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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- SemaExpr.cpp - Semantic Analysis for Expressions -----------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner959e5be2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner4b009652007-07-25 00:24:17 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements semantic analysis for expressions.
11//
12//===----------------------------------------------------------------------===//
13
14#include "Sema.h"
Ted Kremenek30c66752007-11-25 00:58:00 +000015#include "SemaUtil.h"
Chris Lattner4b009652007-07-25 00:24:17 +000016#include "clang/AST/ASTContext.h"
Argiris Kirtzidis38f16712008-07-01 10:37:29 +000017#include "clang/AST/DeclCXX.h"
Chris Lattner4b009652007-07-25 00:24:17 +000018#include "clang/AST/Expr.h"
Chris Lattner3e254fb2008-04-08 04:40:51 +000019#include "clang/AST/ExprCXX.h"
Steve Naroff9ed3e772008-05-29 21:12:08 +000020#include "clang/AST/ExprObjC.h"
Steve Naroffc39ca262007-09-18 23:55:05 +000021#include "clang/Parse/DeclSpec.h"
Chris Lattner4b009652007-07-25 00:24:17 +000022#include "clang/Lex/Preprocessor.h"
23#include "clang/Lex/LiteralSupport.h"
24#include "clang/Basic/SourceManager.h"
Chris Lattner4b009652007-07-25 00:24:17 +000025#include "clang/Basic/TargetInfo.h"
Chris Lattner83bd5eb2007-12-28 05:29:59 +000026#include "llvm/ADT/OwningPtr.h"
Chris Lattner4b009652007-07-25 00:24:17 +000027#include "llvm/ADT/SmallString.h"
Chris Lattner2e64c072007-08-10 20:18:51 +000028#include "llvm/ADT/StringExtras.h"
Chris Lattner4b009652007-07-25 00:24:17 +000029using namespace clang;
30
Steve Naroff87d58b42007-09-16 03:34:24 +000031/// ActOnStringLiteral - The specified tokens were lexed as pasted string
Chris Lattner4b009652007-07-25 00:24:17 +000032/// fragments (e.g. "foo" "bar" L"baz"). The result string has to handle string
33/// concatenation ([C99 5.1.1.2, translation phase #6]), so it may come from
34/// multiple tokens. However, the common case is that StringToks points to one
35/// string.
36///
37Action::ExprResult
Steve Naroff87d58b42007-09-16 03:34:24 +000038Sema::ActOnStringLiteral(const Token *StringToks, unsigned NumStringToks) {
Chris Lattner4b009652007-07-25 00:24:17 +000039 assert(NumStringToks && "Must have at least one string!");
40
41 StringLiteralParser Literal(StringToks, NumStringToks, PP, Context.Target);
42 if (Literal.hadError)
43 return ExprResult(true);
44
45 llvm::SmallVector<SourceLocation, 4> StringTokLocs;
46 for (unsigned i = 0; i != NumStringToks; ++i)
47 StringTokLocs.push_back(StringToks[i].getLocation());
Chris Lattnera6dcce32008-02-11 00:02:17 +000048
49 // Verify that pascal strings aren't too large.
Anders Carlsson55bfe0d2007-10-15 02:50:23 +000050 if (Literal.Pascal && Literal.GetStringLength() > 256)
51 return Diag(StringToks[0].getLocation(), diag::err_pascal_string_too_long,
52 SourceRange(StringToks[0].getLocation(),
53 StringToks[NumStringToks-1].getLocation()));
Chris Lattner4b009652007-07-25 00:24:17 +000054
Chris Lattnera6dcce32008-02-11 00:02:17 +000055 QualType StrTy = Context.CharTy;
Eli Friedman256b7d72008-05-27 07:57:14 +000056 if (Literal.AnyWide) StrTy = Context.getWcharType();
Chris Lattnera6dcce32008-02-11 00:02:17 +000057 if (Literal.Pascal) StrTy = Context.UnsignedCharTy;
58
59 // Get an array type for the string, according to C99 6.4.5. This includes
60 // the nul terminator character as well as the string length for pascal
61 // strings.
62 StrTy = Context.getConstantArrayType(StrTy,
63 llvm::APInt(32, Literal.GetStringLength()+1),
64 ArrayType::Normal, 0);
65
Chris Lattner4b009652007-07-25 00:24:17 +000066 // Pass &StringTokLocs[0], StringTokLocs.size() to factory!
67 return new StringLiteral(Literal.GetString(), Literal.GetStringLength(),
Chris Lattnera6dcce32008-02-11 00:02:17 +000068 Literal.AnyWide, StrTy,
Anders Carlsson55bfe0d2007-10-15 02:50:23 +000069 StringToks[0].getLocation(),
Chris Lattner4b009652007-07-25 00:24:17 +000070 StringToks[NumStringToks-1].getLocation());
71}
72
73
Steve Naroff0acc9c92007-09-15 18:49:24 +000074/// ActOnIdentifierExpr - The parser read an identifier in expression context,
Chris Lattner4b009652007-07-25 00:24:17 +000075/// validate it per-C99 6.5.1. HasTrailingLParen indicates whether this
Steve Naroffe50e14c2008-03-19 23:46:26 +000076/// identifier is used in a function call context.
Steve Naroff0acc9c92007-09-15 18:49:24 +000077Sema::ExprResult Sema::ActOnIdentifierExpr(Scope *S, SourceLocation Loc,
Chris Lattner4b009652007-07-25 00:24:17 +000078 IdentifierInfo &II,
79 bool HasTrailingLParen) {
Chris Lattnerc72d22d2008-03-31 00:36:02 +000080 // Could be enum-constant, value decl, instance variable, etc.
Steve Naroff6384a012008-04-02 14:35:35 +000081 Decl *D = LookupDecl(&II, Decl::IDNS_Ordinary, S);
Chris Lattnerc72d22d2008-03-31 00:36:02 +000082
83 // If this reference is in an Objective-C method, then ivar lookup happens as
84 // well.
Argiris Kirtzidis95256e62008-06-28 06:07:14 +000085 if (getCurMethodDecl()) {
Steve Naroffe57c21a2008-04-01 23:04:06 +000086 ScopedDecl *SD = dyn_cast_or_null<ScopedDecl>(D);
Chris Lattnerc72d22d2008-03-31 00:36:02 +000087 // There are two cases to handle here. 1) scoped lookup could have failed,
88 // in which case we should look for an ivar. 2) scoped lookup could have
89 // found a decl, but that decl is outside the current method (i.e. a global
90 // variable). In these two cases, we do a lookup for an ivar with this
91 // name, if the lookup suceeds, we replace it our current decl.
Steve Naroffe57c21a2008-04-01 23:04:06 +000092 if (SD == 0 || SD->isDefinedOutsideFunctionOrMethod()) {
Argiris Kirtzidis95256e62008-06-28 06:07:14 +000093 ObjCInterfaceDecl *IFace = getCurMethodDecl()->getClassInterface();
94 ObjCInterfaceDecl *DeclClass;
Chris Lattnerc72d22d2008-03-31 00:36:02 +000095 if (ObjCIvarDecl *IV = IFace->lookupInstanceVariable(&II, DeclClass)) {
96 // FIXME: This should use a new expr for a direct reference, don't turn
97 // this into Self->ivar, just return a BareIVarExpr or something.
98 IdentifierInfo &II = Context.Idents.get("self");
99 ExprResult SelfExpr = ActOnIdentifierExpr(S, Loc, II, false);
100 return new ObjCIvarRefExpr(IV, IV->getType(), Loc,
101 static_cast<Expr*>(SelfExpr.Val), true, true);
102 }
103 }
Steve Naroffe90d4cc2008-06-05 18:14:25 +0000104 if (SD == 0 && !strcmp(II.getName(), "super")) {
Steve Naroff6f786252008-06-02 23:03:37 +0000105 QualType T = Context.getPointerType(Context.getObjCInterfaceType(
Argiris Kirtzidis95256e62008-06-28 06:07:14 +0000106 getCurMethodDecl()->getClassInterface()));
Steve Naroff6f786252008-06-02 23:03:37 +0000107 return new ObjCSuperRefExpr(T, Loc);
108 }
Chris Lattnerc72d22d2008-03-31 00:36:02 +0000109 }
110
Chris Lattner4b009652007-07-25 00:24:17 +0000111 if (D == 0) {
112 // Otherwise, this could be an implicitly declared function reference (legal
113 // in C90, extension in C99).
114 if (HasTrailingLParen &&
Chris Lattnerc72d22d2008-03-31 00:36:02 +0000115 !getLangOptions().CPlusPlus) // Not in C++.
Chris Lattner4b009652007-07-25 00:24:17 +0000116 D = ImplicitlyDefineFunction(Loc, II, S);
117 else {
118 // If this name wasn't predeclared and if this is not a function call,
119 // diagnose the problem.
120 return Diag(Loc, diag::err_undeclared_var_use, II.getName());
121 }
122 }
Chris Lattnerc72d22d2008-03-31 00:36:02 +0000123
Steve Naroff91b03f72007-08-28 03:03:08 +0000124 if (ValueDecl *VD = dyn_cast<ValueDecl>(D)) {
Chris Lattneree4c3bf2008-02-29 16:48:43 +0000125 // check if referencing an identifier with __attribute__((deprecated)).
126 if (VD->getAttr<DeprecatedAttr>())
127 Diag(Loc, diag::warn_deprecated, VD->getName());
128
Steve Naroffcae537d2007-08-28 18:45:29 +0000129 // Only create DeclRefExpr's for valid Decl's.
Steve Naroffd1ad6ae2007-08-28 20:14:24 +0000130 if (VD->isInvalidDecl())
Steve Naroff91b03f72007-08-28 03:03:08 +0000131 return true;
Chris Lattner4b009652007-07-25 00:24:17 +0000132 return new DeclRefExpr(VD, VD->getType(), Loc);
Steve Naroff91b03f72007-08-28 03:03:08 +0000133 }
Argiris Kirtzidis38f16712008-07-01 10:37:29 +0000134
135 if (CXXFieldDecl *FD = dyn_cast<CXXFieldDecl>(D)) {
136 if (CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(CurContext)) {
137 if (MD->isStatic())
138 // "invalid use of member 'x' in static member function"
139 return Diag(Loc, diag::err_invalid_member_use_in_static_method,
140 FD->getName());
141 if (cast<CXXRecordDecl>(MD->getParent()) != FD->getParent())
142 // "invalid use of nonstatic data member 'x'"
143 return Diag(Loc, diag::err_invalid_non_static_member_use,
144 FD->getName());
145
146 if (FD->isInvalidDecl())
147 return true;
148
149 // FIXME: Use DeclRefExpr or a new Expr for a direct CXXField reference.
150 ExprResult ThisExpr = ActOnCXXThis(SourceLocation());
151 return new MemberExpr(static_cast<Expr*>(ThisExpr.Val),
152 true, FD, Loc, FD->getType());
153 }
154
155 return Diag(Loc, diag::err_invalid_non_static_member_use, FD->getName());
156 }
Chris Lattnerc72d22d2008-03-31 00:36:02 +0000157
Chris Lattner4b009652007-07-25 00:24:17 +0000158 if (isa<TypedefDecl>(D))
159 return Diag(Loc, diag::err_unexpected_typedef, II.getName());
Ted Kremenek42730c52008-01-07 19:49:32 +0000160 if (isa<ObjCInterfaceDecl>(D))
Fariborz Jahanian3102df92007-12-05 18:16:33 +0000161 return Diag(Loc, diag::err_unexpected_interface, II.getName());
Argiris Kirtzidis03e6aaf2008-04-27 13:50:30 +0000162 if (isa<NamespaceDecl>(D))
163 return Diag(Loc, diag::err_unexpected_namespace, II.getName());
Chris Lattner4b009652007-07-25 00:24:17 +0000164
165 assert(0 && "Invalid decl");
166 abort();
167}
168
Steve Naroff87d58b42007-09-16 03:34:24 +0000169Sema::ExprResult Sema::ActOnPreDefinedExpr(SourceLocation Loc,
Chris Lattner4b009652007-07-25 00:24:17 +0000170 tok::TokenKind Kind) {
171 PreDefinedExpr::IdentType IT;
172
173 switch (Kind) {
Chris Lattnere12ca5d2008-01-12 18:39:25 +0000174 default: assert(0 && "Unknown simple primary expr!");
175 case tok::kw___func__: IT = PreDefinedExpr::Func; break; // [C99 6.4.2.2]
176 case tok::kw___FUNCTION__: IT = PreDefinedExpr::Function; break;
177 case tok::kw___PRETTY_FUNCTION__: IT = PreDefinedExpr::PrettyFunction; break;
Chris Lattner4b009652007-07-25 00:24:17 +0000178 }
Chris Lattnere12ca5d2008-01-12 18:39:25 +0000179
180 // Verify that this is in a function context.
Argiris Kirtzidis95256e62008-06-28 06:07:14 +0000181 if (getCurFunctionDecl() == 0 && getCurMethodDecl() == 0)
Chris Lattnere12ca5d2008-01-12 18:39:25 +0000182 return Diag(Loc, diag::err_predef_outside_function);
Chris Lattner4b009652007-07-25 00:24:17 +0000183
Chris Lattner7e637512008-01-12 08:14:25 +0000184 // Pre-defined identifiers are of type char[x], where x is the length of the
185 // string.
Chris Lattnerfc9511c2008-01-12 19:32:28 +0000186 unsigned Length;
Argiris Kirtzidis95256e62008-06-28 06:07:14 +0000187 if (getCurFunctionDecl())
188 Length = getCurFunctionDecl()->getIdentifier()->getLength();
Chris Lattnerfc9511c2008-01-12 19:32:28 +0000189 else
Argiris Kirtzidis95256e62008-06-28 06:07:14 +0000190 Length = getCurMethodDecl()->getSynthesizedMethodSize();
Chris Lattnere12ca5d2008-01-12 18:39:25 +0000191
Chris Lattnerfc9511c2008-01-12 19:32:28 +0000192 llvm::APInt LengthI(32, Length + 1);
Chris Lattnere12ca5d2008-01-12 18:39:25 +0000193 QualType ResTy = Context.CharTy.getQualifiedType(QualType::Const);
Chris Lattnerfc9511c2008-01-12 19:32:28 +0000194 ResTy = Context.getConstantArrayType(ResTy, LengthI, ArrayType::Normal, 0);
Chris Lattner7e637512008-01-12 08:14:25 +0000195 return new PreDefinedExpr(Loc, ResTy, IT);
Chris Lattner4b009652007-07-25 00:24:17 +0000196}
197
Steve Naroff87d58b42007-09-16 03:34:24 +0000198Sema::ExprResult Sema::ActOnCharacterConstant(const Token &Tok) {
Chris Lattner4b009652007-07-25 00:24:17 +0000199 llvm::SmallString<16> CharBuffer;
200 CharBuffer.resize(Tok.getLength());
201 const char *ThisTokBegin = &CharBuffer[0];
202 unsigned ActualLength = PP.getSpelling(Tok, ThisTokBegin);
203
204 CharLiteralParser Literal(ThisTokBegin, ThisTokBegin+ActualLength,
205 Tok.getLocation(), PP);
206 if (Literal.hadError())
207 return ExprResult(true);
Chris Lattner6b22fb72008-03-01 08:32:21 +0000208
209 QualType type = getLangOptions().CPlusPlus ? Context.CharTy : Context.IntTy;
210
Chris Lattner1aaf71c2008-06-07 22:35:38 +0000211 return new CharacterLiteral(Literal.getValue(), Literal.isWide(), type,
212 Tok.getLocation());
Chris Lattner4b009652007-07-25 00:24:17 +0000213}
214
Steve Naroff87d58b42007-09-16 03:34:24 +0000215Action::ExprResult Sema::ActOnNumericConstant(const Token &Tok) {
Chris Lattner4b009652007-07-25 00:24:17 +0000216 // fast path for a single digit (which is quite common). A single digit
217 // cannot have a trigraph, escaped newline, radix prefix, or type suffix.
218 if (Tok.getLength() == 1) {
Chris Lattner48d7f382008-04-02 04:24:33 +0000219 const char *Ty = PP.getSourceManager().getCharacterData(Tok.getLocation());
Chris Lattner4b009652007-07-25 00:24:17 +0000220
Chris Lattner8cd0e932008-03-05 18:54:05 +0000221 unsigned IntSize =static_cast<unsigned>(Context.getTypeSize(Context.IntTy));
Chris Lattner48d7f382008-04-02 04:24:33 +0000222 return ExprResult(new IntegerLiteral(llvm::APInt(IntSize, *Ty-'0'),
Chris Lattner4b009652007-07-25 00:24:17 +0000223 Context.IntTy,
224 Tok.getLocation()));
225 }
226 llvm::SmallString<512> IntegerBuffer;
227 IntegerBuffer.resize(Tok.getLength());
228 const char *ThisTokBegin = &IntegerBuffer[0];
229
230 // Get the spelling of the token, which eliminates trigraphs, etc.
231 unsigned ActualLength = PP.getSpelling(Tok, ThisTokBegin);
232 NumericLiteralParser Literal(ThisTokBegin, ThisTokBegin+ActualLength,
233 Tok.getLocation(), PP);
234 if (Literal.hadError)
235 return ExprResult(true);
236
Chris Lattner1de66eb2007-08-26 03:42:43 +0000237 Expr *Res;
238
239 if (Literal.isFloatingLiteral()) {
Chris Lattner858eece2007-09-22 18:29:59 +0000240 QualType Ty;
Chris Lattner2a674dc2008-06-30 18:32:54 +0000241 if (Literal.isFloat)
Chris Lattner858eece2007-09-22 18:29:59 +0000242 Ty = Context.FloatTy;
Chris Lattner2a674dc2008-06-30 18:32:54 +0000243 else if (!Literal.isLong)
Chris Lattner858eece2007-09-22 18:29:59 +0000244 Ty = Context.DoubleTy;
Chris Lattner2a674dc2008-06-30 18:32:54 +0000245 else
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000246 Ty = Context.LongDoubleTy;
Chris Lattner2a674dc2008-06-30 18:32:54 +0000247
248 const llvm::fltSemantics &Format = Context.getFloatTypeSemantics(Ty);
249
Ted Kremenekddedbe22007-11-29 00:56:49 +0000250 // isExact will be set by GetFloatValue().
251 bool isExact = false;
Chris Lattner2a674dc2008-06-30 18:32:54 +0000252 Res = new FloatingLiteral(Literal.GetFloatValue(Format, &isExact), &isExact,
Ted Kremenekddedbe22007-11-29 00:56:49 +0000253 Ty, Tok.getLocation());
254
Chris Lattner1de66eb2007-08-26 03:42:43 +0000255 } else if (!Literal.isIntegerLiteral()) {
256 return ExprResult(true);
257 } else {
Chris Lattner48d7f382008-04-02 04:24:33 +0000258 QualType Ty;
Chris Lattner4b009652007-07-25 00:24:17 +0000259
Neil Booth7421e9c2007-08-29 22:00:19 +0000260 // long long is a C99 feature.
261 if (!getLangOptions().C99 && !getLangOptions().CPlusPlus0x &&
Neil Booth9bd47082007-08-29 22:13:52 +0000262 Literal.isLongLong)
Neil Booth7421e9c2007-08-29 22:00:19 +0000263 Diag(Tok.getLocation(), diag::ext_longlong);
264
Chris Lattner4b009652007-07-25 00:24:17 +0000265 // Get the value in the widest-possible width.
Chris Lattner8cd0e932008-03-05 18:54:05 +0000266 llvm::APInt ResultVal(Context.Target.getIntMaxTWidth(), 0);
Chris Lattner4b009652007-07-25 00:24:17 +0000267
268 if (Literal.GetIntegerValue(ResultVal)) {
269 // If this value didn't fit into uintmax_t, warn and force to ull.
270 Diag(Tok.getLocation(), diag::warn_integer_too_large);
Chris Lattner48d7f382008-04-02 04:24:33 +0000271 Ty = Context.UnsignedLongLongTy;
272 assert(Context.getTypeSize(Ty) == ResultVal.getBitWidth() &&
Chris Lattner8cd0e932008-03-05 18:54:05 +0000273 "long long is not intmax_t?");
Chris Lattner4b009652007-07-25 00:24:17 +0000274 } else {
275 // If this value fits into a ULL, try to figure out what else it fits into
276 // according to the rules of C99 6.4.4.1p5.
277
278 // Octal, Hexadecimal, and integers with a U suffix are allowed to
279 // be an unsigned int.
280 bool AllowUnsigned = Literal.isUnsigned || Literal.getRadix() != 10;
281
282 // Check from smallest to largest, picking the smallest type we can.
Chris Lattnere4068872008-05-09 05:59:00 +0000283 unsigned Width = 0;
Chris Lattner98540b62007-08-23 21:58:08 +0000284 if (!Literal.isLong && !Literal.isLongLong) {
285 // Are int/unsigned possibilities?
Chris Lattnere4068872008-05-09 05:59:00 +0000286 unsigned IntSize = Context.Target.getIntWidth();
287
Chris Lattner4b009652007-07-25 00:24:17 +0000288 // Does it fit in a unsigned int?
289 if (ResultVal.isIntN(IntSize)) {
290 // Does it fit in a signed int?
291 if (!Literal.isUnsigned && ResultVal[IntSize-1] == 0)
Chris Lattner48d7f382008-04-02 04:24:33 +0000292 Ty = Context.IntTy;
Chris Lattner4b009652007-07-25 00:24:17 +0000293 else if (AllowUnsigned)
Chris Lattner48d7f382008-04-02 04:24:33 +0000294 Ty = Context.UnsignedIntTy;
Chris Lattnere4068872008-05-09 05:59:00 +0000295 Width = IntSize;
Chris Lattner4b009652007-07-25 00:24:17 +0000296 }
Chris Lattner4b009652007-07-25 00:24:17 +0000297 }
298
299 // Are long/unsigned long possibilities?
