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Chris Lattnerb87b1b32007-08-10 20:18:51 +00001//===--- SemaChecking.cpp - Extra Semantic Checking -----------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5b12ab82007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattnerb87b1b32007-08-10 20:18:51 +00007//
8//===----------------------------------------------------------------------===//
9//
Mike Stump11289f42009-09-09 15:08:12 +000010// This file implements extra semantic analysis beyond what is enforced
Chris Lattnerb87b1b32007-08-10 20:18:51 +000011// by the C type system.
12//
13//===----------------------------------------------------------------------===//
14
John McCall83024632010-08-25 22:03:47 +000015#include "clang/Sema/SemaInternal.h"
Chris Lattnerb87b1b32007-08-10 20:18:51 +000016#include "clang/AST/ASTContext.h"
Ken Dyck40775002010-01-11 17:06:35 +000017#include "clang/AST/CharUnits.h"
John McCall28a0cf72010-08-25 07:42:41 +000018#include "clang/AST/DeclCXX.h"
Daniel Dunbar6e8aa532008-08-11 05:35:13 +000019#include "clang/AST/DeclObjC.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000020#include "clang/AST/EvaluatedExprVisitor.h"
David Blaikie7555b6a2012-05-15 16:56:36 +000021#include "clang/AST/Expr.h"
Ted Kremenekc81614d2007-08-20 16:18:38 +000022#include "clang/AST/ExprCXX.h"
Ted Kremenek34f664d2008-06-16 18:00:42 +000023#include "clang/AST/ExprObjC.h"
Mike Stump0c2ec772010-01-21 03:59:47 +000024#include "clang/AST/StmtCXX.h"
25#include "clang/AST/StmtObjC.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000026#include "clang/Analysis/Analyses/FormatString.h"
Jordan Rosea7d03842013-02-08 22:30:41 +000027#include "clang/Basic/CharInfo.h"
Eric Christopher8d0c6212010-04-17 02:26:23 +000028#include "clang/Basic/TargetBuiltins.h"
Nate Begeman4904e322010-06-08 02:47:44 +000029#include "clang/Basic/TargetInfo.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000030#include "clang/Lex/Preprocessor.h"
31#include "clang/Sema/Initialization.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000032#include "clang/Sema/Lookup.h"
33#include "clang/Sema/ScopeInfo.h"
34#include "clang/Sema/Sema.h"
Chandler Carruth5553d0d2014-01-07 11:51:46 +000035#include "llvm/ADT/STLExtras.h"
Richard Smithd7293d72013-08-05 18:49:43 +000036#include "llvm/ADT/SmallBitVector.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000037#include "llvm/ADT/SmallString.h"
Dmitri Gribenko9feeef42013-01-30 12:06:08 +000038#include "llvm/Support/ConvertUTF.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000039#include "llvm/Support/raw_ostream.h"
Zhongxing Xu050379b2009-05-20 01:55:10 +000040#include <limits>
Chris Lattnerb87b1b32007-08-10 20:18:51 +000041using namespace clang;
John McCallaab3e412010-08-25 08:40:02 +000042using namespace sema;
Chris Lattnerb87b1b32007-08-10 20:18:51 +000043
Chris Lattnera26fb342009-02-18 17:49:48 +000044SourceLocation Sema::getLocationOfStringLiteralByte(const StringLiteral *SL,
45 unsigned ByteNo) const {
Chris Lattnere925d612010-11-17 07:37:15 +000046 return SL->getLocationOfByte(ByteNo, PP.getSourceManager(),
David Blaikiebbafb8a2012-03-11 07:00:24 +000047 PP.getLangOpts(), PP.getTargetInfo());
Chris Lattnera26fb342009-02-18 17:49:48 +000048}
49
John McCallbebede42011-02-26 05:39:39 +000050/// Checks that a call expression's argument count is the desired number.
51/// This is useful when doing custom type-checking. Returns true on error.
52static bool checkArgCount(Sema &S, CallExpr *call, unsigned desiredArgCount) {
53 unsigned argCount = call->getNumArgs();
54 if (argCount == desiredArgCount) return false;
55
56 if (argCount < desiredArgCount)
57 return S.Diag(call->getLocEnd(), diag::err_typecheck_call_too_few_args)
58 << 0 /*function call*/ << desiredArgCount << argCount
59 << call->getSourceRange();
60
61 // Highlight all the excess arguments.
62 SourceRange range(call->getArg(desiredArgCount)->getLocStart(),
63 call->getArg(argCount - 1)->getLocEnd());
64
65 return S.Diag(range.getBegin(), diag::err_typecheck_call_too_many_args)
66 << 0 /*function call*/ << desiredArgCount << argCount
67 << call->getArg(1)->getSourceRange();
68}
69
Julien Lerouge4a5b4442012-04-28 17:39:16 +000070/// Check that the first argument to __builtin_annotation is an integer
71/// and the second argument is a non-wide string literal.
72static bool SemaBuiltinAnnotation(Sema &S, CallExpr *TheCall) {
73 if (checkArgCount(S, TheCall, 2))
74 return true;
75
76 // First argument should be an integer.
77 Expr *ValArg = TheCall->getArg(0);
78 QualType Ty = ValArg->getType();
79 if (!Ty->isIntegerType()) {
80 S.Diag(ValArg->getLocStart(), diag::err_builtin_annotation_first_arg)
81 << ValArg->getSourceRange();
Julien Lerouge5a6b6982011-09-09 22:41:49 +000082 return true;
83 }
Julien Lerouge4a5b4442012-04-28 17:39:16 +000084
85 // Second argument should be a constant string.
86 Expr *StrArg = TheCall->getArg(1)->IgnoreParenCasts();
87 StringLiteral *Literal = dyn_cast<StringLiteral>(StrArg);
88 if (!Literal || !Literal->isAscii()) {
89 S.Diag(StrArg->getLocStart(), diag::err_builtin_annotation_second_arg)
90 << StrArg->getSourceRange();
91 return true;
92 }
93
94 TheCall->setType(Ty);
Julien Lerouge5a6b6982011-09-09 22:41:49 +000095 return false;
96}
97
Richard Smith6cbd65d2013-07-11 02:27:57 +000098/// Check that the argument to __builtin_addressof is a glvalue, and set the
99/// result type to the corresponding pointer type.
100static bool SemaBuiltinAddressof(Sema &S, CallExpr *TheCall) {
101 if (checkArgCount(S, TheCall, 1))
102 return true;
103
104 ExprResult Arg(S.Owned(TheCall->getArg(0)));
105 QualType ResultType = S.CheckAddressOfOperand(Arg, TheCall->getLocStart());
106 if (ResultType.isNull())
107 return true;
108
109 TheCall->setArg(0, Arg.take());
110 TheCall->setType(ResultType);
111 return false;
112}
113
John McCalldadc5752010-08-24 06:29:42 +0000114ExprResult
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000115Sema::CheckBuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
John McCalldadc5752010-08-24 06:29:42 +0000116 ExprResult TheCallResult(Owned(TheCall));
Douglas Gregorae2fbad2008-11-17 20:34:05 +0000117
Chris Lattner3be167f2010-10-01 23:23:24 +0000118 // Find out if any arguments are required to be integer constant expressions.
119 unsigned ICEArguments = 0;
120 ASTContext::GetBuiltinTypeError Error;
121 Context.GetBuiltinType(BuiltinID, Error, &ICEArguments);
122 if (Error != ASTContext::GE_None)
123 ICEArguments = 0; // Don't diagnose previously diagnosed errors.
124
125 // If any arguments are required to be ICE's, check and diagnose.
126 for (unsigned ArgNo = 0; ICEArguments != 0; ++ArgNo) {
127 // Skip arguments not required to be ICE's.
128 if ((ICEArguments & (1 << ArgNo)) == 0) continue;
129
130 llvm::APSInt Result;
131 if (SemaBuiltinConstantArg(TheCall, ArgNo, Result))
132 return true;
133 ICEArguments &= ~(1 << ArgNo);
134 }
135
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000136 switch (BuiltinID) {
Chris Lattner43be2e62007-12-19 23:59:04 +0000137 case Builtin::BI__builtin___CFStringMakeConstantString:
Chris Lattner08464942007-12-28 05:29:59 +0000138 assert(TheCall->getNumArgs() == 1 &&
Chris Lattner2da14fb2007-12-20 00:26:33 +0000139 "Wrong # arguments to builtin CFStringMakeConstantString");
Chris Lattner6436fb62009-02-18 06:01:06 +0000140 if (CheckObjCString(TheCall->getArg(0)))
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000141 return ExprError();
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000142 break;
Ted Kremeneka174c522008-07-09 17:58:53 +0000143 case Builtin::BI__builtin_stdarg_start:
Chris Lattner43be2e62007-12-19 23:59:04 +0000144 case Builtin::BI__builtin_va_start:
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000145 if (SemaBuiltinVAStart(TheCall))
146 return ExprError();
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000147 break;
Chris Lattner2da14fb2007-12-20 00:26:33 +0000148 case Builtin::BI__builtin_isgreater:
149 case Builtin::BI__builtin_isgreaterequal:
150 case Builtin::BI__builtin_isless:
151 case Builtin::BI__builtin_islessequal:
152 case Builtin::BI__builtin_islessgreater:
153 case Builtin::BI__builtin_isunordered:
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000154 if (SemaBuiltinUnorderedCompare(TheCall))
155 return ExprError();
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000156 break;
Benjamin Kramer634fc102010-02-15 22:42:31 +0000157 case Builtin::BI__builtin_fpclassify:
158 if (SemaBuiltinFPClassification(TheCall, 6))
159 return ExprError();
160 break;
Eli Friedman7e4faac2009-08-31 20:06:00 +0000161 case Builtin::BI__builtin_isfinite:
162 case Builtin::BI__builtin_isinf:
163 case Builtin::BI__builtin_isinf_sign:
164 case Builtin::BI__builtin_isnan:
165 case Builtin::BI__builtin_isnormal:
Benjamin Kramer64aae502010-02-16 10:07:31 +0000166 if (SemaBuiltinFPClassification(TheCall, 1))
Eli Friedman7e4faac2009-08-31 20:06:00 +0000167 return ExprError();
168 break;
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000169 case Builtin::BI__builtin_shufflevector:
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000170 return SemaBuiltinShuffleVector(TheCall);
171 // TheCall will be freed by the smart pointer here, but that's fine, since
172 // SemaBuiltinShuffleVector guts it, but then doesn't release it.
