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Chris Lattner5b183d82006-11-10 05:03:26 +00001//===--- SemaExpr.cpp - Semantic Analysis for Expressions -----------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements semantic analysis for expressions.
11//
12//===----------------------------------------------------------------------===//
13
14#include "Sema.h"
Chris Lattnercb6a3822006-11-10 06:20:45 +000015#include "clang/AST/ASTContext.h"
Chris Lattner17ed4872006-11-20 04:58:19 +000016#include "clang/AST/Decl.h"
Chris Lattner5b183d82006-11-10 05:03:26 +000017#include "clang/AST/Expr.h"
18#include "clang/Lex/Preprocessor.h"
Steve Naroff09ef4742007-03-09 23:16:33 +000019#include "clang/Lex/LiteralSupport.h"
Steve Narofff2fb89e2007-03-13 20:29:44 +000020#include "clang/Basic/SourceManager.h"
Chris Lattner5b183d82006-11-10 05:03:26 +000021#include "clang/Basic/Diagnostic.h"
Chris Lattnerac18be92006-11-20 06:49:47 +000022#include "clang/Basic/LangOptions.h"
Chris Lattner5b183d82006-11-10 05:03:26 +000023#include "clang/Basic/TargetInfo.h"
24#include "llvm/ADT/SmallString.h"
Chris Lattner5b183d82006-11-10 05:03:26 +000025using namespace clang;
26
Steve Naroffdf7855b2007-02-21 23:46:25 +000027/// ParseStringLiteral - The specified tokens were lexed as pasted string
Chris Lattner5b183d82006-11-10 05:03:26 +000028/// fragments (e.g. "foo" "bar" L"baz"). The result string has to handle string
29/// concatenation ([C99 5.1.1.2, translation phase #6]), so it may come from
30/// multiple tokens. However, the common case is that StringToks points to one
31/// string.
32///
33Action::ExprResult
Steve Naroffdf7855b2007-02-21 23:46:25 +000034Sema::ParseStringLiteral(const LexerToken *StringToks, unsigned NumStringToks) {
Chris Lattner5b183d82006-11-10 05:03:26 +000035 assert(NumStringToks && "Must have at least one string!");
36
Steve Naroff4f88b312007-03-13 22:37:02 +000037 StringLiteralParser Literal(StringToks, NumStringToks, PP, Context.Target);
38 if (Literal.hadError)
39 return ExprResult(true);
Chris Lattner5b183d82006-11-10 05:03:26 +000040
Chris Lattner23b7eb62007-06-15 23:05:46 +000041 llvm::SmallVector<SourceLocation, 4> StringTokLocs;
Chris Lattner5b183d82006-11-10 05:03:26 +000042 for (unsigned i = 0; i != NumStringToks; ++i)
43 StringTokLocs.push_back(StringToks[i].getLocation());
Steve Narofff1e53692007-03-23 22:27:02 +000044
45 // FIXME: handle wchar_t
Steve Naroffe5aa9be2007-04-05 22:36:20 +000046 QualType t = Context.getPointerType(Context.CharTy);
Steve Narofff1e53692007-03-23 22:27:02 +000047
Chris Lattner5b183d82006-11-10 05:03:26 +000048 // Pass &StringTokLocs[0], StringTokLocs.size() to factory!
Steve Naroff4f88b312007-03-13 22:37:02 +000049 return new StringLiteral(Literal.GetString(), Literal.GetStringLength(),
Steve Naroff53f07dc2007-05-17 21:49:33 +000050 Literal.AnyWide, t, StringToks[0].getLocation(),
51 StringToks[NumStringToks-1].getLocation());
Chris Lattner5b183d82006-11-10 05:03:26 +000052}
53
Chris Lattnere168f762006-11-10 05:29:30 +000054
Chris Lattnerac18be92006-11-20 06:49:47 +000055/// ParseIdentifierExpr - The parser read an identifier in expression context,
56/// validate it per-C99 6.5.1. HasTrailingLParen indicates whether this
57/// identifier is used in an function call context.
58Sema::ExprResult Sema::ParseIdentifierExpr(Scope *S, SourceLocation Loc,
59 IdentifierInfo &II,
60 bool HasTrailingLParen) {
Chris Lattner17ed4872006-11-20 04:58:19 +000061 // Could be enum-constant or decl.
Chris Lattner9561a0b2007-01-28 08:20:04 +000062 Decl *D = LookupScopedDecl(&II, Decl::IDNS_Ordinary, Loc, S);
Chris Lattner17ed4872006-11-20 04:58:19 +000063 if (D == 0) {
Bill Wendling4073ed52007-02-13 01:51:42 +000064 // Otherwise, this could be an implicitly declared function reference (legal
Chris Lattner9561a0b2007-01-28 08:20:04 +000065 // in C90, extension in C99).
Chris Lattnerac18be92006-11-20 06:49:47 +000066 if (HasTrailingLParen &&
67 // Not in C++.
Steve Narofff1e53692007-03-23 22:27:02 +000068 !getLangOptions().CPlusPlus)
Chris Lattnerac18be92006-11-20 06:49:47 +000069 D = ImplicitlyDefineFunction(Loc, II, S);
Steve Naroff92e30f82007-04-02 22:35:25 +000070 else {
Chris Lattnerac18be92006-11-20 06:49:47 +000071 // If this name wasn't predeclared and if this is not a function call,
72 // diagnose the problem.
Steve Narofff1e53692007-03-23 22:27:02 +000073 return Diag(Loc, diag::err_undeclared_var_use, II.getName());
Steve Naroff92e30f82007-04-02 22:35:25 +000074 }
Chris Lattner17ed4872006-11-20 04:58:19 +000075 }
76
Steve Naroff46ba1eb2007-04-03 23:13:13 +000077 if (ValueDecl *VD = dyn_cast<ValueDecl>(D))
Steve Naroff509fe022007-05-17 01:16:00 +000078 return new DeclRefExpr(VD, VD->getType(), Loc);
Steve Naroff46ba1eb2007-04-03 23:13:13 +000079 if (isa<TypedefDecl>(D))
Steve Narofff1e53692007-03-23 22:27:02 +000080 return Diag(Loc, diag::err_unexpected_typedef, II.getName());
81
82 assert(0 && "Invalid decl");
Chris Lattner17ed4872006-11-20 04:58:19 +000083}
Chris Lattnere168f762006-11-10 05:29:30 +000084
Chris Lattner17ed4872006-11-20 04:58:19 +000085Sema::ExprResult Sema::ParseSimplePrimaryExpr(SourceLocation Loc,
86 tok::TokenKind Kind) {
Chris Lattnere168f762006-11-10 05:29:30 +000087 switch (Kind) {
88 default:
89 assert(0 && "Unknown simple primary expr!");
Steve Naroffe4718892007-04-27 18:30:00 +000090 // TODO: MOVE this to be some other callback.
Chris Lattnere168f762006-11-10 05:29:30 +000091 case tok::kw___func__: // primary-expression: __func__ [C99 6.4.2.2]
92 case tok::kw___FUNCTION__: // primary-expression: __FUNCTION__ [GNU]
93 case tok::kw___PRETTY_FUNCTION__: // primary-expression: __P..Y_F..N__ [GNU]
Chris Lattner17ed4872006-11-20 04:58:19 +000094 return 0;
Chris Lattnere168f762006-11-10 05:29:30 +000095 }
96}
97
Steve Naroffae4143e2007-04-26 20:39:23 +000098Sema::ExprResult Sema::ParseCharacterConstant(const LexerToken &Tok) {
Chris Lattner23b7eb62007-06-15 23:05:46 +000099 llvm::SmallString<16> CharBuffer;
Steve Naroffae4143e2007-04-26 20:39:23 +0000100 CharBuffer.resize(Tok.getLength());
101 const char *ThisTokBegin = &CharBuffer[0];
102 unsigned ActualLength = PP.getSpelling(Tok, ThisTokBegin);
103
104 CharLiteralParser Literal(ThisTokBegin, ThisTokBegin+ActualLength,
105 Tok.getLocation(), PP);
106 if (Literal.hadError())
107 return ExprResult(true);
Steve Naroff509fe022007-05-17 01:16:00 +0000108 return new CharacterLiteral(Literal.getValue(), Context.IntTy,
109 Tok.getLocation());
Steve Naroffae4143e2007-04-26 20:39:23 +0000110}
111
Steve Naroff8160ea22007-03-06 01:09:46 +0000112Action::ExprResult Sema::ParseNumericConstant(const LexerToken &Tok) {
Steve Narofff2fb89e2007-03-13 20:29:44 +0000113 // fast path for a single digit (which is quite common). A single digit
114 // cannot have a trigraph, escaped newline, radix prefix, or type suffix.
115 if (Tok.getLength() == 1) {
116 const char *t = PP.getSourceManager().getCharacterData(Tok.getLocation());
Chris Lattner67ca9252007-05-21 01:08:44 +0000117
Chris Lattner4481b422007-07-14 01:29:45 +0000118 unsigned IntSize = Context.getTypeSize(Context.IntTy, Tok.getLocation());
Chris Lattner23b7eb62007-06-15 23:05:46 +0000119 return ExprResult(new IntegerLiteral(llvm::APInt(IntSize, *t-'0'),
120 Context.IntTy,
Steve Naroff509fe022007-05-17 01:16:00 +0000121 Tok.getLocation()));
Steve Narofff2fb89e2007-03-13 20:29:44 +0000122 }
Chris Lattner23b7eb62007-06-15 23:05:46 +0000123 llvm::SmallString<512> IntegerBuffer;
Steve Naroff8160ea22007-03-06 01:09:46 +0000124 IntegerBuffer.resize(Tok.getLength());
125 const char *ThisTokBegin = &IntegerBuffer[0];
126
Chris Lattner67ca9252007-05-21 01:08:44 +0000127 // Get the spelling of the token, which eliminates trigraphs, etc.
Steve Naroff8160ea22007-03-06 01:09:46 +0000128 unsigned ActualLength = PP.getSpelling(Tok, ThisTokBegin);
Steve Naroff09ef4742007-03-09 23:16:33 +0000129 NumericLiteralParser Literal(ThisTokBegin, ThisTokBegin+ActualLength,
Steve Naroff451d8f162007-03-12 23:22:38 +0000130 Tok.getLocation(), PP);
Steve Narofff2fb89e2007-03-13 20:29:44 +0000131 if (Literal.hadError)
132 return ExprResult(true);
Chris Lattner67ca9252007-05-21 01:08:44 +0000133
Steve Naroff09ef4742007-03-09 23:16:33 +0000134 if (Literal.isIntegerLiteral()) {
Steve Naroffe5aa9be2007-04-05 22:36:20 +0000135 QualType t;
Chris Lattner67ca9252007-05-21 01:08:44 +0000136
137 // Get the value in the widest-possible width.
Chris Lattner23b7eb62007-06-15 23:05:46 +0000138 llvm::APInt ResultVal(Context.Target.getIntMaxTWidth(Tok.getLocation()), 0);
Chris Lattner67ca9252007-05-21 01:08:44 +0000139
140 if (Literal.GetIntegerValue(ResultVal)) {
141 // If this value didn't fit into uintmax_t, warn and force to ull.
142 Diag(Tok.getLocation(), diag::warn_integer_too_large);
143 t = Context.UnsignedLongLongTy;
Chris Lattner4481b422007-07-14 01:29:45 +0000144 assert(Context.getTypeSize(t, Tok.getLocation()) ==
Chris Lattner67ca9252007-05-21 01:08:44 +0000145 ResultVal.getBitWidth() && "long long is not intmax_t?");
Steve Naroff09ef4742007-03-09 23:16:33 +0000146 } else {
Chris Lattner67ca9252007-05-21 01:08:44 +0000147 // If this value fits into a ULL, try to figure out what else it fits into
148 // according to the rules of C99 6.4.4.1p5.
149
150 // Octal, Hexadecimal, and integers with a U suffix are allowed to
151 // be an unsigned int.
152 bool AllowUnsigned = Literal.isUnsigned || Literal.getRadix() != 10;
153
154 // Check from smallest to largest, picking the smallest type we can.
155 if (!Literal.isLong) { // Are int/unsigned possibilities?
Chris Lattner4481b422007-07-14 01:29:45 +0000156 unsigned IntSize = Context.getTypeSize(Context.IntTy,Tok.getLocation());
Chris Lattner67ca9252007-05-21 01:08:44 +0000157 // Does it fit in a unsigned int?
158 if (ResultVal.isIntN(IntSize)) {
159 // Does it fit in a signed int?
160 if (!Literal.isUnsigned && ResultVal[IntSize-1] == 0)
161 t = Context.IntTy;
162 else if (AllowUnsigned)
163 t = Context.UnsignedIntTy;
164 }
165
166 if (!t.isNull())
167 ResultVal.trunc(IntSize);
168 }
169
170 // Are long/unsigned long possibilities?