Chris Lattner48d7f382008-04-02 04:24:33 +0000300 if (Ty.isNull() && !Literal.isLongLong) {
Chris Lattnere4068872008-05-09 05:59:00 +0000301 unsigned LongSize = Context.Target.getLongWidth();
Chris Lattner4b009652007-07-25 00:24:17 +0000302
303 // Does it fit in a unsigned long?
304 if (ResultVal.isIntN(LongSize)) {
305 // Does it fit in a signed long?
306 if (!Literal.isUnsigned && ResultVal[LongSize-1] == 0)
Chris Lattner48d7f382008-04-02 04:24:33 +0000307 Ty = Context.LongTy;
Chris Lattner4b009652007-07-25 00:24:17 +0000308 else if (AllowUnsigned)
Chris Lattner48d7f382008-04-02 04:24:33 +0000309 Ty = Context.UnsignedLongTy;
Chris Lattnere4068872008-05-09 05:59:00 +0000310 Width = LongSize;
Chris Lattner4b009652007-07-25 00:24:17 +0000311 }
Chris Lattner4b009652007-07-25 00:24:17 +0000312 }
313
314 // Finally, check long long if needed.
Chris Lattner48d7f382008-04-02 04:24:33 +0000315 if (Ty.isNull()) {
Chris Lattnere4068872008-05-09 05:59:00 +0000316 unsigned LongLongSize = Context.Target.getLongLongWidth();
Chris Lattner4b009652007-07-25 00:24:17 +0000317
318 // Does it fit in a unsigned long long?
319 if (ResultVal.isIntN(LongLongSize)) {
320 // Does it fit in a signed long long?
321 if (!Literal.isUnsigned && ResultVal[LongLongSize-1] == 0)
Chris Lattner48d7f382008-04-02 04:24:33 +0000322 Ty = Context.LongLongTy;
Chris Lattner4b009652007-07-25 00:24:17 +0000323 else if (AllowUnsigned)
Chris Lattner48d7f382008-04-02 04:24:33 +0000324 Ty = Context.UnsignedLongLongTy;
Chris Lattnere4068872008-05-09 05:59:00 +0000325 Width = LongLongSize;
Chris Lattner4b009652007-07-25 00:24:17 +0000326 }
327 }
328
329 // If we still couldn't decide a type, we probably have something that
330 // does not fit in a signed long long, but has no U suffix.
Chris Lattner48d7f382008-04-02 04:24:33 +0000331 if (Ty.isNull()) {
Chris Lattner4b009652007-07-25 00:24:17 +0000332 Diag(Tok.getLocation(), diag::warn_integer_too_large_for_signed);
Chris Lattner48d7f382008-04-02 04:24:33 +0000333 Ty = Context.UnsignedLongLongTy;
Chris Lattnere4068872008-05-09 05:59:00 +0000334 Width = Context.Target.getLongLongWidth();
Chris Lattner4b009652007-07-25 00:24:17 +0000335 }
Chris Lattnere4068872008-05-09 05:59:00 +0000336
337 if (ResultVal.getBitWidth() != Width)
338 ResultVal.trunc(Width);
Chris Lattner4b009652007-07-25 00:24:17 +0000339 }
340
Chris Lattner48d7f382008-04-02 04:24:33 +0000341 Res = new IntegerLiteral(ResultVal, Ty, Tok.getLocation());
Chris Lattner4b009652007-07-25 00:24:17 +0000342 }
Chris Lattner1de66eb2007-08-26 03:42:43 +0000343
344 // If this is an imaginary literal, create the ImaginaryLiteral wrapper.
345 if (Literal.isImaginary)
346 Res = new ImaginaryLiteral(Res, Context.getComplexType(Res->getType()));
347
348 return Res;
Chris Lattner4b009652007-07-25 00:24:17 +0000349}
350
Steve Naroff87d58b42007-09-16 03:34:24 +0000351Action::ExprResult Sema::ActOnParenExpr(SourceLocation L, SourceLocation R,
Chris Lattner4b009652007-07-25 00:24:17 +0000352 ExprTy *Val) {
Chris Lattner48d7f382008-04-02 04:24:33 +0000353 Expr *E = (Expr *)Val;
354 assert((E != 0) && "ActOnParenExpr() missing expr");
355 return new ParenExpr(L, R, E);
Chris Lattner4b009652007-07-25 00:24:17 +0000356}
357
358/// The UsualUnaryConversions() function is *not* called by this routine.
359/// See C99 6.3.2.1p[2-4] for more details.
360QualType Sema::CheckSizeOfAlignOfOperand(QualType exprType,
361 SourceLocation OpLoc, bool isSizeof) {
362 // C99 6.5.3.4p1:
363 if (isa<FunctionType>(exprType) && isSizeof)
364 // alignof(function) is allowed.
365 Diag(OpLoc, diag::ext_sizeof_function_type);
366 else if (exprType->isVoidType())
367 Diag(OpLoc, diag::ext_sizeof_void_type, isSizeof ? "sizeof" : "__alignof");
368 else if (exprType->isIncompleteType()) {
369 Diag(OpLoc, isSizeof ? diag::err_sizeof_incomplete_type :
370 diag::err_alignof_incomplete_type,
371 exprType.getAsString());
372 return QualType(); // error
373 }
374 // C99 6.5.3.4p4: the type (an unsigned integer type) is size_t.
375 return Context.getSizeType();
376}
377
378Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000379ActOnSizeOfAlignOfTypeExpr(SourceLocation OpLoc, bool isSizeof,
Chris Lattner4b009652007-07-25 00:24:17 +0000380 SourceLocation LPLoc, TypeTy *Ty,
381 SourceLocation RPLoc) {
382 // If error parsing type, ignore.
383 if (Ty == 0) return true;
384
385 // Verify that this is a valid expression.
386 QualType ArgTy = QualType::getFromOpaquePtr(Ty);
387
388 QualType resultType = CheckSizeOfAlignOfOperand(ArgTy, OpLoc, isSizeof);
389
390 if (resultType.isNull())
391 return true;
392 return new SizeOfAlignOfTypeExpr(isSizeof, ArgTy, resultType, OpLoc, RPLoc);
393}
394
Chris Lattner5110ad52007-08-24 21:41:10 +0000395QualType Sema::CheckRealImagOperand(Expr *&V, SourceLocation Loc) {
Chris Lattner03931a72007-08-24 21:16:53 +0000396 DefaultFunctionArrayConversion(V);
397
Chris Lattnera16e42d2007-08-26 05:39:26 +0000398 // These operators return the element type of a complex type.
Chris Lattner03931a72007-08-24 21:16:53 +0000399 if (const ComplexType *CT = V->getType()->getAsComplexType())
400 return CT->getElementType();
Chris Lattnera16e42d2007-08-26 05:39:26 +0000401
402 // Otherwise they pass through real integer and floating point types here.
403 if (V->getType()->isArithmeticType())
404 return V->getType();
405
406 // Reject anything else.
407 Diag(Loc, diag::err_realimag_invalid_type, V->getType().getAsString());
408 return QualType();
Chris Lattner03931a72007-08-24 21:16:53 +0000409}
410
411
Chris Lattner4b009652007-07-25 00:24:17 +0000412
Steve Naroff87d58b42007-09-16 03:34:24 +0000413Action::ExprResult Sema::ActOnPostfixUnaryOp(SourceLocation OpLoc,
Chris Lattner4b009652007-07-25 00:24:17 +0000414 tok::TokenKind Kind,
415 ExprTy *Input) {
416 UnaryOperator::Opcode Opc;
417 switch (Kind) {
418 default: assert(0 && "Unknown unary op!");
419 case tok::plusplus: Opc = UnaryOperator::PostInc; break;
420 case tok::minusminus: Opc = UnaryOperator::PostDec; break;
421 }
422 QualType result = CheckIncrementDecrementOperand((Expr *)Input, OpLoc);
423 if (result.isNull())
424 return true;
425 return new UnaryOperator((Expr *)Input, Opc, result, OpLoc);
426}
427
428Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000429ActOnArraySubscriptExpr(ExprTy *Base, SourceLocation LLoc,
Chris Lattner4b009652007-07-25 00:24:17 +0000430 ExprTy *Idx, SourceLocation RLoc) {
431 Expr *LHSExp = static_cast<Expr*>(Base), *RHSExp = static_cast<Expr*>(Idx);
432
433 // Perform default conversions.
434 DefaultFunctionArrayConversion(LHSExp);
435 DefaultFunctionArrayConversion(RHSExp);
436
437 QualType LHSTy = LHSExp->getType(), RHSTy = RHSExp->getType();
438
439 // C99 6.5.2.1p2: the expression e1[e2] is by definition precisely equivalent
Chris Lattner0d9bcea2007-08-30 17:45:32 +0000440 // to the expression *((e1)+(e2)). This means the array "Base" may actually be
Chris Lattner4b009652007-07-25 00:24:17 +0000441 // in the subscript position. As a result, we need to derive the array base
442 // and index from the expression types.
443 Expr *BaseExpr, *IndexExpr;
444 QualType ResultType;
Chris Lattner7931f4a2007-07-31 16:53:04 +0000445 if (const PointerType *PTy = LHSTy->getAsPointerType()) {
Chris Lattner4b009652007-07-25 00:24:17 +0000446 BaseExpr = LHSExp;
447 IndexExpr = RHSExp;
448 // FIXME: need to deal with const...
449 ResultType = PTy->getPointeeType();
Chris Lattner7931f4a2007-07-31 16:53:04 +0000450 } else if (const PointerType *PTy = RHSTy->getAsPointerType()) {
Chris Lattner4b009652007-07-25 00:24:17 +0000451 // Handle the uncommon case of "123[Ptr]".
452 BaseExpr = RHSExp;
453 IndexExpr = LHSExp;
454 // FIXME: need to deal with const...
455 ResultType = PTy->getPointeeType();
Chris Lattnere35a1042007-07-31 19:29:30 +0000456 } else if (const VectorType *VTy = LHSTy->getAsVectorType()) {
457 BaseExpr = LHSExp; // vectors: V[123]
Chris Lattner4b009652007-07-25 00:24:17 +0000458 IndexExpr = RHSExp;
Steve Naroff89345522007-08-03 22:40:33 +0000459
460 // Component access limited to variables (reject vec4.rg[1]).
Nate Begemanc8e51f82008-05-09 06:41:27 +0000461 if (!isa<DeclRefExpr>(BaseExpr) && !isa<ArraySubscriptExpr>(BaseExpr) &&
462 !isa<ExtVectorElementExpr>(BaseExpr))
Nate Begemanaf6ed502008-04-18 23:10:10 +0000463 return Diag(LLoc, diag::err_ext_vector_component_access,
Steve Naroff89345522007-08-03 22:40:33 +0000464 SourceRange(LLoc, RLoc));
Chris Lattner4b009652007-07-25 00:24:17 +0000465 // FIXME: need to deal with const...
466 ResultType = VTy->getElementType();
467 } else {
468 return Diag(LHSExp->getLocStart(), diag::err_typecheck_subscript_value,
469 RHSExp->getSourceRange());
470 }
471 // C99 6.5.2.1p1
472 if (!IndexExpr->getType()->isIntegerType())
473 return Diag(IndexExpr->getLocStart(), diag::err_typecheck_subscript,
474 IndexExpr->getSourceRange());
475
476 // C99 6.5.2.1p1: "shall have type "pointer to *object* type". In practice,
477 // the following check catches trying to index a pointer to a function (e.g.
Chris Lattner9db553e2008-04-02 06:59:01 +0000478 // void (*)(int)) and pointers to incomplete types. Functions are not
479 // objects in C99.
Chris Lattner4b009652007-07-25 00:24:17 +0000480 if (!ResultType->isObjectType())
481 return Diag(BaseExpr->getLocStart(),
482 diag::err_typecheck_subscript_not_object,
483 BaseExpr->getType().getAsString(), BaseExpr->getSourceRange());
484
485 return new ArraySubscriptExpr(LHSExp, RHSExp, ResultType, RLoc);
486}
487
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000488QualType Sema::
Nate Begemanaf6ed502008-04-18 23:10:10 +0000489CheckExtVectorComponent(QualType baseType, SourceLocation OpLoc,
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000490 IdentifierInfo &CompName, SourceLocation CompLoc) {
Nate Begemanaf6ed502008-04-18 23:10:10 +0000491 const ExtVectorType *vecType = baseType->getAsExtVectorType();
Nate Begemanc8e51f82008-05-09 06:41:27 +0000492
493 // This flag determines whether or not the component is to be treated as a
494 // special name, or a regular GLSL-style component access.
495 bool SpecialComponent = false;
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000496
497 // The vector accessor can't exceed the number of elements.
498 const char *compStr = CompName.getName();
499 if (strlen(compStr) > vecType->getNumElements()) {
Nate Begemanaf6ed502008-04-18 23:10:10 +0000500 Diag(OpLoc, diag::err_ext_vector_component_exceeds_length,
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000501 baseType.getAsString(), SourceRange(CompLoc));
502 return QualType();
503 }
Nate Begemanc8e51f82008-05-09 06:41:27 +0000504
505 // Check that we've found one of the special components, or that the component
506 // names must come from the same set.
507 if (!strcmp(compStr, "hi") || !strcmp(compStr, "lo") ||
508 !strcmp(compStr, "e") || !strcmp(compStr, "o")) {
509 SpecialComponent = true;
510 } else if (vecType->getPointAccessorIdx(*compStr) != -1) {
Chris Lattner9096b792007-08-02 22:33:49 +0000511 do
512 compStr++;
513 while (*compStr && vecType->getPointAccessorIdx(*compStr) != -1);
514 } else if (vecType->getColorAccessorIdx(*compStr) != -1) {
515 do
516 compStr++;
517 while (*compStr && vecType->getColorAccessorIdx(*compStr) != -1);
518 } else if (vecType->getTextureAccessorIdx(*compStr) != -1) {
519 do
520 compStr++;
521 while (*compStr && vecType->getTextureAccessorIdx(*compStr) != -1);
522 }
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000523
Nate Begemanc8e51f82008-05-09 06:41:27 +0000524 if (!SpecialComponent && *compStr) {
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000525 // We didn't get to the end of the string. This means the component names
526 // didn't come from the same set *or* we encountered an illegal name.
Nate Begemanaf6ed502008-04-18 23:10:10 +0000527 Diag(OpLoc, diag::err_ext_vector_component_name_illegal,
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000528 std::string(compStr,compStr+1), SourceRange(CompLoc));
529 return QualType();
530 }
531 // Each component accessor can't exceed the vector type.
532 compStr = CompName.getName();
533 while (*compStr) {
534 if (vecType->isAccessorWithinNumElements(*compStr))
535 compStr++;
536 else
537 break;
538 }
Nate Begemanc8e51f82008-05-09 06:41:27 +0000539 if (!SpecialComponent && *compStr) {
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000540 // We didn't get to the end of the string. This means a component accessor
541 // exceeds the number of elements in the vector.
Nate Begemanaf6ed502008-04-18 23:10:10 +0000542 Diag(OpLoc, diag::err_ext_vector_component_exceeds_length,
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000543 baseType.getAsString(), SourceRange(CompLoc));
544 return QualType();
545 }
Nate Begemanc8e51f82008-05-09 06:41:27 +0000546
547 // If we have a special component name, verify that the current vector length
548 // is an even number, since all special component names return exactly half
549 // the elements.
550 if (SpecialComponent && (vecType->getNumElements() & 1U)) {
551 return QualType();
552 }
553
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000554 // The component accessor looks fine - now we need to compute the actual type.
555 // The vector type is implied by the component accessor. For example,
556 // vec4.b is a float, vec4.xy is a vec2, vec4.rgb is a vec3, etc.
Nate Begemanc8e51f82008-05-09 06:41:27 +0000557 // vec4.hi, vec4.lo, vec4.e, and vec4.o all return vec2.
558 unsigned CompSize = SpecialComponent ? vecType->getNumElements() / 2
559 : strlen(CompName.getName());
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000560 if (CompSize == 1)
561 return vecType->getElementType();
Steve Naroff82113e32007-07-29 16:33:31 +0000562
Nate Begemanaf6ed502008-04-18 23:10:10 +0000563 QualType VT = Context.getExtVectorType(vecType->getElementType(), CompSize);
Steve Naroff82113e32007-07-29 16:33:31 +0000564 // Now look up the TypeDefDecl from the vector type. Without this,
Nate Begemanaf6ed502008-04-18 23:10:10 +0000565 // diagostics look bad. We want extended vector types to appear built-in.
566 for (unsigned i = 0, E = ExtVectorDecls.size(); i != E; ++i) {
567 if (ExtVectorDecls[i]->getUnderlyingType() == VT)
568 return Context.getTypedefType(ExtVectorDecls[i]);
Steve Naroff82113e32007-07-29 16:33:31 +0000569 }
570 return VT; // should never get here (a typedef type should always be found).
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000571}
572
Chris Lattner4b009652007-07-25 00:24:17 +0000573Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000574ActOnMemberReferenceExpr(ExprTy *Base, SourceLocation OpLoc,
Chris Lattner4b009652007-07-25 00:24:17 +0000575 tok::TokenKind OpKind, SourceLocation MemberLoc,
576 IdentifierInfo &Member) {
Steve Naroff2cb66382007-07-26 03:11:44 +0000577 Expr *BaseExpr = static_cast<Expr *>(Base);
578 assert(BaseExpr && "no record expression");
Steve Naroff137e11d2007-12-16 21:42:28 +0000579
580 // Perform default conversions.
581 DefaultFunctionArrayConversion(BaseExpr);
Chris Lattner4b009652007-07-25 00:24:17 +0000582
Steve Naroff2cb66382007-07-26 03:11:44 +0000583 QualType BaseType = BaseExpr->getType();
584 assert(!BaseType.isNull() && "no type for member expression");
Chris Lattner4b009652007-07-25 00:24:17 +0000585
Chris Lattner4b009652007-07-25 00:24:17 +0000586 if (OpKind == tok::arrow) {
Chris Lattner7931f4a2007-07-31 16:53:04 +0000587 if (const PointerType *PT = BaseType->getAsPointerType())
Steve Naroff2cb66382007-07-26 03:11:44 +0000588 BaseType = PT->getPointeeType();
589 else
590 return Diag(OpLoc, diag::err_typecheck_member_reference_arrow,
591 SourceRange(MemberLoc));
Chris Lattner4b009652007-07-25 00:24:17 +0000592 }
Chris Lattnera57cf472008-07-21 04:28:12 +0000593
594 // Handle field access to simple records.
Chris Lattnere35a1042007-07-31 19:29:30 +0000595 if (const RecordType *RTy = BaseType->getAsRecordType()) {
Steve Naroff2cb66382007-07-26 03:11:44 +0000596 RecordDecl *RDecl = RTy->getDecl();
597 if (RTy->isIncompleteType())
598 return Diag(OpLoc, diag::err_typecheck_incomplete_tag, RDecl->getName(),
599 BaseExpr->getSourceRange());
600 // The record definition is complete, now make sure the member is valid.
Steve Naroff1b8a46c2007-07-27 22:15:19 +0000601 FieldDecl *MemberDecl = RDecl->getMember(&Member);
602 if (!MemberDecl)
Steve Naroff2cb66382007-07-26 03:11:44 +0000603 return Diag(OpLoc, diag::err_typecheck_no_member, Member.getName(),
604 SourceRange(MemberLoc));
Eli Friedman76b49832008-02-06 22:48:16 +0000605
606 // Figure out the type of the member; see C99 6.5.2.3p3
Eli Friedmanaedabcf2008-02-07 05:24:51 +0000607 // FIXME: Handle address space modifiers
Eli Friedman76b49832008-02-06 22:48:16 +0000608 QualType MemberType = MemberDecl->getType();
609 unsigned combinedQualifiers =
Chris Lattner35fef522008-02-20 20:55:12 +0000610 MemberType.getCVRQualifiers() | BaseType.getCVRQualifiers();
Eli Friedman76b49832008-02-06 22:48:16 +0000611 MemberType = MemberType.getQualifiedType(combinedQualifiers);
612
613 return new MemberExpr(BaseExpr, OpKind==tok::arrow, MemberDecl,
614 MemberLoc, MemberType);
Chris Lattnera57cf472008-07-21 04:28:12 +0000615 }
616
617 // Handle access to Objective C instance variables, such as "Obj->ivar".
618 if (BaseType->isObjCInterfaceType()) {
Ted Kremenek42730c52008-01-07 19:49:32 +0000619 ObjCInterfaceDecl *IFace;
Steve Naroffd1f0eb42008-06-05 13:55:23 +0000620 QualType CanonType = BaseType.getCanonicalType();
621 if (isa<ObjCInterfaceType>(CanonType))
622 IFace = dyn_cast<ObjCInterfaceType>(CanonType)->getDecl();
Fariborz Jahanian4af72492007-11-12 22:29:28 +0000623 else
Steve Naroffd1f0eb42008-06-05 13:55:23 +0000624 IFace = dyn_cast<ObjCQualifiedInterfaceType>(CanonType)->getDecl();
Ted Kremenek42730c52008-01-07 19:49:32 +0000625 ObjCInterfaceDecl *clsDeclared;
626 if (ObjCIvarDecl *IV = IFace->lookupInstanceVariable(&Member, clsDeclared))
Fariborz Jahanian4af72492007-11-12 22:29:28 +0000627 return new ObjCIvarRefExpr(IV, IV->getType(), MemberLoc, BaseExpr,
Chris Lattnera57cf472008-07-21 04:28:12 +0000628 OpKind == tok::arrow);
629 return Diag(OpLoc, diag::err_typecheck_member_reference_structUnion,
630 SourceRange(MemberLoc));
631 }
632
633 if (isObjCObjectPointerType(BaseType)) {
634 const PointerType *pointerType = BaseType->getAsPointerType();
Steve Naroff05391d22008-05-30 00:40:33 +0000635 BaseType = pointerType->getPointeeType();
636 ObjCInterfaceDecl *IFace;
Steve Naroffd1f0eb42008-06-05 13:55:23 +0000637 QualType CanonType = BaseType.getCanonicalType();
638 if (isa<ObjCInterfaceType>(CanonType))
639 IFace = dyn_cast<ObjCInterfaceType>(CanonType)->getDecl();
Steve Naroff05391d22008-05-30 00:40:33 +0000640 else
Steve Naroffd1f0eb42008-06-05 13:55:23 +0000641 IFace = dyn_cast<ObjCQualifiedInterfaceType>(CanonType)->getDecl();
Steve Naroff05391d22008-05-30 00:40:33 +0000642 ObjCInterfaceDecl *clsDeclared;
643 if (ObjCIvarDecl *IV = IFace->lookupInstanceVariable(&Member, clsDeclared))
644 return new ObjCIvarRefExpr(IV, IV->getType(), MemberLoc, BaseExpr,
645 OpKind==tok::arrow);
646 // Check for properties.
