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Chris Lattner59907c42007-08-10 20:18:51 +00001//===--- SemaChecking.cpp - Extra Semantic Checking -----------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner0bc735f2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner59907c42007-08-10 20:18:51 +00007//
8//===----------------------------------------------------------------------===//
9//
Mike Stump1eb44332009-09-09 15:08:12 +000010// This file implements extra semantic analysis beyond what is enforced
Chris Lattner59907c42007-08-10 20:18:51 +000011// by the C type system.
12//
13//===----------------------------------------------------------------------===//
14
Douglas Gregore737f502010-08-12 20:07:10 +000015#include "clang/Sema/Sema.h"
John McCall2d887082010-08-25 22:03:47 +000016#include "clang/Sema/SemaInternal.h"
John McCall781472f2010-08-25 08:40:02 +000017#include "clang/Sema/ScopeInfo.h"
Ted Kremenek826a3452010-07-16 02:11:22 +000018#include "clang/Analysis/Analyses/FormatString.h"
Chris Lattner59907c42007-08-10 20:18:51 +000019#include "clang/AST/ASTContext.h"
Ken Dyck199c3d62010-01-11 17:06:35 +000020#include "clang/AST/CharUnits.h"
John McCall384aff82010-08-25 07:42:41 +000021#include "clang/AST/DeclCXX.h"
Daniel Dunbarc4a1dea2008-08-11 05:35:13 +000022#include "clang/AST/DeclObjC.h"
Ted Kremenek23245122007-08-20 16:18:38 +000023#include "clang/AST/ExprCXX.h"
Ted Kremenek7ff22b22008-06-16 18:00:42 +000024#include "clang/AST/ExprObjC.h"
Mike Stumpf8c49212010-01-21 03:59:47 +000025#include "clang/AST/DeclObjC.h"
26#include "clang/AST/StmtCXX.h"
27#include "clang/AST/StmtObjC.h"
Chris Lattner59907c42007-08-10 20:18:51 +000028#include "clang/Lex/Preprocessor.h"
Mike Stumpf8c49212010-01-21 03:59:47 +000029#include "llvm/ADT/BitVector.h"
30#include "llvm/ADT/STLExtras.h"
Tom Care3bfc5f42010-06-09 04:11:11 +000031#include "llvm/Support/raw_ostream.h"
Eric Christopher691ebc32010-04-17 02:26:23 +000032#include "clang/Basic/TargetBuiltins.h"
Nate Begeman26a31422010-06-08 02:47:44 +000033#include "clang/Basic/TargetInfo.h"
Fariborz Jahanian7da71022010-09-07 19:38:13 +000034#include "clang/Basic/ConvertUTF.h"
Zhongxing Xua1f3dba2009-05-20 01:55:10 +000035#include <limits>
Chris Lattner59907c42007-08-10 20:18:51 +000036using namespace clang;
John McCall781472f2010-08-25 08:40:02 +000037using namespace sema;
Chris Lattner59907c42007-08-10 20:18:51 +000038
Chris Lattner60800082009-02-18 17:49:48 +000039SourceLocation Sema::getLocationOfStringLiteralByte(const StringLiteral *SL,
40 unsigned ByteNo) const {
Chris Lattner08f92e32010-11-17 07:37:15 +000041 return SL->getLocationOfByte(ByteNo, PP.getSourceManager(),
42 PP.getLangOptions(), PP.getTargetInfo());
Chris Lattner60800082009-02-18 17:49:48 +000043}
Chris Lattner08f92e32010-11-17 07:37:15 +000044
Chris Lattner60800082009-02-18 17:49:48 +000045
Ryan Flynn4403a5e2009-08-06 03:00:50 +000046/// CheckablePrintfAttr - does a function call have a "printf" attribute
47/// and arguments that merit checking?
48bool Sema::CheckablePrintfAttr(const FormatAttr *Format, CallExpr *TheCall) {
49 if (Format->getType() == "printf") return true;
50 if (Format->getType() == "printf0") {
51 // printf0 allows null "format" string; if so don't check format/args
52 unsigned format_idx = Format->getFormatIdx() - 1;
Sebastian Redl4a2614e2009-11-17 18:02:24 +000053 // Does the index refer to the implicit object argument?
54 if (isa<CXXMemberCallExpr>(TheCall)) {
55 if (format_idx == 0)
56 return false;
57 --format_idx;
58 }
Ryan Flynn4403a5e2009-08-06 03:00:50 +000059 if (format_idx < TheCall->getNumArgs()) {
60 Expr *Format = TheCall->getArg(format_idx)->IgnoreParenCasts();
Ted Kremenekefaff192010-02-27 01:41:03 +000061 if (!Format->isNullPointerConstant(Context,
62 Expr::NPC_ValueDependentIsNull))
Ryan Flynn4403a5e2009-08-06 03:00:50 +000063 return true;
64 }
65 }
66 return false;
67}
Chris Lattner60800082009-02-18 17:49:48 +000068
John McCall60d7b3a2010-08-24 06:29:42 +000069ExprResult
Anders Carlssond406bf02009-08-16 01:56:34 +000070Sema::CheckBuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
John McCall60d7b3a2010-08-24 06:29:42 +000071 ExprResult TheCallResult(Owned(TheCall));
Douglas Gregor2def4832008-11-17 20:34:05 +000072
Chris Lattner946928f2010-10-01 23:23:24 +000073 // Find out if any arguments are required to be integer constant expressions.
74 unsigned ICEArguments = 0;
75 ASTContext::GetBuiltinTypeError Error;
76 Context.GetBuiltinType(BuiltinID, Error, &ICEArguments);
77 if (Error != ASTContext::GE_None)
78 ICEArguments = 0; // Don't diagnose previously diagnosed errors.
79
80 // If any arguments are required to be ICE's, check and diagnose.
81 for (unsigned ArgNo = 0; ICEArguments != 0; ++ArgNo) {
82 // Skip arguments not required to be ICE's.
83 if ((ICEArguments & (1 << ArgNo)) == 0) continue;
84
85 llvm::APSInt Result;
86 if (SemaBuiltinConstantArg(TheCall, ArgNo, Result))
87 return true;
88 ICEArguments &= ~(1 << ArgNo);
89 }
90
Anders Carlssond406bf02009-08-16 01:56:34 +000091 switch (BuiltinID) {
Chris Lattner30ce3442007-12-19 23:59:04 +000092 case Builtin::BI__builtin___CFStringMakeConstantString:
Chris Lattner925e60d2007-12-28 05:29:59 +000093 assert(TheCall->getNumArgs() == 1 &&
Chris Lattner1b9a0792007-12-20 00:26:33 +000094 "Wrong # arguments to builtin CFStringMakeConstantString");
Chris Lattner69039812009-02-18 06:01:06 +000095 if (CheckObjCString(TheCall->getArg(0)))
Sebastian Redl0eb23302009-01-19 00:08:26 +000096 return ExprError();
Anders Carlssond406bf02009-08-16 01:56:34 +000097 break;
Ted Kremenek49ff7a12008-07-09 17:58:53 +000098 case Builtin::BI__builtin_stdarg_start:
Chris Lattner30ce3442007-12-19 23:59:04 +000099 case Builtin::BI__builtin_va_start:
Sebastian Redl0eb23302009-01-19 00:08:26 +0000100 if (SemaBuiltinVAStart(TheCall))
101 return ExprError();
Anders Carlssond406bf02009-08-16 01:56:34 +0000102 break;
Chris Lattner1b9a0792007-12-20 00:26:33 +0000103 case Builtin::BI__builtin_isgreater:
104 case Builtin::BI__builtin_isgreaterequal:
105 case Builtin::BI__builtin_isless:
106 case Builtin::BI__builtin_islessequal:
107 case Builtin::BI__builtin_islessgreater:
108 case Builtin::BI__builtin_isunordered:
Sebastian Redl0eb23302009-01-19 00:08:26 +0000109 if (SemaBuiltinUnorderedCompare(TheCall))
110 return ExprError();
Anders Carlssond406bf02009-08-16 01:56:34 +0000111 break;
Benjamin Kramere771a7a2010-02-15 22:42:31 +0000112 case Builtin::BI__builtin_fpclassify:
113 if (SemaBuiltinFPClassification(TheCall, 6))
114 return ExprError();
115 break;
Eli Friedman9ac6f622009-08-31 20:06:00 +0000116 case Builtin::BI__builtin_isfinite:
117 case Builtin::BI__builtin_isinf:
118 case Builtin::BI__builtin_isinf_sign:
119 case Builtin::BI__builtin_isnan:
120 case Builtin::BI__builtin_isnormal:
Benjamin Kramer3b1e26b2010-02-16 10:07:31 +0000121 if (SemaBuiltinFPClassification(TheCall, 1))
Eli Friedman9ac6f622009-08-31 20:06:00 +0000122 return ExprError();
123 break;
Eli Friedmand38617c2008-05-14 19:38:39 +0000124 case Builtin::BI__builtin_shufflevector:
Sebastian Redl0eb23302009-01-19 00:08:26 +0000125 return SemaBuiltinShuffleVector(TheCall);
126 // TheCall will be freed by the smart pointer here, but that's fine, since
127 // SemaBuiltinShuffleVector guts it, but then doesn't release it.
Daniel Dunbar4493f792008-07-21 22:59:13 +0000128 case Builtin::BI__builtin_prefetch:
Sebastian Redl0eb23302009-01-19 00:08:26 +0000129 if (SemaBuiltinPrefetch(TheCall))
130 return ExprError();
Anders Carlssond406bf02009-08-16 01:56:34 +0000131 break;
Daniel Dunbard5f8a4f2008-09-03 21:13:56 +0000132 case Builtin::BI__builtin_object_size:
Sebastian Redl0eb23302009-01-19 00:08:26 +0000133 if (SemaBuiltinObjectSize(TheCall))
134 return ExprError();
Anders Carlssond406bf02009-08-16 01:56:34 +0000135 break;
Eli Friedmand875fed2009-05-03 04:46:36 +0000136 case Builtin::BI__builtin_longjmp:
137 if (SemaBuiltinLongjmp(TheCall))
138 return ExprError();
Anders Carlssond406bf02009-08-16 01:56:34 +0000139 break;
Chris Lattner75c29a02010-10-12 17:47:42 +0000140 case Builtin::BI__builtin_constant_p:
141 if (TheCall->getNumArgs() == 0)
142 return Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args)
143 << 0 /*function call*/ << 1 << 0 << TheCall->getSourceRange();
144 if (TheCall->getNumArgs() > 1)
145 return Diag(TheCall->getArg(1)->getLocStart(),
146 diag::err_typecheck_call_too_many_args)
147 << 0 /*function call*/ << 1 << TheCall->getNumArgs()
148 << TheCall->getArg(1)->getSourceRange();
149 break;
Chris Lattner5caa3702009-05-08 06:58:22 +0000150 case Builtin::BI__sync_fetch_and_add:
151 case Builtin::BI__sync_fetch_and_sub:
152 case Builtin::BI__sync_fetch_and_or:
153 case Builtin::BI__sync_fetch_and_and:
154 case Builtin::BI__sync_fetch_and_xor:
155 case Builtin::BI__sync_add_and_fetch:
156 case Builtin::BI__sync_sub_and_fetch:
157 case Builtin::BI__sync_and_and_fetch:
158 case Builtin::BI__sync_or_and_fetch:
159 case Builtin::BI__sync_xor_and_fetch:
160 case Builtin::BI__sync_val_compare_and_swap:
161 case Builtin::BI__sync_bool_compare_and_swap:
162 case Builtin::BI__sync_lock_test_and_set:
163 case Builtin::BI__sync_lock_release:
Chandler Carruthd2014572010-07-09 18:59:35 +0000164 return SemaBuiltinAtomicOverloaded(move(TheCallResult));
Nate Begeman26a31422010-06-08 02:47:44 +0000165 }
166
167 // Since the target specific builtins for each arch overlap, only check those
168 // of the arch we are compiling for.
169 if (BuiltinID >= Builtin::FirstTSBuiltin) {
170 switch (Context.Target.getTriple().getArch()) {
171 case llvm::Triple::arm:
172 case llvm::Triple::thumb:
173 if (CheckARMBuiltinFunctionCall(BuiltinID, TheCall))
174 return ExprError();
175 break;
Nate Begeman26a31422010-06-08 02:47:44 +0000176 default:
177 break;
178 }
179 }
180
181 return move(TheCallResult);
182}
183
Nate Begeman61eecf52010-06-14 05:21:25 +0000184// Get the valid immediate range for the specified NEON type code.
185static unsigned RFT(unsigned t, bool shift = false) {
186 bool quad = t & 0x10;
187
188 switch (t & 0x7) {
189 case 0: // i8
Nate Begemand69ec162010-06-17 02:26:59 +0000190 return shift ? 7 : (8 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000191 case 1: // i16
Nate Begemand69ec162010-06-17 02:26:59 +0000192 return shift ? 15 : (4 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000193 case 2: // i32
Nate Begemand69ec162010-06-17 02:26:59 +0000194 return shift ? 31 : (2 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000195 case 3: // i64
Nate Begemand69ec162010-06-17 02:26:59 +0000196 return shift ? 63 : (1 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000197 case 4: // f32
198 assert(!shift && "cannot shift float types!");
Nate Begemand69ec162010-06-17 02:26:59 +0000199 return (2 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000200 case 5: // poly8
Bob Wilson42499f92010-12-10 19:45:06 +0000201 return shift ? 7 : (8 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000202 case 6: // poly16
Bob Wilson42499f92010-12-10 19:45:06 +0000203 return shift ? 15 : (4 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000204 case 7: // float16
205 assert(!shift && "cannot shift float types!");
Nate Begemand69ec162010-06-17 02:26:59 +0000206 return (4 << (int)quad) - 1;
Nate Begeman61eecf52010-06-14 05:21:25 +0000207 }
208 return 0;
209}
210
Nate Begeman26a31422010-06-08 02:47:44 +0000211bool Sema::CheckARMBuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
Nate Begeman1c2a88c2010-06-09 01:10:23 +0000212 llvm::APSInt Result;
213
Nate Begeman0d15c532010-06-13 04:47:52 +0000214 unsigned mask = 0;
Nate Begeman61eecf52010-06-14 05:21:25 +0000215 unsigned TV = 0;
Nate Begeman1c2a88c2010-06-09 01:10:23 +0000216 switch (BuiltinID) {
Nate Begemana23326b2010-06-17 04:17:01 +0000217#define GET_NEON_OVERLOAD_CHECK
218#include "clang/Basic/arm_neon.inc"
219#undef GET_NEON_OVERLOAD_CHECK
Nate Begeman1c2a88c2010-06-09 01:10:23 +0000220 }
221
Nate Begeman0d15c532010-06-13 04:47:52 +0000222 // For NEON intrinsics which are overloaded on vector element type, validate
223 // the immediate which specifies which variant to emit.
224 if (mask) {
225 unsigned ArgNo = TheCall->getNumArgs()-1;
226 if (SemaBuiltinConstantArg(TheCall, ArgNo, Result))
227 return true;
228
Nate Begeman61eecf52010-06-14 05:21:25 +0000229 TV = Result.getLimitedValue(32);
230 if ((TV > 31) || (mask & (1 << TV)) == 0)
Nate Begeman0d15c532010-06-13 04:47:52 +0000231 return Diag(TheCall->getLocStart(), diag::err_invalid_neon_type_code)
232 << TheCall->getArg(ArgNo)->getSourceRange();
233 }
Nate Begeman1c2a88c2010-06-09 01:10:23 +0000234
Nate Begeman0d15c532010-06-13 04:47:52 +0000235 // For NEON intrinsics which take an immediate value as part of the
236 // instruction, range check them here.
Nate Begeman61eecf52010-06-14 05:21:25 +0000237 unsigned i = 0, l = 0, u = 0;
Nate Begeman0d15c532010-06-13 04:47:52 +0000238 switch (BuiltinID) {
239 default: return false;
Nate Begemanbb37f502010-07-29 22:48:34 +0000240 case ARM::BI__builtin_arm_ssat: i = 1; l = 1; u = 31; break;
241 case ARM::BI__builtin_arm_usat: i = 1; u = 31; break;
Nate Begeman99c40bb2010-08-03 21:32:34 +0000242 case ARM::BI__builtin_arm_vcvtr_f:
243 case ARM::BI__builtin_arm_vcvtr_d: i = 1; u = 1; break;
Nate Begemana23326b2010-06-17 04:17:01 +0000244#define GET_NEON_IMMEDIATE_CHECK
245#include "clang/Basic/arm_neon.inc"
246#undef GET_NEON_IMMEDIATE_CHECK
Nate Begeman0d15c532010-06-13 04:47:52 +0000247 };
248
Nate Begeman61eecf52010-06-14 05:21:25 +0000249 // Check that the immediate argument is actually a constant.
Nate Begeman0d15c532010-06-13 04:47:52 +0000250 if (SemaBuiltinConstantArg(TheCall, i, Result))
251 return true;
252
Nate Begeman61eecf52010-06-14 05:21:25 +0000253 // Range check against the upper/lower values for this isntruction.
Nate Begeman0d15c532010-06-13 04:47:52 +0000254 unsigned Val = Result.getZExtValue();
Nate Begeman61eecf52010-06-14 05:21:25 +0000255 if (Val < l || Val > (u + l))
Nate Begeman0d15c532010-06-13 04:47:52 +0000256 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
Benjamin Kramer476d8b82010-08-11 14:47:12 +0000257 << l << u+l << TheCall->getArg(i)->getSourceRange();
Nate Begeman0d15c532010-06-13 04:47:52 +0000258
Nate Begeman99c40bb2010-08-03 21:32:34 +0000259 // FIXME: VFP Intrinsics should error if VFP not present.
Nate Begeman26a31422010-06-08 02:47:44 +0000260 return false;
Anders Carlssond406bf02009-08-16 01:56:34 +0000261}
Daniel Dunbarde454282008-10-02 18:44:07 +0000262
Anders Carlssond406bf02009-08-16 01:56:34 +0000263/// CheckFunctionCall - Check a direct function call for various correctness
264/// and safety properties not strictly enforced by the C type system.
265bool Sema::CheckFunctionCall(FunctionDecl *FDecl, CallExpr *TheCall) {
266 // Get the IdentifierInfo* for the called function.
267 IdentifierInfo *FnInfo = FDecl->getIdentifier();
268
269 // None of the checks below are needed for functions that don't have
270 // simple names (e.g., C++ conversion functions).
271 if (!FnInfo)
272 return false;
Mike Stump1eb44332009-09-09 15:08:12 +0000273
Daniel Dunbarde454282008-10-02 18:44:07 +0000274 // FIXME: This mechanism should be abstracted to be less fragile and
275 // more efficient. For example, just map function ids to custom
276 // handlers.
277
Ted Kremenekc82faca2010-09-09 04:33:05 +0000278 // Printf and scanf checking.
279 for (specific_attr_iterator<FormatAttr>
280 i = FDecl->specific_attr_begin<FormatAttr>(),
281 e = FDecl->specific_attr_end<FormatAttr>(); i != e ; ++i) {
282
283 const FormatAttr *Format = *i;
Ted Kremenek826a3452010-07-16 02:11:22 +0000284 const bool b = Format->getType() == "scanf";
285 if (b || CheckablePrintfAttr(Format, TheCall)) {
Ted Kremenek3d692df2009-02-27 17:58:43 +0000286 bool HasVAListArg = Format->getFirstArg() == 0;
Ted Kremenek826a3452010-07-16 02:11:22 +0000287 CheckPrintfScanfArguments(TheCall, HasVAListArg,
288 Format->getFormatIdx() - 1,
289 HasVAListArg ? 0 : Format->getFirstArg() - 1,
290 !b);
Douglas Gregor3c385e52009-02-14 18:57:46 +0000291 }
Chris Lattner59907c42007-08-10 20:18:51 +0000292 }
Mike Stump1eb44332009-09-09 15:08:12 +0000293
Ted Kremenekc82faca2010-09-09 04:33:05 +0000294 for (specific_attr_iterator<NonNullAttr>
295 i = FDecl->specific_attr_begin<NonNullAttr>(),
296 e = FDecl->specific_attr_end<NonNullAttr>(); i != e; ++i) {
Sean Huntcf807c42010-08-18 23:23:40 +0000297 CheckNonNullArguments(*i, TheCall);
Ted Kremenekc82faca2010-09-09 04:33:05 +0000298 }
Sebastian Redl0eb23302009-01-19 00:08:26 +0000299
Anders Carlssond406bf02009-08-16 01:56:34 +0000300 return false;
Anders Carlsson71993dd2007-08-17 05:31:46 +0000301}
302
Anders Carlssond406bf02009-08-16 01:56:34 +0000303bool Sema::CheckBlockCall(NamedDecl *NDecl, CallExpr *TheCall) {
Fariborz Jahanian725165f2009-05-18 21:05:18 +0000304 // Printf checking.
Argyrios Kyrtzidis40b598e2009-06-30 02:34:44 +0000305 const FormatAttr *Format = NDecl->getAttr<FormatAttr>();
Fariborz Jahanian725165f2009-05-18 21:05:18 +0000306 if (!Format)
Anders Carlssond406bf02009-08-16 01:56:34 +0000307 return false;
Mike Stump1eb44332009-09-09 15:08:12 +0000308
Fariborz Jahanian725165f2009-05-18 21:05:18 +0000309 const VarDecl *V = dyn_cast<VarDecl>(NDecl);
310 if (!V)
Anders Carlssond406bf02009-08-16 01:56:34 +0000311 return false;
Mike Stump1eb44332009-09-09 15:08:12 +0000312
Fariborz Jahanian725165f2009-05-18 21:05:18 +0000313 QualType Ty = V->getType();
314 if (!Ty->isBlockPointerType())
Anders Carlssond406bf02009-08-16 01:56:34 +0000315 return false;
Mike Stump1eb44332009-09-09 15:08:12 +0000316
Ted Kremenek826a3452010-07-16 02:11:22 +0000317 const bool b = Format->getType() == "scanf";
318 if (!b && !CheckablePrintfAttr(Format, TheCall))
Anders Carlssond406bf02009-08-16 01:56:34 +0000319 return false;
Mike Stump1eb44332009-09-09 15:08:12 +0000320
Anders Carlssond406bf02009-08-16 01:56:34 +0000321 bool HasVAListArg = Format->getFirstArg() == 0;
Ted Kremenek826a3452010-07-16 02:11:22 +0000322 CheckPrintfScanfArguments(TheCall, HasVAListArg, Format->getFormatIdx() - 1,
323 HasVAListArg ? 0 : Format->getFirstArg() - 1, !b);
Anders Carlssond406bf02009-08-16 01:56:34 +0000324
325 return false;
Fariborz Jahanian725165f2009-05-18 21:05:18 +0000326}
327
Chris Lattner5caa3702009-05-08 06:58:22 +0000328/// SemaBuiltinAtomicOverloaded - We have a call to a function like
329/// __sync_fetch_and_add, which is an overloaded function based on the pointer
330/// type of its first argument. The main ActOnCallExpr routines have already
331/// promoted the types of arguments because all of these calls are prototyped as
332/// void(...).
333///
334/// This function goes through and does final semantic checking for these
335/// builtins,
John McCall60d7b3a2010-08-24 06:29:42 +0000336ExprResult
337Sema::SemaBuiltinAtomicOverloaded(ExprResult TheCallResult) {
Chandler Carruthd2014572010-07-09 18:59:35 +0000338 CallExpr *TheCall = (CallExpr *)TheCallResult.get();
Chris Lattner5caa3702009-05-08 06:58:22 +0000339 DeclRefExpr *DRE =cast<DeclRefExpr>(TheCall->getCallee()->IgnoreParenCasts());
340 FunctionDecl *FDecl = cast<FunctionDecl>(DRE->getDecl());
341
342 // Ensure that we have at least one argument to do type inference from.
Chandler Carruthd2014572010-07-09 18:59:35 +0000343 if (TheCall->getNumArgs() < 1) {
344 Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args_at_least)
345 << 0 << 1 << TheCall->getNumArgs()
346 << TheCall->getCallee()->getSourceRange();
347 return ExprError();
348 }
Mike Stump1eb44332009-09-09 15:08:12 +0000349
Chris Lattner5caa3702009-05-08 06:58:22 +0000350 // Inspect the first argument of the atomic builtin. This should always be
351 // a pointer type, whose element is an integral scalar or pointer type.
352 // Because it is a pointer type, we don't have to worry about any implicit
353 // casts here.
Chandler Carruthd2014572010-07-09 18:59:35 +0000354 // FIXME: We don't allow floating point scalars as input.