Daniel Dunbarb7257262008-07-21 22:59:13 +0000173 case Builtin::BI__builtin_prefetch:
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000174 if (SemaBuiltinPrefetch(TheCall))
175 return ExprError();
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000176 break;
Daniel Dunbarb0d34c82008-09-03 21:13:56 +0000177 case Builtin::BI__builtin_object_size:
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000178 if (SemaBuiltinObjectSize(TheCall))
179 return ExprError();
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000180 break;
Eli Friedmaneed8ad22009-05-03 04:46:36 +0000181 case Builtin::BI__builtin_longjmp:
182 if (SemaBuiltinLongjmp(TheCall))
183 return ExprError();
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000184 break;
John McCallbebede42011-02-26 05:39:39 +0000185
186 case Builtin::BI__builtin_classify_type:
187 if (checkArgCount(*this, TheCall, 1)) return true;
188 TheCall->setType(Context.IntTy);
189 break;
Chris Lattner17c0eac2010-10-12 17:47:42 +0000190 case Builtin::BI__builtin_constant_p:
John McCallbebede42011-02-26 05:39:39 +0000191 if (checkArgCount(*this, TheCall, 1)) return true;
192 TheCall->setType(Context.IntTy);
Chris Lattner17c0eac2010-10-12 17:47:42 +0000193 break;
Chris Lattnerdc046542009-05-08 06:58:22 +0000194 case Builtin::BI__sync_fetch_and_add:
Douglas Gregor73722482011-11-28 16:30:08 +0000195 case Builtin::BI__sync_fetch_and_add_1:
196 case Builtin::BI__sync_fetch_and_add_2:
197 case Builtin::BI__sync_fetch_and_add_4:
198 case Builtin::BI__sync_fetch_and_add_8:
199 case Builtin::BI__sync_fetch_and_add_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000200 case Builtin::BI__sync_fetch_and_sub:
Douglas Gregor73722482011-11-28 16:30:08 +0000201 case Builtin::BI__sync_fetch_and_sub_1:
202 case Builtin::BI__sync_fetch_and_sub_2:
203 case Builtin::BI__sync_fetch_and_sub_4:
204 case Builtin::BI__sync_fetch_and_sub_8:
205 case Builtin::BI__sync_fetch_and_sub_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000206 case Builtin::BI__sync_fetch_and_or:
Douglas Gregor73722482011-11-28 16:30:08 +0000207 case Builtin::BI__sync_fetch_and_or_1:
208 case Builtin::BI__sync_fetch_and_or_2:
209 case Builtin::BI__sync_fetch_and_or_4:
210 case Builtin::BI__sync_fetch_and_or_8:
211 case Builtin::BI__sync_fetch_and_or_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000212 case Builtin::BI__sync_fetch_and_and:
Douglas Gregor73722482011-11-28 16:30:08 +0000213 case Builtin::BI__sync_fetch_and_and_1:
214 case Builtin::BI__sync_fetch_and_and_2:
215 case Builtin::BI__sync_fetch_and_and_4:
216 case Builtin::BI__sync_fetch_and_and_8:
217 case Builtin::BI__sync_fetch_and_and_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000218 case Builtin::BI__sync_fetch_and_xor:
Douglas Gregor73722482011-11-28 16:30:08 +0000219 case Builtin::BI__sync_fetch_and_xor_1:
220 case Builtin::BI__sync_fetch_and_xor_2:
221 case Builtin::BI__sync_fetch_and_xor_4:
222 case Builtin::BI__sync_fetch_and_xor_8:
223 case Builtin::BI__sync_fetch_and_xor_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000224 case Builtin::BI__sync_add_and_fetch:
Douglas Gregor73722482011-11-28 16:30:08 +0000225 case Builtin::BI__sync_add_and_fetch_1:
226 case Builtin::BI__sync_add_and_fetch_2:
227 case Builtin::BI__sync_add_and_fetch_4:
228 case Builtin::BI__sync_add_and_fetch_8:
229 case Builtin::BI__sync_add_and_fetch_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000230 case Builtin::BI__sync_sub_and_fetch:
Douglas Gregor73722482011-11-28 16:30:08 +0000231 case Builtin::BI__sync_sub_and_fetch_1:
232 case Builtin::BI__sync_sub_and_fetch_2:
233 case Builtin::BI__sync_sub_and_fetch_4:
234 case Builtin::BI__sync_sub_and_fetch_8:
235 case Builtin::BI__sync_sub_and_fetch_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000236 case Builtin::BI__sync_and_and_fetch:
Douglas Gregor73722482011-11-28 16:30:08 +0000237 case Builtin::BI__sync_and_and_fetch_1:
238 case Builtin::BI__sync_and_and_fetch_2:
239 case Builtin::BI__sync_and_and_fetch_4:
240 case Builtin::BI__sync_and_and_fetch_8:
241 case Builtin::BI__sync_and_and_fetch_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000242 case Builtin::BI__sync_or_and_fetch:
Douglas Gregor73722482011-11-28 16:30:08 +0000243 case Builtin::BI__sync_or_and_fetch_1:
244 case Builtin::BI__sync_or_and_fetch_2:
245 case Builtin::BI__sync_or_and_fetch_4:
246 case Builtin::BI__sync_or_and_fetch_8:
247 case Builtin::BI__sync_or_and_fetch_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000248 case Builtin::BI__sync_xor_and_fetch:
Douglas Gregor73722482011-11-28 16:30:08 +0000249 case Builtin::BI__sync_xor_and_fetch_1:
250 case Builtin::BI__sync_xor_and_fetch_2:
251 case Builtin::BI__sync_xor_and_fetch_4:
252 case Builtin::BI__sync_xor_and_fetch_8:
253 case Builtin::BI__sync_xor_and_fetch_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000254 case Builtin::BI__sync_val_compare_and_swap:
Douglas Gregor73722482011-11-28 16:30:08 +0000255 case Builtin::BI__sync_val_compare_and_swap_1:
256 case Builtin::BI__sync_val_compare_and_swap_2:
257 case Builtin::BI__sync_val_compare_and_swap_4:
258 case Builtin::BI__sync_val_compare_and_swap_8:
259 case Builtin::BI__sync_val_compare_and_swap_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000260 case Builtin::BI__sync_bool_compare_and_swap:
Douglas Gregor73722482011-11-28 16:30:08 +0000261 case Builtin::BI__sync_bool_compare_and_swap_1:
262 case Builtin::BI__sync_bool_compare_and_swap_2:
263 case Builtin::BI__sync_bool_compare_and_swap_4:
264 case Builtin::BI__sync_bool_compare_and_swap_8:
265 case Builtin::BI__sync_bool_compare_and_swap_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000266 case Builtin::BI__sync_lock_test_and_set:
Douglas Gregor73722482011-11-28 16:30:08 +0000267 case Builtin::BI__sync_lock_test_and_set_1:
268 case Builtin::BI__sync_lock_test_and_set_2:
269 case Builtin::BI__sync_lock_test_and_set_4:
270 case Builtin::BI__sync_lock_test_and_set_8:
271 case Builtin::BI__sync_lock_test_and_set_16:
Chris Lattnerdc046542009-05-08 06:58:22 +0000272 case Builtin::BI__sync_lock_release:
Douglas Gregor73722482011-11-28 16:30:08 +0000273 case Builtin::BI__sync_lock_release_1:
274 case Builtin::BI__sync_lock_release_2:
275 case Builtin::BI__sync_lock_release_4:
276 case Builtin::BI__sync_lock_release_8:
277 case Builtin::BI__sync_lock_release_16:
Chris Lattner9cb59fa2011-04-09 03:57:26 +0000278 case Builtin::BI__sync_swap:
Douglas Gregor73722482011-11-28 16:30:08 +0000279 case Builtin::BI__sync_swap_1:
280 case Builtin::BI__sync_swap_2:
281 case Builtin::BI__sync_swap_4:
282 case Builtin::BI__sync_swap_8:
283 case Builtin::BI__sync_swap_16:
Benjamin Kramer62b95d82012-08-23 21:35:17 +0000284 return SemaBuiltinAtomicOverloaded(TheCallResult);
Richard Smithfeea8832012-04-12 05:08:17 +0000285#define BUILTIN(ID, TYPE, ATTRS)
286#define ATOMIC_BUILTIN(ID, TYPE, ATTRS) \
287 case Builtin::BI##ID: \
Benjamin Kramer62b95d82012-08-23 21:35:17 +0000288 return SemaAtomicOpsOverloaded(TheCallResult, AtomicExpr::AO##ID);
Richard Smithfeea8832012-04-12 05:08:17 +0000289#include "clang/Basic/Builtins.def"
Julien Lerouge5a6b6982011-09-09 22:41:49 +0000290 case Builtin::BI__builtin_annotation:
Julien Lerouge4a5b4442012-04-28 17:39:16 +0000291 if (SemaBuiltinAnnotation(*this, TheCall))
Julien Lerouge5a6b6982011-09-09 22:41:49 +0000292 return ExprError();
293 break;
Richard Smith6cbd65d2013-07-11 02:27:57 +0000294 case Builtin::BI__builtin_addressof:
295 if (SemaBuiltinAddressof(*this, TheCall))
296 return ExprError();
297 break;
Nate Begeman4904e322010-06-08 02:47:44 +0000298 }
299
300 // Since the target specific builtins for each arch overlap, only check those
301 // of the arch we are compiling for.