647 if (OpKind==tok::period) {
648 // Before we look for explicit property declarations, we check for
649 // nullary methods (which allow '.' notation).
650 Selector Sel = PP.getSelectorTable().getNullarySelector(&Member);
651 ObjCMethodDecl *MD = IFace->lookupInstanceMethod(Sel);
652 if (MD)
653 return new ObjCPropertyRefExpr(MD, MD->getResultType(),
654 MemberLoc, BaseExpr);
655 // FIXME: Need to deal with setter methods that take 1 argument. E.g.:
656 // @interface NSBundle : NSObject {}
657 // - (NSString *)bundlePath;
658 // - (void)setBundlePath:(NSString *)x;
659 // @end
660 // void someMethod() { frameworkBundle.bundlePath = 0; }
661 //
Steve Naroff858813d2008-06-03 21:56:14 +0000662 ObjCPropertyDecl *PD = IFace->FindPropertyDeclaration(&Member);
Steve Naroffd1f0eb42008-06-05 13:55:23 +0000663
664 if (!PD) { // Lastly, check protocols on qualified interfaces.
665 if (ObjCQualifiedInterfaceType *QIT =
666 dyn_cast<ObjCQualifiedInterfaceType>(CanonType)) {
667 for (unsigned i = 0; i < QIT->getNumProtocols(); i++)
668 if ((PD = QIT->getProtocols(i)->FindPropertyDeclaration(&Member)))
669 break;
670 }
671 }
Steve Naroff858813d2008-06-03 21:56:14 +0000672 if (PD)
673 return new ObjCPropertyRefExpr(PD, PD->getType(), MemberLoc, BaseExpr);
Steve Naroff05391d22008-05-30 00:40:33 +0000674 }
Fariborz Jahanian4af72492007-11-12 22:29:28 +0000675 }
Chris Lattnera57cf472008-07-21 04:28:12 +0000676
677 // Handle 'field access' to vectors, such as 'V.xx'.
678 if (BaseType->isExtVectorType() && OpKind == tok::period) {
679 // Component access limited to variables (reject vec4.rg.g).
680 if (!isa<DeclRefExpr>(BaseExpr) && !isa<ArraySubscriptExpr>(BaseExpr) &&
681 !isa<ExtVectorElementExpr>(BaseExpr))
682 return Diag(OpLoc, diag::err_ext_vector_component_access,
683 SourceRange(MemberLoc));
684 QualType ret = CheckExtVectorComponent(BaseType, OpLoc, Member, MemberLoc);
685 if (ret.isNull())
686 return true;
687 return new ExtVectorElementExpr(ret, BaseExpr, Member, MemberLoc);
688 }
689
Fariborz Jahanian4af72492007-11-12 22:29:28 +0000690 return Diag(OpLoc, diag::err_typecheck_member_reference_structUnion,
691 SourceRange(MemberLoc));
Chris Lattner4b009652007-07-25 00:24:17 +0000692}
693
Steve Naroff87d58b42007-09-16 03:34:24 +0000694/// ActOnCallExpr - Handle a call to Fn with the specified array of arguments.
Chris Lattner4b009652007-07-25 00:24:17 +0000695/// This provides the location of the left/right parens and a list of comma
696/// locations.
697Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000698ActOnCallExpr(ExprTy *fn, SourceLocation LParenLoc,
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000699 ExprTy **args, unsigned NumArgs,
Chris Lattner4b009652007-07-25 00:24:17 +0000700 SourceLocation *CommaLocs, SourceLocation RParenLoc) {
701 Expr *Fn = static_cast<Expr *>(fn);
702 Expr **Args = reinterpret_cast<Expr**>(args);
703 assert(Fn && "no function call expression");
Chris Lattner3e254fb2008-04-08 04:40:51 +0000704 FunctionDecl *FDecl = NULL;
Chris Lattner3e254fb2008-04-08 04:40:51 +0000705
706 // Promote the function operand.
707 UsualUnaryConversions(Fn);
708
709 // If we're directly calling a function, get the declaration for
710 // that function.
711 if (ImplicitCastExpr *IcExpr = dyn_cast<ImplicitCastExpr>(Fn))
712 if (DeclRefExpr *DRExpr = dyn_cast<DeclRefExpr>(IcExpr->getSubExpr()))
713 FDecl = dyn_cast<FunctionDecl>(DRExpr->getDecl());
714
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000715 // Make the call expr early, before semantic checks. This guarantees cleanup
716 // of arguments and function on error.
Chris Lattner97316c02008-04-10 02:22:51 +0000717 llvm::OwningPtr<CallExpr> TheCall(new CallExpr(Fn, Args, NumArgs,
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000718 Context.BoolTy, RParenLoc));
719
Chris Lattner4b009652007-07-25 00:24:17 +0000720 // C99 6.5.2.2p1 - "The expression that denotes the called function shall have
721 // type pointer to function".
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000722 const PointerType *PT = Fn->getType()->getAsPointerType();
Chris Lattner4b009652007-07-25 00:24:17 +0000723 if (PT == 0)
724 return Diag(Fn->getLocStart(), diag::err_typecheck_call_not_function,
725 SourceRange(Fn->getLocStart(), RParenLoc));
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000726 const FunctionType *FuncT = PT->getPointeeType()->getAsFunctionType();
727 if (FuncT == 0)
Chris Lattner4b009652007-07-25 00:24:17 +0000728 return Diag(Fn->getLocStart(), diag::err_typecheck_call_not_function,
729 SourceRange(Fn->getLocStart(), RParenLoc));
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000730
731 // We know the result type of the call, set it.
732 TheCall->setType(FuncT->getResultType());
Chris Lattner4b009652007-07-25 00:24:17 +0000733
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000734 if (const FunctionTypeProto *Proto = dyn_cast<FunctionTypeProto>(FuncT)) {
Chris Lattner4b009652007-07-25 00:24:17 +0000735 // C99 6.5.2.2p7 - the arguments are implicitly converted, as if by
736 // assignment, to the types of the corresponding parameter, ...
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000737 unsigned NumArgsInProto = Proto->getNumArgs();
738 unsigned NumArgsToCheck = NumArgs;
Chris Lattner4b009652007-07-25 00:24:17 +0000739
Chris Lattner3e254fb2008-04-08 04:40:51 +0000740 // If too few arguments are available (and we don't have default
741 // arguments for the remaining parameters), don't make the call.
742 if (NumArgs < NumArgsInProto) {
Chris Lattner97316c02008-04-10 02:22:51 +0000743 if (FDecl && NumArgs >= FDecl->getMinRequiredArguments()) {
Chris Lattner3e254fb2008-04-08 04:40:51 +0000744 // Use default arguments for missing arguments
745 NumArgsToCheck = NumArgsInProto;
Chris Lattner97316c02008-04-10 02:22:51 +0000746 TheCall->setNumArgs(NumArgsInProto);
Chris Lattner3e254fb2008-04-08 04:40:51 +0000747 } else
748 return Diag(RParenLoc, diag::err_typecheck_call_too_few_args,
749 Fn->getSourceRange());
750 }
751
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000752 // If too many are passed and not variadic, error on the extras and drop
753 // them.
754 if (NumArgs > NumArgsInProto) {
755 if (!Proto->isVariadic()) {
Chris Lattner4b009652007-07-25 00:24:17 +0000756 Diag(Args[NumArgsInProto]->getLocStart(),
757 diag::err_typecheck_call_too_many_args, Fn->getSourceRange(),
758 SourceRange(Args[NumArgsInProto]->getLocStart(),
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000759 Args[NumArgs-1]->getLocEnd()));
760 // This deletes the extra arguments.
761 TheCall->setNumArgs(NumArgsInProto);
Chris Lattner4b009652007-07-25 00:24:17 +0000762 }
763 NumArgsToCheck = NumArgsInProto;
764 }
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000765
Chris Lattner4b009652007-07-25 00:24:17 +0000766 // Continue to check argument types (even if we have too few/many args).
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000767 for (unsigned i = 0; i != NumArgsToCheck; i++) {
Chris Lattner005ed752008-01-04 18:04:52 +0000768 QualType ProtoArgType = Proto->getArgType(i);
Chris Lattner3e254fb2008-04-08 04:40:51 +0000769
770 Expr *Arg;
771 if (i < NumArgs)
772 Arg = Args[i];
773 else
774 Arg = new CXXDefaultArgExpr(FDecl->getParamDecl(i));
Chris Lattner005ed752008-01-04 18:04:52 +0000775 QualType ArgType = Arg->getType();
Chris Lattner4b009652007-07-25 00:24:17 +0000776
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000777 // Compute implicit casts from the operand to the formal argument type.
Chris Lattner005ed752008-01-04 18:04:52 +0000778 AssignConvertType ConvTy =
779 CheckSingleAssignmentConstraints(ProtoArgType, Arg);
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000780 TheCall->setArg(i, Arg);
781
Chris Lattner005ed752008-01-04 18:04:52 +0000782 if (DiagnoseAssignmentResult(ConvTy, Arg->getLocStart(), ProtoArgType,
783 ArgType, Arg, "passing"))
784 return true;
Chris Lattner4b009652007-07-25 00:24:17 +0000785 }
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000786
787 // If this is a variadic call, handle args passed through "...".
788 if (Proto->isVariadic()) {
Steve Naroffdb65e052007-08-28 23:30:39 +0000789 // Promote the arguments (C99 6.5.2.2p7).
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000790 for (unsigned i = NumArgsInProto; i != NumArgs; i++) {
791 Expr *Arg = Args[i];
792 DefaultArgumentPromotion(Arg);
793 TheCall->setArg(i, Arg);
Steve Naroffdb65e052007-08-28 23:30:39 +0000794 }
Steve Naroffdb65e052007-08-28 23:30:39 +0000795 }
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000796 } else {
797 assert(isa<FunctionTypeNoProto>(FuncT) && "Unknown FunctionType!");
798
Steve Naroffdb65e052007-08-28 23:30:39 +0000799 // Promote the arguments (C99 6.5.2.2p6).
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000800 for (unsigned i = 0; i != NumArgs; i++) {
801 Expr *Arg = Args[i];
802 DefaultArgumentPromotion(Arg);
803 TheCall->setArg(i, Arg);
Steve Naroffdb65e052007-08-28 23:30:39 +0000804 }
Chris Lattner4b009652007-07-25 00:24:17 +0000805 }
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000806
Chris Lattner2e64c072007-08-10 20:18:51 +0000807 // Do special checking on direct calls to functions.
Eli Friedmand0e9d092008-05-14 19:38:39 +0000808 if (FDecl)
809 return CheckFunctionCall(FDecl, TheCall.take());
Chris Lattner2e64c072007-08-10 20:18:51 +0000810
Chris Lattner83bd5eb2007-12-28 05:29:59 +0000811 return TheCall.take();
Chris Lattner4b009652007-07-25 00:24:17 +0000812}
813
814Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000815ActOnCompoundLiteral(SourceLocation LParenLoc, TypeTy *Ty,
Chris Lattner4b009652007-07-25 00:24:17 +0000816 SourceLocation RParenLoc, ExprTy *InitExpr) {
Steve Naroff87d58b42007-09-16 03:34:24 +0000817 assert((Ty != 0) && "ActOnCompoundLiteral(): missing type");
Chris Lattner4b009652007-07-25 00:24:17 +0000818 QualType literalType = QualType::getFromOpaquePtr(Ty);
819 // FIXME: put back this assert when initializers are worked out.
Steve Naroff87d58b42007-09-16 03:34:24 +0000820 //assert((InitExpr != 0) && "ActOnCompoundLiteral(): missing expression");
Chris Lattner4b009652007-07-25 00:24:17 +0000821 Expr *literalExpr = static_cast<Expr*>(InitExpr);
Anders Carlsson9374b852007-12-05 07:24:19 +0000822
Eli Friedman8c2173d2008-05-20 05:22:08 +0000823 if (literalType->isArrayType()) {
824 if (literalType->getAsVariableArrayType())
825 return Diag(LParenLoc,
826 diag::err_variable_object_no_init,
827 SourceRange(LParenLoc,
828 literalExpr->getSourceRange().getEnd()));
829 } else if (literalType->isIncompleteType()) {
830 return Diag(LParenLoc,
831 diag::err_typecheck_decl_incomplete_type,
832 literalType.getAsString(),
833 SourceRange(LParenLoc,
834 literalExpr->getSourceRange().getEnd()));
835 }
836
Steve Narofff0b23542008-01-10 22:15:12 +0000837 if (CheckInitializerTypes(literalExpr, literalType))
Steve Naroff92590f92008-01-09 20:58:06 +0000838 return true;
Steve Naroffbe37fc02008-01-14 18:19:28 +0000839
Argiris Kirtzidis95256e62008-06-28 06:07:14 +0000840 bool isFileScope = !getCurFunctionDecl() && !getCurMethodDecl();
Steve Naroffbe37fc02008-01-14 18:19:28 +0000841 if (isFileScope) { // 6.5.2.5p3
Steve Narofff0b23542008-01-10 22:15:12 +0000842 if (CheckForConstantInitializer(literalExpr, literalType))
843 return true;
844 }
Steve Naroffbe37fc02008-01-14 18:19:28 +0000845 return new CompoundLiteralExpr(LParenLoc, literalType, literalExpr, isFileScope);
Chris Lattner4b009652007-07-25 00:24:17 +0000846}
847
848Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000849ActOnInitList(SourceLocation LBraceLoc, ExprTy **initlist, unsigned NumInit,
Anders Carlsson762b7c72007-08-31 04:56:16 +0000850 SourceLocation RBraceLoc) {
Steve Naroffe14e5542007-09-02 02:04:30 +0000851 Expr **InitList = reinterpret_cast<Expr**>(initlist);
Anders Carlsson762b7c72007-08-31 04:56:16 +0000852
Steve Naroff0acc9c92007-09-15 18:49:24 +0000853 // Semantic analysis for initializers is done by ActOnDeclarator() and
Steve Naroff1c9de712007-09-03 01:24:23 +0000854 // CheckInitializer() - it requires knowledge of the object being intialized.
Anders Carlsson762b7c72007-08-31 04:56:16 +0000855
Chris Lattner48d7f382008-04-02 04:24:33 +0000856 InitListExpr *E = new InitListExpr(LBraceLoc, InitList, NumInit, RBraceLoc);
857 E->setType(Context.VoidTy); // FIXME: just a place holder for now.
858 return E;
Chris Lattner4b009652007-07-25 00:24:17 +0000859}
860
Chris Lattnerd1f26b32007-12-20 00:44:32 +0000861bool Sema::CheckVectorCast(SourceRange R, QualType VectorTy, QualType Ty) {
Anders Carlssonf257b4c2007-11-27 05:51:55 +0000862 assert(VectorTy->isVectorType() && "Not a vector type!");
863
864 if (Ty->isVectorType() || Ty->isIntegerType()) {
Chris Lattner8cd0e932008-03-05 18:54:05 +0000865 if (Context.getTypeSize(VectorTy) != Context.getTypeSize(Ty))
Anders Carlssonf257b4c2007-11-27 05:51:55 +0000866 return Diag(R.getBegin(),
867 Ty->isVectorType() ?
868 diag::err_invalid_conversion_between_vectors :
869 diag::err_invalid_conversion_between_vector_and_integer,
870 VectorTy.getAsString().c_str(),
871 Ty.getAsString().c_str(), R);
872 } else
873 return Diag(R.getBegin(),
874 diag::err_invalid_conversion_between_vector_and_scalar,
875 VectorTy.getAsString().c_str(),
876 Ty.getAsString().c_str(), R);
877
878 return false;
879}
880
Chris Lattner4b009652007-07-25 00:24:17 +0000881Action::ExprResult Sema::
Steve Naroff87d58b42007-09-16 03:34:24 +0000882ActOnCastExpr(SourceLocation LParenLoc, TypeTy *Ty,
Chris Lattner4b009652007-07-25 00:24:17 +0000883 SourceLocation RParenLoc, ExprTy *Op) {
Steve Naroff87d58b42007-09-16 03:34:24 +0000884 assert((Ty != 0) && (Op != 0) && "ActOnCastExpr(): missing type or expr");
Chris Lattner4b009652007-07-25 00:24:17 +0000885
886 Expr *castExpr = static_cast<Expr*>(Op);
887 QualType castType = QualType::getFromOpaquePtr(Ty);
888
Steve Naroff68adb482007-08-31 00:32:44 +0000889 UsualUnaryConversions(castExpr);
890
Chris Lattner4b009652007-07-25 00:24:17 +0000891 // C99 6.5.4p2: the cast type needs to be void or scalar and the expression
892 // type needs to be scalar.
Chris Lattnerdb526732007-10-29 04:26:44 +0000893 if (!castType->isVoidType()) { // Cast to void allows any expr type.
Steve Naroff5ad85292008-06-03 12:56:35 +0000894 if (!castType->isScalarType() && !castType->isVectorType()) {
895 // GCC struct/union extension.
896 if (castType == castExpr->getType() &&
Steve Naroff7f1c5b52008-06-03 13:21:30 +0000897 castType->isStructureType() || castType->isUnionType()) {
898 Diag(LParenLoc, diag::ext_typecheck_cast_nonscalar,
899 SourceRange(LParenLoc, RParenLoc));
900 return new CastExpr(castType, castExpr, LParenLoc);
901 } else
Steve Naroff5ad85292008-06-03 12:56:35 +0000902 return Diag(LParenLoc, diag::err_typecheck_cond_expect_scalar,
903 castType.getAsString(), SourceRange(LParenLoc, RParenLoc));
904 }
Steve Narofff459ee52008-01-24 22:55:05 +0000905 if (!castExpr->getType()->isScalarType() &&
906 !castExpr->getType()->isVectorType())
Chris Lattnerdb526732007-10-29 04:26:44 +0000907 return Diag(castExpr->getLocStart(),
908 diag::err_typecheck_expect_scalar_operand,
909 castExpr->getType().getAsString(),castExpr->getSourceRange());
Anders Carlssonf257b4c2007-11-27 05:51:55 +0000910
911 if (castExpr->getType()->isVectorType()) {
912 if (CheckVectorCast(SourceRange(LParenLoc, RParenLoc),
913 castExpr->getType(), castType))
914 return true;
915 } else if (castType->isVectorType()) {
916 if (CheckVectorCast(SourceRange(LParenLoc, RParenLoc),
917 castType, castExpr->getType()))
918 return true;
Chris Lattnerdb526732007-10-29 04:26:44 +0000919 }
Chris Lattner4b009652007-07-25 00:24:17 +0000920 }
921 return new CastExpr(castType, castExpr, LParenLoc);
922}
923
Chris Lattner98a425c2007-11-26 01:40:58 +0000924/// Note that lex is not null here, even if this is the gnu "x ?: y" extension.
925/// In that case, lex = cond.
Chris Lattner4b009652007-07-25 00:24:17 +0000926inline QualType Sema::CheckConditionalOperands( // C99 6.5.15
927 Expr *&cond, Expr *&lex, Expr *&rex, SourceLocation questionLoc) {
928 UsualUnaryConversions(cond);
929 UsualUnaryConversions(lex);
930 UsualUnaryConversions(rex);
931 QualType condT = cond->getType();
932 QualType lexT = lex->getType();
933 QualType rexT = rex->getType();
934
935 // first, check the condition.
936 if (!condT->isScalarType()) { // C99 6.5.15p2
937 Diag(cond->getLocStart(), diag::err_typecheck_cond_expect_scalar,
938 condT.getAsString());
939 return QualType();
940 }
Chris Lattner992ae932008-01-06 22:42:25 +0000941
942 // Now check the two expressions.
943
944 // If both operands have arithmetic type, do the usual arithmetic conversions
945 // to find a common type: C99 6.5.15p3,5.
946 if (lexT->isArithmeticType() && rexT->isArithmeticType()) {
Chris Lattner4b009652007-07-25 00:24:17 +0000947 UsualArithmeticConversions(lex, rex);
948 return lex->getType();
949 }
Chris Lattner992ae932008-01-06 22:42:25 +0000950
951 // If both operands are the same structure or union type, the result is that
952 // type.
Chris Lattner71225142007-07-31 21:27:01 +0000953 if (const RecordType *LHSRT = lexT->getAsRecordType()) { // C99 6.5.15p3
Chris Lattner992ae932008-01-06 22:42:25 +0000954 if (const RecordType *RHSRT = rexT->getAsRecordType())
Chris Lattner98a425c2007-11-26 01:40:58 +0000955 if (LHSRT->getDecl() == RHSRT->getDecl())
Chris Lattner992ae932008-01-06 22:42:25 +0000956 // "If both the operands have structure or union type, the result has
957 // that type." This implies that CV qualifiers are dropped.
958 return lexT.getUnqualifiedType();
Chris Lattner4b009652007-07-25 00:24:17 +0000959 }
Chris Lattner992ae932008-01-06 22:42:25 +0000960
961 // C99 6.5.15p5: "If both operands have void type, the result has void type."