171 if (t.isNull() && !Literal.isLongLong) {
Chris Lattner4481b422007-07-14 01:29:45 +0000172 unsigned LongSize = Context.getTypeSize(Context.LongTy,
173 Tok.getLocation());
Chris Lattner67ca9252007-05-21 01:08:44 +0000174
175 // Does it fit in a unsigned long?
176 if (ResultVal.isIntN(LongSize)) {
177 // Does it fit in a signed long?
178 if (!Literal.isUnsigned && ResultVal[LongSize-1] == 0)
179 t = Context.LongTy;
180 else if (AllowUnsigned)
181 t = Context.UnsignedLongTy;
182 }
183 if (!t.isNull())
184 ResultVal.trunc(LongSize);
185 }
186
187 // Finally, check long long if needed.
188 if (t.isNull()) {
189 unsigned LongLongSize =
Chris Lattner4481b422007-07-14 01:29:45 +0000190 Context.getTypeSize(Context.LongLongTy, Tok.getLocation());
Chris Lattner67ca9252007-05-21 01:08:44 +0000191
192 // Does it fit in a unsigned long long?
193 if (ResultVal.isIntN(LongLongSize)) {
194 // Does it fit in a signed long long?
195 if (!Literal.isUnsigned && ResultVal[LongLongSize-1] == 0)
196 t = Context.LongLongTy;
197 else if (AllowUnsigned)
198 t = Context.UnsignedLongLongTy;
199 }
200 }
201
202 // If we still couldn't decide a type, we probably have something that
203 // does not fit in a signed long long, but has no U suffix.
204 if (t.isNull()) {
205 Diag(Tok.getLocation(), diag::warn_integer_too_large_for_signed);
206 t = Context.UnsignedLongLongTy;
207 }
Steve Naroff09ef4742007-03-09 23:16:33 +0000208 }
Chris Lattner67ca9252007-05-21 01:08:44 +0000209
210 return new IntegerLiteral(ResultVal, t, Tok.getLocation());
Steve Naroff09ef4742007-03-09 23:16:33 +0000211 } else if (Literal.isFloatingLiteral()) {
Steve Naroff97b9e912007-07-09 23:53:58 +0000212 // FIXME: handle float values > 32 (including compute the real type...).
213 return new FloatingLiteral(Literal.GetFloatValue(), Context.FloatTy,
214 Tok.getLocation());
Steve Naroff09ef4742007-03-09 23:16:33 +0000215 }
Steve Narofff2fb89e2007-03-13 20:29:44 +0000216 return ExprResult(true);
Chris Lattnere168f762006-11-10 05:29:30 +0000217}
218
219Action::ExprResult Sema::ParseParenExpr(SourceLocation L, SourceLocation R,
220 ExprTy *Val) {
Steve Naroffae4143e2007-04-26 20:39:23 +0000221 Expr *e = (Expr *)Val;
222 assert((e != 0) && "ParseParenExpr() missing expr");
Steve Naroff53f07dc2007-05-17 21:49:33 +0000223 return new ParenExpr(L, R, e);
Chris Lattnere168f762006-11-10 05:29:30 +0000224}
225
Steve Naroff71b59a92007-06-04 22:22:31 +0000226/// The UsualUnaryConversions() function is *not* called by this routine.
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000227/// See C99 6.3.2.1p[2-4] for more details.
Steve Naroff043d45d2007-05-15 02:32:35 +0000228QualType Sema::CheckSizeOfAlignOfOperand(QualType exprType,
229 SourceLocation OpLoc, bool isSizeof) {
230 // C99 6.5.3.4p1:
231 if (isa<FunctionType>(exprType) && isSizeof)
232 // alignof(function) is allowed.
233 Diag(OpLoc, diag::ext_sizeof_function_type);
234 else if (exprType->isVoidType())
235 Diag(OpLoc, diag::ext_sizeof_void_type, isSizeof ? "sizeof" : "__alignof");
236 else if (exprType->isIncompleteType()) {
Steve Naroff043d45d2007-05-15 02:32:35 +0000237 Diag(OpLoc, isSizeof ? diag::err_sizeof_incomplete_type :
Chris Lattner3dc3d772007-05-16 18:07:12 +0000238 diag::err_alignof_incomplete_type,
239 exprType.getAsString());
Steve Naroff043d45d2007-05-15 02:32:35 +0000240 return QualType(); // error
241 }
242 // C99 6.5.3.4p4: the type (an unsigned integer type) is size_t.
243 return Context.getSizeType();
244}
245
Chris Lattnere168f762006-11-10 05:29:30 +0000246Action::ExprResult Sema::
247ParseSizeOfAlignOfTypeExpr(SourceLocation OpLoc, bool isSizeof,
Steve Naroff509fe022007-05-17 01:16:00 +0000248 SourceLocation LPLoc, TypeTy *Ty,
249 SourceLocation RPLoc) {
Chris Lattner0d8b1a12006-11-20 04:34:45 +0000250 // If error parsing type, ignore.
251 if (Ty == 0) return true;
Chris Lattner6531c102007-01-23 22:29:49 +0000252
253 // Verify that this is a valid expression.
Steve Naroffe5aa9be2007-04-05 22:36:20 +0000254 QualType ArgTy = QualType::getFromOpaquePtr(Ty);
Chris Lattner6531c102007-01-23 22:29:49 +0000255
Steve Naroff043d45d2007-05-15 02:32:35 +0000256 QualType resultType = CheckSizeOfAlignOfOperand(ArgTy, OpLoc, isSizeof);
257
258 if (resultType.isNull())
259 return true;
Steve Naroff509fe022007-05-17 01:16:00 +0000260 return new SizeOfAlignOfTypeExpr(isSizeof, ArgTy, resultType, OpLoc, RPLoc);
Chris Lattnere168f762006-11-10 05:29:30 +0000261}
262
263
264Action::ExprResult Sema::ParsePostfixUnaryOp(SourceLocation OpLoc,
265 tok::TokenKind Kind,
266 ExprTy *Input) {
267 UnaryOperator::Opcode Opc;
268 switch (Kind) {
269 default: assert(0 && "Unknown unary op!");
270 case tok::plusplus: Opc = UnaryOperator::PostInc; break;
271 case tok::minusminus: Opc = UnaryOperator::PostDec; break;
272 }
Steve Naroff71ce2e02007-05-18 22:53:50 +0000273 QualType result = CheckIncrementDecrementOperand((Expr *)Input, OpLoc);
Steve Naroff35d85152007-05-07 00:24:15 +0000274 if (result.isNull())
275 return true;
Steve Naroff509fe022007-05-17 01:16:00 +0000276 return new UnaryOperator((Expr *)Input, Opc, result, OpLoc);
Chris Lattnere168f762006-11-10 05:29:30 +0000277}
278
279Action::ExprResult Sema::
280ParseArraySubscriptExpr(ExprTy *Base, SourceLocation LLoc,
281 ExprTy *Idx, SourceLocation RLoc) {
Chris Lattner5981db42007-07-15 23:59:53 +0000282 Expr *LHSExp = static_cast<Expr*>(Base), *RHSExp = static_cast<Expr*>(Idx);
Chris Lattner36d572b2007-07-16 00:14:47 +0000283
284 // Perform default conversions.
285 DefaultFunctionArrayConversion(LHSExp);
286 DefaultFunctionArrayConversion(RHSExp);
Chris Lattner5981db42007-07-15 23:59:53 +0000287
Chris Lattner36d572b2007-07-16 00:14:47 +0000288 QualType LHSTy = LHSExp->getType(), RHSTy = RHSExp->getType();
Steve Narofff1e53692007-03-23 22:27:02 +0000289
Steve Naroffc1aadb12007-03-28 21:49:40 +0000290 // C99 6.5.2.1p2: the expression e1[e2] is by definition precisely equivalent
291 // to the expression *((e1)+(e2)). This means the array "Base" may actually be
Steve Narofff1e53692007-03-23 22:27:02 +0000292 // in the subscript position. As a result, we need to derive the array base
293 // and index from the expression types.
Chris Lattner36d572b2007-07-16 00:14:47 +0000294 Expr *BaseExpr, *IndexExpr;
295 QualType ResultType;
Chris Lattneraee0cfd2007-07-16 00:23:25 +0000296 if (const PointerType *PTy = LHSTy->isPointerType()) {
Chris Lattner36d572b2007-07-16 00:14:47 +0000297 BaseExpr = LHSExp;
298 IndexExpr = RHSExp;
299 // FIXME: need to deal with const...
300 ResultType = PTy->getPointeeType();
Chris Lattneraee0cfd2007-07-16 00:23:25 +0000301 } else if (const PointerType *PTy = RHSTy->isPointerType()) {
302 // Handle the uncommon case of "123[Ptr]".
Chris Lattner36d572b2007-07-16 00:14:47 +0000303 BaseExpr = RHSExp;
304 IndexExpr = LHSExp;
305 // FIXME: need to deal with const...
306 ResultType = PTy->getPointeeType();
Chris Lattneraee0cfd2007-07-16 00:23:25 +0000307 } else if (const VectorType *VTy = LHSTy->isVectorType()) { // vectors: V[123]
Chris Lattner36d572b2007-07-16 00:14:47 +0000308 BaseExpr = LHSExp;
309 IndexExpr = RHSExp;
310 // FIXME: need to deal with const...
311 ResultType = VTy->getElementType();
Steve Naroffb3096442007-06-09 03:47:53 +0000312 } else {
Chris Lattner5981db42007-07-15 23:59:53 +0000313 return Diag(LHSExp->getLocStart(), diag::err_typecheck_subscript_value,
314 RHSExp->getSourceRange());
Steve Naroffb3096442007-06-09 03:47:53 +0000315 }
Steve Naroffc1aadb12007-03-28 21:49:40 +0000316 // C99 6.5.2.1p1
Chris Lattner36d572b2007-07-16 00:14:47 +0000317 if (!IndexExpr->getType()->isIntegerType())
318 return Diag(IndexExpr->getLocStart(), diag::err_typecheck_subscript,
319 IndexExpr->getSourceRange());
Steve Naroffb29cdd52007-07-10 18:23:31 +0000320
Chris Lattner36d572b2007-07-16 00:14:47 +0000321 // C99 6.5.2.1p1: "shall have type "pointer to *object* type". In practice,
322 // the following check catches trying to index a pointer to a function (e.g.
323 // void (*)(int)). Functions are not objects in C99.
324 if (!ResultType->isObjectType())
325 return Diag(BaseExpr->getLocStart(),
326 diag::err_typecheck_subscript_not_object,
327 BaseExpr->getType().getAsString(), BaseExpr->getSourceRange());
328
329 return new ArraySubscriptExpr(LHSExp, RHSExp, ResultType, RLoc);
Chris Lattnere168f762006-11-10 05:29:30 +0000330}
331
332Action::ExprResult Sema::
333ParseMemberReferenceExpr(ExprTy *Base, SourceLocation OpLoc,
334 tok::TokenKind OpKind, SourceLocation MemberLoc,
335 IdentifierInfo &Member) {
Steve Naroffe5aa9be2007-04-05 22:36:20 +0000336 QualType qualifiedType = ((Expr *)Base)->getType();
Steve Naroffca8f7122007-04-01 01:41:35 +0000337
338 assert(!qualifiedType.isNull() && "no type for member expression");
339
Steve Naroffe5aa9be2007-04-05 22:36:20 +0000340 QualType canonType = qualifiedType.getCanonicalType();
Steve Narofff1e53692007-03-23 22:27:02 +0000341
342 if (OpKind == tok::arrow) {
Steve Naroffca8f7122007-04-01 01:41:35 +0000343 if (PointerType *PT = dyn_cast<PointerType>(canonType)) {
344 qualifiedType = PT->getPointeeType();
Steve Naroffd50c88e2007-04-05 21:15:20 +0000345 canonType = qualifiedType.getCanonicalType();
Steve Naroffca8f7122007-04-01 01:41:35 +0000346 } else
Steve Narofff1e53692007-03-23 22:27:02 +0000347 return Diag(OpLoc, diag::err_typecheck_member_reference_arrow);
348 }
Steve Naroff92e30f82007-04-02 22:35:25 +0000349 if (!isa<RecordType>(canonType))
350 return Diag(OpLoc, diag::err_typecheck_member_reference_structUnion);
351
352 // get the struct/union definition from the type.
