Andric // case range, then we have overlap. 11300b57cec5SDimitry Andric CaseValsTy::iterator I = 11310b57cec5SDimitry Andric llvm::lower_bound(CaseVals, CRLo, CaseCompareFunctor()); 11320b57cec5SDimitry Andric if (I != CaseVals.end() && I->first < CRHi) { 11330b57cec5SDimitry Andric OverlapVal = I->first; // Found overlap with scalar. 11340b57cec5SDimitry Andric OverlapStmt = I->second; 11350b57cec5SDimitry Andric } 11360b57cec5SDimitry Andric 11370b57cec5SDimitry Andric // Find the smallest value bigger than the upper bound. 11380b57cec5SDimitry Andric I = std::upper_bound(I, CaseVals.end(), CRHi, CaseCompareFunctor()); 11390b57cec5SDimitry Andric if (I != CaseVals.begin() && (I-1)->first >= CRLo) { 11400b57cec5SDimitry Andric OverlapVal = (I-1)->first; // Found overlap with scalar. 11410b57cec5SDimitry Andric OverlapStmt = (I-1)->second; 11420b57cec5SDimitry Andric } 11430b57cec5SDimitry Andric 11440b57cec5SDimitry Andric // Check to see if this case stmt overlaps with the subsequent 11450b57cec5SDimitry Andric // case range. 11460b57cec5SDimitry Andric if (i && CRLo <= HiVals[i-1]) { 11470b57cec5SDimitry Andric OverlapVal = HiVals[i-1]; // Found overlap with range. 11480b57cec5SDimitry Andric OverlapStmt = CaseRanges[i-1].second; 11490b57cec5SDimitry Andric } 11500b57cec5SDimitry Andric 11510b57cec5SDimitry Andric if (OverlapStmt) { 11520b57cec5SDimitry Andric // If we have a duplicate, report it. 11530b57cec5SDimitry Andric Diag(CR->getLHS()->getBeginLoc(), diag::err_duplicate_case) 11540b57cec5SDimitry Andric << OverlapVal.toString(10); 11550b57cec5SDimitry Andric Diag(OverlapStmt->getLHS()->getBeginLoc(), 11560b57cec5SDimitry Andric diag::note_duplicate_case_prev); 11570b57cec5SDimitry Andric // FIXME: We really want to remove the bogus case stmt from the 11580b57cec5SDimitry Andric // substmt, but we have no way to do this right now. 11590b57cec5SDimitry Andric CaseListIsErroneous = true; 11600b57cec5SDimitry Andric } 11610b57cec5SDimitry Andric } 11620b57cec5SDimitry Andric } 11630b57cec5SDimitry Andric 11640b57cec5SDimitry Andric // Complain if we have a constant condition and we didn't find a match. 11650b57cec5SDimitry Andric if (!CaseListIsErroneous && !CaseListIsIncomplete && 11660b57cec5SDimitry Andric ShouldCheckConstantCond) { 11670b57cec5SDimitry Andric // TODO: it would be nice if we printed enums as enums, chars as 11680b57cec5SDimitry Andric // chars, etc. 11690b57cec5SDimitry Andric Diag(CondExpr->getExprLoc(), diag::warn_missing_case_for_condition) 11700b57cec5SDimitry Andric << ConstantCondValue.toString(10) 11710b57cec5SDimitry Andric << CondExpr->getSourceRange(); 11720b57cec5SDimitry Andric } 11730b57cec5SDimitry Andric 11740b57cec5SDimitry Andric // Check to see if switch is over an Enum and handles all of its 11750b57cec5SDimitry Andric // values. We only issue a warning if there is not 'default:', but 11760b57cec5SDimitry Andric // we still do the analysis to preserve this information in the AST 11770b57cec5SDimitry Andric // (which can be used by flow-based analyes). 11780b57cec5SDimitry Andric // 11790b57cec5SDimitry Andric const EnumType *ET = CondTypeBeforePromotion->getAs<EnumType>(); 11800b57cec5SDimitry Andric 11810b57cec5SDimitry Andric // If switch has default case, then ignore it. 11820b57cec5SDimitry Andric if (!CaseListIsErroneous && !CaseListIsIncomplete && !HasConstantCond && 11830b57cec5SDimitry Andric ET && ET->getDecl()->isCompleteDefinition()) { 11840b57cec5SDimitry Andric const EnumDecl *ED = ET->getDecl(); 11850b57cec5SDimitry Andric EnumValsTy EnumVals; 11860b57cec5SDimitry Andric 11870b57cec5SDimitry Andric // Gather all enum values, set their type and sort them, 11880b57cec5SDimitry Andric // allowing easier comparison with CaseVals. 11890b57cec5SDimitry Andric for (auto *EDI : ED->enumerators()) { 11900b57cec5SDimitry Andric llvm::APSInt Val = EDI->getInitVal(); 11910b57cec5SDimitry Andric AdjustAPSInt(Val, CondWidth, CondIsSigned); 11920b57cec5SDimitry Andric EnumVals.push_back(std::make_pair(Val, EDI)); 11930b57cec5SDimitry Andric } 11940b57cec5SDimitry Andric llvm::stable_sort(EnumVals, CmpEnumVals); 11950b57cec5SDimitry Andric auto EI = EnumVals.begin(), EIEnd = 11960b57cec5SDimitry Andric std::unique(EnumVals.begin(), EnumVals.end(), EqEnumVals); 11970b57cec5SDimitry Andric 11980b57cec5SDimitry Andric // See which case values aren't in enum. 11990b57cec5SDimitry Andric for (CaseValsTy::const_iterator CI = CaseVals.begin(); 12000b57cec5SDimitry Andric CI != CaseVals.end(); CI++) { 12010b57cec5SDimitry Andric Expr *CaseExpr = CI->second->getLHS(); 12020b57cec5SDimitry Andric if (ShouldDiagnoseSwitchCaseNotInEnum(*this, ED, CaseExpr, EI, EIEnd, 12030b57cec5SDimitry Andric CI->first)) 12040b57cec5SDimitry Andric Diag(CaseExpr->getExprLoc(), diag::warn_not_in_enum) 12050b57cec5SDimitry Andric << CondTypeBeforePromotion; 12060b57cec5SDimitry Andric } 12070b57cec5SDimitry Andric 12080b57cec5SDimitry Andric // See which of case ranges aren't in enum 12090b57cec5SDimitry Andric EI = EnumVals.begin(); 12100b57cec5SDimitry Andric for (CaseRangesTy::const_iterator RI = CaseRanges.begin(); 12110b57cec5SDimitry Andric RI != CaseRanges.end(); RI++) { 12120b57cec5SDimitry Andric Expr *CaseExpr = RI->second->getLHS(); 12130b57cec5SDimitry Andric if (ShouldDiagnoseSwitchCaseNotInEnum(*this, ED, CaseExpr, EI, EIEnd, 12140b57cec5SDimitry Andric RI->first)) 12150b57cec5SDimitry Andric Diag(CaseExpr->getExprLoc(), diag::warn_not_in_enum) 12160b57cec5SDimitry Andric << CondTypeBeforePromotion; 12170b57cec5SDimitry Andric 12180b57cec5SDimitry Andric llvm::APSInt Hi = 12190b57cec5SDimitry Andric RI->second->getRHS()->EvaluateKnownConstInt(Context); 12200b57cec5SDimitry Andric AdjustAPSInt(Hi, CondWidth, CondIsSigned); 12210b57cec5SDimitry Andric 12220b57cec5SDimitry Andric CaseExpr = RI->second->getRHS(); 12230b57cec5SDimitry Andric if (ShouldDiagnoseSwitchCaseNotInEnum(*this, ED, CaseExpr, EI, EIEnd, 12240b57cec5SDimitry Andric Hi)) 12250b57cec5SDimitry Andric Diag(CaseExpr->getExprLoc(), diag::warn_not_in_enum) 12260b57cec5SDimitry Andric << CondTypeBeforePromotion; 12270b57cec5SDimitry Andric } 12280b57cec5SDimitry Andric 12290b57cec5SDimitry Andric // Check which enum vals aren't in switch 12300b57cec5SDimitry Andric auto CI = CaseVals.begin(); 12310b57cec5SDimitry Andric auto RI = CaseRanges.begin(); 12320b57cec5SDimitry Andric bool hasCasesNotInSwitch = false; 12330b57cec5SDimitry Andric 12340b57cec5SDimitry Andric SmallVector<DeclarationName,8> UnhandledNames; 12350b57cec5SDimitry Andric 12360b57cec5SDimitry Andric for (EI = EnumVals.begin(); EI != EIEnd; EI++) { 12370b57cec5SDimitry Andric // Don't warn about omitted unavailable EnumConstantDecls. 12380b57cec5SDimitry Andric switch (EI->second->getAvailability()) { 12390b57cec5SDimitry Andric case AR_Deprecated: 12400b57cec5SDimitry Andric // Omitting a deprecated constant is ok; it should never materialize. 12410b57cec5SDimitry Andric case AR_Unavailable: 12420b57cec5SDimitry Andric continue; 12430b57cec5SDimitry Andric 12440b57cec5SDimitry Andric case AR_NotYetIntroduced: 12450b57cec5SDimitry Andric // Partially available enum constants should be present. Note that we 12460b57cec5SDimitry Andric // suppress -Wunguarded-availability diagnostics for such uses. 12470b57cec5SDimitry Andric case AR_Available: 12480b57cec5SDimitry Andric break; 12490b57cec5SDimitry Andric } 12500b57cec5SDimitry Andric 12510b57cec5SDimitry Andric if (EI->second->hasAttr<UnusedAttr>()) 12520b57cec5SDimitry Andric continue; 12530b57cec5SDimitry Andric 12540b57cec5SDimitry Andric // Drop unneeded case values 12550b57cec5SDimitry Andric while (CI != CaseVals.end() && CI->first < EI->first) 12560b57cec5SDimitry Andric CI++; 12570b57cec5SDimitry Andric 12580b57cec5SDimitry Andric if (CI != CaseVals.end() && CI->first == EI->first) 12590b57cec5SDimitry Andric continue; 12600b57cec5SDimitry Andric 12610b57cec5SDimitry Andric // Drop unneeded case ranges 12620b57cec5SDimitry Andric for (; RI != CaseRanges.end(); RI++) { 12630b57cec5SDimitry Andric llvm::APSInt Hi = 12640b57cec5SDimitry Andric RI->second->getRHS()->EvaluateKnownConstInt(Context); 12650b57cec5SDimitry Andric AdjustAPSInt(Hi, CondWidth, CondIsSigned); 12660b57cec5SDimitry Andric if (EI->first <= Hi) 12670b57cec5SDimitry Andric break; 12680b57cec5SDimitry Andric } 12690b57cec5SDimitry Andric 12700b57cec5SDimitry Andric if (RI == CaseRanges.end() || EI->first < RI->first) { 12710b57cec5SDimitry Andric hasCasesNotInSwitch = true; 12720b57cec5SDimitry Andric UnhandledNames.push_back(EI->second->getDeclName()); 12730b57cec5SDimitry Andric } 12740b57cec5SDimitry Andric } 12750b57cec5SDimitry Andric 12760b57cec5SDimitry Andric if (TheDefaultStmt && UnhandledNames.empty() && ED->isClosedNonFlag()) 12770b57cec5SDimitry Andric Diag(TheDefaultStmt->getDefaultLoc(), diag::warn_unreachable_default); 12780b57cec5SDimitry Andric 12790b57cec5SDimitry Andric // Produce a nice diagnostic if multiple values aren't handled. 12800b57cec5SDimitry Andric if (!UnhandledNames.empty()) { 1281*e8d8bef9SDimitry Andric auto DB = Diag(CondExpr->getExprLoc(), TheDefaultStmt 1282*e8d8bef9SDimitry Andric ? diag::warn_def_missing_case 12830b57cec5SDimitry Andric : diag::warn_missing_case) 12840b57cec5SDimitry Andric << (int)UnhandledNames.size(); 12850b57cec5SDimitry Andric 12860b57cec5SDimitry Andric for (size_t I = 0, E = std::min(UnhandledNames.size(), (size_t)3); 12870b57cec5SDimitry Andric I != E; ++I) 12880b57cec5SDimitry Andric DB << UnhandledNames[I]; 12890b57cec5SDimitry Andric } 12900b57cec5SDimitry Andric 12910b57cec5SDimitry Andric if (!hasCasesNotInSwitch) 12920b57cec5SDimitry Andric SS->setAllEnumCasesCovered(); 12930b57cec5SDimitry Andric } 12940b57cec5SDimitry Andric } 12950b57cec5SDimitry Andric 12960b57cec5SDimitry Andric if (BodyStmt) 12970b57cec5SDimitry Andric DiagnoseEmptyStmtBody(CondExpr->getEndLoc(), BodyStmt, 12980b57cec5SDimitry Andric diag::warn_empty_switch_body); 12990b57cec5SDimitry Andric 13000b57cec5SDimitry Andric // FIXME: If the case list was broken is some way, we don't have a good system 13010b57cec5SDimitry Andric // to patch it up. Instead, just return the whole substmt as broken. 13020b57cec5SDimitry Andric if (CaseListIsErroneous) 13030b57cec5SDimitry Andric return StmtError(); 13040b57cec5SDimitry Andric 13050b57cec5SDimitry Andric return SS; 13060b57cec5SDimitry Andric } 13070b57cec5SDimitry Andric 13080b57cec5SDimitry Andric void 13090b57cec5SDimitry Andric Sema::DiagnoseAssignmentEnum(QualType DstType, QualType SrcType, 13100b57cec5SDimitry Andric Expr *SrcExpr) { 13110b57cec5SDimitry Andric if (Diags.isIgnored(diag::warn_not_in_enum_assignment, SrcExpr->getExprLoc())) 13120b57cec5SDimitry Andric return; 13130b57cec5SDimitry Andric 13140b57cec5SDimitry Andric if (const EnumType *ET = DstType->getAs<EnumType>()) 13150b57cec5SDimitry Andric if (!Context.hasSameUnqualifiedType(SrcType, DstType) && 13160b57cec5SDimitry Andric SrcType->isIntegerType()) { 13170b57cec5SDimitry Andric if (!SrcExpr->isTypeDependent() && !SrcExpr->isValueDependent() && 13180b57cec5SDimitry Andric SrcExpr->isIntegerConstantExpr(Context)) { 13190b57cec5SDimitry Andric // Get the bitwidth of the enum value before promotions. 13200b57cec5SDimitry Andric unsigned DstWidth = Context.getIntWidth(DstType); 13210b57cec5SDimitry Andric bool DstIsSigned = DstType->isSignedIntegerOrEnumerationType(); 13220b57cec5SDimitry Andric 13230b57cec5SDimitry Andric llvm::APSInt RhsVal = SrcExpr->EvaluateKnownConstInt(Context); 13240b57cec5SDimitry Andric AdjustAPSInt(RhsVal, DstWidth, DstIsSigned); 13250b57cec5SDimitry Andric const EnumDecl *ED = ET->getDecl(); 13260b57cec5SDimitry Andric 13270b57cec5SDimitry Andric if (!ED->isClosed()) 13280b57cec5SDimitry Andric return; 13290b57cec5SDimitry Andric 13300b57cec5SDimitry Andric if (ED->hasAttr<FlagEnumAttr>()) { 13310b57cec5SDimitry Andric if (!IsValueInFlagEnum(ED, RhsVal, true)) 13320b57cec5SDimitry Andric Diag(SrcExpr->getExprLoc(), diag::warn_not_in_enum_assignment) 13330b57cec5SDimitry Andric << DstType.getUnqualifiedType(); 13340b57cec5SDimitry Andric } else { 13350b57cec5SDimitry Andric typedef SmallVector<std::pair<llvm::APSInt, EnumConstantDecl *>, 64> 13360b57cec5SDimitry Andric EnumValsTy; 13370b57cec5SDimitry Andric EnumValsTy EnumVals; 13380b57cec5SDimitry Andric 13390b57cec5SDimitry Andric // Gather all enum values, set their type and sort them, 13400b57cec5SDimitry Andric // allowing easier comparison with rhs constant. 13410b57cec5SDimitry Andric for (auto *EDI : ED->enumerators()) { 13420b57cec5SDimitry Andric llvm::APSInt Val = EDI->getInitVal(); 13430b57cec5SDimitry Andric AdjustAPSInt(Val, DstWidth, DstIsSigned); 13440b57cec5SDimitry Andric EnumVals.push_back(std::make_pair(Val, EDI)); 13450b57cec5SDimitry Andric } 13460b57cec5SDimitry Andric if (EnumVals.empty()) 13470b57cec5SDimitry Andric return; 13480b57cec5SDimitry Andric llvm::stable_sort(EnumVals, CmpEnumVals); 13490b57cec5SDimitry Andric EnumValsTy::iterator EIend = 13500b57cec5SDimitry Andric std::unique(EnumVals.begin(), EnumVals.end(), EqEnumVals); 13510b57cec5SDimitry Andric 13520b57cec5SDimitry Andric // See which values aren't in the enum. 13530b57cec5SDimitry Andric EnumValsTy::const_iterator EI = EnumVals.begin(); 13540b57cec5SDimitry Andric while (EI != EIend && EI->first < RhsVal) 13550b57cec5SDimitry Andric EI++; 13560b57cec5SDimitry Andric if (EI == EIend || EI->first != RhsVal) { 13570b57cec5SDimitry Andric Diag(SrcExpr->getExprLoc(), diag::warn_not_in_enum_assignment) 13580b57cec5SDimitry Andric << DstType.getUnqualifiedType(); 13590b57cec5SDimitry Andric } 13600b57cec5SDimitry Andric } 13610b57cec5SDimitry Andric } 13620b57cec5SDimitry Andric } 13630b57cec5SDimitry Andric } 13640b57cec5SDimitry Andric 13655ffd83dbSDimitry Andric StmtResult Sema::ActOnWhileStmt(SourceLocation WhileLoc, 13665ffd83dbSDimitry Andric SourceLocation LParenLoc, ConditionResult Cond, 13675ffd83dbSDimitry Andric SourceLocation RParenLoc, Stmt *Body) { 13680b57cec5SDimitry Andric if (Cond.isInvalid()) 13690b57cec5SDimitry Andric return StmtError(); 13700b57cec5SDimitry Andric 13710b57cec5SDimitry Andric auto CondVal = Cond.get(); 13720b57cec5SDimitry Andric CheckBreakContinueBinding(CondVal.second); 13730b57cec5SDimitry Andric 13740b57cec5SDimitry Andric if (CondVal.second && 13750b57cec5SDimitry Andric !Diags.isIgnored(diag::warn_comma_operator, CondVal.second->getExprLoc())) 13760b57cec5SDimitry Andric CommaVisitor(*this).Visit(CondVal.second); 13770b57cec5SDimitry Andric 13780b57cec5SDimitry Andric if (isa<NullStmt>(Body)) 13790b57cec5SDimitry Andric getCurCompoundScope().setHasEmptyLoopBodies(); 13800b57cec5SDimitry Andric 13810b57cec5SDimitry Andric return WhileStmt::Create(Context, CondVal.first, CondVal.second, Body, 13825ffd83dbSDimitry Andric WhileLoc, LParenLoc, RParenLoc); 13830b57cec5SDimitry Andric } 13840b57cec5SDimitry Andric 13850b57cec5SDimitry Andric StmtResult 13860b57cec5SDimitry Andric Sema::ActOnDoStmt(SourceLocation DoLoc, Stmt *Body, 13870b57cec5SDimitry Andric SourceLocation WhileLoc, SourceLocation CondLParen, 13880b57cec5SDimitry Andric Expr *Cond, SourceLocation CondRParen) { 13890b57cec5SDimitry Andric assert(Cond && "ActOnDoStmt(): missing expression"); 13900b57cec5SDimitry Andric 13910b57cec5SDimitry Andric CheckBreakContinueBinding(Cond); 13920b57cec5SDimitry Andric ExprResult CondResult = CheckBooleanCondition(DoLoc, Cond); 13930b57cec5SDimitry Andric if (CondResult.isInvalid()) 13940b57cec5SDimitry Andric return StmtError(); 13950b57cec5SDimitry Andric Cond = CondResult.get(); 13960b57cec5SDimitry Andric 13970b57cec5SDimitry Andric CondResult = ActOnFinishFullExpr(Cond, DoLoc, /*DiscardedValue*/ false); 13980b57cec5SDimitry Andric if (CondResult.isInvalid()) 13990b57cec5SDimitry Andric return StmtError(); 14000b57cec5SDimitry Andric Cond = CondResult.get(); 14010b57cec5SDimitry Andric 14020b57cec5SDimitry Andric // Only call the CommaVisitor for C89 due to differences in scope flags. 14030b57cec5SDimitry Andric if (Cond && !getLangOpts().C99 && !getLangOpts().CPlusPlus && 14040b57cec5SDimitry Andric !Diags.isIgnored(diag::warn_comma_operator, Cond->getExprLoc())) 14050b57cec5SDimitry Andric CommaVisitor(*this).Visit(Cond); 14060b57cec5SDimitry Andric 14070b57cec5SDimitry Andric return new (Context) DoStmt(Body, Cond, DoLoc, WhileLoc, CondRParen); 14080b57cec5SDimitry Andric } 14090b57cec5SDimitry Andric 14100b57cec5SDimitry Andric namespace { 14110b57cec5SDimitry Andric // Use SetVector since the diagnostic cares about the ordering of the Decl's. 14120b57cec5SDimitry Andric using DeclSetVector = 14130b57cec5SDimitry Andric llvm::SetVector<VarDecl *, llvm::SmallVector<VarDecl *, 8>, 14140b57cec5SDimitry Andric llvm::SmallPtrSet<VarDecl *, 8>>; 14150b57cec5SDimitry Andric 14160b57cec5SDimitry Andric // This visitor will traverse a conditional statement and store all 14170b57cec5SDimitry Andric // the evaluated decls into a vector. Simple is set to true if none 14180b57cec5SDimitry Andric // of the excluded constructs are used. 14190b57cec5SDimitry Andric class DeclExtractor : public EvaluatedExprVisitor<DeclExtractor> { 14200b57cec5SDimitry Andric DeclSetVector &Decls; 14210b57cec5SDimitry Andric SmallVectorImpl<SourceRange> &Ranges; 14220b57cec5SDimitry Andric bool Simple; 14230b57cec5SDimitry Andric public: 14240b57cec5SDimitry Andric typedef EvaluatedExprVisitor<DeclExtractor> Inherited; 14250b57cec5SDimitry Andric 14260b57cec5SDimitry Andric DeclExtractor(Sema &S, DeclSetVector &Decls, 14270b57cec5SDimitry Andric SmallVectorImpl<SourceRange> &Ranges) : 14280b57cec5SDimitry Andric Inherited(S.Context), 14290b57cec5SDimitry Andric Decls(Decls), 14300b57cec5SDimitry Andric Ranges(Ranges), 14310b57cec5SDimitry Andric Simple(true) {} 14320b57cec5SDimitry Andric 14330b57cec5SDimitry Andric bool isSimple() { return Simple; } 14340b57cec5SDimitry Andric 14350b57cec5SDimitry Andric // Replaces the method in EvaluatedExprVisitor. 14360b57cec5SDimitry Andric void VisitMemberExpr(MemberExpr* E) { 14370b57cec5SDimitry Andric Simple = false; 14380b57cec5SDimitry Andric } 14390b57cec5SDimitry Andric 14405ffd83dbSDimitry Andric // Any Stmt not explicitly listed will cause the condition to be marked 14415ffd83dbSDimitry Andric // complex. 14425ffd83dbSDimitry Andric void VisitStmt(Stmt *S) { Simple = false; } 14430b57cec5SDimitry Andric 14440b57cec5SDimitry Andric void VisitBinaryOperator(BinaryOperator *E) { 14450b57cec5SDimitry Andric Visit(E->getLHS()); 14460b57cec5SDimitry Andric Visit(E->getRHS()); 14470b57cec5SDimitry Andric } 14480b57cec5SDimitry Andric 14490b57cec5SDimitry Andric void VisitCastExpr(CastExpr *E) { 14500b57cec5SDimitry Andric Visit(E->getSubExpr()); 14510b57cec5SDimitry Andric } 14520b57cec5SDimitry Andric 14530b57cec5SDimitry Andric void VisitUnaryOperator(UnaryOperator *E) { 14540b57cec5SDimitry Andric // Skip checking conditionals with derefernces. 14550b57cec5SDimitry Andric if (E->getOpcode() == UO_Deref) 14560b57cec5SDimitry Andric Simple = false; 14570b57cec5SDimitry Andric else 14580b57cec5SDimitry Andric Visit(E->getSubExpr()); 14590b57cec5SDimitry Andric } 14600b57cec5SDimitry Andric 14610b57cec5SDimitry Andric void VisitConditionalOperator(ConditionalOperator *E) { 14620b57cec5SDimitry Andric Visit(E->getCond()); 14630b57cec5SDimitry Andric Visit(E->getTrueExpr()); 14640b57cec5SDimitry Andric Visit(E->getFalseExpr()); 14650b57cec5SDimitry Andric } 14660b57cec5SDimitry Andric 14670b57cec5SDimitry Andric void VisitParenExpr(ParenExpr *E) { 14680b57cec5SDimitry Andric Visit(E->getSubExpr()); 14690b57cec5SDimitry Andric } 14700b57cec5SDimitry Andric 14710b57cec5SDimitry Andric void VisitBinaryConditionalOperator(BinaryConditionalOperator *E) { 14720b57cec5SDimitry Andric Visit(E->getOpaqueValue()->getSourceExpr()); 14730b57cec5SDimitry Andric Visit(E->getFalseExpr()); 14740b57cec5SDimitry Andric } 14750b57cec5SDimitry Andric 14760b57cec5SDimitry Andric void VisitIntegerLiteral(IntegerLiteral *E) { } 14770b57cec5SDimitry Andric void VisitFloatingLiteral(FloatingLiteral *E) { } 14780b57cec5SDimitry Andric void VisitCXXBoolLiteralExpr(CXXBoolLiteralExpr *E) { } 14790b57cec5SDimitry Andric void VisitCharacterLiteral(CharacterLiteral *E) { } 14800b57cec5SDimitry Andric void VisitGNUNullExpr(GNUNullExpr *E) { } 14810b57cec5SDimitry Andric void VisitImaginaryLiteral(ImaginaryLiteral *E) { } 14820b57cec5SDimitry Andric 14830b57cec5SDimitry Andric void VisitDeclRefExpr(DeclRefExpr *E) { 14840b57cec5SDimitry Andric VarDecl *VD = dyn_cast<VarDecl>(E->getDecl()); 14850b57cec5SDimitry Andric if (!VD) { 14860b57cec5SDimitry Andric // Don't allow unhandled Decl types. 14870b57cec5SDimitry Andric Simple = false; 14880b57cec5SDimitry Andric return; 14890b57cec5SDimitry Andric } 14900b57cec5SDimitry Andric 14910b57cec5SDimitry Andric Ranges.push_back(E->getSourceRange()); 14920b57cec5SDimitry Andric 14930b57cec5SDimitry Andric Decls.insert(VD); 14940b57cec5SDimitry Andric } 14950b57cec5SDimitry Andric 14960b57cec5SDimitry Andric }; // end class DeclExtractor 14970b57cec5SDimitry Andric 14980b57cec5SDimitry Andric // DeclMatcher checks to see if the decls are used in a non-evaluated 14990b57cec5SDimitry Andric // context. 15000b57cec5SDimitry Andric class DeclMatcher : public EvaluatedExprVisitor<DeclMatcher> { 15010b57cec5SDimitry Andric DeclSetVector &Decls; 15020b57cec5SDimitry Andric bool FoundDecl; 15030b57cec5SDimitry Andric 15040b57cec5SDimitry Andric public: 15050b57cec5SDimitry Andric typedef EvaluatedExprVisitor<DeclMatcher> Inherited; 15060b57cec5SDimitry Andric 15070b57cec5SDimitry Andric DeclMatcher(Sema &S, DeclSetVector &Decls, Stmt *Statement) : 15080b57cec5SDimitry Andric Inherited(S.Context), Decls(Decls), FoundDecl(false) { 15090b57cec5SDimitry Andric if (!Statement) return; 15100b57cec5SDimitry Andric 15110b57cec5SDimitry Andric Visit(Statement); 15120b57cec5SDimitry Andric } 15130b57cec5SDimitry Andric 15140b57cec5SDimitry Andric void VisitReturnStmt(ReturnStmt *S) { 15150b57cec5SDimitry Andric FoundDecl = true; 15160b57cec5SDimitry Andric } 15170b57cec5SDimitry Andric 15180b57cec5SDimitry Andric void VisitBreakStmt(BreakStmt *S) { 15190b57cec5SDimitry Andric FoundDecl = true; 15200b57cec5SDimitry Andric } 15210b57cec5SDimitry Andric 15220b57cec5SDimitry Andric void VisitGotoStmt(GotoStmt *S) { 15230b57cec5SDimitry Andric FoundDecl = true; 15240b57cec5SDimitry Andric } 15250b57cec5SDimitry Andric 15260b57cec5SDimitry Andric void VisitCastExpr(CastExpr *E) { 15270b57cec5SDimitry Andric if (E->getCastKind() == CK_LValueToRValue) 15280b57cec5SDimitry Andric CheckLValueToRValueCast(E->getSubExpr()); 15290b57cec5SDimitry Andric else 15300b57cec5SDimitry Andric Visit(E->getSubExpr()); 15310b57cec5SDimitry Andric } 15320b57cec5SDimitry Andric 15330b57cec5SDimitry Andric void CheckLValueToRValueCast(Expr *E) { 15340b57cec5SDimitry Andric E = E->IgnoreParenImpCasts(); 15350b57cec5SDimitry Andric 15360b57cec5SDimitry Andric if (isa<DeclRefExpr>(E)) { 15370b57cec5SDimitry Andric return; 15380b57cec5SDimitry Andric } 15390b57cec5SDimitry Andric 15400b57cec5SDimitry Andric if (ConditionalOperator *CO = dyn_cast<ConditionalOperator>(E)) { 15410b57cec5SDimitry Andric Visit(CO->getCond()); 15420b57cec5SDimitry Andric CheckLValueToRValueCast(CO->getTrueExpr()); 15430b57cec5SDimitry Andric CheckLValueToRValueCast(CO->getFalseExpr()); 15440b57cec5SDimitry Andric return; 15450b57cec5SDimitry Andric } 15460b57cec5SDimitry Andric 15470b57cec5SDimitry Andric if (BinaryConditionalOperator *BCO = 15480b57cec5SDimitry Andric dyn_cast<BinaryConditionalOperator>(E)) { 15490b57cec5SDimitry Andric CheckLValueToRValueCast(BCO->getOpaqueValue()->getSourceExpr()); 15500b57cec5SDimitry Andric CheckLValueToRValueCast(BCO->getFalseExpr()); 15510b57cec5SDimitry Andric return; 15520b57cec5SDimitry Andric } 15530b57cec5SDimitry Andric 15540b57cec5SDimitry Andric Visit(E); 15550b57cec5SDimitry Andric } 15560b57cec5SDimitry Andric 15570b57cec5SDimitry Andric void VisitDeclRefExpr(DeclRefExpr *E) { 15580b57cec5SDimitry Andric if (VarDecl *VD = dyn_cast<VarDecl>(E->getDecl())) 15590b57cec5SDimitry Andric if (Decls.count(VD)) 15600b57cec5SDimitry Andric FoundDecl = true; 15610b57cec5SDimitry Andric } 15620b57cec5SDimitry Andric 15630b57cec5SDimitry Andric void VisitPseudoObjectExpr(PseudoObjectExpr *POE) { 15640b57cec5SDimitry Andric // Only need to visit the semantics for POE. 15650b57cec5SDimitry Andric // SyntaticForm doesn't really use the Decal. 15660b57cec5SDimitry Andric for (auto *S : POE->semantics()) { 15670b57cec5SDimitry Andric if (auto *OVE = dyn_cast<OpaqueValueExpr>(S)) 15680b57cec5SDimitry Andric // Look past the OVE into the expression it binds. 15690b57cec5SDimitry Andric Visit(OVE->getSourceExpr()); 15700b57cec5SDimitry Andric else 15710b57cec5SDimitry Andric Visit(S); 15720b57cec5SDimitry Andric } 15730b57cec5SDimitry Andric } 15740b57cec5SDimitry Andric 15750b57cec5SDimitry Andric bool FoundDeclInUse() { return FoundDecl; } 15760b57cec5SDimitry Andric 15770b57cec5SDimitry Andric }; // end class DeclMatcher 15780b57cec5SDimitry Andric 15790b57cec5SDimitry Andric void CheckForLoopConditionalStatement(Sema &S, Expr *Second, 15800b57cec5SDimitry Andric Expr *Third, Stmt *Body) { 15810b57cec5SDimitry Andric // Condition is empty 15820b57cec5SDimitry Andric if (!Second) return; 15830b57cec5SDimitry Andric 15840b57cec5SDimitry Andric if (S.Diags.isIgnored(diag::warn_variables_not_in_loop_body, 15850b57cec5SDimitry Andric Second->getBeginLoc())) 15860b57cec5SDimitry Andric return; 15870b57cec5SDimitry Andric 15880b57cec5SDimitry Andric PartialDiagnostic PDiag = S.PDiag(diag::warn_variables_not_in_loop_body); 15890b57cec5SDimitry Andric DeclSetVector Decls; 15900b57cec5SDimitry Andric SmallVector<SourceRange, 10> Ranges; 15910b57cec5SDimitry Andric DeclExtractor DE(S, Decls, Ranges); 15920b57cec5SDimitry Andric DE.Visit(Second); 15930b57cec5SDimitry Andric 15940b57cec5SDimitry Andric // Don't analyze complex conditionals. 