Steve Naroff95cb3892008-05-12 21:44:38 +0000962 // The following || allows only one side to be void (a GCC-ism).
963 if (lexT->isVoidType() || rexT->isVoidType()) {
Eli Friedmanf025aac2008-06-04 19:47:51 +0000964 if (!lexT->isVoidType())
Steve Naroff95cb3892008-05-12 21:44:38 +0000965 Diag(rex->getLocStart(), diag::ext_typecheck_cond_one_void,
966 rex->getSourceRange());
967 if (!rexT->isVoidType())
968 Diag(lex->getLocStart(), diag::ext_typecheck_cond_one_void,
Nuno Lopes4ba41fd2008-06-04 19:14:12 +0000969 lex->getSourceRange());
Eli Friedmanf025aac2008-06-04 19:47:51 +0000970 ImpCastExprToType(lex, Context.VoidTy);
971 ImpCastExprToType(rex, Context.VoidTy);
972 return Context.VoidTy;
Steve Naroff95cb3892008-05-12 21:44:38 +0000973 }
Steve Naroff12ebf272008-01-08 01:11:38 +0000974 // C99 6.5.15p6 - "if one operand is a null pointer constant, the result has
975 // the type of the other operand."
976 if (lexT->isPointerType() && rex->isNullPointerConstant(Context)) {
Chris Lattnere992d6c2008-01-16 19:17:22 +0000977 ImpCastExprToType(rex, lexT); // promote the null to a pointer.
Steve Naroff12ebf272008-01-08 01:11:38 +0000978 return lexT;
979 }
980 if (rexT->isPointerType() && lex->isNullPointerConstant(Context)) {
Chris Lattnere992d6c2008-01-16 19:17:22 +0000981 ImpCastExprToType(lex, rexT); // promote the null to a pointer.
Steve Naroff12ebf272008-01-08 01:11:38 +0000982 return rexT;
983 }
Chris Lattner0ac51632008-01-06 22:50:31 +0000984 // Handle the case where both operands are pointers before we handle null
985 // pointer constants in case both operands are null pointer constants.
Chris Lattner71225142007-07-31 21:27:01 +0000986 if (const PointerType *LHSPT = lexT->getAsPointerType()) { // C99 6.5.15p3,6
987 if (const PointerType *RHSPT = rexT->getAsPointerType()) {
988 // get the "pointed to" types
989 QualType lhptee = LHSPT->getPointeeType();
990 QualType rhptee = RHSPT->getPointeeType();
Chris Lattner4b009652007-07-25 00:24:17 +0000991
Chris Lattner71225142007-07-31 21:27:01 +0000992 // ignore qualifiers on void (C99 6.5.15p3, clause 6)
993 if (lhptee->isVoidType() &&
Chris Lattner9db553e2008-04-02 06:59:01 +0000994 rhptee->isIncompleteOrObjectType()) {
Chris Lattner35fef522008-02-20 20:55:12 +0000995 // Figure out necessary qualifiers (C99 6.5.15p6)
996 QualType destPointee=lhptee.getQualifiedType(rhptee.getCVRQualifiers());
Eli Friedmanca07c902008-02-10 22:59:36 +0000997 QualType destType = Context.getPointerType(destPointee);
998 ImpCastExprToType(lex, destType); // add qualifiers if necessary
999 ImpCastExprToType(rex, destType); // promote to void*
1000 return destType;
1001 }
Chris Lattner9db553e2008-04-02 06:59:01 +00001002 if (rhptee->isVoidType() && lhptee->isIncompleteOrObjectType()) {
Chris Lattner35fef522008-02-20 20:55:12 +00001003 QualType destPointee=rhptee.getQualifiedType(lhptee.getCVRQualifiers());
Eli Friedmanca07c902008-02-10 22:59:36 +00001004 QualType destType = Context.getPointerType(destPointee);
1005 ImpCastExprToType(lex, destType); // add qualifiers if necessary
1006 ImpCastExprToType(rex, destType); // promote to void*
1007 return destType;
1008 }
Chris Lattner4b009652007-07-25 00:24:17 +00001009
Steve Naroff85f0dc52007-10-15 20:41:53 +00001010 if (!Context.typesAreCompatible(lhptee.getUnqualifiedType(),
1011 rhptee.getUnqualifiedType())) {
Steve Naroff232324e2008-02-01 22:44:48 +00001012 Diag(questionLoc, diag::warn_typecheck_cond_incompatible_pointers,
Chris Lattner71225142007-07-31 21:27:01 +00001013 lexT.getAsString(), rexT.getAsString(),
1014 lex->getSourceRange(), rex->getSourceRange());
Eli Friedman33284862008-01-30 17:02:03 +00001015 // In this situation, we assume void* type. No especially good
1016 // reason, but this is what gcc does, and we do have to pick
1017 // to get a consistent AST.
1018 QualType voidPtrTy = Context.getPointerType(Context.VoidTy);
1019 ImpCastExprToType(lex, voidPtrTy);
1020 ImpCastExprToType(rex, voidPtrTy);
1021 return voidPtrTy;
Chris Lattner71225142007-07-31 21:27:01 +00001022 }
1023 // The pointer types are compatible.
Chris Lattner0d9bcea2007-08-30 17:45:32 +00001024 // C99 6.5.15p6: If both operands are pointers to compatible types *or* to
1025 // differently qualified versions of compatible types, the result type is
1026 // a pointer to an appropriately qualified version of the *composite*
1027 // type.
Eli Friedmane38150e2008-05-16 20:37:07 +00001028 // FIXME: Need to calculate the composite type.
Eli Friedmanca07c902008-02-10 22:59:36 +00001029 // FIXME: Need to add qualifiers
Eli Friedmane38150e2008-05-16 20:37:07 +00001030 QualType compositeType = lexT;
1031 ImpCastExprToType(lex, compositeType);
1032 ImpCastExprToType(rex, compositeType);
1033 return compositeType;
Chris Lattner4b009652007-07-25 00:24:17 +00001034 }
Chris Lattner4b009652007-07-25 00:24:17 +00001035 }
Steve Naroff605896f2008-05-31 22:33:45 +00001036 // Need to handle "id<xx>" explicitly. Unlike "id", whose canonical type
1037 // evaluates to "struct objc_object *" (and is handled above when comparing
1038 // id with statically typed objects). FIXME: Do we need an ImpCastExprToType?
1039 if (lexT->isObjCQualifiedIdType() || rexT->isObjCQualifiedIdType()) {
1040 if (ObjCQualifiedIdTypesAreCompatible(lexT, rexT, true))
1041 return Context.getObjCIdType();
1042 }
Chris Lattner992ae932008-01-06 22:42:25 +00001043 // Otherwise, the operands are not compatible.
Chris Lattner4b009652007-07-25 00:24:17 +00001044 Diag(questionLoc, diag::err_typecheck_cond_incompatible_operands,
1045 lexT.getAsString(), rexT.getAsString(),
1046 lex->getSourceRange(), rex->getSourceRange());
1047 return QualType();
1048}
1049
Steve Naroff87d58b42007-09-16 03:34:24 +00001050/// ActOnConditionalOp - Parse a ?: operation. Note that 'LHS' may be null
Chris Lattner4b009652007-07-25 00:24:17 +00001051/// in the case of a the GNU conditional expr extension.
Steve Naroff87d58b42007-09-16 03:34:24 +00001052Action::ExprResult Sema::ActOnConditionalOp(SourceLocation QuestionLoc,
Chris Lattner4b009652007-07-25 00:24:17 +00001053 SourceLocation ColonLoc,
1054 ExprTy *Cond, ExprTy *LHS,
1055 ExprTy *RHS) {
1056 Expr *CondExpr = (Expr *) Cond;
1057 Expr *LHSExpr = (Expr *) LHS, *RHSExpr = (Expr *) RHS;
Chris Lattner98a425c2007-11-26 01:40:58 +00001058
1059 // If this is the gnu "x ?: y" extension, analyze the types as though the LHS
1060 // was the condition.
1061 bool isLHSNull = LHSExpr == 0;
1062 if (isLHSNull)
1063 LHSExpr = CondExpr;
1064
Chris Lattner4b009652007-07-25 00:24:17 +00001065 QualType result = CheckConditionalOperands(CondExpr, LHSExpr,
1066 RHSExpr, QuestionLoc);
1067 if (result.isNull())
1068 return true;
Chris Lattner98a425c2007-11-26 01:40:58 +00001069 return new ConditionalOperator(CondExpr, isLHSNull ? 0 : LHSExpr,
1070 RHSExpr, result);
Chris Lattner4b009652007-07-25 00:24:17 +00001071}
1072
Steve Naroffdb65e052007-08-28 23:30:39 +00001073/// DefaultArgumentPromotion (C99 6.5.2.2p6). Used for function calls that
Steve Naroffbbaed752008-01-29 02:42:22 +00001074/// do not have a prototype. Arguments that have type float are promoted to
1075/// double. All other argument types are converted by UsualUnaryConversions().
Chris Lattner83bd5eb2007-12-28 05:29:59 +00001076void Sema::DefaultArgumentPromotion(Expr *&Expr) {
1077 QualType Ty = Expr->getType();
1078 assert(!Ty.isNull() && "DefaultArgumentPromotion - missing type");
Steve Naroffdb65e052007-08-28 23:30:39 +00001079
Chris Lattner11216032008-06-27 22:48:56 +00001080 // If this is a 'float' (CVR qualified or typedef) promote to double.
1081 if (const BuiltinType *BT = Ty->getAsBuiltinType())
1082 if (BT->getKind() == BuiltinType::Float)
1083 return ImpCastExprToType(Expr, Context.DoubleTy);
1084
1085 UsualUnaryConversions(Expr);
Steve Naroffdb65e052007-08-28 23:30:39 +00001086}
1087
Chris Lattner4b009652007-07-25 00:24:17 +00001088/// DefaultFunctionArrayConversion (C99 6.3.2.1p3, C99 6.3.2.1p4).
Chris Lattner48d7f382008-04-02 04:24:33 +00001089void Sema::DefaultFunctionArrayConversion(Expr *&E) {
1090 QualType Ty = E->getType();
1091 assert(!Ty.isNull() && "DefaultFunctionArrayConversion - missing type");
Chris Lattner4b009652007-07-25 00:24:17 +00001092
Chris Lattner48d7f382008-04-02 04:24:33 +00001093 if (const ReferenceType *ref = Ty->getAsReferenceType()) {
Chris Lattnera05f7d22008-04-02 17:45:06 +00001094 ImpCastExprToType(E, ref->getPointeeType()); // C++ [expr]
Chris Lattner48d7f382008-04-02 04:24:33 +00001095 Ty = E->getType();
Chris Lattner4b009652007-07-25 00:24:17 +00001096 }
Chris Lattner48d7f382008-04-02 04:24:33 +00001097 if (Ty->isFunctionType())
1098 ImpCastExprToType(E, Context.getPointerType(Ty));
Chris Lattner19eb97e2008-04-02 05:18:44 +00001099 else if (Ty->isArrayType())
1100 ImpCastExprToType(E, Context.getArrayDecayedType(Ty));
Chris Lattner4b009652007-07-25 00:24:17 +00001101}
1102
Nate Begeman9f3bfb72008-01-17 17:46:27 +00001103/// UsualUnaryConversions - Performs various conversions that are common to most
Chris Lattner4b009652007-07-25 00:24:17 +00001104/// operators (C99 6.3). The conversions of array and function types are
1105/// sometimes surpressed. For example, the array->pointer conversion doesn't
1106/// apply if the array is an argument to the sizeof or address (&) operators.
1107/// In these instances, this routine should *not* be called.
Chris Lattner83bd5eb2007-12-28 05:29:59 +00001108Expr *Sema::UsualUnaryConversions(Expr *&Expr) {
1109 QualType Ty = Expr->getType();
1110 assert(!Ty.isNull() && "UsualUnaryConversions - missing type");
Chris Lattner4b009652007-07-25 00:24:17 +00001111
Chris Lattner83bd5eb2007-12-28 05:29:59 +00001112 if (const ReferenceType *Ref = Ty->getAsReferenceType()) {
Chris Lattnera05f7d22008-04-02 17:45:06 +00001113 ImpCastExprToType(Expr, Ref->getPointeeType()); // C++ [expr]
Chris Lattner83bd5eb2007-12-28 05:29:59 +00001114 Ty = Expr->getType();
Chris Lattner4b009652007-07-25 00:24:17 +00001115 }
Chris Lattner83bd5eb2007-12-28 05:29:59 +00001116 if (Ty->isPromotableIntegerType()) // C99 6.3.1.1p2
Chris Lattnere992d6c2008-01-16 19:17:22 +00001117 ImpCastExprToType(Expr, Context.IntTy);
Chris Lattner4b009652007-07-25 00:24:17 +00001118 else
Chris Lattner83bd5eb2007-12-28 05:29:59 +00001119 DefaultFunctionArrayConversion(Expr);
1120
1121 return Expr;
Chris Lattner4b009652007-07-25 00:24:17 +00001122}
1123
Chris Lattner0d9bcea2007-08-30 17:45:32 +00001124/// UsualArithmeticConversions - Performs various conversions that are common to
Chris Lattner4b009652007-07-25 00:24:17 +00001125/// binary operators (C99 6.3.1.8). If both operands aren't arithmetic, this
1126/// routine returns the first non-arithmetic type found. The client is
1127/// responsible for emitting appropriate error diagnostics.
Chris Lattner48d7f382008-04-02 04:24:33 +00001128/// FIXME: verify the conversion rules for "complex int" are consistent with
1129/// GCC.
Steve Naroff8f708362007-08-24 19:07:16 +00001130QualType Sema::UsualArithmeticConversions(Expr *&lhsExpr, Expr *&rhsExpr,
1131 bool isCompAssign) {
Steve Naroffb2f9f552007-08-25 19:54:59 +00001132 if (!isCompAssign) {
1133 UsualUnaryConversions(lhsExpr);
1134 UsualUnaryConversions(rhsExpr);
1135 }
Steve Naroff7438fdf2007-10-18 18:55:53 +00001136 // For conversion purposes, we ignore any qualifiers.
1137 // For example, "const float" and "float" are equivalent.
Steve Naroff1ddb6f52007-11-10 19:45:54 +00001138 QualType lhs = lhsExpr->getType().getCanonicalType().getUnqualifiedType();
1139 QualType rhs = rhsExpr->getType().getCanonicalType().getUnqualifiedType();
Chris Lattner4b009652007-07-25 00:24:17 +00001140
1141 // If both types are identical, no conversion is needed.
Steve Naroff7438fdf2007-10-18 18:55:53 +00001142 if (lhs == rhs)
1143 return lhs;
Chris Lattner4b009652007-07-25 00:24:17 +00001144
1145 // If either side is a non-arithmetic type (e.g. a pointer), we are done.
1146 // The caller can deal with this (e.g. pointer + int).
1147 if (!lhs->isArithmeticType() || !rhs->isArithmeticType())
Steve Naroff8f708362007-08-24 19:07:16 +00001148 return lhs;
Chris Lattner4b009652007-07-25 00:24:17 +00001149
1150 // At this point, we have two different arithmetic types.
1151
1152 // Handle complex types first (C99 6.3.1.8p1).
1153 if (lhs->isComplexType() || rhs->isComplexType()) {
Steve Naroff43001212008-01-15 19:36:10 +00001154 // if we have an integer operand, the result is the complex type.
Steve Naroffe8419ca2008-01-15 22:21:49 +00001155 if (rhs->isIntegerType() || rhs->isComplexIntegerType()) {
Eli Friedman50727042008-02-08 01:19:44 +00001156 // convert the rhs to the lhs complex type.
Chris Lattnere992d6c2008-01-16 19:17:22 +00001157 if (!isCompAssign) ImpCastExprToType(rhsExpr, lhs);
Steve Naroff8f708362007-08-24 19:07:16 +00001158 return lhs;
Steve Naroff43001212008-01-15 19:36:10 +00001159 }
Steve Naroffe8419ca2008-01-15 22:21:49 +00001160 if (lhs->isIntegerType() || lhs->isComplexIntegerType()) {
Eli Friedman50727042008-02-08 01:19:44 +00001161 // convert the lhs to the rhs complex type.
Chris Lattnere992d6c2008-01-16 19:17:22 +00001162 if (!isCompAssign) ImpCastExprToType(lhsExpr, rhs);
Steve Naroff8f708362007-08-24 19:07:16 +00001163 return rhs;
Chris Lattner4b009652007-07-25 00:24:17 +00001164 }
Steve Naroff3cf497f2007-08-27 01:27:54 +00001165 // This handles complex/complex, complex/float, or float/complex.
1166 // When both operands are complex, the shorter operand is converted to the
1167 // type of the longer, and that is the type of the result. This corresponds
1168 // to what is done when combining two real floating-point operands.
1169 // The fun begins when size promotion occur across type domains.
1170 // From H&S 6.3.4: When one operand is complex and the other is a real
1171 // floating-point type, the less precise type is converted, within it's
1172 // real or complex domain, to the precision of the other type. For example,
1173 // when combining a "long double" with a "double _Complex", the
1174 // "double _Complex" is promoted to "long double _Complex".
Chris Lattnerd7135b42008-04-06 23:38:49 +00001175 int result = Context.getFloatingTypeOrder(lhs, rhs);
Steve Naroff45fc9822007-08-27 15:30:22 +00001176
1177 if (result > 0) { // The left side is bigger, convert rhs.
Steve Naroff3b565d62007-08-27 21:32:55 +00001178 rhs = Context.getFloatingTypeOfSizeWithinDomain(lhs, rhs);
1179 if (!isCompAssign)
Chris Lattnere992d6c2008-01-16 19:17:22 +00001180 ImpCastExprToType(rhsExpr, rhs);
Steve Naroff3b565d62007-08-27 21:32:55 +00001181 } else if (result < 0) { // The right side is bigger, convert lhs.
1182 lhs = Context.getFloatingTypeOfSizeWithinDomain(rhs, lhs);
1183 if (!isCompAssign)
Chris Lattnere992d6c2008-01-16 19:17:22 +00001184 ImpCastExprToType(lhsExpr, lhs);
Steve Naroff3b565d62007-08-27 21:32:55 +00001185 }
1186 // At this point, lhs and rhs have the same rank/size. Now, make sure the
1187 // domains match. This is a requirement for our implementation, C99
1188 // does not require this promotion.
1189 if (lhs != rhs) { // Domains don't match, we have complex/float mix.
1190 if (lhs->isRealFloatingType()) { // handle "double, _Complex double".
Steve Naroff3b6157f2007-08-27 21:43:43 +00001191 if (!isCompAssign)
Chris Lattnere992d6c2008-01-16 19:17:22 +00001192 ImpCastExprToType(lhsExpr, rhs);
Steve Naroff3b6157f2007-08-27 21:43:43 +00001193 return rhs;
Steve Naroff3b565d62007-08-27 21:32:55 +00001194 } else { // handle "_Complex double, double".
Steve Naroff3b6157f2007-08-27 21:43:43 +00001195 if (!isCompAssign)
Chris Lattnere992d6c2008-01-16 19:17:22 +00001196 ImpCastExprToType(rhsExpr, lhs);
Steve Naroff3b6157f2007-08-27 21:43:43 +00001197 return lhs;
Steve Naroff3b565d62007-08-27 21:32:55 +00001198 }
Chris Lattner4b009652007-07-25 00:24:17 +00001199 }
Steve Naroff3b6157f2007-08-27 21:43:43 +00001200 return lhs; // The domain/size match exactly.
Chris Lattner4b009652007-07-25 00:24:17 +00001201 }
1202 // Now handle "real" floating types (i.e. float, double, long double).
1203 if (lhs->isRealFloatingType() || rhs->isRealFloatingType()) {
1204 // if we have an integer operand, the result is the real floating type.
Steve Naroffe8419ca2008-01-15 22:21:49 +00001205 if (rhs->isIntegerType() || rhs->isComplexIntegerType()) {
Eli Friedman50727042008-02-08 01:19:44 +00001206 // convert rhs to the lhs floating point type.
Chris Lattnere992d6c2008-01-16 19:17:22 +00001207 if (!isCompAssign) ImpCastExprToType(rhsExpr, lhs);
Steve Naroff8f708362007-08-24 19:07:16 +00001208 return lhs;
Chris Lattner4b009652007-07-25 00:24:17 +00001209 }
Steve Naroffe8419ca2008-01-15 22:21:49 +00001210 if (lhs->isIntegerType() || lhs->isComplexIntegerType()) {
Eli Friedman50727042008-02-08 01:19:44 +00001211 // convert lhs to the rhs floating point type.
Chris Lattnere992d6c2008-01-16 19:17:22 +00001212 if (!isCompAssign) ImpCastExprToType(lhsExpr, rhs);
Steve Naroff8f708362007-08-24 19:07:16 +00001213 return rhs;
Chris Lattner4b009652007-07-25 00:24:17 +00001214 }
1215 // We have two real floating types, float/complex combos were handled above.
1216 // Convert the smaller operand to the bigger result.
Chris Lattnerd7135b42008-04-06 23:38:49 +00001217 int result = Context.getFloatingTypeOrder(lhs, rhs);
Steve Naroff45fc9822007-08-27 15:30:22 +00001218
1219 if (result > 0) { // convert the rhs
Chris Lattnere992d6c2008-01-16 19:17:22 +00001220 if (!isCompAssign) ImpCastExprToType(rhsExpr, lhs);
Steve Naroff8f708362007-08-24 19:07:16 +00001221 return lhs;
Chris Lattner4b009652007-07-25 00:24:17 +00001222 }
Steve Naroff45fc9822007-08-27 15:30:22 +00001223 if (result < 0) { // convert the lhs
Chris Lattnere992d6c2008-01-16 19:17:22 +00001224 if (!isCompAssign) ImpCastExprToType(lhsExpr, rhs); // convert the lhs
Steve Naroff45fc9822007-08-27 15:30:22 +00001225 return rhs;
1226 }
1227 assert(0 && "Sema::UsualArithmeticConversions(): illegal float comparison");
Chris Lattner4b009652007-07-25 00:24:17 +00001228 }
Steve Naroff43001212008-01-15 19:36:10 +00001229 if (lhs->isComplexIntegerType() || rhs->isComplexIntegerType()) {
1230 // Handle GCC complex int extension.