302 if (BuiltinID >= Builtin::FirstTSBuiltin) {
Douglas Gregore8bbc122011-09-02 00:18:52 +0000303 switch (Context.getTargetInfo().getTriple().getArch()) {
Nate Begeman4904e322010-06-08 02:47:44 +0000304 case llvm::Triple::arm:
305 case llvm::Triple::thumb:
306 if (CheckARMBuiltinFunctionCall(BuiltinID, TheCall))
307 return ExprError();
308 break;
Tim Northover2fe823a2013-08-01 09:23:19 +0000309 case llvm::Triple::aarch64:
Christian Pirker9b019ae2014-02-25 13:51:00 +0000310 case llvm::Triple::aarch64_be:
Tim Northover2fe823a2013-08-01 09:23:19 +0000311 if (CheckAArch64BuiltinFunctionCall(BuiltinID, TheCall))
312 return ExprError();
313 break;
Simon Atanasyanecedf3d2012-07-08 09:30:00 +0000314 case llvm::Triple::mips:
315 case llvm::Triple::mipsel:
316 case llvm::Triple::mips64:
317 case llvm::Triple::mips64el:
318 if (CheckMipsBuiltinFunctionCall(BuiltinID, TheCall))
319 return ExprError();
320 break;
Warren Hunt20e4a5d2014-02-21 23:08:53 +0000321 case llvm::Triple::x86:
322 case llvm::Triple::x86_64:
323 if (CheckX86BuiltinFunctionCall(BuiltinID, TheCall))
324 return ExprError();
325 break;
Nate Begeman4904e322010-06-08 02:47:44 +0000326 default:
327 break;
328 }
329 }
330
Benjamin Kramer62b95d82012-08-23 21:35:17 +0000331 return TheCallResult;
Nate Begeman4904e322010-06-08 02:47:44 +0000332}
333
Nate Begeman91e1fea2010-06-14 05:21:25 +0000334// Get the valid immediate range for the specified NEON type code.
Tim Northover3402dc72014-02-12 12:04:59 +0000335static unsigned RFT(unsigned t, bool shift = false, bool ForceQuad = false) {
Bob Wilson98bc98c2011-11-08 01:16:11 +0000336 NeonTypeFlags Type(t);
Tim Northover3402dc72014-02-12 12:04:59 +0000337 int IsQuad = ForceQuad ? true : Type.isQuad();
Bob Wilson98bc98c2011-11-08 01:16:11 +0000338 switch (Type.getEltType()) {
339 case NeonTypeFlags::Int8:
340 case NeonTypeFlags::Poly8:
341 return shift ? 7 : (8 << IsQuad) - 1;
342 case NeonTypeFlags::Int16:
343 case NeonTypeFlags::Poly16:
344 return shift ? 15 : (4 << IsQuad) - 1;
345 case NeonTypeFlags::Int32:
346 return shift ? 31 : (2 << IsQuad) - 1;
347 case NeonTypeFlags::Int64:
Kevin Qincaac85e2013-11-14 03:29:16 +0000348 case NeonTypeFlags::Poly64:
Bob Wilson98bc98c2011-11-08 01:16:11 +0000349 return shift ? 63 : (1 << IsQuad) - 1;
Kevin Qinfb79d7f2013-12-10 06:49:01 +0000350 case NeonTypeFlags::Poly128:
351 return shift ? 127 : (1 << IsQuad) - 1;
Bob Wilson98bc98c2011-11-08 01:16:11 +0000352 case NeonTypeFlags::Float16:
353 assert(!shift && "cannot shift float types!");
354 return (4 << IsQuad) - 1;
355 case NeonTypeFlags::Float32:
356 assert(!shift && "cannot shift float types!");
357 return (2 << IsQuad) - 1;
Tim Northover2fe823a2013-08-01 09:23:19 +0000358 case NeonTypeFlags::Float64:
359 assert(!shift && "cannot shift float types!");
360 return (1 << IsQuad) - 1;
Nate Begeman91e1fea2010-06-14 05:21:25 +0000361 }
David Blaikie8a40f702012-01-17 06:56:22 +0000362 llvm_unreachable("Invalid NeonTypeFlag!");
Nate Begeman91e1fea2010-06-14 05:21:25 +0000363}
364
Bob Wilsone4d77232011-11-08 05:04:11 +0000365/// getNeonEltType - Return the QualType corresponding to the elements of
366/// the vector type specified by the NeonTypeFlags. This is used to check
367/// the pointer arguments for Neon load/store intrinsics.
Kevin Qincaac85e2013-11-14 03:29:16 +0000368static QualType getNeonEltType(NeonTypeFlags Flags, ASTContext &Context,
369 bool IsAArch64) {
Bob Wilsone4d77232011-11-08 05:04:11 +0000370 switch (Flags.getEltType()) {
371 case NeonTypeFlags::Int8:
372 return Flags.isUnsigned() ? Context.UnsignedCharTy : Context.SignedCharTy;
373 case NeonTypeFlags::Int16:
374 return Flags.isUnsigned() ? Context.UnsignedShortTy : Context.ShortTy;
375 case NeonTypeFlags::Int32:
376 return Flags.isUnsigned() ? Context.UnsignedIntTy : Context.IntTy;
377 case NeonTypeFlags::Int64:
Kevin Qinad64f6d2014-02-24 02:45:03 +0000378 if (IsAArch64)
379 return Flags.isUnsigned() ? Context.UnsignedLongTy : Context.LongTy;
380 else
381 return Flags.isUnsigned() ? Context.UnsignedLongLongTy
382 : Context.LongLongTy;
Bob Wilsone4d77232011-11-08 05:04:11 +0000383 case NeonTypeFlags::Poly8:
Kevin Qincaac85e2013-11-14 03:29:16 +0000384 return IsAArch64 ? Context.UnsignedCharTy : Context.SignedCharTy;
Bob Wilsone4d77232011-11-08 05:04:11 +0000385 case NeonTypeFlags::Poly16:
Kevin Qincaac85e2013-11-14 03:29:16 +0000386 return IsAArch64 ? Context.UnsignedShortTy : Context.ShortTy;
387 case NeonTypeFlags::Poly64:
Kevin Qinad64f6d2014-02-24 02:45:03 +0000388 return Context.UnsignedLongTy;
Kevin Qinfb79d7f2013-12-10 06:49:01 +0000389 case NeonTypeFlags::Poly128:
390 break;
Bob Wilsone4d77232011-11-08 05:04:11 +0000391 case NeonTypeFlags::Float16:
Kevin Qincaac85e2013-11-14 03:29:16 +0000392 return Context.HalfTy;
Bob Wilsone4d77232011-11-08 05:04:11 +0000393 case NeonTypeFlags::Float32:
394 return Context.FloatTy;
Tim Northover2fe823a2013-08-01 09:23:19 +0000395 case NeonTypeFlags::Float64:
396 return Context.DoubleTy;
Bob Wilsone4d77232011-11-08 05:04:11 +0000397 }
David Blaikie8a40f702012-01-17 06:56:22 +0000398 llvm_unreachable("Invalid NeonTypeFlag!");
Bob Wilsone4d77232011-11-08 05:04:11 +0000399}
400
Tim Northover12670412014-02-19 10:37:05 +0000401bool Sema::CheckNeonBuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
Tim Northover2fe823a2013-08-01 09:23:19 +0000402 llvm::APSInt Result;
Tim Northover2fe823a2013-08-01 09:23:19 +0000403 uint64_t mask = 0;
404 unsigned TV = 0;
405 int PtrArgNum = -1;
406 bool HasConstPtr = false;
407 switch (BuiltinID) {
Tim Northover12670412014-02-19 10:37:05 +0000408#define GET_NEON_OVERLOAD_CHECK
Tim Northover2fe823a2013-08-01 09:23:19 +0000409#include "clang/Basic/arm_neon.inc"
Tim Northover12670412014-02-19 10:37:05 +0000410#undef GET_NEON_OVERLOAD_CHECK
Tim Northover2fe823a2013-08-01 09:23:19 +0000411 }
412
413 // For NEON intrinsics which are overloaded on vector element type, validate
414 // the immediate which specifies which variant to emit.
Tim Northover12670412014-02-19 10:37:05 +0000415 unsigned ImmArg = TheCall->getNumArgs()-1;
Tim Northover2fe823a2013-08-01 09:23:19 +0000416 if (mask) {
417 if (SemaBuiltinConstantArg(TheCall, ImmArg, Result))
418 return true;
419
420 TV = Result.getLimitedValue(64);
421 if ((TV > 63) || (mask & (1ULL << TV)) == 0)
422 return Diag(TheCall->getLocStart(), diag::err_invalid_neon_type_code)
Tim Northover12670412014-02-19 10:37:05 +0000423 << TheCall->getArg(ImmArg)->getSourceRange();
Tim Northover2fe823a2013-08-01 09:23:19 +0000424 }
425
426 if (PtrArgNum >= 0) {
427 // Check that pointer arguments have the specified type.
428 Expr *Arg = TheCall->getArg(PtrArgNum);
429 if (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(Arg))
430 Arg = ICE->getSubExpr();
431 ExprResult RHS = DefaultFunctionArrayLvalueConversion(Arg);
432 QualType RHSTy = RHS.get()->getType();
Tim Northover12670412014-02-19 10:37:05 +0000433
434 bool IsAArch64 =
435 Context.getTargetInfo().getTriple().getArch() == llvm::Triple::aarch64;
436 QualType EltTy = getNeonEltType(NeonTypeFlags(TV), Context, IsAArch64);
Tim Northover2fe823a2013-08-01 09:23:19 +0000437 if (HasConstPtr)
438 EltTy = EltTy.withConst();
439 QualType LHSTy = Context.getPointerType(EltTy);
440 AssignConvertType ConvTy;
441 ConvTy = CheckSingleAssignmentConstraints(LHSTy, RHS);
442 if (RHS.isInvalid())
443 return true;
444 if (DiagnoseAssignmentResult(ConvTy, Arg->getLocStart(), LHSTy, RHSTy,
445 RHS.get(), AA_Assigning))
446 return true;
447 }
448
449 // For NEON intrinsics which take an immediate value as part of the
450 // instruction, range check them here.