15950b57cec5SDimitry Andric if (!DE.isSimple()) return; 15960b57cec5SDimitry Andric 15970b57cec5SDimitry Andric // No decls found. 15980b57cec5SDimitry Andric if (Decls.size() == 0) return; 15990b57cec5SDimitry Andric 16000b57cec5SDimitry Andric // Don't warn on volatile, static, or global variables. 16010b57cec5SDimitry Andric for (auto *VD : Decls) 16020b57cec5SDimitry Andric if (VD->getType().isVolatileQualified() || VD->hasGlobalStorage()) 16030b57cec5SDimitry Andric return; 16040b57cec5SDimitry Andric 16050b57cec5SDimitry Andric if (DeclMatcher(S, Decls, Second).FoundDeclInUse() || 16060b57cec5SDimitry Andric DeclMatcher(S, Decls, Third).FoundDeclInUse() || 16070b57cec5SDimitry Andric DeclMatcher(S, Decls, Body).FoundDeclInUse()) 16080b57cec5SDimitry Andric return; 16090b57cec5SDimitry Andric 16100b57cec5SDimitry Andric // Load decl names into diagnostic. 16110b57cec5SDimitry Andric if (Decls.size() > 4) { 16120b57cec5SDimitry Andric PDiag << 0; 16130b57cec5SDimitry Andric } else { 16140b57cec5SDimitry Andric PDiag << (unsigned)Decls.size(); 16150b57cec5SDimitry Andric for (auto *VD : Decls) 16160b57cec5SDimitry Andric PDiag << VD->getDeclName(); 16170b57cec5SDimitry Andric } 16180b57cec5SDimitry Andric 16190b57cec5SDimitry Andric for (auto Range : Ranges) 16200b57cec5SDimitry Andric PDiag << Range; 16210b57cec5SDimitry Andric 16220b57cec5SDimitry Andric S.Diag(Ranges.begin()->getBegin(), PDiag); 16230b57cec5SDimitry Andric } 16240b57cec5SDimitry Andric 16250b57cec5SDimitry Andric // If Statement is an incemement or decrement, return true and sets the 16260b57cec5SDimitry Andric // variables Increment and DRE. 16270b57cec5SDimitry Andric bool ProcessIterationStmt(Sema &S, Stmt* Statement, bool &Increment, 16280b57cec5SDimitry Andric DeclRefExpr *&DRE) { 16290b57cec5SDimitry Andric if (auto Cleanups = dyn_cast<ExprWithCleanups>(Statement)) 16300b57cec5SDimitry Andric if (!Cleanups->cleanupsHaveSideEffects()) 16310b57cec5SDimitry Andric Statement = Cleanups->getSubExpr(); 16320b57cec5SDimitry Andric 16330b57cec5SDimitry Andric if (UnaryOperator *UO = dyn_cast<UnaryOperator>(Statement)) { 16340b57cec5SDimitry Andric switch (UO->getOpcode()) { 16350b57cec5SDimitry Andric default: return false; 16360b57cec5SDimitry Andric case UO_PostInc: 16370b57cec5SDimitry Andric case UO_PreInc: 16380b57cec5SDimitry Andric Increment = true; 16390b57cec5SDimitry Andric break; 16400b57cec5SDimitry Andric case UO_PostDec: 16410b57cec5SDimitry Andric case UO_PreDec: 16420b57cec5SDimitry Andric Increment = false; 16430b57cec5SDimitry Andric break; 16440b57cec5SDimitry Andric } 16450b57cec5SDimitry Andric DRE = dyn_cast<DeclRefExpr>(UO->getSubExpr()); 16460b57cec5SDimitry Andric return DRE; 16470b57cec5SDimitry Andric } 16480b57cec5SDimitry Andric 16490b57cec5SDimitry Andric if (CXXOperatorCallExpr *Call = dyn_cast<CXXOperatorCallExpr>(Statement)) { 16500b57cec5SDimitry Andric FunctionDecl *FD = Call->getDirectCallee(); 16510b57cec5SDimitry Andric if (!FD || !FD->isOverloadedOperator()) return false; 16520b57cec5SDimitry Andric switch (FD->getOverloadedOperator()) { 16530b57cec5SDimitry Andric default: return false; 16540b57cec5SDimitry Andric case OO_PlusPlus: 16550b57cec5SDimitry Andric Increment = true; 16560b57cec5SDimitry Andric break; 16570b57cec5SDimitry Andric case OO_MinusMinus: 16580b57cec5SDimitry Andric Increment = false; 16590b57cec5SDimitry Andric break; 16600b57cec5SDimitry Andric } 16610b57cec5SDimitry Andric DRE = dyn_cast<DeclRefExpr>(Call->getArg(0)); 16620b57cec5SDimitry Andric return DRE; 16630b57cec5SDimitry Andric } 16640b57cec5SDimitry Andric 16650b57cec5SDimitry Andric return false; 16660b57cec5SDimitry Andric } 16670b57cec5SDimitry Andric 16680b57cec5SDimitry Andric // A visitor to determine if a continue or break statement is a 16690b57cec5SDimitry Andric // subexpression. 16700b57cec5SDimitry Andric class BreakContinueFinder : public ConstEvaluatedExprVisitor<BreakContinueFinder> { 16710b57cec5SDimitry Andric SourceLocation BreakLoc; 16720b57cec5SDimitry Andric SourceLocation ContinueLoc; 16730b57cec5SDimitry Andric bool InSwitch = false; 16740b57cec5SDimitry Andric 16750b57cec5SDimitry Andric public: 16760b57cec5SDimitry Andric BreakContinueFinder(Sema &S, const Stmt* Body) : 16770b57cec5SDimitry Andric Inherited(S.Context) { 16780b57cec5SDimitry Andric Visit(Body); 16790b57cec5SDimitry Andric } 16800b57cec5SDimitry Andric 16810b57cec5SDimitry Andric typedef ConstEvaluatedExprVisitor<BreakContinueFinder> Inherited; 16820b57cec5SDimitry Andric 16830b57cec5SDimitry Andric void VisitContinueStmt(const ContinueStmt* E) { 16840b57cec5SDimitry Andric ContinueLoc = E->getContinueLoc(); 16850b57cec5SDimitry Andric } 16860b57cec5SDimitry Andric 16870b57cec5SDimitry Andric void VisitBreakStmt(const BreakStmt* E) { 16880b57cec5SDimitry Andric if (!InSwitch) 16890b57cec5SDimitry Andric BreakLoc = E->getBreakLoc(); 16900b57cec5SDimitry Andric } 16910b57cec5SDimitry Andric 16920b57cec5SDimitry Andric void VisitSwitchStmt(const SwitchStmt* S) { 16930b57cec5SDimitry Andric if (const Stmt *Init = S->getInit()) 16940b57cec5SDimitry Andric Visit(Init); 16950b57cec5SDimitry Andric if (const Stmt *CondVar = S->getConditionVariableDeclStmt()) 16960b57cec5SDimitry Andric Visit(CondVar); 16970b57cec5SDimitry Andric if (const Stmt *Cond = S->getCond()) 16980b57cec5SDimitry Andric Visit(Cond); 16990b57cec5SDimitry Andric 17000b57cec5SDimitry Andric // Don't return break statements from the body of a switch. 17010b57cec5SDimitry Andric InSwitch = true; 17020b57cec5SDimitry Andric if (const Stmt *Body = S->getBody()) 17030b57cec5SDimitry Andric Visit(Body); 17040b57cec5SDimitry Andric InSwitch = false; 17050b57cec5SDimitry Andric } 17060b57cec5SDimitry Andric 17070b57cec5SDimitry Andric void VisitForStmt(const ForStmt *S) { 17080b57cec5SDimitry Andric // Only visit the init statement of a for loop; the body 17090b57cec5SDimitry Andric // has a different break/continue scope. 17100b57cec5SDimitry Andric if (const Stmt *Init = S->getInit()) 17110b57cec5SDimitry Andric Visit(Init); 17120b57cec5SDimitry Andric } 17130b57cec5SDimitry Andric 17140b57cec5SDimitry Andric void VisitWhileStmt(const WhileStmt *) { 17150b57cec5SDimitry Andric // Do nothing; the children of a while loop have a different 17160b57cec5SDimitry Andric // break/continue scope. 17170b57cec5SDimitry Andric } 17180b57cec5SDimitry Andric 17190b57cec5SDimitry Andric void VisitDoStmt(const DoStmt *) { 17200b57cec5SDimitry Andric // Do nothing; the children of a while loop have a different 17210b57cec5SDimitry Andric // break/continue scope. 17220b57cec5SDimitry Andric } 17230b57cec5SDimitry Andric 17240b57cec5SDimitry Andric void VisitCXXForRangeStmt(const CXXForRangeStmt *S) { 17250b57cec5SDimitry Andric // Only visit the initialization of a for loop; the body 17260b57cec5SDimitry Andric // has a different break/continue scope. 17270b57cec5SDimitry Andric if (const Stmt *Init = S->getInit()) 17280b57cec5SDimitry Andric Visit(Init); 17290b57cec5SDimitry Andric if (const Stmt *Range = S->getRangeStmt()) 17300b57cec5SDimitry Andric Visit(Range); 17310b57cec5SDimitry Andric if (const Stmt *Begin = S->getBeginStmt()) 17320b57cec5SDimitry Andric Visit(Begin); 17330b57cec5SDimitry Andric if (const Stmt *End = S->getEndStmt()) 17340b57cec5SDimitry Andric Visit(End); 17350b57cec5SDimitry Andric } 17360b57cec5SDimitry Andric 17370b57cec5SDimitry Andric void VisitObjCForCollectionStmt(const ObjCForCollectionStmt *S) { 17380b57cec5SDimitry Andric // Only visit the initialization of a for loop; the body 17390b57cec5SDimitry Andric // has a different break/continue scope. 17400b57cec5SDimitry Andric if (const Stmt *Element = S->getElement()) 17410b57cec5SDimitry Andric Visit(Element); 17420b57cec5SDimitry Andric if (const Stmt *Collection = S->getCollection()) 17430b57cec5SDimitry Andric Visit(Collection); 17440b57cec5SDimitry Andric } 17450b57cec5SDimitry Andric 17460b57cec5SDimitry Andric bool ContinueFound() { return ContinueLoc.isValid(); } 17470b57cec5SDimitry Andric bool BreakFound() { return BreakLoc.isValid(); } 17480b57cec5SDimitry Andric SourceLocation GetContinueLoc() { return ContinueLoc; } 17490b57cec5SDimitry Andric SourceLocation GetBreakLoc() { return BreakLoc; } 17500b57cec5SDimitry Andric 17510b57cec5SDimitry Andric }; // end class BreakContinueFinder 17520b57cec5SDimitry Andric 17530b57cec5SDimitry Andric // Emit a warning when a loop increment/decrement appears twice per loop 17540b57cec5SDimitry Andric // iteration. The conditions which trigger this warning are: 17550b57cec5SDimitry Andric // 1) The last statement in the loop body and the third expression in the 17560b57cec5SDimitry Andric // for loop are both increment or both decrement of the same variable 17570b57cec5SDimitry Andric // 2) No continue statements in the loop body. 17580b57cec5SDimitry Andric void CheckForRedundantIteration(Sema &S, Expr *Third, Stmt *Body) { 17590b57cec5SDimitry Andric // Return when there is nothing to check. 17600b57cec5SDimitry Andric if (!Body || !Third) return; 17610b57cec5SDimitry Andric 17620b57cec5SDimitry Andric if (S.Diags.isIgnored(diag::warn_redundant_loop_iteration, 17630b57cec5SDimitry Andric Third->getBeginLoc())) 17640b57cec5SDimitry Andric return; 17650b57cec5SDimitry Andric 17660b57cec5SDimitry Andric // Get the last statement from the loop body. 17670b57cec5SDimitry Andric CompoundStmt *CS = dyn_cast<CompoundStmt>(Body); 17680b57cec5SDimitry Andric if (!CS || CS->body_empty()) return; 17690b57cec5SDimitry Andric Stmt *LastStmt = CS->body_back(); 17700b57cec5SDimitry Andric if (!LastStmt) return; 17710b57cec5SDimitry Andric 17720b57cec5SDimitry Andric bool LoopIncrement, LastIncrement; 17730b57cec5SDimitry Andric DeclRefExpr *LoopDRE, *LastDRE; 17740b57cec5SDimitry Andric 17750b57cec5SDimitry Andric if (!ProcessIterationStmt(S, Third, LoopIncrement, LoopDRE)) return; 17760b57cec5SDimitry Andric if (!ProcessIterationStmt(S, LastStmt, LastIncrement, LastDRE)) return; 17770b57cec5SDimitry Andric 17780b57cec5SDimitry Andric // Check that the two statements are both increments or both decrements 17790b57cec5SDimitry Andric // on the same variable. 17800b57cec5SDimitry Andric if (LoopIncrement != LastIncrement || 17810b57cec5SDimitry Andric LoopDRE->getDecl() != LastDRE->getDecl()) return; 17820b57cec5SDimitry Andric 17830b57cec5SDimitry Andric if (BreakContinueFinder(S, Body).ContinueFound()) return; 17840b57cec5SDimitry Andric 17850b57cec5SDimitry Andric S.Diag(LastDRE->getLocation(), diag::warn_redundant_loop_iteration) 17860b57cec5SDimitry Andric << LastDRE->getDecl() << LastIncrement; 17870b57cec5SDimitry Andric S.Diag(LoopDRE->getLocation(), diag::note_loop_iteration_here) 17880b57cec5SDimitry Andric << LoopIncrement; 17890b57cec5SDimitry Andric } 17900b57cec5SDimitry Andric 17910b57cec5SDimitry Andric } // end namespace 17920b57cec5SDimitry Andric 17930b57cec5SDimitry Andric 17940b57cec5SDimitry Andric void Sema::CheckBreakContinueBinding(Expr *E) { 17950b57cec5SDimitry Andric if (!E || getLangOpts().CPlusPlus) 17960b57cec5SDimitry Andric return; 17970b57cec5SDimitry Andric BreakContinueFinder BCFinder(*this, E); 17980b57cec5SDimitry Andric Scope *BreakParent = CurScope->getBreakParent(); 17990b57cec5SDimitry Andric if (BCFinder.BreakFound() && BreakParent) { 18000b57cec5SDimitry Andric if (BreakParent->getFlags() & Scope::SwitchScope) { 18010b57cec5SDimitry Andric Diag(BCFinder.GetBreakLoc(), diag::warn_break_binds_to_switch); 18020b57cec5SDimitry Andric } else { 18030b57cec5SDimitry Andric Diag(BCFinder.GetBreakLoc(), diag::warn_loop_ctrl_binds_to_inner) 18040b57cec5SDimitry Andric << "break"; 18050b57cec5SDimitry Andric } 18060b57cec5SDimitry Andric } else if (BCFinder.ContinueFound() && CurScope->getContinueParent()) { 18070b57cec5SDimitry Andric Diag(BCFinder.GetContinueLoc(), diag::warn_loop_ctrl_binds_to_inner) 18080b57cec5SDimitry Andric << "continue"; 18090b57cec5SDimitry Andric } 18100b57cec5SDimitry Andric } 18110b57cec5SDimitry Andric 18120b57cec5SDimitry Andric StmtResult Sema::ActOnForStmt(SourceLocation ForLoc, SourceLocation LParenLoc, 18130b57cec5SDimitry Andric Stmt *First, ConditionResult Second, 18140b57cec5SDimitry Andric FullExprArg third, SourceLocation RParenLoc, 18150b57cec5SDimitry Andric Stmt *Body) { 18160b57cec5SDimitry Andric if (Second.isInvalid()) 18170b57cec5SDimitry Andric return StmtError(); 18180b57cec5SDimitry Andric 18190b57cec5SDimitry Andric if (!getLangOpts().CPlusPlus) { 18200b57cec5SDimitry Andric if (DeclStmt *DS = dyn_cast_or_null<DeclStmt>(First)) { 18210b57cec5SDimitry Andric // C99 6.8.5p3: The declaration part of a 'for' statement shall only 18220b57cec5SDimitry Andric // declare identifiers for objects having storage class 'auto' or 18230b57cec5SDimitry Andric // 'register'. 1824*e8d8bef9SDimitry Andric const Decl *NonVarSeen = nullptr; 1825*e8d8bef9SDimitry Andric bool VarDeclSeen = false; 18260b57cec5SDimitry Andric for (auto *DI : DS->decls()) { 1827*e8d8bef9SDimitry Andric if (VarDecl *VD = dyn_cast<VarDecl>(DI)) { 1828*e8d8bef9SDimitry Andric VarDeclSeen = true; 1829*e8d8bef9SDimitry Andric if (VD->isLocalVarDecl() && !VD->hasLocalStorage()) { 18300b57cec5SDimitry Andric Diag(DI->getLocation(), diag::err_non_local_variable_decl_in_for); 18310b57cec5SDimitry Andric DI->setInvalidDecl(); 18320b57cec5SDimitry Andric } 1833*e8d8bef9SDimitry Andric } else if (!NonVarSeen) { 1834*e8d8bef9SDimitry Andric // Keep track of the first non-variable declaration we saw so that 1835*e8d8bef9SDimitry Andric // we can diagnose if we don't see any variable declarations. This 1836*e8d8bef9SDimitry Andric // covers a case like declaring a typedef, function, or structure 1837*e8d8bef9SDimitry Andric // type rather than a variable. 1838*e8d8bef9SDimitry Andric NonVarSeen = DI; 18390b57cec5SDimitry Andric } 18400b57cec5SDimitry Andric } 1841*e8d8bef9SDimitry Andric // Diagnose if we saw a non-variable declaration but no variable 1842*e8d8bef9SDimitry Andric // declarations. 1843*e8d8bef9SDimitry Andric if (NonVarSeen && !VarDeclSeen) 1844*e8d8bef9SDimitry Andric Diag(NonVarSeen->getLocation(), diag::err_non_variable_decl_in_for); 1845*e8d8bef9SDimitry Andric } 18460b57cec5SDimitry Andric } 18470b57cec5SDimitry Andric 18480b57cec5SDimitry Andric CheckBreakContinueBinding(Second.get().second); 18490b57cec5SDimitry Andric CheckBreakContinueBinding(third.get()); 18500b57cec5SDimitry Andric 18510b57cec5SDimitry Andric if (!Second.get().first) 18520b57cec5SDimitry Andric CheckForLoopConditionalStatement(*this, Second.get().second, third.get(), 18530b57cec5SDimitry Andric Body); 18540b57cec5SDimitry Andric CheckForRedundantIteration(*this, third.get(), Body); 18550b57cec5SDimitry Andric 18560b57cec5SDimitry Andric if (Second.get().second && 18570b57cec5SDimitry Andric !Diags.isIgnored(diag::warn_comma_operator, 18580b57cec5SDimitry Andric Second.get().second->getExprLoc())) 18590b57cec5SDimitry Andric CommaVisitor(*this).Visit(Second.get().second); 18600b57cec5SDimitry Andric 18610b57cec5SDimitry Andric Expr *Third = third.release().getAs<Expr>(); 18620b57cec5SDimitry Andric if (isa<NullStmt>(Body)) 18630b57cec5SDimitry Andric getCurCompoundScope().setHasEmptyLoopBodies(); 18640b57cec5SDimitry Andric 18650b57cec5SDimitry Andric return new (Context) 18660b57cec5SDimitry Andric ForStmt(Context, First, Second.get().second, Second.get().first, Third, 18670b57cec5SDimitry Andric Body, ForLoc, LParenLoc, RParenLoc); 18680b57cec5SDimitry Andric } 18690b57cec5SDimitry Andric 18700b57cec5SDimitry Andric /// In an Objective C collection iteration statement: 18710b57cec5SDimitry Andric /// for (x in y) 18720b57cec5SDimitry Andric /// x can be an arbitrary l-value expression. Bind it up as a 18730b57cec5SDimitry Andric /// full-expression. 18740b57cec5SDimitry Andric StmtResult Sema::ActOnForEachLValueExpr(Expr *E) { 18750b57cec5SDimitry Andric // Reduce placeholder expressions here. Note that this rejects the 18760b57cec5SDimitry Andric // use of pseudo-object l-values in this position. 18770b57cec5SDimitry Andric ExprResult result = CheckPlaceholderExpr(E); 18780b57cec5SDimitry Andric if (result.isInvalid()) return StmtError(); 18790b57cec5SDimitry Andric E = result.get(); 18800b57cec5SDimitry Andric 18810b57cec5SDimitry Andric ExprResult FullExpr = ActOnFinishFullExpr(E, /*DiscardedValue*/ false); 18820b57cec5SDimitry Andric if (FullExpr.isInvalid()) 18830b57cec5SDimitry Andric return StmtError(); 18840b57cec5SDimitry Andric return StmtResult(static_cast<Stmt*>(FullExpr.get())); 18850b57cec5SDimitry Andric } 18860b57cec5SDimitry Andric 18870b57cec5SDimitry Andric ExprResult 18880b57cec5SDimitry Andric Sema::CheckObjCForCollectionOperand(SourceLocation forLoc, Expr *collection) { 18890b57cec5SDimitry Andric if (!collection) 18900b57cec5SDimitry Andric return ExprError(); 18910b57cec5SDimitry Andric 18920b57cec5SDimitry Andric ExprResult result = CorrectDelayedTyposInExpr(collection); 18930b57cec5SDimitry Andric if (!result.isUsable()) 18940b57cec5SDimitry Andric return ExprError(); 18950b57cec5SDimitry Andric collection = result.get(); 18960b57cec5SDimitry Andric 18970b57cec5SDimitry Andric // Bail out early if we've got a type-dependent expression. 18980b57cec5SDimitry Andric if (collection->isTypeDependent()) return collection; 18990b57cec5SDimitry Andric 19000b57cec5SDimitry Andric // Perform normal l-value conversion. 19010b57cec5SDimitry Andric result = DefaultFunctionArrayLvalueConversion(collection); 19020b57cec5SDimitry Andric if (result.isInvalid()) 19030b57cec5SDimitry Andric return ExprError(); 19040b57cec5SDimitry Andric collection = result.get(); 19050b57cec5SDimitry Andric 19060b57cec5SDimitry Andric // The operand needs to have object-pointer type. 19070b57cec5SDimitry Andric // TODO: should we do a contextual conversion? 19080b57cec5SDimitry Andric const ObjCObjectPointerType *pointerType = 19090b57cec5SDimitry Andric collection->getType()->getAs<ObjCObjectPointerType>(); 19100b57cec5SDimitry Andric if (!pointerType) 19110b57cec5SDimitry Andric return Diag(forLoc, diag::err_collection_expr_type) 19120b57cec5SDimitry Andric << collection->getType() << collection->getSourceRange(); 19130b57cec5SDimitry Andric 19140b57cec5SDimitry Andric // Check that the operand provides 19150b57cec5SDimitry Andric // - countByEnumeratingWithState:objects:count: 19160b57cec5SDimitry Andric const ObjCObjectType *objectType = pointerType->getObjectType(); 19170b57cec5SDimitry Andric ObjCInterfaceDecl *iface = objectType->getInterface(); 19180b57cec5SDimitry Andric 19190b57cec5SDimitry Andric // If we have a forward-declared type, we can't do this check. 19200b57cec5SDimitry Andric // Under ARC, it is an error not to have a forward-declared class. 19210b57cec5SDimitry Andric if (iface && 19220b57cec5SDimitry Andric (getLangOpts().ObjCAutoRefCount 19230b57cec5SDimitry Andric ? RequireCompleteType(forLoc, QualType(objectType, 0), 19240b57cec5SDimitry Andric diag::err_arc_collection_forward, collection) 19250b57cec5SDimitry Andric : !isCompleteType(forLoc, QualType(objectType, 0)))) { 19260b57cec5SDimitry Andric // Otherwise, if we have any useful type information, check that 19270b57cec5SDimitry Andric // the type declares the appropriate method. 19280b57cec5SDimitry Andric } else if (iface || !objectType->qual_empty()) { 19290b57cec5SDimitry Andric IdentifierInfo *selectorIdents[] = { 19300b57cec5SDimitry Andric &Context.Idents.get("countByEnumeratingWithState"), 19310b57cec5SDimitry Andric &Context.Idents.get("objects"), 19320b57cec5SDimitry Andric &Context.Idents.get("count") 19330b57cec5SDimitry Andric }; 19340b57cec5SDimitry Andric Selector selector = Context.Selectors.getSelector(3, &selectorIdents[0]); 19350b57cec5SDimitry Andric 19360b57cec5SDimitry Andric ObjCMethodDecl *method = nullptr; 19370b57cec5SDimitry Andric 19380b57cec5SDimitry Andric // If there's an interface, look in both the public and private APIs. 19390b57cec5SDimitry Andric if (iface) { 19400b57cec5SDimitry Andric method = iface->lookupInstanceMethod(selector); 19410b57cec5SDimitry Andric if (!method) method = iface->lookupPrivateMethod(selector); 19420b57cec5SDimitry Andric } 19430b57cec5SDimitry Andric 19440b57cec5SDimitry Andric // Also check protocol qualifiers. 19450b57cec5SDimitry Andric if (!method) 19460b57cec5SDimitry Andric method = LookupMethodInQualifiedType(selector, pointerType, 19470b57cec5SDimitry Andric /*instance*/ true); 19480b57cec5SDimitry Andric 19490b57cec5SDimitry Andric // If we didn't find it anywhere, give up. 19500b57cec5SDimitry Andric if (!method) { 19510b57cec5SDimitry Andric Diag(forLoc, diag::warn_collection_expr_type) 19520b57cec5SDimitry Andric << collection->getType() << selector << collection->getSourceRange(); 19530b57cec5SDimitry Andric } 19540b57cec5SDimitry Andric 19550b57cec5SDimitry Andric // TODO: check for an incompatible signature? 19560b57cec5SDimitry Andric } 19570b57cec5SDimitry Andric 19580b57cec5SDimitry Andric // Wrap up any cleanups in the expression. 19590b57cec5SDimitry Andric return collection; 19600b57cec5SDimitry Andric } 19610b57cec5SDimitry Andric 19620b57cec5SDimitry Andric StmtResult 19630b57cec5SDimitry Andric Sema::ActOnObjCForCollectionStmt(SourceLocation ForLoc, 19640b57cec5SDimitry Andric Stmt *First, Expr *collection, 19650b57cec5SDimitry Andric SourceLocation RParenLoc) { 19660b57cec5SDimitry Andric setFunctionHasBranchProtectedScope(); 19670b57cec5SDimitry Andric 19680b57cec5SDimitry Andric ExprResult CollectionExprResult = 19690b57cec5SDimitry Andric CheckObjCForCollectionOperand(ForLoc, collection); 19700b57cec5SDimitry Andric 19710b57cec5SDimitry Andric if (First) { 19720b57cec5SDimitry Andric QualType FirstType; 19730b57cec5SDimitry Andric if (DeclStmt *DS = dyn_cast<DeclStmt>(First)) { 19740b57cec5SDimitry Andric if (!DS->isSingleDecl()) 19750b57cec5SDimitry Andric return StmtError(Diag((*DS->decl_begin())->getLocation(), 19760b57cec5SDimitry Andric diag::err_toomany_element_decls)); 19770b57cec5SDimitry Andric 19780b57cec5SDimitry Andric VarDecl *D = dyn_cast<VarDecl>(DS->getSingleDecl()); 19790b57cec5SDimitry Andric if (!D || D->isInvalidDecl()) 19800b57cec5SDimitry Andric return StmtError(); 19810b57cec5SDimitry Andric 19820b57cec5SDimitry Andric FirstType = D->getType(); 19830b57cec5SDimitry Andric // C99 6.8.5p3: The declaration part of a 'for' statement shall only 19840b57cec5SDimitry Andric // declare identifiers for objects having storage class 'auto' or 19850b57cec5SDimitry Andric // 'register'. 19860b57cec5SDimitry Andric if (!D->hasLocalStorage()) 19870b57cec5SDimitry Andric return StmtError(Diag(D->getLocation(), 19880b57cec5SDimitry Andric diag::err_non_local_variable_decl_in_for)); 19890b57cec5SDimitry Andric 19900b57cec5SDimitry Andric // If the type contained 'auto', deduce the 'auto' to 'id'. 19910b57cec5SDimitry Andric if (FirstType->getContainedAutoType()) { 19920b57cec5SDimitry Andric OpaqueValueExpr OpaqueId(D->getLocation(), Context.getObjCIdType(), 19930b57cec5SDimitry Andric VK_RValue); 19940b57cec5SDimitry Andric Expr *DeducedInit = &OpaqueId; 19950b57cec5SDimitry Andric if (DeduceAutoType(D->getTypeSourceInfo(), DeducedInit, FirstType) == 19960b57cec5SDimitry Andric DAR_Failed) 19970b57cec5SDimitry Andric DiagnoseAutoDeductionFailure(D, DeducedInit); 19980b57cec5SDimitry Andric if (FirstType.isNull()) { 19990b57cec5SDimitry Andric D->setInvalidDecl(); 20000b57cec5SDimitry Andric return StmtError(); 20010b57cec5SDimitry Andric } 20020b57cec5SDimitry Andric 20030b57cec5SDimitry Andric D->setType(FirstType); 20040b57cec5SDimitry Andric 20050b57cec5SDimitry Andric if (!inTemplateInstantiation()) { 20060b57cec5SDimitry Andric SourceLocation Loc = 20070b57cec5SDimitry Andric D->getTypeSourceInfo()->getTypeLoc().getBeginLoc(); 20080b57cec5SDimitry Andric Diag(Loc, diag::warn_auto_var_is_id) 20090b57cec5SDimitry Andric << D->getDeclName(); 20100b57cec5SDimitry Andric } 20110b57cec5SDimitry Andric } 20120b57cec5SDimitry Andric 20130b57cec5SDimitry Andric } else { 20140b57cec5SDimitry Andric Expr *FirstE = cast<Expr>(First); 20150b57cec5SDimitry Andric if (!FirstE->isTypeDependent() && !FirstE->isLValue()) 20160b57cec5SDimitry Andric return StmtError( 20170b57cec5SDimitry Andric Diag(First->getBeginLoc(), diag::err_selector_element_not_lvalue) 20180b57cec5SDimitry Andric << First->getSourceRange()); 20190b57cec5SDimitry Andric 20200b57cec5SDimitry Andric FirstType = static_cast<Expr*>(First)->getType(); 20210b57cec5SDimitry Andric if (FirstType.isConstQualified()) 20220b57cec5SDimitry Andric Diag(ForLoc, diag::err_selector_element_const_type) 20230b57cec5SDimitry Andric << FirstType << First->getSourceRange(); 20240b57cec5SDimitry Andric } 20250b57cec5SDimitry Andric if (!FirstType->isDependentType() && 20260b57cec5SDimitry Andric !FirstType->isObjCObjectPointerType() && 20270b57cec5SDimitry Andric !FirstType->isBlockPointerType()) 20280b57cec5SDimitry Andric return StmtError(Diag(ForLoc, diag::err_selector_element_type) 20290b57cec5SDimitry Andric << FirstType << First->getSourceRange()); 20300b57cec5SDimitry Andric } 20310b57cec5SDimitry Andric 20320b57cec5SDimitry Andric if (CollectionExprResult.isInvalid()) 20330b57cec5SDimitry Andric return StmtError(); 20340b57cec5SDimitry Andric 20350b57cec5SDimitry Andric CollectionExprResult = 20360b57cec5SDimitry Andric ActOnFinishFullExpr(CollectionExprResult.get(), /*DiscardedValue*/ false); 20370b57cec5SDimitry Andric if (CollectionExprResult.isInvalid()) 20380b57cec5SDimitry Andric return StmtError(); 20390b57cec5SDimitry Andric 20400b57cec5SDimitry Andric return new (Context) ObjCForCollectionStmt(First, CollectionExprResult.get(), 20410b57cec5SDimitry Andric nullptr, ForLoc, RParenLoc); 20420b57cec5SDimitry Andric } 20430b57cec5SDimitry Andric 20440b57cec5SDimitry Andric /// Finish building a variable declaration for a for-range statement. 