Steve Naroff43001212008-01-15 19:36:10 +00001231 const ComplexType *lhsComplexInt = lhs->getAsComplexIntegerType();
Eli Friedman50727042008-02-08 01:19:44 +00001232 const ComplexType *rhsComplexInt = rhs->getAsComplexIntegerType();
Steve Naroff43001212008-01-15 19:36:10 +00001233
Eli Friedman50727042008-02-08 01:19:44 +00001234 if (lhsComplexInt && rhsComplexInt) {
Chris Lattner51285d82008-04-06 23:55:33 +00001235 if (Context.getIntegerTypeOrder(lhsComplexInt->getElementType(),
1236 rhsComplexInt->getElementType()) >= 0) {
Eli Friedman94075c02008-02-08 01:24:30 +00001237 // convert the rhs
1238 if (!isCompAssign) ImpCastExprToType(rhsExpr, lhs);
1239 return lhs;
Eli Friedman50727042008-02-08 01:19:44 +00001240 }
1241 if (!isCompAssign)
Eli Friedman94075c02008-02-08 01:24:30 +00001242 ImpCastExprToType(lhsExpr, rhs); // convert the lhs
Eli Friedman50727042008-02-08 01:19:44 +00001243 return rhs;
1244 } else if (lhsComplexInt && rhs->isIntegerType()) {
1245 // convert the rhs to the lhs complex type.
1246 if (!isCompAssign) ImpCastExprToType(rhsExpr, lhs);
1247 return lhs;
1248 } else if (rhsComplexInt && lhs->isIntegerType()) {
1249 // convert the lhs to the rhs complex type.
1250 if (!isCompAssign) ImpCastExprToType(lhsExpr, rhs);
1251 return rhs;
1252 }
Steve Naroff43001212008-01-15 19:36:10 +00001253 }
Chris Lattner4b009652007-07-25 00:24:17 +00001254 // Finally, we have two differing integer types.
Eli Friedman0832dbc2008-06-28 06:23:08 +00001255 // The rules for this case are in C99 6.3.1.8
1256 int compare = Context.getIntegerTypeOrder(lhs, rhs);
1257 bool lhsSigned = lhs->isSignedIntegerType(),
1258 rhsSigned = rhs->isSignedIntegerType();
1259 QualType destType;
1260 if (lhsSigned == rhsSigned) {
1261 // Same signedness; use the higher-ranked type
1262 destType = compare >= 0 ? lhs : rhs;
1263 } else if (compare != (lhsSigned ? 1 : -1)) {
1264 // The unsigned type has greater than or equal rank to the
1265 // signed type, so use the unsigned type
1266 destType = lhsSigned ? rhs : lhs;
1267 } else if (Context.getIntWidth(lhs) != Context.getIntWidth(rhs)) {
1268 // The two types are different widths; if we are here, that
1269 // means the signed type is larger than the unsigned type, so
1270 // use the signed type.
1271 destType = lhsSigned ? lhs : rhs;
1272 } else {
1273 // The signed type is higher-ranked than the unsigned type,
1274 // but isn't actually any bigger (like unsigned int and long
1275 // on most 32-bit systems). Use the unsigned type corresponding
1276 // to the signed type.
1277 destType = Context.getCorrespondingUnsignedType(lhsSigned ? lhs : rhs);
Chris Lattner4b009652007-07-25 00:24:17 +00001278 }
Eli Friedman0832dbc2008-06-28 06:23:08 +00001279 if (!isCompAssign) {
1280 ImpCastExprToType(lhsExpr, destType);
1281 ImpCastExprToType(rhsExpr, destType);
1282 }
1283 return destType;
Chris Lattner4b009652007-07-25 00:24:17 +00001284}
1285
1286// CheckPointerTypesForAssignment - This is a very tricky routine (despite
1287// being closely modeled after the C99 spec:-). The odd characteristic of this
1288// routine is it effectively iqnores the qualifiers on the top level pointee.
1289// This circumvents the usual type rules specified in 6.2.7p1 & 6.7.5.[1-3].
1290// FIXME: add a couple examples in this comment.
Chris Lattner005ed752008-01-04 18:04:52 +00001291Sema::AssignConvertType
Chris Lattner4b009652007-07-25 00:24:17 +00001292Sema::CheckPointerTypesForAssignment(QualType lhsType, QualType rhsType) {
1293 QualType lhptee, rhptee;
1294
1295 // get the "pointed to" type (ignoring qualifiers at the top level)
Chris Lattner71225142007-07-31 21:27:01 +00001296 lhptee = lhsType->getAsPointerType()->getPointeeType();
1297 rhptee = rhsType->getAsPointerType()->getPointeeType();
Chris Lattner4b009652007-07-25 00:24:17 +00001298
1299 // make sure we operate on the canonical type
1300 lhptee = lhptee.getCanonicalType();
1301 rhptee = rhptee.getCanonicalType();
1302
Chris Lattner005ed752008-01-04 18:04:52 +00001303 AssignConvertType ConvTy = Compatible;
Chris Lattner4b009652007-07-25 00:24:17 +00001304
1305 // C99 6.5.16.1p1: This following citation is common to constraints
1306 // 3 & 4 (below). ...and the type *pointed to* by the left has all the
1307 // qualifiers of the type *pointed to* by the right;
Chris Lattner35fef522008-02-20 20:55:12 +00001308 // FIXME: Handle ASQualType
1309 if ((lhptee.getCVRQualifiers() & rhptee.getCVRQualifiers()) !=
1310 rhptee.getCVRQualifiers())
Chris Lattner005ed752008-01-04 18:04:52 +00001311 ConvTy = CompatiblePointerDiscardsQualifiers;
Chris Lattner4b009652007-07-25 00:24:17 +00001312
1313 // C99 6.5.16.1p1 (constraint 4): If one operand is a pointer to an object or
1314 // incomplete type and the other is a pointer to a qualified or unqualified
1315 // version of void...
Chris Lattner4ca3d772008-01-03 22:56:36 +00001316 if (lhptee->isVoidType()) {
Chris Lattner9db553e2008-04-02 06:59:01 +00001317 if (rhptee->isIncompleteOrObjectType())
Chris Lattner005ed752008-01-04 18:04:52 +00001318 return ConvTy;
Chris Lattner4ca3d772008-01-03 22:56:36 +00001319
1320 // As an extension, we allow cast to/from void* to function pointer.
Chris Lattner9db553e2008-04-02 06:59:01 +00001321 assert(rhptee->isFunctionType());
1322 return FunctionVoidPointer;
Chris Lattner4ca3d772008-01-03 22:56:36 +00001323 }
1324
1325 if (rhptee->isVoidType()) {
Chris Lattner9db553e2008-04-02 06:59:01 +00001326 if (lhptee->isIncompleteOrObjectType())
Chris Lattner005ed752008-01-04 18:04:52 +00001327 return ConvTy;
Chris Lattner4ca3d772008-01-03 22:56:36 +00001328
1329 // As an extension, we allow cast to/from void* to function pointer.
Chris Lattner9db553e2008-04-02 06:59:01 +00001330 assert(lhptee->isFunctionType());
1331 return FunctionVoidPointer;
Chris Lattner4ca3d772008-01-03 22:56:36 +00001332 }
1333
Chris Lattner4b009652007-07-25 00:24:17 +00001334 // C99 6.5.16.1p1 (constraint 3): both operands are pointers to qualified or
1335 // unqualified versions of compatible types, ...
Chris Lattner4ca3d772008-01-03 22:56:36 +00001336 if (!Context.typesAreCompatible(lhptee.getUnqualifiedType(),
1337 rhptee.getUnqualifiedType()))
1338 return IncompatiblePointer; // this "trumps" PointerAssignDiscardsQualifiers
Chris Lattner005ed752008-01-04 18:04:52 +00001339 return ConvTy;
Chris Lattner4b009652007-07-25 00:24:17 +00001340}
1341
1342/// CheckAssignmentConstraints (C99 6.5.16) - This routine currently
1343/// has code to accommodate several GCC extensions when type checking
1344/// pointers. Here are some objectionable examples that GCC considers warnings:
1345///
1346/// int a, *pint;
1347/// short *pshort;
1348/// struct foo *pfoo;
1349///
1350/// pint = pshort; // warning: assignment from incompatible pointer type
1351/// a = pint; // warning: assignment makes integer from pointer without a cast
1352/// pint = a; // warning: assignment makes pointer from integer without a cast
1353/// pint = pfoo; // warning: assignment from incompatible pointer type
1354///
1355/// As a result, the code for dealing with pointers is more complex than the
1356/// C99 spec dictates.
Chris Lattner4b009652007-07-25 00:24:17 +00001357///
Chris Lattner005ed752008-01-04 18:04:52 +00001358Sema::AssignConvertType
Chris Lattner4b009652007-07-25 00:24:17 +00001359Sema::CheckAssignmentConstraints(QualType lhsType, QualType rhsType) {
Chris Lattner1853da22008-01-04 23:18:45 +00001360 // Get canonical types. We're not formatting these types, just comparing
1361 // them.
Eli Friedman48d0bb02008-05-30 18:07:22 +00001362 lhsType = lhsType.getCanonicalType().getUnqualifiedType();
1363 rhsType = rhsType.getCanonicalType().getUnqualifiedType();
1364
1365 if (lhsType == rhsType)
Chris Lattnerfdd96d72008-01-07 17:51:46 +00001366 return Compatible; // Common case: fast path an exact match.
Chris Lattner4b009652007-07-25 00:24:17 +00001367
Anders Carlssoncebb8d62007-10-12 23:56:29 +00001368 if (lhsType->isReferenceType() || rhsType->isReferenceType()) {
Chris Lattnere1577e22008-04-07 06:52:53 +00001369 if (Context.typesAreCompatible(lhsType, rhsType))
Anders Carlssoncebb8d62007-10-12 23:56:29 +00001370 return Compatible;
Chris Lattner1853da22008-01-04 23:18:45 +00001371 return Incompatible;
Fariborz Jahanian957442d2007-12-19 17:45:58 +00001372 }
Eli Friedman48d0bb02008-05-30 18:07:22 +00001373
Chris Lattnerfe1f4032008-04-07 05:30:13 +00001374 if (lhsType->isObjCQualifiedIdType() || rhsType->isObjCQualifiedIdType()) {
1375 if (ObjCQualifiedIdTypesAreCompatible(lhsType, rhsType, false))
Fariborz Jahanian957442d2007-12-19 17:45:58 +00001376 return Compatible;
Steve Naroff936c4362008-06-03 14:04:54 +00001377 // Relax integer conversions like we do for pointers below.
1378 if (rhsType->isIntegerType())
1379 return IntToPointer;
1380 if (lhsType->isIntegerType())
1381 return PointerToInt;
Chris Lattner1853da22008-01-04 23:18:45 +00001382 return Incompatible;
Fariborz Jahanian957442d2007-12-19 17:45:58 +00001383 }
Chris Lattnerdb22bf42008-01-04 23:32:24 +00001384
Nate Begemanc5f0f652008-07-14 18:02:46 +00001385 if (lhsType->isVectorType() || rhsType->isVectorType()) {
Nate Begemanaf6ed502008-04-18 23:10:10 +00001386 // For ExtVector, allow vector splats; float -> <n x float>
Nate Begemanc5f0f652008-07-14 18:02:46 +00001387 if (const ExtVectorType *LV = lhsType->getAsExtVectorType())
1388 if (LV->getElementType() == rhsType)
Chris Lattnerdb22bf42008-01-04 23:32:24 +00001389 return Compatible;
Eli Friedman48d0bb02008-05-30 18:07:22 +00001390
Nate Begemanc5f0f652008-07-14 18:02:46 +00001391 // If we are allowing lax vector conversions, and LHS and RHS are both
1392 // vectors, the total size only needs to be the same. This is a bitcast;
1393 // no bits are changed but the result type is different.
Chris Lattnerdb22bf42008-01-04 23:32:24 +00001394 if (getLangOptions().LaxVectorConversions &&
1395 lhsType->isVectorType() && rhsType->isVectorType()) {
Nate Begemanc5f0f652008-07-14 18:02:46 +00001396 if (Context.getTypeSize(lhsType) == Context.getTypeSize(rhsType))
1397 return Compatible;
Chris Lattnerdb22bf42008-01-04 23:32:24 +00001398 }
1399 return Incompatible;
1400 }
Eli Friedman48d0bb02008-05-30 18:07:22 +00001401
Chris Lattnerdb22bf42008-01-04 23:32:24 +00001402 if (lhsType->isArithmeticType() && rhsType->isArithmeticType())
Chris Lattner4b009652007-07-25 00:24:17 +00001403 return Compatible;
Eli Friedman48d0bb02008-05-30 18:07:22 +00001404
Chris Lattner390564e2008-04-07 06:49:41 +00001405 if (isa<PointerType>(lhsType)) {
Chris Lattner4b009652007-07-25 00:24:17 +00001406 if (rhsType->isIntegerType())
Chris Lattnerd951b7b2008-01-04 18:22:42 +00001407 return IntToPointer;
Eli Friedman48d0bb02008-05-30 18:07:22 +00001408
Chris Lattner390564e2008-04-07 06:49:41 +00001409 if (isa<PointerType>(rhsType))
Chris Lattner4b009652007-07-25 00:24:17 +00001410 return CheckPointerTypesForAssignment(lhsType, rhsType);
Chris Lattner1853da22008-01-04 23:18:45 +00001411 return Incompatible;
1412 }
1413
Chris Lattner390564e2008-04-07 06:49:41 +00001414 if (isa<PointerType>(rhsType)) {
Chris Lattner4b009652007-07-25 00:24:17 +00001415 // C99 6.5.16.1p1: the left operand is _Bool and the right is a pointer.
Eli Friedman48d0bb02008-05-30 18:07:22 +00001416 if (lhsType == Context.BoolTy)
1417 return Compatible;
1418
1419 if (lhsType->isIntegerType())
Chris Lattnerd951b7b2008-01-04 18:22:42 +00001420 return PointerToInt;
Chris Lattner4b009652007-07-25 00:24:17 +00001421
Chris Lattner390564e2008-04-07 06:49:41 +00001422 if (isa<PointerType>(lhsType))
Chris Lattner4b009652007-07-25 00:24:17 +00001423 return CheckPointerTypesForAssignment(lhsType, rhsType);
Chris Lattner1853da22008-01-04 23:18:45 +00001424 return Incompatible;
Chris Lattner1853da22008-01-04 23:18:45 +00001425 }
Eli Friedman48d0bb02008-05-30 18:07:22 +00001426
Chris Lattner1853da22008-01-04 23:18:45 +00001427 if (isa<TagType>(lhsType) && isa<TagType>(rhsType)) {
Chris Lattner390564e2008-04-07 06:49:41 +00001428 if (Context.typesAreCompatible(lhsType, rhsType))
Chris Lattner4b009652007-07-25 00:24:17 +00001429 return Compatible;
Chris Lattner4b009652007-07-25 00:24:17 +00001430 }
1431 return Incompatible;
1432}
1433
Chris Lattner005ed752008-01-04 18:04:52 +00001434Sema::AssignConvertType
Chris Lattner4b009652007-07-25 00:24:17 +00001435Sema::CheckSingleAssignmentConstraints(QualType lhsType, Expr *&rExpr) {
Steve Naroffcdee22d2007-11-27 17:58:44 +00001436 // C99 6.5.16.1p1: the left operand is a pointer and the right is
1437 // a null pointer constant.
Ted Kremenek42730c52008-01-07 19:49:32 +00001438 if ((lhsType->isPointerType() || lhsType->isObjCQualifiedIdType())
Fariborz Jahaniana13effb2008-01-03 18:46:52 +00001439 && rExpr->isNullPointerConstant(Context)) {
Chris Lattnere992d6c2008-01-16 19:17:22 +00001440 ImpCastExprToType(rExpr, lhsType);
Steve Naroffcdee22d2007-11-27 17:58:44 +00001441 return Compatible;
1442 }
Chris Lattner5f505bf2007-10-16 02:55:40 +00001443 // This check seems unnatural, however it is necessary to ensure the proper
Chris Lattner4b009652007-07-25 00:24:17 +00001444 // conversion of functions/arrays. If the conversion were done for all
Steve Naroff0acc9c92007-09-15 18:49:24 +00001445 // DeclExpr's (created by ActOnIdentifierExpr), it would mess up the unary
Chris Lattner4b009652007-07-25 00:24:17 +00001446 // expressions that surpress this implicit conversion (&, sizeof).
Chris Lattner5f505bf2007-10-16 02:55:40 +00001447 //
1448 // Suppress this for references: C99 8.5.3p5. FIXME: revisit when references
1449 // are better understood.
1450 if (!lhsType->isReferenceType())
1451 DefaultFunctionArrayConversion(rExpr);
Steve Naroff0f32f432007-08-24 22:33:52 +00001452
Chris Lattner005ed752008-01-04 18:04:52 +00001453 Sema::AssignConvertType result =
1454 CheckAssignmentConstraints(lhsType, rExpr->getType());
Steve Naroff0f32f432007-08-24 22:33:52 +00001455
1456 // C99 6.5.16.1p2: The value of the right operand is converted to the
1457 // type of the assignment expression.
1458 if (rExpr->getType() != lhsType)
Chris Lattnere992d6c2008-01-16 19:17:22 +00001459 ImpCastExprToType(rExpr, lhsType);
Steve Naroff0f32f432007-08-24 22:33:52 +00001460 return result;
Chris Lattner4b009652007-07-25 00:24:17 +00001461}
1462
Chris Lattner005ed752008-01-04 18:04:52 +00001463Sema::AssignConvertType
Chris Lattner4b009652007-07-25 00:24:17 +00001464Sema::CheckCompoundAssignmentConstraints(QualType lhsType, QualType rhsType) {
1465 return CheckAssignmentConstraints(lhsType, rhsType);
1466}
1467
Chris Lattner2c8bff72007-12-12 05:47:28 +00001468QualType Sema::InvalidOperands(SourceLocation loc, Expr *&lex, Expr *&rex) {
Chris Lattner4b009652007-07-25 00:24:17 +00001469 Diag(loc, diag::err_typecheck_invalid_operands,
1470 lex->getType().getAsString(), rex->getType().getAsString(),
1471 lex->getSourceRange(), rex->getSourceRange());
Chris Lattner2c8bff72007-12-12 05:47:28 +00001472 return QualType();
Chris Lattner4b009652007-07-25 00:24:17 +00001473}
1474
1475inline QualType Sema::CheckVectorOperands(SourceLocation loc, Expr *&lex,
1476 Expr *&rex) {
Nate Begeman03105572008-04-04 01:30:25 +00001477 // For conversion purposes, we ignore any qualifiers.
1478 // For example, "const float" and "float" are equivalent.
1479 QualType lhsType = lex->getType().getCanonicalType().getUnqualifiedType();
1480 QualType rhsType = rex->getType().getCanonicalType().getUnqualifiedType();
Chris Lattner4b009652007-07-25 00:24:17 +00001481
Nate Begemanc5f0f652008-07-14 18:02:46 +00001482 // If the vector types are identical, return.
Nate Begeman03105572008-04-04 01:30:25 +00001483 if (lhsType == rhsType)
Chris Lattner4b009652007-07-25 00:24:17 +00001484 return lhsType;
Nate Begemanec2d1062007-12-30 02:59:45 +00001485
Nate Begemanc5f0f652008-07-14 18:02:46 +00001486 // Handle the case of a vector & extvector type of the same size and element
1487 // type. It would be nice if we only had one vector type someday.
1488 if (getLangOptions().LaxVectorConversions)
1489 if (const VectorType *LV = lhsType->getAsVectorType())
1490 if (const VectorType *RV = rhsType->getAsVectorType())
1491 if (LV->getElementType() == RV->getElementType() &&
1492 LV->getNumElements() == RV->getNumElements())
1493 return lhsType->isExtVectorType() ? lhsType : rhsType;
1494
1495 // If the lhs is an extended vector and the rhs is a scalar of the same type
1496 // or a literal, promote the rhs to the vector type.
Nate Begemanaf6ed502008-04-18 23:10:10 +00001497 if (const ExtVectorType *V = lhsType->getAsExtVectorType()) {
Nate Begemanc5f0f652008-07-14 18:02:46 +00001498 QualType eltType = V->getElementType();
1499
1500 if ((eltType->getAsBuiltinType() == rhsType->getAsBuiltinType()) ||
1501 (eltType->isIntegerType() && isa<IntegerLiteral>(rex)) ||
1502 (eltType->isFloatingType() && isa<FloatingLiteral>(rex))) {
Chris Lattnere992d6c2008-01-16 19:17:22 +00001503 ImpCastExprToType(rex, lhsType);
Nate Begemanec2d1062007-12-30 02:59:45 +00001504 return lhsType;
1505 }
1506 }
1507
Nate Begemanc5f0f652008-07-14 18:02:46 +00001508 // If the rhs is an extended vector and the lhs is a scalar of the same type,
Nate Begemanec2d1062007-12-30 02:59:45 +00001509 // promote the lhs to the vector type.