451 unsigned i = 0, l = 0, u = 0;
452 switch (BuiltinID) {
453 default:
454 return false;
Tim Northover12670412014-02-19 10:37:05 +0000455#define GET_NEON_IMMEDIATE_CHECK
Tim Northover2fe823a2013-08-01 09:23:19 +0000456#include "clang/Basic/arm_neon.inc"
Tim Northover12670412014-02-19 10:37:05 +0000457#undef GET_NEON_IMMEDIATE_CHECK
Tim Northover2fe823a2013-08-01 09:23:19 +0000458 }
459 ;
460
461 // We can't check the value of a dependent argument.
462 if (TheCall->getArg(i)->isTypeDependent() ||
463 TheCall->getArg(i)->isValueDependent())
464 return false;
465
466 // Check that the immediate argument is actually a constant.
467 if (SemaBuiltinConstantArg(TheCall, i, Result))
468 return true;
469
470 // Range check against the upper/lower values for this isntruction.
471 unsigned Val = Result.getZExtValue();
472 if (Val < l || Val > (u + l))
473 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
474 << l << u + l << TheCall->getArg(i)->getSourceRange();
475
476 return false;
477}
478
Tim Northover12670412014-02-19 10:37:05 +0000479bool Sema::CheckAArch64BuiltinFunctionCall(unsigned BuiltinID,
480 CallExpr *TheCall) {
481 if (CheckNeonBuiltinFunctionCall(BuiltinID, TheCall))
482 return true;
483
484 return false;
485}
486
Tim Northover6aacd492013-07-16 09:47:53 +0000487bool Sema::CheckARMBuiltinExclusiveCall(unsigned BuiltinID, CallExpr *TheCall) {
488 assert((BuiltinID == ARM::BI__builtin_arm_ldrex ||
489 BuiltinID == ARM::BI__builtin_arm_strex) &&
490 "unexpected ARM builtin");
491 bool IsLdrex = BuiltinID == ARM::BI__builtin_arm_ldrex;
492
493 DeclRefExpr *DRE =cast<DeclRefExpr>(TheCall->getCallee()->IgnoreParenCasts());
494
495 // Ensure that we have the proper number of arguments.
496 if (checkArgCount(*this, TheCall, IsLdrex ? 1 : 2))
497 return true;
498
499 // Inspect the pointer argument of the atomic builtin. This should always be
500 // a pointer type, whose element is an integral scalar or pointer type.
501 // Because it is a pointer type, we don't have to worry about any implicit
502 // casts here.
503 Expr *PointerArg = TheCall->getArg(IsLdrex ? 0 : 1);
504 ExprResult PointerArgRes = DefaultFunctionArrayLvalueConversion(PointerArg);
505 if (PointerArgRes.isInvalid())
506 return true;
507 PointerArg = PointerArgRes.take();
508
509 const PointerType *pointerType = PointerArg->getType()->getAs<PointerType>();
510 if (!pointerType) {
511 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer)
512 << PointerArg->getType() << PointerArg->getSourceRange();
513 return true;
514 }
515
516 // ldrex takes a "const volatile T*" and strex takes a "volatile T*". Our next
517 // task is to insert the appropriate casts into the AST. First work out just
518 // what the appropriate type is.
519 QualType ValType = pointerType->getPointeeType();
520 QualType AddrType = ValType.getUnqualifiedType().withVolatile();
521 if (IsLdrex)
522 AddrType.addConst();
523
524 // Issue a warning if the cast is dodgy.
525 CastKind CastNeeded = CK_NoOp;
526 if (!AddrType.isAtLeastAsQualifiedAs(ValType)) {
527 CastNeeded = CK_BitCast;
528 Diag(DRE->getLocStart(), diag::ext_typecheck_convert_discards_qualifiers)
529 << PointerArg->getType()
530 << Context.getPointerType(AddrType)
531 << AA_Passing << PointerArg->getSourceRange();
532 }
533
534 // Finally, do the cast and replace the argument with the corrected version.
535 AddrType = Context.getPointerType(AddrType);
536 PointerArgRes = ImpCastExprToType(PointerArg, AddrType, CastNeeded);
537 if (PointerArgRes.isInvalid())
538 return true;
539 PointerArg = PointerArgRes.take();
540
541 TheCall->setArg(IsLdrex ? 0 : 1, PointerArg);
542
543 // In general, we allow ints, floats and pointers to be loaded and stored.
544 if (!ValType->isIntegerType() && !ValType->isAnyPointerType() &&
545 !ValType->isBlockPointerType() && !ValType->isFloatingType()) {
546 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer_intfltptr)
547 << PointerArg->getType() << PointerArg->getSourceRange();
548 return true;
549 }
550
551 // But ARM doesn't have instructions to deal with 128-bit versions.
552 if (Context.getTypeSize(ValType) > 64) {
553 Diag(DRE->getLocStart(), diag::err_atomic_exclusive_builtin_pointer_size)
554 << PointerArg->getType() << PointerArg->getSourceRange();
555 return true;
556 }
557
558 switch (ValType.getObjCLifetime()) {
559 case Qualifiers::OCL_None:
560 case Qualifiers::OCL_ExplicitNone:
561 // okay
562 break;
563
564 case Qualifiers::OCL_Weak:
565 case Qualifiers::OCL_Strong:
566 case Qualifiers::OCL_Autoreleasing:
567 Diag(DRE->getLocStart(), diag::err_arc_atomic_ownership)
568 << ValType << PointerArg->getSourceRange();
569 return true;
570 }
571
572
573 if (IsLdrex) {
574 TheCall->setType(ValType);
575 return false;
576 }
577
578 // Initialize the argument to be stored.
579 ExprResult ValArg = TheCall->getArg(0);
580 InitializedEntity Entity = InitializedEntity::InitializeParameter(
581 Context, ValType, /*consume*/ false);
582 ValArg = PerformCopyInitialization(Entity, SourceLocation(), ValArg);
583 if (ValArg.isInvalid())
584 return true;
Tim Northover6aacd492013-07-16 09:47:53 +0000585 TheCall->setArg(0, ValArg.get());
Tim Northover58d2bb12013-10-29 12:32:58 +0000586
587 // __builtin_arm_strex always returns an int. It's marked as such in the .def,
588 // but the custom checker bypasses all default analysis.
589 TheCall->setType(Context.IntTy);
Tim Northover6aacd492013-07-16 09:47:53 +0000590 return false;
591}
592
Nate Begeman4904e322010-06-08 02:47:44 +0000593bool Sema::CheckARMBuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
Nate Begeman55483092010-06-09 01:10:23 +0000594 llvm::APSInt Result;
595
Tim Northover6aacd492013-07-16 09:47:53 +0000596 if (BuiltinID == ARM::BI__builtin_arm_ldrex ||
597 BuiltinID == ARM::BI__builtin_arm_strex) {
598 return CheckARMBuiltinExclusiveCall(BuiltinID, TheCall);
599 }
600
Tim Northover12670412014-02-19 10:37:05 +0000601 if (CheckNeonBuiltinFunctionCall(BuiltinID, TheCall))
602 return true;
Nico Weber0e6daef2013-12-26 23:38:39 +0000603
Bob Wilsond836d3d2014-03-09 23:02:27 +0000604 // For NEON intrinsics which take an immediate value as part of the
Nate Begemand773fe62010-06-13 04:47:52 +0000605 // instruction, range check them here.
Nate Begeman91e1fea2010-06-14 05:21:25 +0000606 unsigned i = 0, l = 0, u = 0;
Nate Begemand773fe62010-06-13 04:47:52 +0000607 switch (BuiltinID) {
608 default: return false;
Nate Begeman1194bd22010-07-29 22:48:34 +0000609 case ARM::BI__builtin_arm_ssat: i = 1; l = 1; u = 31; break;
610 case ARM::BI__builtin_arm_usat: i = 1; u = 31; break;
Nate Begemanf568b072010-08-03 21:32:34 +0000611 case ARM::BI__builtin_arm_vcvtr_f:
612 case ARM::BI__builtin_arm_vcvtr_d: i = 1; u = 1; break;
Weiming Zhao87bb4922013-11-12 21:42:50 +0000613 case ARM::BI__builtin_arm_dmb:
614 case ARM::BI__builtin_arm_dsb: l = 0; u = 15; break;
Nate Begemand773fe62010-06-13 04:47:52 +0000615 };
616
Douglas Gregor98c3cfc2012-06-29 01:05:22 +0000617 // We can't check the value of a dependent argument.
618 if (TheCall->getArg(i)->isTypeDependent() ||
619 TheCall->getArg(i)->isValueDependent())
620 return false;
621
Nate Begeman91e1fea2010-06-14 05:21:25 +0000622 // Check that the immediate argument is actually a constant.
Nate Begemand773fe62010-06-13 04:47:52 +0000623 if (SemaBuiltinConstantArg(TheCall, i, Result))
624 return true;
625
Nate Begeman91e1fea2010-06-14 05:21:25 +0000626 // Range check against the upper/lower values for this isntruction.
Nate Begemand773fe62010-06-13 04:47:52 +0000627 unsigned Val = Result.getZExtValue();
Nate Begeman91e1fea2010-06-14 05:21:25 +0000628 if (Val < l || Val > (u + l))
Nate Begemand773fe62010-06-13 04:47:52 +0000629 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
Benjamin Kramere8394df2010-08-11 14:47:12 +0000630 << l << u+l << TheCall->getArg(i)->getSourceRange();
Nate Begemand773fe62010-06-13 04:47:52 +0000631
Nate Begemanf568b072010-08-03 21:32:34 +0000632 // FIXME: VFP Intrinsics should error if VFP not present.