353 RecordDecl *RD = cast<RecordType>(canonType)->getDecl();
Steve Naroffcc321422007-03-26 23:09:51 +0000354
Steve Naroff92e30f82007-04-02 22:35:25 +0000355 if (canonType->isIncompleteType())
356 return Diag(OpLoc, diag::err_typecheck_incomplete_tag, RD->getName());
Steve Naroffcc321422007-03-26 23:09:51 +0000357
Steve Naroff92e30f82007-04-02 22:35:25 +0000358 FieldDecl *MemberDecl = RD->getMember(&Member);
359 if (!MemberDecl)
360 return Diag(OpLoc, diag::err_typecheck_no_member, Member.getName());
361
Steve Naroff9358c712007-05-27 23:58:33 +0000362 return new MemberExpr((Expr*)Base, OpKind == tok::arrow,
363 MemberDecl, MemberLoc);
Chris Lattnere168f762006-11-10 05:29:30 +0000364}
365
366/// ParseCallExpr - Handle a call to Fn with the specified array of arguments.
367/// This provides the location of the left/right parens and a list of comma
368/// locations.
369Action::ExprResult Sema::
370ParseCallExpr(ExprTy *Fn, SourceLocation LParenLoc,
Steve Naroffb8c289d2007-05-08 22:18:00 +0000371 ExprTy **Args, unsigned NumArgsInCall,
Chris Lattnere168f762006-11-10 05:29:30 +0000372 SourceLocation *CommaLocs, SourceLocation RParenLoc) {
Steve Naroff8563f652007-05-28 19:25:56 +0000373 Expr *funcExpr = (Expr *)Fn;
Steve Naroff8563f652007-05-28 19:25:56 +0000374 assert(funcExpr && "no function call expression");
375
Steve Naroff31090012007-07-16 21:54:35 +0000376 UsualUnaryConversions(funcExpr);
377 QualType funcType = funcExpr->getType();
Steve Naroffae4143e2007-04-26 20:39:23 +0000378
Chris Lattner3d01e4e2007-06-06 05:14:05 +0000379 // C99 6.5.2.2p1 - "The expression that denotes the called function shall have
380 // type pointer to function".
Steve Naroff31090012007-07-16 21:54:35 +0000381 const PointerType *PT = dyn_cast<PointerType>(funcType);
382 if (PT == 0) PT = dyn_cast<PointerType>(funcType.getCanonicalType());
Chris Lattner3d01e4e2007-06-06 05:14:05 +0000383
384 if (PT == 0)
385 return Diag(funcExpr->getLocStart(), diag::err_typecheck_call_not_function,
386 SourceRange(funcExpr->getLocStart(), RParenLoc));
Chris Lattner3343f812007-06-06 05:05:41 +0000387
388 const FunctionType *funcT = dyn_cast<FunctionType>(PT->getPointeeType());
Chris Lattner3d01e4e2007-06-06 05:14:05 +0000389 if (funcT == 0)
390 funcT = dyn_cast<FunctionType>(PT->getPointeeType().getCanonicalType());
391
392 if (funcT == 0)
393 return Diag(funcExpr->getLocStart(), diag::err_typecheck_call_not_function,
394 SourceRange(funcExpr->getLocStart(), RParenLoc));
Steve Naroffb8c289d2007-05-08 22:18:00 +0000395
Steve Naroff17f76e02007-05-03 21:03:48 +0000396 // If a prototype isn't declared, the parser implicitly defines a func decl
397 QualType resultType = funcT->getResultType();
398
399 if (const FunctionTypeProto *proto = dyn_cast<FunctionTypeProto>(funcT)) {
400 // C99 6.5.2.2p7 - the arguments are implicitly converted, as if by
401 // assignment, to the types of the corresponding parameter, ...
402
403 unsigned NumArgsInProto = proto->getNumArgs();
Steve Naroffb8c289d2007-05-08 22:18:00 +0000404 unsigned NumArgsToCheck = NumArgsInCall;
Steve Naroff17f76e02007-05-03 21:03:48 +0000405
Steve Naroffb8c289d2007-05-08 22:18:00 +0000406 if (NumArgsInCall < NumArgsInProto)
Steve Naroff56faab22007-05-30 04:20:12 +0000407 Diag(RParenLoc, diag::err_typecheck_call_too_few_args,
Steve Naroffeb9da942007-05-30 00:06:37 +0000408 funcExpr->getSourceRange());
Steve Naroffb8c289d2007-05-08 22:18:00 +0000409 else if (NumArgsInCall > NumArgsInProto) {
Steve Naroff8563f652007-05-28 19:25:56 +0000410 if (!proto->isVariadic()) {
Steve Naroff56faab22007-05-30 04:20:12 +0000411 Diag(((Expr **)Args)[NumArgsInProto+1]->getLocStart(),
412 diag::err_typecheck_call_too_many_args, funcExpr->getSourceRange(),
413 ((Expr **)Args)[NumArgsInProto+1]->getSourceRange());
Steve Naroff8563f652007-05-28 19:25:56 +0000414 }
Steve Naroffb8c289d2007-05-08 22:18:00 +0000415 NumArgsToCheck = NumArgsInProto;
Steve Naroff17f76e02007-05-03 21:03:48 +0000416 }
417 // Continue to check argument types (even if we have too few/many args).
Steve Naroffb8c289d2007-05-08 22:18:00 +0000418 for (unsigned i = 0; i < NumArgsToCheck; i++) {
Steve Naroff8563f652007-05-28 19:25:56 +0000419 Expr *argExpr = ((Expr **)Args)[i];
Steve Naroff8563f652007-05-28 19:25:56 +0000420 assert(argExpr && "ParseCallExpr(): missing argument expression");
421
Steve Naroff17f76e02007-05-03 21:03:48 +0000422 QualType lhsType = proto->getArgType(i);
Steve Naroff8563f652007-05-28 19:25:56 +0000423 QualType rhsType = argExpr->getType();
Steve Naroff17f76e02007-05-03 21:03:48 +0000424
425 if (lhsType == rhsType) // common case, fast path...
426 continue;
Steve Naroff98cf3e92007-06-06 18:38:38 +0000427
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000428 AssignmentCheckResult result = CheckSingleAssignmentConstraints(lhsType,
429 argExpr);
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000430 SourceLocation l = argExpr->getLocStart();
Steve Naroff17f76e02007-05-03 21:03:48 +0000431
432 // decode the result (notice that AST's are still created for extensions).
Steve Naroff17f76e02007-05-03 21:03:48 +0000433 switch (result) {
434 case Compatible:
435 break;
436 case PointerFromInt:
Steve Naroff218bc2b2007-05-04 21:54:46 +0000437 // check for null pointer constant (C99 6.3.2.3p3)
Chris Lattner0e9d6222007-07-15 23:26:56 +0000438 if (!argExpr->isNullPointerConstant(Context)) {
Steve Naroff56faab22007-05-30 04:20:12 +0000439 Diag(l, diag::ext_typecheck_passing_pointer_int,
440 lhsType.getAsString(), rhsType.getAsString(),
Steve Naroffeb9da942007-05-30 00:06:37 +0000441 funcExpr->getSourceRange(), argExpr->getSourceRange());
442 }
Steve Naroff17f76e02007-05-03 21:03:48 +0000443 break;
444 case IntFromPointer:
Steve Naroff56faab22007-05-30 04:20:12 +0000445 Diag(l, diag::ext_typecheck_passing_pointer_int,
446 lhsType.getAsString(), rhsType.getAsString(),
Steve Naroffeb9da942007-05-30 00:06:37 +0000447 funcExpr->getSourceRange(), argExpr->getSourceRange());
Steve Naroff17f76e02007-05-03 21:03:48 +0000448 break;
449 case IncompatiblePointer:
Steve Naroff8563f652007-05-28 19:25:56 +0000450 Diag(l, diag::ext_typecheck_passing_incompatible_pointer,
Steve Naroffeb9da942007-05-30 00:06:37 +0000451 rhsType.getAsString(), lhsType.getAsString(),
452 funcExpr->getSourceRange(), argExpr->getSourceRange());
Steve Naroff17f76e02007-05-03 21:03:48 +0000453 break;
Steve Naroff1f4d7272007-05-11 04:00:31 +0000454 case CompatiblePointerDiscardsQualifiers:
Steve Naroffeb9da942007-05-30 00:06:37 +0000455 Diag(l, diag::ext_typecheck_passing_discards_qualifiers,
456 rhsType.getAsString(), lhsType.getAsString(),
457 funcExpr->getSourceRange(), argExpr->getSourceRange());
Steve Naroff1f4d7272007-05-11 04:00:31 +0000458 break;
Steve Naroff17f76e02007-05-03 21:03:48 +0000459 case Incompatible:
Steve Naroff8563f652007-05-28 19:25:56 +0000460 return Diag(l, diag::err_typecheck_passing_incompatible,
461 rhsType.getAsString(), lhsType.getAsString(),
462 funcExpr->getSourceRange(), argExpr->getSourceRange());
Steve Naroff17f76e02007-05-03 21:03:48 +0000463 }
464 }
Steve Naroffb8c289d2007-05-08 22:18:00 +0000465 // Even if the types checked, bail if we had the wrong number of arguments.
466 if ((NumArgsInCall != NumArgsInProto) && !proto->isVariadic())
467 return true;
Steve Naroffae4143e2007-04-26 20:39:23 +0000468 }
Steve Naroff509fe022007-05-17 01:16:00 +0000469 return new CallExpr((Expr*)Fn, (Expr**)Args, NumArgsInCall, resultType,
470 RParenLoc);
Chris Lattnere168f762006-11-10 05:29:30 +0000471}
472
473Action::ExprResult Sema::
474ParseCastExpr(SourceLocation LParenLoc, TypeTy *Ty,
475 SourceLocation RParenLoc, ExprTy *Op) {
Steve Naroff1a2cf6b2007-07-16 23:25:18 +0000476 assert((Ty != 0) && (Op != 0) && "ParseCastExpr(): missing type or expr");
477
478 Expr *castExpr = static_cast<Expr*>(Op);
479 QualType castType = QualType::getFromOpaquePtr(Ty);
480
Chris Lattnerbd270732007-07-18 16:00:06 +0000481 // C99 6.5.4p2: the cast type needs to be void or scalar and the expression
482 // type needs to be scalar.
483 if (!castType->isScalarType() && !castType->isVoidType()) {
Steve Naroff1a2cf6b2007-07-16 23:25:18 +0000484 return Diag(LParenLoc, diag::err_typecheck_cond_expect_scalar,
485 castType.getAsString(), SourceRange(LParenLoc, RParenLoc));
486 }
487 if (!castExpr->getType()->isScalarType()) {
488 return Diag(castExpr->getLocStart(),
489 diag::err_typecheck_expect_scalar_operand,
490 castExpr->getType().getAsString(), castExpr->getSourceRange());
491 }
492 return new CastExpr(castType, castExpr, LParenLoc);
Chris Lattnere168f762006-11-10 05:29:30 +0000493}
494
Steve Narofff8a28c52007-05-15 20:29:32 +0000495inline QualType Sema::CheckConditionalOperands( // C99 6.5.15
Steve Naroff7a5af782007-07-13 16:58:59 +0000496 Expr *&cond, Expr *&lex, Expr *&rex, SourceLocation questionLoc) {
Steve Naroff31090012007-07-16 21:54:35 +0000497 UsualUnaryConversions(cond);
498 UsualUnaryConversions(lex);
499 UsualUnaryConversions(rex);
500 QualType condT = cond->getType();
501 QualType lexT = lex->getType();
502 QualType rexT = rex->getType();
503
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000504 // first, check the condition.