20450b57cec5SDimitry Andric /// \return true if an error occurs. 20460b57cec5SDimitry Andric static bool FinishForRangeVarDecl(Sema &SemaRef, VarDecl *Decl, Expr *Init, 20470b57cec5SDimitry Andric SourceLocation Loc, int DiagID) { 20480b57cec5SDimitry Andric if (Decl->getType()->isUndeducedType()) { 20490b57cec5SDimitry Andric ExprResult Res = SemaRef.CorrectDelayedTyposInExpr(Init); 20500b57cec5SDimitry Andric if (!Res.isUsable()) { 20510b57cec5SDimitry Andric Decl->setInvalidDecl(); 20520b57cec5SDimitry Andric return true; 20530b57cec5SDimitry Andric } 20540b57cec5SDimitry Andric Init = Res.get(); 20550b57cec5SDimitry Andric } 20560b57cec5SDimitry Andric 20570b57cec5SDimitry Andric // Deduce the type for the iterator variable now rather than leaving it to 20580b57cec5SDimitry Andric // AddInitializerToDecl, so we can produce a more suitable diagnostic. 20590b57cec5SDimitry Andric QualType InitType; 20600b57cec5SDimitry Andric if ((!isa<InitListExpr>(Init) && Init->getType()->isVoidType()) || 20610b57cec5SDimitry Andric SemaRef.DeduceAutoType(Decl->getTypeSourceInfo(), Init, InitType) == 20620b57cec5SDimitry Andric Sema::DAR_Failed) 20630b57cec5SDimitry Andric SemaRef.Diag(Loc, DiagID) << Init->getType(); 20640b57cec5SDimitry Andric if (InitType.isNull()) { 20650b57cec5SDimitry Andric Decl->setInvalidDecl(); 20660b57cec5SDimitry Andric return true; 20670b57cec5SDimitry Andric } 20680b57cec5SDimitry Andric Decl->setType(InitType); 20690b57cec5SDimitry Andric 20700b57cec5SDimitry Andric // In ARC, infer lifetime. 20710b57cec5SDimitry Andric // FIXME: ARC may want to turn this into 'const __unsafe_unretained' if 20720b57cec5SDimitry Andric // we're doing the equivalent of fast iteration. 20730b57cec5SDimitry Andric if (SemaRef.getLangOpts().ObjCAutoRefCount && 20740b57cec5SDimitry Andric SemaRef.inferObjCARCLifetime(Decl)) 20750b57cec5SDimitry Andric Decl->setInvalidDecl(); 20760b57cec5SDimitry Andric 20770b57cec5SDimitry Andric SemaRef.AddInitializerToDecl(Decl, Init, /*DirectInit=*/false); 20780b57cec5SDimitry Andric SemaRef.FinalizeDeclaration(Decl); 20790b57cec5SDimitry Andric SemaRef.CurContext->addHiddenDecl(Decl); 20800b57cec5SDimitry Andric return false; 20810b57cec5SDimitry Andric } 20820b57cec5SDimitry Andric 20830b57cec5SDimitry Andric namespace { 20840b57cec5SDimitry Andric // An enum to represent whether something is dealing with a call to begin() 20850b57cec5SDimitry Andric // or a call to end() in a range-based for loop. 20860b57cec5SDimitry Andric enum BeginEndFunction { 20870b57cec5SDimitry Andric BEF_begin, 20880b57cec5SDimitry Andric BEF_end 20890b57cec5SDimitry Andric }; 20900b57cec5SDimitry Andric 20910b57cec5SDimitry Andric /// Produce a note indicating which begin/end function was implicitly called 20920b57cec5SDimitry Andric /// by a C++11 for-range statement. This is often not obvious from the code, 20930b57cec5SDimitry Andric /// nor from the diagnostics produced when analysing the implicit expressions 20940b57cec5SDimitry Andric /// required in a for-range statement. 20950b57cec5SDimitry Andric void NoteForRangeBeginEndFunction(Sema &SemaRef, Expr *E, 20960b57cec5SDimitry Andric BeginEndFunction BEF) { 20970b57cec5SDimitry Andric CallExpr *CE = dyn_cast<CallExpr>(E); 20980b57cec5SDimitry Andric if (!CE) 20990b57cec5SDimitry Andric return; 21000b57cec5SDimitry Andric FunctionDecl *D = dyn_cast<FunctionDecl>(CE->getCalleeDecl()); 21010b57cec5SDimitry Andric if (!D) 21020b57cec5SDimitry Andric return; 21030b57cec5SDimitry Andric SourceLocation Loc = D->getLocation(); 21040b57cec5SDimitry Andric 21050b57cec5SDimitry Andric std::string Description; 21060b57cec5SDimitry Andric bool IsTemplate = false; 21070b57cec5SDimitry Andric if (FunctionTemplateDecl *FunTmpl = D->getPrimaryTemplate()) { 21080b57cec5SDimitry Andric Description = SemaRef.getTemplateArgumentBindingsText( 21090b57cec5SDimitry Andric FunTmpl->getTemplateParameters(), *D->getTemplateSpecializationArgs()); 21100b57cec5SDimitry Andric IsTemplate = true; 21110b57cec5SDimitry Andric } 21120b57cec5SDimitry Andric 21130b57cec5SDimitry Andric SemaRef.Diag(Loc, diag::note_for_range_begin_end) 21140b57cec5SDimitry Andric << BEF << IsTemplate << Description << E->getType(); 21150b57cec5SDimitry Andric } 21160b57cec5SDimitry Andric 21170b57cec5SDimitry Andric /// Build a variable declaration for a for-range statement. 21180b57cec5SDimitry Andric VarDecl *BuildForRangeVarDecl(Sema &SemaRef, SourceLocation Loc, 21190b57cec5SDimitry Andric QualType Type, StringRef Name) { 21200b57cec5SDimitry Andric DeclContext *DC = SemaRef.CurContext; 21210b57cec5SDimitry Andric IdentifierInfo *II = &SemaRef.PP.getIdentifierTable().get(Name); 21220b57cec5SDimitry Andric TypeSourceInfo *TInfo = SemaRef.Context.getTrivialTypeSourceInfo(Type, Loc); 21230b57cec5SDimitry Andric VarDecl *Decl = VarDecl::Create(SemaRef.Context, DC, Loc, Loc, II, Type, 21240b57cec5SDimitry Andric TInfo, SC_None); 21250b57cec5SDimitry Andric Decl->setImplicit(); 21260b57cec5SDimitry Andric return Decl; 21270b57cec5SDimitry Andric } 21280b57cec5SDimitry Andric 21290b57cec5SDimitry Andric } 21300b57cec5SDimitry Andric 21310b57cec5SDimitry Andric static bool ObjCEnumerationCollection(Expr *Collection) { 21320b57cec5SDimitry Andric return !Collection->isTypeDependent() 21330b57cec5SDimitry Andric && Collection->getType()->getAs<ObjCObjectPointerType>() != nullptr; 21340b57cec5SDimitry Andric } 21350b57cec5SDimitry Andric 21360b57cec5SDimitry Andric /// ActOnCXXForRangeStmt - Check and build a C++11 for-range statement. 21370b57cec5SDimitry Andric /// 21380b57cec5SDimitry Andric /// C++11 [stmt.ranged]: 21390b57cec5SDimitry Andric /// A range-based for statement is equivalent to 21400b57cec5SDimitry Andric /// 21410b57cec5SDimitry Andric /// { 21420b57cec5SDimitry Andric /// auto && __range = range-init; 21430b57cec5SDimitry Andric /// for ( auto __begin = begin-expr, 21440b57cec5SDimitry Andric /// __end = end-expr; 21450b57cec5SDimitry Andric /// __begin != __end; 21460b57cec5SDimitry Andric /// ++__begin ) { 21470b57cec5SDimitry Andric /// for-range-declaration = *__begin; 21480b57cec5SDimitry Andric /// statement 21490b57cec5SDimitry Andric /// } 21500b57cec5SDimitry Andric /// } 21510b57cec5SDimitry Andric /// 21520b57cec5SDimitry Andric /// The body of the loop is not available yet, since it cannot be analysed until 21530b57cec5SDimitry Andric /// we have determined the type of the for-range-declaration. 21540b57cec5SDimitry Andric StmtResult Sema::ActOnCXXForRangeStmt(Scope *S, SourceLocation ForLoc, 21550b57cec5SDimitry Andric SourceLocation CoawaitLoc, Stmt *InitStmt, 21560b57cec5SDimitry Andric Stmt *First, SourceLocation ColonLoc, 21570b57cec5SDimitry Andric Expr *Range, SourceLocation RParenLoc, 21580b57cec5SDimitry Andric BuildForRangeKind Kind) { 21590b57cec5SDimitry Andric if (!First) 21600b57cec5SDimitry Andric return StmtError(); 21610b57cec5SDimitry Andric 21620b57cec5SDimitry Andric if (Range && ObjCEnumerationCollection(Range)) { 21630b57cec5SDimitry Andric // FIXME: Support init-statements in Objective-C++20 ranged for statement. 21640b57cec5SDimitry Andric if (InitStmt) 21650b57cec5SDimitry Andric return Diag(InitStmt->getBeginLoc(), diag::err_objc_for_range_init_stmt) 21660b57cec5SDimitry Andric << InitStmt->getSourceRange(); 21670b57cec5SDimitry Andric return ActOnObjCForCollectionStmt(ForLoc, First, Range, RParenLoc); 21680b57cec5SDimitry Andric } 21690b57cec5SDimitry Andric 21700b57cec5SDimitry Andric DeclStmt *DS = dyn_cast<DeclStmt>(First); 21710b57cec5SDimitry Andric assert(DS && "first part of for range not a decl stmt"); 21720b57cec5SDimitry Andric 21730b57cec5SDimitry Andric if (!DS->isSingleDecl()) { 21740b57cec5SDimitry Andric Diag(DS->getBeginLoc(), diag::err_type_defined_in_for_range); 21750b57cec5SDimitry Andric return StmtError(); 21760b57cec5SDimitry Andric } 21770b57cec5SDimitry Andric 21785ffd83dbSDimitry Andric // This function is responsible for attaching an initializer to LoopVar. We 21795ffd83dbSDimitry Andric // must call ActOnInitializerError if we fail to do so. 21800b57cec5SDimitry Andric Decl *LoopVar = DS->getSingleDecl(); 21810b57cec5SDimitry Andric if (LoopVar->isInvalidDecl() || !Range || 21820b57cec5SDimitry Andric DiagnoseUnexpandedParameterPack(Range, UPPC_Expression)) { 21835ffd83dbSDimitry Andric ActOnInitializerError(LoopVar); 21840b57cec5SDimitry Andric return StmtError(); 21850b57cec5SDimitry Andric } 21860b57cec5SDimitry Andric 21870b57cec5SDimitry Andric // Build the coroutine state immediately and not later during template 21880b57cec5SDimitry Andric // instantiation 21890b57cec5SDimitry Andric if (!CoawaitLoc.isInvalid()) { 21905ffd83dbSDimitry Andric if (!ActOnCoroutineBodyStart(S, CoawaitLoc, "co_await")) { 21915ffd83dbSDimitry Andric ActOnInitializerError(LoopVar); 21920b57cec5SDimitry Andric return StmtError(); 21930b57cec5SDimitry Andric } 21945ffd83dbSDimitry Andric } 21950b57cec5SDimitry Andric 21960b57cec5SDimitry Andric // Build auto && __range = range-init 21970b57cec5SDimitry Andric // Divide by 2, since the variables are in the inner scope (loop body). 21980b57cec5SDimitry Andric const auto DepthStr = std::to_string(S->getDepth() / 2); 21990b57cec5SDimitry Andric SourceLocation RangeLoc = Range->getBeginLoc(); 22000b57cec5SDimitry Andric VarDecl *RangeVar = BuildForRangeVarDecl(*this, RangeLoc, 22010b57cec5SDimitry Andric Context.getAutoRRefDeductType(), 22020b57cec5SDimitry Andric std::string("__range") + DepthStr); 22030b57cec5SDimitry Andric if (FinishForRangeVarDecl(*this, RangeVar, Range, RangeLoc, 22040b57cec5SDimitry Andric diag::err_for_range_deduction_failure)) { 22055ffd83dbSDimitry Andric ActOnInitializerError(LoopVar); 22060b57cec5SDimitry Andric return StmtError(); 22070b57cec5SDimitry Andric } 22080b57cec5SDimitry Andric 22090b57cec5SDimitry Andric // Claim the type doesn't contain auto: we've already done the checking. 22100b57cec5SDimitry Andric DeclGroupPtrTy RangeGroup = 22110b57cec5SDimitry Andric BuildDeclaratorGroup(MutableArrayRef<Decl *>((Decl **)&RangeVar, 1)); 22120b57cec5SDimitry Andric StmtResult RangeDecl = ActOnDeclStmt(RangeGroup, RangeLoc, RangeLoc); 22130b57cec5SDimitry Andric if (RangeDecl.isInvalid()) { 22145ffd83dbSDimitry Andric ActOnInitializerError(LoopVar); 22150b57cec5SDimitry Andric return StmtError(); 22160b57cec5SDimitry Andric } 22170b57cec5SDimitry Andric 22185ffd83dbSDimitry Andric StmtResult R = BuildCXXForRangeStmt( 22190b57cec5SDimitry Andric ForLoc, CoawaitLoc, InitStmt, ColonLoc, RangeDecl.get(), 22200b57cec5SDimitry Andric /*BeginStmt=*/nullptr, /*EndStmt=*/nullptr, 22210b57cec5SDimitry Andric /*Cond=*/nullptr, /*Inc=*/nullptr, DS, RParenLoc, Kind); 22225ffd83dbSDimitry Andric if (R.isInvalid()) { 22235ffd83dbSDimitry Andric ActOnInitializerError(LoopVar); 22245ffd83dbSDimitry Andric return StmtError(); 22255ffd83dbSDimitry Andric } 22265ffd83dbSDimitry Andric 22275ffd83dbSDimitry Andric return R; 22280b57cec5SDimitry Andric } 22290b57cec5SDimitry Andric 22300b57cec5SDimitry Andric /// Create the initialization, compare, and increment steps for 22310b57cec5SDimitry Andric /// the range-based for loop expression. 22320b57cec5SDimitry Andric /// This function does not handle array-based for loops, 22330b57cec5SDimitry Andric /// which are created in Sema::BuildCXXForRangeStmt. 22340b57cec5SDimitry Andric /// 22350b57cec5SDimitry Andric /// \returns a ForRangeStatus indicating success or what kind of error occurred. 22360b57cec5SDimitry Andric /// BeginExpr and EndExpr are set and FRS_Success is returned on success; 22370b57cec5SDimitry Andric /// CandidateSet and BEF are set and some non-success value is returned on 22380b57cec5SDimitry Andric /// failure. 22390b57cec5SDimitry Andric static Sema::ForRangeStatus 22400b57cec5SDimitry Andric BuildNonArrayForRange(Sema &SemaRef, Expr *BeginRange, Expr *EndRange, 22410b57cec5SDimitry Andric QualType RangeType, VarDecl *BeginVar, VarDecl *EndVar, 22420b57cec5SDimitry Andric SourceLocation ColonLoc, SourceLocation CoawaitLoc, 22430b57cec5SDimitry Andric OverloadCandidateSet *CandidateSet, ExprResult *BeginExpr, 22440b57cec5SDimitry Andric ExprResult *EndExpr, BeginEndFunction *BEF) { 22450b57cec5SDimitry Andric DeclarationNameInfo BeginNameInfo( 22460b57cec5SDimitry Andric &SemaRef.PP.getIdentifierTable().get("begin"), ColonLoc); 22470b57cec5SDimitry Andric DeclarationNameInfo EndNameInfo(&SemaRef.PP.getIdentifierTable().get("end"), 22480b57cec5SDimitry Andric ColonLoc); 22490b57cec5SDimitry Andric 22500b57cec5SDimitry Andric LookupResult BeginMemberLookup(SemaRef, BeginNameInfo, 22510b57cec5SDimitry Andric Sema::LookupMemberName); 22520b57cec5SDimitry Andric LookupResult EndMemberLookup(SemaRef, EndNameInfo, Sema::LookupMemberName); 22530b57cec5SDimitry Andric 22540b57cec5SDimitry Andric auto BuildBegin = [&] { 22550b57cec5SDimitry Andric *BEF = BEF_begin; 22560b57cec5SDimitry Andric Sema::ForRangeStatus RangeStatus = 22570b57cec5SDimitry Andric SemaRef.BuildForRangeBeginEndCall(ColonLoc, ColonLoc, BeginNameInfo, 22580b57cec5SDimitry Andric BeginMemberLookup, CandidateSet, 22590b57cec5SDimitry Andric BeginRange, BeginExpr); 22600b57cec5SDimitry Andric 22610b57cec5SDimitry Andric if (RangeStatus != Sema::FRS_Success) { 22620b57cec5SDimitry Andric if (RangeStatus == Sema::FRS_DiagnosticIssued) 22630b57cec5SDimitry Andric SemaRef.Diag(BeginRange->getBeginLoc(), diag::note_in_for_range) 22640b57cec5SDimitry Andric << ColonLoc << BEF_begin << BeginRange->getType(); 22650b57cec5SDimitry Andric return RangeStatus; 22660b57cec5SDimitry Andric } 22670b57cec5SDimitry Andric if (!CoawaitLoc.isInvalid()) { 22680b57cec5SDimitry Andric // FIXME: getCurScope() should not be used during template instantiation. 22690b57cec5SDimitry Andric // We should pick up the set of unqualified lookup results for operator 22700b57cec5SDimitry Andric // co_await during the initial parse. 22710b57cec5SDimitry Andric *BeginExpr = SemaRef.ActOnCoawaitExpr(SemaRef.getCurScope(), ColonLoc, 22720b57cec5SDimitry Andric BeginExpr->get()); 22730b57cec5SDimitry Andric if (BeginExpr->isInvalid()) 22740b57cec5SDimitry Andric return Sema::FRS_DiagnosticIssued; 22750b57cec5SDimitry Andric } 22760b57cec5SDimitry Andric if (FinishForRangeVarDecl(SemaRef, BeginVar, BeginExpr->get(), ColonLoc, 22770b57cec5SDimitry Andric diag::err_for_range_iter_deduction_failure)) { 22780b57cec5SDimitry Andric NoteForRangeBeginEndFunction(SemaRef, BeginExpr->get(), *BEF); 22790b57cec5SDimitry Andric return Sema::FRS_DiagnosticIssued; 22800b57cec5SDimitry Andric } 22810b57cec5SDimitry Andric return Sema::FRS_Success; 22820b57cec5SDimitry Andric }; 22830b57cec5SDimitry Andric 22840b57cec5SDimitry Andric auto BuildEnd = [&] { 22850b57cec5SDimitry Andric *BEF = BEF_end; 22860b57cec5SDimitry Andric Sema::ForRangeStatus RangeStatus = 22870b57cec5SDimitry Andric SemaRef.BuildForRangeBeginEndCall(ColonLoc, ColonLoc, EndNameInfo, 22880b57cec5SDimitry Andric EndMemberLookup, CandidateSet, 22890b57cec5SDimitry Andric EndRange, EndExpr); 22900b57cec5SDimitry Andric if (RangeStatus != Sema::FRS_Success) { 22910b57cec5SDimitry Andric if (RangeStatus == Sema::FRS_DiagnosticIssued) 22920b57cec5SDimitry Andric SemaRef.Diag(EndRange->getBeginLoc(), diag::note_in_for_range) 22930b57cec5SDimitry Andric << ColonLoc << BEF_end << EndRange->getType(); 22940b57cec5SDimitry Andric return RangeStatus; 22950b57cec5SDimitry Andric } 22960b57cec5SDimitry Andric if (FinishForRangeVarDecl(SemaRef, EndVar, EndExpr->get(), ColonLoc, 22970b57cec5SDimitry Andric diag::err_for_range_iter_deduction_failure)) { 22980b57cec5SDimitry Andric NoteForRangeBeginEndFunction(SemaRef, EndExpr->get(), *BEF); 22990b57cec5SDimitry Andric return Sema::FRS_DiagnosticIssued; 23000b57cec5SDimitry Andric } 23010b57cec5SDimitry Andric return Sema::FRS_Success; 23020b57cec5SDimitry Andric }; 23030b57cec5SDimitry Andric 23040b57cec5SDimitry Andric if (CXXRecordDecl *D = RangeType->getAsCXXRecordDecl()) { 23050b57cec5SDimitry Andric // - if _RangeT is a class type, the unqualified-ids begin and end are 23060b57cec5SDimitry Andric // looked up in the scope of class _RangeT as if by class member access 23070b57cec5SDimitry Andric // lookup (3.4.5), and if either (or both) finds at least one 23080b57cec5SDimitry Andric // declaration, begin-expr and end-expr are __range.begin() and 23090b57cec5SDimitry Andric // __range.end(), respectively; 23100b57cec5SDimitry Andric SemaRef.LookupQualifiedName(BeginMemberLookup, D); 23110b57cec5SDimitry Andric if (BeginMemberLookup.isAmbiguous()) 23120b57cec5SDimitry Andric return Sema::FRS_DiagnosticIssued; 23130b57cec5SDimitry Andric 23140b57cec5SDimitry Andric SemaRef.LookupQualifiedName(EndMemberLookup, D); 23150b57cec5SDimitry Andric if (EndMemberLookup.isAmbiguous()) 23160b57cec5SDimitry Andric return Sema::FRS_DiagnosticIssued; 23170b57cec5SDimitry Andric 23180b57cec5SDimitry Andric if (BeginMemberLookup.empty() != EndMemberLookup.empty()) { 23190b57cec5SDimitry Andric // Look up the non-member form of the member we didn't find, first. 23200b57cec5SDimitry Andric // This way we prefer a "no viable 'end'" diagnostic over a "i found 23210b57cec5SDimitry Andric // a 'begin' but ignored it because there was no member 'end'" 23220b57cec5SDimitry Andric // diagnostic. 23230b57cec5SDimitry Andric auto BuildNonmember = [&]( 23240b57cec5SDimitry Andric BeginEndFunction BEFFound, LookupResult &Found, 23250b57cec5SDimitry Andric llvm::function_ref<Sema::ForRangeStatus()> BuildFound, 23260b57cec5SDimitry Andric llvm::function_ref<Sema::ForRangeStatus()> BuildNotFound) { 23270b57cec5SDimitry Andric LookupResult OldFound = std::move(Found); 23280b57cec5SDimitry Andric Found.clear(); 23290b57cec5SDimitry Andric 23300b57cec5SDimitry Andric if (Sema::ForRangeStatus Result = BuildNotFound()) 23310b57cec5SDimitry Andric return Result; 23320b57cec5SDimitry Andric 23330b57cec5SDimitry Andric switch (BuildFound()) { 23340b57cec5SDimitry Andric case Sema::FRS_Success: 23350b57cec5SDimitry Andric return Sema::FRS_Success; 23360b57cec5SDimitry Andric 23370b57cec5SDimitry Andric case Sema::FRS_NoViableFunction: 23380b57cec5SDimitry Andric CandidateSet->NoteCandidates( 23390b57cec5SDimitry Andric PartialDiagnosticAt(BeginRange->getBeginLoc(), 23400b57cec5SDimitry Andric SemaRef.PDiag(diag::err_for_range_invalid) 23410b57cec5SDimitry Andric << BeginRange->getType() << BEFFound), 23420b57cec5SDimitry Andric SemaRef, OCD_AllCandidates, BeginRange); 23430b57cec5SDimitry Andric LLVM_FALLTHROUGH; 23440b57cec5SDimitry Andric 23450b57cec5SDimitry Andric case Sema::FRS_DiagnosticIssued: 23460b57cec5SDimitry Andric for (NamedDecl *D : OldFound) { 23470b57cec5SDimitry Andric SemaRef.Diag(D->getLocation(), 23480b57cec5SDimitry Andric diag::note_for_range_member_begin_end_ignored) 23490b57cec5SDimitry Andric << BeginRange->getType() << BEFFound; 23500b57cec5SDimitry Andric } 23510b57cec5SDimitry Andric return Sema::FRS_DiagnosticIssued; 23520b57cec5SDimitry Andric } 23530b57cec5SDimitry Andric llvm_unreachable("unexpected ForRangeStatus"); 23540b57cec5SDimitry Andric }; 23550b57cec5SDimitry Andric if (BeginMemberLookup.empty()) 23560b57cec5SDimitry Andric return BuildNonmember(BEF_end, EndMemberLookup, BuildEnd, BuildBegin); 23570b57cec5SDimitry Andric return BuildNonmember(BEF_begin, BeginMemberLookup, BuildBegin, BuildEnd); 23580b57cec5SDimitry Andric } 23590b57cec5SDimitry Andric } else { 23600b57cec5SDimitry Andric // - otherwise, begin-expr and end-expr are begin(__range) and 23610b57cec5SDimitry Andric // end(__range), respectively, where begin and end are looked up with 23620b57cec5SDimitry Andric // argument-dependent lookup (3.4.2). For the purposes of this name 23630b57cec5SDimitry Andric // lookup, namespace std is an associated namespace. 23640b57cec5SDimitry Andric } 23650b57cec5SDimitry Andric 23660b57cec5SDimitry Andric if (Sema::ForRangeStatus Result = BuildBegin()) 23670b57cec5SDimitry Andric return Result; 23680b57cec5SDimitry Andric return BuildEnd(); 23690b57cec5SDimitry Andric } 23700b57cec5SDimitry Andric 23710b57cec5SDimitry Andric /// Speculatively attempt to dereference an invalid range expression. 23720b57cec5SDimitry Andric /// If the attempt fails, this function will return a valid, null StmtResult 23730b57cec5SDimitry Andric /// and emit no diagnostics. 23740b57cec5SDimitry Andric static StmtResult RebuildForRangeWithDereference(Sema &SemaRef, Scope *S, 23750b57cec5SDimitry Andric SourceLocation ForLoc, 23760b57cec5SDimitry Andric SourceLocation CoawaitLoc, 23770b57cec5SDimitry Andric Stmt *InitStmt, 23780b57cec5SDimitry Andric Stmt *LoopVarDecl, 23790b57cec5SDimitry Andric SourceLocation ColonLoc, 23800b57cec5SDimitry Andric Expr *Range, 23810b57cec5SDimitry Andric SourceLocation RangeLoc, 23820b57cec5SDimitry Andric SourceLocation RParenLoc) { 23830b57cec5SDimitry Andric // Determine whether we can rebuild the for-range statement with a 23840b57cec5SDimitry Andric // dereferenced range expression. 23850b57cec5SDimitry Andric ExprResult AdjustedRange; 23860b57cec5SDimitry Andric { 23870b57cec5SDimitry Andric Sema::SFINAETrap Trap(SemaRef); 23880b57cec5SDimitry Andric 23890b57cec5SDimitry Andric AdjustedRange = SemaRef.BuildUnaryOp(S, RangeLoc, UO_Deref, Range); 23900b57cec5SDimitry Andric if (AdjustedRange.isInvalid()) 23910b57cec5SDimitry Andric return StmtResult(); 23920b57cec5SDimitry Andric 23930b57cec5SDimitry Andric StmtResult SR = SemaRef.ActOnCXXForRangeStmt( 23940b57cec5SDimitry Andric S, ForLoc, CoawaitLoc, InitStmt, LoopVarDecl, ColonLoc, 23950b57cec5SDimitry Andric AdjustedRange.get(), RParenLoc, Sema::BFRK_Check); 23960b57cec5SDimitry Andric if (SR.isInvalid()) 23970b57cec5SDimitry Andric return StmtResult(); 23980b57cec5SDimitry Andric } 23990b57cec5SDimitry Andric 24000b57cec5SDimitry Andric // The attempt to dereference worked well enough that it could produce a valid 24010b57cec5SDimitry Andric // loop. Produce a fixit, and rebuild the loop with diagnostics enabled, in 24020b57cec5SDimitry Andric // case there are any other (non-fatal) problems with it. 24030b57cec5SDimitry Andric SemaRef.Diag(RangeLoc, diag::err_for_range_dereference) 24040b57cec5SDimitry Andric << Range->getType() << FixItHint::CreateInsertion(RangeLoc, "*"); 24050b57cec5SDimitry Andric return SemaRef.ActOnCXXForRangeStmt( 24060b57cec5SDimitry Andric S, ForLoc, CoawaitLoc, InitStmt, LoopVarDecl, ColonLoc, 24070b57cec5SDimitry Andric AdjustedRange.get(), RParenLoc, Sema::BFRK_Rebuild); 24080b57cec5SDimitry Andric } 24090b57cec5SDimitry Andric 24100b57cec5SDimitry Andric /// BuildCXXForRangeStmt - Build or instantiate a C++11 for-range statement. 24110b57cec5SDimitry Andric StmtResult Sema::BuildCXXForRangeStmt(SourceLocation ForLoc, 24120b57cec5SDimitry Andric SourceLocation CoawaitLoc, Stmt *InitStmt, 24130b57cec5SDimitry Andric SourceLocation ColonLoc, Stmt *RangeDecl, 24140b57cec5SDimitry Andric Stmt *Begin, Stmt *End, Expr *Cond, 24150b57cec5SDimitry Andric Expr *Inc, Stmt *LoopVarDecl, 24160b57cec5SDimitry Andric SourceLocation RParenLoc, 24170b57cec5SDimitry Andric BuildForRangeKind Kind) { 24180b57cec5SDimitry Andric // FIXME: This should not be used during template instantiation. We should 24190b57cec5SDimitry Andric // pick up the set of unqualified lookup results for the != and + operators 24200b57cec5SDimitry Andric // in the initial parse. 24210b57cec5SDimitry Andric // 24220b57cec5SDimitry Andric // Testcase (accepts-invalid): 24230b57cec5SDimitry Andric // template<typename T> void f() { for (auto x : T()) {} } 24240b57cec5SDimitry Andric // namespace N { struct X { X begin(); X end(); int operator*(); }; } 24250b57cec5SDimitry Andric // bool operator!=(N::X, N::X); void operator++(N::X); 24260b57cec5SDimitry Andric // void g() { f<N::X>(); } 24270b57cec5SDimitry Andric Scope *S = getCurScope(); 24280b57cec5SDimitry Andric 24290b57cec5SDimitry Andric DeclStmt *RangeDS = cast<DeclStmt>(RangeDecl); 24300b57cec5SDimitry Andric VarDecl *RangeVar = cast<VarDecl>(RangeDS->getSingleDecl()); 24310b57cec5SDimitry Andric QualType RangeVarType = RangeVar->getType(); 24320b57cec5SDimitry Andric 24330b57cec5SDimitry Andric DeclStmt *LoopVarDS = cast<DeclStmt>(LoopVarDecl); 24340b57cec5SDimitry Andric VarDecl *LoopVar = cast<VarDecl>(LoopVarDS->getSingleDecl()); 24350b57cec5SDimitry Andric 24360b57cec5SDimitry Andric StmtResult BeginDeclStmt = Begin; 24370b57cec5SDimitry Andric StmtResult EndDeclStmt = End; 24380b57cec5SDimitry Andric ExprResult NotEqExpr = Cond, IncrExpr = Inc; 24390b57cec5SDimitry Andric 24400b57cec5SDimitry Andric if (RangeVarType->isDependentType()) { 24410b57cec5SDimitry Andric // The range is implicitly used as a placeholder when it is dependent. 