Chris Lattner5caa3702009-05-08 06:58:22 +0000355 Expr *FirstArg = TheCall->getArg(0);
Chandler Carruthd2014572010-07-09 18:59:35 +0000356 if (!FirstArg->getType()->isPointerType()) {
357 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer)
358 << FirstArg->getType() << FirstArg->getSourceRange();
359 return ExprError();
360 }
Mike Stump1eb44332009-09-09 15:08:12 +0000361
Chandler Carruthd2014572010-07-09 18:59:35 +0000362 QualType ValType =
363 FirstArg->getType()->getAs<PointerType>()->getPointeeType();
Chris Lattnerdd5fa7a2010-09-17 21:12:38 +0000364 if (!ValType->isIntegerType() && !ValType->isAnyPointerType() &&
Chandler Carruthd2014572010-07-09 18:59:35 +0000365 !ValType->isBlockPointerType()) {
366 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer_intptr)
367 << FirstArg->getType() << FirstArg->getSourceRange();
368 return ExprError();
369 }
Chris Lattner5caa3702009-05-08 06:58:22 +0000370
Chandler Carruth8d13d222010-07-18 20:54:12 +0000371 // The majority of builtins return a value, but a few have special return
372 // types, so allow them to override appropriately below.
373 QualType ResultType = ValType;
374
Chris Lattner5caa3702009-05-08 06:58:22 +0000375 // We need to figure out which concrete builtin this maps onto. For example,
376 // __sync_fetch_and_add with a 2 byte object turns into
377 // __sync_fetch_and_add_2.
378#define BUILTIN_ROW(x) \
379 { Builtin::BI##x##_1, Builtin::BI##x##_2, Builtin::BI##x##_4, \
380 Builtin::BI##x##_8, Builtin::BI##x##_16 }
Mike Stump1eb44332009-09-09 15:08:12 +0000381
Chris Lattner5caa3702009-05-08 06:58:22 +0000382 static const unsigned BuiltinIndices[][5] = {
383 BUILTIN_ROW(__sync_fetch_and_add),
384 BUILTIN_ROW(__sync_fetch_and_sub),
385 BUILTIN_ROW(__sync_fetch_and_or),
386 BUILTIN_ROW(__sync_fetch_and_and),
387 BUILTIN_ROW(__sync_fetch_and_xor),
Mike Stump1eb44332009-09-09 15:08:12 +0000388
Chris Lattner5caa3702009-05-08 06:58:22 +0000389 BUILTIN_ROW(__sync_add_and_fetch),
390 BUILTIN_ROW(__sync_sub_and_fetch),
391 BUILTIN_ROW(__sync_and_and_fetch),
392 BUILTIN_ROW(__sync_or_and_fetch),
393 BUILTIN_ROW(__sync_xor_and_fetch),
Mike Stump1eb44332009-09-09 15:08:12 +0000394
Chris Lattner5caa3702009-05-08 06:58:22 +0000395 BUILTIN_ROW(__sync_val_compare_and_swap),
396 BUILTIN_ROW(__sync_bool_compare_and_swap),
397 BUILTIN_ROW(__sync_lock_test_and_set),
398 BUILTIN_ROW(__sync_lock_release)
399 };
Mike Stump1eb44332009-09-09 15:08:12 +0000400#undef BUILTIN_ROW
401
Chris Lattner5caa3702009-05-08 06:58:22 +0000402 // Determine the index of the size.
403 unsigned SizeIndex;
Ken Dyck199c3d62010-01-11 17:06:35 +0000404 switch (Context.getTypeSizeInChars(ValType).getQuantity()) {
Chris Lattner5caa3702009-05-08 06:58:22 +0000405 case 1: SizeIndex = 0; break;
406 case 2: SizeIndex = 1; break;
407 case 4: SizeIndex = 2; break;
408 case 8: SizeIndex = 3; break;
409 case 16: SizeIndex = 4; break;
410 default:
Chandler Carruthd2014572010-07-09 18:59:35 +0000411 Diag(DRE->getLocStart(), diag::err_atomic_builtin_pointer_size)
412 << FirstArg->getType() << FirstArg->getSourceRange();
413 return ExprError();
Chris Lattner5caa3702009-05-08 06:58:22 +0000414 }
Mike Stump1eb44332009-09-09 15:08:12 +0000415
Chris Lattner5caa3702009-05-08 06:58:22 +0000416 // Each of these builtins has one pointer argument, followed by some number of
417 // values (0, 1 or 2) followed by a potentially empty varags list of stuff
418 // that we ignore. Find out which row of BuiltinIndices to read from as well
419 // as the number of fixed args.
Douglas Gregor7814e6d2009-09-12 00:22:50 +0000420 unsigned BuiltinID = FDecl->getBuiltinID();
Chris Lattner5caa3702009-05-08 06:58:22 +0000421 unsigned BuiltinIndex, NumFixed = 1;
422 switch (BuiltinID) {
423 default: assert(0 && "Unknown overloaded atomic builtin!");
424 case Builtin::BI__sync_fetch_and_add: BuiltinIndex = 0; break;
425 case Builtin::BI__sync_fetch_and_sub: BuiltinIndex = 1; break;
426 case Builtin::BI__sync_fetch_and_or: BuiltinIndex = 2; break;
427 case Builtin::BI__sync_fetch_and_and: BuiltinIndex = 3; break;
428 case Builtin::BI__sync_fetch_and_xor: BuiltinIndex = 4; break;
Mike Stump1eb44332009-09-09 15:08:12 +0000429
Daniel Dunbar7eff7c42010-03-25 17:13:09 +0000430 case Builtin::BI__sync_add_and_fetch: BuiltinIndex = 5; break;
431 case Builtin::BI__sync_sub_and_fetch: BuiltinIndex = 6; break;
432 case Builtin::BI__sync_and_and_fetch: BuiltinIndex = 7; break;
433 case Builtin::BI__sync_or_and_fetch: BuiltinIndex = 8; break;
434 case Builtin::BI__sync_xor_and_fetch: BuiltinIndex = 9; break;
Mike Stump1eb44332009-09-09 15:08:12 +0000435
Chris Lattner5caa3702009-05-08 06:58:22 +0000436 case Builtin::BI__sync_val_compare_and_swap:
Daniel Dunbar7eff7c42010-03-25 17:13:09 +0000437 BuiltinIndex = 10;
Chris Lattner5caa3702009-05-08 06:58:22 +0000438 NumFixed = 2;
439 break;
440 case Builtin::BI__sync_bool_compare_and_swap:
Daniel Dunbar7eff7c42010-03-25 17:13:09 +0000441 BuiltinIndex = 11;
Chris Lattner5caa3702009-05-08 06:58:22 +0000442 NumFixed = 2;
Chandler Carruth8d13d222010-07-18 20:54:12 +0000443 ResultType = Context.BoolTy;
Chris Lattner5caa3702009-05-08 06:58:22 +0000444 break;
Daniel Dunbar7eff7c42010-03-25 17:13:09 +0000445 case Builtin::BI__sync_lock_test_and_set: BuiltinIndex = 12; break;
Chris Lattner5caa3702009-05-08 06:58:22 +0000446 case Builtin::BI__sync_lock_release:
Daniel Dunbar7eff7c42010-03-25 17:13:09 +0000447 BuiltinIndex = 13;
Chris Lattner5caa3702009-05-08 06:58:22 +0000448 NumFixed = 0;
Chandler Carruth8d13d222010-07-18 20:54:12 +0000449 ResultType = Context.VoidTy;
Chris Lattner5caa3702009-05-08 06:58:22 +0000450 break;
451 }
Mike Stump1eb44332009-09-09 15:08:12 +0000452
Chris Lattner5caa3702009-05-08 06:58:22 +0000453 // Now that we know how many fixed arguments we expect, first check that we
454 // have at least that many.
Chandler Carruthd2014572010-07-09 18:59:35 +0000455 if (TheCall->getNumArgs() < 1+NumFixed) {
456 Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args_at_least)
457 << 0 << 1+NumFixed << TheCall->getNumArgs()
458 << TheCall->getCallee()->getSourceRange();
459 return ExprError();
460 }
Mike Stump1eb44332009-09-09 15:08:12 +0000461
Chris Lattnere7ac0a92009-05-08 15:36:58 +0000462 // Get the decl for the concrete builtin from this, we can tell what the
463 // concrete integer type we should convert to is.
464 unsigned NewBuiltinID = BuiltinIndices[BuiltinIndex][SizeIndex];
465 const char *NewBuiltinName = Context.BuiltinInfo.GetName(NewBuiltinID);
466 IdentifierInfo *NewBuiltinII = PP.getIdentifierInfo(NewBuiltinName);
Mike Stump1eb44332009-09-09 15:08:12 +0000467 FunctionDecl *NewBuiltinDecl =
Chris Lattnere7ac0a92009-05-08 15:36:58 +0000468 cast<FunctionDecl>(LazilyCreateBuiltin(NewBuiltinII, NewBuiltinID,
469 TUScope, false, DRE->getLocStart()));
Chandler Carruthd2014572010-07-09 18:59:35 +0000470
John McCallf871d0c2010-08-07 06:22:56 +0000471 // The first argument --- the pointer --- has a fixed type; we
472 // deduce the types of the rest of the arguments accordingly. Walk
473 // the remaining arguments, converting them to the deduced value type.
Chris Lattner5caa3702009-05-08 06:58:22 +0000474 for (unsigned i = 0; i != NumFixed; ++i) {
475 Expr *Arg = TheCall->getArg(i+1);
Mike Stump1eb44332009-09-09 15:08:12 +0000476
Chris Lattner5caa3702009-05-08 06:58:22 +0000477 // If the argument is an implicit cast, then there was a promotion due to
478 // "...", just remove it now.
479 if (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(Arg)) {
480 Arg = ICE->getSubExpr();
481 ICE->setSubExpr(0);
Chris Lattner5caa3702009-05-08 06:58:22 +0000482 TheCall->setArg(i+1, Arg);
483 }
Mike Stump1eb44332009-09-09 15:08:12 +0000484
Chris Lattner5caa3702009-05-08 06:58:22 +0000485 // GCC does an implicit conversion to the pointer or integer ValType. This
486 // can fail in some cases (1i -> int**), check for this error case now.
John McCalldaa8e4e2010-11-15 09:13:47 +0000487 CastKind Kind = CK_Invalid;
John McCallf89e55a2010-11-18 06:31:45 +0000488 ExprValueKind VK = VK_RValue;
John McCallf871d0c2010-08-07 06:22:56 +0000489 CXXCastPath BasePath;
John McCallf89e55a2010-11-18 06:31:45 +0000490 if (CheckCastTypes(Arg->getSourceRange(), ValType, Arg, Kind, VK, BasePath))
Chandler Carruthd2014572010-07-09 18:59:35 +0000491 return ExprError();
Mike Stump1eb44332009-09-09 15:08:12 +0000492
Chris Lattner5caa3702009-05-08 06:58:22 +0000493 // Okay, we have something that *can* be converted to the right type. Check
494 // to see if there is a potentially weird extension going on here. This can
495 // happen when you do an atomic operation on something like an char* and
496 // pass in 42. The 42 gets converted to char. This is even more strange
497 // for things like 45.123 -> char, etc.
Mike Stump1eb44332009-09-09 15:08:12 +0000498 // FIXME: Do this check.
John McCallf89e55a2010-11-18 06:31:45 +0000499 ImpCastExprToType(Arg, ValType, Kind, VK, &BasePath);
Chris Lattner5caa3702009-05-08 06:58:22 +0000500 TheCall->setArg(i+1, Arg);
501 }
Mike Stump1eb44332009-09-09 15:08:12 +0000502
Chris Lattner5caa3702009-05-08 06:58:22 +0000503 // Switch the DeclRefExpr to refer to the new decl.
504 DRE->setDecl(NewBuiltinDecl);
505 DRE->setType(NewBuiltinDecl->getType());
Mike Stump1eb44332009-09-09 15:08:12 +0000506
Chris Lattner5caa3702009-05-08 06:58:22 +0000507 // Set the callee in the CallExpr.
508 // FIXME: This leaks the original parens and implicit casts.
509 Expr *PromotedCall = DRE;
510 UsualUnaryConversions(PromotedCall);
511 TheCall->setCallee(PromotedCall);
Mike Stump1eb44332009-09-09 15:08:12 +0000512
Chandler Carruthdb4325b2010-07-18 07:23:17 +0000513 // Change the result type of the call to match the original value type. This
514 // is arbitrary, but the codegen for these builtins ins design to handle it
515 // gracefully.
Chandler Carruth8d13d222010-07-18 20:54:12 +0000516 TheCall->setType(ResultType);
Chandler Carruthd2014572010-07-09 18:59:35 +0000517
518 return move(TheCallResult);
Chris Lattner5caa3702009-05-08 06:58:22 +0000519}
520
521
Chris Lattner69039812009-02-18 06:01:06 +0000522/// CheckObjCString - Checks that the argument to the builtin
Anders Carlsson71993dd2007-08-17 05:31:46 +0000523/// CFString constructor is correct
Steve Narofffd942622009-04-13 20:26:29 +0000524/// Note: It might also make sense to do the UTF-16 conversion here (would
525/// simplify the backend).
Chris Lattner69039812009-02-18 06:01:06 +0000526bool Sema::CheckObjCString(Expr *Arg) {
Chris Lattner56f34942008-02-13 01:02:39 +0000527 Arg = Arg->IgnoreParenCasts();
Anders Carlsson71993dd2007-08-17 05:31:46 +0000528 StringLiteral *Literal = dyn_cast<StringLiteral>(Arg);
529
530 if (!Literal || Literal->isWide()) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000531 Diag(Arg->getLocStart(), diag::err_cfstring_literal_not_string_constant)
532 << Arg->getSourceRange();
Anders Carlsson9cdc4d32007-08-17 15:44:17 +0000533 return true;
Anders Carlsson71993dd2007-08-17 05:31:46 +0000534 }
Mike Stump1eb44332009-09-09 15:08:12 +0000535
Benjamin Kramer2f4eaef2010-08-17 12:54:38 +0000536 size_t NulPos = Literal->getString().find('\0');
537 if (NulPos != llvm::StringRef::npos) {
538 Diag(getLocationOfStringLiteralByte(Literal, NulPos),
539 diag::warn_cfstring_literal_contains_nul_character)
540 << Arg->getSourceRange();
Daniel Dunbarf015b032009-09-22 10:03:52 +0000541 }
Fariborz Jahanian7da71022010-09-07 19:38:13 +0000542 if (Literal->containsNonAsciiOrNull()) {
543 llvm::StringRef String = Literal->getString();
544 unsigned NumBytes = String.size();
545 llvm::SmallVector<UTF16, 128> ToBuf(NumBytes);
546 const UTF8 *FromPtr = (UTF8 *)String.data();
547 UTF16 *ToPtr = &ToBuf[0];
548
549 ConversionResult Result = ConvertUTF8toUTF16(&FromPtr, FromPtr + NumBytes,
550 &ToPtr, ToPtr + NumBytes,
551 strictConversion);
552 // Check for conversion failure.
553 if (Result != conversionOK)
554 Diag(Arg->getLocStart(),
555 diag::warn_cfstring_truncated) << Arg->getSourceRange();
556 }
Anders Carlsson9cdc4d32007-08-17 15:44:17 +0000557 return false;
Chris Lattner59907c42007-08-10 20:18:51 +0000558}
559
Chris Lattnerc27c6652007-12-20 00:05:45 +0000560/// SemaBuiltinVAStart - Check the arguments to __builtin_va_start for validity.
561/// Emit an error and return true on failure, return false on success.
Chris Lattner925e60d2007-12-28 05:29:59 +0000562bool Sema::SemaBuiltinVAStart(CallExpr *TheCall) {
563 Expr *Fn = TheCall->getCallee();
564 if (TheCall->getNumArgs() > 2) {
Chris Lattner2c21a072008-11-21 18:44:24 +0000565 Diag(TheCall->getArg(2)->getLocStart(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000566 diag::err_typecheck_call_too_many_args)
Eric Christopherccfa9632010-04-16 04:56:46 +0000567 << 0 /*function call*/ << 2 << TheCall->getNumArgs()
568 << Fn->getSourceRange()
Mike Stump1eb44332009-09-09 15:08:12 +0000569 << SourceRange(TheCall->getArg(2)->getLocStart(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000570 (*(TheCall->arg_end()-1))->getLocEnd());
Chris Lattner30ce3442007-12-19 23:59:04 +0000571 return true;
572 }
Eli Friedman56f20ae2008-12-15 22:05:35 +0000573
574 if (TheCall->getNumArgs() < 2) {
Eric Christopherd77b9a22010-04-16 04:48:22 +0000575 return Diag(TheCall->getLocEnd(),
576 diag::err_typecheck_call_too_few_args_at_least)
577 << 0 /*function call*/ << 2 << TheCall->getNumArgs();
Eli Friedman56f20ae2008-12-15 22:05:35 +0000578 }
579
Chris Lattnerc27c6652007-12-20 00:05:45 +0000580 // Determine whether the current function is variadic or not.
Douglas Gregor9ea9bdb2010-03-01 23:15:13 +0000581 BlockScopeInfo *CurBlock = getCurBlock();
Chris Lattnerc27c6652007-12-20 00:05:45 +0000582 bool isVariadic;
Steve Naroffcd9c5142009-04-15 19:33:47 +0000583 if (CurBlock)
John McCallc71a4912010-06-04 19:02:56 +0000584 isVariadic = CurBlock->TheDecl->isVariadic();
Ted Kremenek9498d382010-04-29 16:49:01 +0000585 else if (FunctionDecl *FD = getCurFunctionDecl())
586 isVariadic = FD->isVariadic();
587 else
Argyrios Kyrtzidis53d0ea52008-06-28 06:07:14 +0000588 isVariadic = getCurMethodDecl()->isVariadic();
Mike Stump1eb44332009-09-09 15:08:12 +0000589
Chris Lattnerc27c6652007-12-20 00:05:45 +0000590 if (!isVariadic) {
Chris Lattner30ce3442007-12-19 23:59:04 +0000591 Diag(Fn->getLocStart(), diag::err_va_start_used_in_non_variadic_function);
592 return true;
593 }
Mike Stump1eb44332009-09-09 15:08:12 +0000594
Chris Lattner30ce3442007-12-19 23:59:04 +0000595 // Verify that the second argument to the builtin is the last argument of the
596 // current function or method.
597 bool SecondArgIsLastNamedArgument = false;
Anders Carlssone2c14102008-02-13 01:22:59 +0000598 const Expr *Arg = TheCall->getArg(1)->IgnoreParenCasts();
Mike Stump1eb44332009-09-09 15:08:12 +0000599
Anders Carlsson88cf2262008-02-11 04:20:54 +0000600 if (const DeclRefExpr *DR = dyn_cast<DeclRefExpr>(Arg)) {
601 if (const ParmVarDecl *PV = dyn_cast<ParmVarDecl>(DR->getDecl())) {
Chris Lattner30ce3442007-12-19 23:59:04 +0000602 // FIXME: This isn't correct for methods (results in bogus warning).
603 // Get the last formal in the current function.
Anders Carlsson88cf2262008-02-11 04:20:54 +0000604 const ParmVarDecl *LastArg;
Steve Naroffcd9c5142009-04-15 19:33:47 +0000605 if (CurBlock)
606 LastArg = *(CurBlock->TheDecl->param_end()-1);
607 else if (FunctionDecl *FD = getCurFunctionDecl())
Chris Lattner371f2582008-12-04 23:50:19 +0000608 LastArg = *(FD->param_end()-1);
Chris Lattner30ce3442007-12-19 23:59:04 +0000609 else
Argyrios Kyrtzidis53d0ea52008-06-28 06:07:14 +0000610 LastArg = *(getCurMethodDecl()->param_end()-1);
Chris Lattner30ce3442007-12-19 23:59:04 +0000611 SecondArgIsLastNamedArgument = PV == LastArg;
612 }
613 }
Mike Stump1eb44332009-09-09 15:08:12 +0000614
Chris Lattner30ce3442007-12-19 23:59:04 +0000615 if (!SecondArgIsLastNamedArgument)
Mike Stump1eb44332009-09-09 15:08:12 +0000616 Diag(TheCall->getArg(1)->getLocStart(),
Chris Lattner30ce3442007-12-19 23:59:04 +0000617 diag::warn_second_parameter_of_va_start_not_last_named_argument);
618 return false;
Eli Friedman6cfda232008-05-20 08:23:37 +0000619}
Chris Lattner30ce3442007-12-19 23:59:04 +0000620
Chris Lattner1b9a0792007-12-20 00:26:33 +0000621/// SemaBuiltinUnorderedCompare - Handle functions like __builtin_isgreater and
622/// friends. This is declared to take (...), so we have to check everything.
Chris Lattner925e60d2007-12-28 05:29:59 +0000623bool Sema::SemaBuiltinUnorderedCompare(CallExpr *TheCall) {
624 if (TheCall->getNumArgs() < 2)
Chris Lattner2c21a072008-11-21 18:44:24 +0000625 return Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args)
Eric Christopherd77b9a22010-04-16 04:48:22 +0000626 << 0 << 2 << TheCall->getNumArgs()/*function call*/;
Chris Lattner925e60d2007-12-28 05:29:59 +0000627 if (TheCall->getNumArgs() > 2)
Mike Stump1eb44332009-09-09 15:08:12 +0000628 return Diag(TheCall->getArg(2)->getLocStart(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000629 diag::err_typecheck_call_too_many_args)
Eric Christopherccfa9632010-04-16 04:56:46 +0000630 << 0 /*function call*/ << 2 << TheCall->getNumArgs()
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000631 << SourceRange(TheCall->getArg(2)->getLocStart(),
632 (*(TheCall->arg_end()-1))->getLocEnd());
Mike Stump1eb44332009-09-09 15:08:12 +0000633
Chris Lattner925e60d2007-12-28 05:29:59 +0000634 Expr *OrigArg0 = TheCall->getArg(0);
635 Expr *OrigArg1 = TheCall->getArg(1);
Douglas Gregorcde01732009-05-19 22:10:17 +0000636
Chris Lattner1b9a0792007-12-20 00:26:33 +0000637 // Do standard promotions between the two arguments, returning their common
638 // type.
Chris Lattner925e60d2007-12-28 05:29:59 +0000639 QualType Res = UsualArithmeticConversions(OrigArg0, OrigArg1, false);
Daniel Dunbar403bc2b2009-02-19 19:28:43 +0000640
641 // Make sure any conversions are pushed back into the call; this is
642 // type safe since unordered compare builtins are declared as "_Bool
643 // foo(...)".
644 TheCall->setArg(0, OrigArg0);
645 TheCall->setArg(1, OrigArg1);
Mike Stump1eb44332009-09-09 15:08:12 +0000646
Douglas Gregorcde01732009-05-19 22:10:17 +0000647 if (OrigArg0->isTypeDependent() || OrigArg1->isTypeDependent())
648 return false;
649
Chris Lattner1b9a0792007-12-20 00:26:33 +0000650 // If the common type isn't a real floating type, then the arguments were
651 // invalid for this operation.
652 if (!Res->isRealFloatingType())
Mike Stump1eb44332009-09-09 15:08:12 +0000653 return Diag(OrigArg0->getLocStart(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000654 diag::err_typecheck_call_invalid_ordered_compare)
Chris Lattnerd1625842008-11-24 06:25:27 +0000655 << OrigArg0->getType() << OrigArg1->getType()
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000656 << SourceRange(OrigArg0->getLocStart(), OrigArg1->getLocEnd());
Mike Stump1eb44332009-09-09 15:08:12 +0000657
Chris Lattner1b9a0792007-12-20 00:26:33 +0000658 return false;
659}
660
Benjamin Kramere771a7a2010-02-15 22:42:31 +0000661/// SemaBuiltinSemaBuiltinFPClassification - Handle functions like
662/// __builtin_isnan and friends. This is declared to take (...), so we have
Benjamin Kramer3b1e26b2010-02-16 10:07:31 +0000663/// to check everything. We expect the last argument to be a floating point
664/// value.
665bool Sema::SemaBuiltinFPClassification(CallExpr *TheCall, unsigned NumArgs) {
666 if (TheCall->getNumArgs() < NumArgs)
Eli Friedman9ac6f622009-08-31 20:06:00 +0000667 return Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args)
Eric Christopherd77b9a22010-04-16 04:48:22 +0000668 << 0 << NumArgs << TheCall->getNumArgs()/*function call*/;
Benjamin Kramer3b1e26b2010-02-16 10:07:31 +0000669 if (TheCall->getNumArgs() > NumArgs)
670 return Diag(TheCall->getArg(NumArgs)->getLocStart(),
Eli Friedman9ac6f622009-08-31 20:06:00 +0000671 diag::err_typecheck_call_too_many_args)
Eric Christopherccfa9632010-04-16 04:56:46 +0000672 << 0 /*function call*/ << NumArgs << TheCall->getNumArgs()
Benjamin Kramer3b1e26b2010-02-16 10:07:31 +0000673 << SourceRange(TheCall->getArg(NumArgs)->getLocStart(),
Eli Friedman9ac6f622009-08-31 20:06:00 +0000674 (*(TheCall->arg_end()-1))->getLocEnd());
675
Benjamin Kramer3b1e26b2010-02-16 10:07:31 +0000676 Expr *OrigArg = TheCall->getArg(NumArgs-1);
Mike Stump1eb44332009-09-09 15:08:12 +0000677
Eli Friedman9ac6f622009-08-31 20:06:00 +0000678 if (OrigArg->isTypeDependent())
679 return false;
680
Chris Lattner81368fb2010-05-06 05:50:07 +0000681 // This operation requires a non-_Complex floating-point number.