Steve Naroff7a5af782007-07-13 16:58:59 +0000505 if (!condT->isScalarType()) { // C99 6.5.15p2
506 Diag(cond->getLocStart(), diag::err_typecheck_cond_expect_scalar,
507 condT.getAsString());
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000508 return QualType();
509 }
510 // now check the two expressions.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000511 if (lexT->isArithmeticType() && rexT->isArithmeticType()) { // C99 6.5.15p3,5
512 UsualArithmeticConversions(lex, rex);
513 return lex->getType();
514 }
Steve Naroff7a5af782007-07-13 16:58:59 +0000515 if ((lexT->isStructureType() && rexT->isStructureType()) || // C99 6.5.15p3
516 (lexT->isUnionType() && rexT->isUnionType())) {
517 TagType *lTag = cast<TagType>(lexT.getCanonicalType());
518 TagType *rTag = cast<TagType>(rexT.getCanonicalType());
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000519
520 if (lTag->getDecl()->getIdentifier() == rTag->getDecl()->getIdentifier())
Steve Naroff7a5af782007-07-13 16:58:59 +0000521 return lexT;
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000522 else {
523 Diag(questionLoc, diag::err_typecheck_cond_incompatible_operands,
Steve Naroff7a5af782007-07-13 16:58:59 +0000524 lexT.getAsString(), rexT.getAsString(),
525 lex->getSourceRange(), rex->getSourceRange());
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000526 return QualType();
527 }
528 }
Chris Lattner0e9d6222007-07-15 23:26:56 +0000529 // C99 6.5.15p3
530 if (lexT->isPointerType() && rex->isNullPointerConstant(Context))
Steve Naroff7a5af782007-07-13 16:58:59 +0000531 return lexT;
Chris Lattner0e9d6222007-07-15 23:26:56 +0000532 if (rexT->isPointerType() && lex->isNullPointerConstant(Context))
Steve Naroff7a5af782007-07-13 16:58:59 +0000533 return rexT;
Steve Naroff30d1fbc2007-05-20 19:46:53 +0000534
Steve Naroff7a5af782007-07-13 16:58:59 +0000535 if (lexT->isPointerType() && rexT->isPointerType()) { // C99 6.5.15p3,6
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000536 QualType lhptee, rhptee;
537
538 // get the "pointed to" type
Steve Naroff7a5af782007-07-13 16:58:59 +0000539 lhptee = cast<PointerType>(lexT.getCanonicalType())->getPointeeType();
540 rhptee = cast<PointerType>(rexT.getCanonicalType())->getPointeeType();
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000541
542 // ignore qualifiers on void (C99 6.5.15p3, clause 6)
543 if (lhptee.getUnqualifiedType()->isVoidType() &&
544 (rhptee->isObjectType() || rhptee->isIncompleteType()))
Steve Naroff7a5af782007-07-13 16:58:59 +0000545 return lexT;
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000546 if (rhptee.getUnqualifiedType()->isVoidType() &&
547 (lhptee->isObjectType() || lhptee->isIncompleteType()))
Steve Naroff7a5af782007-07-13 16:58:59 +0000548 return rexT;
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000549
550 // FIXME: C99 6.5.15p6: If both operands are pointers to compatible types
551 // *or* to differently qualified versions of compatible types, the result
552 // type is a pointer to an appropriately qualified version of the
553 // *composite* type.
554 if (!Type::typesAreCompatible(lhptee.getUnqualifiedType(),
555 rhptee.getUnqualifiedType())) {
556 Diag(questionLoc, diag::ext_typecheck_cond_incompatible_pointers,
Steve Naroff7a5af782007-07-13 16:58:59 +0000557 lexT.getAsString(), rexT.getAsString(),
558 lex->getSourceRange(), rex->getSourceRange());
559 return lexT; // FIXME: this is an _ext - is this return o.k?
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000560 }
561 }
Steve Naroff7a5af782007-07-13 16:58:59 +0000562 if (lexT->isVoidType() && rexT->isVoidType()) // C99 6.5.15p3
563 return lexT;
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000564
565 Diag(questionLoc, diag::err_typecheck_cond_incompatible_operands,
Steve Naroff7a5af782007-07-13 16:58:59 +0000566 lexT.getAsString(), rexT.getAsString(),
567 lex->getSourceRange(), rex->getSourceRange());
Steve Naroffa78fe7e2007-05-16 19:47:19 +0000568 return QualType();
Steve Narofff8a28c52007-05-15 20:29:32 +0000569}
570
Chris Lattnere168f762006-11-10 05:29:30 +0000571/// ParseConditionalOp - Parse a ?: operation. Note that 'LHS' may be null
572/// in the case of a the GNU conditional expr extension.
573Action::ExprResult Sema::ParseConditionalOp(SourceLocation QuestionLoc,
574 SourceLocation ColonLoc,
575 ExprTy *Cond, ExprTy *LHS,
576 ExprTy *RHS) {
Chris Lattnerdaaa9f22007-07-16 21:39:03 +0000577 Expr *CondExpr = (Expr *) Cond;
578 Expr *LHSExpr = (Expr *) LHS, *RHSExpr = (Expr *) RHS;
579 QualType result = CheckConditionalOperands(CondExpr, LHSExpr,
580 RHSExpr, QuestionLoc);
Steve Narofff8a28c52007-05-15 20:29:32 +0000581 if (result.isNull())
582 return true;
Chris Lattnerdaaa9f22007-07-16 21:39:03 +0000583 return new ConditionalOperator(CondExpr, LHSExpr, RHSExpr, result);
Chris Lattnere168f762006-11-10 05:29:30 +0000584}
585
Steve Naroff81569d22007-07-15 02:02:06 +0000586// promoteExprToType - a helper function to ensure we create exactly one
587// ImplicitCastExpr. As a convenience (to the caller), we return the type.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000588static void promoteExprToType(Expr *&expr, QualType type) {
Steve Naroff81569d22007-07-15 02:02:06 +0000589 if (ImplicitCastExpr *impCast = dyn_cast<ImplicitCastExpr>(expr))
590 impCast->setType(type);
591 else
592 expr = new ImplicitCastExpr(type, expr);
Steve Naroffdbd9e892007-07-17 00:58:39 +0000593 return;
Steve Naroff81569d22007-07-15 02:02:06 +0000594}
595
596/// DefaultFunctionArrayConversion (C99 6.3.2.1p3, C99 6.3.2.1p4).
Steve Naroff31090012007-07-16 21:54:35 +0000597void Sema::DefaultFunctionArrayConversion(Expr *&e) {
Steve Naroff81569d22007-07-15 02:02:06 +0000598 QualType t = e->getType();
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000599 assert(!t.isNull() && "DefaultFunctionArrayConversion - missing type");
Bill Wendlingdfc81072007-07-17 03:52:31 +0000600
Bill Wendling89ba70e2007-07-17 05:09:22 +0000601 if (const ReferenceType *ref = t->isReferenceType()) {
Bill Wendling354fb262007-07-17 04:16:47 +0000602 promoteExprToType(e, ref->getReferenceeType()); // C++ [expr]
603 t = e->getType();
604 }
Steve Naroff81569d22007-07-15 02:02:06 +0000605 if (t->isFunctionType())
Steve Naroff31090012007-07-16 21:54:35 +0000606 promoteExprToType(e, Context.getPointerType(t));
607 else if (const ArrayType *ary = dyn_cast<ArrayType>(t.getCanonicalType()))
608 promoteExprToType(e, Context.getPointerType(ary->getElementType()));
Steve Naroff1926c832007-04-24 00:23:05 +0000609}
610
Steve Naroff71b59a92007-06-04 22:22:31 +0000611/// UsualUnaryConversion - Performs various conversions that are common to most
612/// operators (C99 6.3). The conversions of array and function types are
613/// sometimes surpressed. For example, the array->pointer conversion doesn't
614/// apply if the array is an argument to the sizeof or address (&) operators.
615/// In these instances, this routine should *not* be called.
Steve Naroff31090012007-07-16 21:54:35 +0000616void Sema::UsualUnaryConversions(Expr *&expr) {
Steve Naroff7a5af782007-07-13 16:58:59 +0000617 QualType t = expr->getType();
Steve Naroff71b59a92007-06-04 22:22:31 +0000618 assert(!t.isNull() && "UsualUnaryConversions - missing type");
619
Bill Wendling89ba70e2007-07-17 05:09:22 +0000620 if (const ReferenceType *ref = t->isReferenceType()) {
Bill Wendling354fb262007-07-17 04:16:47 +0000621 promoteExprToType(expr, ref->getReferenceeType()); // C++ [expr]
622 t = expr->getType();
623 }
Steve Naroff81569d22007-07-15 02:02:06 +0000624 if (t->isPromotableIntegerType()) // C99 6.3.1.1p2
Steve Naroff31090012007-07-16 21:54:35 +0000625 promoteExprToType(expr, Context.IntTy);
626 else
627 DefaultFunctionArrayConversion(expr);
Steve Naroff71b59a92007-06-04 22:22:31 +0000628}
629
Steve Naroff1926c832007-04-24 00:23:05 +0000630/// UsualArithmeticConversions - Performs various conversions that are common to
631/// binary operators (C99 6.3.1.8). If both operands aren't arithmetic, this
632/// routine returns the first non-arithmetic type found. The client is
633/// responsible for emitting appropriate error diagnostics.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000634void Sema::UsualArithmeticConversions(Expr *&lhsExpr, Expr *&rhsExpr) {
Steve Naroff31090012007-07-16 21:54:35 +0000635 UsualUnaryConversions(lhsExpr);
636 UsualUnaryConversions(rhsExpr);
637
Steve Naroff94a5aca2007-07-16 22:23:01 +0000638 QualType lhs = lhsExpr->getType();
639 QualType rhs = rhsExpr->getType();
Steve Naroff1926c832007-04-24 00:23:05 +0000640
Chris Lattner0c46c5d2007-06-02 23:53:17 +0000641 // If both types are identical, no conversion is needed.
642 if (lhs == rhs)
Steve Naroffdbd9e892007-07-17 00:58:39 +0000643 return;
Chris Lattner0c46c5d2007-06-02 23:53:17 +0000644
645 // If either side is a non-arithmetic type (e.g. a pointer), we are done.
646 // The caller can deal with this (e.g. pointer + int).
Steve Naroffdbd9e892007-07-17 00:58:39 +0000647 if (!lhs->isArithmeticType() || !rhs->isArithmeticType())
648 return;
Steve Naroff1926c832007-04-24 00:23:05 +0000649
Chris Lattner0c46c5d2007-06-02 23:53:17 +0000650 // At this point, we have two different arithmetic types.
Steve Naroffb01bbe32007-04-25 01:22:31 +0000651
652 // Handle complex types first (C99 6.3.1.8p1).
653 if (lhs->isComplexType() || rhs->isComplexType()) {
654 // if we have an integer operand, the result is the complex type.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000655 if (rhs->isIntegerType()) { // convert the rhs to the lhs complex type.
656 promoteExprToType(rhsExpr, lhs);
657 return;
658 }
659 if (lhs->isIntegerType()) { // convert the lhs to the rhs complex type.
660 promoteExprToType(lhsExpr, rhs);
661 return;
662 }
Steve Naroff81569d22007-07-15 02:02:06 +0000663 // Two complex types. Convert the smaller operand to the bigger result.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000664 if (Context.maxComplexType(lhs, rhs) == lhs) { // convert the rhs
665 promoteExprToType(rhsExpr, lhs);
666 return;
667 }
668 promoteExprToType(lhsExpr, rhs); // convert the lhs
669 return;
Steve Naroffbf223ba2007-04-24 20:56:26 +0000670 }
Steve Naroffb01bbe32007-04-25 01:22:31 +0000671 // Now handle "real" floating types (i.e. float, double, long double).
672 if (lhs->isRealFloatingType() || rhs->isRealFloatingType()) {
673 // if we have an integer operand, the result is the real floating type.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000674 if (rhs->isIntegerType()) { // convert rhs to the lhs floating point type.
675 promoteExprToType(rhsExpr, lhs);
676 return;
677 }
678 if (lhs->isIntegerType()) { // convert lhs to the rhs floating point type.
679 promoteExprToType(lhsExpr, rhs);
680 return;
681 }
Steve Naroff81569d22007-07-15 02:02:06 +0000682 // We have two real floating types, float/complex combos were handled above.
683 // Convert the smaller operand to the bigger result.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000684 if (Context.maxFloatingType(lhs, rhs) == lhs) { // convert the rhs
685 promoteExprToType(rhsExpr, lhs);
686 return;
687 }
688 promoteExprToType(lhsExpr, rhs); // convert the lhs
689 return;
Steve Naroffb01bbe32007-04-25 01:22:31 +0000690 }
Steve Naroff81569d22007-07-15 02:02:06 +0000691 // Finally, we have two differing integer types.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000692 if (Context.maxIntegerType(lhs, rhs) == lhs) { // convert the rhs
693 promoteExprToType(rhsExpr, lhs);
694 return;
695 }
696 promoteExprToType(lhsExpr, rhs); // convert the lhs
697 return;
Steve Narofff1e53692007-03-23 22:27:02 +0000698}
699
Steve Naroff3f597292007-05-11 22:18:03 +0000700// CheckPointerTypesForAssignment - This is a very tricky routine (despite
701// being closely modeled after the C99 spec:-). The odd characteristic of this
702// routine is it effectively iqnores the qualifiers on the top level pointee.
703// This circumvents the usual type rules specified in 6.2.7p1 & 6.7.5.[1-3].
704// FIXME: add a couple examples in this comment.