Nate Begemanaf6ed502008-04-18 23:10:10 +00001510 if (const ExtVectorType *V = rhsType->getAsExtVectorType()) {
Nate Begemanc5f0f652008-07-14 18:02:46 +00001511 QualType eltType = V->getElementType();
1512
1513 if ((eltType->getAsBuiltinType() == lhsType->getAsBuiltinType()) ||
1514 (eltType->isIntegerType() && isa<IntegerLiteral>(lex)) ||
1515 (eltType->isFloatingType() && isa<FloatingLiteral>(lex))) {
Chris Lattnere992d6c2008-01-16 19:17:22 +00001516 ImpCastExprToType(lex, rhsType);
Nate Begemanec2d1062007-12-30 02:59:45 +00001517 return rhsType;
1518 }
1519 }
1520
Chris Lattner4b009652007-07-25 00:24:17 +00001521 // You cannot convert between vector values of different size.
1522 Diag(loc, diag::err_typecheck_vector_not_convertable,
1523 lex->getType().getAsString(), rex->getType().getAsString(),
1524 lex->getSourceRange(), rex->getSourceRange());
1525 return QualType();
1526}
1527
1528inline QualType Sema::CheckMultiplyDivideOperands(
Steve Naroff8f708362007-08-24 19:07:16 +00001529 Expr *&lex, Expr *&rex, SourceLocation loc, bool isCompAssign)
Chris Lattner4b009652007-07-25 00:24:17 +00001530{
1531 QualType lhsType = lex->getType(), rhsType = rex->getType();
1532
1533 if (lhsType->isVectorType() || rhsType->isVectorType())
1534 return CheckVectorOperands(loc, lex, rex);
1535
Steve Naroff8f708362007-08-24 19:07:16 +00001536 QualType compType = UsualArithmeticConversions(lex, rex, isCompAssign);
Chris Lattner4b009652007-07-25 00:24:17 +00001537
Chris Lattner4b009652007-07-25 00:24:17 +00001538 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
Steve Naroff8f708362007-08-24 19:07:16 +00001539 return compType;
Chris Lattner2c8bff72007-12-12 05:47:28 +00001540 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001541}
1542
1543inline QualType Sema::CheckRemainderOperands(
Steve Naroff8f708362007-08-24 19:07:16 +00001544 Expr *&lex, Expr *&rex, SourceLocation loc, bool isCompAssign)
Chris Lattner4b009652007-07-25 00:24:17 +00001545{
1546 QualType lhsType = lex->getType(), rhsType = rex->getType();
1547
Steve Naroff8f708362007-08-24 19:07:16 +00001548 QualType compType = UsualArithmeticConversions(lex, rex, isCompAssign);
Chris Lattner4b009652007-07-25 00:24:17 +00001549
Chris Lattner4b009652007-07-25 00:24:17 +00001550 if (lex->getType()->isIntegerType() && rex->getType()->isIntegerType())
Steve Naroff8f708362007-08-24 19:07:16 +00001551 return compType;
Chris Lattner2c8bff72007-12-12 05:47:28 +00001552 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001553}
1554
1555inline QualType Sema::CheckAdditionOperands( // C99 6.5.6
Steve Naroff8f708362007-08-24 19:07:16 +00001556 Expr *&lex, Expr *&rex, SourceLocation loc, bool isCompAssign)
Chris Lattner4b009652007-07-25 00:24:17 +00001557{
1558 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
1559 return CheckVectorOperands(loc, lex, rex);
1560
Steve Naroff8f708362007-08-24 19:07:16 +00001561 QualType compType = UsualArithmeticConversions(lex, rex, isCompAssign);
Eli Friedmand9b1fec2008-05-18 18:08:51 +00001562
Chris Lattner4b009652007-07-25 00:24:17 +00001563 // handle the common case first (both operands are arithmetic).
1564 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
Steve Naroff8f708362007-08-24 19:07:16 +00001565 return compType;
Chris Lattner4b009652007-07-25 00:24:17 +00001566
Eli Friedmand9b1fec2008-05-18 18:08:51 +00001567 // Put any potential pointer into PExp
1568 Expr* PExp = lex, *IExp = rex;
1569 if (IExp->getType()->isPointerType())
1570 std::swap(PExp, IExp);
1571
1572 if (const PointerType* PTy = PExp->getType()->getAsPointerType()) {
1573 if (IExp->getType()->isIntegerType()) {
1574 // Check for arithmetic on pointers to incomplete types
1575 if (!PTy->getPointeeType()->isObjectType()) {
1576 if (PTy->getPointeeType()->isVoidType()) {
1577 Diag(loc, diag::ext_gnu_void_ptr,
1578 lex->getSourceRange(), rex->getSourceRange());
1579 } else {
1580 Diag(loc, diag::err_typecheck_arithmetic_incomplete_type,
1581 lex->getType().getAsString(), lex->getSourceRange());
1582 return QualType();
1583 }
1584 }
1585 return PExp->getType();
1586 }
1587 }
1588
Chris Lattner2c8bff72007-12-12 05:47:28 +00001589 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001590}
1591
Chris Lattnerfe1f4032008-04-07 05:30:13 +00001592// C99 6.5.6
1593QualType Sema::CheckSubtractionOperands(Expr *&lex, Expr *&rex,
1594 SourceLocation loc, bool isCompAssign) {
Chris Lattner4b009652007-07-25 00:24:17 +00001595 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
1596 return CheckVectorOperands(loc, lex, rex);
1597
Steve Naroff8f708362007-08-24 19:07:16 +00001598 QualType compType = UsualArithmeticConversions(lex, rex, isCompAssign);
Chris Lattner4b009652007-07-25 00:24:17 +00001599
Chris Lattnerf6da2912007-12-09 21:53:25 +00001600 // Enforce type constraints: C99 6.5.6p3.
1601
1602 // Handle the common case first (both operands are arithmetic).
Chris Lattner4b009652007-07-25 00:24:17 +00001603 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
Steve Naroff8f708362007-08-24 19:07:16 +00001604 return compType;
Chris Lattnerf6da2912007-12-09 21:53:25 +00001605
1606 // Either ptr - int or ptr - ptr.
1607 if (const PointerType *LHSPTy = lex->getType()->getAsPointerType()) {
Steve Naroff577f9722008-01-29 18:58:14 +00001608 QualType lpointee = LHSPTy->getPointeeType();
Eli Friedman50727042008-02-08 01:19:44 +00001609
Chris Lattnerf6da2912007-12-09 21:53:25 +00001610 // The LHS must be an object type, not incomplete, function, etc.
Steve Naroff577f9722008-01-29 18:58:14 +00001611 if (!lpointee->isObjectType()) {
Chris Lattnerf6da2912007-12-09 21:53:25 +00001612 // Handle the GNU void* extension.
Steve Naroff577f9722008-01-29 18:58:14 +00001613 if (lpointee->isVoidType()) {
Chris Lattnerf6da2912007-12-09 21:53:25 +00001614 Diag(loc, diag::ext_gnu_void_ptr,
1615 lex->getSourceRange(), rex->getSourceRange());
1616 } else {
1617 Diag(loc, diag::err_typecheck_sub_ptr_object,
1618 lex->getType().getAsString(), lex->getSourceRange());
1619 return QualType();
1620 }
1621 }
1622
1623 // The result type of a pointer-int computation is the pointer type.
1624 if (rex->getType()->isIntegerType())
1625 return lex->getType();
Chris Lattner4b009652007-07-25 00:24:17 +00001626
Chris Lattnerf6da2912007-12-09 21:53:25 +00001627 // Handle pointer-pointer subtractions.
1628 if (const PointerType *RHSPTy = rex->getType()->getAsPointerType()) {
Eli Friedman50727042008-02-08 01:19:44 +00001629 QualType rpointee = RHSPTy->getPointeeType();
1630
Chris Lattnerf6da2912007-12-09 21:53:25 +00001631 // RHS must be an object type, unless void (GNU).
Steve Naroff577f9722008-01-29 18:58:14 +00001632 if (!rpointee->isObjectType()) {
Chris Lattnerf6da2912007-12-09 21:53:25 +00001633 // Handle the GNU void* extension.
Steve Naroff577f9722008-01-29 18:58:14 +00001634 if (rpointee->isVoidType()) {
1635 if (!lpointee->isVoidType())
Chris Lattnerf6da2912007-12-09 21:53:25 +00001636 Diag(loc, diag::ext_gnu_void_ptr,
1637 lex->getSourceRange(), rex->getSourceRange());
1638 } else {
1639 Diag(loc, diag::err_typecheck_sub_ptr_object,
1640 rex->getType().getAsString(), rex->getSourceRange());
1641 return QualType();
1642 }
1643 }
1644
1645 // Pointee types must be compatible.
Steve Naroff577f9722008-01-29 18:58:14 +00001646 if (!Context.typesAreCompatible(lpointee.getUnqualifiedType(),
1647 rpointee.getUnqualifiedType())) {
Chris Lattnerf6da2912007-12-09 21:53:25 +00001648 Diag(loc, diag::err_typecheck_sub_ptr_compatible,
1649 lex->getType().getAsString(), rex->getType().getAsString(),
1650 lex->getSourceRange(), rex->getSourceRange());
1651 return QualType();
1652 }
1653
1654 return Context.getPointerDiffType();
1655 }
1656 }
1657
Chris Lattner2c8bff72007-12-12 05:47:28 +00001658 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001659}
1660
Chris Lattnerfe1f4032008-04-07 05:30:13 +00001661// C99 6.5.7
1662QualType Sema::CheckShiftOperands(Expr *&lex, Expr *&rex, SourceLocation loc,
1663 bool isCompAssign) {
Chris Lattner2c8bff72007-12-12 05:47:28 +00001664 // C99 6.5.7p2: Each of the operands shall have integer type.
1665 if (!lex->getType()->isIntegerType() || !rex->getType()->isIntegerType())
1666 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001667
Chris Lattner2c8bff72007-12-12 05:47:28 +00001668 // Shifts don't perform usual arithmetic conversions, they just do integer
1669 // promotions on each operand. C99 6.5.7p3
Chris Lattnerbb19bc42007-12-13 07:28:16 +00001670 if (!isCompAssign)
1671 UsualUnaryConversions(lex);
Chris Lattner2c8bff72007-12-12 05:47:28 +00001672 UsualUnaryConversions(rex);
1673
1674 // "The type of the result is that of the promoted left operand."
1675 return lex->getType();
Chris Lattner4b009652007-07-25 00:24:17 +00001676}
1677
Chris Lattnerfe1f4032008-04-07 05:30:13 +00001678// C99 6.5.8
1679QualType Sema::CheckCompareOperands(Expr *&lex, Expr *&rex, SourceLocation loc,
1680 bool isRelational) {
Nate Begemanc5f0f652008-07-14 18:02:46 +00001681 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
1682 return CheckVectorCompareOperands(lex, rex, loc, isRelational);
1683
Chris Lattner254f3bc2007-08-26 01:18:55 +00001684 // C99 6.5.8p3 / C99 6.5.9p4
Steve Naroffecc4fa12007-08-10 18:26:40 +00001685 if (lex->getType()->isArithmeticType() && rex->getType()->isArithmeticType())
1686 UsualArithmeticConversions(lex, rex);
1687 else {
1688 UsualUnaryConversions(lex);
1689 UsualUnaryConversions(rex);
1690 }
Chris Lattner4b009652007-07-25 00:24:17 +00001691 QualType lType = lex->getType();
1692 QualType rType = rex->getType();
1693
Ted Kremenek486509e2007-10-29 17:13:39 +00001694 // For non-floating point types, check for self-comparisons of the form
1695 // x == x, x != x, x < x, etc. These always evaluate to a constant, and
1696 // often indicate logic errors in the program.
Ted Kremenekcf8b77d2007-10-29 16:58:49 +00001697 if (!lType->isFloatingType()) {
Ted Kremenek87e30c52008-01-17 16:57:34 +00001698 if (DeclRefExpr* DRL = dyn_cast<DeclRefExpr>(lex->IgnoreParens()))
1699 if (DeclRefExpr* DRR = dyn_cast<DeclRefExpr>(rex->IgnoreParens()))
Ted Kremenekcf8b77d2007-10-29 16:58:49 +00001700 if (DRL->getDecl() == DRR->getDecl())
1701 Diag(loc, diag::warn_selfcomparison);
1702 }
1703
Chris Lattner254f3bc2007-08-26 01:18:55 +00001704 if (isRelational) {
1705 if (lType->isRealType() && rType->isRealType())
1706 return Context.IntTy;
1707 } else {
Ted Kremenek486509e2007-10-29 17:13:39 +00001708 // Check for comparisons of floating point operands using != and ==.
Ted Kremenek486509e2007-10-29 17:13:39 +00001709 if (lType->isFloatingType()) {
1710 assert (rType->isFloatingType());
Ted Kremenek30c66752007-11-25 00:58:00 +00001711 CheckFloatComparison(loc,lex,rex);
Ted Kremenek75439142007-10-29 16:40:01 +00001712 }
1713
Chris Lattner254f3bc2007-08-26 01:18:55 +00001714 if (lType->isArithmeticType() && rType->isArithmeticType())
1715 return Context.IntTy;
1716 }
Chris Lattner4b009652007-07-25 00:24:17 +00001717
Chris Lattner22be8422007-08-26 01:10:14 +00001718 bool LHSIsNull = lex->isNullPointerConstant(Context);
1719 bool RHSIsNull = rex->isNullPointerConstant(Context);
1720
Chris Lattner254f3bc2007-08-26 01:18:55 +00001721 // All of the following pointer related warnings are GCC extensions, except
1722 // when handling null pointer constants. One day, we can consider making them
1723 // errors (when -pedantic-errors is enabled).
Steve Naroffc33c0602007-08-27 04:08:11 +00001724 if (lType->isPointerType() && rType->isPointerType()) { // C99 6.5.8p2
Chris Lattner56a5cd62008-04-03 05:07:25 +00001725 QualType LCanPointeeTy =
1726 lType->getAsPointerType()->getPointeeType().getCanonicalType();
1727 QualType RCanPointeeTy =
1728 rType->getAsPointerType()->getPointeeType().getCanonicalType();
Eli Friedman50727042008-02-08 01:19:44 +00001729
Steve Naroff3b435622007-11-13 14:57:38 +00001730 if (!LHSIsNull && !RHSIsNull && // C99 6.5.9p2
Chris Lattner56a5cd62008-04-03 05:07:25 +00001731 !LCanPointeeTy->isVoidType() && !RCanPointeeTy->isVoidType() &&
1732 !Context.typesAreCompatible(LCanPointeeTy.getUnqualifiedType(),
1733 RCanPointeeTy.getUnqualifiedType())) {
Steve Naroff4462cb02007-08-16 21:48:38 +00001734 Diag(loc, diag::ext_typecheck_comparison_of_distinct_pointers,
1735 lType.getAsString(), rType.getAsString(),
1736 lex->getSourceRange(), rex->getSourceRange());
Chris Lattner4b009652007-07-25 00:24:17 +00001737 }
Chris Lattnere992d6c2008-01-16 19:17:22 +00001738 ImpCastExprToType(rex, lType); // promote the pointer to pointer
Steve Naroff4462cb02007-08-16 21:48:38 +00001739 return Context.IntTy;
1740 }
Steve Naroff936c4362008-06-03 14:04:54 +00001741 if ((lType->isObjCQualifiedIdType() || rType->isObjCQualifiedIdType())) {
1742 if (ObjCQualifiedIdTypesAreCompatible(lType, rType, true)) {
1743 ImpCastExprToType(rex, lType);
1744 return Context.IntTy;
1745 }
Fariborz Jahanian5319d9c2007-12-20 01:06:58 +00001746 }
Steve Naroff936c4362008-06-03 14:04:54 +00001747 if ((lType->isPointerType() || lType->isObjCQualifiedIdType()) &&
1748 rType->isIntegerType()) {
Chris Lattner22be8422007-08-26 01:10:14 +00001749 if (!RHSIsNull)
Steve Naroff4462cb02007-08-16 21:48:38 +00001750 Diag(loc, diag::ext_typecheck_comparison_of_pointer_integer,
1751 lType.getAsString(), rType.getAsString(),
1752 lex->getSourceRange(), rex->getSourceRange());
Chris Lattnere992d6c2008-01-16 19:17:22 +00001753 ImpCastExprToType(rex, lType); // promote the integer to pointer
Steve Naroff4462cb02007-08-16 21:48:38 +00001754 return Context.IntTy;
1755 }
Steve Naroff936c4362008-06-03 14:04:54 +00001756 if (lType->isIntegerType() &&
1757 (rType->isPointerType() || rType->isObjCQualifiedIdType())) {
Chris Lattner22be8422007-08-26 01:10:14 +00001758 if (!LHSIsNull)
Steve Naroff4462cb02007-08-16 21:48:38 +00001759 Diag(loc, diag::ext_typecheck_comparison_of_pointer_integer,
1760 lType.getAsString(), rType.getAsString(),
1761 lex->getSourceRange(), rex->getSourceRange());
Chris Lattnere992d6c2008-01-16 19:17:22 +00001762 ImpCastExprToType(lex, rType); // promote the integer to pointer
Steve Naroff4462cb02007-08-16 21:48:38 +00001763 return Context.IntTy;
Chris Lattner4b009652007-07-25 00:24:17 +00001764 }
Chris Lattner2c8bff72007-12-12 05:47:28 +00001765 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001766}
1767
Nate Begemanc5f0f652008-07-14 18:02:46 +00001768/// CheckVectorCompareOperands - vector comparisons are a clang extension that
1769/// operates on extended vector types. Instead of producing an IntTy result,
1770/// like a scalar comparison, a vector comparison produces a vector of integer
1771/// types.
1772QualType Sema::CheckVectorCompareOperands(Expr *&lex, Expr *&rex,
1773 SourceLocation loc,
1774 bool isRelational) {
1775 // Check to make sure we're operating on vectors of the same type and width,
1776 // Allowing one side to be a scalar of element type.
1777 QualType vType = CheckVectorOperands(loc, lex, rex);
1778 if (vType.isNull())
1779 return vType;
1780
1781 QualType lType = lex->getType();
1782 QualType rType = rex->getType();
1783
1784 // For non-floating point types, check for self-comparisons of the form
1785 // x == x, x != x, x < x, etc. These always evaluate to a constant, and
1786 // often indicate logic errors in the program.
1787 if (!lType->isFloatingType()) {
1788 if (DeclRefExpr* DRL = dyn_cast<DeclRefExpr>(lex->IgnoreParens()))
1789 if (DeclRefExpr* DRR = dyn_cast<DeclRefExpr>(rex->IgnoreParens()))
1790 if (DRL->getDecl() == DRR->getDecl())
1791 Diag(loc, diag::warn_selfcomparison);
1792 }
1793
1794 // Check for comparisons of floating point operands using != and ==.
1795 if (!isRelational && lType->isFloatingType()) {
1796 assert (rType->isFloatingType());
1797 CheckFloatComparison(loc,lex,rex);
1798 }
1799
1800 // Return the type for the comparison, which is the same as vector type for
1801 // integer vectors, or an integer type of identical size and number of
1802 // elements for floating point vectors.
1803 if (lType->isIntegerType())
1804 return lType;
1805
1806 const VectorType *VTy = lType->getAsVectorType();
1807
1808 // FIXME: need to deal with non-32b int / non-64b long long
1809 unsigned TypeSize = Context.getTypeSize(VTy->getElementType());
1810 if (TypeSize == 32) {
1811 return Context.getExtVectorType(Context.IntTy, VTy->getNumElements());
1812 }
1813 assert(TypeSize == 64 && "Unhandled vector element size in vector compare");
1814 return Context.getExtVectorType(Context.LongLongTy, VTy->getNumElements());
1815}
1816
Chris Lattner4b009652007-07-25 00:24:17 +00001817inline QualType Sema::CheckBitwiseOperands(
Steve Naroff8f708362007-08-24 19:07:16 +00001818 Expr *&lex, Expr *&rex, SourceLocation loc, bool isCompAssign)
Chris Lattner4b009652007-07-25 00:24:17 +00001819{
1820 if (lex->getType()->isVectorType() || rex->getType()->isVectorType())
1821 return CheckVectorOperands(loc, lex, rex);
1822
Steve Naroff8f708362007-08-24 19:07:16 +00001823 QualType compType = UsualArithmeticConversions(lex, rex, isCompAssign);
Chris Lattner4b009652007-07-25 00:24:17 +00001824
1825 if (lex->getType()->isIntegerType() && rex->getType()->isIntegerType())
Steve Naroff8f708362007-08-24 19:07:16 +00001826 return compType;
Chris Lattner2c8bff72007-12-12 05:47:28 +00001827 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001828}
1829
1830inline QualType Sema::CheckLogicalOperands( // C99 6.5.[13,14]
1831 Expr *&lex, Expr *&rex, SourceLocation loc)
1832{
1833 UsualUnaryConversions(lex);
1834 UsualUnaryConversions(rex);
1835
Eli Friedmanbea3f842008-05-13 20:16:47 +00001836 if (lex->getType()->isScalarType() && rex->getType()->isScalarType())
Chris Lattner4b009652007-07-25 00:24:17 +00001837 return Context.IntTy;
Chris Lattner2c8bff72007-12-12 05:47:28 +00001838 return InvalidOperands(loc, lex, rex);
Chris Lattner4b009652007-07-25 00:24:17 +00001839}
1840
1841inline QualType Sema::CheckAssignmentOperands( // C99 6.5.16.1
Steve Naroff0f32f432007-08-24 22:33:52 +00001842 Expr *lex, Expr *&rex, SourceLocation loc, QualType compoundType)
Chris Lattner4b009652007-07-25 00:24:17 +00001843{
1844 QualType lhsType = lex->getType();
1845 QualType rhsType = compoundType.isNull() ? rex->getType() : compoundType;
Chris Lattner4b009652007-07-25 00:24:17 +00001846 Expr::isModifiableLvalueResult mlval = lex->isModifiableLvalue();
1847
1848 switch (mlval) { // C99 6.5.16p2
Chris Lattner005ed752008-01-04 18:04:52 +00001849 case Expr::MLV_Valid:
1850 break;
1851 case Expr::MLV_ConstQualified:
1852 Diag(loc, diag::err_typecheck_assign_const, lex->getSourceRange());
1853 return QualType();
1854 case Expr::MLV_ArrayType:
1855 Diag(loc, diag::err_typecheck_array_not_modifiable_lvalue,
1856 lhsType.getAsString(), lex->getSourceRange());
1857 return QualType();
1858 case Expr::MLV_NotObjectType:
1859 Diag(loc, diag::err_typecheck_non_object_not_modifiable_lvalue,
1860 lhsType.getAsString(), lex->getSourceRange());
1861 return QualType();
1862 case Expr::MLV_InvalidExpression:
1863 Diag(loc, diag::err_typecheck_expression_not_modifiable_lvalue,
1864 lex->getSourceRange());
1865 return QualType();
1866 case Expr::MLV_IncompleteType:
1867 case Expr::MLV_IncompleteVoidType:
1868 Diag(loc, diag::err_typecheck_incomplete_type_not_modifiable_lvalue,
1869 lhsType.getAsString(), lex->getSourceRange());
1870 return QualType();
1871 case Expr::MLV_DuplicateVectorComponents:
1872 Diag(loc, diag::err_typecheck_duplicate_vector_components_not_mlvalue,
1873 lex->getSourceRange());
1874 return QualType();
Chris Lattner4b009652007-07-25 00:24:17 +00001875 }
Steve Naroff7cbb1462007-07-31 12:34:36 +00001876
Chris Lattner005ed752008-01-04 18:04:52 +00001877 AssignConvertType ConvTy;
1878 if (compoundType.isNull())
1879 ConvTy = CheckSingleAssignmentConstraints(lhsType, rex);
1880 else
1881 ConvTy = CheckCompoundAssignmentConstraints(lhsType, rhsType);
1882
1883 if (DiagnoseAssignmentResult(ConvTy, loc, lhsType, rhsType,
1884 rex, "assigning"))
1885 return QualType();
1886
Chris Lattner4b009652007-07-25 00:24:17 +00001887 // C99 6.5.16p3: The type of an assignment expression is the type of the
1888 // left operand unless the left operand has qualified type, in which case
1889 // it is the unqualified version of the type of the left operand.