Nate Begeman4904e322010-06-08 02:47:44 +0000633 return false;
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000634}
Daniel Dunbardd9b2d12008-10-02 18:44:07 +0000635
Simon Atanasyanecedf3d2012-07-08 09:30:00 +0000636bool Sema::CheckMipsBuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
637 unsigned i = 0, l = 0, u = 0;
638 switch (BuiltinID) {
639 default: return false;
640 case Mips::BI__builtin_mips_wrdsp: i = 1; l = 0; u = 63; break;
641 case Mips::BI__builtin_mips_rddsp: i = 0; l = 0; u = 63; break;
Simon Atanasyan8f06f2f2012-08-27 12:29:20 +0000642 case Mips::BI__builtin_mips_append: i = 2; l = 0; u = 31; break;
643 case Mips::BI__builtin_mips_balign: i = 2; l = 0; u = 3; break;
644 case Mips::BI__builtin_mips_precr_sra_ph_w: i = 2; l = 0; u = 31; break;
645 case Mips::BI__builtin_mips_precr_sra_r_ph_w: i = 2; l = 0; u = 31; break;
646 case Mips::BI__builtin_mips_prepend: i = 2; l = 0; u = 31; break;
Simon Atanasyanecedf3d2012-07-08 09:30:00 +0000647 };
648
649 // We can't check the value of a dependent argument.
650 if (TheCall->getArg(i)->isTypeDependent() ||
651 TheCall->getArg(i)->isValueDependent())
652 return false;
653
654 // Check that the immediate argument is actually a constant.
655 llvm::APSInt Result;
656 if (SemaBuiltinConstantArg(TheCall, i, Result))
657 return true;
658
659 // Range check against the upper/lower values for this instruction.
660 unsigned Val = Result.getZExtValue();
661 if (Val < l || Val > u)
662 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
663 << l << u << TheCall->getArg(i)->getSourceRange();
664
665 return false;
666}
667
Warren Hunt20e4a5d2014-02-21 23:08:53 +0000668bool Sema::CheckX86BuiltinFunctionCall(unsigned BuiltinID, CallExpr *TheCall) {
669 switch (BuiltinID) {
670 case X86::BI_mm_prefetch:
671 return SemaBuiltinMMPrefetch(TheCall);
Warren Hunt20e4a5d2014-02-21 23:08:53 +0000672 }
673 return false;
674}
675
Richard Smith55ce3522012-06-25 20:30:08 +0000676/// Given a FunctionDecl's FormatAttr, attempts to populate the FomatStringInfo
677/// parameter with the FormatAttr's correct format_idx and firstDataArg.
678/// Returns true when the format fits the function and the FormatStringInfo has
679/// been populated.
680bool Sema::getFormatStringInfo(const FormatAttr *Format, bool IsCXXMember,
681 FormatStringInfo *FSI) {
682 FSI->HasVAListArg = Format->getFirstArg() == 0;
683 FSI->FormatIdx = Format->getFormatIdx() - 1;
684 FSI->FirstDataArg = FSI->HasVAListArg ? 0 : Format->getFirstArg() - 1;
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000685
Richard Smith55ce3522012-06-25 20:30:08 +0000686 // The way the format attribute works in GCC, the implicit this argument
687 // of member functions is counted. However, it doesn't appear in our own
688 // lists, so decrement format_idx in that case.
689 if (IsCXXMember) {
690 if(FSI->FormatIdx == 0)
691 return false;
692 --FSI->FormatIdx;
693 if (FSI->FirstDataArg != 0)
694 --FSI->FirstDataArg;
695 }
696 return true;
697}
Mike Stump11289f42009-09-09 15:08:12 +0000698
Ted Kremenekef9e7f82014-01-22 06:10:28 +0000699/// Checks if a the given expression evaluates to null.
700///
701/// \brief Returns true if the value evaluates to null.
702static bool CheckNonNullExpr(Sema &S,
703 const Expr *Expr) {
Ted Kremeneka146db32014-01-17 06:24:47 +0000704 // As a special case, transparent unions initialized with zero are
705 // considered null for the purposes of the nonnull attribute.
Ted Kremenekef9e7f82014-01-22 06:10:28 +0000706 if (const RecordType *UT = Expr->getType()->getAsUnionType()) {
Ted Kremeneka146db32014-01-17 06:24:47 +0000707 if (UT->getDecl()->hasAttr<TransparentUnionAttr>())
708 if (const CompoundLiteralExpr *CLE =
Ted Kremenekef9e7f82014-01-22 06:10:28 +0000709 dyn_cast<CompoundLiteralExpr>(Expr))
Ted Kremeneka146db32014-01-17 06:24:47 +0000710 if (const InitListExpr *ILE =
711 dyn_cast<InitListExpr>(CLE->getInitializer()))
Ted Kremenekef9e7f82014-01-22 06:10:28 +0000712 Expr = ILE->getInit(0);
Ted Kremeneka146db32014-01-17 06:24:47 +0000713 }
714
715 bool Result;
Artyom Skrobov9f213442014-01-24 11:10:39 +0000716 return (!Expr->isValueDependent() &&
717 Expr->EvaluateAsBooleanCondition(Result, S.Context) &&
718 !Result);
Ted Kremenekef9e7f82014-01-22 06:10:28 +0000719}
720
721static void CheckNonNullArgument(Sema &S,
722 const Expr *ArgExpr,
723 SourceLocation CallSiteLoc) {
724 if (CheckNonNullExpr(S, ArgExpr))
Ted Kremeneka146db32014-01-17 06:24:47 +0000725 S.Diag(CallSiteLoc, diag::warn_null_arg) << ArgExpr->getSourceRange();
726}
727
Ted Kremenek2bc73332014-01-17 06:24:43 +0000728static void CheckNonNullArguments(Sema &S,
Ted Kremeneka146db32014-01-17 06:24:47 +0000729 const NamedDecl *FDecl,
Ted Kremenek2bc73332014-01-17 06:24:43 +0000730 const Expr * const *ExprArgs,
731 SourceLocation CallSiteLoc) {
Ted Kremenek9aedc152014-01-17 06:24:56 +0000732 // Check the attributes attached to the method/function itself.
Aaron Ballmanbe22bcb2014-03-10 17:08:28 +0000733 for (const auto *NonNull : FDecl->specific_attrs<NonNullAttr>()) {
Ted Kremeneka146db32014-01-17 06:24:47 +0000734 for (NonNullAttr::args_iterator i = NonNull->args_begin(),
735 e = NonNull->args_end();
736 i != e; ++i) {
737 CheckNonNullArgument(S, ExprArgs[*i], CallSiteLoc);
Ted Kremenek2bc73332014-01-17 06:24:43 +0000738 }
Ted Kremenek2bc73332014-01-17 06:24:43 +0000739 }
Ted Kremenek9aedc152014-01-17 06:24:56 +0000740
741 // Check the attributes on the parameters.
742 ArrayRef<ParmVarDecl*> parms;
743 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(FDecl))
744 parms = FD->parameters();
745 else if (const ObjCMethodDecl *MD = dyn_cast<ObjCMethodDecl>(FDecl))
746 parms = MD->parameters();
747
748 unsigned argIndex = 0;
749 for (ArrayRef<ParmVarDecl*>::iterator I = parms.begin(), E = parms.end();
750 I != E; ++I, ++argIndex) {
751 const ParmVarDecl *PVD = *I;
752 if (PVD->hasAttr<NonNullAttr>())
753 CheckNonNullArgument(S, ExprArgs[argIndex], CallSiteLoc);
754 }
Ted Kremenek2bc73332014-01-17 06:24:43 +0000755}
756
Richard Smith55ce3522012-06-25 20:30:08 +0000757/// Handles the checks for format strings, non-POD arguments to vararg
758/// functions, and NULL arguments passed to non-NULL parameters.
Alp Toker9cacbab2014-01-20 20:26:09 +0000759void Sema::checkCall(NamedDecl *FDecl, ArrayRef<const Expr *> Args,
760 unsigned NumParams, bool IsMemberFunction,
761 SourceLocation Loc, SourceRange Range,
Richard Smith55ce3522012-06-25 20:30:08 +0000762 VariadicCallType CallType) {
Richard Smithd7293d72013-08-05 18:49:43 +0000763 // FIXME: We should check as much as we can in the template definition.
Jordan Rose3c14b232012-10-02 01:49:54 +0000764 if (CurContext->isDependentContext())
765 return;
Daniel Dunbardd9b2d12008-10-02 18:44:07 +0000766
Ted Kremenekb8176da2010-09-09 04:33:05 +0000767 // Printf and scanf checking.
Richard Smithd7293d72013-08-05 18:49:43 +0000768 llvm::SmallBitVector CheckedVarArgs;
769 if (FDecl) {
Aaron Ballmanbe22bcb2014-03-10 17:08:28 +0000770 for (const auto *I : FDecl->specific_attrs<FormatAttr>()) {
Benjamin Kramer989ab8b2013-08-09 09:39:17 +0000771 // Only create vector if there are format attributes.
772 CheckedVarArgs.resize(Args.size());
773
Aaron Ballmanbe22bcb2014-03-10 17:08:28 +0000774 CheckFormatArguments(I, Args, IsMemberFunction, CallType, Loc, Range,
Benjamin Kramerf62e81d2013-08-08 11:08:26 +0000775 CheckedVarArgs);
Benjamin Kramer989ab8b2013-08-09 09:39:17 +0000776 }
Richard Smithd7293d72013-08-05 18:49:43 +0000777 }
Richard Smith55ce3522012-06-25 20:30:08 +0000778
779 // Refuse POD arguments that weren't caught by the format string
780 // checks above.