Eli Friedman9ac6f622009-08-31 20:06:00 +0000682 if (!OrigArg->getType()->isRealFloatingType())
Mike Stump1eb44332009-09-09 15:08:12 +0000683 return Diag(OrigArg->getLocStart(),
Eli Friedman9ac6f622009-08-31 20:06:00 +0000684 diag::err_typecheck_call_invalid_unary_fp)
685 << OrigArg->getType() << OrigArg->getSourceRange();
Mike Stump1eb44332009-09-09 15:08:12 +0000686
Chris Lattner81368fb2010-05-06 05:50:07 +0000687 // If this is an implicit conversion from float -> double, remove it.
688 if (ImplicitCastExpr *Cast = dyn_cast<ImplicitCastExpr>(OrigArg)) {
689 Expr *CastArg = Cast->getSubExpr();
690 if (CastArg->getType()->isSpecificBuiltinType(BuiltinType::Float)) {
691 assert(Cast->getType()->isSpecificBuiltinType(BuiltinType::Double) &&
692 "promotion from float to double is the only expected cast here");
693 Cast->setSubExpr(0);
Chris Lattner81368fb2010-05-06 05:50:07 +0000694 TheCall->setArg(NumArgs-1, CastArg);
695 OrigArg = CastArg;
696 }
697 }
698
Eli Friedman9ac6f622009-08-31 20:06:00 +0000699 return false;
700}
701
Eli Friedmand38617c2008-05-14 19:38:39 +0000702/// SemaBuiltinShuffleVector - Handle __builtin_shufflevector.
703// This is declared to take (...), so we have to check everything.
John McCall60d7b3a2010-08-24 06:29:42 +0000704ExprResult Sema::SemaBuiltinShuffleVector(CallExpr *TheCall) {
Nate Begeman37b6a572010-06-08 00:16:34 +0000705 if (TheCall->getNumArgs() < 2)
Sebastian Redl0eb23302009-01-19 00:08:26 +0000706 return ExprError(Diag(TheCall->getLocEnd(),
Eric Christopherd77b9a22010-04-16 04:48:22 +0000707 diag::err_typecheck_call_too_few_args_at_least)
Nate Begeman37b6a572010-06-08 00:16:34 +0000708 << 0 /*function call*/ << 2 << TheCall->getNumArgs()
Eric Christopherd77b9a22010-04-16 04:48:22 +0000709 << TheCall->getSourceRange());
Eli Friedmand38617c2008-05-14 19:38:39 +0000710
Nate Begeman37b6a572010-06-08 00:16:34 +0000711 // Determine which of the following types of shufflevector we're checking:
712 // 1) unary, vector mask: (lhs, mask)
713 // 2) binary, vector mask: (lhs, rhs, mask)
714 // 3) binary, scalar mask: (lhs, rhs, index, ..., index)
715 QualType resType = TheCall->getArg(0)->getType();
716 unsigned numElements = 0;
717
Douglas Gregorcde01732009-05-19 22:10:17 +0000718 if (!TheCall->getArg(0)->isTypeDependent() &&
719 !TheCall->getArg(1)->isTypeDependent()) {
Nate Begeman37b6a572010-06-08 00:16:34 +0000720 QualType LHSType = TheCall->getArg(0)->getType();
721 QualType RHSType = TheCall->getArg(1)->getType();
722
723 if (!LHSType->isVectorType() || !RHSType->isVectorType()) {
Douglas Gregorcde01732009-05-19 22:10:17 +0000724 Diag(TheCall->getLocStart(), diag::err_shufflevector_non_vector)
Mike Stump1eb44332009-09-09 15:08:12 +0000725 << SourceRange(TheCall->getArg(0)->getLocStart(),
Douglas Gregorcde01732009-05-19 22:10:17 +0000726 TheCall->getArg(1)->getLocEnd());
727 return ExprError();
728 }
Nate Begeman37b6a572010-06-08 00:16:34 +0000729
730 numElements = LHSType->getAs<VectorType>()->getNumElements();
731 unsigned numResElements = TheCall->getNumArgs() - 2;
Mike Stump1eb44332009-09-09 15:08:12 +0000732
Nate Begeman37b6a572010-06-08 00:16:34 +0000733 // Check to see if we have a call with 2 vector arguments, the unary shuffle
734 // with mask. If so, verify that RHS is an integer vector type with the
735 // same number of elts as lhs.
736 if (TheCall->getNumArgs() == 2) {
Douglas Gregorf6094622010-07-23 15:58:24 +0000737 if (!RHSType->hasIntegerRepresentation() ||
Nate Begeman37b6a572010-06-08 00:16:34 +0000738 RHSType->getAs<VectorType>()->getNumElements() != numElements)
739 Diag(TheCall->getLocStart(), diag::err_shufflevector_incompatible_vector)
740 << SourceRange(TheCall->getArg(1)->getLocStart(),
741 TheCall->getArg(1)->getLocEnd());
742 numResElements = numElements;
743 }
744 else if (!Context.hasSameUnqualifiedType(LHSType, RHSType)) {
Douglas Gregorcde01732009-05-19 22:10:17 +0000745 Diag(TheCall->getLocStart(), diag::err_shufflevector_incompatible_vector)
Mike Stump1eb44332009-09-09 15:08:12 +0000746 << SourceRange(TheCall->getArg(0)->getLocStart(),
Douglas Gregorcde01732009-05-19 22:10:17 +0000747 TheCall->getArg(1)->getLocEnd());
748 return ExprError();
Nate Begeman37b6a572010-06-08 00:16:34 +0000749 } else if (numElements != numResElements) {
750 QualType eltType = LHSType->getAs<VectorType>()->getElementType();
Chris Lattner788b0fd2010-06-23 06:00:24 +0000751 resType = Context.getVectorType(eltType, numResElements,
Bob Wilsone86d78c2010-11-10 21:56:12 +0000752 VectorType::GenericVector);
Douglas Gregorcde01732009-05-19 22:10:17 +0000753 }
Eli Friedmand38617c2008-05-14 19:38:39 +0000754 }
755
756 for (unsigned i = 2; i < TheCall->getNumArgs(); i++) {
Douglas Gregorcde01732009-05-19 22:10:17 +0000757 if (TheCall->getArg(i)->isTypeDependent() ||
758 TheCall->getArg(i)->isValueDependent())
759 continue;
760
Nate Begeman37b6a572010-06-08 00:16:34 +0000761 llvm::APSInt Result(32);
762 if (!TheCall->getArg(i)->isIntegerConstantExpr(Result, Context))
763 return ExprError(Diag(TheCall->getLocStart(),
764 diag::err_shufflevector_nonconstant_argument)
765 << TheCall->getArg(i)->getSourceRange());
Sebastian Redl0eb23302009-01-19 00:08:26 +0000766
Chris Lattnerd1a0b6d2008-08-10 02:05:13 +0000767 if (Result.getActiveBits() > 64 || Result.getZExtValue() >= numElements*2)
Sebastian Redl0eb23302009-01-19 00:08:26 +0000768 return ExprError(Diag(TheCall->getLocStart(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000769 diag::err_shufflevector_argument_too_large)
Sebastian Redl0eb23302009-01-19 00:08:26 +0000770 << TheCall->getArg(i)->getSourceRange());
Eli Friedmand38617c2008-05-14 19:38:39 +0000771 }
772
773 llvm::SmallVector<Expr*, 32> exprs;
774
Chris Lattnerd1a0b6d2008-08-10 02:05:13 +0000775 for (unsigned i = 0, e = TheCall->getNumArgs(); i != e; i++) {
Eli Friedmand38617c2008-05-14 19:38:39 +0000776 exprs.push_back(TheCall->getArg(i));
777 TheCall->setArg(i, 0);
778 }
779
Nate Begemana88dc302009-08-12 02:10:25 +0000780 return Owned(new (Context) ShuffleVectorExpr(Context, exprs.begin(),
Nate Begeman37b6a572010-06-08 00:16:34 +0000781 exprs.size(), resType,
Ted Kremenek8189cde2009-02-07 01:47:29 +0000782 TheCall->getCallee()->getLocStart(),
783 TheCall->getRParenLoc()));
Eli Friedmand38617c2008-05-14 19:38:39 +0000784}
Chris Lattner30ce3442007-12-19 23:59:04 +0000785
Daniel Dunbar4493f792008-07-21 22:59:13 +0000786/// SemaBuiltinPrefetch - Handle __builtin_prefetch.
787// This is declared to take (const void*, ...) and can take two
788// optional constant int args.
789bool Sema::SemaBuiltinPrefetch(CallExpr *TheCall) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000790 unsigned NumArgs = TheCall->getNumArgs();
Daniel Dunbar4493f792008-07-21 22:59:13 +0000791
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000792 if (NumArgs > 3)
Eric Christopherccfa9632010-04-16 04:56:46 +0000793 return Diag(TheCall->getLocEnd(),
794 diag::err_typecheck_call_too_many_args_at_most)
795 << 0 /*function call*/ << 3 << NumArgs
796 << TheCall->getSourceRange();
Daniel Dunbar4493f792008-07-21 22:59:13 +0000797
798 // Argument 0 is checked for us and the remaining arguments must be
799 // constant integers.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000800 for (unsigned i = 1; i != NumArgs; ++i) {
Daniel Dunbar4493f792008-07-21 22:59:13 +0000801 Expr *Arg = TheCall->getArg(i);
Eric Christopher691ebc32010-04-17 02:26:23 +0000802
Eli Friedman9aef7262009-12-04 00:30:06 +0000803 llvm::APSInt Result;
Eric Christopher691ebc32010-04-17 02:26:23 +0000804 if (SemaBuiltinConstantArg(TheCall, i, Result))
805 return true;
Mike Stump1eb44332009-09-09 15:08:12 +0000806
Daniel Dunbar4493f792008-07-21 22:59:13 +0000807 // FIXME: gcc issues a warning and rewrites these to 0. These
808 // seems especially odd for the third argument since the default
809 // is 3.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000810 if (i == 1) {
Eli Friedman9aef7262009-12-04 00:30:06 +0000811 if (Result.getLimitedValue() > 1)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000812 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
Chris Lattner21fb98e2009-09-23 06:06:36 +0000813 << "0" << "1" << Arg->getSourceRange();
Daniel Dunbar4493f792008-07-21 22:59:13 +0000814 } else {
Eli Friedman9aef7262009-12-04 00:30:06 +0000815 if (Result.getLimitedValue() > 3)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000816 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
Chris Lattner21fb98e2009-09-23 06:06:36 +0000817 << "0" << "3" << Arg->getSourceRange();
Daniel Dunbar4493f792008-07-21 22:59:13 +0000818 }
819 }
820
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000821 return false;
Daniel Dunbar4493f792008-07-21 22:59:13 +0000822}
823
Eric Christopher691ebc32010-04-17 02:26:23 +0000824/// SemaBuiltinConstantArg - Handle a check if argument ArgNum of CallExpr
825/// TheCall is a constant expression.
826bool Sema::SemaBuiltinConstantArg(CallExpr *TheCall, int ArgNum,
827 llvm::APSInt &Result) {
828 Expr *Arg = TheCall->getArg(ArgNum);
829 DeclRefExpr *DRE =cast<DeclRefExpr>(TheCall->getCallee()->IgnoreParenCasts());
830 FunctionDecl *FDecl = cast<FunctionDecl>(DRE->getDecl());
831
832 if (Arg->isTypeDependent() || Arg->isValueDependent()) return false;
833
834 if (!Arg->isIntegerConstantExpr(Result, Context))
835 return Diag(TheCall->getLocStart(), diag::err_constant_integer_arg_type)
Eric Christopher5e896552010-04-19 18:23:02 +0000836 << FDecl->getDeclName() << Arg->getSourceRange();
Eric Christopher691ebc32010-04-17 02:26:23 +0000837
Chris Lattner21fb98e2009-09-23 06:06:36 +0000838 return false;
839}
840
Daniel Dunbard5f8a4f2008-09-03 21:13:56 +0000841/// SemaBuiltinObjectSize - Handle __builtin_object_size(void *ptr,
842/// int type). This simply type checks that type is one of the defined
843/// constants (0-3).
Eric Christopherfee667f2009-12-23 03:49:37 +0000844// For compatability check 0-3, llvm only handles 0 and 2.
Daniel Dunbard5f8a4f2008-09-03 21:13:56 +0000845bool Sema::SemaBuiltinObjectSize(CallExpr *TheCall) {
Eric Christopher691ebc32010-04-17 02:26:23 +0000846 llvm::APSInt Result;
847
848 // Check constant-ness first.
849 if (SemaBuiltinConstantArg(TheCall, 1, Result))
850 return true;
851
Daniel Dunbard5f8a4f2008-09-03 21:13:56 +0000852 Expr *Arg = TheCall->getArg(1);
Daniel Dunbard5f8a4f2008-09-03 21:13:56 +0000853 if (Result.getSExtValue() < 0 || Result.getSExtValue() > 3) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000854 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
855 << "0" << "3" << SourceRange(Arg->getLocStart(), Arg->getLocEnd());
Daniel Dunbard5f8a4f2008-09-03 21:13:56 +0000856 }
857
858 return false;
859}
860
Eli Friedman586d6a82009-05-03 06:04:26 +0000861/// SemaBuiltinLongjmp - Handle __builtin_longjmp(void *env[5], int val).
Eli Friedmand875fed2009-05-03 04:46:36 +0000862/// This checks that val is a constant 1.
863bool Sema::SemaBuiltinLongjmp(CallExpr *TheCall) {
864 Expr *Arg = TheCall->getArg(1);
Eric Christopher691ebc32010-04-17 02:26:23 +0000865 llvm::APSInt Result;
Douglas Gregorcde01732009-05-19 22:10:17 +0000866
Eric Christopher691ebc32010-04-17 02:26:23 +0000867 // TODO: This is less than ideal. Overload this to take a value.
868 if (SemaBuiltinConstantArg(TheCall, 1, Result))
869 return true;
870
871 if (Result != 1)
Eli Friedmand875fed2009-05-03 04:46:36 +0000872 return Diag(TheCall->getLocStart(), diag::err_builtin_longjmp_invalid_val)
873 << SourceRange(Arg->getLocStart(), Arg->getLocEnd());
874
875 return false;
876}
877
Ted Kremenekd30ef872009-01-12 23:09:09 +0000878// Handle i > 1 ? "x" : "y", recursivelly
Ted Kremenek082d9362009-03-20 21:35:28 +0000879bool Sema::SemaCheckStringLiteral(const Expr *E, const CallExpr *TheCall,
880 bool HasVAListArg,
Ted Kremenek826a3452010-07-16 02:11:22 +0000881 unsigned format_idx, unsigned firstDataArg,
882 bool isPrintf) {
Ted Kremenek4fe64412010-09-09 03:51:39 +0000883 tryAgain:
Douglas Gregorcde01732009-05-19 22:10:17 +0000884 if (E->isTypeDependent() || E->isValueDependent())
885 return false;
Ted Kremenekd30ef872009-01-12 23:09:09 +0000886
887 switch (E->getStmtClass()) {
888 case Stmt::ConditionalOperatorClass: {
Ted Kremenek082d9362009-03-20 21:35:28 +0000889 const ConditionalOperator *C = cast<ConditionalOperator>(E);
Ted Kremenek826a3452010-07-16 02:11:22 +0000890 return SemaCheckStringLiteral(C->getTrueExpr(), TheCall, HasVAListArg,
891 format_idx, firstDataArg, isPrintf)
892 && SemaCheckStringLiteral(C->getRHS(), TheCall, HasVAListArg,
893 format_idx, firstDataArg, isPrintf);
Ted Kremenekd30ef872009-01-12 23:09:09 +0000894 }
895
Ted Kremenek95355bb2010-09-09 03:51:42 +0000896 case Stmt::IntegerLiteralClass:
897 // Technically -Wformat-nonliteral does not warn about this case.
898 // The behavior of printf and friends in this case is implementation
899 // dependent. Ideally if the format string cannot be null then
900 // it should have a 'nonnull' attribute in the function prototype.
901 return true;
902
Ted Kremenekd30ef872009-01-12 23:09:09 +0000903 case Stmt::ImplicitCastExprClass: {
Ted Kremenek4fe64412010-09-09 03:51:39 +0000904 E = cast<ImplicitCastExpr>(E)->getSubExpr();
905 goto tryAgain;
Ted Kremenekd30ef872009-01-12 23:09:09 +0000906 }
907
908 case Stmt::ParenExprClass: {
Ted Kremenek4fe64412010-09-09 03:51:39 +0000909 E = cast<ParenExpr>(E)->getSubExpr();
910 goto tryAgain;
Ted Kremenekd30ef872009-01-12 23:09:09 +0000911 }
Mike Stump1eb44332009-09-09 15:08:12 +0000912
Ted Kremenek082d9362009-03-20 21:35:28 +0000913 case Stmt::DeclRefExprClass: {
914 const DeclRefExpr *DR = cast<DeclRefExpr>(E);
Mike Stump1eb44332009-09-09 15:08:12 +0000915
Ted Kremenek082d9362009-03-20 21:35:28 +0000916 // As an exception, do not flag errors for variables binding to
917 // const string literals.
918 if (const VarDecl *VD = dyn_cast<VarDecl>(DR->getDecl())) {
919 bool isConstant = false;
920 QualType T = DR->getType();
Ted Kremenekd30ef872009-01-12 23:09:09 +0000921
Ted Kremenek082d9362009-03-20 21:35:28 +0000922 if (const ArrayType *AT = Context.getAsArrayType(T)) {
923 isConstant = AT->getElementType().isConstant(Context);
Mike Stumpac5fc7c2009-08-04 21:02:39 +0000924 } else if (const PointerType *PT = T->getAs<PointerType>()) {
Mike Stump1eb44332009-09-09 15:08:12 +0000925 isConstant = T.isConstant(Context) &&
Ted Kremenek082d9362009-03-20 21:35:28 +0000926 PT->getPointeeType().isConstant(Context);
927 }
Mike Stump1eb44332009-09-09 15:08:12 +0000928
Ted Kremenek082d9362009-03-20 21:35:28 +0000929 if (isConstant) {
Sebastian Redl31310a22010-02-01 20:16:42 +0000930 if (const Expr *Init = VD->getAnyInitializer())
Ted Kremenek082d9362009-03-20 21:35:28 +0000931 return SemaCheckStringLiteral(Init, TheCall,
Ted Kremenek826a3452010-07-16 02:11:22 +0000932 HasVAListArg, format_idx, firstDataArg,
933 isPrintf);
Ted Kremenek082d9362009-03-20 21:35:28 +0000934 }
Mike Stump1eb44332009-09-09 15:08:12 +0000935
Anders Carlssond966a552009-06-28 19:55:58 +0000936 // For vprintf* functions (i.e., HasVAListArg==true), we add a
937 // special check to see if the format string is a function parameter
938 // of the function calling the printf function. If the function
939 // has an attribute indicating it is a printf-like function, then we
940 // should suppress warnings concerning non-literals being used in a call
941 // to a vprintf function. For example:
942 //
943 // void
944 // logmessage(char const *fmt __attribute__ (format (printf, 1, 2)), ...){
945 // va_list ap;
946 // va_start(ap, fmt);
947 // vprintf(fmt, ap); // Do NOT emit a warning about "fmt".
948 // ...
949 //
950 //
951 // FIXME: We don't have full attribute support yet, so just check to see
952 // if the argument is a DeclRefExpr that references a parameter. We'll
953 // add proper support for checking the attribute later.
954 if (HasVAListArg)
955 if (isa<ParmVarDecl>(VD))
956 return true;
Ted Kremenek082d9362009-03-20 21:35:28 +0000957 }
Mike Stump1eb44332009-09-09 15:08:12 +0000958
Ted Kremenek082d9362009-03-20 21:35:28 +0000959 return false;
960 }
Ted Kremenekd30ef872009-01-12 23:09:09 +0000961
Anders Carlsson8f031b32009-06-27 04:05:33 +0000962 case Stmt::CallExprClass: {
963 const CallExpr *CE = cast<CallExpr>(E);
Mike Stump1eb44332009-09-09 15:08:12 +0000964 if (const ImplicitCastExpr *ICE
Anders Carlsson8f031b32009-06-27 04:05:33 +0000965 = dyn_cast<ImplicitCastExpr>(CE->getCallee())) {
966 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(ICE->getSubExpr())) {
967 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(DRE->getDecl())) {
Argyrios Kyrtzidis40b598e2009-06-30 02:34:44 +0000968 if (const FormatArgAttr *FA = FD->getAttr<FormatArgAttr>()) {
Anders Carlsson8f031b32009-06-27 04:05:33 +0000969 unsigned ArgIndex = FA->getFormatIdx();
970 const Expr *Arg = CE->getArg(ArgIndex - 1);
Mike Stump1eb44332009-09-09 15:08:12 +0000971
972 return SemaCheckStringLiteral(Arg, TheCall, HasVAListArg,
Ted Kremenek826a3452010-07-16 02:11:22 +0000973 format_idx, firstDataArg, isPrintf);
Anders Carlsson8f031b32009-06-27 04:05:33 +0000974 }
975 }
976 }
977 }
Mike Stump1eb44332009-09-09 15:08:12 +0000978
Anders Carlsson8f031b32009-06-27 04:05:33 +0000979 return false;
980 }
Ted Kremenek082d9362009-03-20 21:35:28 +0000981 case Stmt::ObjCStringLiteralClass:
982 case Stmt::StringLiteralClass: {
983 const StringLiteral *StrE = NULL;
Mike Stump1eb44332009-09-09 15:08:12 +0000984
Ted Kremenek082d9362009-03-20 21:35:28 +0000985 if (const ObjCStringLiteral *ObjCFExpr = dyn_cast<ObjCStringLiteral>(E))
Ted Kremenekd30ef872009-01-12 23:09:09 +0000986 StrE = ObjCFExpr->getString();
987 else
Ted Kremenek082d9362009-03-20 21:35:28 +0000988 StrE = cast<StringLiteral>(E);
Mike Stump1eb44332009-09-09 15:08:12 +0000989
Ted Kremenekd30ef872009-01-12 23:09:09 +0000990 if (StrE) {
Ted Kremenek826a3452010-07-16 02:11:22 +0000991 CheckFormatString(StrE, E, TheCall, HasVAListArg, format_idx,
992 firstDataArg, isPrintf);
Ted Kremenekd30ef872009-01-12 23:09:09 +0000993 return true;
994 }
Mike Stump1eb44332009-09-09 15:08:12 +0000995
Ted Kremenekd30ef872009-01-12 23:09:09 +0000996 return false;
997 }
Mike Stump1eb44332009-09-09 15:08:12 +0000998
Ted Kremenek082d9362009-03-20 21:35:28 +0000999 default:
1000 return false;
Ted Kremenekd30ef872009-01-12 23:09:09 +00001001 }
1002}
1003
Fariborz Jahaniane898f8a2009-05-21 18:48:51 +00001004void
Mike Stump1eb44332009-09-09 15:08:12 +00001005Sema::CheckNonNullArguments(const NonNullAttr *NonNull,
1006 const CallExpr *TheCall) {
Sean Huntcf807c42010-08-18 23:23:40 +00001007 for (NonNullAttr::args_iterator i = NonNull->args_begin(),
1008 e = NonNull->args_end();
Fariborz Jahaniane898f8a2009-05-21 18:48:51 +00001009 i != e; ++i) {
Chris Lattner12b97ff2009-05-25 18:23:36 +00001010 const Expr *ArgExpr = TheCall->getArg(*i);
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001011 if (ArgExpr->isNullPointerConstant(Context,
Douglas Gregorce940492009-09-25 04:25:58 +00001012 Expr::NPC_ValueDependentIsNotNull))
Chris Lattner12b97ff2009-05-25 18:23:36 +00001013 Diag(TheCall->getCallee()->getLocStart(), diag::warn_null_arg)
1014 << ArgExpr->getSourceRange();
Fariborz Jahaniane898f8a2009-05-21 18:48:51 +00001015 }
1016}
Ted Kremenekd30ef872009-01-12 23:09:09 +00001017
Ted Kremenek826a3452010-07-16 02:11:22 +00001018/// CheckPrintfScanfArguments - Check calls to printf and scanf (and similar
1019/// functions) for correct use of format strings.
Chris Lattner59907c42007-08-10 20:18:51 +00001020void
Ted Kremenek826a3452010-07-16 02:11:22 +00001021Sema::CheckPrintfScanfArguments(const CallExpr *TheCall, bool HasVAListArg,
1022 unsigned format_idx, unsigned firstDataArg,
1023 bool isPrintf) {
1024
Ted Kremenek082d9362009-03-20 21:35:28 +00001025 const Expr *Fn = TheCall->getCallee();
Chris Lattner925e60d2007-12-28 05:29:59 +00001026
Sebastian Redl4a2614e2009-11-17 18:02:24 +00001027 // The way the format attribute works in GCC, the implicit this argument
1028 // of member functions is counted. However, it doesn't appear in our own
1029 // lists, so decrement format_idx in that case.