1890 // C99 6.5.16.1p2: In simple assignment, the value of the right operand
1891 // is converted to the type of the assignment expression (above).
Chris Lattner0d9bcea2007-08-30 17:45:32 +00001892 // C++ 5.17p1: the type of the assignment expression is that of its left
1893 // oprdu.
Chris Lattner005ed752008-01-04 18:04:52 +00001894 return lhsType.getUnqualifiedType();
Chris Lattner4b009652007-07-25 00:24:17 +00001895}
1896
1897inline QualType Sema::CheckCommaOperands( // C99 6.5.17
1898 Expr *&lex, Expr *&rex, SourceLocation loc) {
1899 UsualUnaryConversions(rex);
1900 return rex->getType();
1901}
1902
1903/// CheckIncrementDecrementOperand - unlike most "Check" methods, this routine
1904/// doesn't need to call UsualUnaryConversions or UsualArithmeticConversions.
1905QualType Sema::CheckIncrementDecrementOperand(Expr *op, SourceLocation OpLoc) {
1906 QualType resType = op->getType();
1907 assert(!resType.isNull() && "no type for increment/decrement expression");
1908
Steve Naroffd30e1932007-08-24 17:20:07 +00001909 // C99 6.5.2.4p1: We allow complex as a GCC extension.
Steve Naroffce827582007-11-11 14:15:57 +00001910 if (const PointerType *pt = resType->getAsPointerType()) {
Eli Friedmand9b1fec2008-05-18 18:08:51 +00001911 if (pt->getPointeeType()->isVoidType()) {
1912 Diag(OpLoc, diag::ext_gnu_void_ptr, op->getSourceRange());
1913 } else if (!pt->getPointeeType()->isObjectType()) {
1914 // C99 6.5.2.4p2, 6.5.6p2
Chris Lattner4b009652007-07-25 00:24:17 +00001915 Diag(OpLoc, diag::err_typecheck_arithmetic_incomplete_type,
1916 resType.getAsString(), op->getSourceRange());
1917 return QualType();
1918 }
Steve Naroffd30e1932007-08-24 17:20:07 +00001919 } else if (!resType->isRealType()) {
1920 if (resType->isComplexType())
1921 // C99 does not support ++/-- on complex types.
1922 Diag(OpLoc, diag::ext_integer_increment_complex,
1923 resType.getAsString(), op->getSourceRange());
1924 else {
1925 Diag(OpLoc, diag::err_typecheck_illegal_increment_decrement,
1926 resType.getAsString(), op->getSourceRange());
1927 return QualType();
1928 }
Chris Lattner4b009652007-07-25 00:24:17 +00001929 }
Steve Naroff6acc0f42007-08-23 21:37:33 +00001930 // At this point, we know we have a real, complex or pointer type.
1931 // Now make sure the operand is a modifiable lvalue.
Chris Lattner4b009652007-07-25 00:24:17 +00001932 Expr::isModifiableLvalueResult mlval = op->isModifiableLvalue();
1933 if (mlval != Expr::MLV_Valid) {
1934 // FIXME: emit a more precise diagnostic...
1935 Diag(OpLoc, diag::err_typecheck_invalid_lvalue_incr_decr,
1936 op->getSourceRange());
1937 return QualType();
1938 }
1939 return resType;
1940}
1941
Anders Carlsson4b3db2b2008-02-01 07:15:58 +00001942/// getPrimaryDecl - Helper function for CheckAddressOfOperand().
Chris Lattner4b009652007-07-25 00:24:17 +00001943/// This routine allows us to typecheck complex/recursive expressions
1944/// where the declaration is needed for type checking. Here are some
1945/// examples: &s.xx, &s.zz[1].yy, &(1+2), &(XX), &"123"[2].
Chris Lattner48d7f382008-04-02 04:24:33 +00001946static ValueDecl *getPrimaryDecl(Expr *E) {
1947 switch (E->getStmtClass()) {
Chris Lattner4b009652007-07-25 00:24:17 +00001948 case Stmt::DeclRefExprClass:
Chris Lattner48d7f382008-04-02 04:24:33 +00001949 return cast<DeclRefExpr>(E)->getDecl();
Chris Lattner4b009652007-07-25 00:24:17 +00001950 case Stmt::MemberExprClass:
Chris Lattnera3249072007-11-16 17:46:48 +00001951 // Fields cannot be declared with a 'register' storage class.
1952 // &X->f is always ok, even if X is declared register.
Chris Lattner48d7f382008-04-02 04:24:33 +00001953 if (cast<MemberExpr>(E)->isArrow())
Chris Lattnera3249072007-11-16 17:46:48 +00001954 return 0;
Chris Lattner48d7f382008-04-02 04:24:33 +00001955 return getPrimaryDecl(cast<MemberExpr>(E)->getBase());
Anders Carlsson4b3db2b2008-02-01 07:15:58 +00001956 case Stmt::ArraySubscriptExprClass: {
1957 // &X[4] and &4[X] is invalid if X is invalid and X is not a pointer.
1958
Chris Lattner48d7f382008-04-02 04:24:33 +00001959 ValueDecl *VD = getPrimaryDecl(cast<ArraySubscriptExpr>(E)->getBase());
Anders Carlsson655694e2008-02-01 16:01:31 +00001960 if (!VD || VD->getType()->isPointerType())
Anders Carlsson4b3db2b2008-02-01 07:15:58 +00001961 return 0;
1962 else
1963 return VD;
1964 }
Chris Lattner4b009652007-07-25 00:24:17 +00001965 case Stmt::UnaryOperatorClass:
Chris Lattner48d7f382008-04-02 04:24:33 +00001966 return getPrimaryDecl(cast<UnaryOperator>(E)->getSubExpr());
Chris Lattner4b009652007-07-25 00:24:17 +00001967 case Stmt::ParenExprClass:
Chris Lattner48d7f382008-04-02 04:24:33 +00001968 return getPrimaryDecl(cast<ParenExpr>(E)->getSubExpr());
Chris Lattnera3249072007-11-16 17:46:48 +00001969 case Stmt::ImplicitCastExprClass:
1970 // &X[4] when X is an array, has an implicit cast from array to pointer.
Chris Lattner48d7f382008-04-02 04:24:33 +00001971 return getPrimaryDecl(cast<ImplicitCastExpr>(E)->getSubExpr());
Chris Lattner4b009652007-07-25 00:24:17 +00001972 default:
1973 return 0;
1974 }
1975}
1976
1977/// CheckAddressOfOperand - The operand of & must be either a function
1978/// designator or an lvalue designating an object. If it is an lvalue, the
1979/// object cannot be declared with storage class register or be a bit field.
1980/// Note: The usual conversions are *not* applied to the operand of the &
1981/// operator (C99 6.3.2.1p[2-4]), and its result is never an lvalue.
1982QualType Sema::CheckAddressOfOperand(Expr *op, SourceLocation OpLoc) {
Steve Naroff9c6c3592008-01-13 17:10:08 +00001983 if (getLangOptions().C99) {
1984 // Implement C99-only parts of addressof rules.
1985 if (UnaryOperator* uOp = dyn_cast<UnaryOperator>(op)) {
1986 if (uOp->getOpcode() == UnaryOperator::Deref)
1987 // Per C99 6.5.3.2, the address of a deref always returns a valid result
1988 // (assuming the deref expression is valid).
1989 return uOp->getSubExpr()->getType();
1990 }
1991 // Technically, there should be a check for array subscript
1992 // expressions here, but the result of one is always an lvalue anyway.
1993 }
Anders Carlsson4b3db2b2008-02-01 07:15:58 +00001994 ValueDecl *dcl = getPrimaryDecl(op);
Chris Lattner4b009652007-07-25 00:24:17 +00001995 Expr::isLvalueResult lval = op->isLvalue();
1996
1997 if (lval != Expr::LV_Valid) { // C99 6.5.3.2p1
Chris Lattnera3249072007-11-16 17:46:48 +00001998 if (!dcl || !isa<FunctionDecl>(dcl)) {// allow function designators
1999 // FIXME: emit more specific diag...
Chris Lattner4b009652007-07-25 00:24:17 +00002000 Diag(OpLoc, diag::err_typecheck_invalid_lvalue_addrof,
2001 op->getSourceRange());
2002 return QualType();
2003 }
Steve Naroff73cf87e2008-02-29 23:30:25 +00002004 } else if (MemberExpr *MemExpr = dyn_cast<MemberExpr>(op)) { // C99 6.5.3.2p1
2005 if (MemExpr->getMemberDecl()->isBitField()) {
2006 Diag(OpLoc, diag::err_typecheck_address_of,
2007 std::string("bit-field"), op->getSourceRange());
2008 return QualType();
2009 }
2010 // Check for Apple extension for accessing vector components.
2011 } else if (isa<ArraySubscriptExpr>(op) &&
2012 cast<ArraySubscriptExpr>(op)->getBase()->getType()->isVectorType()) {
2013 Diag(OpLoc, diag::err_typecheck_address_of,
2014 std::string("vector"), op->getSourceRange());
2015 return QualType();
2016 } else if (dcl) { // C99 6.5.3.2p1
Chris Lattner4b009652007-07-25 00:24:17 +00002017 // We have an lvalue with a decl. Make sure the decl is not declared
2018 // with the register storage-class specifier.
2019 if (const VarDecl *vd = dyn_cast<VarDecl>(dcl)) {
2020 if (vd->getStorageClass() == VarDecl::Register) {
Steve Naroff73cf87e2008-02-29 23:30:25 +00002021 Diag(OpLoc, diag::err_typecheck_address_of,
2022 std::string("register variable"), op->getSourceRange());
Chris Lattner4b009652007-07-25 00:24:17 +00002023 return QualType();
2024 }
2025 } else
2026 assert(0 && "Unknown/unexpected decl type");
Chris Lattner4b009652007-07-25 00:24:17 +00002027 }
2028 // If the operand has type "type", the result has type "pointer to type".
2029 return Context.getPointerType(op->getType());
2030}
2031
2032QualType Sema::CheckIndirectionOperand(Expr *op, SourceLocation OpLoc) {
2033 UsualUnaryConversions(op);
2034 QualType qType = op->getType();
2035
Chris Lattner7931f4a2007-07-31 16:53:04 +00002036 if (const PointerType *PT = qType->getAsPointerType()) {
Steve Naroff9c6c3592008-01-13 17:10:08 +00002037 // Note that per both C89 and C99, this is always legal, even
2038 // if ptype is an incomplete type or void.
2039 // It would be possible to warn about dereferencing a
2040 // void pointer, but it's completely well-defined,
2041 // and such a warning is unlikely to catch any mistakes.
2042 return PT->getPointeeType();
Chris Lattner4b009652007-07-25 00:24:17 +00002043 }
2044 Diag(OpLoc, diag::err_typecheck_indirection_requires_pointer,
2045 qType.getAsString(), op->getSourceRange());
2046 return QualType();
2047}
2048
2049static inline BinaryOperator::Opcode ConvertTokenKindToBinaryOpcode(
2050 tok::TokenKind Kind) {
2051 BinaryOperator::Opcode Opc;
2052 switch (Kind) {
2053 default: assert(0 && "Unknown binop!");
2054 case tok::star: Opc = BinaryOperator::Mul; break;
2055 case tok::slash: Opc = BinaryOperator::Div; break;
2056 case tok::percent: Opc = BinaryOperator::Rem; break;
2057 case tok::plus: Opc = BinaryOperator::Add; break;
2058 case tok::minus: Opc = BinaryOperator::Sub; break;
2059 case tok::lessless: Opc = BinaryOperator::Shl; break;
2060 case tok::greatergreater: Opc = BinaryOperator::Shr; break;
2061 case tok::lessequal: Opc = BinaryOperator::LE; break;
2062 case tok::less: Opc = BinaryOperator::LT; break;
2063 case tok::greaterequal: Opc = BinaryOperator::GE; break;
2064 case tok::greater: Opc = BinaryOperator::GT; break;
2065 case tok::exclaimequal: Opc = BinaryOperator::NE; break;
2066 case tok::equalequal: Opc = BinaryOperator::EQ; break;
2067 case tok::amp: Opc = BinaryOperator::And; break;
2068 case tok::caret: Opc = BinaryOperator::Xor; break;
2069 case tok::pipe: Opc = BinaryOperator::Or; break;
2070 case tok::ampamp: Opc = BinaryOperator::LAnd; break;
2071 case tok::pipepipe: Opc = BinaryOperator::LOr; break;
2072 case tok::equal: Opc = BinaryOperator::Assign; break;
2073 case tok::starequal: Opc = BinaryOperator::MulAssign; break;
2074 case tok::slashequal: Opc = BinaryOperator::DivAssign; break;
2075 case tok::percentequal: Opc = BinaryOperator::RemAssign; break;
2076 case tok::plusequal: Opc = BinaryOperator::AddAssign; break;
2077 case tok::minusequal: Opc = BinaryOperator::SubAssign; break;
2078 case tok::lesslessequal: Opc = BinaryOperator::ShlAssign; break;
2079 case tok::greatergreaterequal: Opc = BinaryOperator::ShrAssign; break;
2080 case tok::ampequal: Opc = BinaryOperator::AndAssign; break;
2081 case tok::caretequal: Opc = BinaryOperator::XorAssign; break;
2082 case tok::pipeequal: Opc = BinaryOperator::OrAssign; break;
2083 case tok::comma: Opc = BinaryOperator::Comma; break;
2084 }
2085 return Opc;
2086}
2087
2088static inline UnaryOperator::Opcode ConvertTokenKindToUnaryOpcode(
2089 tok::TokenKind Kind) {
2090 UnaryOperator::Opcode Opc;
2091 switch (Kind) {
2092 default: assert(0 && "Unknown unary op!");
2093 case tok::plusplus: Opc = UnaryOperator::PreInc; break;
2094 case tok::minusminus: Opc = UnaryOperator::PreDec; break;
2095 case tok::amp: Opc = UnaryOperator::AddrOf; break;
2096 case tok::star: Opc = UnaryOperator::Deref; break;
2097 case tok::plus: Opc = UnaryOperator::Plus; break;
2098 case tok::minus: Opc = UnaryOperator::Minus; break;
2099 case tok::tilde: Opc = UnaryOperator::Not; break;
2100 case tok::exclaim: Opc = UnaryOperator::LNot; break;
2101 case tok::kw_sizeof: Opc = UnaryOperator::SizeOf; break;
2102 case tok::kw___alignof: Opc = UnaryOperator::AlignOf; break;
2103 case tok::kw___real: Opc = UnaryOperator::Real; break;
2104 case tok::kw___imag: Opc = UnaryOperator::Imag; break;
2105 case tok::kw___extension__: Opc = UnaryOperator::Extension; break;
2106 }
2107 return Opc;
2108}
2109
2110// Binary Operators. 'Tok' is the token for the operator.
Steve Naroff87d58b42007-09-16 03:34:24 +00002111Action::ExprResult Sema::ActOnBinOp(SourceLocation TokLoc, tok::TokenKind Kind,
Chris Lattner4b009652007-07-25 00:24:17 +00002112 ExprTy *LHS, ExprTy *RHS) {
2113 BinaryOperator::Opcode Opc = ConvertTokenKindToBinaryOpcode(Kind);
2114 Expr *lhs = (Expr *)LHS, *rhs = (Expr*)RHS;
2115
Steve Naroff87d58b42007-09-16 03:34:24 +00002116 assert((lhs != 0) && "ActOnBinOp(): missing left expression");
2117 assert((rhs != 0) && "ActOnBinOp(): missing right expression");
Chris Lattner4b009652007-07-25 00:24:17 +00002118
2119 QualType ResultTy; // Result type of the binary operator.
2120 QualType CompTy; // Computation type for compound assignments (e.g. '+=')
2121
2122 switch (Opc) {
2123 default:
2124 assert(0 && "Unknown binary expr!");
2125 case BinaryOperator::Assign:
2126 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, QualType());
2127 break;
2128 case BinaryOperator::Mul:
2129 case BinaryOperator::Div:
2130 ResultTy = CheckMultiplyDivideOperands(lhs, rhs, TokLoc);
2131 break;
2132 case BinaryOperator::Rem:
2133 ResultTy = CheckRemainderOperands(lhs, rhs, TokLoc);
2134 break;
2135 case BinaryOperator::Add:
2136 ResultTy = CheckAdditionOperands(lhs, rhs, TokLoc);
2137 break;
2138 case BinaryOperator::Sub:
2139 ResultTy = CheckSubtractionOperands(lhs, rhs, TokLoc);
2140 break;
2141 case BinaryOperator::Shl:
2142 case BinaryOperator::Shr:
2143 ResultTy = CheckShiftOperands(lhs, rhs, TokLoc);
2144 break;
2145 case BinaryOperator::LE:
2146 case BinaryOperator::LT:
2147 case BinaryOperator::GE:
2148 case BinaryOperator::GT:
Chris Lattner254f3bc2007-08-26 01:18:55 +00002149 ResultTy = CheckCompareOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002150 break;
2151 case BinaryOperator::EQ:
2152 case BinaryOperator::NE:
Chris Lattner254f3bc2007-08-26 01:18:55 +00002153 ResultTy = CheckCompareOperands(lhs, rhs, TokLoc, false);
Chris Lattner4b009652007-07-25 00:24:17 +00002154 break;
2155 case BinaryOperator::And:
2156 case BinaryOperator::Xor:
2157 case BinaryOperator::Or:
2158 ResultTy = CheckBitwiseOperands(lhs, rhs, TokLoc);
2159 break;
2160 case BinaryOperator::LAnd:
2161 case BinaryOperator::LOr:
2162 ResultTy = CheckLogicalOperands(lhs, rhs, TokLoc);
2163 break;
2164 case BinaryOperator::MulAssign:
2165 case BinaryOperator::DivAssign:
Steve Naroff8f708362007-08-24 19:07:16 +00002166 CompTy = CheckMultiplyDivideOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002167 if (!CompTy.isNull())
2168 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
2169 break;
2170 case BinaryOperator::RemAssign:
Steve Naroff8f708362007-08-24 19:07:16 +00002171 CompTy = CheckRemainderOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002172 if (!CompTy.isNull())
2173 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
2174 break;
2175 case BinaryOperator::AddAssign:
Steve Naroff8f708362007-08-24 19:07:16 +00002176 CompTy = CheckAdditionOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002177 if (!CompTy.isNull())
2178 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
2179 break;
2180 case BinaryOperator::SubAssign:
Steve Naroff8f708362007-08-24 19:07:16 +00002181 CompTy = CheckSubtractionOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002182 if (!CompTy.isNull())
2183 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
2184 break;
2185 case BinaryOperator::ShlAssign:
2186 case BinaryOperator::ShrAssign:
Steve Naroff8f708362007-08-24 19:07:16 +00002187 CompTy = CheckShiftOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002188 if (!CompTy.isNull())
2189 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
2190 break;
2191 case BinaryOperator::AndAssign:
2192 case BinaryOperator::XorAssign:
2193 case BinaryOperator::OrAssign:
Steve Naroff8f708362007-08-24 19:07:16 +00002194 CompTy = CheckBitwiseOperands(lhs, rhs, TokLoc, true);
Chris Lattner4b009652007-07-25 00:24:17 +00002195 if (!CompTy.isNull())
2196 ResultTy = CheckAssignmentOperands(lhs, rhs, TokLoc, CompTy);
2197 break;
2198 case BinaryOperator::Comma:
2199 ResultTy = CheckCommaOperands(lhs, rhs, TokLoc);
2200 break;
2201 }
2202 if (ResultTy.isNull())
2203 return true;
2204 if (CompTy.isNull())
Chris Lattnerf420df12007-08-28 18:36:55 +00002205 return new BinaryOperator(lhs, rhs, Opc, ResultTy, TokLoc);
Chris Lattner4b009652007-07-25 00:24:17 +00002206 else
Chris Lattnerf420df12007-08-28 18:36:55 +00002207 return new CompoundAssignOperator(lhs, rhs, Opc, ResultTy, CompTy, TokLoc);
Chris Lattner4b009652007-07-25 00:24:17 +00002208}
2209
2210// Unary Operators. 'Tok' is the token for the operator.