Richard Smithd7293d72013-08-05 18:49:43 +0000781 if (CallType != VariadicDoesNotApply) {
Alp Toker9cacbab2014-01-20 20:26:09 +0000782 for (unsigned ArgIdx = NumParams; ArgIdx < Args.size(); ++ArgIdx) {
Ted Kremenek241f1ef2012-10-11 19:06:43 +0000783 // Args[ArgIdx] can be null in malformed code.
Richard Smithd7293d72013-08-05 18:49:43 +0000784 if (const Expr *Arg = Args[ArgIdx]) {
785 if (CheckedVarArgs.empty() || !CheckedVarArgs[ArgIdx])
786 checkVariadicArgument(Arg, CallType);
787 }
Ted Kremenek241f1ef2012-10-11 19:06:43 +0000788 }
Richard Smithd7293d72013-08-05 18:49:43 +0000789 }
Mike Stump11289f42009-09-09 15:08:12 +0000790
Richard Trieu41bc0992013-06-22 00:20:41 +0000791 if (FDecl) {
Ted Kremeneka146db32014-01-17 06:24:47 +0000792 CheckNonNullArguments(*this, FDecl, Args.data(), Loc);
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +0000793
Richard Trieu41bc0992013-06-22 00:20:41 +0000794 // Type safety checking.
Aaron Ballmanbe22bcb2014-03-10 17:08:28 +0000795 for (const auto *I : FDecl->specific_attrs<ArgumentWithTypeTagAttr>())
796 CheckArgumentWithTypeTag(I, Args.data());
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +0000797 }
Richard Smith55ce3522012-06-25 20:30:08 +0000798}
799
800/// CheckConstructorCall - Check a constructor call for correctness and safety
801/// properties not enforced by the C type system.
Dmitri Gribenko765396f2013-01-13 20:46:02 +0000802void Sema::CheckConstructorCall(FunctionDecl *FDecl,
803 ArrayRef<const Expr *> Args,
Richard Smith55ce3522012-06-25 20:30:08 +0000804 const FunctionProtoType *Proto,
805 SourceLocation Loc) {
806 VariadicCallType CallType =
807 Proto->isVariadic() ? VariadicConstructor : VariadicDoesNotApply;
Alp Toker9cacbab2014-01-20 20:26:09 +0000808 checkCall(FDecl, Args, Proto->getNumParams(),
Richard Smith55ce3522012-06-25 20:30:08 +0000809 /*IsMemberFunction=*/true, Loc, SourceRange(), CallType);
810}
811
812/// CheckFunctionCall - Check a direct function call for various correctness
813/// and safety properties not strictly enforced by the C type system.
814bool Sema::CheckFunctionCall(FunctionDecl *FDecl, CallExpr *TheCall,
815 const FunctionProtoType *Proto) {
Eli Friedman726d11c2012-10-11 00:30:58 +0000816 bool IsMemberOperatorCall = isa<CXXOperatorCallExpr>(TheCall) &&
817 isa<CXXMethodDecl>(FDecl);
818 bool IsMemberFunction = isa<CXXMemberCallExpr>(TheCall) ||
819 IsMemberOperatorCall;
Richard Smith55ce3522012-06-25 20:30:08 +0000820 VariadicCallType CallType = getVariadicCallType(FDecl, Proto,
821 TheCall->getCallee());
Alp Toker9cacbab2014-01-20 20:26:09 +0000822 unsigned NumParams = Proto ? Proto->getNumParams() : 0;
Eli Friedman726d11c2012-10-11 00:30:58 +0000823 Expr** Args = TheCall->getArgs();
824 unsigned NumArgs = TheCall->getNumArgs();
Eli Friedmanadf42182012-10-11 00:34:15 +0000825 if (IsMemberOperatorCall) {
Eli Friedman726d11c2012-10-11 00:30:58 +0000826 // If this is a call to a member operator, hide the first argument
827 // from checkCall.
828 // FIXME: Our choice of AST representation here is less than ideal.
829 ++Args;
830 --NumArgs;
831 }
Alp Toker9cacbab2014-01-20 20:26:09 +0000832 checkCall(FDecl, llvm::makeArrayRef<const Expr *>(Args, NumArgs), NumParams,
Richard Smith55ce3522012-06-25 20:30:08 +0000833 IsMemberFunction, TheCall->getRParenLoc(),
834 TheCall->getCallee()->getSourceRange(), CallType);
835
836 IdentifierInfo *FnInfo = FDecl->getIdentifier();
837 // None of the checks below are needed for functions that don't have
838 // simple names (e.g., C++ conversion functions).
839 if (!FnInfo)
840 return false;
Sebastian Redlc215cfc2009-01-19 00:08:26 +0000841
Richard Trieu7eb0b2c2014-02-26 01:17:28 +0000842 CheckAbsoluteValueFunction(TheCall, FDecl, FnInfo);
843
Anna Zaks22122702012-01-17 00:37:07 +0000844 unsigned CMId = FDecl->getMemoryFunctionKind();
845 if (CMId == 0)
Anna Zaks201d4892012-01-13 21:52:01 +0000846 return false;
Ted Kremenek6865f772011-08-18 20:55:45 +0000847
Anna Zaks201d4892012-01-13 21:52:01 +0000848 // Handle memory setting and copying functions.
Anna Zaks22122702012-01-17 00:37:07 +0000849 if (CMId == Builtin::BIstrlcpy || CMId == Builtin::BIstrlcat)
Ted Kremenek6865f772011-08-18 20:55:45 +0000850 CheckStrlcpycatArguments(TheCall, FnInfo);
Anna Zaks314cd092012-02-01 19:08:57 +0000851 else if (CMId == Builtin::BIstrncat)
852 CheckStrncatArguments(TheCall, FnInfo);
Anna Zaks201d4892012-01-13 21:52:01 +0000853 else
Anna Zaks22122702012-01-17 00:37:07 +0000854 CheckMemaccessArguments(TheCall, CMId, FnInfo);
Chandler Carruth53caa4d2011-04-27 07:05:31 +0000855
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000856 return false;
Anders Carlsson98f07902007-08-17 05:31:46 +0000857}
858
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +0000859bool Sema::CheckObjCMethodCall(ObjCMethodDecl *Method, SourceLocation lbrac,
Dmitri Gribenko1debc462013-05-05 19:42:09 +0000860 ArrayRef<const Expr *> Args) {
Richard Smith55ce3522012-06-25 20:30:08 +0000861 VariadicCallType CallType =
862 Method->isVariadic() ? VariadicMethod : VariadicDoesNotApply;
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +0000863
Dmitri Gribenko1debc462013-05-05 19:42:09 +0000864 checkCall(Method, Args, Method->param_size(),
Richard Smith55ce3522012-06-25 20:30:08 +0000865 /*IsMemberFunction=*/false,
866 lbrac, Method->getSourceRange(), CallType);
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +0000867
868 return false;
869}
870
Richard Trieu664c4c62013-06-20 21:03:13 +0000871bool Sema::CheckPointerCall(NamedDecl *NDecl, CallExpr *TheCall,
872 const FunctionProtoType *Proto) {
Fariborz Jahanianc1585be2009-05-18 21:05:18 +0000873 const VarDecl *V = dyn_cast<VarDecl>(NDecl);
874 if (!V)
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000875 return false;
Mike Stump11289f42009-09-09 15:08:12 +0000876
Fariborz Jahanianc1585be2009-05-18 21:05:18 +0000877 QualType Ty = V->getType();
Richard Trieu664c4c62013-06-20 21:03:13 +0000878 if (!Ty->isBlockPointerType() && !Ty->isFunctionPointerType())
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000879 return false;
Mike Stump11289f42009-09-09 15:08:12 +0000880
Richard Trieu664c4c62013-06-20 21:03:13 +0000881 VariadicCallType CallType;
Richard Trieu72ae1732013-06-20 23:21:54 +0000882 if (!Proto || !Proto->isVariadic()) {
Richard Trieu664c4c62013-06-20 21:03:13 +0000883 CallType = VariadicDoesNotApply;
884 } else if (Ty->isBlockPointerType()) {
885 CallType = VariadicBlock;
886 } else { // Ty->isFunctionPointerType()
887 CallType = VariadicFunction;
888 }
Alp Toker9cacbab2014-01-20 20:26:09 +0000889 unsigned NumParams = Proto ? Proto->getNumParams() : 0;
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000890
Alp Toker9cacbab2014-01-20 20:26:09 +0000891 checkCall(NDecl, llvm::makeArrayRef<const Expr *>(TheCall->getArgs(),
892 TheCall->getNumArgs()),
893 NumParams, /*IsMemberFunction=*/false, TheCall->getRParenLoc(),
Richard Smith55ce3522012-06-25 20:30:08 +0000894 TheCall->getCallee()->getSourceRange(), CallType);
Alp Toker9cacbab2014-01-20 20:26:09 +0000895
Anders Carlssonbc4c1072009-08-16 01:56:34 +0000896 return false;
Fariborz Jahanianc1585be2009-05-18 21:05:18 +0000897}
898
Richard Trieu41bc0992013-06-22 00:20:41 +0000899/// Checks function calls when a FunctionDecl or a NamedDecl is not available,
900/// such as function pointers returned from functions.