1030 if (isa<CXXMemberCallExpr>(TheCall)) {
Chandler Carruth9263a302010-11-16 08:49:43 +00001031 const CXXMethodDecl *method_decl =
1032 dyn_cast<CXXMethodDecl>(TheCall->getCalleeDecl());
1033 if (method_decl && method_decl->isInstance()) {
1034 // Catch a format attribute mistakenly referring to the object argument.
1035 if (format_idx == 0)
1036 return;
1037 --format_idx;
1038 if(firstDataArg != 0)
1039 --firstDataArg;
1040 }
Sebastian Redl4a2614e2009-11-17 18:02:24 +00001041 }
1042
Ted Kremenek826a3452010-07-16 02:11:22 +00001043 // CHECK: printf/scanf-like function is called with no format string.
Chris Lattner925e60d2007-12-28 05:29:59 +00001044 if (format_idx >= TheCall->getNumArgs()) {
Ted Kremenek826a3452010-07-16 02:11:22 +00001045 Diag(TheCall->getRParenLoc(), diag::warn_missing_format_string)
Chris Lattnerdcd5ef12008-11-19 05:27:50 +00001046 << Fn->getSourceRange();
Ted Kremenek71895b92007-08-14 17:39:48 +00001047 return;
1048 }
Mike Stump1eb44332009-09-09 15:08:12 +00001049
Ted Kremenek082d9362009-03-20 21:35:28 +00001050 const Expr *OrigFormatExpr = TheCall->getArg(format_idx)->IgnoreParenCasts();
Mike Stump1eb44332009-09-09 15:08:12 +00001051
Chris Lattner59907c42007-08-10 20:18:51 +00001052 // CHECK: format string is not a string literal.
Mike Stump1eb44332009-09-09 15:08:12 +00001053 //
Ted Kremenek71895b92007-08-14 17:39:48 +00001054 // Dynamically generated format strings are difficult to
1055 // automatically vet at compile time. Requiring that format strings
1056 // are string literals: (1) permits the checking of format strings by
1057 // the compiler and thereby (2) can practically remove the source of
1058 // many format string exploits.
Ted Kremenek7ff22b22008-06-16 18:00:42 +00001059
Mike Stump1eb44332009-09-09 15:08:12 +00001060 // Format string can be either ObjC string (e.g. @"%d") or
Ted Kremenek7ff22b22008-06-16 18:00:42 +00001061 // C string (e.g. "%d")
Mike Stump1eb44332009-09-09 15:08:12 +00001062 // ObjC string uses the same format specifiers as C string, so we can use
Ted Kremenek7ff22b22008-06-16 18:00:42 +00001063 // the same format string checking logic for both ObjC and C strings.
Chris Lattner1cd3e1f2009-04-29 04:49:34 +00001064 if (SemaCheckStringLiteral(OrigFormatExpr, TheCall, HasVAListArg, format_idx,
Ted Kremenek826a3452010-07-16 02:11:22 +00001065 firstDataArg, isPrintf))
Chris Lattner1cd3e1f2009-04-29 04:49:34 +00001066 return; // Literal format string found, check done!
Ted Kremenek7ff22b22008-06-16 18:00:42 +00001067
Chris Lattner655f1412009-04-29 04:59:47 +00001068 // If there are no arguments specified, warn with -Wformat-security, otherwise
1069 // warn only with -Wformat-nonliteral.
1070 if (TheCall->getNumArgs() == format_idx+1)
Mike Stump1eb44332009-09-09 15:08:12 +00001071 Diag(TheCall->getArg(format_idx)->getLocStart(),
Ted Kremenek826a3452010-07-16 02:11:22 +00001072 diag::warn_format_nonliteral_noargs)
Chris Lattner655f1412009-04-29 04:59:47 +00001073 << OrigFormatExpr->getSourceRange();
1074 else
Mike Stump1eb44332009-09-09 15:08:12 +00001075 Diag(TheCall->getArg(format_idx)->getLocStart(),
Ted Kremenek826a3452010-07-16 02:11:22 +00001076 diag::warn_format_nonliteral)
Chris Lattner655f1412009-04-29 04:59:47 +00001077 << OrigFormatExpr->getSourceRange();
Ted Kremenekd30ef872009-01-12 23:09:09 +00001078}
Ted Kremenek71895b92007-08-14 17:39:48 +00001079
Ted Kremeneke0e53132010-01-28 23:39:18 +00001080namespace {
Ted Kremenek826a3452010-07-16 02:11:22 +00001081class CheckFormatHandler : public analyze_format_string::FormatStringHandler {
1082protected:
Ted Kremeneke0e53132010-01-28 23:39:18 +00001083 Sema &S;
1084 const StringLiteral *FExpr;
1085 const Expr *OrigFormatExpr;
Ted Kremenek6ee76532010-03-25 03:59:12 +00001086 const unsigned FirstDataArg;
Ted Kremeneke0e53132010-01-28 23:39:18 +00001087 const unsigned NumDataArgs;
1088 const bool IsObjCLiteral;
1089 const char *Beg; // Start of format string.
Ted Kremenek0d277352010-01-29 01:06:55 +00001090 const bool HasVAListArg;
1091 const CallExpr *TheCall;
1092 unsigned FormatIdx;
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001093 llvm::BitVector CoveredArgs;
Ted Kremenekefaff192010-02-27 01:41:03 +00001094 bool usesPositionalArgs;
1095 bool atFirstArg;
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001096public:
Ted Kremenek826a3452010-07-16 02:11:22 +00001097 CheckFormatHandler(Sema &s, const StringLiteral *fexpr,
Ted Kremenek6ee76532010-03-25 03:59:12 +00001098 const Expr *origFormatExpr, unsigned firstDataArg,
Ted Kremeneke0e53132010-01-28 23:39:18 +00001099 unsigned numDataArgs, bool isObjCLiteral,
Ted Kremenek0d277352010-01-29 01:06:55 +00001100 const char *beg, bool hasVAListArg,
1101 const CallExpr *theCall, unsigned formatIdx)
Ted Kremeneke0e53132010-01-28 23:39:18 +00001102 : S(s), FExpr(fexpr), OrigFormatExpr(origFormatExpr),
Ted Kremenek6ee76532010-03-25 03:59:12 +00001103 FirstDataArg(firstDataArg),
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001104 NumDataArgs(numDataArgs),
Ted Kremenek0d277352010-01-29 01:06:55 +00001105 IsObjCLiteral(isObjCLiteral), Beg(beg),
1106 HasVAListArg(hasVAListArg),
Ted Kremenekefaff192010-02-27 01:41:03 +00001107 TheCall(theCall), FormatIdx(formatIdx),
1108 usesPositionalArgs(false), atFirstArg(true) {
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001109 CoveredArgs.resize(numDataArgs);
1110 CoveredArgs.reset();
1111 }
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001112
Ted Kremenek07d161f2010-01-29 01:50:07 +00001113 void DoneProcessing();
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001114
Ted Kremenek826a3452010-07-16 02:11:22 +00001115 void HandleIncompleteSpecifier(const char *startSpecifier,
1116 unsigned specifierLen);
1117
Ted Kremenekefaff192010-02-27 01:41:03 +00001118 virtual void HandleInvalidPosition(const char *startSpecifier,
1119 unsigned specifierLen,
Ted Kremenek826a3452010-07-16 02:11:22 +00001120 analyze_format_string::PositionContext p);
Ted Kremenekefaff192010-02-27 01:41:03 +00001121
1122 virtual void HandleZeroPosition(const char *startPos, unsigned posLen);
1123
Ted Kremeneke0e53132010-01-28 23:39:18 +00001124 void HandleNullChar(const char *nullCharacter);
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001125
Ted Kremenek826a3452010-07-16 02:11:22 +00001126protected:
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001127 bool HandleInvalidConversionSpecifier(unsigned argIndex, SourceLocation Loc,
1128 const char *startSpec,
1129 unsigned specifierLen,
1130 const char *csStart, unsigned csLen);
1131
Ted Kremenekf88c8e02010-01-29 20:55:36 +00001132 SourceRange getFormatStringRange();
Ted Kremenek826a3452010-07-16 02:11:22 +00001133 CharSourceRange getSpecifierRange(const char *startSpecifier,
1134 unsigned specifierLen);
Ted Kremeneke0e53132010-01-28 23:39:18 +00001135 SourceLocation getLocationOfByte(const char *x);
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001136
Ted Kremenek0d277352010-01-29 01:06:55 +00001137 const Expr *getDataArg(unsigned i) const;
Ted Kremenek666a1972010-07-26 19:45:42 +00001138
1139 bool CheckNumArgs(const analyze_format_string::FormatSpecifier &FS,
1140 const analyze_format_string::ConversionSpecifier &CS,
1141 const char *startSpecifier, unsigned specifierLen,
1142 unsigned argIndex);
Ted Kremeneke0e53132010-01-28 23:39:18 +00001143};
1144}
1145
Ted Kremenek826a3452010-07-16 02:11:22 +00001146SourceRange CheckFormatHandler::getFormatStringRange() {
Ted Kremeneke0e53132010-01-28 23:39:18 +00001147 return OrigFormatExpr->getSourceRange();
1148}
1149
Ted Kremenek826a3452010-07-16 02:11:22 +00001150CharSourceRange CheckFormatHandler::
1151getSpecifierRange(const char *startSpecifier, unsigned specifierLen) {
Tom Care45f9b7e2010-06-21 21:21:01 +00001152 SourceLocation Start = getLocationOfByte(startSpecifier);
1153 SourceLocation End = getLocationOfByte(startSpecifier + specifierLen - 1);
1154
1155 // Advance the end SourceLocation by one due to half-open ranges.
1156 End = End.getFileLocWithOffset(1);
1157
1158 return CharSourceRange::getCharRange(Start, End);
Ted Kremenekf88c8e02010-01-29 20:55:36 +00001159}
1160
Ted Kremenek826a3452010-07-16 02:11:22 +00001161SourceLocation CheckFormatHandler::getLocationOfByte(const char *x) {
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001162 return S.getLocationOfStringLiteralByte(FExpr, x - Beg);
Ted Kremeneke0e53132010-01-28 23:39:18 +00001163}
1164
Ted Kremenek826a3452010-07-16 02:11:22 +00001165void CheckFormatHandler::HandleIncompleteSpecifier(const char *startSpecifier,
1166 unsigned specifierLen){
Ted Kremenek808015a2010-01-29 03:16:21 +00001167 SourceLocation Loc = getLocationOfByte(startSpecifier);
1168 S.Diag(Loc, diag::warn_printf_incomplete_specifier)
Ted Kremenek826a3452010-07-16 02:11:22 +00001169 << getSpecifierRange(startSpecifier, specifierLen);
Ted Kremenek808015a2010-01-29 03:16:21 +00001170}
1171
Ted Kremenekefaff192010-02-27 01:41:03 +00001172void
Ted Kremenek826a3452010-07-16 02:11:22 +00001173CheckFormatHandler::HandleInvalidPosition(const char *startPos, unsigned posLen,
1174 analyze_format_string::PositionContext p) {
Ted Kremenekefaff192010-02-27 01:41:03 +00001175 SourceLocation Loc = getLocationOfByte(startPos);
Ted Kremenek826a3452010-07-16 02:11:22 +00001176 S.Diag(Loc, diag::warn_format_invalid_positional_specifier)
1177 << (unsigned) p << getSpecifierRange(startPos, posLen);
Ted Kremenekefaff192010-02-27 01:41:03 +00001178}
1179
Ted Kremenek826a3452010-07-16 02:11:22 +00001180void CheckFormatHandler::HandleZeroPosition(const char *startPos,
Ted Kremenekefaff192010-02-27 01:41:03 +00001181 unsigned posLen) {
1182 SourceLocation Loc = getLocationOfByte(startPos);
Ted Kremenek826a3452010-07-16 02:11:22 +00001183 S.Diag(Loc, diag::warn_format_zero_positional_specifier)
1184 << getSpecifierRange(startPos, posLen);
Ted Kremenekefaff192010-02-27 01:41:03 +00001185}
1186
Ted Kremenek826a3452010-07-16 02:11:22 +00001187void CheckFormatHandler::HandleNullChar(const char *nullCharacter) {
1188 // The presence of a null character is likely an error.
1189 S.Diag(getLocationOfByte(nullCharacter),
1190 diag::warn_printf_format_string_contains_null_char)
1191 << getFormatStringRange();
1192}
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001193
Ted Kremenek826a3452010-07-16 02:11:22 +00001194const Expr *CheckFormatHandler::getDataArg(unsigned i) const {
1195 return TheCall->getArg(FirstDataArg + i);
1196}
1197
1198void CheckFormatHandler::DoneProcessing() {
1199 // Does the number of data arguments exceed the number of
1200 // format conversions in the format string?
1201 if (!HasVAListArg) {
1202 // Find any arguments that weren't covered.
1203 CoveredArgs.flip();
1204 signed notCoveredArg = CoveredArgs.find_first();
1205 if (notCoveredArg >= 0) {
1206 assert((unsigned)notCoveredArg < NumDataArgs);
1207 S.Diag(getDataArg((unsigned) notCoveredArg)->getLocStart(),
1208 diag::warn_printf_data_arg_not_used)
1209 << getFormatStringRange();
1210 }
1211 }
1212}
1213
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001214bool
1215CheckFormatHandler::HandleInvalidConversionSpecifier(unsigned argIndex,
1216 SourceLocation Loc,
1217 const char *startSpec,
1218 unsigned specifierLen,
1219 const char *csStart,
1220 unsigned csLen) {
1221
1222 bool keepGoing = true;
1223 if (argIndex < NumDataArgs) {
1224 // Consider the argument coverered, even though the specifier doesn't
1225 // make sense.
1226 CoveredArgs.set(argIndex);
1227 }
1228 else {
1229 // If argIndex exceeds the number of data arguments we
1230 // don't issue a warning because that is just a cascade of warnings (and
1231 // they may have intended '%%' anyway). We don't want to continue processing
1232 // the format string after this point, however, as we will like just get
1233 // gibberish when trying to match arguments.
1234 keepGoing = false;
1235 }
1236
1237 S.Diag(Loc, diag::warn_format_invalid_conversion)
1238 << llvm::StringRef(csStart, csLen)
1239 << getSpecifierRange(startSpec, specifierLen);
1240
1241 return keepGoing;
1242}
1243
Ted Kremenek666a1972010-07-26 19:45:42 +00001244bool
1245CheckFormatHandler::CheckNumArgs(
1246 const analyze_format_string::FormatSpecifier &FS,
1247 const analyze_format_string::ConversionSpecifier &CS,
1248 const char *startSpecifier, unsigned specifierLen, unsigned argIndex) {
1249
1250 if (argIndex >= NumDataArgs) {
1251 if (FS.usesPositionalArg()) {
1252 S.Diag(getLocationOfByte(CS.getStart()),
1253 diag::warn_printf_positional_arg_exceeds_data_args)
1254 << (argIndex+1) << NumDataArgs
1255 << getSpecifierRange(startSpecifier, specifierLen);
1256 }
1257 else {
1258 S.Diag(getLocationOfByte(CS.getStart()),
1259 diag::warn_printf_insufficient_data_args)
1260 << getSpecifierRange(startSpecifier, specifierLen);
1261 }
1262
1263 return false;
1264 }
1265 return true;
1266}
1267
Ted Kremenek826a3452010-07-16 02:11:22 +00001268//===--- CHECK: Printf format string checking ------------------------------===//
1269
1270namespace {
1271class CheckPrintfHandler : public CheckFormatHandler {
1272public:
1273 CheckPrintfHandler(Sema &s, const StringLiteral *fexpr,
1274 const Expr *origFormatExpr, unsigned firstDataArg,
1275 unsigned numDataArgs, bool isObjCLiteral,
1276 const char *beg, bool hasVAListArg,
1277 const CallExpr *theCall, unsigned formatIdx)
1278 : CheckFormatHandler(s, fexpr, origFormatExpr, firstDataArg,
1279 numDataArgs, isObjCLiteral, beg, hasVAListArg,
1280 theCall, formatIdx) {}
1281
1282
1283 bool HandleInvalidPrintfConversionSpecifier(
1284 const analyze_printf::PrintfSpecifier &FS,
1285 const char *startSpecifier,
1286 unsigned specifierLen);
1287
1288 bool HandlePrintfSpecifier(const analyze_printf::PrintfSpecifier &FS,
1289 const char *startSpecifier,
1290 unsigned specifierLen);
1291
1292 bool HandleAmount(const analyze_format_string::OptionalAmount &Amt, unsigned k,
1293 const char *startSpecifier, unsigned specifierLen);
1294 void HandleInvalidAmount(const analyze_printf::PrintfSpecifier &FS,
1295 const analyze_printf::OptionalAmount &Amt,
1296 unsigned type,
1297 const char *startSpecifier, unsigned specifierLen);
1298 void HandleFlag(const analyze_printf::PrintfSpecifier &FS,
1299 const analyze_printf::OptionalFlag &flag,
1300 const char *startSpecifier, unsigned specifierLen);
1301 void HandleIgnoredFlag(const analyze_printf::PrintfSpecifier &FS,
1302 const analyze_printf::OptionalFlag &ignoredFlag,
1303 const analyze_printf::OptionalFlag &flag,
1304 const char *startSpecifier, unsigned specifierLen);
1305};
1306}
1307
1308bool CheckPrintfHandler::HandleInvalidPrintfConversionSpecifier(
1309 const analyze_printf::PrintfSpecifier &FS,
1310 const char *startSpecifier,
1311 unsigned specifierLen) {
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001312 const analyze_printf::PrintfConversionSpecifier &CS =
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001313 FS.getConversionSpecifier();
Ted Kremenek826a3452010-07-16 02:11:22 +00001314
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001315 return HandleInvalidConversionSpecifier(FS.getArgIndex(),
1316 getLocationOfByte(CS.getStart()),
1317 startSpecifier, specifierLen,
1318 CS.getStart(), CS.getLength());
Ted Kremenek26ac2e02010-01-29 02:40:24 +00001319}
1320
Ted Kremenek826a3452010-07-16 02:11:22 +00001321bool CheckPrintfHandler::HandleAmount(
1322 const analyze_format_string::OptionalAmount &Amt,
1323 unsigned k, const char *startSpecifier,
1324 unsigned specifierLen) {
Ted Kremenek0d277352010-01-29 01:06:55 +00001325
1326 if (Amt.hasDataArgument()) {
Ted Kremenek0d277352010-01-29 01:06:55 +00001327 if (!HasVAListArg) {
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001328 unsigned argIndex = Amt.getArgIndex();
1329 if (argIndex >= NumDataArgs) {
Ted Kremenekefaff192010-02-27 01:41:03 +00001330 S.Diag(getLocationOfByte(Amt.getStart()),
1331 diag::warn_printf_asterisk_missing_arg)
Ted Kremenek826a3452010-07-16 02:11:22 +00001332 << k << getSpecifierRange(startSpecifier, specifierLen);
Ted Kremenek0d277352010-01-29 01:06:55 +00001333 // Don't do any more checking. We will just emit
1334 // spurious errors.
1335 return false;
1336 }
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001337
Ted Kremenek0d277352010-01-29 01:06:55 +00001338 // Type check the data argument. It should be an 'int'.
Ted Kremenek31f8e322010-01-29 23:32:22 +00001339 // Although not in conformance with C99, we also allow the argument to be
1340 // an 'unsigned int' as that is a reasonably safe case. GCC also
1341 // doesn't emit a warning for that case.
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001342 CoveredArgs.set(argIndex);
1343 const Expr *Arg = getDataArg(argIndex);
Ted Kremenek0d277352010-01-29 01:06:55 +00001344 QualType T = Arg->getType();
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001345
1346 const analyze_printf::ArgTypeResult &ATR = Amt.getArgType(S.Context);
1347 assert(ATR.isValid());
1348
1349 if (!ATR.matchesType(S.Context, T)) {
Ted Kremenekefaff192010-02-27 01:41:03 +00001350 S.Diag(getLocationOfByte(Amt.getStart()),
1351 diag::warn_printf_asterisk_wrong_type)
1352 << k
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001353 << ATR.getRepresentativeType(S.Context) << T
Ted Kremenek826a3452010-07-16 02:11:22 +00001354 << getSpecifierRange(startSpecifier, specifierLen)
Ted Kremenekd635c5f2010-01-30 00:49:51 +00001355 << Arg->getSourceRange();
Ted Kremenek0d277352010-01-29 01:06:55 +00001356 // Don't do any more checking. We will just emit
1357 // spurious errors.
1358 return false;
1359 }
1360 }
1361 }
1362 return true;
1363}
Ted Kremenek0d277352010-01-29 01:06:55 +00001364
Tom Caree4ee9662010-06-17 19:00:27 +00001365void CheckPrintfHandler::HandleInvalidAmount(
Ted Kremenek826a3452010-07-16 02:11:22 +00001366 const analyze_printf::PrintfSpecifier &FS,
Tom Caree4ee9662010-06-17 19:00:27 +00001367 const analyze_printf::OptionalAmount &Amt,
1368 unsigned type,
1369 const char *startSpecifier,
1370 unsigned specifierLen) {
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001371 const analyze_printf::PrintfConversionSpecifier &CS =
1372 FS.getConversionSpecifier();
Tom Caree4ee9662010-06-17 19:00:27 +00001373 switch (Amt.getHowSpecified()) {
1374 case analyze_printf::OptionalAmount::Constant:
1375 S.Diag(getLocationOfByte(Amt.getStart()),
1376 diag::warn_printf_nonsensical_optional_amount)
1377 << type
1378 << CS.toString()
Ted Kremenek826a3452010-07-16 02:11:22 +00001379 << getSpecifierRange(startSpecifier, specifierLen)
1380 << FixItHint::CreateRemoval(getSpecifierRange(Amt.getStart(),
Tom Caree4ee9662010-06-17 19:00:27 +00001381 Amt.getConstantLength()));
1382 break;
1383
1384 default:
1385 S.Diag(getLocationOfByte(Amt.getStart()),
1386 diag::warn_printf_nonsensical_optional_amount)
1387 << type
1388 << CS.toString()
Ted Kremenek826a3452010-07-16 02:11:22 +00001389 << getSpecifierRange(startSpecifier, specifierLen);
Tom Caree4ee9662010-06-17 19:00:27 +00001390 break;
1391 }
1392}
1393
Ted Kremenek826a3452010-07-16 02:11:22 +00001394void CheckPrintfHandler::HandleFlag(const analyze_printf::PrintfSpecifier &FS,
Tom Caree4ee9662010-06-17 19:00:27 +00001395 const analyze_printf::OptionalFlag &flag,
1396 const char *startSpecifier,
1397 unsigned specifierLen) {
1398 // Warn about pointless flag with a fixit removal.
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001399 const analyze_printf::PrintfConversionSpecifier &CS =
1400 FS.getConversionSpecifier();
Tom Caree4ee9662010-06-17 19:00:27 +00001401 S.Diag(getLocationOfByte(flag.getPosition()),
1402 diag::warn_printf_nonsensical_flag)
1403 << flag.toString() << CS.toString()
Ted Kremenek826a3452010-07-16 02:11:22 +00001404 << getSpecifierRange(startSpecifier, specifierLen)
1405 << FixItHint::CreateRemoval(getSpecifierRange(flag.getPosition(), 1));
Tom Caree4ee9662010-06-17 19:00:27 +00001406}
1407
1408void CheckPrintfHandler::HandleIgnoredFlag(
Ted Kremenek826a3452010-07-16 02:11:22 +00001409 const analyze_printf::PrintfSpecifier &FS,
Tom Caree4ee9662010-06-17 19:00:27 +00001410 const analyze_printf::OptionalFlag &ignoredFlag,
1411 const analyze_printf::OptionalFlag &flag,
1412 const char *startSpecifier,
1413 unsigned specifierLen) {
1414 // Warn about ignored flag with a fixit removal.
1415 S.Diag(getLocationOfByte(ignoredFlag.getPosition()),
1416 diag::warn_printf_ignored_flag)
1417 << ignoredFlag.toString() << flag.toString()
Ted Kremenek826a3452010-07-16 02:11:22 +00001418 << getSpecifierRange(startSpecifier, specifierLen)
1419 << FixItHint::CreateRemoval(getSpecifierRange(
Tom Caree4ee9662010-06-17 19:00:27 +00001420 ignoredFlag.getPosition(), 1));
1421}
1422
Ted Kremeneke0e53132010-01-28 23:39:18 +00001423bool
Ted Kremenek826a3452010-07-16 02:11:22 +00001424CheckPrintfHandler::HandlePrintfSpecifier(const analyze_printf::PrintfSpecifier
Ted Kremenek5c41ee82010-02-11 09:27:41 +00001425 &FS,
Ted Kremeneke0e53132010-01-28 23:39:18 +00001426 const char *startSpecifier,
1427 unsigned specifierLen) {
1428
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001429 using namespace analyze_format_string;
Ted Kremenekefaff192010-02-27 01:41:03 +00001430 using namespace analyze_printf;
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001431 const PrintfConversionSpecifier &CS = FS.getConversionSpecifier();
Ted Kremeneke0e53132010-01-28 23:39:18 +00001432
Ted Kremenekbaa40062010-07-19 22:01:06 +00001433 if (FS.consumesDataArgument()) {
1434 if (atFirstArg) {
1435 atFirstArg = false;
1436 usesPositionalArgs = FS.usesPositionalArg();
1437 }
1438 else if (usesPositionalArgs != FS.usesPositionalArg()) {
1439 // Cannot mix-and-match positional and non-positional arguments.