Steve Naroff98cf3e92007-06-06 18:38:38 +0000705Sema::AssignmentCheckResult
706Sema::CheckPointerTypesForAssignment(QualType lhsType, QualType rhsType) {
Steve Naroff3f597292007-05-11 22:18:03 +0000707 QualType lhptee, rhptee;
Steve Naroff1f4d7272007-05-11 04:00:31 +0000708
709 // get the "pointed to" type (ignoring qualifiers at the top level)
Steve Naroff3f597292007-05-11 22:18:03 +0000710 lhptee = cast<PointerType>(lhsType.getCanonicalType())->getPointeeType();
711 rhptee = cast<PointerType>(rhsType.getCanonicalType())->getPointeeType();
Steve Naroff1f4d7272007-05-11 04:00:31 +0000712
713 // make sure we operate on the canonical type
Steve Naroff3f597292007-05-11 22:18:03 +0000714 lhptee = lhptee.getCanonicalType();
715 rhptee = rhptee.getCanonicalType();
Steve Naroff1f4d7272007-05-11 04:00:31 +0000716
Steve Naroff98cf3e92007-06-06 18:38:38 +0000717 AssignmentCheckResult r = Compatible;
718
Steve Naroff3f597292007-05-11 22:18:03 +0000719 // C99 6.5.16.1p1: This following citation is common to constraints
720 // 3 & 4 (below). ...and the type *pointed to* by the left has all the
721 // qualifiers of the type *pointed to* by the right;
722 if ((lhptee.getQualifiers() & rhptee.getQualifiers()) !=
723 rhptee.getQualifiers())
724 r = CompatiblePointerDiscardsQualifiers;
725
726 // C99 6.5.16.1p1 (constraint 4): If one operand is a pointer to an object or
727 // incomplete type and the other is a pointer to a qualified or unqualified
728 // version of void...
729 if (lhptee.getUnqualifiedType()->isVoidType() &&
730 (rhptee->isObjectType() || rhptee->isIncompleteType()))
731 ;
732 else if (rhptee.getUnqualifiedType()->isVoidType() &&
733 (lhptee->isObjectType() || lhptee->isIncompleteType()))
734 ;
735 // C99 6.5.16.1p1 (constraint 3): both operands are pointers to qualified or
736 // unqualified versions of compatible types, ...
737 else if (!Type::typesAreCompatible(lhptee.getUnqualifiedType(),
738 rhptee.getUnqualifiedType()))
739 r = IncompatiblePointer; // this "trumps" PointerAssignDiscardsQualifiers
Steve Naroff98cf3e92007-06-06 18:38:38 +0000740 return r;
Steve Naroff1f4d7272007-05-11 04:00:31 +0000741}
742
Steve Naroff98cf3e92007-06-06 18:38:38 +0000743/// CheckAssignmentConstraints (C99 6.5.16) - This routine currently
Steve Naroff17f76e02007-05-03 21:03:48 +0000744/// has code to accommodate several GCC extensions when type checking
745/// pointers. Here are some objectionable examples that GCC considers warnings:
746///
747/// int a, *pint;
748/// short *pshort;
749/// struct foo *pfoo;
750///
751/// pint = pshort; // warning: assignment from incompatible pointer type
752/// a = pint; // warning: assignment makes integer from pointer without a cast
753/// pint = a; // warning: assignment makes pointer from integer without a cast
754/// pint = pfoo; // warning: assignment from incompatible pointer type
755///
756/// As a result, the code for dealing with pointers is more complex than the
757/// C99 spec dictates.
758/// Note: the warning above turn into errors when -pedantic-errors is enabled.
759///
Steve Naroff98cf3e92007-06-06 18:38:38 +0000760Sema::AssignmentCheckResult
761Sema::CheckAssignmentConstraints(QualType lhsType, QualType rhsType) {
Steve Naroff84ff4b42007-07-09 21:31:10 +0000762 if (lhsType->isArithmeticType() && rhsType->isArithmeticType()) {
Steve Naroffe728ba32007-07-10 22:20:04 +0000763 if (lhsType->isVectorType() || rhsType->isVectorType()) {
764 if (lhsType.getCanonicalType() != rhsType.getCanonicalType())
765 return Incompatible;
766 }
Steve Naroff98cf3e92007-06-06 18:38:38 +0000767 return Compatible;
Steve Naroff84ff4b42007-07-09 21:31:10 +0000768 } else if (lhsType->isPointerType()) {
Steve Naroff98cf3e92007-06-06 18:38:38 +0000769 if (rhsType->isIntegerType())
770 return PointerFromInt;
771
Steve Naroff3f597292007-05-11 22:18:03 +0000772 if (rhsType->isPointerType())
Steve Naroff98cf3e92007-06-06 18:38:38 +0000773 return CheckPointerTypesForAssignment(lhsType, rhsType);
Steve Naroff9eb24652007-05-02 21:58:15 +0000774 } else if (rhsType->isPointerType()) {
Steve Naroff98cf3e92007-06-06 18:38:38 +0000775 // C99 6.5.16.1p1: the left operand is _Bool and the right is a pointer.
776 if ((lhsType->isIntegerType()) && (lhsType != Context.BoolTy))
777 return IntFromPointer;
778
Steve Naroff3f597292007-05-11 22:18:03 +0000779 if (lhsType->isPointerType())
Steve Naroff98cf3e92007-06-06 18:38:38 +0000780 return CheckPointerTypesForAssignment(lhsType, rhsType);
Steve Naroff1f4d7272007-05-11 04:00:31 +0000781 } else if (isa<TagType>(lhsType) && isa<TagType>(rhsType)) {
782 if (Type::tagTypesAreCompatible(lhsType, rhsType))
Steve Naroff98cf3e92007-06-06 18:38:38 +0000783 return Compatible;
Bill Wendlingdb4f06e2007-06-02 23:29:59 +0000784 } else if (lhsType->isReferenceType() || rhsType->isReferenceType()) {
785 if (Type::referenceTypesAreCompatible(lhsType, rhsType))
Steve Naroff98cf3e92007-06-06 18:38:38 +0000786 return Compatible;
Bill Wendling216423b2007-05-30 06:30:29 +0000787 }
Steve Naroff98cf3e92007-06-06 18:38:38 +0000788 return Incompatible;
Steve Naroff9eb24652007-05-02 21:58:15 +0000789}
790
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000791Sema::AssignmentCheckResult
792Sema::CheckSingleAssignmentConstraints(QualType lhsType, Expr *&rExpr) {
793 // This check seems unnatural, however it is necessary to insure the proper
794 // conversion of functions/arrays. If the conversion were done for all
795 // DeclExpr's (created by ParseIdentifierExpr), it would mess up the unary
796 // expressions that surpress this implicit conversion (&, sizeof).
Steve Naroff31090012007-07-16 21:54:35 +0000797 DefaultFunctionArrayConversion(rExpr);
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000798
Steve Naroff31090012007-07-16 21:54:35 +0000799 return CheckAssignmentConstraints(lhsType, rExpr->getType());
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000800}
801
802Sema::AssignmentCheckResult
803Sema::CheckCompoundAssignmentConstraints(QualType lhsType, QualType rhsType) {
804 return CheckAssignmentConstraints(lhsType, rhsType);
805}
806
Steve Naroff7a5af782007-07-13 16:58:59 +0000807inline void Sema::InvalidOperands(SourceLocation loc, Expr *&lex, Expr *&rex) {
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000808 Diag(loc, diag::err_typecheck_invalid_operands,
809 lex->getType().getAsString(), rex->getType().getAsString(),
810 lex->getSourceRange(), rex->getSourceRange());
811}
812
Steve Naroff7a5af782007-07-13 16:58:59 +0000813inline QualType Sema::CheckVectorOperands(SourceLocation loc, Expr *&lex,
814 Expr *&rex) {
Steve Naroff84ff4b42007-07-09 21:31:10 +0000815 QualType lhsType = lex->getType(), rhsType = rex->getType();
816
817 // make sure the vector types are identical.
818 if (lhsType == rhsType)
819 return lhsType;
820 // You cannot convert between vector values of different size.
821 Diag(loc, diag::err_typecheck_vector_not_convertable,
822 lex->getType().getAsString(), rex->getType().getAsString(),
823 lex->getSourceRange(), rex->getSourceRange());
824 return QualType();
825}
826
Steve Naroff218bc2b2007-05-04 21:54:46 +0000827inline QualType Sema::CheckMultiplyDivideOperands(
Steve Naroff7a5af782007-07-13 16:58:59 +0000828 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff5c10d4b2007-04-20 23:42:24 +0000829{
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000830 QualType lhsType = lex->getType(), rhsType = rex->getType();
831
832 if (lhsType->isVectorType() || rhsType->isVectorType())
Steve Naroff84ff4b42007-07-09 21:31:10 +0000833 return CheckVectorOperands(loc, lex, rex);
Steve Naroff7a5af782007-07-13 16:58:59 +0000834
Steve Naroffdbd9e892007-07-17 00:58:39 +0000835 UsualArithmeticConversions(lex, rex);
Steve Naroff5c10d4b2007-04-20 23:42:24 +0000836
Steve Naroffdbd9e892007-07-17 00:58:39 +0000837 // handle the common case first (both operands are arithmetic).
838 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
839 return lex->getType();
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000840 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000841 return QualType();
Steve Naroff26c8ea52007-03-21 21:08:52 +0000842}
843
Steve Naroff218bc2b2007-05-04 21:54:46 +0000844inline QualType Sema::CheckRemainderOperands(
Steve Naroff7a5af782007-07-13 16:58:59 +0000845 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff218bc2b2007-05-04 21:54:46 +0000846{
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000847 QualType lhsType = lex->getType(), rhsType = rex->getType();
848
Steve Naroffdbd9e892007-07-17 00:58:39 +0000849 UsualArithmeticConversions(lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000850
Steve Naroffdbd9e892007-07-17 00:58:39 +0000851 // handle the common case first (both operands are arithmetic).
852 if (lex->getType()->isIntegerType() && rex->getType()->isIntegerType())
853 return lex->getType();
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000854 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000855 return QualType();
856}
857
858inline QualType Sema::CheckAdditionOperands( // C99 6.5.6
Steve Naroff7a5af782007-07-13 16:58:59 +0000859 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff1926c832007-04-24 00:23:05 +0000860{
Steve Naroff94a5aca2007-07-16 22:23:01 +0000861 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
Steve Naroff7a5af782007-07-13 16:58:59 +0000862 return CheckVectorOperands(loc, lex, rex);
863
Steve Naroffdbd9e892007-07-17 00:58:39 +0000864 UsualArithmeticConversions(lex, rex);
Steve Naroff94a5aca2007-07-16 22:23:01 +0000865
Steve Naroffe4718892007-04-27 18:30:00 +0000866 // handle the common case first (both operands are arithmetic).
Steve Naroffdbd9e892007-07-17 00:58:39 +0000867 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
868 return lex->getType();
Steve Naroff218bc2b2007-05-04 21:54:46 +0000869
Steve Naroffdbd9e892007-07-17 00:58:39 +0000870 if (lex->getType()->isPointerType() && rex->getType()->isIntegerType())
871 return lex->getType();
872 if (lex->getType()->isIntegerType() && rex->getType()->isPointerType())
873 return rex->getType();
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000874 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000875 return QualType();
Steve Naroff26c8ea52007-03-21 21:08:52 +0000876}
877
Steve Naroff218bc2b2007-05-04 21:54:46 +0000878inline QualType Sema::CheckSubtractionOperands( // C99 6.5.6
Steve Naroff7a5af782007-07-13 16:58:59 +0000879 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff218bc2b2007-05-04 21:54:46 +0000880{
Steve Naroff94a5aca2007-07-16 22:23:01 +0000881 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
Steve Naroff84ff4b42007-07-09 21:31:10 +0000882 return CheckVectorOperands(loc, lex, rex);
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000883
Steve Naroffdbd9e892007-07-17 00:58:39 +0000884 UsualArithmeticConversions(lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000885
886 // handle the common case first (both operands are arithmetic).
Steve Naroffdbd9e892007-07-17 00:58:39 +0000887 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
888 return lex->getType();
Steve Naroff94a5aca2007-07-16 22:23:01 +0000889
890 if (lex->getType()->isPointerType() && rex->getType()->isIntegerType())
Steve Naroffdbd9e892007-07-17 00:58:39 +0000891 return lex->getType();
Steve Naroff94a5aca2007-07-16 22:23:01 +0000892 if (lex->getType()->isPointerType() && rex->getType()->isPointerType())
Chris Lattnerd2b88ab2007-07-13 03:05:23 +0000893 return Context.getPointerDiffType();
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000894 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000895 return QualType();
896}
897
898inline QualType Sema::CheckShiftOperands( // C99 6.5.7
Steve Naroff7a5af782007-07-13 16:58:59 +0000899 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff1926c832007-04-24 00:23:05 +0000900{
Chris Lattner1d411a82007-06-05 20:52:21 +0000901 // FIXME: Shifts don't perform usual arithmetic conversions. This is wrong
902 // for int << longlong -> the result type should be int, not long long.