901bool Sema::CheckOtherCall(CallExpr *TheCall, const FunctionProtoType *Proto) {
902 VariadicCallType CallType = getVariadicCallType(/*FDecl=*/0, Proto,
903 TheCall->getCallee());
Alp Toker9cacbab2014-01-20 20:26:09 +0000904 unsigned NumParams = Proto ? Proto->getNumParams() : 0;
Richard Trieu41bc0992013-06-22 00:20:41 +0000905
Alp Toker9cacbab2014-01-20 20:26:09 +0000906 checkCall(/*FDecl=*/0, llvm::makeArrayRef<const Expr *>(
907 TheCall->getArgs(), TheCall->getNumArgs()),
908 NumParams, /*IsMemberFunction=*/false, TheCall->getRParenLoc(),
Richard Trieu41bc0992013-06-22 00:20:41 +0000909 TheCall->getCallee()->getSourceRange(), CallType);
910
911 return false;
912}
913
Tim Northovere94a34c2014-03-11 10:49:14 +0000914static bool isValidOrderingForOp(int64_t Ordering, AtomicExpr::AtomicOp Op) {
915 if (Ordering < AtomicExpr::AO_ABI_memory_order_relaxed ||
916 Ordering > AtomicExpr::AO_ABI_memory_order_seq_cst)
917 return false;
918
919 switch (Op) {
920 case AtomicExpr::AO__c11_atomic_init:
921 llvm_unreachable("There is no ordering argument for an init");
922
923 case AtomicExpr::AO__c11_atomic_load:
924 case AtomicExpr::AO__atomic_load_n:
925 case AtomicExpr::AO__atomic_load:
926 return Ordering != AtomicExpr::AO_ABI_memory_order_release &&
927 Ordering != AtomicExpr::AO_ABI_memory_order_acq_rel;
928
929 case AtomicExpr::AO__c11_atomic_store:
930 case AtomicExpr::AO__atomic_store:
931 case AtomicExpr::AO__atomic_store_n:
932 return Ordering != AtomicExpr::AO_ABI_memory_order_consume &&
933 Ordering != AtomicExpr::AO_ABI_memory_order_acquire &&
934 Ordering != AtomicExpr::AO_ABI_memory_order_acq_rel;
935
936 default:
937 return true;
938 }
939}
940
Richard Smithfeea8832012-04-12 05:08:17 +0000941ExprResult Sema::SemaAtomicOpsOverloaded(ExprResult TheCallResult,
942 AtomicExpr::AtomicOp Op) {
Eli Friedmandf14b3a2011-10-11 02:20:01 +0000943 CallExpr *TheCall = cast<CallExpr>(TheCallResult.get());
944 DeclRefExpr *DRE =cast<DeclRefExpr>(TheCall->getCallee()->IgnoreParenCasts());
Eli Friedmandf14b3a2011-10-11 02:20:01 +0000945
Richard Smithfeea8832012-04-12 05:08:17 +0000946 // All these operations take one of the following forms:
947 enum {
948 // C __c11_atomic_init(A *, C)
949 Init,
950 // C __c11_atomic_load(A *, int)
951 Load,
952 // void __atomic_load(A *, CP, int)
953 Copy,
954 // C __c11_atomic_add(A *, M, int)
955 Arithmetic,
956 // C __atomic_exchange_n(A *, CP, int)
957 Xchg,
958 // void __atomic_exchange(A *, C *, CP, int)
959 GNUXchg,
960 // bool __c11_atomic_compare_exchange_strong(A *, C *, CP, int, int)
961 C11CmpXchg,
962 // bool __atomic_compare_exchange(A *, C *, CP, bool, int, int)
963 GNUCmpXchg
964 } Form = Init;
965 const unsigned NumArgs[] = { 2, 2, 3, 3, 3, 4, 5, 6 };
966 const unsigned NumVals[] = { 1, 0, 1, 1, 1, 2, 2, 3 };
967 // where:
968 // C is an appropriate type,
969 // A is volatile _Atomic(C) for __c11 builtins and is C for GNU builtins,
970 // CP is C for __c11 builtins and GNU _n builtins and is C * otherwise,
971 // M is C if C is an integer, and ptrdiff_t if C is a pointer, and
972 // the int parameters are for orderings.
Eli Friedmandf14b3a2011-10-11 02:20:01 +0000973
Richard Smithfeea8832012-04-12 05:08:17 +0000974 assert(AtomicExpr::AO__c11_atomic_init == 0 &&
975 AtomicExpr::AO__c11_atomic_fetch_xor + 1 == AtomicExpr::AO__atomic_load
976 && "need to update code for modified C11 atomics");
977 bool IsC11 = Op >= AtomicExpr::AO__c11_atomic_init &&
978 Op <= AtomicExpr::AO__c11_atomic_fetch_xor;
979 bool IsN = Op == AtomicExpr::AO__atomic_load_n ||
980 Op == AtomicExpr::AO__atomic_store_n ||
981 Op == AtomicExpr::AO__atomic_exchange_n ||
982 Op == AtomicExpr::AO__atomic_compare_exchange_n;
983 bool IsAddSub = false;
984
985 switch (Op) {
986 case AtomicExpr::AO__c11_atomic_init:
987 Form = Init;
988 break;
989
990 case AtomicExpr::AO__c11_atomic_load:
991 case AtomicExpr::AO__atomic_load_n:
992 Form = Load;
993 break;
994
995 case AtomicExpr::AO__c11_atomic_store:
996 case AtomicExpr::AO__atomic_load:
997 case AtomicExpr::AO__atomic_store:
998 case AtomicExpr::AO__atomic_store_n:
999 Form = Copy;
1000 break;
1001
1002 case AtomicExpr::AO__c11_atomic_fetch_add:
1003 case AtomicExpr::AO__c11_atomic_fetch_sub:
1004 case AtomicExpr::AO__atomic_fetch_add:
1005 case AtomicExpr::AO__atomic_fetch_sub:
1006 case AtomicExpr::AO__atomic_add_fetch:
1007 case AtomicExpr::AO__atomic_sub_fetch:
1008 IsAddSub = true;
1009 // Fall through.
1010 case AtomicExpr::AO__c11_atomic_fetch_and:
1011 case AtomicExpr::AO__c11_atomic_fetch_or:
1012 case AtomicExpr::AO__c11_atomic_fetch_xor:
1013 case AtomicExpr::AO__atomic_fetch_and:
1014 case AtomicExpr::AO__atomic_fetch_or:
1015 case AtomicExpr::AO__atomic_fetch_xor:
Richard Smithd65cee92012-04-13 06:31:38 +00001016 case AtomicExpr::AO__atomic_fetch_nand:
Richard Smithfeea8832012-04-12 05:08:17 +00001017 case AtomicExpr::AO__atomic_and_fetch:
1018 case AtomicExpr::AO__atomic_or_fetch:
1019 case AtomicExpr::AO__atomic_xor_fetch:
Richard Smithd65cee92012-04-13 06:31:38 +00001020 case AtomicExpr::AO__atomic_nand_fetch:
Richard Smithfeea8832012-04-12 05:08:17 +00001021 Form = Arithmetic;
1022 break;
1023
1024 case AtomicExpr::AO__c11_atomic_exchange:
1025 case AtomicExpr::AO__atomic_exchange_n:
1026 Form = Xchg;
1027 break;
1028
1029 case AtomicExpr::AO__atomic_exchange:
1030 Form = GNUXchg;
1031 break;
1032
1033 case AtomicExpr::AO__c11_atomic_compare_exchange_strong:
1034 case AtomicExpr::AO__c11_atomic_compare_exchange_weak:
1035 Form = C11CmpXchg;
1036 break;
1037
1038 case AtomicExpr::AO__atomic_compare_exchange:
1039 case AtomicExpr::AO__atomic_compare_exchange_n:
1040 Form = GNUCmpXchg;
1041 break;
1042 }
1043
1044 // Check we have the right number of arguments.
1045 if (TheCall->getNumArgs() < NumArgs[Form]) {
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001046 Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args)
Richard Smithfeea8832012-04-12 05:08:17 +00001047 << 0 << NumArgs[Form] << TheCall->getNumArgs()
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001048 << TheCall->getCallee()->getSourceRange();
1049 return ExprError();
Richard Smithfeea8832012-04-12 05:08:17 +00001050 } else if (TheCall->getNumArgs() > NumArgs[Form]) {
1051 Diag(TheCall->getArg(NumArgs[Form])->getLocStart(),
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001052 diag::err_typecheck_call_too_many_args)
Richard Smithfeea8832012-04-12 05:08:17 +00001053 << 0 << NumArgs[Form] << TheCall->getNumArgs()
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001054 << TheCall->getCallee()->getSourceRange();
1055 return ExprError();
1056 }
1057
Richard Smithfeea8832012-04-12 05:08:17 +00001058 // Inspect the first argument of the atomic operation.
Eli Friedman8d3e43f2011-10-14 22:48:56 +00001059 Expr *Ptr = TheCall->getArg(0);
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001060 Ptr = DefaultFunctionArrayLvalueConversion(Ptr).get();
1061 const PointerType *pointerType = Ptr->getType()->getAs<PointerType>();
1062 if (!pointerType) {
Richard Smithfeea8832012-04-12 05:08:17 +00001063 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer)
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001064 << Ptr->getType() << Ptr->getSourceRange();
1065 return ExprError();
1066 }
1067
Richard Smithfeea8832012-04-12 05:08:17 +00001068 // For a __c11 builtin, this should be a pointer to an _Atomic type.
1069 QualType AtomTy = pointerType->getPointeeType(); // 'A'
1070 QualType ValType = AtomTy; // 'C'
1071 if (IsC11) {
1072 if (!AtomTy->isAtomicType()) {
1073 Diag(DRE->getLocStart(), diag::err_atomic_op_needs_atomic)
1074 << Ptr->getType() << Ptr->getSourceRange();
1075 return ExprError();
1076 }
Richard Smithe00921a2012-09-15 06:09:58 +00001077 if (AtomTy.isConstQualified()) {
1078 Diag(DRE->getLocStart(), diag::err_atomic_op_needs_non_const_atomic)
1079 << Ptr->getType() << Ptr->getSourceRange();
1080 return ExprError();
1081 }
Richard Smithfeea8832012-04-12 05:08:17 +00001082 ValType = AtomTy->getAs<AtomicType>()->getValueType();
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001083 }
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001084
Richard Smithfeea8832012-04-12 05:08:17 +00001085 // For an arithmetic operation, the implied arithmetic must be well-formed.
1086 if (Form == Arithmetic) {
1087 // gcc does not enforce these rules for GNU atomics, but we do so for sanity.