Steve Naroff87d58b42007-09-16 03:34:24 +00002211Action::ExprResult Sema::ActOnUnaryOp(SourceLocation OpLoc, tok::TokenKind Op,
Chris Lattner4b009652007-07-25 00:24:17 +00002212 ExprTy *input) {
2213 Expr *Input = (Expr*)input;
2214 UnaryOperator::Opcode Opc = ConvertTokenKindToUnaryOpcode(Op);
2215 QualType resultType;
2216 switch (Opc) {
2217 default:
2218 assert(0 && "Unimplemented unary expr!");
2219 case UnaryOperator::PreInc:
2220 case UnaryOperator::PreDec:
2221 resultType = CheckIncrementDecrementOperand(Input, OpLoc);
2222 break;
2223 case UnaryOperator::AddrOf:
2224 resultType = CheckAddressOfOperand(Input, OpLoc);
2225 break;
2226 case UnaryOperator::Deref:
Steve Naroffccc26a72007-12-18 04:06:57 +00002227 DefaultFunctionArrayConversion(Input);
Chris Lattner4b009652007-07-25 00:24:17 +00002228 resultType = CheckIndirectionOperand(Input, OpLoc);
2229 break;
2230 case UnaryOperator::Plus:
2231 case UnaryOperator::Minus:
2232 UsualUnaryConversions(Input);
2233 resultType = Input->getType();
2234 if (!resultType->isArithmeticType()) // C99 6.5.3.3p1
2235 return Diag(OpLoc, diag::err_typecheck_unary_expr,
2236 resultType.getAsString());
2237 break;
2238 case UnaryOperator::Not: // bitwise complement
2239 UsualUnaryConversions(Input);
2240 resultType = Input->getType();
Steve Naroffd30e1932007-08-24 17:20:07 +00002241 // C99 6.5.3.3p1. We allow complex as a GCC extension.
2242 if (!resultType->isIntegerType()) {
2243 if (resultType->isComplexType())
2244 // C99 does not support '~' for complex conjugation.
2245 Diag(OpLoc, diag::ext_integer_complement_complex,
2246 resultType.getAsString());
2247 else
2248 return Diag(OpLoc, diag::err_typecheck_unary_expr,
2249 resultType.getAsString());
2250 }
Chris Lattner4b009652007-07-25 00:24:17 +00002251 break;
2252 case UnaryOperator::LNot: // logical negation
2253 // Unlike +/-/~, integer promotions aren't done here (C99 6.5.3.3p5).
2254 DefaultFunctionArrayConversion(Input);
2255 resultType = Input->getType();
2256 if (!resultType->isScalarType()) // C99 6.5.3.3p1
2257 return Diag(OpLoc, diag::err_typecheck_unary_expr,
2258 resultType.getAsString());
2259 // LNot always has type int. C99 6.5.3.3p5.
2260 resultType = Context.IntTy;
2261 break;
2262 case UnaryOperator::SizeOf:
2263 resultType = CheckSizeOfAlignOfOperand(Input->getType(), OpLoc, true);
2264 break;
2265 case UnaryOperator::AlignOf:
2266 resultType = CheckSizeOfAlignOfOperand(Input->getType(), OpLoc, false);
2267 break;
Chris Lattner03931a72007-08-24 21:16:53 +00002268 case UnaryOperator::Real:
Chris Lattner03931a72007-08-24 21:16:53 +00002269 case UnaryOperator::Imag:
Chris Lattner5110ad52007-08-24 21:41:10 +00002270 resultType = CheckRealImagOperand(Input, OpLoc);
Chris Lattner03931a72007-08-24 21:16:53 +00002271 break;
Chris Lattner4b009652007-07-25 00:24:17 +00002272 case UnaryOperator::Extension:
Chris Lattner4b009652007-07-25 00:24:17 +00002273 resultType = Input->getType();
2274 break;
2275 }
2276 if (resultType.isNull())
2277 return true;
2278 return new UnaryOperator(Input, Opc, resultType, OpLoc);
2279}
2280
Steve Naroff5cbb02f2007-09-16 14:56:35 +00002281/// ActOnAddrLabel - Parse the GNU address of label extension: "&&foo".
2282Sema::ExprResult Sema::ActOnAddrLabel(SourceLocation OpLoc,
Chris Lattner4b009652007-07-25 00:24:17 +00002283 SourceLocation LabLoc,
2284 IdentifierInfo *LabelII) {
2285 // Look up the record for this label identifier.
2286 LabelStmt *&LabelDecl = LabelMap[LabelII];
2287
2288 // If we haven't seen this label yet, create a forward reference.
2289 if (LabelDecl == 0)
2290 LabelDecl = new LabelStmt(LabLoc, LabelII, 0);
2291
2292 // Create the AST node. The address of a label always has type 'void*'.
Chris Lattnera0d03a72007-08-03 17:31:20 +00002293 return new AddrLabelExpr(OpLoc, LabLoc, LabelDecl,
2294 Context.getPointerType(Context.VoidTy));
Chris Lattner4b009652007-07-25 00:24:17 +00002295}
2296
Steve Naroff5cbb02f2007-09-16 14:56:35 +00002297Sema::ExprResult Sema::ActOnStmtExpr(SourceLocation LPLoc, StmtTy *substmt,
Chris Lattner4b009652007-07-25 00:24:17 +00002298 SourceLocation RPLoc) { // "({..})"
2299 Stmt *SubStmt = static_cast<Stmt*>(substmt);
2300 assert(SubStmt && isa<CompoundStmt>(SubStmt) && "Invalid action invocation!");
2301 CompoundStmt *Compound = cast<CompoundStmt>(SubStmt);
2302
2303 // FIXME: there are a variety of strange constraints to enforce here, for
2304 // example, it is not possible to goto into a stmt expression apparently.
2305 // More semantic analysis is needed.
2306
2307 // FIXME: the last statement in the compount stmt has its value used. We
2308 // should not warn about it being unused.
2309
2310 // If there are sub stmts in the compound stmt, take the type of the last one
2311 // as the type of the stmtexpr.
2312 QualType Ty = Context.VoidTy;
2313
2314 if (!Compound->body_empty())
2315 if (Expr *LastExpr = dyn_cast<Expr>(Compound->body_back()))
2316 Ty = LastExpr->getType();
2317
2318 return new StmtExpr(Compound, Ty, LPLoc, RPLoc);
2319}
Steve Naroff63bad2d2007-08-01 22:05:33 +00002320
Steve Naroff5cbb02f2007-09-16 14:56:35 +00002321Sema::ExprResult Sema::ActOnBuiltinOffsetOf(SourceLocation BuiltinLoc,
Chris Lattner0d9bcea2007-08-30 17:45:32 +00002322 SourceLocation TypeLoc,
2323 TypeTy *argty,
2324 OffsetOfComponent *CompPtr,
2325 unsigned NumComponents,
2326 SourceLocation RPLoc) {
2327 QualType ArgTy = QualType::getFromOpaquePtr(argty);
2328 assert(!ArgTy.isNull() && "Missing type argument!");
2329
2330 // We must have at least one component that refers to the type, and the first
2331 // one is known to be a field designator. Verify that the ArgTy represents
2332 // a struct/union/class.
2333 if (!ArgTy->isRecordType())
2334 return Diag(TypeLoc, diag::err_offsetof_record_type,ArgTy.getAsString());
2335
2336 // Otherwise, create a compound literal expression as the base, and
2337 // iteratively process the offsetof designators.
Steve Naroffbe37fc02008-01-14 18:19:28 +00002338 Expr *Res = new CompoundLiteralExpr(SourceLocation(), ArgTy, 0, false);
Chris Lattner0d9bcea2007-08-30 17:45:32 +00002339
Chris Lattnerb37522e2007-08-31 21:49:13 +00002340 // offsetof with non-identifier designators (e.g. "offsetof(x, a.b[c])") are a
2341 // GCC extension, diagnose them.
2342 if (NumComponents != 1)
2343 Diag(BuiltinLoc, diag::ext_offsetof_extended_field_designator,
2344 SourceRange(CompPtr[1].LocStart, CompPtr[NumComponents-1].LocEnd));
2345
Chris Lattner0d9bcea2007-08-30 17:45:32 +00002346 for (unsigned i = 0; i != NumComponents; ++i) {
2347 const OffsetOfComponent &OC = CompPtr[i];
2348 if (OC.isBrackets) {
2349 // Offset of an array sub-field. TODO: Should we allow vector elements?
2350 const ArrayType *AT = Res->getType()->getAsArrayType();
2351 if (!AT) {
2352 delete Res;
2353 return Diag(OC.LocEnd, diag::err_offsetof_array_type,
2354 Res->getType().getAsString());
2355 }
2356
Chris Lattner2af6a802007-08-30 17:59:59 +00002357 // FIXME: C++: Verify that operator[] isn't overloaded.
2358
Chris Lattner0d9bcea2007-08-30 17:45:32 +00002359 // C99 6.5.2.1p1
2360 Expr *Idx = static_cast<Expr*>(OC.U.E);
2361 if (!Idx->getType()->isIntegerType())
2362 return Diag(Idx->getLocStart(), diag::err_typecheck_subscript,
2363 Idx->getSourceRange());
2364
2365 Res = new ArraySubscriptExpr(Res, Idx, AT->getElementType(), OC.LocEnd);
2366 continue;
2367 }
2368
2369 const RecordType *RC = Res->getType()->getAsRecordType();
2370 if (!RC) {
2371 delete Res;
2372 return Diag(OC.LocEnd, diag::err_offsetof_record_type,
2373 Res->getType().getAsString());
2374 }
2375
2376 // Get the decl corresponding to this.
2377 RecordDecl *RD = RC->getDecl();
2378 FieldDecl *MemberDecl = RD->getMember(OC.U.IdentInfo);
2379 if (!MemberDecl)
2380 return Diag(BuiltinLoc, diag::err_typecheck_no_member,
2381 OC.U.IdentInfo->getName(),
2382 SourceRange(OC.LocStart, OC.LocEnd));
Chris Lattner2af6a802007-08-30 17:59:59 +00002383
2384 // FIXME: C++: Verify that MemberDecl isn't a static field.
2385 // FIXME: Verify that MemberDecl isn't a bitfield.
Eli Friedman76b49832008-02-06 22:48:16 +00002386 // MemberDecl->getType() doesn't get the right qualifiers, but it doesn't
2387 // matter here.
2388 Res = new MemberExpr(Res, false, MemberDecl, OC.LocEnd, MemberDecl->getType());
Chris Lattner0d9bcea2007-08-30 17:45:32 +00002389 }
2390
2391 return new UnaryOperator(Res, UnaryOperator::OffsetOf, Context.getSizeType(),
2392 BuiltinLoc);
2393}
2394
2395
Steve Naroff5cbb02f2007-09-16 14:56:35 +00002396Sema::ExprResult Sema::ActOnTypesCompatibleExpr(SourceLocation BuiltinLoc,
Steve Naroff63bad2d2007-08-01 22:05:33 +00002397 TypeTy *arg1, TypeTy *arg2,
2398 SourceLocation RPLoc) {
2399 QualType argT1 = QualType::getFromOpaquePtr(arg1);
2400 QualType argT2 = QualType::getFromOpaquePtr(arg2);
2401
2402 assert((!argT1.isNull() && !argT2.isNull()) && "Missing type argument(s)");
2403
Chris Lattner0d9bcea2007-08-30 17:45:32 +00002404 return new TypesCompatibleExpr(Context.IntTy, BuiltinLoc, argT1, argT2,RPLoc);
Steve Naroff63bad2d2007-08-01 22:05:33 +00002405}
2406
Steve Naroff5cbb02f2007-09-16 14:56:35 +00002407Sema::ExprResult Sema::ActOnChooseExpr(SourceLocation BuiltinLoc, ExprTy *cond,
Steve Naroff93c53012007-08-03 21:21:27 +00002408 ExprTy *expr1, ExprTy *expr2,
2409 SourceLocation RPLoc) {
2410 Expr *CondExpr = static_cast<Expr*>(cond);
2411 Expr *LHSExpr = static_cast<Expr*>(expr1);
2412 Expr *RHSExpr = static_cast<Expr*>(expr2);
2413
2414 assert((CondExpr && LHSExpr && RHSExpr) && "Missing type argument(s)");
2415
2416 // The conditional expression is required to be a constant expression.
2417 llvm::APSInt condEval(32);
2418 SourceLocation ExpLoc;
2419 if (!CondExpr->isIntegerConstantExpr(condEval, Context, &ExpLoc))
2420 return Diag(ExpLoc, diag::err_typecheck_choose_expr_requires_constant,
2421 CondExpr->getSourceRange());
2422
2423 // If the condition is > zero, then the AST type is the same as the LSHExpr.
2424 QualType resType = condEval.getZExtValue() ? LHSExpr->getType() :
2425 RHSExpr->getType();
2426 return new ChooseExpr(BuiltinLoc, CondExpr, LHSExpr, RHSExpr, resType, RPLoc);
2427}
2428
Nate Begemanbd881ef2008-01-30 20:50:20 +00002429/// ExprsMatchFnType - return true if the Exprs in array Args have
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002430/// QualTypes that match the QualTypes of the arguments of the FnType.
Nate Begemanbd881ef2008-01-30 20:50:20 +00002431/// The number of arguments has already been validated to match the number of
2432/// arguments in FnType.
2433static bool ExprsMatchFnType(Expr **Args, const FunctionTypeProto *FnType) {
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002434 unsigned NumParams = FnType->getNumArgs();
Nate Begeman778fd3b2008-04-18 23:35:14 +00002435 for (unsigned i = 0; i != NumParams; ++i) {
2436 QualType ExprTy = Args[i]->getType().getCanonicalType();
2437 QualType ParmTy = FnType->getArgType(i).getCanonicalType();
2438
2439 if (ExprTy.getUnqualifiedType() != ParmTy.getUnqualifiedType())
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002440 return false;
Nate Begeman778fd3b2008-04-18 23:35:14 +00002441 }
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002442 return true;
2443}
2444
2445Sema::ExprResult Sema::ActOnOverloadExpr(ExprTy **args, unsigned NumArgs,
2446 SourceLocation *CommaLocs,
2447 SourceLocation BuiltinLoc,
2448 SourceLocation RParenLoc) {
Nate Begemanc6078c92008-01-31 05:38:29 +00002449 // __builtin_overload requires at least 2 arguments
2450 if (NumArgs < 2)
2451 return Diag(RParenLoc, diag::err_typecheck_call_too_few_args,
2452 SourceRange(BuiltinLoc, RParenLoc));
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002453
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002454 // The first argument is required to be a constant expression. It tells us
2455 // the number of arguments to pass to each of the functions to be overloaded.
Nate Begemanc6078c92008-01-31 05:38:29 +00002456 Expr **Args = reinterpret_cast<Expr**>(args);
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002457 Expr *NParamsExpr = Args[0];
2458 llvm::APSInt constEval(32);
2459 SourceLocation ExpLoc;
2460 if (!NParamsExpr->isIntegerConstantExpr(constEval, Context, &ExpLoc))
2461 return Diag(ExpLoc, diag::err_overload_expr_requires_non_zero_constant,
2462 NParamsExpr->getSourceRange());
2463
2464 // Verify that the number of parameters is > 0
2465 unsigned NumParams = constEval.getZExtValue();
2466 if (NumParams == 0)
2467 return Diag(ExpLoc, diag::err_overload_expr_requires_non_zero_constant,
2468 NParamsExpr->getSourceRange());
2469 // Verify that we have at least 1 + NumParams arguments to the builtin.
2470 if ((NumParams + 1) > NumArgs)
2471 return Diag(RParenLoc, diag::err_typecheck_call_too_few_args,
2472 SourceRange(BuiltinLoc, RParenLoc));
2473
2474 // Figure out the return type, by matching the args to one of the functions
Nate Begemanbd881ef2008-01-30 20:50:20 +00002475 // listed after the parameters.
Nate Begemanc6078c92008-01-31 05:38:29 +00002476 OverloadExpr *OE = 0;
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002477 for (unsigned i = NumParams + 1; i < NumArgs; ++i) {
2478 // UsualUnaryConversions will convert the function DeclRefExpr into a
2479 // pointer to function.
2480 Expr *Fn = UsualUnaryConversions(Args[i]);
2481 FunctionTypeProto *FnType = 0;
Nate Begemanbd881ef2008-01-30 20:50:20 +00002482 if (const PointerType *PT = Fn->getType()->getAsPointerType()) {
2483 QualType PointeeType = PT->getPointeeType().getCanonicalType();
2484 FnType = dyn_cast<FunctionTypeProto>(PointeeType);
2485 }
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002486
2487 // The Expr type must be FunctionTypeProto, since FunctionTypeProto has no
2488 // parameters, and the number of parameters must match the value passed to
2489 // the builtin.
2490 if (!FnType || (FnType->getNumArgs() != NumParams))
Nate Begemanbd881ef2008-01-30 20:50:20 +00002491 return Diag(Fn->getExprLoc(), diag::err_overload_incorrect_fntype,
2492 Fn->getSourceRange());
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002493
2494 // Scan the parameter list for the FunctionType, checking the QualType of
Nate Begemanbd881ef2008-01-30 20:50:20 +00002495 // each parameter against the QualTypes of the arguments to the builtin.
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002496 // If they match, return a new OverloadExpr.
Nate Begemanc6078c92008-01-31 05:38:29 +00002497 if (ExprsMatchFnType(Args+1, FnType)) {
2498 if (OE)
2499 return Diag(Fn->getExprLoc(), diag::err_overload_multiple_match,
2500 OE->getFn()->getSourceRange());
2501 // Remember our match, and continue processing the remaining arguments
2502 // to catch any errors.
2503 OE = new OverloadExpr(Args, NumArgs, i, FnType->getResultType(),
2504 BuiltinLoc, RParenLoc);
2505 }
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002506 }
Nate Begemanc6078c92008-01-31 05:38:29 +00002507 // Return the newly created OverloadExpr node, if we succeded in matching
2508 // exactly one of the candidate functions.
2509 if (OE)
2510 return OE;
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002511
2512 // If we didn't find a matching function Expr in the __builtin_overload list
2513 // the return an error.
2514 std::string typeNames;
Nate Begemanbd881ef2008-01-30 20:50:20 +00002515 for (unsigned i = 0; i != NumParams; ++i) {
2516 if (i != 0) typeNames += ", ";
2517 typeNames += Args[i+1]->getType().getAsString();
2518 }
Nate Begeman9f3bfb72008-01-17 17:46:27 +00002519
2520 return Diag(BuiltinLoc, diag::err_overload_no_match, typeNames,
2521 SourceRange(BuiltinLoc, RParenLoc));
2522}
2523
Anders Carlsson36760332007-10-15 20:28:48 +00002524Sema::ExprResult Sema::ActOnVAArg(SourceLocation BuiltinLoc,
2525 ExprTy *expr, TypeTy *type,
Chris Lattner005ed752008-01-04 18:04:52 +00002526 SourceLocation RPLoc) {
Anders Carlsson36760332007-10-15 20:28:48 +00002527 Expr *E = static_cast<Expr*>(expr);
2528 QualType T = QualType::getFromOpaquePtr(type);
2529
2530 InitBuiltinVaListType();
2531
Chris Lattner005ed752008-01-04 18:04:52 +00002532 if (CheckAssignmentConstraints(Context.getBuiltinVaListType(), E->getType())
2533 != Compatible)
Anders Carlsson36760332007-10-15 20:28:48 +00002534 return Diag(E->getLocStart(),
2535 diag::err_first_argument_to_va_arg_not_of_type_va_list,
2536 E->getType().getAsString(),
2537 E->getSourceRange());
2538
2539 // FIXME: Warn if a non-POD type is passed in.
2540
2541 return new VAArgExpr(BuiltinLoc, E, T, RPLoc);
2542}
2543
Chris Lattner005ed752008-01-04 18:04:52 +00002544bool Sema::DiagnoseAssignmentResult(AssignConvertType ConvTy,
2545 SourceLocation Loc,
2546 QualType DstType, QualType SrcType,
2547 Expr *SrcExpr, const char *Flavor) {
2548 // Decode the result (notice that AST's are still created for extensions).
2549 bool isInvalid = false;
2550 unsigned DiagKind;
2551 switch (ConvTy) {
2552 default: assert(0 && "Unknown conversion type");
2553 case Compatible: return false;
Chris Lattnerd951b7b2008-01-04 18:22:42 +00002554 case PointerToInt:
Chris Lattner005ed752008-01-04 18:04:52 +00002555 DiagKind = diag::ext_typecheck_convert_pointer_int;
2556 break;
Chris Lattnerd951b7b2008-01-04 18:22:42 +00002557 case IntToPointer:
2558 DiagKind = diag::ext_typecheck_convert_int_pointer;
2559 break;
Chris Lattner005ed752008-01-04 18:04:52 +00002560 case IncompatiblePointer:
2561 DiagKind = diag::ext_typecheck_convert_incompatible_pointer;
2562 break;
2563 case FunctionVoidPointer:
2564 DiagKind = diag::ext_typecheck_convert_pointer_void_func;
2565 break;
2566 case CompatiblePointerDiscardsQualifiers:
2567 DiagKind = diag::ext_typecheck_convert_discards_qualifiers;
2568 break;
2569 case Incompatible:
2570 DiagKind = diag::err_typecheck_convert_incompatible;
2571 isInvalid = true;
2572 break;
2573 }
2574
2575 Diag(Loc, DiagKind, DstType.getAsString(), SrcType.getAsString(), Flavor,
2576 SrcExpr->getSourceRange());
2577 return isInvalid;
2578}