1440 S.Diag(getLocationOfByte(CS.getStart()),
1441 diag::warn_format_mix_positional_nonpositional_args)
1442 << getSpecifierRange(startSpecifier, specifierLen);
1443 return false;
1444 }
Ted Kremenek0d277352010-01-29 01:06:55 +00001445 }
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001446
Ted Kremenekefaff192010-02-27 01:41:03 +00001447 // First check if the field width, precision, and conversion specifier
1448 // have matching data arguments.
1449 if (!HandleAmount(FS.getFieldWidth(), /* field width */ 0,
1450 startSpecifier, specifierLen)) {
1451 return false;
1452 }
1453
1454 if (!HandleAmount(FS.getPrecision(), /* precision */ 1,
1455 startSpecifier, specifierLen)) {
Ted Kremenek0d277352010-01-29 01:06:55 +00001456 return false;
1457 }
1458
Ted Kremenekf88c8e02010-01-29 20:55:36 +00001459 if (!CS.consumesDataArgument()) {
1460 // FIXME: Technically specifying a precision or field width here
1461 // makes no sense. Worth issuing a warning at some point.
Ted Kremenek0e5675d2010-02-10 02:16:30 +00001462 return true;
Ted Kremenekf88c8e02010-01-29 20:55:36 +00001463 }
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001464
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001465 // Consume the argument.
1466 unsigned argIndex = FS.getArgIndex();
Ted Kremeneke3fc5472010-02-27 08:34:51 +00001467 if (argIndex < NumDataArgs) {
1468 // The check to see if the argIndex is valid will come later.
1469 // We set the bit here because we may exit early from this
1470 // function if we encounter some other error.
1471 CoveredArgs.set(argIndex);
1472 }
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001473
1474 // Check for using an Objective-C specific conversion specifier
1475 // in a non-ObjC literal.
1476 if (!IsObjCLiteral && CS.isObjCArg()) {
Ted Kremenek826a3452010-07-16 02:11:22 +00001477 return HandleInvalidPrintfConversionSpecifier(FS, startSpecifier,
1478 specifierLen);
Ted Kremenek7f70dc82010-02-26 19:18:41 +00001479 }
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001480
Tom Caree4ee9662010-06-17 19:00:27 +00001481 // Check for invalid use of field width
1482 if (!FS.hasValidFieldWidth()) {
Tom Care45f9b7e2010-06-21 21:21:01 +00001483 HandleInvalidAmount(FS, FS.getFieldWidth(), /* field width */ 0,
Tom Caree4ee9662010-06-17 19:00:27 +00001484 startSpecifier, specifierLen);
1485 }
1486
1487 // Check for invalid use of precision
1488 if (!FS.hasValidPrecision()) {
1489 HandleInvalidAmount(FS, FS.getPrecision(), /* precision */ 1,
1490 startSpecifier, specifierLen);
1491 }
1492
1493 // Check each flag does not conflict with any other component.
Ted Kremenek65197b42011-01-08 05:28:46 +00001494 if (!FS.hasValidThousandsGroupingPrefix())
1495 HandleFlag(FS, FS.hasThousandsGrouping(), startSpecifier, specifierLen);
Tom Caree4ee9662010-06-17 19:00:27 +00001496 if (!FS.hasValidLeadingZeros())
1497 HandleFlag(FS, FS.hasLeadingZeros(), startSpecifier, specifierLen);
1498 if (!FS.hasValidPlusPrefix())
1499 HandleFlag(FS, FS.hasPlusPrefix(), startSpecifier, specifierLen);
Tom Care45f9b7e2010-06-21 21:21:01 +00001500 if (!FS.hasValidSpacePrefix())
1501 HandleFlag(FS, FS.hasSpacePrefix(), startSpecifier, specifierLen);
Tom Caree4ee9662010-06-17 19:00:27 +00001502 if (!FS.hasValidAlternativeForm())
1503 HandleFlag(FS, FS.hasAlternativeForm(), startSpecifier, specifierLen);
1504 if (!FS.hasValidLeftJustified())
1505 HandleFlag(FS, FS.isLeftJustified(), startSpecifier, specifierLen);
1506
1507 // Check that flags are not ignored by another flag
Tom Care45f9b7e2010-06-21 21:21:01 +00001508 if (FS.hasSpacePrefix() && FS.hasPlusPrefix()) // ' ' ignored by '+'
1509 HandleIgnoredFlag(FS, FS.hasSpacePrefix(), FS.hasPlusPrefix(),
1510 startSpecifier, specifierLen);
Tom Caree4ee9662010-06-17 19:00:27 +00001511 if (FS.hasLeadingZeros() && FS.isLeftJustified()) // '0' ignored by '-'
1512 HandleIgnoredFlag(FS, FS.hasLeadingZeros(), FS.isLeftJustified(),
1513 startSpecifier, specifierLen);
1514
1515 // Check the length modifier is valid with the given conversion specifier.
1516 const LengthModifier &LM = FS.getLengthModifier();
1517 if (!FS.hasValidLengthModifier())
1518 S.Diag(getLocationOfByte(LM.getStart()),
Ted Kremenek649aecf2010-07-20 20:03:43 +00001519 diag::warn_format_nonsensical_length)
Tom Caree4ee9662010-06-17 19:00:27 +00001520 << LM.toString() << CS.toString()
Ted Kremenek826a3452010-07-16 02:11:22 +00001521 << getSpecifierRange(startSpecifier, specifierLen)
1522 << FixItHint::CreateRemoval(getSpecifierRange(LM.getStart(),
Tom Caree4ee9662010-06-17 19:00:27 +00001523 LM.getLength()));
1524
1525 // Are we using '%n'?
Ted Kremenek35d353b2010-07-20 20:04:10 +00001526 if (CS.getKind() == ConversionSpecifier::nArg) {
Tom Caree4ee9662010-06-17 19:00:27 +00001527 // Issue a warning about this being a possible security issue.
Ted Kremeneke82d8042010-01-29 01:35:25 +00001528 S.Diag(getLocationOfByte(CS.getStart()), diag::warn_printf_write_back)
Ted Kremenek826a3452010-07-16 02:11:22 +00001529 << getSpecifierRange(startSpecifier, specifierLen);
Ted Kremeneke82d8042010-01-29 01:35:25 +00001530 // Continue checking the other format specifiers.
1531 return true;
1532 }
Ted Kremenek5c41ee82010-02-11 09:27:41 +00001533
Ted Kremenekda51f0d2010-01-29 01:43:31 +00001534 // The remaining checks depend on the data arguments.
1535 if (HasVAListArg)
1536 return true;
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001537
Ted Kremenek666a1972010-07-26 19:45:42 +00001538 if (!CheckNumArgs(FS, CS, startSpecifier, specifierLen, argIndex))
Ted Kremenekda51f0d2010-01-29 01:43:31 +00001539 return false;
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00001540
Michael J. Spencer96827eb2010-07-27 04:46:02 +00001541 // Now type check the data expression that matches the
1542 // format specifier.
1543 const Expr *Ex = getDataArg(argIndex);
1544 const analyze_printf::ArgTypeResult &ATR = FS.getArgType(S.Context);
1545 if (ATR.isValid() && !ATR.matchesType(S.Context, Ex->getType())) {
1546 // Check if we didn't match because of an implicit cast from a 'char'
1547 // or 'short' to an 'int'. This is done because printf is a varargs
1548 // function.
1549 if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(Ex))
Ted Kremenek4d8ae4d2010-10-21 04:00:58 +00001550 if (ICE->getType() == S.Context.IntTy) {
1551 // All further checking is done on the subexpression.
1552 Ex = ICE->getSubExpr();
1553 if (ATR.matchesType(S.Context, Ex->getType()))
Michael J. Spencer96827eb2010-07-27 04:46:02 +00001554 return true;
Ted Kremenek4d8ae4d2010-10-21 04:00:58 +00001555 }
Michael J. Spencer96827eb2010-07-27 04:46:02 +00001556
1557 // We may be able to offer a FixItHint if it is a supported type.
1558 PrintfSpecifier fixedFS = FS;
1559 bool success = fixedFS.fixType(Ex->getType());
1560
1561 if (success) {
1562 // Get the fix string from the fixed format specifier
1563 llvm::SmallString<128> buf;
1564 llvm::raw_svector_ostream os(buf);
1565 fixedFS.toString(os);
1566
Ted Kremenek9325eaf2010-08-24 22:24:51 +00001567 // FIXME: getRepresentativeType() perhaps should return a string
1568 // instead of a QualType to better handle when the representative
1569 // type is 'wint_t' (which is defined in the system headers).
Michael J. Spencer96827eb2010-07-27 04:46:02 +00001570 S.Diag(getLocationOfByte(CS.getStart()),
1571 diag::warn_printf_conversion_argument_type_mismatch)
1572 << ATR.getRepresentativeType(S.Context) << Ex->getType()
1573 << getSpecifierRange(startSpecifier, specifierLen)
1574 << Ex->getSourceRange()
1575 << FixItHint::CreateReplacement(
1576 getSpecifierRange(startSpecifier, specifierLen),
1577 os.str());
1578 }
1579 else {
1580 S.Diag(getLocationOfByte(CS.getStart()),
1581 diag::warn_printf_conversion_argument_type_mismatch)
1582 << ATR.getRepresentativeType(S.Context) << Ex->getType()
1583 << getSpecifierRange(startSpecifier, specifierLen)
1584 << Ex->getSourceRange();
1585 }
1586 }
1587
Ted Kremeneke0e53132010-01-28 23:39:18 +00001588 return true;
1589}
1590
Ted Kremenek826a3452010-07-16 02:11:22 +00001591//===--- CHECK: Scanf format string checking ------------------------------===//
1592
1593namespace {
1594class CheckScanfHandler : public CheckFormatHandler {
1595public:
1596 CheckScanfHandler(Sema &s, const StringLiteral *fexpr,
1597 const Expr *origFormatExpr, unsigned firstDataArg,
1598 unsigned numDataArgs, bool isObjCLiteral,
1599 const char *beg, bool hasVAListArg,
1600 const CallExpr *theCall, unsigned formatIdx)
1601 : CheckFormatHandler(s, fexpr, origFormatExpr, firstDataArg,
1602 numDataArgs, isObjCLiteral, beg, hasVAListArg,
1603 theCall, formatIdx) {}
1604
1605 bool HandleScanfSpecifier(const analyze_scanf::ScanfSpecifier &FS,
1606 const char *startSpecifier,
1607 unsigned specifierLen);
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001608
1609 bool HandleInvalidScanfConversionSpecifier(
1610 const analyze_scanf::ScanfSpecifier &FS,
1611 const char *startSpecifier,
1612 unsigned specifierLen);
Ted Kremenekb7c21012010-07-16 18:28:03 +00001613
1614 void HandleIncompleteScanList(const char *start, const char *end);
Ted Kremenek826a3452010-07-16 02:11:22 +00001615};
Ted Kremenek07d161f2010-01-29 01:50:07 +00001616}
Ted Kremeneke0e53132010-01-28 23:39:18 +00001617
Ted Kremenekb7c21012010-07-16 18:28:03 +00001618void CheckScanfHandler::HandleIncompleteScanList(const char *start,
1619 const char *end) {
1620 S.Diag(getLocationOfByte(end), diag::warn_scanf_scanlist_incomplete)
1621 << getSpecifierRange(start, end - start);
1622}
1623
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001624bool CheckScanfHandler::HandleInvalidScanfConversionSpecifier(
1625 const analyze_scanf::ScanfSpecifier &FS,
1626 const char *startSpecifier,
1627 unsigned specifierLen) {
1628
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001629 const analyze_scanf::ScanfConversionSpecifier &CS =
Ted Kremenekc09b6a52010-07-19 21:25:57 +00001630 FS.getConversionSpecifier();
1631
1632 return HandleInvalidConversionSpecifier(FS.getArgIndex(),
1633 getLocationOfByte(CS.getStart()),
1634 startSpecifier, specifierLen,
1635 CS.getStart(), CS.getLength());
1636}
1637
Ted Kremenek826a3452010-07-16 02:11:22 +00001638bool CheckScanfHandler::HandleScanfSpecifier(
1639 const analyze_scanf::ScanfSpecifier &FS,
1640 const char *startSpecifier,
1641 unsigned specifierLen) {
1642
1643 using namespace analyze_scanf;
1644 using namespace analyze_format_string;
1645
Ted Kremenek6ecb9502010-07-20 20:04:27 +00001646 const ScanfConversionSpecifier &CS = FS.getConversionSpecifier();
Ted Kremenek826a3452010-07-16 02:11:22 +00001647
Ted Kremenekbaa40062010-07-19 22:01:06 +00001648 // Handle case where '%' and '*' don't consume an argument. These shouldn't
1649 // be used to decide if we are using positional arguments consistently.
1650 if (FS.consumesDataArgument()) {
1651 if (atFirstArg) {
1652 atFirstArg = false;
1653 usesPositionalArgs = FS.usesPositionalArg();
1654 }
1655 else if (usesPositionalArgs != FS.usesPositionalArg()) {
1656 // Cannot mix-and-match positional and non-positional arguments.
1657 S.Diag(getLocationOfByte(CS.getStart()),
1658 diag::warn_format_mix_positional_nonpositional_args)
1659 << getSpecifierRange(startSpecifier, specifierLen);
1660 return false;
1661 }
Ted Kremenek826a3452010-07-16 02:11:22 +00001662 }
1663
1664 // Check if the field with is non-zero.
1665 const OptionalAmount &Amt = FS.getFieldWidth();
1666 if (Amt.getHowSpecified() == OptionalAmount::Constant) {
1667 if (Amt.getConstantAmount() == 0) {
1668 const CharSourceRange &R = getSpecifierRange(Amt.getStart(),
1669 Amt.getConstantLength());
1670 S.Diag(getLocationOfByte(Amt.getStart()),
1671 diag::warn_scanf_nonzero_width)
1672 << R << FixItHint::CreateRemoval(R);
1673 }
1674 }
1675
1676 if (!FS.consumesDataArgument()) {
1677 // FIXME: Technically specifying a precision or field width here
1678 // makes no sense. Worth issuing a warning at some point.
1679 return true;
1680 }
1681
1682 // Consume the argument.
1683 unsigned argIndex = FS.getArgIndex();
1684 if (argIndex < NumDataArgs) {
1685 // The check to see if the argIndex is valid will come later.
1686 // We set the bit here because we may exit early from this
1687 // function if we encounter some other error.
1688 CoveredArgs.set(argIndex);
1689 }
1690
Ted Kremenek1e51c202010-07-20 20:04:47 +00001691 // Check the length modifier is valid with the given conversion specifier.
1692 const LengthModifier &LM = FS.getLengthModifier();
1693 if (!FS.hasValidLengthModifier()) {
1694 S.Diag(getLocationOfByte(LM.getStart()),
1695 diag::warn_format_nonsensical_length)
1696 << LM.toString() << CS.toString()
1697 << getSpecifierRange(startSpecifier, specifierLen)
1698 << FixItHint::CreateRemoval(getSpecifierRange(LM.getStart(),
1699 LM.getLength()));
1700 }
1701
Ted Kremenek826a3452010-07-16 02:11:22 +00001702 // The remaining checks depend on the data arguments.
1703 if (HasVAListArg)
1704 return true;
1705
Ted Kremenek666a1972010-07-26 19:45:42 +00001706 if (!CheckNumArgs(FS, CS, startSpecifier, specifierLen, argIndex))
Ted Kremenek826a3452010-07-16 02:11:22 +00001707 return false;
Ted Kremenek826a3452010-07-16 02:11:22 +00001708
1709 // FIXME: Check that the argument type matches the format specifier.
1710
1711 return true;
1712}
1713
1714void Sema::CheckFormatString(const StringLiteral *FExpr,
Ted Kremenek0e5675d2010-02-10 02:16:30 +00001715 const Expr *OrigFormatExpr,
1716 const CallExpr *TheCall, bool HasVAListArg,
Ted Kremenek826a3452010-07-16 02:11:22 +00001717 unsigned format_idx, unsigned firstDataArg,
1718 bool isPrintf) {
1719
Ted Kremeneke0e53132010-01-28 23:39:18 +00001720 // CHECK: is the format string a wide literal?
1721 if (FExpr->isWide()) {
1722 Diag(FExpr->getLocStart(),
Ted Kremenek826a3452010-07-16 02:11:22 +00001723 diag::warn_format_string_is_wide_literal)
Ted Kremeneke0e53132010-01-28 23:39:18 +00001724 << OrigFormatExpr->getSourceRange();
1725 return;
1726 }
Ted Kremenek826a3452010-07-16 02:11:22 +00001727
Ted Kremeneke0e53132010-01-28 23:39:18 +00001728 // Str - The format string. NOTE: this is NOT null-terminated!
Benjamin Kramer2f4eaef2010-08-17 12:54:38 +00001729 llvm::StringRef StrRef = FExpr->getString();
1730 const char *Str = StrRef.data();
1731 unsigned StrLen = StrRef.size();
Ted Kremenek826a3452010-07-16 02:11:22 +00001732
Ted Kremeneke0e53132010-01-28 23:39:18 +00001733 // CHECK: empty format string?
Ted Kremeneke0e53132010-01-28 23:39:18 +00001734 if (StrLen == 0) {
Ted Kremenek826a3452010-07-16 02:11:22 +00001735 Diag(FExpr->getLocStart(), diag::warn_empty_format_string)
Ted Kremeneke0e53132010-01-28 23:39:18 +00001736 << OrigFormatExpr->getSourceRange();
1737 return;
1738 }
Ted Kremenek826a3452010-07-16 02:11:22 +00001739
1740 if (isPrintf) {
1741 CheckPrintfHandler H(*this, FExpr, OrigFormatExpr, firstDataArg,
1742 TheCall->getNumArgs() - firstDataArg,
1743 isa<ObjCStringLiteral>(OrigFormatExpr), Str,
1744 HasVAListArg, TheCall, format_idx);
1745
1746 if (!analyze_format_string::ParsePrintfString(H, Str, Str + StrLen))
1747 H.DoneProcessing();
1748 }
1749 else {
1750 CheckScanfHandler H(*this, FExpr, OrigFormatExpr, firstDataArg,
1751 TheCall->getNumArgs() - firstDataArg,
1752 isa<ObjCStringLiteral>(OrigFormatExpr), Str,
1753 HasVAListArg, TheCall, format_idx);
1754
1755 if (!analyze_format_string::ParseScanfString(H, Str, Str + StrLen))
1756 H.DoneProcessing();
1757 }
Ted Kremenekce7024e2010-01-28 01:18:22 +00001758}
1759
Ted Kremenek06de2762007-08-17 16:46:58 +00001760//===--- CHECK: Return Address of Stack Variable --------------------------===//
1761
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001762static Expr *EvalVal(Expr *E, llvm::SmallVectorImpl<DeclRefExpr *> &refVars);
1763static Expr *EvalAddr(Expr* E, llvm::SmallVectorImpl<DeclRefExpr *> &refVars);
Ted Kremenek06de2762007-08-17 16:46:58 +00001764
1765/// CheckReturnStackAddr - Check if a return statement returns the address
1766/// of a stack variable.
1767void
1768Sema::CheckReturnStackAddr(Expr *RetValExp, QualType lhsType,
1769 SourceLocation ReturnLoc) {
Mike Stump1eb44332009-09-09 15:08:12 +00001770
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001771 Expr *stackE = 0;
1772 llvm::SmallVector<DeclRefExpr *, 8> refVars;
1773
1774 // Perform checking for returned stack addresses, local blocks,
1775 // label addresses or references to temporaries.
Steve Naroffdd972f22008-09-05 22:11:13 +00001776 if (lhsType->isPointerType() || lhsType->isBlockPointerType()) {
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001777 stackE = EvalAddr(RetValExp, refVars);
Mike Stumpac5fc7c2009-08-04 21:02:39 +00001778 } else if (lhsType->isReferenceType()) {
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001779 stackE = EvalVal(RetValExp, refVars);
1780 }
1781
1782 if (stackE == 0)
1783 return; // Nothing suspicious was found.
1784
1785 SourceLocation diagLoc;
1786 SourceRange diagRange;
1787 if (refVars.empty()) {
1788 diagLoc = stackE->getLocStart();
1789 diagRange = stackE->getSourceRange();
1790 } else {
1791 // We followed through a reference variable. 'stackE' contains the
1792 // problematic expression but we will warn at the return statement pointing
1793 // at the reference variable. We will later display the "trail" of
1794 // reference variables using notes.
1795 diagLoc = refVars[0]->getLocStart();
1796 diagRange = refVars[0]->getSourceRange();
1797 }
1798
1799 if (DeclRefExpr *DR = dyn_cast<DeclRefExpr>(stackE)) { //address of local var.
1800 Diag(diagLoc, lhsType->isReferenceType() ? diag::warn_ret_stack_ref
1801 : diag::warn_ret_stack_addr)
1802 << DR->getDecl()->getDeclName() << diagRange;
1803 } else if (isa<BlockExpr>(stackE)) { // local block.
1804 Diag(diagLoc, diag::err_ret_local_block) << diagRange;
1805 } else if (isa<AddrLabelExpr>(stackE)) { // address of label.
1806 Diag(diagLoc, diag::warn_ret_addr_label) << diagRange;
1807 } else { // local temporary.
1808 Diag(diagLoc, lhsType->isReferenceType() ? diag::warn_ret_local_temp_ref
1809 : diag::warn_ret_local_temp_addr)
1810 << diagRange;
1811 }
1812
1813 // Display the "trail" of reference variables that we followed until we
1814 // found the problematic expression using notes.
1815 for (unsigned i = 0, e = refVars.size(); i != e; ++i) {
1816 VarDecl *VD = cast<VarDecl>(refVars[i]->getDecl());
1817 // If this var binds to another reference var, show the range of the next
1818 // var, otherwise the var binds to the problematic expression, in which case
1819 // show the range of the expression.
1820 SourceRange range = (i < e-1) ? refVars[i+1]->getSourceRange()
1821 : stackE->getSourceRange();
1822 Diag(VD->getLocation(), diag::note_ref_var_local_bind)
1823 << VD->getDeclName() << range;
Ted Kremenek06de2762007-08-17 16:46:58 +00001824 }
1825}
1826
1827/// EvalAddr - EvalAddr and EvalVal are mutually recursive functions that
1828/// check if the expression in a return statement evaluates to an address
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001829/// to a location on the stack, a local block, an address of a label, or a
1830/// reference to local temporary. The recursion is used to traverse the
Ted Kremenek06de2762007-08-17 16:46:58 +00001831/// AST of the return expression, with recursion backtracking when we
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001832/// encounter a subexpression that (1) clearly does not lead to one of the
1833/// above problematic expressions (2) is something we cannot determine leads to
1834/// a problematic expression based on such local checking.
1835///
1836/// Both EvalAddr and EvalVal follow through reference variables to evaluate
1837/// the expression that they point to. Such variables are added to the
1838/// 'refVars' vector so that we know what the reference variable "trail" was.
Ted Kremenek06de2762007-08-17 16:46:58 +00001839///
Ted Kremeneke8c600f2007-08-28 17:02:55 +00001840/// EvalAddr processes expressions that are pointers that are used as
1841/// references (and not L-values). EvalVal handles all other values.
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001842/// At the base case of the recursion is a check for the above problematic
1843/// expressions.
Ted Kremenek06de2762007-08-17 16:46:58 +00001844///
1845/// This implementation handles:
1846///
1847/// * pointer-to-pointer casts
1848/// * implicit conversions from array references to pointers
1849/// * taking the address of fields
1850/// * arbitrary interplay between "&" and "*" operators
1851/// * pointer arithmetic from an address of a stack variable
1852/// * taking the address of an array element where the array is on the stack
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001853static Expr *EvalAddr(Expr *E, llvm::SmallVectorImpl<DeclRefExpr *> &refVars) {
1854 if (E->isTypeDependent())
1855 return NULL;
1856
Ted Kremenek06de2762007-08-17 16:46:58 +00001857 // We should only be called for evaluating pointer expressions.