Steve Naroffdbd9e892007-07-17 00:58:39 +0000903 UsualArithmeticConversions(lex, rex);
Steve Naroff1926c832007-04-24 00:23:05 +0000904
Steve Naroffdbd9e892007-07-17 00:58:39 +0000905 // handle the common case first (both operands are arithmetic).
906 if (lex->getType()->isIntegerType() && rex->getType()->isIntegerType())
907 return lex->getType();
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000908 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000909 return QualType();
Steve Naroff26c8ea52007-03-21 21:08:52 +0000910}
911
Steve Naroff218bc2b2007-05-04 21:54:46 +0000912inline QualType Sema::CheckRelationalOperands( // C99 6.5.8
Steve Naroff7a5af782007-07-13 16:58:59 +0000913 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff1926c832007-04-24 00:23:05 +0000914{
Steve Naroff31090012007-07-16 21:54:35 +0000915 UsualUnaryConversions(lex);
916 UsualUnaryConversions(rex);
917 QualType lType = lex->getType();
918 QualType rType = rex->getType();
Steve Naroff1926c832007-04-24 00:23:05 +0000919
920 if (lType->isRealType() && rType->isRealType())
Steve Naroff218bc2b2007-05-04 21:54:46 +0000921 return Context.IntTy;
Steve Naroffe4718892007-04-27 18:30:00 +0000922
Steve Naroff75c17232007-06-13 21:41:08 +0000923 if (lType->isPointerType()) {
924 if (rType->isPointerType())
925 return Context.IntTy;
926 if (rType->isIntegerType()) {
Chris Lattner0e9d6222007-07-15 23:26:56 +0000927 if (!rex->isNullPointerConstant(Context))
Steve Naroff75c17232007-06-13 21:41:08 +0000928 Diag(loc, diag::ext_typecheck_comparison_of_pointer_integer,
929 lex->getSourceRange(), rex->getSourceRange());
930 return Context.IntTy; // the previous diagnostic is a GCC extension.
931 }
932 } else if (rType->isPointerType()) {
933 if (lType->isIntegerType()) {
Chris Lattner0e9d6222007-07-15 23:26:56 +0000934 if (!lex->isNullPointerConstant(Context))
Steve Naroff75c17232007-06-13 21:41:08 +0000935 Diag(loc, diag::ext_typecheck_comparison_of_pointer_integer,
936 lex->getSourceRange(), rex->getSourceRange());
937 return Context.IntTy; // the previous diagnostic is a GCC extension.
938 }
Steve Naroff043d45d2007-05-15 02:32:35 +0000939 }
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000940 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000941 return QualType();
Steve Naroff26c8ea52007-03-21 21:08:52 +0000942}
943
Steve Naroff218bc2b2007-05-04 21:54:46 +0000944inline QualType Sema::CheckEqualityOperands( // C99 6.5.9
Steve Naroff7a5af782007-07-13 16:58:59 +0000945 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff1926c832007-04-24 00:23:05 +0000946{
Steve Naroff31090012007-07-16 21:54:35 +0000947 UsualUnaryConversions(lex);
948 UsualUnaryConversions(rex);
949 QualType lType = lex->getType();
950 QualType rType = rex->getType();
Steve Naroff1926c832007-04-24 00:23:05 +0000951
952 if (lType->isArithmeticType() && rType->isArithmeticType())
Steve Naroff218bc2b2007-05-04 21:54:46 +0000953 return Context.IntTy;
Steve Naroff218bc2b2007-05-04 21:54:46 +0000954
Steve Naroff75c17232007-06-13 21:41:08 +0000955 if (lType->isPointerType()) {
956 if (rType->isPointerType())
957 return Context.IntTy;
958 if (rType->isIntegerType()) {
Chris Lattner0e9d6222007-07-15 23:26:56 +0000959 if (!rex->isNullPointerConstant(Context))
Steve Naroff75c17232007-06-13 21:41:08 +0000960 Diag(loc, diag::ext_typecheck_comparison_of_pointer_integer,
961 lex->getSourceRange(), rex->getSourceRange());
962 return Context.IntTy; // the previous diagnostic is a GCC extension.
963 }
964 } else if (rType->isPointerType()) {
965 if (lType->isIntegerType()) {
Chris Lattner0e9d6222007-07-15 23:26:56 +0000966 if (!lex->isNullPointerConstant(Context))
Steve Naroff75c17232007-06-13 21:41:08 +0000967 Diag(loc, diag::ext_typecheck_comparison_of_pointer_integer,
968 lex->getSourceRange(), rex->getSourceRange());
969 return Context.IntTy; // the previous diagnostic is a GCC extension.
970 }
Steve Naroff043d45d2007-05-15 02:32:35 +0000971 }
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000972 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000973 return QualType();
Steve Naroff26c8ea52007-03-21 21:08:52 +0000974}
975
Steve Naroff218bc2b2007-05-04 21:54:46 +0000976inline QualType Sema::CheckBitwiseOperands(
Steve Naroff7a5af782007-07-13 16:58:59 +0000977 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff1926c832007-04-24 00:23:05 +0000978{
Steve Naroff94a5aca2007-07-16 22:23:01 +0000979 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
Steve Naroff84ff4b42007-07-09 21:31:10 +0000980 return CheckVectorOperands(loc, lex, rex);
Steve Naroffb8ea4fb2007-07-13 23:32:42 +0000981
Steve Naroffdbd9e892007-07-17 00:58:39 +0000982 UsualArithmeticConversions(lex, rex);
Steve Naroff1926c832007-04-24 00:23:05 +0000983
Steve Naroffdbd9e892007-07-17 00:58:39 +0000984 if (lex->getType()->isIntegerType() && rex->getType()->isIntegerType())
985 return lex->getType();
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000986 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000987 return QualType();
Steve Naroff26c8ea52007-03-21 21:08:52 +0000988}
989
Steve Naroff218bc2b2007-05-04 21:54:46 +0000990inline QualType Sema::CheckLogicalOperands( // C99 6.5.[13,14]
Steve Naroff7a5af782007-07-13 16:58:59 +0000991 Expr *&lex, Expr *&rex, SourceLocation loc)
Steve Naroff1926c832007-04-24 00:23:05 +0000992{
Steve Naroff31090012007-07-16 21:54:35 +0000993 UsualUnaryConversions(lex);
994 UsualUnaryConversions(rex);
Steve Naroffe4718892007-04-27 18:30:00 +0000995
Steve Naroffdbd9e892007-07-17 00:58:39 +0000996 if (lex->getType()->isScalarType() || rex->getType()->isScalarType())
Steve Naroff218bc2b2007-05-04 21:54:46 +0000997 return Context.IntTy;
Steve Naroff6f49f5d2007-05-29 14:23:36 +0000998 InvalidOperands(loc, lex, rex);
Steve Naroff218bc2b2007-05-04 21:54:46 +0000999 return QualType();
Steve Naroffae4143e2007-04-26 20:39:23 +00001000}
1001
Steve Naroff35d85152007-05-07 00:24:15 +00001002inline QualType Sema::CheckAssignmentOperands( // C99 6.5.16.1
1003 Expr *lex, Expr *rex, SourceLocation loc, QualType compoundType)
Steve Naroffae4143e2007-04-26 20:39:23 +00001004{
Steve Naroff0af91202007-04-27 21:51:21 +00001005 QualType lhsType = lex->getType();
Steve Naroff35d85152007-05-07 00:24:15 +00001006 QualType rhsType = compoundType.isNull() ? rex->getType() : compoundType;
Steve Naroff1f4d7272007-05-11 04:00:31 +00001007 bool hadError = false;
Steve Naroff9358c712007-05-27 23:58:33 +00001008 Expr::isModifiableLvalueResult mlval = lex->isModifiableLvalue();
1009
1010 switch (mlval) { // C99 6.5.16p2
1011 case Expr::MLV_Valid:
1012 break;
1013 case Expr::MLV_ConstQualified:
1014 Diag(loc, diag::err_typecheck_assign_const, lex->getSourceRange());
1015 hadError = true;
1016 break;
1017 case Expr::MLV_ArrayType:
1018 Diag(loc, diag::err_typecheck_array_not_modifiable_lvalue,
1019 lhsType.getAsString(), lex->getSourceRange());
1020 return QualType();
1021 case Expr::MLV_NotObjectType:
1022 Diag(loc, diag::err_typecheck_non_object_not_modifiable_lvalue,
1023 lhsType.getAsString(), lex->getSourceRange());
1024 return QualType();
1025 case Expr::MLV_InvalidExpression:
1026 Diag(loc, diag::err_typecheck_expression_not_modifiable_lvalue,
1027 lex->getSourceRange());
1028 return QualType();
1029 case Expr::MLV_IncompleteType:
1030 case Expr::MLV_IncompleteVoidType:
1031 Diag(loc, diag::err_typecheck_incomplete_type_not_modifiable_lvalue,
1032 lhsType.getAsString(), lex->getSourceRange());
1033 return QualType();
Steve Naroff218bc2b2007-05-04 21:54:46 +00001034 }
1035 if (lhsType == rhsType) // common case, fast path...
1036 return lhsType;
1037
Steve Naroffb8ea4fb2007-07-13 23:32:42 +00001038 AssignmentCheckResult result;
1039
1040 if (compoundType.isNull())
1041 result = CheckSingleAssignmentConstraints(lhsType, rex);
1042 else
1043 result = CheckCompoundAssignmentConstraints(lhsType, rhsType);
1044
Steve Naroff218bc2b2007-05-04 21:54:46 +00001045 // decode the result (notice that extensions still return a type).
1046 switch (result) {
1047 case Compatible:
Steve Naroff1f4d7272007-05-11 04:00:31 +00001048 break;
Steve Naroff218bc2b2007-05-04 21:54:46 +00001049 case Incompatible:
Steve Naroffe845e272007-05-18 01:06:45 +00001050 Diag(loc, diag::err_typecheck_assign_incompatible,
Chris Lattner84e160a2007-05-19 07:03:17 +00001051 lhsType.getAsString(), rhsType.getAsString(),
1052 lex->getSourceRange(), rex->getSourceRange());
Steve Naroff1f4d7272007-05-11 04:00:31 +00001053 hadError = true;
1054 break;
Steve Naroff218bc2b2007-05-04 21:54:46 +00001055 case PointerFromInt:
1056 // check for null pointer constant (C99 6.3.2.3p3)
Chris Lattner0e9d6222007-07-15 23:26:56 +00001057 if (compoundType.isNull() && !rex->isNullPointerConstant(Context)) {
Steve Naroff56faab22007-05-30 04:20:12 +00001058 Diag(loc, diag::ext_typecheck_assign_pointer_int,
1059 lhsType.getAsString(), rhsType.getAsString(),
Steve Naroff9358c712007-05-27 23:58:33 +00001060 lex->getSourceRange(), rex->getSourceRange());
Steve Naroff9992bba2007-05-30 16:27:15 +00001061 }
Steve Naroff1f4d7272007-05-11 04:00:31 +00001062 break;
Steve Naroff56faab22007-05-30 04:20:12 +00001063 case IntFromPointer:
1064 Diag(loc, diag::ext_typecheck_assign_pointer_int,
1065 lhsType.getAsString(), rhsType.getAsString(),
Steve Naroff9358c712007-05-27 23:58:33 +00001066 lex->getSourceRange(), rex->getSourceRange());
Steve Naroff1f4d7272007-05-11 04:00:31 +00001067 break;
Steve Naroff218bc2b2007-05-04 21:54:46 +00001068 case IncompatiblePointer:
Steve Naroff9358c712007-05-27 23:58:33 +00001069 Diag(loc, diag::ext_typecheck_assign_incompatible_pointer,
1070 lhsType.getAsString(), rhsType.getAsString(),
1071 lex->getSourceRange(), rex->getSourceRange());
Steve Naroff1f4d7272007-05-11 04:00:31 +00001072 break;
1073 case CompatiblePointerDiscardsQualifiers:
Steve Naroff9358c712007-05-27 23:58:33 +00001074 Diag(loc, diag::ext_typecheck_assign_discards_qualifiers,
1075 lhsType.getAsString(), rhsType.getAsString(),
1076 lex->getSourceRange(), rex->getSourceRange());
Steve Naroff1f4d7272007-05-11 04:00:31 +00001077 break;
Steve Naroff218bc2b2007-05-04 21:54:46 +00001078 }
Steve Naroff98cf3e92007-06-06 18:38:38 +00001079 // C99 6.5.16p3: The type of an assignment expression is the type of the
1080 // left operand unless the left operand has qualified type, in which case
1081 // it is the unqualified version of the type of the left operand.
1082 // C99 6.5.16.1p2: In simple assignment, the value of the right operand
1083 // is converted to the type of the assignment expression (above).