24420b57cec5SDimitry Andric RangeVar->markUsed(Context); 24430b57cec5SDimitry Andric 24440b57cec5SDimitry Andric // Deduce any 'auto's in the loop variable as 'DependentTy'. We'll fill 24450b57cec5SDimitry Andric // them in properly when we instantiate the loop. 24460b57cec5SDimitry Andric if (!LoopVar->isInvalidDecl() && Kind != BFRK_Check) { 24470b57cec5SDimitry Andric if (auto *DD = dyn_cast<DecompositionDecl>(LoopVar)) 24480b57cec5SDimitry Andric for (auto *Binding : DD->bindings()) 24490b57cec5SDimitry Andric Binding->setType(Context.DependentTy); 24500b57cec5SDimitry Andric LoopVar->setType(SubstAutoType(LoopVar->getType(), Context.DependentTy)); 24510b57cec5SDimitry Andric } 24520b57cec5SDimitry Andric } else if (!BeginDeclStmt.get()) { 24530b57cec5SDimitry Andric SourceLocation RangeLoc = RangeVar->getLocation(); 24540b57cec5SDimitry Andric 24550b57cec5SDimitry Andric const QualType RangeVarNonRefType = RangeVarType.getNonReferenceType(); 24560b57cec5SDimitry Andric 24570b57cec5SDimitry Andric ExprResult BeginRangeRef = BuildDeclRefExpr(RangeVar, RangeVarNonRefType, 24580b57cec5SDimitry Andric VK_LValue, ColonLoc); 24590b57cec5SDimitry Andric if (BeginRangeRef.isInvalid()) 24600b57cec5SDimitry Andric return StmtError(); 24610b57cec5SDimitry Andric 24620b57cec5SDimitry Andric ExprResult EndRangeRef = BuildDeclRefExpr(RangeVar, RangeVarNonRefType, 24630b57cec5SDimitry Andric VK_LValue, ColonLoc); 24640b57cec5SDimitry Andric if (EndRangeRef.isInvalid()) 24650b57cec5SDimitry Andric return StmtError(); 24660b57cec5SDimitry Andric 24670b57cec5SDimitry Andric QualType AutoType = Context.getAutoDeductType(); 24680b57cec5SDimitry Andric Expr *Range = RangeVar->getInit(); 24690b57cec5SDimitry Andric if (!Range) 24700b57cec5SDimitry Andric return StmtError(); 24710b57cec5SDimitry Andric QualType RangeType = Range->getType(); 24720b57cec5SDimitry Andric 24730b57cec5SDimitry Andric if (RequireCompleteType(RangeLoc, RangeType, 24740b57cec5SDimitry Andric diag::err_for_range_incomplete_type)) 24750b57cec5SDimitry Andric return StmtError(); 24760b57cec5SDimitry Andric 24770b57cec5SDimitry Andric // Build auto __begin = begin-expr, __end = end-expr. 24780b57cec5SDimitry Andric // Divide by 2, since the variables are in the inner scope (loop body). 24790b57cec5SDimitry Andric const auto DepthStr = std::to_string(S->getDepth() / 2); 24800b57cec5SDimitry Andric VarDecl *BeginVar = BuildForRangeVarDecl(*this, ColonLoc, AutoType, 24810b57cec5SDimitry Andric std::string("__begin") + DepthStr); 24820b57cec5SDimitry Andric VarDecl *EndVar = BuildForRangeVarDecl(*this, ColonLoc, AutoType, 24830b57cec5SDimitry Andric std::string("__end") + DepthStr); 24840b57cec5SDimitry Andric 24850b57cec5SDimitry Andric // Build begin-expr and end-expr and attach to __begin and __end variables. 24860b57cec5SDimitry Andric ExprResult BeginExpr, EndExpr; 24870b57cec5SDimitry Andric if (const ArrayType *UnqAT = RangeType->getAsArrayTypeUnsafe()) { 24880b57cec5SDimitry Andric // - if _RangeT is an array type, begin-expr and end-expr are __range and 24890b57cec5SDimitry Andric // __range + __bound, respectively, where __bound is the array bound. If 24900b57cec5SDimitry Andric // _RangeT is an array of unknown size or an array of incomplete type, 24910b57cec5SDimitry Andric // the program is ill-formed; 24920b57cec5SDimitry Andric 24930b57cec5SDimitry Andric // begin-expr is __range. 24940b57cec5SDimitry Andric BeginExpr = BeginRangeRef; 24950b57cec5SDimitry Andric if (!CoawaitLoc.isInvalid()) { 24960b57cec5SDimitry Andric BeginExpr = ActOnCoawaitExpr(S, ColonLoc, BeginExpr.get()); 24970b57cec5SDimitry Andric if (BeginExpr.isInvalid()) 24980b57cec5SDimitry Andric return StmtError(); 24990b57cec5SDimitry Andric } 25000b57cec5SDimitry Andric if (FinishForRangeVarDecl(*this, BeginVar, BeginRangeRef.get(), ColonLoc, 25010b57cec5SDimitry Andric diag::err_for_range_iter_deduction_failure)) { 25020b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, BeginExpr.get(), BEF_begin); 25030b57cec5SDimitry Andric return StmtError(); 25040b57cec5SDimitry Andric } 25050b57cec5SDimitry Andric 25060b57cec5SDimitry Andric // Find the array bound. 25070b57cec5SDimitry Andric ExprResult BoundExpr; 25080b57cec5SDimitry Andric if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(UnqAT)) 25090b57cec5SDimitry Andric BoundExpr = IntegerLiteral::Create( 25100b57cec5SDimitry Andric Context, CAT->getSize(), Context.getPointerDiffType(), RangeLoc); 25110b57cec5SDimitry Andric else if (const VariableArrayType *VAT = 25120b57cec5SDimitry Andric dyn_cast<VariableArrayType>(UnqAT)) { 25130b57cec5SDimitry Andric // For a variably modified type we can't just use the expression within 25140b57cec5SDimitry Andric // the array bounds, since we don't want that to be re-evaluated here. 25150b57cec5SDimitry Andric // Rather, we need to determine what it was when the array was first 25160b57cec5SDimitry Andric // created - so we resort to using sizeof(vla)/sizeof(element). 25170b57cec5SDimitry Andric // For e.g. 25180b57cec5SDimitry Andric // void f(int b) { 25190b57cec5SDimitry Andric // int vla[b]; 25200b57cec5SDimitry Andric // b = -1; <-- This should not affect the num of iterations below 25210b57cec5SDimitry Andric // for (int &c : vla) { .. } 25220b57cec5SDimitry Andric // } 25230b57cec5SDimitry Andric 25240b57cec5SDimitry Andric // FIXME: This results in codegen generating IR that recalculates the 25250b57cec5SDimitry Andric // run-time number of elements (as opposed to just using the IR Value 25260b57cec5SDimitry Andric // that corresponds to the run-time value of each bound that was 25270b57cec5SDimitry Andric // generated when the array was created.) If this proves too embarrassing 25280b57cec5SDimitry Andric // even for unoptimized IR, consider passing a magic-value/cookie to 25290b57cec5SDimitry Andric // codegen that then knows to simply use that initial llvm::Value (that 25300b57cec5SDimitry Andric // corresponds to the bound at time of array creation) within 25310b57cec5SDimitry Andric // getelementptr. But be prepared to pay the price of increasing a 25320b57cec5SDimitry Andric // customized form of coupling between the two components - which could 25330b57cec5SDimitry Andric // be hard to maintain as the codebase evolves. 25340b57cec5SDimitry Andric 25350b57cec5SDimitry Andric ExprResult SizeOfVLAExprR = ActOnUnaryExprOrTypeTraitExpr( 25360b57cec5SDimitry Andric EndVar->getLocation(), UETT_SizeOf, 25370b57cec5SDimitry Andric /*IsType=*/true, 25380b57cec5SDimitry Andric CreateParsedType(VAT->desugar(), Context.getTrivialTypeSourceInfo( 25390b57cec5SDimitry Andric VAT->desugar(), RangeLoc)) 25400b57cec5SDimitry Andric .getAsOpaquePtr(), 25410b57cec5SDimitry Andric EndVar->getSourceRange()); 25420b57cec5SDimitry Andric if (SizeOfVLAExprR.isInvalid()) 25430b57cec5SDimitry Andric return StmtError(); 25440b57cec5SDimitry Andric 25450b57cec5SDimitry Andric ExprResult SizeOfEachElementExprR = ActOnUnaryExprOrTypeTraitExpr( 25460b57cec5SDimitry Andric EndVar->getLocation(), UETT_SizeOf, 25470b57cec5SDimitry Andric /*IsType=*/true, 25480b57cec5SDimitry Andric CreateParsedType(VAT->desugar(), 25490b57cec5SDimitry Andric Context.getTrivialTypeSourceInfo( 25500b57cec5SDimitry Andric VAT->getElementType(), RangeLoc)) 25510b57cec5SDimitry Andric .getAsOpaquePtr(), 25520b57cec5SDimitry Andric EndVar->getSourceRange()); 25530b57cec5SDimitry Andric if (SizeOfEachElementExprR.isInvalid()) 25540b57cec5SDimitry Andric return StmtError(); 25550b57cec5SDimitry Andric 25560b57cec5SDimitry Andric BoundExpr = 25570b57cec5SDimitry Andric ActOnBinOp(S, EndVar->getLocation(), tok::slash, 25580b57cec5SDimitry Andric SizeOfVLAExprR.get(), SizeOfEachElementExprR.get()); 25590b57cec5SDimitry Andric if (BoundExpr.isInvalid()) 25600b57cec5SDimitry Andric return StmtError(); 25610b57cec5SDimitry Andric 25620b57cec5SDimitry Andric } else { 25630b57cec5SDimitry Andric // Can't be a DependentSizedArrayType or an IncompleteArrayType since 25640b57cec5SDimitry Andric // UnqAT is not incomplete and Range is not type-dependent. 25650b57cec5SDimitry Andric llvm_unreachable("Unexpected array type in for-range"); 25660b57cec5SDimitry Andric } 25670b57cec5SDimitry Andric 25680b57cec5SDimitry Andric // end-expr is __range + __bound. 25690b57cec5SDimitry Andric EndExpr = ActOnBinOp(S, ColonLoc, tok::plus, EndRangeRef.get(), 25700b57cec5SDimitry Andric BoundExpr.get()); 25710b57cec5SDimitry Andric if (EndExpr.isInvalid()) 25720b57cec5SDimitry Andric return StmtError(); 25730b57cec5SDimitry Andric if (FinishForRangeVarDecl(*this, EndVar, EndExpr.get(), ColonLoc, 25740b57cec5SDimitry Andric diag::err_for_range_iter_deduction_failure)) { 25750b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, EndExpr.get(), BEF_end); 25760b57cec5SDimitry Andric return StmtError(); 25770b57cec5SDimitry Andric } 25780b57cec5SDimitry Andric } else { 25790b57cec5SDimitry Andric OverloadCandidateSet CandidateSet(RangeLoc, 25800b57cec5SDimitry Andric OverloadCandidateSet::CSK_Normal); 25810b57cec5SDimitry Andric BeginEndFunction BEFFailure; 25820b57cec5SDimitry Andric ForRangeStatus RangeStatus = BuildNonArrayForRange( 25830b57cec5SDimitry Andric *this, BeginRangeRef.get(), EndRangeRef.get(), RangeType, BeginVar, 25840b57cec5SDimitry Andric EndVar, ColonLoc, CoawaitLoc, &CandidateSet, &BeginExpr, &EndExpr, 25850b57cec5SDimitry Andric &BEFFailure); 25860b57cec5SDimitry Andric 25870b57cec5SDimitry Andric if (Kind == BFRK_Build && RangeStatus == FRS_NoViableFunction && 25880b57cec5SDimitry Andric BEFFailure == BEF_begin) { 25890b57cec5SDimitry Andric // If the range is being built from an array parameter, emit a 25900b57cec5SDimitry Andric // a diagnostic that it is being treated as a pointer. 25910b57cec5SDimitry Andric if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(Range)) { 25920b57cec5SDimitry Andric if (ParmVarDecl *PVD = dyn_cast<ParmVarDecl>(DRE->getDecl())) { 25930b57cec5SDimitry Andric QualType ArrayTy = PVD->getOriginalType(); 25940b57cec5SDimitry Andric QualType PointerTy = PVD->getType(); 25950b57cec5SDimitry Andric if (PointerTy->isPointerType() && ArrayTy->isArrayType()) { 25960b57cec5SDimitry Andric Diag(Range->getBeginLoc(), diag::err_range_on_array_parameter) 25970b57cec5SDimitry Andric << RangeLoc << PVD << ArrayTy << PointerTy; 25980b57cec5SDimitry Andric Diag(PVD->getLocation(), diag::note_declared_at); 25990b57cec5SDimitry Andric return StmtError(); 26000b57cec5SDimitry Andric } 26010b57cec5SDimitry Andric } 26020b57cec5SDimitry Andric } 26030b57cec5SDimitry Andric 26040b57cec5SDimitry Andric // If building the range failed, try dereferencing the range expression 26050b57cec5SDimitry Andric // unless a diagnostic was issued or the end function is problematic. 26060b57cec5SDimitry Andric StmtResult SR = RebuildForRangeWithDereference(*this, S, ForLoc, 26070b57cec5SDimitry Andric CoawaitLoc, InitStmt, 26080b57cec5SDimitry Andric LoopVarDecl, ColonLoc, 26090b57cec5SDimitry Andric Range, RangeLoc, 26100b57cec5SDimitry Andric RParenLoc); 26110b57cec5SDimitry Andric if (SR.isInvalid() || SR.isUsable()) 26120b57cec5SDimitry Andric return SR; 26130b57cec5SDimitry Andric } 26140b57cec5SDimitry Andric 26150b57cec5SDimitry Andric // Otherwise, emit diagnostics if we haven't already. 26160b57cec5SDimitry Andric if (RangeStatus == FRS_NoViableFunction) { 26170b57cec5SDimitry Andric Expr *Range = BEFFailure ? EndRangeRef.get() : BeginRangeRef.get(); 26180b57cec5SDimitry Andric CandidateSet.NoteCandidates( 26190b57cec5SDimitry Andric PartialDiagnosticAt(Range->getBeginLoc(), 26200b57cec5SDimitry Andric PDiag(diag::err_for_range_invalid) 26210b57cec5SDimitry Andric << RangeLoc << Range->getType() 26220b57cec5SDimitry Andric << BEFFailure), 26230b57cec5SDimitry Andric *this, OCD_AllCandidates, Range); 26240b57cec5SDimitry Andric } 26250b57cec5SDimitry Andric // Return an error if no fix was discovered. 26260b57cec5SDimitry Andric if (RangeStatus != FRS_Success) 26270b57cec5SDimitry Andric return StmtError(); 26280b57cec5SDimitry Andric } 26290b57cec5SDimitry Andric 26300b57cec5SDimitry Andric assert(!BeginExpr.isInvalid() && !EndExpr.isInvalid() && 26310b57cec5SDimitry Andric "invalid range expression in for loop"); 26320b57cec5SDimitry Andric 26330b57cec5SDimitry Andric // C++11 [dcl.spec.auto]p7: BeginType and EndType must be the same. 26340b57cec5SDimitry Andric // C++1z removes this restriction. 26350b57cec5SDimitry Andric QualType BeginType = BeginVar->getType(), EndType = EndVar->getType(); 26360b57cec5SDimitry Andric if (!Context.hasSameType(BeginType, EndType)) { 26370b57cec5SDimitry Andric Diag(RangeLoc, getLangOpts().CPlusPlus17 26380b57cec5SDimitry Andric ? diag::warn_for_range_begin_end_types_differ 26390b57cec5SDimitry Andric : diag::ext_for_range_begin_end_types_differ) 26400b57cec5SDimitry Andric << BeginType << EndType; 26410b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, BeginExpr.get(), BEF_begin); 26420b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, EndExpr.get(), BEF_end); 26430b57cec5SDimitry Andric } 26440b57cec5SDimitry Andric 26450b57cec5SDimitry Andric BeginDeclStmt = 26460b57cec5SDimitry Andric ActOnDeclStmt(ConvertDeclToDeclGroup(BeginVar), ColonLoc, ColonLoc); 26470b57cec5SDimitry Andric EndDeclStmt = 26480b57cec5SDimitry Andric ActOnDeclStmt(ConvertDeclToDeclGroup(EndVar), ColonLoc, ColonLoc); 26490b57cec5SDimitry Andric 26500b57cec5SDimitry Andric const QualType BeginRefNonRefType = BeginType.getNonReferenceType(); 26510b57cec5SDimitry Andric ExprResult BeginRef = BuildDeclRefExpr(BeginVar, BeginRefNonRefType, 26520b57cec5SDimitry Andric VK_LValue, ColonLoc); 26530b57cec5SDimitry Andric if (BeginRef.isInvalid()) 26540b57cec5SDimitry Andric return StmtError(); 26550b57cec5SDimitry Andric 26560b57cec5SDimitry Andric ExprResult EndRef = BuildDeclRefExpr(EndVar, EndType.getNonReferenceType(), 26570b57cec5SDimitry Andric VK_LValue, ColonLoc); 26580b57cec5SDimitry Andric if (EndRef.isInvalid()) 26590b57cec5SDimitry Andric return StmtError(); 26600b57cec5SDimitry Andric 26610b57cec5SDimitry Andric // Build and check __begin != __end expression. 26620b57cec5SDimitry Andric NotEqExpr = ActOnBinOp(S, ColonLoc, tok::exclaimequal, 26630b57cec5SDimitry Andric BeginRef.get(), EndRef.get()); 26640b57cec5SDimitry Andric if (!NotEqExpr.isInvalid()) 26650b57cec5SDimitry Andric NotEqExpr = CheckBooleanCondition(ColonLoc, NotEqExpr.get()); 26660b57cec5SDimitry Andric if (!NotEqExpr.isInvalid()) 26670b57cec5SDimitry Andric NotEqExpr = 26680b57cec5SDimitry Andric ActOnFinishFullExpr(NotEqExpr.get(), /*DiscardedValue*/ false); 26690b57cec5SDimitry Andric if (NotEqExpr.isInvalid()) { 26700b57cec5SDimitry Andric Diag(RangeLoc, diag::note_for_range_invalid_iterator) 26710b57cec5SDimitry Andric << RangeLoc << 0 << BeginRangeRef.get()->getType(); 26720b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, BeginExpr.get(), BEF_begin); 26730b57cec5SDimitry Andric if (!Context.hasSameType(BeginType, EndType)) 26740b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, EndExpr.get(), BEF_end); 26750b57cec5SDimitry Andric return StmtError(); 26760b57cec5SDimitry Andric } 26770b57cec5SDimitry Andric 26780b57cec5SDimitry Andric // Build and check ++__begin expression. 26790b57cec5SDimitry Andric BeginRef = BuildDeclRefExpr(BeginVar, BeginRefNonRefType, 26800b57cec5SDimitry Andric VK_LValue, ColonLoc); 26810b57cec5SDimitry Andric if (BeginRef.isInvalid()) 26820b57cec5SDimitry Andric return StmtError(); 26830b57cec5SDimitry Andric 26840b57cec5SDimitry Andric IncrExpr = ActOnUnaryOp(S, ColonLoc, tok::plusplus, BeginRef.get()); 26850b57cec5SDimitry Andric if (!IncrExpr.isInvalid() && CoawaitLoc.isValid()) 26860b57cec5SDimitry Andric // FIXME: getCurScope() should not be used during template instantiation. 26870b57cec5SDimitry Andric // We should pick up the set of unqualified lookup results for operator 26880b57cec5SDimitry Andric // co_await during the initial parse. 26890b57cec5SDimitry Andric IncrExpr = ActOnCoawaitExpr(S, CoawaitLoc, IncrExpr.get()); 26900b57cec5SDimitry Andric if (!IncrExpr.isInvalid()) 26910b57cec5SDimitry Andric IncrExpr = ActOnFinishFullExpr(IncrExpr.get(), /*DiscardedValue*/ false); 26920b57cec5SDimitry Andric if (IncrExpr.isInvalid()) { 26930b57cec5SDimitry Andric Diag(RangeLoc, diag::note_for_range_invalid_iterator) 26940b57cec5SDimitry Andric << RangeLoc << 2 << BeginRangeRef.get()->getType() ; 26950b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, BeginExpr.get(), BEF_begin); 26960b57cec5SDimitry Andric return StmtError(); 26970b57cec5SDimitry Andric } 26980b57cec5SDimitry Andric 26990b57cec5SDimitry Andric // Build and check *__begin expression. 27000b57cec5SDimitry Andric BeginRef = BuildDeclRefExpr(BeginVar, BeginRefNonRefType, 27010b57cec5SDimitry Andric VK_LValue, ColonLoc); 27020b57cec5SDimitry Andric if (BeginRef.isInvalid()) 27030b57cec5SDimitry Andric return StmtError(); 27040b57cec5SDimitry Andric 27050b57cec5SDimitry Andric ExprResult DerefExpr = ActOnUnaryOp(S, ColonLoc, tok::star, BeginRef.get()); 27060b57cec5SDimitry Andric if (DerefExpr.isInvalid()) { 27070b57cec5SDimitry Andric Diag(RangeLoc, diag::note_for_range_invalid_iterator) 27080b57cec5SDimitry Andric << RangeLoc << 1 << BeginRangeRef.get()->getType(); 27090b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, BeginExpr.get(), BEF_begin); 27100b57cec5SDimitry Andric return StmtError(); 27110b57cec5SDimitry Andric } 27120b57cec5SDimitry Andric 27130b57cec5SDimitry Andric // Attach *__begin as initializer for VD. Don't touch it if we're just 27140b57cec5SDimitry Andric // trying to determine whether this would be a valid range. 27150b57cec5SDimitry Andric if (!LoopVar->isInvalidDecl() && Kind != BFRK_Check) { 27160b57cec5SDimitry Andric AddInitializerToDecl(LoopVar, DerefExpr.get(), /*DirectInit=*/false); 27175ffd83dbSDimitry Andric if (LoopVar->isInvalidDecl() || 27185ffd83dbSDimitry Andric (LoopVar->getInit() && LoopVar->getInit()->containsErrors())) 27190b57cec5SDimitry Andric NoteForRangeBeginEndFunction(*this, BeginExpr.get(), BEF_begin); 27200b57cec5SDimitry Andric } 27210b57cec5SDimitry Andric } 27220b57cec5SDimitry Andric 27230b57cec5SDimitry Andric // Don't bother to actually allocate the result if we're just trying to 27240b57cec5SDimitry Andric // determine whether it would be valid. 27250b57cec5SDimitry Andric if (Kind == BFRK_Check) 27260b57cec5SDimitry Andric return StmtResult(); 27270b57cec5SDimitry Andric 2728a7dea167SDimitry Andric // In OpenMP loop region loop control variable must be private. Perform 2729a7dea167SDimitry Andric // analysis of first part (if any). 2730a7dea167SDimitry Andric if (getLangOpts().OpenMP >= 50 && BeginDeclStmt.isUsable()) 2731a7dea167SDimitry Andric ActOnOpenMPLoopInitialization(ForLoc, BeginDeclStmt.get()); 2732a7dea167SDimitry Andric 27330b57cec5SDimitry Andric return new (Context) CXXForRangeStmt( 27340b57cec5SDimitry Andric InitStmt, RangeDS, cast_or_null<DeclStmt>(BeginDeclStmt.get()), 27350b57cec5SDimitry Andric cast_or_null<DeclStmt>(EndDeclStmt.get()), NotEqExpr.get(), 27360b57cec5SDimitry Andric IncrExpr.get(), LoopVarDS, /*Body=*/nullptr, ForLoc, CoawaitLoc, 27370b57cec5SDimitry Andric ColonLoc, RParenLoc); 27380b57cec5SDimitry Andric } 27390b57cec5SDimitry Andric 27400b57cec5SDimitry Andric /// FinishObjCForCollectionStmt - Attach the body to a objective-C foreach 27410b57cec5SDimitry Andric /// statement. 27420b57cec5SDimitry Andric StmtResult Sema::FinishObjCForCollectionStmt(Stmt *S, Stmt *B) { 27430b57cec5SDimitry Andric if (!S || !B) 27440b57cec5SDimitry Andric return StmtError(); 27450b57cec5SDimitry Andric ObjCForCollectionStmt * ForStmt = cast<ObjCForCollectionStmt>(S); 27460b57cec5SDimitry Andric 27470b57cec5SDimitry Andric ForStmt->setBody(B); 27480b57cec5SDimitry Andric return S; 27490b57cec5SDimitry Andric } 27500b57cec5SDimitry Andric 27510b57cec5SDimitry Andric // Warn when the loop variable is a const reference that creates a copy. 27520b57cec5SDimitry Andric // Suggest using the non-reference type for copies. If a copy can be prevented 27530b57cec5SDimitry Andric // suggest the const reference type that would do so. 27540b57cec5SDimitry Andric // For instance, given "for (const &Foo : Range)", suggest 27550b57cec5SDimitry Andric // "for (const Foo : Range)" to denote a copy is made for the loop. If 27560b57cec5SDimitry Andric // possible, also suggest "for (const &Bar : Range)" if this type prevents 27570b57cec5SDimitry Andric // the copy altogether. 27580b57cec5SDimitry Andric static void DiagnoseForRangeReferenceVariableCopies(Sema &SemaRef, 27590b57cec5SDimitry Andric const VarDecl *VD, 27600b57cec5SDimitry Andric QualType RangeInitType) { 27610b57cec5SDimitry Andric const Expr *InitExpr = VD->getInit(); 27620b57cec5SDimitry Andric if (!InitExpr) 27630b57cec5SDimitry Andric return; 27640b57cec5SDimitry Andric 27650b57cec5SDimitry Andric QualType VariableType = VD->getType(); 27660b57cec5SDimitry Andric 27670b57cec5SDimitry Andric if (auto Cleanups = dyn_cast<ExprWithCleanups>(InitExpr)) 27680b57cec5SDimitry Andric if (!Cleanups->cleanupsHaveSideEffects()) 27690b57cec5SDimitry Andric InitExpr = Cleanups->getSubExpr(); 27700b57cec5SDimitry Andric 27710b57cec5SDimitry Andric const MaterializeTemporaryExpr *MTE = 27720b57cec5SDimitry Andric dyn_cast<MaterializeTemporaryExpr>(InitExpr); 27730b57cec5SDimitry Andric 27740b57cec5SDimitry Andric // No copy made. 27750b57cec5SDimitry Andric if (!MTE) 27760b57cec5SDimitry Andric return; 27770b57cec5SDimitry Andric 2778480093f4SDimitry Andric const Expr *E = MTE->getSubExpr()->IgnoreImpCasts(); 27790b57cec5SDimitry Andric 27800b57cec5SDimitry Andric // Searching for either UnaryOperator for dereference of a pointer or 27810b57cec5SDimitry Andric // CXXOperatorCallExpr for handling iterators. 27820b57cec5SDimitry Andric while (!isa<CXXOperatorCallExpr>(E) && !isa<UnaryOperator>(E)) { 27830b57cec5SDimitry Andric if (const CXXConstructExpr *CCE = dyn_cast<CXXConstructExpr>(E)) { 27840b57cec5SDimitry Andric E = CCE->getArg(0); 27850b57cec5SDimitry Andric } else if (const CXXMemberCallExpr *Call = dyn_cast<CXXMemberCallExpr>(E)) { 27860b57cec5SDimitry Andric const MemberExpr *ME = cast<MemberExpr>(Call->getCallee()); 27870b57cec5SDimitry Andric E = ME->getBase(); 27880b57cec5SDimitry Andric } else { 27890b57cec5SDimitry Andric const MaterializeTemporaryExpr *MTE = cast<MaterializeTemporaryExpr>(E); 2790480093f4SDimitry Andric E = MTE->getSubExpr(); 27910b57cec5SDimitry Andric } 27920b57cec5SDimitry Andric E = E->IgnoreImpCasts(); 27930b57cec5SDimitry Andric } 27940b57cec5SDimitry Andric 27955ffd83dbSDimitry Andric QualType ReferenceReturnType; 27960b57cec5SDimitry Andric if (isa<UnaryOperator>(E)) { 27975ffd83dbSDimitry Andric ReferenceReturnType = SemaRef.Context.getLValueReferenceType(E->getType()); 27980b57cec5SDimitry Andric } else { 27990b57cec5SDimitry Andric const CXXOperatorCallExpr *Call = cast<CXXOperatorCallExpr>(E); 28000b57cec5SDimitry Andric const FunctionDecl *FD = Call->getDirectCallee(); 28010b57cec5SDimitry Andric QualType ReturnType = FD->getReturnType(); 28025ffd83dbSDimitry Andric if (ReturnType->isReferenceType()) 28035ffd83dbSDimitry Andric ReferenceReturnType = ReturnType; 28040b57cec5SDimitry Andric } 28050b57cec5SDimitry Andric 28065ffd83dbSDimitry Andric if (!ReferenceReturnType.isNull()) { 28070b57cec5SDimitry Andric // Loop variable creates a temporary. Suggest either to go with 28080b57cec5SDimitry Andric // non-reference loop variable to indicate a copy is made, or 28095ffd83dbSDimitry Andric // the correct type to bind a const reference. 28105ffd83dbSDimitry Andric SemaRef.Diag(VD->getLocation(), 28115ffd83dbSDimitry Andric diag::warn_for_range_const_ref_binds_temp_built_from_ref) 28125ffd83dbSDimitry Andric << VD << VariableType << ReferenceReturnType; 28130b57cec5SDimitry Andric QualType NonReferenceType = VariableType.getNonReferenceType(); 28140b57cec5SDimitry Andric NonReferenceType.removeLocalConst(); 28150b57cec5SDimitry Andric QualType NewReferenceType = 28160b57cec5SDimitry Andric SemaRef.Context.getLValueReferenceType(E->getType().withConst()); 28170b57cec5SDimitry Andric SemaRef.Diag(VD->getBeginLoc(), diag::note_use_type_or_non_reference) 2818480093f4SDimitry Andric << NonReferenceType << NewReferenceType << VD->getSourceRange() 2819480093f4SDimitry Andric << FixItHint::CreateRemoval(VD->getTypeSpecEndLoc()); 2820480093f4SDimitry Andric } else if (!VariableType->isRValueReferenceType()) { 28210b57cec5SDimitry Andric // The range always returns a copy, so a temporary is always created. 28220b57cec5SDimitry Andric // Suggest removing the reference from the loop variable. 2823480093f4SDimitry Andric // If the type is a rvalue reference do not warn since that changes the 2824480093f4SDimitry Andric // semantic of the code. 28255ffd83dbSDimitry Andric SemaRef.Diag(VD->getLocation(), diag::warn_for_range_ref_binds_ret_temp) 28260b57cec5SDimitry Andric << VD << RangeInitType; 28270b57cec5SDimitry Andric QualType NonReferenceType = VariableType.getNonReferenceType(); 28280b57cec5SDimitry Andric NonReferenceType.removeLocalConst(); 28290b57cec5SDimitry Andric SemaRef.Diag(VD->getBeginLoc(), diag::note_use_non_reference_type) 2830480093f4SDimitry Andric << NonReferenceType << VD->getSourceRange() 2831480093f4SDimitry Andric << FixItHint::CreateRemoval(VD->getTypeSpecEndLoc()); 28320b57cec5SDimitry Andric } 28330b57cec5SDimitry Andric } 28340b57cec5SDimitry Andric 2835480093f4SDimitry Andric /// Determines whether the @p VariableType's declaration is a record with the 2836480093f4SDimitry Andric /// clang::trivial_abi attribute. 2837480093f4SDimitry Andric static bool hasTrivialABIAttr(QualType VariableType) { 2838480093f4SDimitry Andric if (CXXRecordDecl *RD = VariableType->getAsCXXRecordDecl()) 2839480093f4SDimitry Andric return RD->hasAttr<TrivialABIAttr>(); 2840480093f4SDimitry Andric 2841480093f4SDimitry Andric return false; 2842480093f4SDimitry Andric } 2843480093f4SDimitry Andric 28440b57cec5SDimitry Andric // Warns when the loop variable can be changed to a reference type to 28450b57cec5SDimitry Andric // prevent a copy. For instance, if given "for (const Foo x : Range)" suggest 28460b57cec5SDimitry Andric // "for (const Foo &x : Range)" if this form does not make a copy. 28470b57cec5SDimitry Andric static void DiagnoseForRangeConstVariableCopies(Sema &SemaRef, 28480b57cec5SDimitry Andric const VarDecl *VD) { 28490b57cec5SDimitry Andric const Expr *InitExpr = VD->getInit(); 28500b57cec5SDimitry Andric if (!InitExpr) 28510b57cec5SDimitry Andric return; 28520b57cec5SDimitry Andric 28530b57cec5SDimitry Andric QualType VariableType = VD->getType(); 28540b57cec5SDimitry Andric 28550b57cec5SDimitry Andric if (const CXXConstructExpr *CE = dyn_cast<CXXConstructExpr>(InitExpr)) { 28560b57cec5SDimitry Andric if (!CE->getConstructor()->isCopyConstructor()) 28570b57cec5SDimitry Andric return; 28580b57cec5SDimitry Andric } else if (const CastExpr *CE = dyn_cast<CastExpr>(InitExpr)) { 28590b57cec5SDimitry Andric if (CE->getCastKind() != CK_LValueToRValue) 28600b57cec5SDimitry Andric return; 28610b57cec5SDimitry Andric } else { 28620b57cec5SDimitry Andric return; 28630b57cec5SDimitry Andric } 28640b57cec5SDimitry Andric 2865480093f4SDimitry Andric // Small trivially copyable types are cheap to copy. Do not emit the 2866480093f4SDimitry Andric // diagnostic for these instances. 