David Chisnall0f436562009-08-17 16:35:33 +00001858 assert((E->getType()->isAnyPointerType() ||
Steve Naroffdd972f22008-09-05 22:11:13 +00001859 E->getType()->isBlockPointerType() ||
Ted Kremeneka526c5c2008-01-07 19:49:32 +00001860 E->getType()->isObjCQualifiedIdType()) &&
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001861 "EvalAddr only works on pointers");
Mike Stump1eb44332009-09-09 15:08:12 +00001862
Ted Kremenek06de2762007-08-17 16:46:58 +00001863 // Our "symbolic interpreter" is just a dispatch off the currently
1864 // viewed AST node. We then recursively traverse the AST by calling
1865 // EvalAddr and EvalVal appropriately.
1866 switch (E->getStmtClass()) {
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001867 case Stmt::ParenExprClass:
1868 // Ignore parentheses.
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001869 return EvalAddr(cast<ParenExpr>(E)->getSubExpr(), refVars);
1870
1871 case Stmt::DeclRefExprClass: {
1872 DeclRefExpr *DR = cast<DeclRefExpr>(E);
1873
1874 if (VarDecl *V = dyn_cast<VarDecl>(DR->getDecl()))
1875 // If this is a reference variable, follow through to the expression that
1876 // it points to.
1877 if (V->hasLocalStorage() &&
1878 V->getType()->isReferenceType() && V->hasInit()) {
1879 // Add the reference variable to the "trail".
1880 refVars.push_back(DR);
1881 return EvalAddr(V->getInit(), refVars);
1882 }
1883
1884 return NULL;
1885 }
Ted Kremenek06de2762007-08-17 16:46:58 +00001886
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001887 case Stmt::UnaryOperatorClass: {
1888 // The only unary operator that make sense to handle here
1889 // is AddrOf. All others don't make sense as pointers.
1890 UnaryOperator *U = cast<UnaryOperator>(E);
Mike Stump1eb44332009-09-09 15:08:12 +00001891
John McCall2de56d12010-08-25 11:45:40 +00001892 if (U->getOpcode() == UO_AddrOf)
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001893 return EvalVal(U->getSubExpr(), refVars);
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001894 else
Ted Kremenek06de2762007-08-17 16:46:58 +00001895 return NULL;
1896 }
Mike Stump1eb44332009-09-09 15:08:12 +00001897
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001898 case Stmt::BinaryOperatorClass: {
1899 // Handle pointer arithmetic. All other binary operators are not valid
1900 // in this context.
1901 BinaryOperator *B = cast<BinaryOperator>(E);
John McCall2de56d12010-08-25 11:45:40 +00001902 BinaryOperatorKind op = B->getOpcode();
Mike Stump1eb44332009-09-09 15:08:12 +00001903
John McCall2de56d12010-08-25 11:45:40 +00001904 if (op != BO_Add && op != BO_Sub)
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001905 return NULL;
Mike Stump1eb44332009-09-09 15:08:12 +00001906
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001907 Expr *Base = B->getLHS();
1908
1909 // Determine which argument is the real pointer base. It could be
1910 // the RHS argument instead of the LHS.
1911 if (!Base->getType()->isPointerType()) Base = B->getRHS();
Mike Stump1eb44332009-09-09 15:08:12 +00001912
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001913 assert (Base->getType()->isPointerType());
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001914 return EvalAddr(Base, refVars);
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001915 }
Steve Naroff61f40a22008-09-10 19:17:48 +00001916
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001917 // For conditional operators we need to see if either the LHS or RHS are
1918 // valid DeclRefExpr*s. If one of them is valid, we return it.
1919 case Stmt::ConditionalOperatorClass: {
1920 ConditionalOperator *C = cast<ConditionalOperator>(E);
Mike Stump1eb44332009-09-09 15:08:12 +00001921
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001922 // Handle the GNU extension for missing LHS.
Douglas Gregor9ee5ee82010-10-21 16:21:08 +00001923 if (Expr *lhsExpr = C->getLHS()) {
1924 // In C++, we can have a throw-expression, which has 'void' type.
1925 if (!lhsExpr->getType()->isVoidType())
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001926 if (Expr* LHS = EvalAddr(lhsExpr, refVars))
Douglas Gregor9ee5ee82010-10-21 16:21:08 +00001927 return LHS;
1928 }
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001929
Douglas Gregor9ee5ee82010-10-21 16:21:08 +00001930 // In C++, we can have a throw-expression, which has 'void' type.
1931 if (C->getRHS()->getType()->isVoidType())
1932 return NULL;
1933
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001934 return EvalAddr(C->getRHS(), refVars);
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001935 }
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001936
1937 case Stmt::BlockExprClass:
John McCall469a1eb2011-02-02 13:00:07 +00001938 if (cast<BlockExpr>(E)->getBlockDecl()->hasCaptures())
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001939 return E; // local block.
1940 return NULL;
1941
1942 case Stmt::AddrLabelExprClass:
1943 return E; // address of label.
Mike Stump1eb44332009-09-09 15:08:12 +00001944
Ted Kremenek54b52742008-08-07 00:49:01 +00001945 // For casts, we need to handle conversions from arrays to
1946 // pointer values, and pointer-to-pointer conversions.
Douglas Gregor49badde2008-10-27 19:41:14 +00001947 case Stmt::ImplicitCastExprClass:
Douglas Gregor6eec8e82008-10-28 15:36:24 +00001948 case Stmt::CStyleCastExprClass:
Douglas Gregor49badde2008-10-27 19:41:14 +00001949 case Stmt::CXXFunctionalCastExprClass: {
Argyrios Kyrtzidis0835a3c2008-08-18 23:01:59 +00001950 Expr* SubExpr = cast<CastExpr>(E)->getSubExpr();
Ted Kremenek54b52742008-08-07 00:49:01 +00001951 QualType T = SubExpr->getType();
Mike Stump1eb44332009-09-09 15:08:12 +00001952
Steve Naroffdd972f22008-09-05 22:11:13 +00001953 if (SubExpr->getType()->isPointerType() ||
1954 SubExpr->getType()->isBlockPointerType() ||
1955 SubExpr->getType()->isObjCQualifiedIdType())
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001956 return EvalAddr(SubExpr, refVars);
Ted Kremenek54b52742008-08-07 00:49:01 +00001957 else if (T->isArrayType())
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001958 return EvalVal(SubExpr, refVars);
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001959 else
Ted Kremenek54b52742008-08-07 00:49:01 +00001960 return 0;
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001961 }
Mike Stump1eb44332009-09-09 15:08:12 +00001962
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001963 // C++ casts. For dynamic casts, static casts, and const casts, we
1964 // are always converting from a pointer-to-pointer, so we just blow
Douglas Gregor49badde2008-10-27 19:41:14 +00001965 // through the cast. In the case the dynamic cast doesn't fail (and
1966 // return NULL), we take the conservative route and report cases
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001967 // where we return the address of a stack variable. For Reinterpre
Douglas Gregor49badde2008-10-27 19:41:14 +00001968 // FIXME: The comment about is wrong; we're not always converting
1969 // from pointer to pointer. I'm guessing that this code should also
Mike Stump1eb44332009-09-09 15:08:12 +00001970 // handle references to objects.
1971 case Stmt::CXXStaticCastExprClass:
1972 case Stmt::CXXDynamicCastExprClass:
Douglas Gregor49badde2008-10-27 19:41:14 +00001973 case Stmt::CXXConstCastExprClass:
1974 case Stmt::CXXReinterpretCastExprClass: {
1975 Expr *S = cast<CXXNamedCastExpr>(E)->getSubExpr();
Steve Naroffdd972f22008-09-05 22:11:13 +00001976 if (S->getType()->isPointerType() || S->getType()->isBlockPointerType())
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001977 return EvalAddr(S, refVars);
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001978 else
1979 return NULL;
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001980 }
Mike Stump1eb44332009-09-09 15:08:12 +00001981
Chris Lattnerfae3f1f2007-12-28 05:31:15 +00001982 // Everything else: we simply don't reason about them.
1983 default:
1984 return NULL;
1985 }
Ted Kremenek06de2762007-08-17 16:46:58 +00001986}
Mike Stump1eb44332009-09-09 15:08:12 +00001987
Ted Kremenek06de2762007-08-17 16:46:58 +00001988
1989/// EvalVal - This function is complements EvalAddr in the mutual recursion.
1990/// See the comments for EvalAddr for more details.
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00001991static Expr *EvalVal(Expr *E, llvm::SmallVectorImpl<DeclRefExpr *> &refVars) {
Ted Kremenek68957a92010-08-04 20:01:07 +00001992do {
Ted Kremeneke8c600f2007-08-28 17:02:55 +00001993 // We should only be called for evaluating non-pointer expressions, or
1994 // expressions with a pointer type that are not used as references but instead
1995 // are l-values (e.g., DeclRefExpr with a pointer type).
Mike Stump1eb44332009-09-09 15:08:12 +00001996
Ted Kremenek06de2762007-08-17 16:46:58 +00001997 // Our "symbolic interpreter" is just a dispatch off the currently
1998 // viewed AST node. We then recursively traverse the AST by calling
1999 // EvalAddr and EvalVal appropriately.
2000 switch (E->getStmtClass()) {
Ted Kremenek68957a92010-08-04 20:01:07 +00002001 case Stmt::ImplicitCastExprClass: {
2002 ImplicitCastExpr *IE = cast<ImplicitCastExpr>(E);
John McCall5baba9d2010-08-25 10:28:54 +00002003 if (IE->getValueKind() == VK_LValue) {
Ted Kremenek68957a92010-08-04 20:01:07 +00002004 E = IE->getSubExpr();
2005 continue;
2006 }
2007 return NULL;
2008 }
2009
Douglas Gregora2813ce2009-10-23 18:54:35 +00002010 case Stmt::DeclRefExprClass: {
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002011 // When we hit a DeclRefExpr we are looking at code that refers to a
2012 // variable's name. If it's not a reference variable we check if it has
2013 // local storage within the function, and if so, return the expression.
Ted Kremenek06de2762007-08-17 16:46:58 +00002014 DeclRefExpr *DR = cast<DeclRefExpr>(E);
Mike Stump1eb44332009-09-09 15:08:12 +00002015
Ted Kremenek06de2762007-08-17 16:46:58 +00002016 if (VarDecl *V = dyn_cast<VarDecl>(DR->getDecl()))
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002017 if (V->hasLocalStorage()) {
2018 if (!V->getType()->isReferenceType())
2019 return DR;
2020
2021 // Reference variable, follow through to the expression that
2022 // it points to.
2023 if (V->hasInit()) {
2024 // Add the reference variable to the "trail".
2025 refVars.push_back(DR);
2026 return EvalVal(V->getInit(), refVars);
2027 }
2028 }
Mike Stump1eb44332009-09-09 15:08:12 +00002029
Ted Kremenek06de2762007-08-17 16:46:58 +00002030 return NULL;
2031 }
Mike Stump1eb44332009-09-09 15:08:12 +00002032
Ted Kremenek68957a92010-08-04 20:01:07 +00002033 case Stmt::ParenExprClass: {
Ted Kremenek06de2762007-08-17 16:46:58 +00002034 // Ignore parentheses.
Ted Kremenek68957a92010-08-04 20:01:07 +00002035 E = cast<ParenExpr>(E)->getSubExpr();
2036 continue;
2037 }
Mike Stump1eb44332009-09-09 15:08:12 +00002038
Ted Kremenek06de2762007-08-17 16:46:58 +00002039 case Stmt::UnaryOperatorClass: {
2040 // The only unary operator that make sense to handle here
2041 // is Deref. All others don't resolve to a "name." This includes
2042 // handling all sorts of rvalues passed to a unary operator.
2043 UnaryOperator *U = cast<UnaryOperator>(E);
Mike Stump1eb44332009-09-09 15:08:12 +00002044
John McCall2de56d12010-08-25 11:45:40 +00002045 if (U->getOpcode() == UO_Deref)
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002046 return EvalAddr(U->getSubExpr(), refVars);
Ted Kremenek06de2762007-08-17 16:46:58 +00002047
2048 return NULL;
2049 }
Mike Stump1eb44332009-09-09 15:08:12 +00002050
Ted Kremenek06de2762007-08-17 16:46:58 +00002051 case Stmt::ArraySubscriptExprClass: {
2052 // Array subscripts are potential references to data on the stack. We
2053 // retrieve the DeclRefExpr* for the array variable if it indeed
2054 // has local storage.
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002055 return EvalAddr(cast<ArraySubscriptExpr>(E)->getBase(), refVars);
Ted Kremenek06de2762007-08-17 16:46:58 +00002056 }
Mike Stump1eb44332009-09-09 15:08:12 +00002057
Ted Kremenek06de2762007-08-17 16:46:58 +00002058 case Stmt::ConditionalOperatorClass: {
2059 // For conditional operators we need to see if either the LHS or RHS are
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002060 // non-NULL Expr's. If one is non-NULL, we return it.
Ted Kremenek06de2762007-08-17 16:46:58 +00002061 ConditionalOperator *C = cast<ConditionalOperator>(E);
2062
Anders Carlsson39073232007-11-30 19:04:31 +00002063 // Handle the GNU extension for missing LHS.
2064 if (Expr *lhsExpr = C->getLHS())
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002065 if (Expr *LHS = EvalVal(lhsExpr, refVars))
Anders Carlsson39073232007-11-30 19:04:31 +00002066 return LHS;
2067
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002068 return EvalVal(C->getRHS(), refVars);
Ted Kremenek06de2762007-08-17 16:46:58 +00002069 }
Mike Stump1eb44332009-09-09 15:08:12 +00002070
Ted Kremenek06de2762007-08-17 16:46:58 +00002071 // Accesses to members are potential references to data on the stack.
Douglas Gregor83f6faf2009-08-31 23:41:50 +00002072 case Stmt::MemberExprClass: {
Ted Kremenek06de2762007-08-17 16:46:58 +00002073 MemberExpr *M = cast<MemberExpr>(E);
Mike Stump1eb44332009-09-09 15:08:12 +00002074
Ted Kremenek06de2762007-08-17 16:46:58 +00002075 // Check for indirect access. We only want direct field accesses.
Ted Kremeneka423e812010-09-02 01:12:13 +00002076 if (M->isArrow())
Ted Kremenek06de2762007-08-17 16:46:58 +00002077 return NULL;
Ted Kremeneka423e812010-09-02 01:12:13 +00002078
2079 // Check whether the member type is itself a reference, in which case
2080 // we're not going to refer to the member, but to what the member refers to.
2081 if (M->getMemberDecl()->getType()->isReferenceType())
2082 return NULL;
2083
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002084 return EvalVal(M->getBase(), refVars);
Ted Kremenek06de2762007-08-17 16:46:58 +00002085 }
Mike Stump1eb44332009-09-09 15:08:12 +00002086
Ted Kremenek06de2762007-08-17 16:46:58 +00002087 default:
Argyrios Kyrtzidis26e10be2010-11-30 22:57:32 +00002088 // Check that we don't return or take the address of a reference to a
2089 // temporary. This is only useful in C++.
2090 if (!E->isTypeDependent() && E->isRValue())
2091 return E;
2092
2093 // Everything else: we simply don't reason about them.
Ted Kremenek06de2762007-08-17 16:46:58 +00002094 return NULL;
2095 }
Ted Kremenek68957a92010-08-04 20:01:07 +00002096} while (true);
Ted Kremenek06de2762007-08-17 16:46:58 +00002097}
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002098
2099//===--- CHECK: Floating-Point comparisons (-Wfloat-equal) ---------------===//
2100
2101/// Check for comparisons of floating point operands using != and ==.
2102/// Issue a warning if these are no self-comparisons, as they are not likely
2103/// to do what the programmer intended.
2104void Sema::CheckFloatComparison(SourceLocation loc, Expr* lex, Expr *rex) {
2105 bool EmitWarning = true;
Mike Stump1eb44332009-09-09 15:08:12 +00002106
John McCallf6a16482010-12-04 03:47:34 +00002107 Expr* LeftExprSansParen = lex->IgnoreParenImpCasts();
2108 Expr* RightExprSansParen = rex->IgnoreParenImpCasts();
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002109
2110 // Special case: check for x == x (which is OK).
2111 // Do not emit warnings for such cases.
2112 if (DeclRefExpr* DRL = dyn_cast<DeclRefExpr>(LeftExprSansParen))
2113 if (DeclRefExpr* DRR = dyn_cast<DeclRefExpr>(RightExprSansParen))
2114 if (DRL->getDecl() == DRR->getDecl())
2115 EmitWarning = false;
Mike Stump1eb44332009-09-09 15:08:12 +00002116
2117
Ted Kremenek1b500bb2007-11-29 00:59:04 +00002118 // Special case: check for comparisons against literals that can be exactly
2119 // represented by APFloat. In such cases, do not emit a warning. This
2120 // is a heuristic: often comparison against such literals are used to
2121 // detect if a value in a variable has not changed. This clearly can
2122 // lead to false negatives.
2123 if (EmitWarning) {
2124 if (FloatingLiteral* FLL = dyn_cast<FloatingLiteral>(LeftExprSansParen)) {
2125 if (FLL->isExact())
2126 EmitWarning = false;
Mike Stumpac5fc7c2009-08-04 21:02:39 +00002127 } else
Ted Kremenek1b500bb2007-11-29 00:59:04 +00002128 if (FloatingLiteral* FLR = dyn_cast<FloatingLiteral>(RightExprSansParen)){
2129 if (FLR->isExact())
2130 EmitWarning = false;
2131 }
2132 }
Mike Stump1eb44332009-09-09 15:08:12 +00002133
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002134 // Check for comparisons with builtin types.
Sebastian Redl0eb23302009-01-19 00:08:26 +00002135 if (EmitWarning)
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002136 if (CallExpr* CL = dyn_cast<CallExpr>(LeftExprSansParen))
Douglas Gregor3c385e52009-02-14 18:57:46 +00002137 if (CL->isBuiltinCall(Context))
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002138 EmitWarning = false;
Mike Stump1eb44332009-09-09 15:08:12 +00002139
Sebastian Redl0eb23302009-01-19 00:08:26 +00002140 if (EmitWarning)
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002141 if (CallExpr* CR = dyn_cast<CallExpr>(RightExprSansParen))
Douglas Gregor3c385e52009-02-14 18:57:46 +00002142 if (CR->isBuiltinCall(Context))
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002143 EmitWarning = false;
Mike Stump1eb44332009-09-09 15:08:12 +00002144
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002145 // Emit the diagnostic.
2146 if (EmitWarning)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00002147 Diag(loc, diag::warn_floatingpoint_eq)
2148 << lex->getSourceRange() << rex->getSourceRange();
Ted Kremenek588e5eb2007-11-25 00:58:00 +00002149}
John McCallba26e582010-01-04 23:21:16 +00002150
John McCallf2370c92010-01-06 05:24:50 +00002151//===--- CHECK: Integer mixed-sign comparisons (-Wsign-compare) --------===//
2152//===--- CHECK: Lossy implicit conversions (-Wconversion) --------------===//
John McCallba26e582010-01-04 23:21:16 +00002153
John McCallf2370c92010-01-06 05:24:50 +00002154namespace {
John McCallba26e582010-01-04 23:21:16 +00002155
John McCallf2370c92010-01-06 05:24:50 +00002156/// Structure recording the 'active' range of an integer-valued
2157/// expression.
2158struct IntRange {
2159 /// The number of bits active in the int.
2160 unsigned Width;
John McCallba26e582010-01-04 23:21:16 +00002161
John McCallf2370c92010-01-06 05:24:50 +00002162 /// True if the int is known not to have negative values.
2163 bool NonNegative;
John McCallba26e582010-01-04 23:21:16 +00002164
John McCallf2370c92010-01-06 05:24:50 +00002165 IntRange(unsigned Width, bool NonNegative)
2166 : Width(Width), NonNegative(NonNegative)
2167 {}
John McCallba26e582010-01-04 23:21:16 +00002168
John McCall1844a6e2010-11-10 23:38:19 +00002169 /// Returns the range of the bool type.
John McCallf2370c92010-01-06 05:24:50 +00002170 static IntRange forBoolType() {
2171 return IntRange(1, true);
John McCall51313c32010-01-04 23:31:57 +00002172 }
2173
John McCall1844a6e2010-11-10 23:38:19 +00002174 /// Returns the range of an opaque value of the given integral type.
2175 static IntRange forValueOfType(ASTContext &C, QualType T) {
2176 return forValueOfCanonicalType(C,
2177 T->getCanonicalTypeInternal().getTypePtr());
John McCall51313c32010-01-04 23:31:57 +00002178 }
2179
John McCall1844a6e2010-11-10 23:38:19 +00002180 /// Returns the range of an opaque value of a canonical integral type.
2181 static IntRange forValueOfCanonicalType(ASTContext &C, const Type *T) {
John McCallf2370c92010-01-06 05:24:50 +00002182 assert(T->isCanonicalUnqualified());
2183
2184 if (const VectorType *VT = dyn_cast<VectorType>(T))
2185 T = VT->getElementType().getTypePtr();
2186 if (const ComplexType *CT = dyn_cast<ComplexType>(T))
2187 T = CT->getElementType().getTypePtr();
John McCall323ed742010-05-06 08:58:33 +00002188
John McCall091f23f2010-11-09 22:22:12 +00002189 // For enum types, use the known bit width of the enumerators.
John McCall323ed742010-05-06 08:58:33 +00002190 if (const EnumType *ET = dyn_cast<EnumType>(T)) {
2191 EnumDecl *Enum = ET->getDecl();
John McCall091f23f2010-11-09 22:22:12 +00002192 if (!Enum->isDefinition())
2193 return IntRange(C.getIntWidth(QualType(T, 0)), false);
2194
John McCall323ed742010-05-06 08:58:33 +00002195 unsigned NumPositive = Enum->getNumPositiveBits();
2196 unsigned NumNegative = Enum->getNumNegativeBits();
2197
2198 return IntRange(std::max(NumPositive, NumNegative), NumNegative == 0);
2199 }
John McCallf2370c92010-01-06 05:24:50 +00002200
2201 const BuiltinType *BT = cast<BuiltinType>(T);
2202 assert(BT->isInteger());
2203
2204 return IntRange(C.getIntWidth(QualType(T, 0)), BT->isUnsignedInteger());
2205 }
2206
John McCall1844a6e2010-11-10 23:38:19 +00002207 /// Returns the "target" range of a canonical integral type, i.e.
2208 /// the range of values expressible in the type.
2209 ///
2210 /// This matches forValueOfCanonicalType except that enums have the
2211 /// full range of their type, not the range of their enumerators.
2212 static IntRange forTargetOfCanonicalType(ASTContext &C, const Type *T) {
2213 assert(T->isCanonicalUnqualified());
2214
2215 if (const VectorType *VT = dyn_cast<VectorType>(T))
2216 T = VT->getElementType().getTypePtr();
2217 if (const ComplexType *CT = dyn_cast<ComplexType>(T))
2218 T = CT->getElementType().getTypePtr();
2219 if (const EnumType *ET = dyn_cast<EnumType>(T))
2220 T = ET->getDecl()->getIntegerType().getTypePtr();
2221
2222 const BuiltinType *BT = cast<BuiltinType>(T);
2223 assert(BT->isInteger());
2224
2225 return IntRange(C.getIntWidth(QualType(T, 0)), BT->isUnsignedInteger());
2226 }
2227
2228 /// Returns the supremum of two ranges: i.e. their conservative merge.
John McCallc0cd21d2010-02-23 19:22:29 +00002229 static IntRange join(IntRange L, IntRange R) {
John McCallf2370c92010-01-06 05:24:50 +00002230 return IntRange(std::max(L.Width, R.Width),
John McCall60fad452010-01-06 22:07:33 +00002231 L.NonNegative && R.NonNegative);
2232 }
2233
John McCall1844a6e2010-11-10 23:38:19 +00002234 /// Returns the infinum of two ranges: i.e. their aggressive merge.
John McCallc0cd21d2010-02-23 19:22:29 +00002235 static IntRange meet(IntRange L, IntRange R) {
John McCall60fad452010-01-06 22:07:33 +00002236 return IntRange(std::min(L.Width, R.Width),
2237 L.NonNegative || R.NonNegative);
John McCallf2370c92010-01-06 05:24:50 +00002238 }
2239};
2240
2241IntRange GetValueRange(ASTContext &C, llvm::APSInt &value, unsigned MaxWidth) {
2242 if (value.isSigned() && value.isNegative())
2243 return IntRange(value.getMinSignedBits(), false);
2244
2245 if (value.getBitWidth() > MaxWidth)
Jay Foad9f71a8f2010-12-07 08:25:34 +00002246 value = value.trunc(MaxWidth);
John McCallf2370c92010-01-06 05:24:50 +00002247
2248 // isNonNegative() just checks the sign bit without considering
2249 // signedness.