1084 // C++ 5.17p1: the type of the assignment expression is that of its left oprdu.
1085 return hadError ? QualType() : lhsType.getUnqualifiedType();
Steve Naroffae4143e2007-04-26 20:39:23 +00001086}
1087
Steve Naroff218bc2b2007-05-04 21:54:46 +00001088inline QualType Sema::CheckCommaOperands( // C99 6.5.17
Steve Naroff7a5af782007-07-13 16:58:59 +00001089 Expr *&lex, Expr *&rex, SourceLocation loc) {
Steve Naroff31090012007-07-16 21:54:35 +00001090 UsualUnaryConversions(rex);
1091 return rex->getType();
Steve Naroff95af0132007-03-30 23:47:58 +00001092}
1093
Steve Naroff7a5af782007-07-13 16:58:59 +00001094/// CheckIncrementDecrementOperand - unlike most "Check" methods, this routine
1095/// doesn't need to call UsualUnaryConversions or UsualArithmeticConversions.
Steve Naroff71ce2e02007-05-18 22:53:50 +00001096QualType Sema::CheckIncrementDecrementOperand(Expr *op, SourceLocation OpLoc) {
Steve Naroff7a5af782007-07-13 16:58:59 +00001097 QualType resType = op->getType();
Steve Naroff35d85152007-05-07 00:24:15 +00001098 assert(!resType.isNull() && "no type for increment/decrement expression");
Steve Naroffd50c88e2007-04-05 21:15:20 +00001099
Steve Naroff46ba1eb2007-04-03 23:13:13 +00001100 // C99 6.5.2.4p1
Steve Naroff35d85152007-05-07 00:24:15 +00001101 if (const PointerType *pt = dyn_cast<PointerType>(resType)) {
1102 if (!pt->getPointeeType()->isObjectType()) { // C99 6.5.2.4p2, 6.5.6p2
Steve Naroff71ce2e02007-05-18 22:53:50 +00001103 Diag(OpLoc, diag::err_typecheck_arithmetic_incomplete_type,
1104 resType.getAsString(), op->getSourceRange());
Steve Naroff35d85152007-05-07 00:24:15 +00001105 return QualType();
1106 }
1107 } else if (!resType->isRealType()) {
Steve Naroff95af0132007-03-30 23:47:58 +00001108 // FIXME: Allow Complex as a GCC extension.
Steve Naroff71ce2e02007-05-18 22:53:50 +00001109 Diag(OpLoc, diag::err_typecheck_illegal_increment_decrement,
1110 resType.getAsString(), op->getSourceRange());
Steve Naroff35d85152007-05-07 00:24:15 +00001111 return QualType();
Steve Naroff46ba1eb2007-04-03 23:13:13 +00001112 }
Steve Naroff094046f2007-05-13 03:21:25 +00001113 // At this point, we know we have a real or pointer type. Now make sure
1114 // the operand is a modifiable lvalue.
Steve Naroff9358c712007-05-27 23:58:33 +00001115 Expr::isModifiableLvalueResult mlval = op->isModifiableLvalue();
1116 if (mlval != Expr::MLV_Valid) {
1117 // FIXME: emit a more precise diagnostic...
Steve Naroff71ce2e02007-05-18 22:53:50 +00001118 Diag(OpLoc, diag::err_typecheck_invalid_lvalue_incr_decr,
Chris Lattner84e160a2007-05-19 07:03:17 +00001119 op->getSourceRange());
Steve Naroff35d85152007-05-07 00:24:15 +00001120 return QualType();
1121 }
1122 return resType;
Steve Naroff26c8ea52007-03-21 21:08:52 +00001123}
1124
Steve Naroff1926c832007-04-24 00:23:05 +00001125/// getPrimaryDeclaration - Helper function for CheckAddressOfOperand().
Steve Naroff47500512007-04-19 23:00:49 +00001126/// This routine allows us to typecheck complex/recursive expressions
1127/// where the declaration is needed for type checking. Here are some
1128/// examples: &s.xx, &s.zz[1].yy, &(1+2), &(XX), &"123"[2].
Steve Naroff1926c832007-04-24 00:23:05 +00001129static Decl *getPrimaryDeclaration(Expr *e) {
Steve Naroff47500512007-04-19 23:00:49 +00001130 switch (e->getStmtClass()) {
1131 case Stmt::DeclRefExprClass:
1132 return cast<DeclRefExpr>(e)->getDecl();
1133 case Stmt::MemberExprClass:
Steve Naroff1926c832007-04-24 00:23:05 +00001134 return getPrimaryDeclaration(cast<MemberExpr>(e)->getBase());
Steve Naroff47500512007-04-19 23:00:49 +00001135 case Stmt::ArraySubscriptExprClass:
Steve Naroff1926c832007-04-24 00:23:05 +00001136 return getPrimaryDeclaration(cast<ArraySubscriptExpr>(e)->getBase());
Steve Naroff47500512007-04-19 23:00:49 +00001137 case Stmt::CallExprClass:
Steve Naroff1926c832007-04-24 00:23:05 +00001138 return getPrimaryDeclaration(cast<CallExpr>(e)->getCallee());
Steve Naroff47500512007-04-19 23:00:49 +00001139 case Stmt::UnaryOperatorClass:
Steve Naroff1926c832007-04-24 00:23:05 +00001140 return getPrimaryDeclaration(cast<UnaryOperator>(e)->getSubExpr());
Steve Naroff47500512007-04-19 23:00:49 +00001141 case Stmt::ParenExprClass:
Steve Naroff1926c832007-04-24 00:23:05 +00001142 return getPrimaryDeclaration(cast<ParenExpr>(e)->getSubExpr());
Steve Naroff47500512007-04-19 23:00:49 +00001143 default:
1144 return 0;
1145 }
1146}
1147
1148/// CheckAddressOfOperand - The operand of & must be either a function
1149/// designator or an lvalue designating an object. If it is an lvalue, the
1150/// object cannot be declared with storage class register or be a bit field.
1151/// Note: The usual conversions are *not* applied to the operand of the &
Steve Naroffa78fe7e2007-05-16 19:47:19 +00001152/// operator (C99 6.3.2.1p[2-4]), and its result is never an lvalue.
Steve Naroff35d85152007-05-07 00:24:15 +00001153QualType Sema::CheckAddressOfOperand(Expr *op, SourceLocation OpLoc) {
Steve Naroff1926c832007-04-24 00:23:05 +00001154 Decl *dcl = getPrimaryDeclaration(op);
Steve Naroff9358c712007-05-27 23:58:33 +00001155 Expr::isLvalueResult lval = op->isLvalue();
Steve Naroff47500512007-04-19 23:00:49 +00001156
Steve Naroff9358c712007-05-27 23:58:33 +00001157 if (lval != Expr::LV_Valid) { // C99 6.5.3.2p1
Steve Naroff5dd642e2007-05-14 18:14:51 +00001158 if (dcl && isa<FunctionDecl>(dcl)) // allow function designators
1159 ;
Steve Naroff9358c712007-05-27 23:58:33 +00001160 else { // FIXME: emit more specific diag...
Steve Naroff71ce2e02007-05-18 22:53:50 +00001161 Diag(OpLoc, diag::err_typecheck_invalid_lvalue_addrof,
1162 op->getSourceRange());
Steve Naroff35d85152007-05-07 00:24:15 +00001163 return QualType();
1164 }
Steve Naroff47500512007-04-19 23:00:49 +00001165 } else if (dcl) {
1166 // We have an lvalue with a decl. Make sure the decl is not declared
1167 // with the register storage-class specifier.
1168 if (const VarDecl *vd = dyn_cast<VarDecl>(dcl)) {
Steve Naroff35d85152007-05-07 00:24:15 +00001169 if (vd->getStorageClass() == VarDecl::Register) {
Steve Naroff71ce2e02007-05-18 22:53:50 +00001170 Diag(OpLoc, diag::err_typecheck_address_of_register,
Chris Lattner84e160a2007-05-19 07:03:17 +00001171 op->getSourceRange());
Steve Naroff35d85152007-05-07 00:24:15 +00001172 return QualType();
1173 }
Steve Narofff633d092007-04-25 19:01:39 +00001174 } else
1175 assert(0 && "Unknown/unexpected decl type");
1176
Steve Naroff47500512007-04-19 23:00:49 +00001177 // FIXME: add check for bitfields!
1178 }
1179 // If the operand has type "type", the result has type "pointer to type".
Steve Naroff35d85152007-05-07 00:24:15 +00001180 return Context.getPointerType(op->getType());
Steve Naroff47500512007-04-19 23:00:49 +00001181}
1182
Steve Naroff35d85152007-05-07 00:24:15 +00001183QualType Sema::CheckIndirectionOperand(Expr *op, SourceLocation OpLoc) {
Steve Naroff31090012007-07-16 21:54:35 +00001184 UsualUnaryConversions(op);
1185 QualType qType = op->getType();
Steve Naroff35d85152007-05-07 00:24:15 +00001186
Steve Naroff758ada12007-05-28 16:15:57 +00001187 if (PointerType *PT = dyn_cast<PointerType>(qType.getCanonicalType())) {
1188 QualType ptype = PT->getPointeeType();
1189 // C99 6.5.3.2p4. "if it points to an object,...".
1190 if (ptype->isIncompleteType()) { // An incomplete type is not an object
1191 // GCC compat: special case 'void *' (treat as warning).
1192 if (ptype->isVoidType()) {
1193 Diag(OpLoc, diag::ext_typecheck_deref_ptr_to_void,
Steve Naroffeb9da942007-05-30 00:06:37 +00001194 qType.getAsString(), op->getSourceRange());
Steve Naroff758ada12007-05-28 16:15:57 +00001195 } else {
1196 Diag(OpLoc, diag::err_typecheck_deref_incomplete_type,
Steve Naroffeb9da942007-05-30 00:06:37 +00001197 ptype.getAsString(), op->getSourceRange());
Steve Naroff758ada12007-05-28 16:15:57 +00001198 return QualType();
1199 }
1200 }
1201 return ptype;
1202 }
1203 Diag(OpLoc, diag::err_typecheck_indirection_requires_pointer,
Steve Naroffeb9da942007-05-30 00:06:37 +00001204 qType.getAsString(), op->getSourceRange());
Steve Naroff35d85152007-05-07 00:24:15 +00001205 return QualType();
Steve Naroff1926c832007-04-24 00:23:05 +00001206}
Steve Naroff218bc2b2007-05-04 21:54:46 +00001207
1208static inline BinaryOperator::Opcode ConvertTokenKindToBinaryOpcode(
1209 tok::TokenKind Kind) {
1210 BinaryOperator::Opcode Opc;
1211 switch (Kind) {
1212 default: assert(0 && "Unknown binop!");
1213 case tok::star: Opc = BinaryOperator::Mul; break;
1214 case tok::slash: Opc = BinaryOperator::Div; break;
1215 case tok::percent: Opc = BinaryOperator::Rem; break;
1216 case tok::plus: Opc = BinaryOperator::Add; break;
1217 case tok::minus: Opc = BinaryOperator::Sub; break;
1218 case tok::lessless: Opc = BinaryOperator::Shl; break;
1219 case tok::greatergreater: Opc = BinaryOperator::Shr; break;
1220 case tok::lessequal: Opc = BinaryOperator::LE; break;
1221 case tok::less: Opc = BinaryOperator::LT; break;
1222 case tok::greaterequal: Opc = BinaryOperator::GE; break;
1223 case tok::greater: Opc = BinaryOperator::GT; break;
1224 case tok::exclaimequal: Opc = BinaryOperator::NE; break;
1225 case tok::equalequal: Opc = BinaryOperator::EQ; break;
1226 case tok::amp: Opc = BinaryOperator::And; break;
1227 case tok::caret: Opc = BinaryOperator::Xor; break;
1228 case tok::pipe: Opc = BinaryOperator::Or; break;
1229 case tok::ampamp: Opc = BinaryOperator::LAnd; break;
1230 case tok::pipepipe: Opc = BinaryOperator::LOr; break;
1231 case tok::equal: Opc = BinaryOperator::Assign; break;
1232 case tok::starequal: Opc = BinaryOperator::MulAssign; break;
1233 case tok::slashequal: Opc = BinaryOperator::DivAssign; break;
1234 case tok::percentequal: Opc = BinaryOperator::RemAssign; break;
1235 case tok::plusequal: Opc = BinaryOperator::AddAssign; break;
1236 case tok::minusequal: Opc = BinaryOperator::SubAssign; break;
1237 case tok::lesslessequal: Opc = BinaryOperator::ShlAssign; break;
1238 case tok::greatergreaterequal: Opc = BinaryOperator::ShrAssign; break;
1239 case tok::ampequal: Opc = BinaryOperator::AndAssign; break;
1240 case tok::caretequal: Opc = BinaryOperator::XorAssign; break;
1241 case tok::pipeequal: Opc = BinaryOperator::OrAssign; break;
1242 case tok::comma: Opc = BinaryOperator::Comma; break;
1243 }
1244 return Opc;
1245}
1246
Steve Naroff35d85152007-05-07 00:24:15 +00001247static inline UnaryOperator::Opcode ConvertTokenKindToUnaryOpcode(
1248 tok::TokenKind Kind) {
1249 UnaryOperator::Opcode Opc;
1250 switch (Kind) {
1251 default: assert(0 && "Unknown unary op!");
1252 case tok::plusplus: Opc = UnaryOperator::PreInc; break;
1253 case tok::minusminus: Opc = UnaryOperator::PreDec; break;
1254 case tok::amp: Opc = UnaryOperator::AddrOf; break;
1255 case tok::star: Opc = UnaryOperator::Deref; break;
1256 case tok::plus: Opc = UnaryOperator::Plus; break;
1257 case tok::minus: Opc = UnaryOperator::Minus; break;
1258 case tok::tilde: Opc = UnaryOperator::Not; break;
1259 case tok::exclaim: Opc = UnaryOperator::LNot; break;
1260 case tok::kw_sizeof: Opc = UnaryOperator::SizeOf; break;
1261 case tok::kw___alignof: Opc = UnaryOperator::AlignOf; break;
1262 case tok::kw___real: Opc = UnaryOperator::Real; break;
1263 case tok::kw___imag: Opc = UnaryOperator::Imag; break;
Chris Lattnerd0f76512007-06-08 22:16:53 +00001264 case tok::kw___extension__: Opc = UnaryOperator::Extension; break;
Steve Naroff35d85152007-05-07 00:24:15 +00001265 }
1266 return Opc;
1267}
1268
Steve Naroff218bc2b2007-05-04 21:54:46 +00001269// Binary Operators. 'Tok' is the token for the operator.