64 bytes is a common size of a cache line. 2867480093f4SDimitry Andric // (The function `getTypeSize` returns the size in bits.) 2868480093f4SDimitry Andric ASTContext &Ctx = SemaRef.Context; 2869480093f4SDimitry Andric if (Ctx.getTypeSize(VariableType) <= 64 * 8 && 2870480093f4SDimitry Andric (VariableType.isTriviallyCopyableType(Ctx) || 2871480093f4SDimitry Andric hasTrivialABIAttr(VariableType))) 28720b57cec5SDimitry Andric return; 28730b57cec5SDimitry Andric 28740b57cec5SDimitry Andric // Suggest changing from a const variable to a const reference variable 28750b57cec5SDimitry Andric // if doing so will prevent a copy. 28760b57cec5SDimitry Andric SemaRef.Diag(VD->getLocation(), diag::warn_for_range_copy) 28775ffd83dbSDimitry Andric << VD << VariableType; 28780b57cec5SDimitry Andric SemaRef.Diag(VD->getBeginLoc(), diag::note_use_reference_type) 28790b57cec5SDimitry Andric << SemaRef.Context.getLValueReferenceType(VariableType) 2880480093f4SDimitry Andric << VD->getSourceRange() 2881480093f4SDimitry Andric << FixItHint::CreateInsertion(VD->getLocation(), "&"); 28820b57cec5SDimitry Andric } 28830b57cec5SDimitry Andric 28840b57cec5SDimitry Andric /// DiagnoseForRangeVariableCopies - Diagnose three cases and fixes for them. 28850b57cec5SDimitry Andric /// 1) for (const foo &x : foos) where foos only returns a copy. Suggest 28860b57cec5SDimitry Andric /// using "const foo x" to show that a copy is made 28870b57cec5SDimitry Andric /// 2) for (const bar &x : foos) where bar is a temporary initialized by bar. 28880b57cec5SDimitry Andric /// Suggest either "const bar x" to keep the copying or "const foo& x" to 28890b57cec5SDimitry Andric /// prevent the copy. 28900b57cec5SDimitry Andric /// 3) for (const foo x : foos) where x is constructed from a reference foo. 28910b57cec5SDimitry Andric /// Suggest "const foo &x" to prevent the copy. 28920b57cec5SDimitry Andric static void DiagnoseForRangeVariableCopies(Sema &SemaRef, 28930b57cec5SDimitry Andric const CXXForRangeStmt *ForStmt) { 289455e4f9d5SDimitry Andric if (SemaRef.inTemplateInstantiation()) 289555e4f9d5SDimitry Andric return; 289655e4f9d5SDimitry Andric 28975ffd83dbSDimitry Andric if (SemaRef.Diags.isIgnored( 28985ffd83dbSDimitry Andric diag::warn_for_range_const_ref_binds_temp_built_from_ref, 28990b57cec5SDimitry Andric ForStmt->getBeginLoc()) && 29005ffd83dbSDimitry Andric SemaRef.Diags.isIgnored(diag::warn_for_range_ref_binds_ret_temp, 29010b57cec5SDimitry Andric ForStmt->getBeginLoc()) && 29020b57cec5SDimitry Andric SemaRef.Diags.isIgnored(diag::warn_for_range_copy, 29030b57cec5SDimitry Andric ForStmt->getBeginLoc())) { 29040b57cec5SDimitry Andric return; 29050b57cec5SDimitry Andric } 29060b57cec5SDimitry Andric 29070b57cec5SDimitry Andric const VarDecl *VD = ForStmt->getLoopVariable(); 29080b57cec5SDimitry Andric if (!VD) 29090b57cec5SDimitry Andric return; 29100b57cec5SDimitry Andric 29110b57cec5SDimitry Andric QualType VariableType = VD->getType(); 29120b57cec5SDimitry Andric 29130b57cec5SDimitry Andric if (VariableType->isIncompleteType()) 29140b57cec5SDimitry Andric return; 29150b57cec5SDimitry Andric 29160b57cec5SDimitry Andric const Expr *InitExpr = VD->getInit(); 29170b57cec5SDimitry Andric if (!InitExpr) 29180b57cec5SDimitry Andric return; 29190b57cec5SDimitry Andric 292055e4f9d5SDimitry Andric if (InitExpr->getExprLoc().isMacroID()) 292155e4f9d5SDimitry Andric return; 292255e4f9d5SDimitry Andric 29230b57cec5SDimitry Andric if (VariableType->isReferenceType()) { 29240b57cec5SDimitry Andric DiagnoseForRangeReferenceVariableCopies(SemaRef, VD, 29250b57cec5SDimitry Andric ForStmt->getRangeInit()->getType()); 29260b57cec5SDimitry Andric } else if (VariableType.isConstQualified()) { 29270b57cec5SDimitry Andric DiagnoseForRangeConstVariableCopies(SemaRef, VD); 29280b57cec5SDimitry Andric } 29290b57cec5SDimitry Andric } 29300b57cec5SDimitry Andric 29310b57cec5SDimitry Andric /// FinishCXXForRangeStmt - Attach the body to a C++0x for-range statement. 29320b57cec5SDimitry Andric /// This is a separate step from ActOnCXXForRangeStmt because analysis of the 29330b57cec5SDimitry Andric /// body cannot be performed until after the type of the range variable is 29340b57cec5SDimitry Andric /// determined. 29350b57cec5SDimitry Andric StmtResult Sema::FinishCXXForRangeStmt(Stmt *S, Stmt *B) { 29360b57cec5SDimitry Andric if (!S || !B) 29370b57cec5SDimitry Andric return StmtError(); 29380b57cec5SDimitry Andric 29390b57cec5SDimitry Andric if (isa<ObjCForCollectionStmt>(S)) 29400b57cec5SDimitry Andric return FinishObjCForCollectionStmt(S, B); 29410b57cec5SDimitry Andric 29420b57cec5SDimitry Andric CXXForRangeStmt *ForStmt = cast<CXXForRangeStmt>(S); 29430b57cec5SDimitry Andric ForStmt->setBody(B); 29440b57cec5SDimitry Andric 29450b57cec5SDimitry Andric DiagnoseEmptyStmtBody(ForStmt->getRParenLoc(), B, 29460b57cec5SDimitry Andric diag::warn_empty_range_based_for_body); 29470b57cec5SDimitry Andric 29480b57cec5SDimitry Andric DiagnoseForRangeVariableCopies(*this, ForStmt); 29490b57cec5SDimitry Andric 29500b57cec5SDimitry Andric return S; 29510b57cec5SDimitry Andric } 29520b57cec5SDimitry Andric 29530b57cec5SDimitry Andric StmtResult Sema::ActOnGotoStmt(SourceLocation GotoLoc, 29540b57cec5SDimitry Andric SourceLocation LabelLoc, 29550b57cec5SDimitry Andric LabelDecl *TheDecl) { 29560b57cec5SDimitry Andric setFunctionHasBranchIntoScope(); 29570b57cec5SDimitry Andric TheDecl->markUsed(Context); 29580b57cec5SDimitry Andric return new (Context) GotoStmt(TheDecl, GotoLoc, LabelLoc); 29590b57cec5SDimitry Andric } 29600b57cec5SDimitry Andric 29610b57cec5SDimitry Andric StmtResult 29620b57cec5SDimitry Andric Sema::ActOnIndirectGotoStmt(SourceLocation GotoLoc, SourceLocation StarLoc, 29630b57cec5SDimitry Andric Expr *E) { 29640b57cec5SDimitry Andric // Convert operand to void* 29650b57cec5SDimitry Andric if (!E->isTypeDependent()) { 29660b57cec5SDimitry Andric QualType ETy = E->getType(); 29670b57cec5SDimitry Andric QualType DestTy = Context.getPointerType(Context.VoidTy.withConst()); 29680b57cec5SDimitry Andric ExprResult ExprRes = E; 29690b57cec5SDimitry Andric AssignConvertType ConvTy = 29700b57cec5SDimitry Andric CheckSingleAssignmentConstraints(DestTy, ExprRes); 29710b57cec5SDimitry Andric if (ExprRes.isInvalid()) 29720b57cec5SDimitry Andric return StmtError(); 29730b57cec5SDimitry Andric E = ExprRes.get(); 29740b57cec5SDimitry Andric if (DiagnoseAssignmentResult(ConvTy, StarLoc, DestTy, ETy, E, AA_Passing)) 29750b57cec5SDimitry Andric return StmtError(); 29760b57cec5SDimitry Andric } 29770b57cec5SDimitry Andric 29780b57cec5SDimitry Andric ExprResult ExprRes = ActOnFinishFullExpr(E, /*DiscardedValue*/ false); 29790b57cec5SDimitry Andric if (ExprRes.isInvalid()) 29800b57cec5SDimitry Andric return StmtError(); 29810b57cec5SDimitry Andric E = ExprRes.get(); 29820b57cec5SDimitry Andric 29830b57cec5SDimitry Andric setFunctionHasIndirectGoto(); 29840b57cec5SDimitry Andric 29850b57cec5SDimitry Andric return new (Context) IndirectGotoStmt(GotoLoc, StarLoc, E); 29860b57cec5SDimitry Andric } 29870b57cec5SDimitry Andric 29880b57cec5SDimitry Andric static void CheckJumpOutOfSEHFinally(Sema &S, SourceLocation Loc, 29890b57cec5SDimitry Andric const Scope &DestScope) { 29900b57cec5SDimitry Andric if (!S.CurrentSEHFinally.empty() && 29910b57cec5SDimitry Andric DestScope.Contains(*S.CurrentSEHFinally.back())) { 29920b57cec5SDimitry Andric S.Diag(Loc, diag::warn_jump_out_of_seh_finally); 29930b57cec5SDimitry Andric } 29940b57cec5SDimitry Andric } 29950b57cec5SDimitry Andric 29960b57cec5SDimitry Andric StmtResult 29970b57cec5SDimitry Andric Sema::ActOnContinueStmt(SourceLocation ContinueLoc, Scope *CurScope) { 29980b57cec5SDimitry Andric Scope *S = CurScope->getContinueParent(); 29990b57cec5SDimitry Andric if (!S) { 30000b57cec5SDimitry Andric // C99 6.8.6.2p1: A break shall appear only in or as a loop body. 30010b57cec5SDimitry Andric return StmtError(Diag(ContinueLoc, diag::err_continue_not_in_loop)); 30020b57cec5SDimitry Andric } 30030b57cec5SDimitry Andric CheckJumpOutOfSEHFinally(*this, ContinueLoc, *S); 30040b57cec5SDimitry Andric 30050b57cec5SDimitry Andric return new (Context) ContinueStmt(ContinueLoc); 30060b57cec5SDimitry Andric } 30070b57cec5SDimitry Andric 30080b57cec5SDimitry Andric StmtResult 30090b57cec5SDimitry Andric Sema::ActOnBreakStmt(SourceLocation BreakLoc, Scope *CurScope) { 30100b57cec5SDimitry Andric Scope *S = CurScope->getBreakParent(); 30110b57cec5SDimitry Andric if (!S) { 30120b57cec5SDimitry Andric // C99 6.8.6.3p1: A break shall appear only in or as a switch/loop body. 30130b57cec5SDimitry Andric return StmtError(Diag(BreakLoc, diag::err_break_not_in_loop_or_switch)); 30140b57cec5SDimitry Andric } 30150b57cec5SDimitry Andric if (S->isOpenMPLoopScope()) 30160b57cec5SDimitry Andric return StmtError(Diag(BreakLoc, diag::err_omp_loop_cannot_use_stmt) 30170b57cec5SDimitry Andric << "break"); 30180b57cec5SDimitry Andric CheckJumpOutOfSEHFinally(*this, BreakLoc, *S); 30190b57cec5SDimitry Andric 30200b57cec5SDimitry Andric return new (Context) BreakStmt(BreakLoc); 30210b57cec5SDimitry Andric } 30220b57cec5SDimitry Andric 30230b57cec5SDimitry Andric /// Determine whether the given expression is a candidate for 30240b57cec5SDimitry Andric /// copy elision in either a return statement or a throw expression. 30250b57cec5SDimitry Andric /// 30260b57cec5SDimitry Andric /// \param ReturnType If we're determining the copy elision candidate for 30270b57cec5SDimitry Andric /// a return statement, this is the return type of the function. If we're 30280b57cec5SDimitry Andric /// determining the copy elision candidate for a throw expression, this will 30290b57cec5SDimitry Andric /// be a NULL type. 30300b57cec5SDimitry Andric /// 30310b57cec5SDimitry Andric /// \param E The expression being returned from the function or block, or 30320b57cec5SDimitry Andric /// being thrown. 30330b57cec5SDimitry Andric /// 30340b57cec5SDimitry Andric /// \param CESK Whether we allow function parameters or 30350b57cec5SDimitry Andric /// id-expressions that could be moved out of the function to be considered NRVO 30360b57cec5SDimitry Andric /// candidates. C++ prohibits these for NRVO itself, but we re-use this logic to 30370b57cec5SDimitry Andric /// determine whether we should try to move as part of a return or throw (which 30380b57cec5SDimitry Andric /// does allow function parameters). 30390b57cec5SDimitry Andric /// 30400b57cec5SDimitry Andric /// \returns The NRVO candidate variable, if the return statement may use the 30410b57cec5SDimitry Andric /// NRVO, or NULL if there is no such candidate. 30420b57cec5SDimitry Andric VarDecl *Sema::getCopyElisionCandidate(QualType ReturnType, Expr *E, 30430b57cec5SDimitry Andric CopyElisionSemanticsKind CESK) { 30440b57cec5SDimitry Andric // - in a return statement in a function [where] ... 30450b57cec5SDimitry Andric // ... the expression is the name of a non-volatile automatic object ... 30460b57cec5SDimitry Andric DeclRefExpr *DR = dyn_cast<DeclRefExpr>(E->IgnoreParens()); 30470b57cec5SDimitry Andric if (!DR || DR->refersToEnclosingVariableOrCapture()) 30480b57cec5SDimitry Andric return nullptr; 30490b57cec5SDimitry Andric VarDecl *VD = dyn_cast<VarDecl>(DR->getDecl()); 30500b57cec5SDimitry Andric if (!VD) 30510b57cec5SDimitry Andric return nullptr; 30520b57cec5SDimitry Andric 30530b57cec5SDimitry Andric if (isCopyElisionCandidate(ReturnType, VD, CESK)) 30540b57cec5SDimitry Andric return VD; 30550b57cec5SDimitry Andric return nullptr; 30560b57cec5SDimitry Andric } 30570b57cec5SDimitry Andric 30580b57cec5SDimitry Andric bool Sema::isCopyElisionCandidate(QualType ReturnType, const VarDecl *VD, 30590b57cec5SDimitry Andric CopyElisionSemanticsKind CESK) { 30600b57cec5SDimitry Andric QualType VDType = VD->getType(); 30610b57cec5SDimitry Andric // - in a return statement in a function with ... 30620b57cec5SDimitry Andric // ... a class return type ... 30630b57cec5SDimitry Andric if (!ReturnType.isNull() && !ReturnType->isDependentType()) { 30640b57cec5SDimitry Andric if (!ReturnType->isRecordType()) 30650b57cec5SDimitry Andric return false; 30660b57cec5SDimitry Andric // ... the same cv-unqualified type as the function return type ... 30670b57cec5SDimitry Andric // When considering moving this expression out, allow dissimilar types. 30680b57cec5SDimitry Andric if (!(CESK & CES_AllowDifferentTypes) && !VDType->isDependentType() && 30690b57cec5SDimitry Andric !Context.hasSameUnqualifiedType(ReturnType, VDType)) 30700b57cec5SDimitry Andric return false; 30710b57cec5SDimitry Andric } 30720b57cec5SDimitry Andric 30730b57cec5SDimitry Andric // ...object (other than a function or catch-clause parameter)... 30740b57cec5SDimitry Andric if (VD->getKind() != Decl::Var && 30750b57cec5SDimitry Andric !((CESK & CES_AllowParameters) && VD->getKind() == Decl::ParmVar)) 30760b57cec5SDimitry Andric return false; 30770b57cec5SDimitry Andric if (!(CESK & CES_AllowExceptionVariables) && VD->isExceptionVariable()) 30780b57cec5SDimitry Andric return false; 30790b57cec5SDimitry Andric 30800b57cec5SDimitry Andric // ...automatic... 30810b57cec5SDimitry Andric if (!VD->hasLocalStorage()) return false; 30820b57cec5SDimitry Andric 30830b57cec5SDimitry Andric // Return false if VD is a __block variable. We don't want to implicitly move 30840b57cec5SDimitry Andric // out of a __block variable during a return because we cannot assume the 30850b57cec5SDimitry Andric // variable will no longer be used. 30860b57cec5SDimitry Andric if (VD->hasAttr<BlocksAttr>()) return false; 30870b57cec5SDimitry Andric 3088*e8d8bef9SDimitry Andric // ...non-volatile... 3089*e8d8bef9SDimitry Andric if (VD->getType().isVolatileQualified()) 3090*e8d8bef9SDimitry Andric return false; 3091*e8d8bef9SDimitry Andric 30920b57cec5SDimitry Andric if (CESK & CES_AllowDifferentTypes) 30930b57cec5SDimitry Andric return true; 30940b57cec5SDimitry Andric 30950b57cec5SDimitry Andric // Variables with higher required alignment than their type's ABI 30960b57cec5SDimitry Andric // alignment cannot use NRVO. 30970b57cec5SDimitry Andric if (!VD->getType()->isDependentType() && VD->hasAttr<AlignedAttr>() && 30980b57cec5SDimitry Andric Context.getDeclAlign(VD) > Context.getTypeAlignInChars(VD->getType())) 30990b57cec5SDimitry Andric return false; 31000b57cec5SDimitry Andric 31010b57cec5SDimitry Andric return true; 31020b57cec5SDimitry Andric } 31030b57cec5SDimitry Andric 31040b57cec5SDimitry Andric /// Try to perform the initialization of a potentially-movable value, 31050b57cec5SDimitry Andric /// which is the operand to a return or throw statement. 31060b57cec5SDimitry Andric /// 31070b57cec5SDimitry Andric /// This routine implements C++14 [class.copy]p32, which attempts to treat 31080b57cec5SDimitry Andric /// returned lvalues as rvalues in certain cases (to prefer move construction), 31090b57cec5SDimitry Andric /// then falls back to treating them as lvalues if that failed. 31100b57cec5SDimitry Andric /// 31110b57cec5SDimitry Andric /// \param ConvertingConstructorsOnly If true, follow [class.copy]p32 and reject 31120b57cec5SDimitry Andric /// resolutions that find non-constructors, such as derived-to-base conversions 31130b57cec5SDimitry Andric /// or `operator T()&&` member functions. If false, do consider such 31140b57cec5SDimitry Andric /// conversion sequences. 31150b57cec5SDimitry Andric /// 31160b57cec5SDimitry Andric /// \param Res We will fill this in if move-initialization was possible. 31170b57cec5SDimitry Andric /// If move-initialization is not possible, such that we must fall back to 31180b57cec5SDimitry Andric /// treating the operand as an lvalue, we will leave Res in its original 31190b57cec5SDimitry Andric /// invalid state. 3120*e8d8bef9SDimitry Andric /// 3121*e8d8bef9SDimitry Andric /// \returns Whether we need to do the second overload resolution. If the first 3122*e8d8bef9SDimitry Andric /// overload resolution fails, or if the first overload resolution succeeds but 3123*e8d8bef9SDimitry Andric /// the selected constructor/operator doesn't match the additional criteria, we 3124*e8d8bef9SDimitry Andric /// need to do the second overload resolution. 3125*e8d8bef9SDimitry Andric static bool TryMoveInitialization(Sema &S, const InitializedEntity &Entity, 31260b57cec5SDimitry Andric const VarDecl *NRVOCandidate, 3127*e8d8bef9SDimitry Andric QualType ResultType, Expr *&Value, 31280b57cec5SDimitry Andric bool ConvertingConstructorsOnly, 3129*e8d8bef9SDimitry Andric bool IsDiagnosticsCheck, ExprResult &Res) { 31300b57cec5SDimitry Andric ImplicitCastExpr AsRvalue(ImplicitCastExpr::OnStack, Value->getType(), 3131*e8d8bef9SDimitry Andric CK_NoOp, Value, VK_XValue, FPOptionsOverride()); 31320b57cec5SDimitry Andric 31330b57cec5SDimitry Andric Expr *InitExpr = &AsRvalue; 31340b57cec5SDimitry Andric 31350b57cec5SDimitry Andric InitializationKind Kind = InitializationKind::CreateCopy( 31360b57cec5SDimitry Andric Value->getBeginLoc(), Value->getBeginLoc()); 31370b57cec5SDimitry Andric 31380b57cec5SDimitry Andric InitializationSequence Seq(S, Entity, Kind, InitExpr); 31390b57cec5SDimitry Andric 3140*e8d8bef9SDimitry Andric bool NeedSecondOverloadResolution = true; 3141*e8d8bef9SDimitry Andric if (!Seq && 3142*e8d8bef9SDimitry Andric (IsDiagnosticsCheck || Seq.getFailedOverloadResult() != OR_Deleted)) { 3143*e8d8bef9SDimitry Andric return NeedSecondOverloadResolution; 3144*e8d8bef9SDimitry Andric } 31450b57cec5SDimitry Andric 31460b57cec5SDimitry Andric for (const InitializationSequence::Step &Step : Seq.steps()) { 31470b57cec5SDimitry Andric if (Step.Kind != InitializationSequence::SK_ConstructorInitialization && 31480b57cec5SDimitry Andric Step.Kind != InitializationSequence::SK_UserConversion) 31490b57cec5SDimitry Andric continue; 31500b57cec5SDimitry Andric 31510b57cec5SDimitry Andric FunctionDecl *FD = Step.Function.Function; 31520b57cec5SDimitry Andric if (ConvertingConstructorsOnly) { 31530b57cec5SDimitry Andric if (isa<CXXConstructorDecl>(FD)) { 31540b57cec5SDimitry Andric // C++14 [class.copy]p32: 31550b57cec5SDimitry Andric // [...] If the first overload resolution fails or was not performed, 31560b57cec5SDimitry Andric // or if the type of the first parameter of the selected constructor 31570b57cec5SDimitry Andric // is not an rvalue reference to the object's type (possibly 31580b57cec5SDimitry Andric // cv-qualified), overload resolution is performed again, considering 31590b57cec5SDimitry Andric // the object as an lvalue. 31600b57cec5SDimitry Andric const RValueReferenceType *RRefType = 31610b57cec5SDimitry Andric FD->getParamDecl(0)->getType()->getAs<RValueReferenceType>(); 31620b57cec5SDimitry Andric if (!RRefType) 31630b57cec5SDimitry Andric break; 31640b57cec5SDimitry Andric if (!S.Context.hasSameUnqualifiedType(RRefType->getPointeeType(), 31650b57cec5SDimitry Andric NRVOCandidate->getType())) 31660b57cec5SDimitry Andric break; 31670b57cec5SDimitry Andric } else { 31680b57cec5SDimitry Andric continue; 31690b57cec5SDimitry Andric } 31700b57cec5SDimitry Andric } else { 31710b57cec5SDimitry Andric if (isa<CXXConstructorDecl>(FD)) { 31720b57cec5SDimitry Andric // Check that overload resolution selected a constructor taking an 31730b57cec5SDimitry Andric // rvalue reference. If it selected an lvalue reference, then we 31740b57cec5SDimitry Andric // didn't need to cast this thing to an rvalue in the first place. 31750b57cec5SDimitry Andric if (!isa<RValueReferenceType>(FD->getParamDecl(0)->getType())) 31760b57cec5SDimitry Andric break; 31770b57cec5SDimitry Andric } else if (isa<CXXMethodDecl>(FD)) { 31780b57cec5SDimitry Andric // Check that overload resolution selected a conversion operator 31790b57cec5SDimitry Andric // taking an rvalue reference. 31800b57cec5SDimitry Andric if (cast<CXXMethodDecl>(FD)->getRefQualifier() != RQ_RValue) 31810b57cec5SDimitry Andric break; 31820b57cec5SDimitry Andric } else { 31830b57cec5SDimitry Andric continue; 31840b57cec5SDimitry Andric } 31850b57cec5SDimitry Andric } 31860b57cec5SDimitry Andric 3187*e8d8bef9SDimitry Andric NeedSecondOverloadResolution = false; 31880b57cec5SDimitry Andric // Promote "AsRvalue" to the heap, since we now need this 31890b57cec5SDimitry Andric // expression node to persist. 3190*e8d8bef9SDimitry Andric Value = 3191*e8d8bef9SDimitry Andric ImplicitCastExpr::Create(S.Context, Value->getType(), CK_NoOp, Value, 3192*e8d8bef9SDimitry Andric nullptr, VK_XValue, FPOptionsOverride()); 31930b57cec5SDimitry Andric 31940b57cec5SDimitry Andric // Complete type-checking the initialization of the return type 31950b57cec5SDimitry Andric // using the constructor we found. 31960b57cec5SDimitry Andric Res = Seq.Perform(S, Entity, Kind, Value); 31970b57cec5SDimitry Andric } 3198*e8d8bef9SDimitry Andric 3199*e8d8bef9SDimitry Andric return NeedSecondOverloadResolution; 32000b57cec5SDimitry Andric } 32010b57cec5SDimitry Andric 32020b57cec5SDimitry Andric /// Perform the initialization of a potentially-movable value, which 32030b57cec5SDimitry Andric /// is the result of return value. 32040b57cec5SDimitry Andric /// 32050b57cec5SDimitry Andric /// This routine implements C++14 [class.copy]p32, which attempts to treat 32060b57cec5SDimitry Andric /// returned lvalues as rvalues in certain cases (to prefer move construction), 32070b57cec5SDimitry Andric /// then falls back to treating them as lvalues if that failed. 32080b57cec5SDimitry Andric ExprResult 32090b57cec5SDimitry Andric Sema::PerformMoveOrCopyInitialization(const InitializedEntity &Entity, 32100b57cec5SDimitry Andric const VarDecl *NRVOCandidate, 32110b57cec5SDimitry Andric QualType ResultType, 32120b57cec5SDimitry Andric Expr *Value, 32130b57cec5SDimitry Andric bool AllowNRVO) { 32140b57cec5SDimitry Andric // C++14 [class.copy]p32: 32150b57cec5SDimitry Andric // When the criteria for elision of a copy/move operation are met, but not for 32160b57cec5SDimitry Andric // an exception-declaration, and the object to be copied is designated by an 32170b57cec5SDimitry Andric // lvalue, or when the expression in a return statement is a (possibly 32180b57cec5SDimitry Andric // parenthesized) id-expression that names an object with automatic storage 32190b57cec5SDimitry Andric // duration declared in the body or parameter-declaration-clause of the 32200b57cec5SDimitry Andric // innermost enclosing function or lambda-expression, overload resolution to 32210b57cec5SDimitry Andric // select the constructor for the copy is first performed as if the object 32220b57cec5SDimitry Andric // were designated by an rvalue. 32230b57cec5SDimitry Andric ExprResult Res = ExprError(); 3224*e8d8bef9SDimitry Andric bool NeedSecondOverloadResolution = true; 32250b57cec5SDimitry Andric 32260b57cec5SDimitry Andric if (AllowNRVO) { 32270b57cec5SDimitry Andric bool AffectedByCWG1579 = false; 32280b57cec5SDimitry Andric 32290b57cec5SDimitry Andric if (!NRVOCandidate) { 32300b57cec5SDimitry Andric NRVOCandidate = getCopyElisionCandidate(ResultType, Value, CES_Default); 32310b57cec5SDimitry Andric if (NRVOCandidate && 32320b57cec5SDimitry Andric !getDiagnostics().isIgnored(diag::warn_return_std_move_in_cxx11, 32330b57cec5SDimitry Andric Value->getExprLoc())) { 32340b57cec5SDimitry Andric const VarDecl *NRVOCandidateInCXX11 = 32350b57cec5SDimitry Andric getCopyElisionCandidate(ResultType, Value, CES_FormerDefault); 32360b57cec5SDimitry Andric AffectedByCWG1579 = (!NRVOCandidateInCXX11); 32370b57cec5SDimitry Andric } 32380b57cec5SDimitry Andric } 32390b57cec5SDimitry Andric 32400b57cec5SDimitry Andric if (NRVOCandidate) { 3241*e8d8bef9SDimitry Andric NeedSecondOverloadResolution = TryMoveInitialization( 3242*e8d8bef9SDimitry Andric *this, Entity, NRVOCandidate, ResultType, Value, true, false, Res); 32430b57cec5SDimitry Andric } 32440b57cec5SDimitry Andric 3245*e8d8bef9SDimitry Andric if (!NeedSecondOverloadResolution && AffectedByCWG1579) { 32460b57cec5SDimitry Andric QualType QT = NRVOCandidate->getType(); 3247*e8d8bef9SDimitry Andric if (QT.getNonReferenceType().getUnqualifiedType().isTriviallyCopyableType( 3248*e8d8bef9SDimitry Andric Context)) { 32490b57cec5SDimitry Andric // Adding 'std::move' around a trivially copyable variable is probably 32500b57cec5SDimitry Andric // pointless. Don't suggest it. 32510b57cec5SDimitry Andric } else { 32520b57cec5SDimitry Andric // Common cases for this are returning unique_ptr<Derived> from a 32530b57cec5SDimitry Andric // function of return type unique_ptr<Base>, or returning T from a 32540b57cec5SDimitry Andric // function of return type Expected<T>. This is totally fine in a 32550b57cec5SDimitry Andric // post-CWG1579 world, but was not fine before. 