2250 return IntRange(value.getActiveBits(), true);
2251}
2252
John McCall0acc3112010-01-06 22:57:21 +00002253IntRange GetValueRange(ASTContext &C, APValue &result, QualType Ty,
John McCallf2370c92010-01-06 05:24:50 +00002254 unsigned MaxWidth) {
2255 if (result.isInt())
2256 return GetValueRange(C, result.getInt(), MaxWidth);
2257
2258 if (result.isVector()) {
John McCall0acc3112010-01-06 22:57:21 +00002259 IntRange R = GetValueRange(C, result.getVectorElt(0), Ty, MaxWidth);
2260 for (unsigned i = 1, e = result.getVectorLength(); i != e; ++i) {
2261 IntRange El = GetValueRange(C, result.getVectorElt(i), Ty, MaxWidth);
2262 R = IntRange::join(R, El);
2263 }
John McCallf2370c92010-01-06 05:24:50 +00002264 return R;
2265 }
2266
2267 if (result.isComplexInt()) {
2268 IntRange R = GetValueRange(C, result.getComplexIntReal(), MaxWidth);
2269 IntRange I = GetValueRange(C, result.getComplexIntImag(), MaxWidth);
2270 return IntRange::join(R, I);
John McCall51313c32010-01-04 23:31:57 +00002271 }
2272
2273 // This can happen with lossless casts to intptr_t of "based" lvalues.
2274 // Assume it might use arbitrary bits.
John McCall0acc3112010-01-06 22:57:21 +00002275 // FIXME: The only reason we need to pass the type in here is to get
2276 // the sign right on this one case. It would be nice if APValue
2277 // preserved this.
John McCallf2370c92010-01-06 05:24:50 +00002278 assert(result.isLValue());
John McCall0acc3112010-01-06 22:57:21 +00002279 return IntRange(MaxWidth, Ty->isUnsignedIntegerType());
John McCall51313c32010-01-04 23:31:57 +00002280}
John McCallf2370c92010-01-06 05:24:50 +00002281
2282/// Pseudo-evaluate the given integer expression, estimating the
2283/// range of values it might take.
2284///
2285/// \param MaxWidth - the width to which the value will be truncated
2286IntRange GetExprRange(ASTContext &C, Expr *E, unsigned MaxWidth) {
2287 E = E->IgnoreParens();
2288
2289 // Try a full evaluation first.
2290 Expr::EvalResult result;
2291 if (E->Evaluate(result, C))
John McCall0acc3112010-01-06 22:57:21 +00002292 return GetValueRange(C, result.Val, E->getType(), MaxWidth);
John McCallf2370c92010-01-06 05:24:50 +00002293
2294 // I think we only want to look through implicit casts here; if the
2295 // user has an explicit widening cast, we should treat the value as
2296 // being of the new, wider type.
2297 if (ImplicitCastExpr *CE = dyn_cast<ImplicitCastExpr>(E)) {
John McCall2de56d12010-08-25 11:45:40 +00002298 if (CE->getCastKind() == CK_NoOp)
John McCallf2370c92010-01-06 05:24:50 +00002299 return GetExprRange(C, CE->getSubExpr(), MaxWidth);
2300
John McCall1844a6e2010-11-10 23:38:19 +00002301 IntRange OutputTypeRange = IntRange::forValueOfType(C, CE->getType());
John McCallf2370c92010-01-06 05:24:50 +00002302
John McCall2de56d12010-08-25 11:45:40 +00002303 bool isIntegerCast = (CE->getCastKind() == CK_IntegralCast);
John McCall60fad452010-01-06 22:07:33 +00002304
John McCallf2370c92010-01-06 05:24:50 +00002305 // Assume that non-integer casts can span the full range of the type.
John McCall60fad452010-01-06 22:07:33 +00002306 if (!isIntegerCast)
John McCallf2370c92010-01-06 05:24:50 +00002307 return OutputTypeRange;
2308
2309 IntRange SubRange
2310 = GetExprRange(C, CE->getSubExpr(),
2311 std::min(MaxWidth, OutputTypeRange.Width));
2312
2313 // Bail out if the subexpr's range is as wide as the cast type.
2314 if (SubRange.Width >= OutputTypeRange.Width)
2315 return OutputTypeRange;
2316
2317 // Otherwise, we take the smaller width, and we're non-negative if
2318 // either the output type or the subexpr is.
2319 return IntRange(SubRange.Width,
2320 SubRange.NonNegative || OutputTypeRange.NonNegative);
2321 }
2322
2323 if (ConditionalOperator *CO = dyn_cast<ConditionalOperator>(E)) {
2324 // If we can fold the condition, just take that operand.
2325 bool CondResult;
2326 if (CO->getCond()->EvaluateAsBooleanCondition(CondResult, C))
2327 return GetExprRange(C, CondResult ? CO->getTrueExpr()
2328 : CO->getFalseExpr(),
2329 MaxWidth);
2330
2331 // Otherwise, conservatively merge.
2332 IntRange L = GetExprRange(C, CO->getTrueExpr(), MaxWidth);
2333 IntRange R = GetExprRange(C, CO->getFalseExpr(), MaxWidth);
2334 return IntRange::join(L, R);
2335 }
2336
2337 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
2338 switch (BO->getOpcode()) {
2339
2340 // Boolean-valued operations are single-bit and positive.
John McCall2de56d12010-08-25 11:45:40 +00002341 case BO_LAnd:
2342 case BO_LOr:
2343 case BO_LT:
2344 case BO_GT:
2345 case BO_LE:
2346 case BO_GE:
2347 case BO_EQ:
2348 case BO_NE:
John McCallf2370c92010-01-06 05:24:50 +00002349 return IntRange::forBoolType();
2350
John McCallc0cd21d2010-02-23 19:22:29 +00002351 // The type of these compound assignments is the type of the LHS,
2352 // so the RHS is not necessarily an integer.
John McCall2de56d12010-08-25 11:45:40 +00002353 case BO_MulAssign:
2354 case BO_DivAssign:
2355 case BO_RemAssign:
2356 case BO_AddAssign:
2357 case BO_SubAssign:
John McCall1844a6e2010-11-10 23:38:19 +00002358 return IntRange::forValueOfType(C, E->getType());
John McCallc0cd21d2010-02-23 19:22:29 +00002359
John McCallf2370c92010-01-06 05:24:50 +00002360 // Operations with opaque sources are black-listed.
John McCall2de56d12010-08-25 11:45:40 +00002361 case BO_PtrMemD:
2362 case BO_PtrMemI:
John McCall1844a6e2010-11-10 23:38:19 +00002363 return IntRange::forValueOfType(C, E->getType());
John McCallf2370c92010-01-06 05:24:50 +00002364
John McCall60fad452010-01-06 22:07:33 +00002365 // Bitwise-and uses the *infinum* of the two source ranges.
John McCall2de56d12010-08-25 11:45:40 +00002366 case BO_And:
2367 case BO_AndAssign:
John McCall60fad452010-01-06 22:07:33 +00002368 return IntRange::meet(GetExprRange(C, BO->getLHS(), MaxWidth),
2369 GetExprRange(C, BO->getRHS(), MaxWidth));
2370
John McCallf2370c92010-01-06 05:24:50 +00002371 // Left shift gets black-listed based on a judgement call.
John McCall2de56d12010-08-25 11:45:40 +00002372 case BO_Shl:
John McCall3aae6092010-04-07 01:14:35 +00002373 // ...except that we want to treat '1 << (blah)' as logically
2374 // positive. It's an important idiom.
2375 if (IntegerLiteral *I
2376 = dyn_cast<IntegerLiteral>(BO->getLHS()->IgnoreParenCasts())) {
2377 if (I->getValue() == 1) {
John McCall1844a6e2010-11-10 23:38:19 +00002378 IntRange R = IntRange::forValueOfType(C, E->getType());
John McCall3aae6092010-04-07 01:14:35 +00002379 return IntRange(R.Width, /*NonNegative*/ true);
2380 }
2381 }
2382 // fallthrough
2383
John McCall2de56d12010-08-25 11:45:40 +00002384 case BO_ShlAssign:
John McCall1844a6e2010-11-10 23:38:19 +00002385 return IntRange::forValueOfType(C, E->getType());
John McCallf2370c92010-01-06 05:24:50 +00002386
John McCall60fad452010-01-06 22:07:33 +00002387 // Right shift by a constant can narrow its left argument.
John McCall2de56d12010-08-25 11:45:40 +00002388 case BO_Shr:
2389 case BO_ShrAssign: {
John McCall60fad452010-01-06 22:07:33 +00002390 IntRange L = GetExprRange(C, BO->getLHS(), MaxWidth);
2391
2392 // If the shift amount is a positive constant, drop the width by
2393 // that much.
2394 llvm::APSInt shift;
2395 if (BO->getRHS()->isIntegerConstantExpr(shift, C) &&
2396 shift.isNonNegative()) {
2397 unsigned zext = shift.getZExtValue();
2398 if (zext >= L.Width)
2399 L.Width = (L.NonNegative ? 0 : 1);
2400 else
2401 L.Width -= zext;
2402 }
2403
2404 return L;
2405 }
2406
2407 // Comma acts as its right operand.
John McCall2de56d12010-08-25 11:45:40 +00002408 case BO_Comma:
John McCallf2370c92010-01-06 05:24:50 +00002409 return GetExprRange(C, BO->getRHS(), MaxWidth);
2410
John McCall60fad452010-01-06 22:07:33 +00002411 // Black-list pointer subtractions.
John McCall2de56d12010-08-25 11:45:40 +00002412 case BO_Sub:
John McCallf2370c92010-01-06 05:24:50 +00002413 if (BO->getLHS()->getType()->isPointerType())
John McCall1844a6e2010-11-10 23:38:19 +00002414 return IntRange::forValueOfType(C, E->getType());
John McCallf2370c92010-01-06 05:24:50 +00002415 // fallthrough
Ted Kremenek4e4b30e2010-02-16 01:46:59 +00002416
John McCallf2370c92010-01-06 05:24:50 +00002417 default:
2418 break;
2419 }
2420
2421 // Treat every other operator as if it were closed on the
2422 // narrowest type that encompasses both operands.
2423 IntRange L = GetExprRange(C, BO->getLHS(), MaxWidth);
2424 IntRange R = GetExprRange(C, BO->getRHS(), MaxWidth);
2425 return IntRange::join(L, R);
2426 }
2427
2428 if (UnaryOperator *UO = dyn_cast<UnaryOperator>(E)) {
2429 switch (UO->getOpcode()) {
2430 // Boolean-valued operations are white-listed.
John McCall2de56d12010-08-25 11:45:40 +00002431 case UO_LNot:
John McCallf2370c92010-01-06 05:24:50 +00002432 return IntRange::forBoolType();
2433
2434 // Operations with opaque sources are black-listed.
John McCall2de56d12010-08-25 11:45:40 +00002435 case UO_Deref:
2436 case UO_AddrOf: // should be impossible
John McCall1844a6e2010-11-10 23:38:19 +00002437 return IntRange::forValueOfType(C, E->getType());
John McCallf2370c92010-01-06 05:24:50 +00002438
2439 default:
2440 return GetExprRange(C, UO->getSubExpr(), MaxWidth);
2441 }
2442 }
Douglas Gregor8ecdb652010-04-28 22:16:22 +00002443
2444 if (dyn_cast<OffsetOfExpr>(E)) {
John McCall1844a6e2010-11-10 23:38:19 +00002445 IntRange::forValueOfType(C, E->getType());
Douglas Gregor8ecdb652010-04-28 22:16:22 +00002446 }
John McCallf2370c92010-01-06 05:24:50 +00002447
2448 FieldDecl *BitField = E->getBitField();
2449 if (BitField) {
2450 llvm::APSInt BitWidthAP = BitField->getBitWidth()->EvaluateAsInt(C);
2451 unsigned BitWidth = BitWidthAP.getZExtValue();
2452
2453 return IntRange(BitWidth, BitField->getType()->isUnsignedIntegerType());
2454 }
2455
John McCall1844a6e2010-11-10 23:38:19 +00002456 return IntRange::forValueOfType(C, E->getType());
John McCallf2370c92010-01-06 05:24:50 +00002457}
John McCall51313c32010-01-04 23:31:57 +00002458
John McCall323ed742010-05-06 08:58:33 +00002459IntRange GetExprRange(ASTContext &C, Expr *E) {
2460 return GetExprRange(C, E, C.getIntWidth(E->getType()));
2461}
2462
John McCall51313c32010-01-04 23:31:57 +00002463/// Checks whether the given value, which currently has the given
2464/// source semantics, has the same value when coerced through the
2465/// target semantics.
John McCallf2370c92010-01-06 05:24:50 +00002466bool IsSameFloatAfterCast(const llvm::APFloat &value,
2467 const llvm::fltSemantics &Src,
2468 const llvm::fltSemantics &Tgt) {
John McCall51313c32010-01-04 23:31:57 +00002469 llvm::APFloat truncated = value;
2470
2471 bool ignored;
2472 truncated.convert(Src, llvm::APFloat::rmNearestTiesToEven, &ignored);
2473 truncated.convert(Tgt, llvm::APFloat::rmNearestTiesToEven, &ignored);
2474
2475 return truncated.bitwiseIsEqual(value);
2476}
2477
2478/// Checks whether the given value, which currently has the given
2479/// source semantics, has the same value when coerced through the
2480/// target semantics.
2481///
2482/// The value might be a vector of floats (or a complex number).
John McCallf2370c92010-01-06 05:24:50 +00002483bool IsSameFloatAfterCast(const APValue &value,
2484 const llvm::fltSemantics &Src,
2485 const llvm::fltSemantics &Tgt) {
John McCall51313c32010-01-04 23:31:57 +00002486 if (value.isFloat())
2487 return IsSameFloatAfterCast(value.getFloat(), Src, Tgt);
2488
2489 if (value.isVector()) {
2490 for (unsigned i = 0, e = value.getVectorLength(); i != e; ++i)
2491 if (!IsSameFloatAfterCast(value.getVectorElt(i), Src, Tgt))
2492 return false;
2493 return true;
2494 }
2495
2496 assert(value.isComplexFloat());
2497 return (IsSameFloatAfterCast(value.getComplexFloatReal(), Src, Tgt) &&
2498 IsSameFloatAfterCast(value.getComplexFloatImag(), Src, Tgt));
2499}
2500
John McCallb4eb64d2010-10-08 02:01:28 +00002501void AnalyzeImplicitConversions(Sema &S, Expr *E, SourceLocation CC);
John McCall323ed742010-05-06 08:58:33 +00002502
Ted Kremeneke3b159c2010-09-23 21:43:44 +00002503static bool IsZero(Sema &S, Expr *E) {
2504 // Suppress cases where we are comparing against an enum constant.
2505 if (const DeclRefExpr *DR =
2506 dyn_cast<DeclRefExpr>(E->IgnoreParenImpCasts()))
2507 if (isa<EnumConstantDecl>(DR->getDecl()))
2508 return false;
2509
2510 // Suppress cases where the '0' value is expanded from a macro.
2511 if (E->getLocStart().isMacroID())
2512 return false;
2513
John McCall323ed742010-05-06 08:58:33 +00002514 llvm::APSInt Value;
2515 return E->isIntegerConstantExpr(Value, S.Context) && Value == 0;
2516}
2517
John McCall372e1032010-10-06 00:25:24 +00002518static bool HasEnumType(Expr *E) {
2519 // Strip off implicit integral promotions.
2520 while (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(E)) {
Argyrios Kyrtzidis63b57ae2010-10-07 21:52:18 +00002521 if (ICE->getCastKind() != CK_IntegralCast &&
2522 ICE->getCastKind() != CK_NoOp)
John McCall372e1032010-10-06 00:25:24 +00002523 break;
Argyrios Kyrtzidis63b57ae2010-10-07 21:52:18 +00002524 E = ICE->getSubExpr();
John McCall372e1032010-10-06 00:25:24 +00002525 }
2526
2527 return E->getType()->isEnumeralType();
2528}
2529
John McCall323ed742010-05-06 08:58:33 +00002530void CheckTrivialUnsignedComparison(Sema &S, BinaryOperator *E) {
John McCall2de56d12010-08-25 11:45:40 +00002531 BinaryOperatorKind op = E->getOpcode();
Douglas Gregor14af91a2010-12-21 07:22:56 +00002532 if (E->isValueDependent())
2533 return;
2534
John McCall2de56d12010-08-25 11:45:40 +00002535 if (op == BO_LT && IsZero(S, E->getRHS())) {
John McCall323ed742010-05-06 08:58:33 +00002536 S.Diag(E->getOperatorLoc(), diag::warn_lunsigned_always_true_comparison)
John McCall372e1032010-10-06 00:25:24 +00002537 << "< 0" << "false" << HasEnumType(E->getLHS())
John McCall323ed742010-05-06 08:58:33 +00002538 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
John McCall2de56d12010-08-25 11:45:40 +00002539 } else if (op == BO_GE && IsZero(S, E->getRHS())) {
John McCall323ed742010-05-06 08:58:33 +00002540 S.Diag(E->getOperatorLoc(), diag::warn_lunsigned_always_true_comparison)
John McCall372e1032010-10-06 00:25:24 +00002541 << ">= 0" << "true" << HasEnumType(E->getLHS())
John McCall323ed742010-05-06 08:58:33 +00002542 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
John McCall2de56d12010-08-25 11:45:40 +00002543 } else if (op == BO_GT && IsZero(S, E->getLHS())) {
John McCall323ed742010-05-06 08:58:33 +00002544 S.Diag(E->getOperatorLoc(), diag::warn_runsigned_always_true_comparison)
John McCall372e1032010-10-06 00:25:24 +00002545 << "0 >" << "false" << HasEnumType(E->getRHS())
John McCall323ed742010-05-06 08:58:33 +00002546 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
John McCall2de56d12010-08-25 11:45:40 +00002547 } else if (op == BO_LE && IsZero(S, E->getLHS())) {
John McCall323ed742010-05-06 08:58:33 +00002548 S.Diag(E->getOperatorLoc(), diag::warn_runsigned_always_true_comparison)
John McCall372e1032010-10-06 00:25:24 +00002549 << "0 <=" << "true" << HasEnumType(E->getRHS())
John McCall323ed742010-05-06 08:58:33 +00002550 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
2551 }
2552}
2553
2554/// Analyze the operands of the given comparison. Implements the
2555/// fallback case from AnalyzeComparison.
2556void AnalyzeImpConvsInComparison(Sema &S, BinaryOperator *E) {
John McCallb4eb64d2010-10-08 02:01:28 +00002557 AnalyzeImplicitConversions(S, E->getLHS(), E->getOperatorLoc());
2558 AnalyzeImplicitConversions(S, E->getRHS(), E->getOperatorLoc());
John McCall323ed742010-05-06 08:58:33 +00002559}
John McCall51313c32010-01-04 23:31:57 +00002560
John McCallba26e582010-01-04 23:21:16 +00002561/// \brief Implements -Wsign-compare.
2562///
2563/// \param lex the left-hand expression
2564/// \param rex the right-hand expression
2565/// \param OpLoc the location of the joining operator
John McCalld1b47bf2010-03-11 19:43:18 +00002566/// \param BinOpc binary opcode or 0
John McCall323ed742010-05-06 08:58:33 +00002567void AnalyzeComparison(Sema &S, BinaryOperator *E) {
2568 // The type the comparison is being performed in.
2569 QualType T = E->getLHS()->getType();
2570 assert(S.Context.hasSameUnqualifiedType(T, E->getRHS()->getType())
2571 && "comparison with mismatched types");
John McCallba26e582010-01-04 23:21:16 +00002572
John McCall323ed742010-05-06 08:58:33 +00002573 // We don't do anything special if this isn't an unsigned integral
2574 // comparison: we're only interested in integral comparisons, and
2575 // signed comparisons only happen in cases we don't care to warn about.
Douglas Gregorf6094622010-07-23 15:58:24 +00002576 if (!T->hasUnsignedIntegerRepresentation())
John McCall323ed742010-05-06 08:58:33 +00002577 return AnalyzeImpConvsInComparison(S, E);
John McCallf2370c92010-01-06 05:24:50 +00002578
John McCall323ed742010-05-06 08:58:33 +00002579 Expr *lex = E->getLHS()->IgnoreParenImpCasts();
2580 Expr *rex = E->getRHS()->IgnoreParenImpCasts();
John McCallba26e582010-01-04 23:21:16 +00002581
John McCall323ed742010-05-06 08:58:33 +00002582 // Check to see if one of the (unmodified) operands is of different
2583 // signedness.
2584 Expr *signedOperand, *unsignedOperand;
Douglas Gregorf6094622010-07-23 15:58:24 +00002585 if (lex->getType()->hasSignedIntegerRepresentation()) {
2586 assert(!rex->getType()->hasSignedIntegerRepresentation() &&
John McCall323ed742010-05-06 08:58:33 +00002587 "unsigned comparison between two signed integer expressions?");
2588 signedOperand = lex;
2589 unsignedOperand = rex;
Douglas Gregorf6094622010-07-23 15:58:24 +00002590 } else if (rex->getType()->hasSignedIntegerRepresentation()) {
John McCall323ed742010-05-06 08:58:33 +00002591 signedOperand = rex;
2592 unsignedOperand = lex;
John McCallba26e582010-01-04 23:21:16 +00002593 } else {
John McCall323ed742010-05-06 08:58:33 +00002594 CheckTrivialUnsignedComparison(S, E);
2595 return AnalyzeImpConvsInComparison(S, E);
John McCallba26e582010-01-04 23:21:16 +00002596 }
2597
John McCall323ed742010-05-06 08:58:33 +00002598 // Otherwise, calculate the effective range of the signed operand.
2599 IntRange signedRange = GetExprRange(S.Context, signedOperand);
John McCallf2370c92010-01-06 05:24:50 +00002600
John McCall323ed742010-05-06 08:58:33 +00002601 // Go ahead and analyze implicit conversions in the operands. Note
2602 // that we skip the implicit conversions on both sides.
John McCallb4eb64d2010-10-08 02:01:28 +00002603 AnalyzeImplicitConversions(S, lex, E->getOperatorLoc());
2604 AnalyzeImplicitConversions(S, rex, E->getOperatorLoc());
John McCallba26e582010-01-04 23:21:16 +00002605
John McCall323ed742010-05-06 08:58:33 +00002606 // If the signed range is non-negative, -Wsign-compare won't fire,
2607 // but we should still check for comparisons which are always true
2608 // or false.
2609 if (signedRange.NonNegative)
2610 return CheckTrivialUnsignedComparison(S, E);
John McCallba26e582010-01-04 23:21:16 +00002611
2612 // For (in)equality comparisons, if the unsigned operand is a
2613 // constant which cannot collide with a overflowed signed operand,
2614 // then reinterpreting the signed operand as unsigned will not
2615 // change the result of the comparison.
John McCall323ed742010-05-06 08:58:33 +00002616 if (E->isEqualityOp()) {
2617 unsigned comparisonWidth = S.Context.getIntWidth(T);
2618 IntRange unsignedRange = GetExprRange(S.Context, unsignedOperand);
John McCallba26e582010-01-04 23:21:16 +00002619
John McCall323ed742010-05-06 08:58:33 +00002620 // We should never be unable to prove that the unsigned operand is
2621 // non-negative.
2622 assert(unsignedRange.NonNegative && "unsigned range includes negative?");
2623
2624 if (unsignedRange.Width < comparisonWidth)
2625 return;
2626 }
2627
2628 S.Diag(E->getOperatorLoc(), diag::warn_mixed_sign_comparison)
2629 << lex->getType() << rex->getType()
2630 << lex->getSourceRange() << rex->getSourceRange();
John McCallba26e582010-01-04 23:21:16 +00002631}
2632
John McCall15d7d122010-11-11 03:21:53 +00002633/// Analyzes an attempt to assign the given value to a bitfield.
2634///
2635/// Returns true if there was something fishy about the attempt.
2636bool AnalyzeBitFieldAssignment(Sema &S, FieldDecl *Bitfield, Expr *Init,
2637 SourceLocation InitLoc) {
2638 assert(Bitfield->isBitField());
2639 if (Bitfield->isInvalidDecl())
2640 return false;
2641
John McCall91b60142010-11-11 05:33:51 +00002642 // White-list bool bitfields.
2643 if (Bitfield->getType()->isBooleanType())
2644 return false;
2645
Douglas Gregor46ff3032011-02-04 13:09:01 +00002646 // Ignore value- or type-dependent expressions.
2647 if (Bitfield->getBitWidth()->isValueDependent() ||
2648 Bitfield->getBitWidth()->isTypeDependent() ||
2649 Init->isValueDependent() ||
2650 Init->isTypeDependent())
2651 return false;
2652
John McCall15d7d122010-11-11 03:21:53 +00002653 Expr *OriginalInit = Init->IgnoreParenImpCasts();
2654
2655 llvm::APSInt Width(32);
2656 Expr::EvalResult InitValue;
2657 if (!Bitfield->getBitWidth()->isIntegerConstantExpr(Width, S.Context) ||
John McCall91b60142010-11-11 05:33:51 +00002658 !OriginalInit->Evaluate(InitValue, S.Context) ||
John McCall15d7d122010-11-11 03:21:53 +00002659 !InitValue.Val.isInt())
2660 return false;
2661
2662 const llvm::APSInt &Value = InitValue.Val.getInt();
2663 unsigned OriginalWidth = Value.getBitWidth();
2664 unsigned FieldWidth = Width.getZExtValue();
2665
2666 if (OriginalWidth <= FieldWidth)
2667 return false;
2668
Jay Foad9f71a8f2010-12-07 08:25:34 +00002669 llvm::APSInt TruncatedValue = Value.trunc(FieldWidth);
John McCall15d7d122010-11-11 03:21:53 +00002670
2671 // It's fairly common to write values into signed bitfields
2672 // that, if sign-extended, would end up becoming a different
2673 // value. We don't want to warn about that.