1270Action::ExprResult Sema::ParseBinOp(SourceLocation TokLoc, tok::TokenKind Kind,
1271 ExprTy *LHS, ExprTy *RHS) {
1272 BinaryOperator::Opcode Opc = ConvertTokenKindToBinaryOpcode(Kind);
1273 Expr *lhs = (Expr *)LHS, *rhs = (Expr*)RHS;
1274
1275 assert((lhs != 0) && "ParseBinOp(): missing left expression");
1276 assert((rhs != 0) && "ParseBinOp(): missing right expression");
1277
Chris Lattner256c21b2007-06-28 03:53:10 +00001278 QualType ResultTy; // Result type of the binary operator.
1279 QualType CompTy; // Computation type for compound assignments (e.g. '+=')
Steve Naroff218bc2b2007-05-04 21:54:46 +00001280
1281 switch (Opc) {
1282 default:
1283 assert(0 && "Unknown binary expr!");
1284 case BinaryOperator::Assign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001285 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, QualType());
Steve Naroff218bc2b2007-05-04 21:54:46 +00001286 break;
1287 case BinaryOperator::Mul:
1288 case BinaryOperator::Div:
Chris Lattner256c21b2007-06-28 03:53:10 +00001289 ResultTy = CheckMultiplyDivideOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001290 break;
1291 case BinaryOperator::Rem:
Chris Lattner256c21b2007-06-28 03:53:10 +00001292 ResultTy = CheckRemainderOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001293 break;
1294 case BinaryOperator::Add:
Chris Lattner256c21b2007-06-28 03:53:10 +00001295 ResultTy = CheckAdditionOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001296 break;
1297 case BinaryOperator::Sub:
Chris Lattner256c21b2007-06-28 03:53:10 +00001298 ResultTy = CheckSubtractionOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001299 break;
1300 case BinaryOperator::Shl:
1301 case BinaryOperator::Shr:
Chris Lattner256c21b2007-06-28 03:53:10 +00001302 ResultTy = CheckShiftOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001303 break;
1304 case BinaryOperator::LE:
1305 case BinaryOperator::LT:
1306 case BinaryOperator::GE:
1307 case BinaryOperator::GT:
Chris Lattner256c21b2007-06-28 03:53:10 +00001308 ResultTy = CheckRelationalOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001309 break;
1310 case BinaryOperator::EQ:
1311 case BinaryOperator::NE:
Chris Lattner256c21b2007-06-28 03:53:10 +00001312 ResultTy = CheckEqualityOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001313 break;
1314 case BinaryOperator::And:
1315 case BinaryOperator::Xor:
1316 case BinaryOperator::Or:
Chris Lattner256c21b2007-06-28 03:53:10 +00001317 ResultTy = CheckBitwiseOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001318 break;
1319 case BinaryOperator::LAnd:
1320 case BinaryOperator::LOr:
Chris Lattner256c21b2007-06-28 03:53:10 +00001321 ResultTy = CheckLogicalOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001322 break;
1323 case BinaryOperator::MulAssign:
1324 case BinaryOperator::DivAssign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001325 CompTy = CheckMultiplyDivideOperands(lhs, rhs, TokLoc);
1326 if (!CompTy.isNull())
1327 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001328 break;
1329 case BinaryOperator::RemAssign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001330 CompTy = CheckRemainderOperands(lhs, rhs, TokLoc);
1331 if (!CompTy.isNull())
1332 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001333 break;
1334 case BinaryOperator::AddAssign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001335 CompTy = CheckAdditionOperands(lhs, rhs, TokLoc);
1336 if (!CompTy.isNull())
1337 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001338 break;
1339 case BinaryOperator::SubAssign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001340 CompTy = CheckSubtractionOperands(lhs, rhs, TokLoc);
1341 if (!CompTy.isNull())
1342 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001343 break;
1344 case BinaryOperator::ShlAssign:
1345 case BinaryOperator::ShrAssign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001346 CompTy = CheckShiftOperands(lhs, rhs, TokLoc);
1347 if (!CompTy.isNull())
1348 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001349 break;
1350 case BinaryOperator::AndAssign:
1351 case BinaryOperator::XorAssign:
1352 case BinaryOperator::OrAssign:
Chris Lattner256c21b2007-06-28 03:53:10 +00001353 CompTy = CheckBitwiseOperands(lhs, rhs, TokLoc);
1354 if (!CompTy.isNull())
1355 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001356 break;
1357 case BinaryOperator::Comma:
Chris Lattner256c21b2007-06-28 03:53:10 +00001358 ResultTy = CheckCommaOperands(lhs, rhs, TokLoc);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001359 break;
1360 }
Chris Lattner256c21b2007-06-28 03:53:10 +00001361 if (ResultTy.isNull())
Steve Naroff218bc2b2007-05-04 21:54:46 +00001362 return true;
Chris Lattner256c21b2007-06-28 03:53:10 +00001363 if (CompTy.isNull())
1364 return new BinaryOperator(lhs, rhs, Opc, ResultTy);
1365 else
Chris Lattner9369a562007-06-29 16:31:29 +00001366 return new CompoundAssignOperator(lhs, rhs, Opc, ResultTy, CompTy);
Steve Naroff218bc2b2007-05-04 21:54:46 +00001367}
1368
Steve Naroff35d85152007-05-07 00:24:15 +00001369// Unary Operators. 'Tok' is the token for the operator.
1370Action::ExprResult Sema::ParseUnaryOp(SourceLocation OpLoc, tok::TokenKind Op,
Chris Lattner86554282007-06-08 22:32:33 +00001371 ExprTy *input) {
1372 Expr *Input = (Expr*)input;
Steve Naroff35d85152007-05-07 00:24:15 +00001373 UnaryOperator::Opcode Opc = ConvertTokenKindToUnaryOpcode(Op);
1374 QualType resultType;
1375 switch (Opc) {
1376 default:
1377 assert(0 && "Unimplemented unary expr!");
1378 case UnaryOperator::PreInc:
1379 case UnaryOperator::PreDec:
Chris Lattner86554282007-06-08 22:32:33 +00001380 resultType = CheckIncrementDecrementOperand(Input, OpLoc);
Steve Naroff35d85152007-05-07 00:24:15 +00001381 break;
1382 case UnaryOperator::AddrOf:
Chris Lattner86554282007-06-08 22:32:33 +00001383 resultType = CheckAddressOfOperand(Input, OpLoc);
Steve Naroff35d85152007-05-07 00:24:15 +00001384 break;
1385 case UnaryOperator::Deref:
Chris Lattner86554282007-06-08 22:32:33 +00001386 resultType = CheckIndirectionOperand(Input, OpLoc);
Steve Naroff35d85152007-05-07 00:24:15 +00001387 break;
1388 case UnaryOperator::Plus:
1389 case UnaryOperator::Minus:
Steve Naroff31090012007-07-16 21:54:35 +00001390 UsualUnaryConversions(Input);
1391 resultType = Input->getType();
Steve Naroff35d85152007-05-07 00:24:15 +00001392 if (!resultType->isArithmeticType()) // C99 6.5.3.3p1
Chris Lattnerc04bd6a2007-05-16 18:09:54 +00001393 return Diag(OpLoc, diag::err_typecheck_unary_expr,
1394 resultType.getAsString());
Steve Naroff35d85152007-05-07 00:24:15 +00001395 break;
1396 case UnaryOperator::Not: // bitwise complement
Steve Naroff31090012007-07-16 21:54:35 +00001397 UsualUnaryConversions(Input);
1398 resultType = Input->getType();
Steve Naroff1c8b7d32007-07-12 21:46:55 +00001399 if (!resultType->isIntegerType()) // C99 6.5.3.3p1
1400 return Diag(OpLoc, diag::err_typecheck_unary_expr,
1401 resultType.getAsString());
Steve Naroff35d85152007-05-07 00:24:15 +00001402 break;
1403 case UnaryOperator::LNot: // logical negation
Steve Naroff71b59a92007-06-04 22:22:31 +00001404 // Unlike +/-/~, integer promotions aren't done here (C99 6.5.3.3p5).
Steve Naroff31090012007-07-16 21:54:35 +00001405 DefaultFunctionArrayConversion(Input);
1406 resultType = Input->getType();
Steve Naroff35d85152007-05-07 00:24:15 +00001407 if (!resultType->isScalarType()) // C99 6.5.3.3p1
Chris Lattnerc04bd6a2007-05-16 18:09:54 +00001408 return Diag(OpLoc, diag::err_typecheck_unary_expr,
1409 resultType.getAsString());
Chris Lattnerbe31ed82007-06-02 19:11:33 +00001410 // LNot always has type int. C99 6.5.3.3p5.
1411 resultType = Context.IntTy;
Steve Naroff35d85152007-05-07 00:24:15 +00001412 break;
1413 case UnaryOperator::SizeOf:
Chris Lattner86554282007-06-08 22:32:33 +00001414 resultType = CheckSizeOfAlignOfOperand(Input->getType(), OpLoc, true);
Steve Naroff043d45d2007-05-15 02:32:35 +00001415 break;
Steve Naroff35d85152007-05-07 00:24:15 +00001416 case UnaryOperator::AlignOf:
Chris Lattner86554282007-06-08 22:32:33 +00001417 resultType = CheckSizeOfAlignOfOperand(Input->getType(), OpLoc, false);
1418 break;
1419 case UnaryOperator::Extension:
1420 // FIXME: does __extension__ cause any promotions? I would think not.
1421 resultType = Input->getType();
Steve Naroff043d45d2007-05-15 02:32:35 +00001422 break;
Steve Naroff35d85152007-05-07 00:24:15 +00001423 }
1424 if (resultType.isNull())
1425 return true;
Chris Lattner86554282007-06-08 22:32:33 +00001426 return new UnaryOperator(Input, Opc, resultType, OpLoc);
Steve Naroff35d85152007-05-07 00:24:15 +00001427}
Chris Lattnereefa10e2007-05-28 06:56:27 +00001428
1429/// ParseAddrLabel - Parse the GNU address of label extension: "&&foo".
1430Sema::ExprResult Sema::ParseAddrLabel(SourceLocation OpLoc,
1431 SourceLocation LabLoc,
1432 IdentifierInfo *LabelII) {
1433 // Look up the record for this label identifier.
1434 LabelStmt *&LabelDecl = LabelMap[LabelII];
1435
1436 // If we haven't seen this label yet, create a forward reference.
1437 if (LabelDecl == 0)
1438 LabelDecl = new LabelStmt(LabLoc, LabelII, 0);
1439
1440 // Create the AST node. The address of a label always has type 'void*'.
1441 return new AddrLabel(OpLoc, LabLoc, LabelDecl,
1442 Context.getPointerType(Context.VoidTy));
1443}
1444