32560b57cec5SDimitry Andric assert(!ResultType.isNull()); 32570b57cec5SDimitry Andric SmallString<32> Str; 32580b57cec5SDimitry Andric Str += "std::move("; 32590b57cec5SDimitry Andric Str += NRVOCandidate->getDeclName().getAsString(); 32600b57cec5SDimitry Andric Str += ")"; 32610b57cec5SDimitry Andric Diag(Value->getExprLoc(), diag::warn_return_std_move_in_cxx11) 3262*e8d8bef9SDimitry Andric << Value->getSourceRange() << NRVOCandidate->getDeclName() 3263*e8d8bef9SDimitry Andric << ResultType << QT; 32640b57cec5SDimitry Andric Diag(Value->getExprLoc(), diag::note_add_std_move_in_cxx11) 32650b57cec5SDimitry Andric << FixItHint::CreateReplacement(Value->getSourceRange(), Str); 32660b57cec5SDimitry Andric } 3267*e8d8bef9SDimitry Andric } else if (NeedSecondOverloadResolution && 32680b57cec5SDimitry Andric !getDiagnostics().isIgnored(diag::warn_return_std_move, 32690b57cec5SDimitry Andric Value->getExprLoc())) { 32700b57cec5SDimitry Andric const VarDecl *FakeNRVOCandidate = 32710b57cec5SDimitry Andric getCopyElisionCandidate(QualType(), Value, CES_AsIfByStdMove); 32720b57cec5SDimitry Andric if (FakeNRVOCandidate) { 32730b57cec5SDimitry Andric QualType QT = FakeNRVOCandidate->getType(); 32740b57cec5SDimitry Andric if (QT->isLValueReferenceType()) { 32750b57cec5SDimitry Andric // Adding 'std::move' around an lvalue reference variable's name is 32760b57cec5SDimitry Andric // dangerous. Don't suggest it. 32770b57cec5SDimitry Andric } else if (QT.getNonReferenceType() 32780b57cec5SDimitry Andric .getUnqualifiedType() 32790b57cec5SDimitry Andric .isTriviallyCopyableType(Context)) { 32800b57cec5SDimitry Andric // Adding 'std::move' around a trivially copyable variable is probably 32810b57cec5SDimitry Andric // pointless. Don't suggest it. 32820b57cec5SDimitry Andric } else { 32830b57cec5SDimitry Andric ExprResult FakeRes = ExprError(); 32840b57cec5SDimitry Andric Expr *FakeValue = Value; 32850b57cec5SDimitry Andric TryMoveInitialization(*this, Entity, FakeNRVOCandidate, ResultType, 3286*e8d8bef9SDimitry Andric FakeValue, false, true, FakeRes); 32870b57cec5SDimitry Andric if (!FakeRes.isInvalid()) { 32880b57cec5SDimitry Andric bool IsThrow = 32890b57cec5SDimitry Andric (Entity.getKind() == InitializedEntity::EK_Exception); 32900b57cec5SDimitry Andric SmallString<32> Str; 32910b57cec5SDimitry Andric Str += "std::move("; 32920b57cec5SDimitry Andric Str += FakeNRVOCandidate->getDeclName().getAsString(); 32930b57cec5SDimitry Andric Str += ")"; 32940b57cec5SDimitry Andric Diag(Value->getExprLoc(), diag::warn_return_std_move) 32950b57cec5SDimitry Andric << Value->getSourceRange() 32960b57cec5SDimitry Andric << FakeNRVOCandidate->getDeclName() << IsThrow; 32970b57cec5SDimitry Andric Diag(Value->getExprLoc(), diag::note_add_std_move) 32980b57cec5SDimitry Andric << FixItHint::CreateReplacement(Value->getSourceRange(), Str); 32990b57cec5SDimitry Andric } 33000b57cec5SDimitry Andric } 33010b57cec5SDimitry Andric } 33020b57cec5SDimitry Andric } 33030b57cec5SDimitry Andric } 33040b57cec5SDimitry Andric 33050b57cec5SDimitry Andric // Either we didn't meet the criteria for treating an lvalue as an rvalue, 33060b57cec5SDimitry Andric // above, or overload resolution failed. Either way, we need to try 33070b57cec5SDimitry Andric // (again) now with the return value expression as written. 3308*e8d8bef9SDimitry Andric if (NeedSecondOverloadResolution) 33090b57cec5SDimitry Andric Res = PerformCopyInitialization(Entity, SourceLocation(), Value); 33100b57cec5SDimitry Andric 33110b57cec5SDimitry Andric return Res; 33120b57cec5SDimitry Andric } 33130b57cec5SDimitry Andric 33140b57cec5SDimitry Andric /// Determine whether the declared return type of the specified function 33150b57cec5SDimitry Andric /// contains 'auto'. 33160b57cec5SDimitry Andric static bool hasDeducedReturnType(FunctionDecl *FD) { 33170b57cec5SDimitry Andric const FunctionProtoType *FPT = 33180b57cec5SDimitry Andric FD->getTypeSourceInfo()->getType()->castAs<FunctionProtoType>(); 33190b57cec5SDimitry Andric return FPT->getReturnType()->isUndeducedType(); 33200b57cec5SDimitry Andric } 33210b57cec5SDimitry Andric 33220b57cec5SDimitry Andric /// ActOnCapScopeReturnStmt - Utility routine to type-check return statements 33230b57cec5SDimitry Andric /// for capturing scopes. 33240b57cec5SDimitry Andric /// 33250b57cec5SDimitry Andric StmtResult 33260b57cec5SDimitry Andric Sema::ActOnCapScopeReturnStmt(SourceLocation ReturnLoc, Expr *RetValExp) { 33270b57cec5SDimitry Andric // If this is the first return we've seen, infer the return type. 33280b57cec5SDimitry Andric // [expr.prim.lambda]p4 in C++11; block literals follow the same rules. 33290b57cec5SDimitry Andric CapturingScopeInfo *CurCap = cast<CapturingScopeInfo>(getCurFunction()); 33300b57cec5SDimitry Andric QualType FnRetType = CurCap->ReturnType; 33310b57cec5SDimitry Andric LambdaScopeInfo *CurLambda = dyn_cast<LambdaScopeInfo>(CurCap); 33320b57cec5SDimitry Andric bool HasDeducedReturnType = 33330b57cec5SDimitry Andric CurLambda && hasDeducedReturnType(CurLambda->CallOperator); 33340b57cec5SDimitry Andric 33350b57cec5SDimitry Andric if (ExprEvalContexts.back().Context == 33360b57cec5SDimitry Andric ExpressionEvaluationContext::DiscardedStatement && 33370b57cec5SDimitry Andric (HasDeducedReturnType || CurCap->HasImplicitReturnType)) { 33380b57cec5SDimitry Andric if (RetValExp) { 33390b57cec5SDimitry Andric ExprResult ER = 33400b57cec5SDimitry Andric ActOnFinishFullExpr(RetValExp, ReturnLoc, /*DiscardedValue*/ false); 33410b57cec5SDimitry Andric if (ER.isInvalid()) 33420b57cec5SDimitry Andric return StmtError(); 33430b57cec5SDimitry Andric RetValExp = ER.get(); 33440b57cec5SDimitry Andric } 33450b57cec5SDimitry Andric return ReturnStmt::Create(Context, ReturnLoc, RetValExp, 33460b57cec5SDimitry Andric /* NRVOCandidate=*/nullptr); 33470b57cec5SDimitry Andric } 33480b57cec5SDimitry Andric 33490b57cec5SDimitry Andric if (HasDeducedReturnType) { 3350*e8d8bef9SDimitry Andric FunctionDecl *FD = CurLambda->CallOperator; 3351*e8d8bef9SDimitry Andric // If we've already decided this lambda is invalid, e.g. because 3352*e8d8bef9SDimitry Andric // we saw a `return` whose expression had an error, don't keep 3353*e8d8bef9SDimitry Andric // trying to deduce its return type. 3354*e8d8bef9SDimitry Andric if (FD->isInvalidDecl()) 3355*e8d8bef9SDimitry Andric return StmtError(); 33560b57cec5SDimitry Andric // In C++1y, the return type may involve 'auto'. 33570b57cec5SDimitry Andric // FIXME: Blocks might have a return type of 'auto' explicitly specified. 33580b57cec5SDimitry Andric if (CurCap->ReturnType.isNull()) 33590b57cec5SDimitry Andric CurCap->ReturnType = FD->getReturnType(); 33600b57cec5SDimitry Andric 33610b57cec5SDimitry Andric AutoType *AT = CurCap->ReturnType->getContainedAutoType(); 33620b57cec5SDimitry Andric assert(AT && "lost auto type from lambda return type"); 33630b57cec5SDimitry Andric if (DeduceFunctionTypeFromReturnExpr(FD, ReturnLoc, RetValExp, AT)) { 33640b57cec5SDimitry Andric FD->setInvalidDecl(); 33655ffd83dbSDimitry Andric // FIXME: preserve the ill-formed return expression. 33660b57cec5SDimitry Andric return StmtError(); 33670b57cec5SDimitry Andric } 33680b57cec5SDimitry Andric CurCap->ReturnType = FnRetType = FD->getReturnType(); 33690b57cec5SDimitry Andric } else if (CurCap->HasImplicitReturnType) { 33700b57cec5SDimitry Andric // For blocks/lambdas with implicit return types, we check each return 33710b57cec5SDimitry Andric // statement individually, and deduce the common return type when the block 33720b57cec5SDimitry Andric // or lambda is completed. 33730b57cec5SDimitry Andric // FIXME: Fold this into the 'auto' codepath above. 33740b57cec5SDimitry Andric if (RetValExp && !isa<InitListExpr>(RetValExp)) { 33750b57cec5SDimitry Andric ExprResult Result = DefaultFunctionArrayLvalueConversion(RetValExp); 33760b57cec5SDimitry Andric if (Result.isInvalid()) 33770b57cec5SDimitry Andric return StmtError(); 33780b57cec5SDimitry Andric RetValExp = Result.get(); 33790b57cec5SDimitry Andric 33800b57cec5SDimitry Andric // DR1048: even prior to C++14, we should use the 'auto' deduction rules 33810b57cec5SDimitry Andric // when deducing a return type for a lambda-expression (or by extension 33820b57cec5SDimitry Andric // for a block). These rules differ from the stated C++11 rules only in 33830b57cec5SDimitry Andric // that they remove top-level cv-qualifiers. 33840b57cec5SDimitry Andric if (!CurContext->isDependentContext()) 33850b57cec5SDimitry Andric FnRetType = RetValExp->getType().getUnqualifiedType(); 33860b57cec5SDimitry Andric else 33870b57cec5SDimitry Andric FnRetType = CurCap->ReturnType = Context.DependentTy; 33880b57cec5SDimitry Andric } else { 33890b57cec5SDimitry Andric if (RetValExp) { 33900b57cec5SDimitry Andric // C++11 [expr.lambda.prim]p4 bans inferring the result from an 33910b57cec5SDimitry Andric // initializer list, because it is not an expression (even 33920b57cec5SDimitry Andric // though we represent it as one). We still deduce 'void'. 33930b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_lambda_return_init_list) 33940b57cec5SDimitry Andric << RetValExp->getSourceRange(); 33950b57cec5SDimitry Andric } 33960b57cec5SDimitry Andric 33970b57cec5SDimitry Andric FnRetType = Context.VoidTy; 33980b57cec5SDimitry Andric } 33990b57cec5SDimitry Andric 34000b57cec5SDimitry Andric // Although we'll properly infer the type of the block once it's completed, 34010b57cec5SDimitry Andric // make sure we provide a return type now for better error recovery. 34020b57cec5SDimitry Andric if (CurCap->ReturnType.isNull()) 34030b57cec5SDimitry Andric CurCap->ReturnType = FnRetType; 34040b57cec5SDimitry Andric } 34050b57cec5SDimitry Andric assert(!FnRetType.isNull()); 34060b57cec5SDimitry Andric 3407a7dea167SDimitry Andric if (auto *CurBlock = dyn_cast<BlockScopeInfo>(CurCap)) { 3408a7dea167SDimitry Andric if (CurBlock->FunctionType->castAs<FunctionType>()->getNoReturnAttr()) { 34090b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_noreturn_block_has_return_expr); 34100b57cec5SDimitry Andric return StmtError(); 34110b57cec5SDimitry Andric } 3412a7dea167SDimitry Andric } else if (auto *CurRegion = dyn_cast<CapturedRegionScopeInfo>(CurCap)) { 34130b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_return_in_captured_stmt) << CurRegion->getRegionName(); 34140b57cec5SDimitry Andric return StmtError(); 34150b57cec5SDimitry Andric } else { 34160b57cec5SDimitry Andric assert(CurLambda && "unknown kind of captured scope"); 3417a7dea167SDimitry Andric if (CurLambda->CallOperator->getType() 3418a7dea167SDimitry Andric ->castAs<FunctionType>() 34190b57cec5SDimitry Andric ->getNoReturnAttr()) { 34200b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_noreturn_lambda_has_return_expr); 34210b57cec5SDimitry Andric return StmtError(); 34220b57cec5SDimitry Andric } 34230b57cec5SDimitry Andric } 34240b57cec5SDimitry Andric 34250b57cec5SDimitry Andric // Otherwise, verify that this result type matches the previous one. We are 34260b57cec5SDimitry Andric // pickier with blocks than for normal functions because we don't have GCC 34270b57cec5SDimitry Andric // compatibility to worry about here. 34280b57cec5SDimitry Andric const VarDecl *NRVOCandidate = nullptr; 34290b57cec5SDimitry Andric if (FnRetType->isDependentType()) { 34300b57cec5SDimitry Andric // Delay processing for now. TODO: there are lots of dependent 34310b57cec5SDimitry Andric // types we can conclusively prove aren't void. 34320b57cec5SDimitry Andric } else if (FnRetType->isVoidType()) { 34330b57cec5SDimitry Andric if (RetValExp && !isa<InitListExpr>(RetValExp) && 34340b57cec5SDimitry Andric !(getLangOpts().CPlusPlus && 34350b57cec5SDimitry Andric (RetValExp->isTypeDependent() || 34360b57cec5SDimitry Andric RetValExp->getType()->isVoidType()))) { 34370b57cec5SDimitry Andric if (!getLangOpts().CPlusPlus && 34380b57cec5SDimitry Andric RetValExp->getType()->isVoidType()) 34390b57cec5SDimitry Andric Diag(ReturnLoc, diag::ext_return_has_void_expr) << "literal" << 2; 34400b57cec5SDimitry Andric else { 34410b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_return_block_has_expr); 34420b57cec5SDimitry Andric RetValExp = nullptr; 34430b57cec5SDimitry Andric } 34440b57cec5SDimitry Andric } 34450b57cec5SDimitry Andric } else if (!RetValExp) { 34460b57cec5SDimitry Andric return StmtError(Diag(ReturnLoc, diag::err_block_return_missing_expr)); 34470b57cec5SDimitry Andric } else if (!RetValExp->isTypeDependent()) { 34480b57cec5SDimitry Andric // we have a non-void block with an expression, continue checking 34490b57cec5SDimitry Andric 34500b57cec5SDimitry Andric // C99 6.8.6.4p3(136): The return statement is not an assignment. The 34510b57cec5SDimitry Andric // overlap restriction of subclause 6.5.16.1 does not apply to the case of 34520b57cec5SDimitry Andric // function return. 34530b57cec5SDimitry Andric 34540b57cec5SDimitry Andric // In C++ the return statement is handled via a copy initialization. 34550b57cec5SDimitry Andric // the C version of which boils down to CheckSingleAssignmentConstraints. 34560b57cec5SDimitry Andric NRVOCandidate = getCopyElisionCandidate(FnRetType, RetValExp, CES_Strict); 34570b57cec5SDimitry Andric InitializedEntity Entity = InitializedEntity::InitializeResult(ReturnLoc, 34580b57cec5SDimitry Andric FnRetType, 34590b57cec5SDimitry Andric NRVOCandidate != nullptr); 34600b57cec5SDimitry Andric ExprResult Res = PerformMoveOrCopyInitialization(Entity, NRVOCandidate, 34610b57cec5SDimitry Andric FnRetType, RetValExp); 34620b57cec5SDimitry Andric if (Res.isInvalid()) { 34630b57cec5SDimitry Andric // FIXME: Cleanup temporaries here, anyway? 34640b57cec5SDimitry Andric return StmtError(); 34650b57cec5SDimitry Andric } 34660b57cec5SDimitry Andric RetValExp = Res.get(); 34670b57cec5SDimitry Andric CheckReturnValExpr(RetValExp, FnRetType, ReturnLoc); 34680b57cec5SDimitry Andric } else { 34690b57cec5SDimitry Andric NRVOCandidate = getCopyElisionCandidate(FnRetType, RetValExp, CES_Strict); 34700b57cec5SDimitry Andric } 34710b57cec5SDimitry Andric 34720b57cec5SDimitry Andric if (RetValExp) { 34730b57cec5SDimitry Andric ExprResult ER = 34740b57cec5SDimitry Andric ActOnFinishFullExpr(RetValExp, ReturnLoc, /*DiscardedValue*/ false); 34750b57cec5SDimitry Andric if (ER.isInvalid()) 34760b57cec5SDimitry Andric return StmtError(); 34770b57cec5SDimitry Andric RetValExp = ER.get(); 34780b57cec5SDimitry Andric } 34790b57cec5SDimitry Andric auto *Result = 34800b57cec5SDimitry Andric ReturnStmt::Create(Context, ReturnLoc, RetValExp, NRVOCandidate); 34810b57cec5SDimitry Andric 34820b57cec5SDimitry Andric // If we need to check for the named return value optimization, 34830b57cec5SDimitry Andric // or if we need to infer the return type, 34840b57cec5SDimitry Andric // save the return statement in our scope for later processing. 34850b57cec5SDimitry Andric if (CurCap->HasImplicitReturnType || NRVOCandidate) 34860b57cec5SDimitry Andric FunctionScopes.back()->Returns.push_back(Result); 34870b57cec5SDimitry Andric 34880b57cec5SDimitry Andric if (FunctionScopes.back()->FirstReturnLoc.isInvalid()) 34890b57cec5SDimitry Andric FunctionScopes.back()->FirstReturnLoc = ReturnLoc; 34900b57cec5SDimitry Andric 34910b57cec5SDimitry Andric return Result; 34920b57cec5SDimitry Andric } 34930b57cec5SDimitry Andric 34940b57cec5SDimitry Andric namespace { 34950b57cec5SDimitry Andric /// Marks all typedefs in all local classes in a type referenced. 34960b57cec5SDimitry Andric /// 34970b57cec5SDimitry Andric /// In a function like 34980b57cec5SDimitry Andric /// auto f() { 34990b57cec5SDimitry Andric /// struct S { typedef int a; }; 35000b57cec5SDimitry Andric /// return S(); 35010b57cec5SDimitry Andric /// } 35020b57cec5SDimitry Andric /// 35030b57cec5SDimitry Andric /// the local type escapes and could be referenced in some TUs but not in 35040b57cec5SDimitry Andric /// others. Pretend that all local typedefs are always referenced, to not warn 35050b57cec5SDimitry Andric /// on this. This isn't necessary if f has internal linkage, or the typedef 35060b57cec5SDimitry Andric /// is private. 35070b57cec5SDimitry Andric class LocalTypedefNameReferencer 35080b57cec5SDimitry Andric : public RecursiveASTVisitor<LocalTypedefNameReferencer> { 35090b57cec5SDimitry Andric public: 35100b57cec5SDimitry Andric LocalTypedefNameReferencer(Sema &S) : S(S) {} 35110b57cec5SDimitry Andric bool VisitRecordType(const RecordType *RT); 35120b57cec5SDimitry Andric private: 35130b57cec5SDimitry Andric Sema &S; 35140b57cec5SDimitry Andric }; 35150b57cec5SDimitry Andric bool LocalTypedefNameReferencer::VisitRecordType(const RecordType *RT) { 35160b57cec5SDimitry Andric auto *R = dyn_cast<CXXRecordDecl>(RT->getDecl()); 35170b57cec5SDimitry Andric if (!R || !R->isLocalClass() || !R->isLocalClass()->isExternallyVisible() || 35180b57cec5SDimitry Andric R->isDependentType()) 35190b57cec5SDimitry Andric return true; 35200b57cec5SDimitry Andric for (auto *TmpD : R->decls()) 35210b57cec5SDimitry Andric if (auto *T = dyn_cast<TypedefNameDecl>(TmpD)) 35220b57cec5SDimitry Andric if (T->getAccess() != AS_private || R->hasFriends()) 35230b57cec5SDimitry Andric S.MarkAnyDeclReferenced(T->getLocation(), T, /*OdrUse=*/false); 35240b57cec5SDimitry Andric return true; 35250b57cec5SDimitry Andric } 35260b57cec5SDimitry Andric } 35270b57cec5SDimitry Andric 35280b57cec5SDimitry Andric TypeLoc Sema::getReturnTypeLoc(FunctionDecl *FD) const { 35290b57cec5SDimitry Andric return FD->getTypeSourceInfo() 35300b57cec5SDimitry Andric ->getTypeLoc() 35310b57cec5SDimitry Andric .getAsAdjusted<FunctionProtoTypeLoc>() 35320b57cec5SDimitry Andric .getReturnLoc(); 35330b57cec5SDimitry Andric } 35340b57cec5SDimitry Andric 35350b57cec5SDimitry Andric /// Deduce the return type for a function from a returned expression, per 35360b57cec5SDimitry Andric /// C++1y [dcl.spec.auto]p6. 35370b57cec5SDimitry Andric bool Sema::DeduceFunctionTypeFromReturnExpr(FunctionDecl *FD, 35380b57cec5SDimitry Andric SourceLocation ReturnLoc, 35390b57cec5SDimitry Andric Expr *&RetExpr, 35400b57cec5SDimitry Andric AutoType *AT) { 35410b57cec5SDimitry Andric // If this is the conversion function for a lambda, we choose to deduce it 35420b57cec5SDimitry Andric // type from the corresponding call operator, not from the synthesized return 35430b57cec5SDimitry Andric // statement within it. See Sema::DeduceReturnType. 35440b57cec5SDimitry Andric if (isLambdaConversionOperator(FD)) 35450b57cec5SDimitry Andric return false; 35460b57cec5SDimitry Andric 35470b57cec5SDimitry Andric TypeLoc OrigResultType = getReturnTypeLoc(FD); 35480b57cec5SDimitry Andric QualType Deduced; 35490b57cec5SDimitry Andric 35500b57cec5SDimitry Andric if (RetExpr && isa<InitListExpr>(RetExpr)) { 35510b57cec5SDimitry Andric // If the deduction is for a return statement and the initializer is 35520b57cec5SDimitry Andric // a braced-init-list, the program is ill-formed. 35530b57cec5SDimitry Andric Diag(RetExpr->getExprLoc(), 35540b57cec5SDimitry Andric getCurLambda() ? diag::err_lambda_return_init_list 35550b57cec5SDimitry Andric : diag::err_auto_fn_return_init_list) 35560b57cec5SDimitry Andric << RetExpr->getSourceRange(); 35570b57cec5SDimitry Andric return true; 35580b57cec5SDimitry Andric } 35590b57cec5SDimitry Andric 35600b57cec5SDimitry Andric if (FD->isDependentContext()) { 35610b57cec5SDimitry Andric // C++1y [dcl.spec.auto]p12: 35620b57cec5SDimitry Andric // Return type deduction [...] occurs when the definition is 35630b57cec5SDimitry Andric // instantiated even if the function body contains a return 35640b57cec5SDimitry Andric // statement with a non-type-dependent operand. 35650b57cec5SDimitry Andric assert(AT->isDeduced() && "should have deduced to dependent type"); 35660b57cec5SDimitry Andric return false; 35670b57cec5SDimitry Andric } 35680b57cec5SDimitry Andric 35690b57cec5SDimitry Andric if (RetExpr) { 35700b57cec5SDimitry Andric // Otherwise, [...] deduce a value for U using the rules of template 35710b57cec5SDimitry Andric // argument deduction. 35720b57cec5SDimitry Andric DeduceAutoResult DAR = DeduceAutoType(OrigResultType, RetExpr, Deduced); 35730b57cec5SDimitry Andric 35740b57cec5SDimitry Andric if (DAR == DAR_Failed && !FD->isInvalidDecl()) 35750b57cec5SDimitry Andric Diag(RetExpr->getExprLoc(), diag::err_auto_fn_deduction_failure) 35760b57cec5SDimitry Andric << OrigResultType.getType() << RetExpr->getType(); 35770b57cec5SDimitry Andric 35780b57cec5SDimitry Andric if (DAR != DAR_Succeeded) 35790b57cec5SDimitry Andric return true; 35800b57cec5SDimitry Andric 35810b57cec5SDimitry Andric // If a local type is part of the returned type, mark its fields as 35820b57cec5SDimitry Andric // referenced. 35830b57cec5SDimitry Andric LocalTypedefNameReferencer Referencer(*this); 35840b57cec5SDimitry Andric Referencer.TraverseType(RetExpr->getType()); 35850b57cec5SDimitry Andric } else { 35860b57cec5SDimitry Andric // In the case of a return with no operand, the initializer is considered 35870b57cec5SDimitry Andric // to be void(). 35880b57cec5SDimitry Andric // 35890b57cec5SDimitry Andric // Deduction here can only succeed if the return type is exactly 'cv auto' 35900b57cec5SDimitry Andric // or 'decltype(auto)', so just check for that case directly. 35910b57cec5SDimitry Andric if (!OrigResultType.getType()->getAs<AutoType>()) { 35920b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_auto_fn_return_void_but_not_auto) 35930b57cec5SDimitry Andric << OrigResultType.getType(); 35940b57cec5SDimitry Andric return true; 35950b57cec5SDimitry Andric } 35960b57cec5SDimitry Andric // We always deduce U = void in this case. 35970b57cec5SDimitry Andric Deduced = SubstAutoType(OrigResultType.getType(), Context.VoidTy); 35980b57cec5SDimitry Andric if (Deduced.isNull()) 35990b57cec5SDimitry Andric return true; 36000b57cec5SDimitry Andric } 36010b57cec5SDimitry Andric 3602a7dea167SDimitry Andric // CUDA: Kernel function must have 'void' return type. 3603a7dea167SDimitry Andric if (getLangOpts().CUDA) 3604a7dea167SDimitry Andric if (FD->hasAttr<CUDAGlobalAttr>() && !Deduced->isVoidType()) { 3605a7dea167SDimitry Andric Diag(FD->getLocation(), diag::err_kern_type_not_void_return) 3606a7dea167SDimitry Andric << FD->getType() << FD->getSourceRange(); 3607a7dea167SDimitry Andric return true; 3608a7dea167SDimitry Andric } 3609a7dea167SDimitry Andric 36100b57cec5SDimitry Andric // If a function with a declared return type that contains a placeholder type 36110b57cec5SDimitry Andric // has multiple return statements, the return type is deduced for each return 36120b57cec5SDimitry Andric // statement. [...] if the type deduced is not the same in each deduction, 36130b57cec5SDimitry Andric // the program is ill-formed. 36140b57cec5SDimitry Andric QualType DeducedT = AT->getDeducedType(); 36150b57cec5SDimitry Andric if (!DeducedT.isNull() && !FD->isInvalidDecl()) { 36160b57cec5SDimitry Andric AutoType *NewAT = Deduced->getContainedAutoType(); 36170b57cec5SDimitry Andric // It is possible that NewAT->getDeducedType() is null. When that happens, 36180b57cec5SDimitry Andric // we should not crash, instead we ignore this deduction. 36190b57cec5SDimitry Andric if (NewAT->getDeducedType().isNull()) 36200b57cec5SDimitry Andric return false; 36210b57cec5SDimitry Andric 36220b57cec5SDimitry Andric CanQualType OldDeducedType = Context.getCanonicalFunctionResultType( 36230b57cec5SDimitry Andric DeducedT); 36240b57cec5SDimitry Andric CanQualType NewDeducedType = Context.getCanonicalFunctionResultType( 36250b57cec5SDimitry Andric NewAT->getDeducedType()); 36260b57cec5SDimitry Andric if (!FD->isDependentContext() && OldDeducedType != NewDeducedType) { 36270b57cec5SDimitry Andric const LambdaScopeInfo *LambdaSI = getCurLambda(); 36280b57cec5SDimitry Andric if (LambdaSI && LambdaSI->HasImplicitReturnType) { 36290b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_typecheck_missing_return_type_incompatible) 36300b57cec5SDimitry Andric << NewAT->getDeducedType() << DeducedT 36310b57cec5SDimitry Andric << true /*IsLambda*/; 36320b57cec5SDimitry Andric } else { 36330b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_auto_fn_different_deductions) 36340b57cec5SDimitry Andric << (AT->isDecltypeAuto() ? 1 : 0) 36350b57cec5SDimitry Andric << NewAT->getDeducedType() << DeducedT; 36360b57cec5SDimitry Andric } 36370b57cec5SDimitry Andric return true; 36380b57cec5SDimitry Andric } 36390b57cec5SDimitry Andric } else if (!FD->isInvalidDecl()) { 36400b57cec5SDimitry Andric // Update all declarations of the function to have the deduced return type. 36410b57cec5SDimitry Andric Context.adjustDeducedFunctionResultType(FD, Deduced); 36420b57cec5SDimitry Andric } 36430b57cec5SDimitry Andric 36440b57cec5SDimitry Andric return false; 36450b57cec5SDimitry Andric } 36460b57cec5SDimitry Andric 36470b57cec5SDimitry Andric StmtResult 36480b57cec5SDimitry Andric Sema::ActOnReturnStmt(SourceLocation ReturnLoc, Expr *RetValExp, 36490b57cec5SDimitry Andric Scope *CurScope) { 36500b57cec5SDimitry Andric // Correct typos, in case the containing function returns 'auto' and 36510b57cec5SDimitry Andric // RetValExp should determine the deduced type. 3652*e8d8bef9SDimitry Andric ExprResult RetVal = CorrectDelayedTyposInExpr( 3653*e8d8bef9SDimitry Andric RetValExp, nullptr, /*RecoverUncorrectedTypos=*/true); 36540b57cec5SDimitry Andric if (RetVal.isInvalid()) 36550b57cec5SDimitry Andric return StmtError(); 36560b57cec5SDimitry Andric StmtResult R = BuildReturnStmt(ReturnLoc, RetVal.get()); 36570b57cec5SDimitry Andric if (R.isInvalid() || ExprEvalContexts.back().Context == 36580b57cec5SDimitry Andric ExpressionEvaluationContext::DiscardedStatement) 36590b57cec5SDimitry Andric return R; 36600b57cec5SDimitry Andric 36610b57cec5SDimitry Andric if (VarDecl *VD = 36620b57cec5SDimitry Andric const_cast<VarDecl*>(cast<ReturnStmt>(R.get())->getNRVOCandidate())) { 36630b57cec5SDimitry Andric CurScope->addNRVOCandidate(VD); 36640b57cec5SDimitry Andric } else { 36650b57cec5SDimitry Andric CurScope->setNoNRVO(); 36660b57cec5SDimitry Andric } 36670b57cec5SDimitry Andric 36680b57cec5SDimitry Andric CheckJumpOutOfSEHFinally(*this, ReturnLoc, *CurScope->getFnParent()); 36690b57cec5SDimitry Andric 36700b57cec5SDimitry Andric return R; 36710b57cec5SDimitry Andric } 36720b57cec5SDimitry Andric 36730b57cec5SDimitry Andric StmtResult Sema::BuildReturnStmt(SourceLocation ReturnLoc, Expr *RetValExp) { 36740b57cec5SDimitry Andric // Check for unexpanded parameter packs. 