2674 if (Value.isSigned() && Value.isNegative())
Jay Foad9f71a8f2010-12-07 08:25:34 +00002675 TruncatedValue = TruncatedValue.sext(OriginalWidth);
John McCall15d7d122010-11-11 03:21:53 +00002676 else
Jay Foad9f71a8f2010-12-07 08:25:34 +00002677 TruncatedValue = TruncatedValue.zext(OriginalWidth);
John McCall15d7d122010-11-11 03:21:53 +00002678
2679 if (Value == TruncatedValue)
2680 return false;
2681
2682 std::string PrettyValue = Value.toString(10);
2683 std::string PrettyTrunc = TruncatedValue.toString(10);
2684
2685 S.Diag(InitLoc, diag::warn_impcast_bitfield_precision_constant)
2686 << PrettyValue << PrettyTrunc << OriginalInit->getType()
2687 << Init->getSourceRange();
2688
2689 return true;
2690}
2691
John McCallbeb22aa2010-11-09 23:24:47 +00002692/// Analyze the given simple or compound assignment for warning-worthy
2693/// operations.
2694void AnalyzeAssignment(Sema &S, BinaryOperator *E) {
2695 // Just recurse on the LHS.
2696 AnalyzeImplicitConversions(S, E->getLHS(), E->getOperatorLoc());
2697
2698 // We want to recurse on the RHS as normal unless we're assigning to
2699 // a bitfield.
2700 if (FieldDecl *Bitfield = E->getLHS()->getBitField()) {
John McCall15d7d122010-11-11 03:21:53 +00002701 if (AnalyzeBitFieldAssignment(S, Bitfield, E->getRHS(),
2702 E->getOperatorLoc())) {
2703 // Recurse, ignoring any implicit conversions on the RHS.
2704 return AnalyzeImplicitConversions(S, E->getRHS()->IgnoreParenImpCasts(),
2705 E->getOperatorLoc());
John McCallbeb22aa2010-11-09 23:24:47 +00002706 }
2707 }
2708
2709 AnalyzeImplicitConversions(S, E->getRHS(), E->getOperatorLoc());
2710}
2711
John McCall51313c32010-01-04 23:31:57 +00002712/// Diagnose an implicit cast; purely a helper for CheckImplicitConversion.
John McCallb4eb64d2010-10-08 02:01:28 +00002713void DiagnoseImpCast(Sema &S, Expr *E, QualType T, SourceLocation CContext,
2714 unsigned diag) {
2715 S.Diag(E->getExprLoc(), diag)
2716 << E->getType() << T << E->getSourceRange() << SourceRange(CContext);
John McCall51313c32010-01-04 23:31:57 +00002717}
2718
John McCall091f23f2010-11-09 22:22:12 +00002719std::string PrettyPrintInRange(const llvm::APSInt &Value, IntRange Range) {
2720 if (!Range.Width) return "0";
2721
2722 llvm::APSInt ValueInRange = Value;
2723 ValueInRange.setIsSigned(!Range.NonNegative);
Jay Foad9f71a8f2010-12-07 08:25:34 +00002724 ValueInRange = ValueInRange.trunc(Range.Width);
John McCall091f23f2010-11-09 22:22:12 +00002725 return ValueInRange.toString(10);
2726}
2727
John McCall323ed742010-05-06 08:58:33 +00002728void CheckImplicitConversion(Sema &S, Expr *E, QualType T,
John McCallb4eb64d2010-10-08 02:01:28 +00002729 SourceLocation CC, bool *ICContext = 0) {
John McCall323ed742010-05-06 08:58:33 +00002730 if (E->isTypeDependent() || E->isValueDependent()) return;
John McCall51313c32010-01-04 23:31:57 +00002731
John McCall323ed742010-05-06 08:58:33 +00002732 const Type *Source = S.Context.getCanonicalType(E->getType()).getTypePtr();
2733 const Type *Target = S.Context.getCanonicalType(T).getTypePtr();
2734 if (Source == Target) return;
2735 if (Target->isDependentType()) return;
John McCall51313c32010-01-04 23:31:57 +00002736
John McCallb4eb64d2010-10-08 02:01:28 +00002737 // If the conversion context location is invalid or instantiated
2738 // from a system macro, don't complain.
2739 if (CC.isInvalid() ||
2740 (CC.isMacroID() && S.Context.getSourceManager().isInSystemHeader(
2741 S.Context.getSourceManager().getSpellingLoc(CC))))
2742 return;
2743
John McCall51313c32010-01-04 23:31:57 +00002744 // Never diagnose implicit casts to bool.
2745 if (Target->isSpecificBuiltinType(BuiltinType::Bool))
2746 return;
2747
2748 // Strip vector types.
2749 if (isa<VectorType>(Source)) {
2750 if (!isa<VectorType>(Target))
John McCallb4eb64d2010-10-08 02:01:28 +00002751 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_vector_scalar);
John McCall51313c32010-01-04 23:31:57 +00002752
2753 Source = cast<VectorType>(Source)->getElementType().getTypePtr();
2754 Target = cast<VectorType>(Target)->getElementType().getTypePtr();
2755 }
2756
2757 // Strip complex types.
2758 if (isa<ComplexType>(Source)) {
2759 if (!isa<ComplexType>(Target))
John McCallb4eb64d2010-10-08 02:01:28 +00002760 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_complex_scalar);
John McCall51313c32010-01-04 23:31:57 +00002761
2762 Source = cast<ComplexType>(Source)->getElementType().getTypePtr();
2763 Target = cast<ComplexType>(Target)->getElementType().getTypePtr();
2764 }
2765
2766 const BuiltinType *SourceBT = dyn_cast<BuiltinType>(Source);
2767 const BuiltinType *TargetBT = dyn_cast<BuiltinType>(Target);
2768
2769 // If the source is floating point...
2770 if (SourceBT && SourceBT->isFloatingPoint()) {
2771 // ...and the target is floating point...
2772 if (TargetBT && TargetBT->isFloatingPoint()) {
2773 // ...then warn if we're dropping FP rank.
2774
2775 // Builtin FP kinds are ordered by increasing FP rank.
2776 if (SourceBT->getKind() > TargetBT->getKind()) {
2777 // Don't warn about float constants that are precisely
2778 // representable in the target type.
2779 Expr::EvalResult result;
John McCall323ed742010-05-06 08:58:33 +00002780 if (E->Evaluate(result, S.Context)) {
John McCall51313c32010-01-04 23:31:57 +00002781 // Value might be a float, a float vector, or a float complex.
2782 if (IsSameFloatAfterCast(result.Val,
John McCall323ed742010-05-06 08:58:33 +00002783 S.Context.getFloatTypeSemantics(QualType(TargetBT, 0)),
2784 S.Context.getFloatTypeSemantics(QualType(SourceBT, 0))))
John McCall51313c32010-01-04 23:31:57 +00002785 return;
2786 }
2787
John McCallb4eb64d2010-10-08 02:01:28 +00002788 DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_float_precision);
John McCall51313c32010-01-04 23:31:57 +00002789 }
2790 return;
2791 }
2792
2793 // If the target is integral, always warn.
2794 if ((TargetBT && TargetBT->isInteger()))
2795 // TODO: don't warn for integer values?
John McCallb4eb64d2010-10-08 02:01:28 +00002796 DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_float_integer);
John McCall51313c32010-01-04 23:31:57 +00002797
2798 return;
2799 }
2800
John McCallf2370c92010-01-06 05:24:50 +00002801 if (!Source->isIntegerType() || !Target->isIntegerType())
John McCall51313c32010-01-04 23:31:57 +00002802 return;
2803
John McCall323ed742010-05-06 08:58:33 +00002804 IntRange SourceRange = GetExprRange(S.Context, E);
John McCall1844a6e2010-11-10 23:38:19 +00002805 IntRange TargetRange = IntRange::forTargetOfCanonicalType(S.Context, Target);
John McCallf2370c92010-01-06 05:24:50 +00002806
2807 if (SourceRange.Width > TargetRange.Width) {
John McCall091f23f2010-11-09 22:22:12 +00002808 // If the source is a constant, use a default-on diagnostic.
2809 // TODO: this should happen for bitfield stores, too.
2810 llvm::APSInt Value(32);
2811 if (E->isIntegerConstantExpr(Value, S.Context)) {
2812 std::string PrettySourceValue = Value.toString(10);
2813 std::string PrettyTargetValue = PrettyPrintInRange(Value, TargetRange);
2814
2815 S.Diag(E->getExprLoc(), diag::warn_impcast_integer_precision_constant)
2816 << PrettySourceValue << PrettyTargetValue
2817 << E->getType() << T << E->getSourceRange() << clang::SourceRange(CC);
2818 return;
2819 }
2820
John McCall51313c32010-01-04 23:31:57 +00002821 // People want to build with -Wshorten-64-to-32 and not -Wconversion
2822 // and by god we'll let them.
John McCallf2370c92010-01-06 05:24:50 +00002823 if (SourceRange.Width == 64 && TargetRange.Width == 32)
John McCallb4eb64d2010-10-08 02:01:28 +00002824 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_integer_64_32);
2825 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_integer_precision);
John McCall323ed742010-05-06 08:58:33 +00002826 }
2827
2828 if ((TargetRange.NonNegative && !SourceRange.NonNegative) ||
2829 (!TargetRange.NonNegative && SourceRange.NonNegative &&
2830 SourceRange.Width == TargetRange.Width)) {
2831 unsigned DiagID = diag::warn_impcast_integer_sign;
2832
2833 // Traditionally, gcc has warned about this under -Wsign-compare.
2834 // We also want to warn about it in -Wconversion.
2835 // So if -Wconversion is off, use a completely identical diagnostic
2836 // in the sign-compare group.
2837 // The conditional-checking code will
2838 if (ICContext) {
2839 DiagID = diag::warn_impcast_integer_sign_conditional;
2840 *ICContext = true;
2841 }
2842
John McCallb4eb64d2010-10-08 02:01:28 +00002843 return DiagnoseImpCast(S, E, T, CC, DiagID);
John McCall51313c32010-01-04 23:31:57 +00002844 }
2845
2846 return;
2847}
2848
John McCall323ed742010-05-06 08:58:33 +00002849void CheckConditionalOperator(Sema &S, ConditionalOperator *E, QualType T);
2850
2851void CheckConditionalOperand(Sema &S, Expr *E, QualType T,
John McCallb4eb64d2010-10-08 02:01:28 +00002852 SourceLocation CC, bool &ICContext) {
John McCall323ed742010-05-06 08:58:33 +00002853 E = E->IgnoreParenImpCasts();
2854
2855 if (isa<ConditionalOperator>(E))
2856 return CheckConditionalOperator(S, cast<ConditionalOperator>(E), T);
2857
John McCallb4eb64d2010-10-08 02:01:28 +00002858 AnalyzeImplicitConversions(S, E, CC);
John McCall323ed742010-05-06 08:58:33 +00002859 if (E->getType() != T)
John McCallb4eb64d2010-10-08 02:01:28 +00002860 return CheckImplicitConversion(S, E, T, CC, &ICContext);
John McCall323ed742010-05-06 08:58:33 +00002861 return;
2862}
2863
2864void CheckConditionalOperator(Sema &S, ConditionalOperator *E, QualType T) {
John McCallb4eb64d2010-10-08 02:01:28 +00002865 SourceLocation CC = E->getQuestionLoc();
2866
2867 AnalyzeImplicitConversions(S, E->getCond(), CC);
John McCall323ed742010-05-06 08:58:33 +00002868
2869 bool Suspicious = false;
John McCallb4eb64d2010-10-08 02:01:28 +00002870 CheckConditionalOperand(S, E->getTrueExpr(), T, CC, Suspicious);
2871 CheckConditionalOperand(S, E->getFalseExpr(), T, CC, Suspicious);
John McCall323ed742010-05-06 08:58:33 +00002872
2873 // If -Wconversion would have warned about either of the candidates
2874 // for a signedness conversion to the context type...
2875 if (!Suspicious) return;
2876
2877 // ...but it's currently ignored...
Argyrios Kyrtzidis08274082010-12-15 18:44:22 +00002878 if (S.Diags.getDiagnosticLevel(diag::warn_impcast_integer_sign_conditional,
2879 CC))
John McCall323ed742010-05-06 08:58:33 +00002880 return;
2881
2882 // ...and -Wsign-compare isn't...
Argyrios Kyrtzidis08274082010-12-15 18:44:22 +00002883 if (!S.Diags.getDiagnosticLevel(diag::warn_mixed_sign_conditional, CC))
John McCall323ed742010-05-06 08:58:33 +00002884 return;
2885
2886 // ...then check whether it would have warned about either of the
2887 // candidates for a signedness conversion to the condition type.
2888 if (E->getType() != T) {
2889 Suspicious = false;
2890 CheckImplicitConversion(S, E->getTrueExpr()->IgnoreParenImpCasts(),
John McCallb4eb64d2010-10-08 02:01:28 +00002891 E->getType(), CC, &Suspicious);
John McCall323ed742010-05-06 08:58:33 +00002892 if (!Suspicious)
2893 CheckImplicitConversion(S, E->getFalseExpr()->IgnoreParenImpCasts(),
John McCallb4eb64d2010-10-08 02:01:28 +00002894 E->getType(), CC, &Suspicious);
John McCall323ed742010-05-06 08:58:33 +00002895 if (!Suspicious)
2896 return;
2897 }
2898
2899 // If so, emit a diagnostic under -Wsign-compare.
2900 Expr *lex = E->getTrueExpr()->IgnoreParenImpCasts();
2901 Expr *rex = E->getFalseExpr()->IgnoreParenImpCasts();
2902 S.Diag(E->getQuestionLoc(), diag::warn_mixed_sign_conditional)
2903 << lex->getType() << rex->getType()
2904 << lex->getSourceRange() << rex->getSourceRange();
2905}
2906
2907/// AnalyzeImplicitConversions - Find and report any interesting
2908/// implicit conversions in the given expression. There are a couple
2909/// of competing diagnostics here, -Wconversion and -Wsign-compare.
John McCallb4eb64d2010-10-08 02:01:28 +00002910void AnalyzeImplicitConversions(Sema &S, Expr *OrigE, SourceLocation CC) {
John McCall323ed742010-05-06 08:58:33 +00002911 QualType T = OrigE->getType();
2912 Expr *E = OrigE->IgnoreParenImpCasts();
2913
2914 // For conditional operators, we analyze the arguments as if they
2915 // were being fed directly into the output.
2916 if (isa<ConditionalOperator>(E)) {
2917 ConditionalOperator *CO = cast<ConditionalOperator>(E);
2918 CheckConditionalOperator(S, CO, T);
2919 return;
2920 }
2921
2922 // Go ahead and check any implicit conversions we might have skipped.
2923 // The non-canonical typecheck is just an optimization;
2924 // CheckImplicitConversion will filter out dead implicit conversions.
2925 if (E->getType() != T)
John McCallb4eb64d2010-10-08 02:01:28 +00002926 CheckImplicitConversion(S, E, T, CC);
John McCall323ed742010-05-06 08:58:33 +00002927
2928 // Now continue drilling into this expression.
2929
2930 // Skip past explicit casts.
2931 if (isa<ExplicitCastExpr>(E)) {
2932 E = cast<ExplicitCastExpr>(E)->getSubExpr()->IgnoreParenImpCasts();
John McCallb4eb64d2010-10-08 02:01:28 +00002933 return AnalyzeImplicitConversions(S, E, CC);
John McCall323ed742010-05-06 08:58:33 +00002934 }
2935
John McCallbeb22aa2010-11-09 23:24:47 +00002936 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
2937 // Do a somewhat different check with comparison operators.
2938 if (BO->isComparisonOp())
2939 return AnalyzeComparison(S, BO);
2940
2941 // And with assignments and compound assignments.
2942 if (BO->isAssignmentOp())
2943 return AnalyzeAssignment(S, BO);
2944 }
John McCall323ed742010-05-06 08:58:33 +00002945
2946 // These break the otherwise-useful invariant below. Fortunately,
2947 // we don't really need to recurse into them, because any internal
2948 // expressions should have been analyzed already when they were
2949 // built into statements.
2950 if (isa<StmtExpr>(E)) return;
2951
2952 // Don't descend into unevaluated contexts.
2953 if (isa<SizeOfAlignOfExpr>(E)) return;
2954
2955 // Now just recurse over the expression's children.
John McCallb4eb64d2010-10-08 02:01:28 +00002956 CC = E->getExprLoc();
John McCall7502c1d2011-02-13 04:07:26 +00002957 for (Stmt::child_range I = E->children(); I; ++I)
John McCallb4eb64d2010-10-08 02:01:28 +00002958 AnalyzeImplicitConversions(S, cast<Expr>(*I), CC);
John McCall323ed742010-05-06 08:58:33 +00002959}
2960
2961} // end anonymous namespace
2962
2963/// Diagnoses "dangerous" implicit conversions within the given
2964/// expression (which is a full expression). Implements -Wconversion
2965/// and -Wsign-compare.
John McCallb4eb64d2010-10-08 02:01:28 +00002966///
2967/// \param CC the "context" location of the implicit conversion, i.e.
2968/// the most location of the syntactic entity requiring the implicit
2969/// conversion
2970void Sema::CheckImplicitConversions(Expr *E, SourceLocation CC) {
John McCall323ed742010-05-06 08:58:33 +00002971 // Don't diagnose in unevaluated contexts.
2972 if (ExprEvalContexts.back().Context == Sema::Unevaluated)
2973 return;
2974
2975 // Don't diagnose for value- or type-dependent expressions.
2976 if (E->isTypeDependent() || E->isValueDependent())
2977 return;
2978
John McCallb4eb64d2010-10-08 02:01:28 +00002979 // This is not the right CC for (e.g.) a variable initialization.
2980 AnalyzeImplicitConversions(*this, E, CC);
John McCall323ed742010-05-06 08:58:33 +00002981}
2982
John McCall15d7d122010-11-11 03:21:53 +00002983void Sema::CheckBitFieldInitialization(SourceLocation InitLoc,
2984 FieldDecl *BitField,
2985 Expr *Init) {
2986 (void) AnalyzeBitFieldAssignment(*this, BitField, Init, InitLoc);
2987}
2988
Mike Stumpf8c49212010-01-21 03:59:47 +00002989/// CheckParmsForFunctionDef - Check that the parameters of the given
2990/// function are appropriate for the definition of a function. This
2991/// takes care of any checks that cannot be performed on the
2992/// declaration itself, e.g., that the types of each of the function
2993/// parameters are complete.
Douglas Gregor82aa7132010-11-01 18:37:59 +00002994bool Sema::CheckParmsForFunctionDef(ParmVarDecl **P, ParmVarDecl **PEnd,
2995 bool CheckParameterNames) {
Mike Stumpf8c49212010-01-21 03:59:47 +00002996 bool HasInvalidParm = false;
Douglas Gregor82aa7132010-11-01 18:37:59 +00002997 for (; P != PEnd; ++P) {
2998 ParmVarDecl *Param = *P;
2999
Mike Stumpf8c49212010-01-21 03:59:47 +00003000 // C99 6.7.5.3p4: the parameters in a parameter type list in a
3001 // function declarator that is part of a function definition of
3002 // that function shall not have incomplete type.
3003 //
3004 // This is also C++ [dcl.fct]p6.
3005 if (!Param->isInvalidDecl() &&
3006 RequireCompleteType(Param->getLocation(), Param->getType(),
3007 diag::err_typecheck_decl_incomplete_type)) {
3008 Param->setInvalidDecl();
3009 HasInvalidParm = true;
3010 }
3011
3012 // C99 6.9.1p5: If the declarator includes a parameter type list, the
3013 // declaration of each parameter shall include an identifier.
Douglas Gregor82aa7132010-11-01 18:37:59 +00003014 if (CheckParameterNames &&
3015 Param->getIdentifier() == 0 &&
Mike Stumpf8c49212010-01-21 03:59:47 +00003016 !Param->isImplicit() &&
3017 !getLangOptions().CPlusPlus)
3018 Diag(Param->getLocation(), diag::err_parameter_name_omitted);
Sam Weinigd17e3402010-02-01 05:02:49 +00003019
3020 // C99 6.7.5.3p12:
3021 // If the function declarator is not part of a definition of that
3022 // function, parameters may have incomplete type and may use the [*]
3023 // notation in their sequences of declarator specifiers to specify
3024 // variable length array types.
3025 QualType PType = Param->getOriginalType();
3026 if (const ArrayType *AT = Context.getAsArrayType(PType)) {
3027 if (AT->getSizeModifier() == ArrayType::Star) {
3028 // FIXME: This diagnosic should point the the '[*]' if source-location
3029 // information is added for it.
3030 Diag(Param->getLocation(), diag::err_array_star_in_function_definition);
3031 }
3032 }
Mike Stumpf8c49212010-01-21 03:59:47 +00003033 }
3034
3035 return HasInvalidParm;
3036}
John McCallb7f4ffe2010-08-12 21:44:57 +00003037
3038/// CheckCastAlign - Implements -Wcast-align, which warns when a
3039/// pointer cast increases the alignment requirements.
3040void Sema::CheckCastAlign(Expr *Op, QualType T, SourceRange TRange) {
3041 // This is actually a lot of work to potentially be doing on every
3042 // cast; don't do it if we're ignoring -Wcast_align (as is the default).
Argyrios Kyrtzidis08274082010-12-15 18:44:22 +00003043 if (getDiagnostics().getDiagnosticLevel(diag::warn_cast_align,
3044 TRange.getBegin())
John McCallb7f4ffe2010-08-12 21:44:57 +00003045 == Diagnostic::Ignored)
3046 return;
3047
3048 // Ignore dependent types.
3049 if (T->isDependentType() || Op->getType()->isDependentType())
3050 return;
3051
3052 // Require that the destination be a pointer type.
3053 const PointerType *DestPtr = T->getAs<PointerType>();
3054 if (!DestPtr) return;
3055
3056 // If the destination has alignment 1, we're done.
3057 QualType DestPointee = DestPtr->getPointeeType();
3058 if (DestPointee->isIncompleteType()) return;
3059 CharUnits DestAlign = Context.getTypeAlignInChars(DestPointee);
3060 if (DestAlign.isOne()) return;
3061
3062 // Require that the source be a pointer type.
3063 const PointerType *SrcPtr = Op->getType()->getAs<PointerType>();
3064 if (!SrcPtr) return;
3065 QualType SrcPointee = SrcPtr->getPointeeType();
3066
3067 // Whitelist casts from cv void*. We already implicitly
3068 // whitelisted casts to cv void*, since they have alignment 1.
3069 // Also whitelist casts involving incomplete types, which implicitly
3070 // includes 'void'.
3071 if (SrcPointee->isIncompleteType()) return;
3072
3073 CharUnits SrcAlign = Context.getTypeAlignInChars(SrcPointee);
3074 if (SrcAlign >= DestAlign) return;
3075
3076 Diag(TRange.getBegin(), diag::warn_cast_align)
3077 << Op->getType() << T
3078 << static_cast<unsigned>(SrcAlign.getQuantity())
3079 << static_cast<unsigned>(DestAlign.getQuantity())
3080 << TRange << Op->getSourceRange();
3081}
3082
Ted Kremeneka0125d82011-02-16 01:57:07 +00003083void Sema::CheckArrayAccess(const clang::ArraySubscriptExpr *ae) {
3084 const DeclRefExpr *dr =
3085 dyn_cast<DeclRefExpr>(ae->getBase()->IgnoreParenImpCasts());
3086 if (!dr)
3087 return;
3088 const VarDecl *vd = cast<VarDecl>(dr->getDecl());
3089 const ConstantArrayType *cat = Context.getAsConstantArrayType(vd->getType());
3090 if (!cat)
3091 return;
3092 const Expr *idx = ae->getIdx();
3093 if (idx->isValueDependent())
3094 return;
3095 llvm::APSInt result;
3096 if (!idx->isIntegerConstantExpr(result, Context))
3097 return;
3098 unsigned kind = 2;
3099 if (result.slt(0))
3100 kind = /* precedes */ 0;
3101 else {
3102 const llvm::APInt &size = cat->getSize();
3103 if (size.getBitWidth() > result.getBitWidth())
3104 result = result.sext(size.getBitWidth());
3105 if (result.sge(size))
3106 kind = /* excedes */ 1;
3107 }
3108 if (kind < 2)
3109 Diag(ae->getBase()->getLocEnd(), diag::warn_array_index_out_of_bounds)
3110 << kind << idx->getSourceRange();
3111}
3112