36750b57cec5SDimitry Andric if (RetValExp && DiagnoseUnexpandedParameterPack(RetValExp)) 36760b57cec5SDimitry Andric return StmtError(); 36770b57cec5SDimitry Andric 36780b57cec5SDimitry Andric if (isa<CapturingScopeInfo>(getCurFunction())) 36790b57cec5SDimitry Andric return ActOnCapScopeReturnStmt(ReturnLoc, RetValExp); 36800b57cec5SDimitry Andric 36810b57cec5SDimitry Andric QualType FnRetType; 36820b57cec5SDimitry Andric QualType RelatedRetType; 36830b57cec5SDimitry Andric const AttrVec *Attrs = nullptr; 36840b57cec5SDimitry Andric bool isObjCMethod = false; 36850b57cec5SDimitry Andric 36860b57cec5SDimitry Andric if (const FunctionDecl *FD = getCurFunctionDecl()) { 36870b57cec5SDimitry Andric FnRetType = FD->getReturnType(); 36880b57cec5SDimitry Andric if (FD->hasAttrs()) 36890b57cec5SDimitry Andric Attrs = &FD->getAttrs(); 36900b57cec5SDimitry Andric if (FD->isNoReturn()) 3691*e8d8bef9SDimitry Andric Diag(ReturnLoc, diag::warn_noreturn_function_has_return_expr) << FD; 36920b57cec5SDimitry Andric if (FD->isMain() && RetValExp) 36930b57cec5SDimitry Andric if (isa<CXXBoolLiteralExpr>(RetValExp)) 36940b57cec5SDimitry Andric Diag(ReturnLoc, diag::warn_main_returns_bool_literal) 36950b57cec5SDimitry Andric << RetValExp->getSourceRange(); 36965ffd83dbSDimitry Andric if (FD->hasAttr<CmseNSEntryAttr>() && RetValExp) { 36975ffd83dbSDimitry Andric if (const auto *RT = dyn_cast<RecordType>(FnRetType.getCanonicalType())) { 36985ffd83dbSDimitry Andric if (RT->getDecl()->isOrContainsUnion()) 36995ffd83dbSDimitry Andric Diag(RetValExp->getBeginLoc(), diag::warn_cmse_nonsecure_union) << 1; 37005ffd83dbSDimitry Andric } 37015ffd83dbSDimitry Andric } 37020b57cec5SDimitry Andric } else if (ObjCMethodDecl *MD = getCurMethodDecl()) { 37030b57cec5SDimitry Andric FnRetType = MD->getReturnType(); 37040b57cec5SDimitry Andric isObjCMethod = true; 37050b57cec5SDimitry Andric if (MD->hasAttrs()) 37060b57cec5SDimitry Andric Attrs = &MD->getAttrs(); 37070b57cec5SDimitry Andric if (MD->hasRelatedResultType() && MD->getClassInterface()) { 37080b57cec5SDimitry Andric // In the implementation of a method with a related return type, the 37090b57cec5SDimitry Andric // type used to type-check the validity of return statements within the 37100b57cec5SDimitry Andric // method body is a pointer to the type of the class being implemented. 37110b57cec5SDimitry Andric RelatedRetType = Context.getObjCInterfaceType(MD->getClassInterface()); 37120b57cec5SDimitry Andric RelatedRetType = Context.getObjCObjectPointerType(RelatedRetType); 37130b57cec5SDimitry Andric } 37140b57cec5SDimitry Andric } else // If we don't have a function/method context, bail. 37150b57cec5SDimitry Andric return StmtError(); 37160b57cec5SDimitry Andric 37170b57cec5SDimitry Andric // C++1z: discarded return statements are not considered when deducing a 37180b57cec5SDimitry Andric // return type. 37190b57cec5SDimitry Andric if (ExprEvalContexts.back().Context == 37200b57cec5SDimitry Andric ExpressionEvaluationContext::DiscardedStatement && 37210b57cec5SDimitry Andric FnRetType->getContainedAutoType()) { 37220b57cec5SDimitry Andric if (RetValExp) { 37230b57cec5SDimitry Andric ExprResult ER = 37240b57cec5SDimitry Andric ActOnFinishFullExpr(RetValExp, ReturnLoc, /*DiscardedValue*/ false); 37250b57cec5SDimitry Andric if (ER.isInvalid()) 37260b57cec5SDimitry Andric return StmtError(); 37270b57cec5SDimitry Andric RetValExp = ER.get(); 37280b57cec5SDimitry Andric } 37290b57cec5SDimitry Andric return ReturnStmt::Create(Context, ReturnLoc, RetValExp, 37300b57cec5SDimitry Andric /* NRVOCandidate=*/nullptr); 37310b57cec5SDimitry Andric } 37320b57cec5SDimitry Andric 37330b57cec5SDimitry Andric // FIXME: Add a flag to the ScopeInfo to indicate whether we're performing 37340b57cec5SDimitry Andric // deduction. 37350b57cec5SDimitry Andric if (getLangOpts().CPlusPlus14) { 37360b57cec5SDimitry Andric if (AutoType *AT = FnRetType->getContainedAutoType()) { 37370b57cec5SDimitry Andric FunctionDecl *FD = cast<FunctionDecl>(CurContext); 3738*e8d8bef9SDimitry Andric // If we've already decided this function is invalid, e.g. because 3739*e8d8bef9SDimitry Andric // we saw a `return` whose expression had an error, don't keep 3740*e8d8bef9SDimitry Andric // trying to deduce its return type. 3741*e8d8bef9SDimitry Andric if (FD->isInvalidDecl()) 3742*e8d8bef9SDimitry Andric return StmtError(); 37430b57cec5SDimitry Andric if (DeduceFunctionTypeFromReturnExpr(FD, ReturnLoc, RetValExp, AT)) { 37440b57cec5SDimitry Andric FD->setInvalidDecl(); 37450b57cec5SDimitry Andric return StmtError(); 37460b57cec5SDimitry Andric } else { 37470b57cec5SDimitry Andric FnRetType = FD->getReturnType(); 37480b57cec5SDimitry Andric } 37490b57cec5SDimitry Andric } 37500b57cec5SDimitry Andric } 37510b57cec5SDimitry Andric 37520b57cec5SDimitry Andric bool HasDependentReturnType = FnRetType->isDependentType(); 37530b57cec5SDimitry Andric 37540b57cec5SDimitry Andric ReturnStmt *Result = nullptr; 37550b57cec5SDimitry Andric if (FnRetType->isVoidType()) { 37560b57cec5SDimitry Andric if (RetValExp) { 37570b57cec5SDimitry Andric if (isa<InitListExpr>(RetValExp)) { 37580b57cec5SDimitry Andric // We simply never allow init lists as the return value of void 37590b57cec5SDimitry Andric // functions. This is compatible because this was never allowed before, 37600b57cec5SDimitry Andric // so there's no legacy code to deal with. 37610b57cec5SDimitry Andric NamedDecl *CurDecl = getCurFunctionOrMethodDecl(); 37620b57cec5SDimitry Andric int FunctionKind = 0; 37630b57cec5SDimitry Andric if (isa<ObjCMethodDecl>(CurDecl)) 37640b57cec5SDimitry Andric FunctionKind = 1; 37650b57cec5SDimitry Andric else if (isa<CXXConstructorDecl>(CurDecl)) 37660b57cec5SDimitry Andric FunctionKind = 2; 37670b57cec5SDimitry Andric else if (isa<CXXDestructorDecl>(CurDecl)) 37680b57cec5SDimitry Andric FunctionKind = 3; 37690b57cec5SDimitry Andric 37700b57cec5SDimitry Andric Diag(ReturnLoc, diag::err_return_init_list) 3771*e8d8bef9SDimitry Andric << CurDecl << FunctionKind << RetValExp->getSourceRange(); 37720b57cec5SDimitry Andric 37730b57cec5SDimitry Andric // Drop the expression. 37740b57cec5SDimitry Andric RetValExp = nullptr; 37750b57cec5SDimitry Andric } else if (!RetValExp->isTypeDependent()) { 37760b57cec5SDimitry Andric // C99 6.8.6.4p1 (ext_ since GCC warns) 37770b57cec5SDimitry Andric unsigned D = diag::ext_return_has_expr; 37780b57cec5SDimitry Andric if (RetValExp->getType()->isVoidType()) { 37790b57cec5SDimitry Andric NamedDecl *CurDecl = getCurFunctionOrMethodDecl(); 37800b57cec5SDimitry Andric if (isa<CXXConstructorDecl>(CurDecl) || 37810b57cec5SDimitry Andric isa<CXXDestructorDecl>(CurDecl)) 37820b57cec5SDimitry Andric D = diag::err_ctor_dtor_returns_void; 37830b57cec5SDimitry Andric else 37840b57cec5SDimitry Andric D = diag::ext_return_has_void_expr; 37850b57cec5SDimitry Andric } 37860b57cec5SDimitry Andric else { 37870b57cec5SDimitry Andric ExprResult Result = RetValExp; 37880b57cec5SDimitry Andric Result = IgnoredValueConversions(Result.get()); 37890b57cec5SDimitry Andric if (Result.isInvalid()) 37900b57cec5SDimitry Andric return StmtError(); 37910b57cec5SDimitry Andric RetValExp = Result.get(); 37920b57cec5SDimitry Andric RetValExp = ImpCastExprToType(RetValExp, 37930b57cec5SDimitry Andric Context.VoidTy, CK_ToVoid).get(); 37940b57cec5SDimitry Andric } 37950b57cec5SDimitry Andric // return of void in constructor/destructor is illegal in C++. 37960b57cec5SDimitry Andric if (D == diag::err_ctor_dtor_returns_void) { 37970b57cec5SDimitry Andric NamedDecl *CurDecl = getCurFunctionOrMethodDecl(); 3798*e8d8bef9SDimitry Andric Diag(ReturnLoc, D) << CurDecl << isa<CXXDestructorDecl>(CurDecl) 37990b57cec5SDimitry Andric << RetValExp->getSourceRange(); 38000b57cec5SDimitry Andric } 38010b57cec5SDimitry Andric // return (some void expression); is legal in C++. 38020b57cec5SDimitry Andric else if (D != diag::ext_return_has_void_expr || 38030b57cec5SDimitry Andric !getLangOpts().CPlusPlus) { 38040b57cec5SDimitry Andric NamedDecl *CurDecl = getCurFunctionOrMethodDecl(); 38050b57cec5SDimitry Andric 38060b57cec5SDimitry Andric int FunctionKind = 0; 38070b57cec5SDimitry Andric if (isa<ObjCMethodDecl>(CurDecl)) 38080b57cec5SDimitry Andric FunctionKind = 1; 38090b57cec5SDimitry Andric else if (isa<CXXConstructorDecl>(CurDecl)) 38100b57cec5SDimitry Andric FunctionKind = 2; 38110b57cec5SDimitry Andric else if (isa<CXXDestructorDecl>(CurDecl)) 38120b57cec5SDimitry Andric FunctionKind = 3; 38130b57cec5SDimitry Andric 38140b57cec5SDimitry Andric Diag(ReturnLoc, D) 3815*e8d8bef9SDimitry Andric << CurDecl << FunctionKind << RetValExp->getSourceRange(); 38160b57cec5SDimitry Andric } 38170b57cec5SDimitry Andric } 38180b57cec5SDimitry Andric 38190b57cec5SDimitry Andric if (RetValExp) { 38200b57cec5SDimitry Andric ExprResult ER = 38210b57cec5SDimitry Andric ActOnFinishFullExpr(RetValExp, ReturnLoc, /*DiscardedValue*/ false); 38220b57cec5SDimitry Andric if (ER.isInvalid()) 38230b57cec5SDimitry Andric return StmtError(); 38240b57cec5SDimitry Andric RetValExp = ER.get(); 38250b57cec5SDimitry Andric } 38260b57cec5SDimitry Andric } 38270b57cec5SDimitry Andric 38280b57cec5SDimitry Andric Result = ReturnStmt::Create(Context, ReturnLoc, RetValExp, 38290b57cec5SDimitry Andric /* NRVOCandidate=*/nullptr); 38300b57cec5SDimitry Andric } else if (!RetValExp && !HasDependentReturnType) { 38310b57cec5SDimitry Andric FunctionDecl *FD = getCurFunctionDecl(); 38320b57cec5SDimitry Andric 38330b57cec5SDimitry Andric if (getLangOpts().CPlusPlus11 && FD && FD->isConstexpr()) { 38340b57cec5SDimitry Andric // C++11 [stmt.return]p2 3835*e8d8bef9SDimitry Andric Diag(ReturnLoc, diag::err_constexpr_return_missing_expr) 3836*e8d8bef9SDimitry Andric << FD << FD->isConsteval(); 38370b57cec5SDimitry Andric FD->setInvalidDecl(); 38380b57cec5SDimitry Andric } else { 3839*e8d8bef9SDimitry Andric // C99 6.8.6.4p1 (ext_ since GCC warns) 38400b57cec5SDimitry Andric // C90 6.6.6.4p4 3841*e8d8bef9SDimitry Andric unsigned DiagID = getLangOpts().C99 ? diag::ext_return_missing_expr 3842*e8d8bef9SDimitry Andric : diag::warn_return_missing_expr; 3843*e8d8bef9SDimitry Andric // Note that at this point one of getCurFunctionDecl() or 3844*e8d8bef9SDimitry Andric // getCurMethodDecl() must be non-null (see above). 3845*e8d8bef9SDimitry Andric assert((getCurFunctionDecl() || getCurMethodDecl()) && 3846*e8d8bef9SDimitry Andric "Not in a FunctionDecl or ObjCMethodDecl?"); 3847*e8d8bef9SDimitry Andric bool IsMethod = FD == nullptr; 3848*e8d8bef9SDimitry Andric const NamedDecl *ND = 3849*e8d8bef9SDimitry Andric IsMethod ? cast<NamedDecl>(getCurMethodDecl()) : cast<NamedDecl>(FD); 3850*e8d8bef9SDimitry Andric Diag(ReturnLoc, DiagID) << ND << IsMethod; 38510b57cec5SDimitry Andric } 38520b57cec5SDimitry Andric 38530b57cec5SDimitry Andric Result = ReturnStmt::Create(Context, ReturnLoc, /* RetExpr=*/nullptr, 38540b57cec5SDimitry Andric /* NRVOCandidate=*/nullptr); 38550b57cec5SDimitry Andric } else { 38560b57cec5SDimitry Andric assert(RetValExp || HasDependentReturnType); 38570b57cec5SDimitry Andric const VarDecl *NRVOCandidate = nullptr; 38580b57cec5SDimitry Andric 38590b57cec5SDimitry Andric QualType RetType = RelatedRetType.isNull() ? FnRetType : RelatedRetType; 38600b57cec5SDimitry Andric 38610b57cec5SDimitry Andric // C99 6.8.6.4p3(136): The return statement is not an assignment. The 38620b57cec5SDimitry Andric // overlap restriction of subclause 6.5.16.1 does not apply to the case of 38630b57cec5SDimitry Andric // function return. 38640b57cec5SDimitry Andric 38650b57cec5SDimitry Andric // In C++ the return statement is handled via a copy initialization, 38660b57cec5SDimitry Andric // the C version of which boils down to CheckSingleAssignmentConstraints. 38670b57cec5SDimitry Andric if (RetValExp) 38680b57cec5SDimitry Andric NRVOCandidate = getCopyElisionCandidate(FnRetType, RetValExp, CES_Strict); 38690b57cec5SDimitry Andric if (!HasDependentReturnType && !RetValExp->isTypeDependent()) { 38700b57cec5SDimitry Andric // we have a non-void function with an expression, continue checking 38710b57cec5SDimitry Andric InitializedEntity Entity = InitializedEntity::InitializeResult(ReturnLoc, 38720b57cec5SDimitry Andric RetType, 38730b57cec5SDimitry Andric NRVOCandidate != nullptr); 38740b57cec5SDimitry Andric ExprResult Res = PerformMoveOrCopyInitialization(Entity, NRVOCandidate, 38750b57cec5SDimitry Andric RetType, RetValExp); 38760b57cec5SDimitry Andric if (Res.isInvalid()) { 38770b57cec5SDimitry Andric // FIXME: Clean up temporaries here anyway? 38780b57cec5SDimitry Andric return StmtError(); 38790b57cec5SDimitry Andric } 38800b57cec5SDimitry Andric RetValExp = Res.getAs<Expr>(); 38810b57cec5SDimitry Andric 38820b57cec5SDimitry Andric // If we have a related result type, we need to implicitly 38830b57cec5SDimitry Andric // convert back to the formal result type. We can't pretend to 38840b57cec5SDimitry Andric // initialize the result again --- we might end double-retaining 38850b57cec5SDimitry Andric // --- so instead we initialize a notional temporary. 38860b57cec5SDimitry Andric if (!RelatedRetType.isNull()) { 38870b57cec5SDimitry Andric Entity = InitializedEntity::InitializeRelatedResult(getCurMethodDecl(), 38880b57cec5SDimitry Andric FnRetType); 38890b57cec5SDimitry Andric Res = PerformCopyInitialization(Entity, ReturnLoc, RetValExp); 38900b57cec5SDimitry Andric if (Res.isInvalid()) { 38910b57cec5SDimitry Andric // FIXME: Clean up temporaries here anyway? 38920b57cec5SDimitry Andric return StmtError(); 38930b57cec5SDimitry Andric } 38940b57cec5SDimitry Andric RetValExp = Res.getAs<Expr>(); 38950b57cec5SDimitry Andric } 38960b57cec5SDimitry Andric 38970b57cec5SDimitry Andric CheckReturnValExpr(RetValExp, FnRetType, ReturnLoc, isObjCMethod, Attrs, 38980b57cec5SDimitry Andric getCurFunctionDecl()); 38990b57cec5SDimitry Andric } 39000b57cec5SDimitry Andric 39010b57cec5SDimitry Andric if (RetValExp) { 39020b57cec5SDimitry Andric ExprResult ER = 39030b57cec5SDimitry Andric ActOnFinishFullExpr(RetValExp, ReturnLoc, /*DiscardedValue*/ false); 39040b57cec5SDimitry Andric if (ER.isInvalid()) 39050b57cec5SDimitry Andric return StmtError(); 39060b57cec5SDimitry Andric RetValExp = ER.get(); 39070b57cec5SDimitry Andric } 39080b57cec5SDimitry Andric Result = ReturnStmt::Create(Context, ReturnLoc, RetValExp, NRVOCandidate); 39090b57cec5SDimitry Andric } 39100b57cec5SDimitry Andric 39110b57cec5SDimitry Andric // If we need to check for the named return value optimization, save the 39120b57cec5SDimitry Andric // return statement in our scope for later processing. 39130b57cec5SDimitry Andric if (Result->getNRVOCandidate()) 39140b57cec5SDimitry Andric FunctionScopes.back()->Returns.push_back(Result); 39150b57cec5SDimitry Andric 39160b57cec5SDimitry Andric if (FunctionScopes.back()->FirstReturnLoc.isInvalid()) 39170b57cec5SDimitry Andric FunctionScopes.back()->FirstReturnLoc = ReturnLoc; 39180b57cec5SDimitry Andric 39190b57cec5SDimitry Andric return Result; 39200b57cec5SDimitry Andric } 39210b57cec5SDimitry Andric 39220b57cec5SDimitry Andric StmtResult 39230b57cec5SDimitry Andric Sema::ActOnObjCAtCatchStmt(SourceLocation AtLoc, 39240b57cec5SDimitry Andric SourceLocation RParen, Decl *Parm, 39250b57cec5SDimitry Andric Stmt *Body) { 39260b57cec5SDimitry Andric VarDecl *Var = cast_or_null<VarDecl>(Parm); 39270b57cec5SDimitry Andric if (Var && Var->isInvalidDecl()) 39280b57cec5SDimitry Andric return StmtError(); 39290b57cec5SDimitry Andric 39300b57cec5SDimitry Andric return new (Context) ObjCAtCatchStmt(AtLoc, RParen, Var, Body); 39310b57cec5SDimitry Andric } 39320b57cec5SDimitry Andric 39330b57cec5SDimitry Andric StmtResult 39340b57cec5SDimitry Andric Sema::ActOnObjCAtFinallyStmt(SourceLocation AtLoc, Stmt *Body) { 39350b57cec5SDimitry Andric return new (Context) ObjCAtFinallyStmt(AtLoc, Body); 39360b57cec5SDimitry Andric } 39370b57cec5SDimitry Andric 39380b57cec5SDimitry Andric StmtResult 39390b57cec5SDimitry Andric Sema::ActOnObjCAtTryStmt(SourceLocation AtLoc, Stmt *Try, 39400b57cec5SDimitry Andric MultiStmtArg CatchStmts, Stmt *Finally) { 39410b57cec5SDimitry Andric if (!getLangOpts().ObjCExceptions) 39420b57cec5SDimitry Andric Diag(AtLoc, diag::err_objc_exceptions_disabled) << "@try"; 39430b57cec5SDimitry Andric 39440b57cec5SDimitry Andric setFunctionHasBranchProtectedScope(); 39450b57cec5SDimitry Andric unsigned NumCatchStmts = CatchStmts.size(); 39460b57cec5SDimitry Andric return ObjCAtTryStmt::Create(Context, AtLoc, Try, CatchStmts.data(), 39470b57cec5SDimitry Andric NumCatchStmts, Finally); 39480b57cec5SDimitry Andric } 39490b57cec5SDimitry Andric 39500b57cec5SDimitry Andric StmtResult Sema::BuildObjCAtThrowStmt(SourceLocation AtLoc, Expr *Throw) { 39510b57cec5SDimitry Andric if (Throw) { 39520b57cec5SDimitry Andric ExprResult Result = DefaultLvalueConversion(Throw); 39530b57cec5SDimitry Andric if (Result.isInvalid()) 39540b57cec5SDimitry Andric return StmtError(); 39550b57cec5SDimitry Andric 39560b57cec5SDimitry Andric Result = ActOnFinishFullExpr(Result.get(), /*DiscardedValue*/ false); 39570b57cec5SDimitry Andric if (Result.isInvalid()) 39580b57cec5SDimitry Andric return StmtError(); 39590b57cec5SDimitry Andric Throw = Result.get(); 39600b57cec5SDimitry Andric 39610b57cec5SDimitry Andric QualType ThrowType = Throw->getType(); 39620b57cec5SDimitry Andric // Make sure the expression type is an ObjC pointer or "void *". 39630b57cec5SDimitry Andric if (!ThrowType->isDependentType() && 39640b57cec5SDimitry Andric !ThrowType->isObjCObjectPointerType()) { 39650b57cec5SDimitry Andric const PointerType *PT = ThrowType->getAs<PointerType>(); 39660b57cec5SDimitry Andric if (!PT || !PT->getPointeeType()->isVoidType()) 39670b57cec5SDimitry Andric return StmtError(Diag(AtLoc, diag::err_objc_throw_expects_object) 39680b57cec5SDimitry Andric << Throw->getType() << Throw->getSourceRange()); 39690b57cec5SDimitry Andric } 39700b57cec5SDimitry Andric } 39710b57cec5SDimitry Andric 39720b57cec5SDimitry Andric return new (Context) ObjCAtThrowStmt(AtLoc, Throw); 39730b57cec5SDimitry Andric } 39740b57cec5SDimitry Andric 39750b57cec5SDimitry Andric StmtResult 39760b57cec5SDimitry Andric Sema::ActOnObjCAtThrowStmt(SourceLocation AtLoc, Expr *Throw, 39770b57cec5SDimitry Andric Scope *CurScope) { 39780b57cec5SDimitry Andric if (!getLangOpts().ObjCExceptions) 39790b57cec5SDimitry Andric Diag(AtLoc, diag::err_objc_exceptions_disabled) << "@throw"; 39800b57cec5SDimitry Andric 39810b57cec5SDimitry Andric if (!Throw) { 39820b57cec5SDimitry Andric // @throw without an expression designates a rethrow (which must occur 39830b57cec5SDimitry Andric // in the context of an @catch clause). 39840b57cec5SDimitry Andric Scope *AtCatchParent = CurScope; 39850b57cec5SDimitry Andric while (AtCatchParent && !AtCatchParent->isAtCatchScope()) 39860b57cec5SDimitry Andric AtCatchParent = AtCatchParent->getParent(); 39870b57cec5SDimitry Andric if (!AtCatchParent) 39880b57cec5SDimitry Andric return StmtError(Diag(AtLoc, diag::err_rethrow_used_outside_catch)); 39890b57cec5SDimitry Andric } 39900b57cec5SDimitry Andric return BuildObjCAtThrowStmt(AtLoc, Throw); 39910b57cec5SDimitry Andric } 39920b57cec5SDimitry Andric 39930b57cec5SDimitry Andric ExprResult 39940b57cec5SDimitry Andric Sema::ActOnObjCAtSynchronizedOperand(SourceLocation atLoc, Expr *operand) { 39950b57cec5SDimitry Andric ExprResult result = DefaultLvalueConversion(operand); 39960b57cec5SDimitry Andric if (result.isInvalid()) 39970b57cec5SDimitry Andric return ExprError(); 39980b57cec5SDimitry Andric operand = result.get(); 39990b57cec5SDimitry Andric 40000b57cec5SDimitry Andric // Make sure the expression type is an ObjC pointer or "void *". 40010b57cec5SDimitry Andric QualType type = operand->getType(); 40020b57cec5SDimitry Andric if (!type->isDependentType() && 40030b57cec5SDimitry Andric !type->isObjCObjectPointerType()) { 40040b57cec5SDimitry Andric const PointerType *pointerType = type->getAs<PointerType>(); 40050b57cec5SDimitry Andric if (!pointerType || !pointerType->getPointeeType()->isVoidType()) { 40060b57cec5SDimitry Andric if (getLangOpts().CPlusPlus) { 40070b57cec5SDimitry Andric if (RequireCompleteType(atLoc, type, 40080b57cec5SDimitry Andric diag::err_incomplete_receiver_type)) 40090b57cec5SDimitry Andric return Diag(atLoc, diag::err_objc_synchronized_expects_object) 40100b57cec5SDimitry Andric << type << operand->getSourceRange(); 40110b57cec5SDimitry Andric 40120b57cec5SDimitry Andric ExprResult result = PerformContextuallyConvertToObjCPointer(operand); 40130b57cec5SDimitry Andric if (result.isInvalid()) 40140b57cec5SDimitry Andric return ExprError(); 40150b57cec5SDimitry Andric if (!result.isUsable()) 40160b57cec5SDimitry Andric return Diag(atLoc, diag::err_objc_synchronized_expects_object) 40170b57cec5SDimitry Andric << type << operand->getSourceRange(); 40180b57cec5SDimitry Andric 40190b57cec5SDimitry Andric operand = result.get(); 40200b57cec5SDimitry Andric } else { 40210b57cec5SDimitry Andric return Diag(atLoc, diag::err_objc_synchronized_expects_object) 40220b57cec5SDimitry Andric << type << operand->getSourceRange(); 40230b57cec5SDimitry Andric } 40240b57cec5SDimitry Andric } 40250b57cec5SDimitry Andric } 40260b57cec5SDimitry Andric 40270b57cec5SDimitry Andric // The operand to @synchronized is a full-expression. 40280b57cec5SDimitry Andric return ActOnFinishFullExpr(operand, /*DiscardedValue*/ false); 40290b57cec5SDimitry Andric } 40300b57cec5SDimitry Andric 40310b57cec5SDimitry Andric StmtResult 40320b57cec5SDimitry Andric Sema::ActOnObjCAtSynchronizedStmt(SourceLocation AtLoc, Expr *SyncExpr, 40330b57cec5SDimitry Andric Stmt *SyncBody) { 40340b57cec5SDimitry Andric // We can't jump into or indirect-jump out of a @synchronized block. 40350b57cec5SDimitry Andric setFunctionHasBranchProtectedScope(); 40360b57cec5SDimitry Andric return new (Context) ObjCAtSynchronizedStmt(AtLoc, SyncExpr, SyncBody); 40370b57cec5SDimitry Andric } 40380b57cec5SDimitry Andric 40390b57cec5SDimitry Andric /// ActOnCXXCatchBlock - Takes an exception declaration and a handler block 40400b57cec5SDimitry Andric /// and creates a proper catch handler from them. 40410b57cec5SDimitry Andric StmtResult 40420b57cec5SDimitry Andric Sema::ActOnCXXCatchBlock(SourceLocation CatchLoc, Decl *ExDecl, 40430b57cec5SDimitry Andric Stmt *HandlerBlock) { 40440b57cec5SDimitry Andric // There's nothing to test that ActOnExceptionDecl didn't already test. 40450b57cec5SDimitry Andric return new (Context) 40460b57cec5SDimitry Andric CXXCatchStmt(CatchLoc, cast_or_null<VarDecl>(ExDecl), HandlerBlock); 40470b57cec5SDimitry Andric } 40480b57cec5SDimitry Andric 40490b57cec5SDimitry Andric StmtResult 40500b57cec5SDimitry Andric Sema::ActOnObjCAutoreleasePoolStmt(SourceLocation AtLoc, Stmt *Body) { 40510b57cec5SDimitry Andric setFunctionHasBranchProtectedScope(); 40520b57cec5SDimitry Andric return new (Context) ObjCAutoreleasePoolStmt(AtLoc, Body); 40530b57cec5SDimitry Andric } 40540b57cec5SDimitry Andric 40550b57cec5SDimitry Andric namespace { 40560b57cec5SDimitry Andric class CatchHandlerType { 40570b57cec5SDimitry Andric QualType QT; 40580b57cec5SDimitry Andric unsigned IsPointer : 1; 40590b57cec5SDimitry Andric 40600b57cec5SDimitry Andric // This is a special constructor to be used only with DenseMapInfo's 40610b57cec5SDimitry Andric // getEmptyKey() and getTombstoneKey() functions. 40620b57cec5SDimitry Andric friend struct llvm::DenseMapInfo<CatchHandlerType>; 40630b57cec5SDimitry Andric enum Unique { ForDenseMap }; 40640b57cec5SDimitry Andric CatchHandlerType(QualType QT, Unique) : QT(QT), IsPointer(false) {} 40650b57cec5SDimitry Andric 40660b57cec5SDimitry Andric public: 40670b57cec5SDimitry Andric /// Used when creating a CatchHandlerType from a handler type; will determine 40680b57cec5SDimitry Andric /// whether the type is a pointer or reference and will strip off the top 40690b57cec5SDimitry Andric /// level pointer and cv-qualifiers. 40700b57cec5SDimitry Andric CatchHandlerType(QualType Q) : QT(Q), IsPointer(false) { 40710b57cec5SDimitry Andric if (QT->isPointerType()) 40720b57cec5SDimitry Andric IsPointer = true; 40730b57cec5SDimitry Andric 40740b57cec5SDimitry Andric if (IsPointer || QT->isReferenceType()) 40750b57cec5SDimitry Andric QT = QT->getPointeeType(); 40760b57cec5SDimitry Andric QT = QT.getUnqualifiedType(); 40770b57cec5SDimitry Andric } 40780b57cec5SDimitry Andric 40790b57cec5SDimitry Andric /// Used when creating a CatchHandlerType from a base class type; pretends the 40800b57cec5SDimitry Andric /// type passed in had the pointer qualifier, does not need to get an 40810b57cec5SDimitry Andric /// unqualified type. 40820b57cec5SDimitry Andric CatchHandlerType(QualType QT, bool IsPointer) 40830b57cec5SDimitry Andric : QT(QT), IsPointer(IsPointer) {} 40840b57cec5SDimitry Andric 40850b57cec5SDimitry Andric QualType underlying() const { return QT; } 40860b57cec5SDimitry Andric bool isPointer() const { return IsPointer; } 40870b57cec5SDimitry Andric 40880b57cec5SDimitry Andric friend bool operator==(const CatchHandlerType &LHS, 40890b57cec5SDimitry Andric const CatchHandlerType &RHS) { 40900b57cec5SDimitry Andric // If the pointer qualification does not match, we can return early. 40910b57cec5SDimitry Andric if (LHS.IsPointer != RHS.IsPointer) 40920b57cec5SDimitry Andric return false; 40930b57cec5SDimitry Andric // Otherwise, check the underlying type without cv-qualifiers. 40940b57cec5SDimitry Andric return LHS.QT == RHS.QT; 40950b57cec5SDimitry Andric } 40960b57cec5SDimitry Andric }; 40970b57cec5SDimitry Andric } // namespace 40980b57cec5SDimitry Andric 40990b57cec5SDimitry Andric namespace llvm { 41000b57cec5SDimitry Andric template <> struct DenseMapInfo<CatchHandlerType> { 41010b57cec5SDimitry Andric static CatchHandlerType getEmptyKey() { 41020b57cec5SDimitry Andric return CatchHandlerType(DenseMapInfo<QualType>::getEmptyKey(), 41030b57cec5SDimitry Andric CatchHandlerType::ForDenseMap); 41040b57cec5SDimitry Andric } 41050b57cec5SDimitry Andric 41060b57cec5SDimitry Andric static CatchHandlerType getTombstoneKey() { 41070b57cec5SDimitry Andric return CatchHandlerType(DenseMapInfo<QualType>::getTombstoneKey(), 41080b57cec5SDimitry Andric CatchHandlerType::ForDenseMap); 41090b57cec5SDimitry Andric } 41100b57cec5SDimitry Andric 41110b57cec5SDimitry Andric static unsigned getHashValue(const CatchHandlerType &Base) { 41120b57cec5SDimitry Andric return DenseMapInfo<QualType>::getHashValue(Base.underlying()); 41130b57cec5SDimitry Andric } 41140b57cec5SDimitry Andric 41150b57cec5SDimitry Andric static bool isEqual(const CatchHandlerType &LHS, 41160b57cec5SDimitry Andric const CatchHandlerType &RHS) { 41170b57cec5SDimitry Andric return LHS == RHS; 41180b57cec5SDimitry Andric } 41190b57cec5SDimitry Andric }; 41200b57cec5SDimitry Andric } 41210b57cec5SDimitry Andric 41220b57cec5SDimitry Andric namespace { 41230b57cec5SDimitry Andric class CatchTypePublicBases { 41240b57cec5SDimitry Andric ASTContext &Ctx; 41250b57cec5SDimitry Andric const llvm::DenseMap<CatchHandlerType, CXXCatchStmt *> &TypesToCheck; 41260b57cec5SDimitry Andric const bool CheckAgainstPointer; 41270b57cec5SDimitry Andric 41280b57cec5SDimitry Andric CXXCatchStmt *FoundHandler; 41290b57cec5SDimitry Andric CanQualType FoundHandlerType; 41300b57cec5SDimitry Andric 41310b57cec5SDimitry Andric public: 41320b57cec5SDimitry Andric CatchTypePublicBases( 41330b57cec5SDimitry Andric ASTContext &Ctx, 41340b57cec5SDimitry Andric const llvm::DenseMap<CatchHandlerType, CXXCatchStmt *> &T, bool C) 41350b57cec5SDimitry Andric : Ctx(Ctx), TypesToCheck(T), CheckAgainstPointer(C), 41360b57cec5SDimitry Andric FoundHandler(nullptr) {} 41370b57cec5SDimitry Andric 41380b57cec5SDimitry Andric CXXCatchStmt *getFoundHandler() const { return FoundHandler; } 41390b57cec5SDimitry Andric CanQualType getFoundHandlerType() const { return FoundHandlerType; } 41400b57cec5SDimitry Andric 41410b57cec5SDimitry Andric bool operator()(const CXXBaseSpecifier *S, CXXBasePath &) { 41420b57cec5SDimitry Andric if (S->getAccessSpecifier() == AccessSpecifier::AS_public) { 41430b57cec5SDimitry Andric CatchHandlerType Check(S->getType(), CheckAgainstPointer); 41440b57cec5SDimitry Andric const auto &M = TypesToCheck; 41450b57cec5SDimitry Andric auto I = M.find(Check); 41460b57cec5SDimitry Andric if (I != M.end()) { 41470b57cec5SDimitry Andric FoundHandler = I->second; 41480b57cec5SDimitry Andric FoundHandlerType = Ctx.getCanonicalType(S->getType()); 41490b57cec5SDimitry Andric return true; 41500b57cec5SDimitry Andric } 41510b57cec5SDimitry Andric } 41520b57cec5SDimitry Andric return false; 41530b57cec5SDimitry Andric } 41540b57cec5SDimitry Andric }; 41550b57cec5SDimitry Andric } 41560b57cec5SDimitry Andric 41570b57cec5SDimitry Andric /// ActOnCXXTryBlock - Takes a try compound-statement and a number of 41580b57cec5SDimitry Andric /// handlers and creates a try statement from them. 41590b57cec5SDimitry Andric StmtResult Sema::ActOnCXXTryBlock(SourceLocation TryLoc, Stmt *TryBlock, 41600b57cec5SDimitry Andric ArrayRef<Stmt *> Handlers) { 41610b57cec5SDimitry Andric // Don't report an error if 'try' is used in system headers. 41620b57cec5SDimitry Andric if (!getLangOpts().CXXExceptions && 41630b57cec5SDimitry Andric !getSourceManager().isInSystemHeader(TryLoc) && !getLangOpts().CUDA) { 41640b57cec5SDimitry Andric // Delay error emission for the OpenMP device code. 41650b57cec5SDimitry Andric targetDiag(TryLoc, diag::err_exceptions_disabled) << "try"; 41660b57cec5SDimitry Andric } 41670b57cec5SDimitry Andric 41680b57cec5SDimitry Andric // Exceptions aren't allowed in CUDA device code. 41690b57cec5SDimitry Andric if (getLangOpts().CUDA) 41700b57cec5SDimitry Andric CUDADiagIfDeviceCode(TryLoc, diag::err_cuda_device_exceptions) 41710b57cec5SDimitry Andric << "try" << CurrentCUDATarget(); 41720b57cec5SDimitry Andric 41730b57cec5SDimitry Andric if (getCurScope() && getCurScope()->isOpenMPSimdDirectiveScope()) 41740b57cec5SDimitry Andric Diag(TryLoc, diag::err_omp_simd_region_cannot_use_stmt) << "try"; 41750b57cec5SDimitry Andric 41760b57cec5SDimitry Andric sema::FunctionScopeInfo *FSI = getCurFunction(); 41770b57cec5SDimitry Andric 41780b57cec5SDimitry Andric // C++ try is incompatible with SEH __try. 41790b57cec5SDimitry Andric if (!getLangOpts().Borland && FSI->FirstSEHTryLoc.isValid()) { 41800b57cec5SDimitry Andric Diag(TryLoc, diag::err_mixing_cxx_try_seh_try); 41810b57cec5SDimitry Andric Diag(FSI->FirstSEHTryLoc, diag::note_conflicting_try_here) << "'__try'"; 41820b57cec5SDimitry Andric } 41830b57cec5SDimitry Andric 41840b57cec5SDimitry Andric const unsigned NumHandlers = Handlers.size(); 41850b57cec5SDimitry Andric assert(!Handlers.empty() && 41860b57cec5SDimitry Andric "The parser shouldn't call this if there are no handlers."); 41870b57cec5SDimitry Andric 41880b57cec5SDimitry Andric llvm::DenseMap<CatchHandlerType, CXXCatchStmt *> HandledTypes; 41890b57cec5SDimitry Andric for (unsigned i = 0; i < NumHandlers; ++i) { 41900b57cec5SDimitry Andric CXXCatchStmt *H = cast<CXXCatchStmt>(Handlers[i]); 41910b57cec5SDimitry Andric 41920b57cec5SDimitry Andric // Diagnose when the handler is a catch-all handler, but it isn't the last 41930b57cec5SDimitry Andric // handler for the try block. [except.handle]p5. Also, skip exception 41940b57cec5SDimitry Andric // declarations that are invalid, since we can't usefully report on them. 41950b57cec5SDimitry Andric if (!H->getExceptionDecl()) { 41960b57cec5SDimitry Andric if (i < NumHandlers - 1) 41970b57cec5SDimitry Andric return StmtError(Diag(H->getBeginLoc(), diag::err_early_catch_all)); 41980b57cec5SDimitry Andric continue; 41990b57cec5SDimitry Andric } else if (H->getExceptionDecl()->isInvalidDecl()) 42000b57cec5SDimitry Andric continue; 42010b57cec5SDimitry Andric 42020b57cec5SDimitry Andric // Walk the type hierarchy to diagnose when this type has already been 42030b57cec5SDimitry Andric // handled (duplication), or cannot be handled (derivation inversion). We 42040b57cec5SDimitry Andric // ignore top-level cv-qualifiers, per [except.handle]p3 42050b57cec5SDimitry Andric CatchHandlerType HandlerCHT = 42060b57cec5SDimitry Andric (QualType)Context.getCanonicalType(H->getCaughtType()); 42070b57cec5SDimitry Andric 42080b57cec5SDimitry Andric // We can ignore whether the type is a reference or a pointer; we need the 42090b57cec5SDimitry Andric // underlying declaration type in order to get at the underlying record 42100b57cec5SDimitry Andric // decl, if there is one. 42110b57cec5SDimitry Andric QualType Underlying = HandlerCHT.underlying(); 42120b57cec5SDimitry Andric if (auto *RD = Underlying->getAsCXXRecordDecl()) { 42130b57cec5SDimitry Andric if (!RD->hasDefinition()) 42140b57cec5SDimitry Andric continue; 42150b57cec5SDimitry Andric // Check that none of the public, unambiguous base classes are in the 42160b57cec5SDimitry Andric // map ([except.handle]p1). Give the base classes the same pointer 42170b57cec5SDimitry Andric // qualification as the original type we are basing off of. This allows 42180b57cec5SDimitry Andric // comparison against the handler type using the same top-level pointer 42190b57cec5SDimitry Andric // as the original type. 42200b57cec5SDimitry Andric CXXBasePaths Paths; 42210b57cec5SDimitry Andric Paths.setOrigin(RD); 42220b57cec5SDimitry Andric CatchTypePublicBases CTPB(Context, HandledTypes, HandlerCHT.isPointer()); 42230b57cec5SDimitry Andric if (RD->lookupInBases(CTPB, Paths)) { 42240b57cec5SDimitry Andric const CXXCatchStmt *Problem = CTPB.getFoundHandler(); 42250b57cec5SDimitry Andric if (!Paths.isAmbiguous(CTPB.getFoundHandlerType())) { 42260b57cec5SDimitry Andric Diag(H->getExceptionDecl()->getTypeSpecStartLoc(), 42270b57cec5SDimitry Andric diag::warn_exception_caught_by_earlier_handler) 42280b57cec5SDimitry Andric << H->getCaughtType(); 42290b57cec5SDimitry Andric Diag(Problem->getExceptionDecl()->getTypeSpecStartLoc(), 42300b57cec5SDimitry Andric diag::note_previous_exception_handler) 42310b57cec5SDimitry Andric << Problem->getCaughtType(); 42320b57cec5SDimitry Andric } 42330b57cec5SDimitry Andric } 42340b57cec5SDimitry Andric } 42350b57cec5SDimitry Andric 42360b57cec5SDimitry Andric // Add the type the list of ones we have handled; diagnose if we've already 42370b57cec5SDimitry Andric // handled it. 42380b57cec5SDimitry Andric auto R = HandledTypes.insert(std::make_pair(H->getCaughtType(), H)); 42390b57cec5SDimitry Andric if (!R.second) { 42400b57cec5SDimitry Andric const CXXCatchStmt *Problem = R.first->second; 42410b57cec5SDimitry Andric Diag(H->getExceptionDecl()->getTypeSpecStartLoc(), 42420b57cec5SDimitry Andric diag::warn_exception_caught_by_earlier_handler) 42430b57cec5SDimitry Andric << H->getCaughtType(); 42440b57cec5SDimitry Andric Diag(Problem->getExceptionDecl()->getTypeSpecStartLoc(), 42450b57cec5SDimitry Andric diag::note_previous_exception_handler) 42460b57cec5SDimitry Andric << Problem->getCaughtType(); 42470b57cec5SDimitry Andric } 42480b57cec5SDimitry Andric } 42490b57cec5SDimitry Andric 42500b57cec5SDimitry Andric FSI->setHasCXXTry(TryLoc); 42510b57cec5SDimitry Andric 42520b57cec5SDimitry Andric return CXXTryStmt::Create(Context, TryLoc, TryBlock, Handlers); 42530b57cec5SDimitry Andric } 42540b57cec5SDimitry Andric 42550b57cec5SDimitry Andric StmtResult Sema::ActOnSEHTryBlock(bool IsCXXTry, SourceLocation TryLoc, 42560b57cec5SDimitry Andric Stmt *TryBlock, Stmt *Handler) { 42570b57cec5SDimitry Andric assert(TryBlock && Handler); 42580b57cec5SDimitry Andric 42590b57cec5SDimitry Andric sema::FunctionScopeInfo *FSI = getCurFunction(); 42600b57cec5SDimitry Andric 42610b57cec5SDimitry Andric // SEH __try is incompatible with C++ try. Borland appears to support this, 42620b57cec5SDimitry Andric // however. 42630b57cec5SDimitry Andric if (!getLangOpts().Borland) { 42640b57cec5SDimitry Andric if (FSI->FirstCXXTryLoc.isValid()) { 42650b57cec5SDimitry Andric Diag(TryLoc, diag::err_mixing_cxx_try_seh_try); 42660b57cec5SDimitry Andric Diag(FSI->FirstCXXTryLoc, diag::note_conflicting_try_here) << "'try'"; 42670b57cec5SDimitry Andric } 42680b57cec5SDimitry Andric } 42690b57cec5SDimitry Andric 42700b57cec5SDimitry Andric FSI->setHasSEHTry(TryLoc); 42710b57cec5SDimitry Andric 42720b57cec5SDimitry Andric // Reject __try in Obj-C methods, blocks, and captured decls, since we don't 42730b57cec5SDimitry Andric // track if they use SEH. 42740b57cec5SDimitry Andric DeclContext *DC = CurContext; 42750b57cec5SDimitry Andric while (DC && !DC->isFunctionOrMethod()) 42760b57cec5SDimitry Andric DC = DC->getParent(); 42770b57cec5SDimitry Andric FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(DC); 42780b57cec5SDimitry Andric if (FD) 42790b57cec5SDimitry Andric FD->setUsesSEHTry(true); 42800b57cec5SDimitry Andric else 42810b57cec5SDimitry Andric Diag(TryLoc, diag::err_seh_try_outside_functions); 42820b57cec5SDimitry Andric 42830b57cec5SDimitry Andric // Reject __try on unsupported targets. 42840b57cec5SDimitry Andric if (!Context.getTargetInfo().isSEHTrySupported()) 42850b57cec5SDimitry Andric Diag(TryLoc, diag::err_seh_try_unsupported); 42860b57cec5SDimitry Andric 42870b57cec5SDimitry Andric return SEHTryStmt::Create(Context, IsCXXTry, TryLoc, TryBlock, Handler); 42880b57cec5SDimitry Andric } 42890b57cec5SDimitry Andric 4290480093f4SDimitry Andric StmtResult Sema::ActOnSEHExceptBlock(SourceLocation Loc, Expr *FilterExpr, 42910b57cec5SDimitry Andric Stmt *Block) { 42920b57cec5SDimitry Andric assert(FilterExpr && Block); 4293480093f4SDimitry Andric QualType FTy = FilterExpr->getType(); 4294480093f4SDimitry Andric if (!FTy->isIntegerType() && !FTy->isDependentType()) { 4295480093f4SDimitry Andric return StmtError( 4296480093f4SDimitry Andric Diag(FilterExpr->getExprLoc(), diag::err_filter_expression_integral) 4297480093f4SDimitry Andric << FTy); 42980b57cec5SDimitry Andric } 42990b57cec5SDimitry Andric return SEHExceptStmt::Create(Context, Loc, FilterExpr, Block); 43000b57cec5SDimitry Andric } 43010b57cec5SDimitry Andric 43020b57cec5SDimitry Andric void Sema::ActOnStartSEHFinallyBlock() { 43030b57cec5SDimitry Andric CurrentSEHFinally.push_back(CurScope); 43040b57cec5SDimitry Andric } 43050b57cec5SDimitry Andric 43060b57cec5SDimitry Andric void Sema::ActOnAbortSEHFinallyBlock() { 43070b57cec5SDimitry Andric CurrentSEHFinally.pop_back(); 43080b57cec5SDimitry Andric } 43090b57cec5SDimitry Andric 43100b57cec5SDimitry Andric StmtResult Sema::ActOnFinishSEHFinallyBlock(SourceLocation Loc, Stmt *Block) { 43110b57cec5SDimitry Andric assert(Block); 43120b57cec5SDimitry Andric CurrentSEHFinally.pop_back(); 43130b57cec5SDimitry Andric return SEHFinallyStmt::Create(Context, Loc, Block); 43140b57cec5SDimitry Andric } 43150b57cec5SDimitry Andric 43160b57cec5SDimitry Andric StmtResult 43170b57cec5SDimitry Andric Sema::ActOnSEHLeaveStmt(SourceLocation Loc, Scope *CurScope) { 43180b57cec5SDimitry Andric Scope *SEHTryParent = CurScope; 43190b57cec5SDimitry Andric while (SEHTryParent && !SEHTryParent->isSEHTryScope()) 43200b57cec5SDimitry Andric SEHTryParent = SEHTryParent->getParent(); 43210b57cec5SDimitry Andric if (!SEHTryParent) 43220b57cec5SDimitry Andric return StmtError(Diag(Loc, diag::err_ms___leave_not_in___try)); 43230b57cec5SDimitry Andric CheckJumpOutOfSEHFinally(*this, Loc, *SEHTryParent); 43240b57cec5SDimitry Andric 43250b57cec5SDimitry Andric return new (Context) SEHLeaveStmt(Loc); 43260b57cec5SDimitry Andric } 43270b57cec5SDimitry Andric 43280b57cec5SDimitry Andric StmtResult Sema::BuildMSDependentExistsStmt(SourceLocation KeywordLoc, 43290b57cec5SDimitry Andric bool IsIfExists, 43300b57cec5SDimitry Andric NestedNameSpecifierLoc QualifierLoc, 43310b57cec5SDimitry Andric DeclarationNameInfo NameInfo, 43320b57cec5SDimitry Andric Stmt *Nested) 43330b57cec5SDimitry Andric { 43340b57cec5SDimitry Andric return new (Context) MSDependentExistsStmt(KeywordLoc, IsIfExists, 43350b57cec5SDimitry Andric QualifierLoc, NameInfo, 43360b57cec5SDimitry Andric cast<CompoundStmt>(Nested)); 43370b57cec5SDimitry Andric } 43380b57cec5SDimitry Andric 43390b57cec5SDimitry Andric 43400b57cec5SDimitry Andric StmtResult Sema::ActOnMSDependentExistsStmt(SourceLocation KeywordLoc, 43410b57cec5SDimitry Andric bool IsIfExists, 43420b57cec5SDimitry Andric CXXScopeSpec &SS, 43430b57cec5SDimitry Andric UnqualifiedId &Name, 43440b57cec5SDimitry Andric Stmt *Nested) { 43450b57cec5SDimitry Andric return BuildMSDependentExistsStmt(KeywordLoc, IsIfExists, 43460b57cec5SDimitry Andric SS.getWithLocInContext(Context), 43470b57cec5SDimitry Andric GetNameFromUnqualifiedId(Name), 43480b57cec5SDimitry Andric Nested); 43490b57cec5SDimitry Andric } 43500b57cec5SDimitry Andric 43510b57cec5SDimitry Andric RecordDecl* 43520b57cec5SDimitry Andric Sema::CreateCapturedStmtRecordDecl(CapturedDecl *&CD, SourceLocation Loc, 43530b57cec5SDimitry Andric unsigned NumParams) { 43540b57cec5SDimitry Andric DeclContext *DC = CurContext; 43550b57cec5SDimitry Andric while (!(DC->isFunctionOrMethod() || DC->isRecord() || DC->isFileContext())) 43560b57cec5SDimitry Andric DC = DC->getParent(); 43570b57cec5SDimitry Andric 43580b57cec5SDimitry Andric RecordDecl *RD = nullptr; 43590b57cec5SDimitry Andric if (getLangOpts().CPlusPlus) 43600b57cec5SDimitry Andric RD = CXXRecordDecl::Create(Context, TTK_Struct, DC, Loc, Loc, 43610b57cec5SDimitry Andric /*Id=*/nullptr); 43620b57cec5SDimitry Andric else 43630b57cec5SDimitry Andric RD = RecordDecl::Create(Context, TTK_Struct, DC, Loc, Loc, /*Id=*/nullptr); 43640b57cec5SDimitry Andric 43650b57cec5SDimitry Andric RD->setCapturedRecord(); 43660b57cec5SDimitry Andric DC->addDecl(RD); 43670b57cec5SDimitry Andric RD->setImplicit(); 43680b57cec5SDimitry Andric RD->startDefinition(); 43690b57cec5SDimitry Andric 43700b57cec5SDimitry Andric assert(NumParams > 0 && "CapturedStmt requires context parameter"); 43710b57cec5SDimitry Andric CD = CapturedDecl::Create(Context, CurContext, NumParams); 43720b57cec5SDimitry Andric DC->addDecl(CD); 43730b57cec5SDimitry Andric return RD; 43740b57cec5SDimitry Andric } 43750b57cec5SDimitry Andric 43760b57cec5SDimitry Andric static bool 43770b57cec5SDimitry Andric buildCapturedStmtCaptureList(Sema &S, CapturedRegionScopeInfo *RSI, 43780b57cec5SDimitry Andric SmallVectorImpl<CapturedStmt::Capture> &Captures, 43790b57cec5SDimitry Andric SmallVectorImpl<Expr *> &CaptureInits) { 43800b57cec5SDimitry Andric for (const sema::Capture &Cap : RSI->Captures) { 43810b57cec5SDimitry Andric if (Cap.isInvalid()) 43820b57cec5SDimitry Andric continue; 43830b57cec5SDimitry Andric 43840b57cec5SDimitry Andric // Form the initializer for the capture. 43850b57cec5SDimitry Andric ExprResult Init = S.BuildCaptureInit(Cap, Cap.getLocation(), 43860b57cec5SDimitry Andric RSI->CapRegionKind == CR_OpenMP); 43870b57cec5SDimitry Andric 43880b57cec5SDimitry Andric // FIXME: Bail out now if the capture is not used and the initializer has 43890b57cec5SDimitry Andric // no side-effects. 43900b57cec5SDimitry Andric 43910b57cec5SDimitry Andric // Create a field for this capture. 43920b57cec5SDimitry Andric FieldDecl *Field = S.BuildCaptureField(RSI->TheRecordDecl, Cap); 43930b57cec5SDimitry Andric 43940b57cec5SDimitry Andric // Add the capture to our list of captures. 43950b57cec5SDimitry Andric if (Cap.isThisCapture()) { 43960b57cec5SDimitry Andric Captures.push_back(CapturedStmt::Capture(Cap.getLocation(), 43970b57cec5SDimitry Andric CapturedStmt::VCK_This)); 43980b57cec5SDimitry Andric } else if (Cap.isVLATypeCapture()) { 43990b57cec5SDimitry Andric Captures.push_back( 44000b57cec5SDimitry Andric CapturedStmt::Capture(Cap.getLocation(), CapturedStmt::VCK_VLAType)); 44010b57cec5SDimitry Andric } else { 44020b57cec5SDimitry Andric assert(Cap.isVariableCapture() && "unknown kind of capture"); 44030b57cec5SDimitry Andric 44040b57cec5SDimitry Andric if (S.getLangOpts().OpenMP && RSI->CapRegionKind == CR_OpenMP) 44050b57cec5SDimitry Andric S.setOpenMPCaptureKind(Field, Cap.getVariable(), RSI->OpenMPLevel); 44060b57cec5SDimitry Andric 44070b57cec5SDimitry Andric Captures.push_back(CapturedStmt::Capture(Cap.getLocation(), 44080b57cec5SDimitry Andric Cap.isReferenceCapture() 44090b57cec5SDimitry Andric ? CapturedStmt::VCK_ByRef 44100b57cec5SDimitry Andric : CapturedStmt::VCK_ByCopy, 44110b57cec5SDimitry Andric Cap.getVariable())); 44120b57cec5SDimitry Andric } 44130b57cec5SDimitry Andric CaptureInits.push_back(Init.get()); 44140b57cec5SDimitry Andric } 44150b57cec5SDimitry Andric return false; 44160b57cec5SDimitry Andric } 44170b57cec5SDimitry Andric 44180b57cec5SDimitry Andric void Sema::ActOnCapturedRegionStart(SourceLocation Loc, Scope *CurScope, 44190b57cec5SDimitry Andric CapturedRegionKind Kind, 44200b57cec5SDimitry Andric unsigned NumParams) { 44210b57cec5SDimitry Andric CapturedDecl *CD = nullptr; 44220b57cec5SDimitry Andric RecordDecl *RD = CreateCapturedStmtRecordDecl(CD, Loc, NumParams); 44230b57cec5SDimitry Andric 44240b57cec5SDimitry Andric // Build the context parameter 44250b57cec5SDimitry Andric DeclContext *DC = CapturedDecl::castToDeclContext(CD); 44260b57cec5SDimitry Andric IdentifierInfo *ParamName = &Context.Idents.get("__context"); 44270b57cec5SDimitry Andric QualType ParamType = Context.getPointerType(Context.getTagDeclType(RD)); 44280b57cec5SDimitry Andric auto *Param = 44290b57cec5SDimitry Andric ImplicitParamDecl::Create(Context, DC, Loc, ParamName, ParamType, 44300b57cec5SDimitry Andric ImplicitParamDecl::CapturedContext); 44310b57cec5SDimitry Andric DC->addDecl(Param); 44320b57cec5SDimitry Andric 44330b57cec5SDimitry Andric CD->setContextParam(0, Param); 44340b57cec5SDimitry Andric 44350b57cec5SDimitry Andric // Enter the capturing scope for this captured region. 44360b57cec5SDimitry Andric PushCapturedRegionScope(CurScope, CD, RD, Kind); 44370b57cec5SDimitry Andric 44380b57cec5SDimitry Andric if (CurScope) 44390b57cec5SDimitry Andric PushDeclContext(CurScope, CD); 44400b57cec5SDimitry Andric else 44410b57cec5SDimitry Andric CurContext = CD; 44420b57cec5SDimitry Andric 44430b57cec5SDimitry Andric PushExpressionEvaluationContext( 44440b57cec5SDimitry Andric ExpressionEvaluationContext::PotentiallyEvaluated); 44450b57cec5SDimitry Andric } 44460b57cec5SDimitry Andric 44470b57cec5SDimitry Andric void Sema::ActOnCapturedRegionStart(SourceLocation Loc, Scope *CurScope, 44480b57cec5SDimitry Andric CapturedRegionKind Kind, 4449a7dea167SDimitry Andric ArrayRef<CapturedParamNameType> Params, 4450a7dea167SDimitry Andric unsigned OpenMPCaptureLevel) { 44510b57cec5SDimitry Andric CapturedDecl *CD = nullptr; 44520b57cec5SDimitry Andric RecordDecl *RD = CreateCapturedStmtRecordDecl(CD, Loc, Params.size()); 44530b57cec5SDimitry Andric 44540b57cec5SDimitry Andric // Build the context parameter 44550b57cec5SDimitry Andric DeclContext *DC = CapturedDecl::castToDeclContext(CD); 44560b57cec5SDimitry Andric bool ContextIsFound = false; 44570b57cec5SDimitry Andric unsigned ParamNum = 0; 44580b57cec5SDimitry Andric for (ArrayRef<CapturedParamNameType>::iterator I = Params.begin(), 44590b57cec5SDimitry Andric E = Params.end(); 44600b57cec5SDimitry Andric I != E; ++I, ++ParamNum) { 44610b57cec5SDimitry Andric if (I->second.isNull()) { 44620b57cec5SDimitry Andric assert(!ContextIsFound && 44630b57cec5SDimitry Andric "null type has been found already for '__context' parameter"); 44640b57cec5SDimitry Andric IdentifierInfo *ParamName = &Context.Idents.get("__context"); 44650b57cec5SDimitry Andric QualType ParamType = Context.getPointerType(Context.getTagDeclType(RD)) 44660b57cec5SDimitry Andric .withConst() 44670b57cec5SDimitry Andric .withRestrict(); 44680b57cec5SDimitry Andric auto *Param = 44690b57cec5SDimitry Andric ImplicitParamDecl::Create(Context, DC, Loc, ParamName, ParamType, 44700b57cec5SDimitry Andric ImplicitParamDecl::CapturedContext); 44710b57cec5SDimitry Andric DC->addDecl(Param); 44720b57cec5SDimitry Andric CD->setContextParam(ParamNum, Param); 44730b57cec5SDimitry Andric ContextIsFound = true; 44740b57cec5SDimitry Andric } else { 44750b57cec5SDimitry Andric IdentifierInfo *ParamName = &Context.Idents.get(I->first); 44760b57cec5SDimitry Andric auto *Param = 44770b57cec5SDimitry Andric ImplicitParamDecl::Create(Context, DC, Loc, ParamName, I->second, 44780b57cec5SDimitry Andric ImplicitParamDecl::CapturedContext); 44790b57cec5SDimitry Andric DC->addDecl(Param); 44800b57cec5SDimitry Andric CD->setParam(ParamNum, Param); 44810b57cec5SDimitry Andric } 44820b57cec5SDimitry Andric } 44830b57cec5SDimitry Andric assert(ContextIsFound && "no null type for '__context' parameter"); 44840b57cec5SDimitry Andric if (!ContextIsFound) { 44850b57cec5SDimitry Andric // Add __context implicitly if it is not specified. 44860b57cec5SDimitry Andric IdentifierInfo *ParamName = &Context.Idents.get("__context"); 44870b57cec5SDimitry Andric QualType ParamType = Context.getPointerType(Context.getTagDeclType(RD)); 44880b57cec5SDimitry Andric auto *Param = 44890b57cec5SDimitry Andric ImplicitParamDecl::Create(Context, DC, Loc, ParamName, ParamType, 44900b57cec5SDimitry Andric ImplicitParamDecl::CapturedContext); 44910b57cec5SDimitry Andric DC->addDecl(Param); 44920b57cec5SDimitry Andric CD->setContextParam(ParamNum, Param); 44930b57cec5SDimitry Andric } 44940b57cec5SDimitry Andric // Enter the capturing scope for this captured region. 4495a7dea167SDimitry Andric PushCapturedRegionScope(CurScope, CD, RD, Kind, OpenMPCaptureLevel); 44960b57cec5SDimitry Andric 44970b57cec5SDimitry Andric if (CurScope) 44980b57cec5SDimitry Andric PushDeclContext(CurScope, CD); 44990b57cec5SDimitry Andric else 45000b57cec5SDimitry Andric CurContext = CD; 45010b57cec5SDimitry Andric 45020b57cec5SDimitry Andric PushExpressionEvaluationContext( 45030b57cec5SDimitry Andric ExpressionEvaluationContext::PotentiallyEvaluated); 45040b57cec5SDimitry Andric } 45050b57cec5SDimitry Andric 45060b57cec5SDimitry Andric void Sema::ActOnCapturedRegionError() { 45070b57cec5SDimitry Andric DiscardCleanupsInEvaluationContext(); 45080b57cec5SDimitry Andric PopExpressionEvaluationContext(); 45090b57cec5SDimitry Andric PopDeclContext(); 45100b57cec5SDimitry Andric PoppedFunctionScopePtr ScopeRAII = PopFunctionScopeInfo(); 45110b57cec5SDimitry Andric CapturedRegionScopeInfo *RSI = cast<CapturedRegionScopeInfo>(ScopeRAII.get()); 45120b57cec5SDimitry Andric 45130b57cec5SDimitry Andric RecordDecl *Record = RSI->TheRecordDecl; 45140b57cec5SDimitry Andric Record->setInvalidDecl(); 45150b57cec5SDimitry Andric 45160b57cec5SDimitry Andric SmallVector<Decl*, 4> Fields(Record->fields()); 45170b57cec5SDimitry Andric ActOnFields(/*Scope=*/nullptr, Record->getLocation(), Record, Fields, 45180b57cec5SDimitry Andric SourceLocation(), SourceLocation(), ParsedAttributesView()); 45190b57cec5SDimitry Andric } 45200b57cec5SDimitry Andric 45210b57cec5SDimitry Andric StmtResult Sema::ActOnCapturedRegionEnd(Stmt *S) { 45220b57cec5SDimitry Andric // Leave the captured scope before we start creating captures in the 45230b57cec5SDimitry Andric // enclosing scope. 45240b57cec5SDimitry Andric DiscardCleanupsInEvaluationContext(); 45250b57cec5SDimitry Andric PopExpressionEvaluationContext(); 45260b57cec5SDimitry Andric PopDeclContext(); 45270b57cec5SDimitry Andric PoppedFunctionScopePtr ScopeRAII = PopFunctionScopeInfo(); 45280b57cec5SDimitry Andric CapturedRegionScopeInfo *RSI = cast<CapturedRegionScopeInfo>(ScopeRAII.get()); 45290b57cec5SDimitry Andric 45300b57cec5SDimitry Andric SmallVector<CapturedStmt::Capture, 4> Captures; 45310b57cec5SDimitry Andric SmallVector<Expr *, 4> CaptureInits; 45320b57cec5SDimitry Andric if (buildCapturedStmtCaptureList(*this, RSI, Captures, CaptureInits)) 45330b57cec5SDimitry Andric return StmtError(); 45340b57cec5SDimitry Andric 45350b57cec5SDimitry Andric CapturedDecl *CD = RSI->TheCapturedDecl; 45360b57cec5SDimitry Andric RecordDecl *RD = RSI->TheRecordDecl; 45370b57cec5SDimitry Andric 45380b57cec5SDimitry Andric CapturedStmt *Res = CapturedStmt::Create( 45390b57cec5SDimitry Andric getASTContext(), S, static_cast<CapturedRegionKind>(RSI->CapRegionKind), 45400b57cec5SDimitry Andric Captures, CaptureInits, CD, RD); 45410b57cec5SDimitry Andric 45420b57cec5SDimitry Andric CD->setBody(Res->getCapturedStmt()); 45430b57cec5SDimitry Andric RD->completeDefinition(); 45440b57cec5SDimitry Andric 45450b57cec5SDimitry Andric return Res; 45460b57cec5SDimitry Andric } 4547