1088 if (IsAddSub && !ValType->isIntegerType() && !ValType->isPointerType()) {
1089 Diag(DRE->getLocStart(), diag::err_atomic_op_needs_atomic_int_or_ptr)
1090 << IsC11 << Ptr->getType() << Ptr->getSourceRange();
1091 return ExprError();
1092 }
1093 if (!IsAddSub && !ValType->isIntegerType()) {
1094 Diag(DRE->getLocStart(), diag::err_atomic_op_bitwise_needs_atomic_int)
1095 << IsC11 << Ptr->getType() << Ptr->getSourceRange();
1096 return ExprError();
1097 }
1098 } else if (IsN && !ValType->isIntegerType() && !ValType->isPointerType()) {
1099 // For __atomic_*_n operations, the value type must be a scalar integral or
1100 // pointer type which is 1, 2, 4, 8 or 16 bytes in length.
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001101 Diag(DRE->getLocStart(), diag::err_atomic_op_needs_atomic_int_or_ptr)
Richard Smithfeea8832012-04-12 05:08:17 +00001102 << IsC11 << Ptr->getType() << Ptr->getSourceRange();
1103 return ExprError();
1104 }
1105
Eli Friedmanaa769812013-09-11 03:49:34 +00001106 if (!IsC11 && !AtomTy.isTriviallyCopyableType(Context) &&
1107 !AtomTy->isScalarType()) {
Richard Smithfeea8832012-04-12 05:08:17 +00001108 // For GNU atomics, require a trivially-copyable type. This is not part of
1109 // the GNU atomics specification, but we enforce it for sanity.
1110 Diag(DRE->getLocStart(), diag::err_atomic_op_needs_trivial_copy)
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001111 << Ptr->getType() << Ptr->getSourceRange();
1112 return ExprError();
1113 }
1114
Richard Smithfeea8832012-04-12 05:08:17 +00001115 // FIXME: For any builtin other than a load, the ValType must not be
1116 // const-qualified.
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001117
1118 switch (ValType.getObjCLifetime()) {
1119 case Qualifiers::OCL_None:
1120 case Qualifiers::OCL_ExplicitNone:
1121 // okay
1122 break;
1123
1124 case Qualifiers::OCL_Weak:
1125 case Qualifiers::OCL_Strong:
1126 case Qualifiers::OCL_Autoreleasing:
Richard Smithfeea8832012-04-12 05:08:17 +00001127 // FIXME: Can this happen? By this point, ValType should be known
1128 // to be trivially copyable.
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001129 Diag(DRE->getLocStart(), diag::err_arc_atomic_ownership)
1130 << ValType << Ptr->getSourceRange();
1131 return ExprError();
1132 }
1133
1134 QualType ResultType = ValType;
Richard Smithfeea8832012-04-12 05:08:17 +00001135 if (Form == Copy || Form == GNUXchg || Form == Init)
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001136 ResultType = Context.VoidTy;
Richard Smithfeea8832012-04-12 05:08:17 +00001137 else if (Form == C11CmpXchg || Form == GNUCmpXchg)
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001138 ResultType = Context.BoolTy;
1139
Richard Smithfeea8832012-04-12 05:08:17 +00001140 // The type of a parameter passed 'by value'. In the GNU atomics, such
1141 // arguments are actually passed as pointers.
1142 QualType ByValType = ValType; // 'CP'
1143 if (!IsC11 && !IsN)
1144 ByValType = Ptr->getType();
1145
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001146 // The first argument --- the pointer --- has a fixed type; we
1147 // deduce the types of the rest of the arguments accordingly. Walk
1148 // the remaining arguments, converting them to the deduced value type.
Richard Smithfeea8832012-04-12 05:08:17 +00001149 for (unsigned i = 1; i != NumArgs[Form]; ++i) {
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001150 QualType Ty;
Richard Smithfeea8832012-04-12 05:08:17 +00001151 if (i < NumVals[Form] + 1) {
1152 switch (i) {
1153 case 1:
1154 // The second argument is the non-atomic operand. For arithmetic, this
1155 // is always passed by value, and for a compare_exchange it is always
1156 // passed by address. For the rest, GNU uses by-address and C11 uses
1157 // by-value.
1158 assert(Form != Load);
1159 if (Form == Init || (Form == Arithmetic && ValType->isIntegerType()))
1160 Ty = ValType;
1161 else if (Form == Copy || Form == Xchg)
1162 Ty = ByValType;
1163 else if (Form == Arithmetic)
1164 Ty = Context.getPointerDiffType();
1165 else
1166 Ty = Context.getPointerType(ValType.getUnqualifiedType());
1167 break;
1168 case 2:
1169 // The third argument to compare_exchange / GNU exchange is a
1170 // (pointer to a) desired value.
1171 Ty = ByValType;
1172 break;
1173 case 3:
1174 // The fourth argument to GNU compare_exchange is a 'weak' flag.
1175 Ty = Context.BoolTy;
1176 break;
1177 }
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001178 } else {
1179 // The order(s) are always converted to int.
1180 Ty = Context.IntTy;
1181 }
Richard Smithfeea8832012-04-12 05:08:17 +00001182
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001183 InitializedEntity Entity =
1184 InitializedEntity::InitializeParameter(Context, Ty, false);
Richard Smithfeea8832012-04-12 05:08:17 +00001185 ExprResult Arg = TheCall->getArg(i);
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001186 Arg = PerformCopyInitialization(Entity, SourceLocation(), Arg);
1187 if (Arg.isInvalid())
1188 return true;
1189 TheCall->setArg(i, Arg.get());
1190 }
1191
Richard Smithfeea8832012-04-12 05:08:17 +00001192 // Permute the arguments into a 'consistent' order.
Eli Friedman8d3e43f2011-10-14 22:48:56 +00001193 SmallVector<Expr*, 5> SubExprs;
1194 SubExprs.push_back(Ptr);
Richard Smithfeea8832012-04-12 05:08:17 +00001195 switch (Form) {
1196 case Init:
1197 // Note, AtomicExpr::getVal1() has a special case for this atomic.
David Chisnallfa35df62012-01-16 17:27:18 +00001198 SubExprs.push_back(TheCall->getArg(1)); // Val1
Richard Smithfeea8832012-04-12 05:08:17 +00001199 break;
1200 case Load:
1201 SubExprs.push_back(TheCall->getArg(1)); // Order
1202 break;
1203 case Copy:
1204 case Arithmetic:
1205 case Xchg:
Eli Friedman8d3e43f2011-10-14 22:48:56 +00001206 SubExprs.push_back(TheCall->getArg(2)); // Order
1207 SubExprs.push_back(TheCall->getArg(1)); // Val1
Richard Smithfeea8832012-04-12 05:08:17 +00001208 break;
1209 case GNUXchg:
1210 // Note, AtomicExpr::getVal2() has a special case for this atomic.
1211 SubExprs.push_back(TheCall->getArg(3)); // Order
1212 SubExprs.push_back(TheCall->getArg(1)); // Val1
1213 SubExprs.push_back(TheCall->getArg(2)); // Val2
1214 break;
1215 case C11CmpXchg:
Eli Friedman8d3e43f2011-10-14 22:48:56 +00001216 SubExprs.push_back(TheCall->getArg(3)); // Order
1217 SubExprs.push_back(TheCall->getArg(1)); // Val1
Eli Friedman8d3e43f2011-10-14 22:48:56 +00001218 SubExprs.push_back(TheCall->getArg(4)); // OrderFail
David Chisnall891ec282012-03-29 17:58:59 +00001219 SubExprs.push_back(TheCall->getArg(2)); // Val2
Richard Smithfeea8832012-04-12 05:08:17 +00001220 break;
1221 case GNUCmpXchg:
1222 SubExprs.push_back(TheCall->getArg(4)); // Order
1223 SubExprs.push_back(TheCall->getArg(1)); // Val1
1224 SubExprs.push_back(TheCall->getArg(5)); // OrderFail
1225 SubExprs.push_back(TheCall->getArg(2)); // Val2
1226 SubExprs.push_back(TheCall->getArg(3)); // Weak
1227 break;
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001228 }
Tim Northovere94a34c2014-03-11 10:49:14 +00001229
1230 if (SubExprs.size() >= 2 && Form != Init) {
1231 llvm::APSInt Result(32);
1232 if (SubExprs[1]->isIntegerConstantExpr(Result, Context) &&
1233 !isValidOrderingForOp(Result.getSExtValue(), Op))
Tim Northoverc83472e2014-03-11 11:35:10 +00001234 Diag(SubExprs[1]->getLocStart(),
1235 diag::warn_atomic_op_has_invalid_memory_order)
1236 << SubExprs[1]->getSourceRange();
Tim Northovere94a34c2014-03-11 10:49:14 +00001237 }
1238
Fariborz Jahanian615de762013-05-28 17:37:39 +00001239 AtomicExpr *AE = new (Context) AtomicExpr(TheCall->getCallee()->getLocStart(),
1240 SubExprs, ResultType, Op,
1241 TheCall->getRParenLoc());
1242
1243 if ((Op == AtomicExpr::AO__c11_atomic_load ||
1244 (Op == AtomicExpr::AO__c11_atomic_store)) &&
1245 Context.AtomicUsesUnsupportedLibcall(AE))
1246 Diag(AE->getLocStart(), diag::err_atomic_load_store_uses_lib) <<
1247 ((Op == AtomicExpr::AO__c11_atomic_load) ? 0 : 1);
Eli Friedman8d3e43f2011-10-14 22:48:56 +00001248
Fariborz Jahanian615de762013-05-28 17:37:39 +00001249 return Owned(AE);
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001250}
1251
1252
John McCall29ad95b2011-08-27 01:09:30 +00001253/// checkBuiltinArgument - Given a call to a builtin function, perform
1254/// normal type-checking on the given argument, updating the call in
1255/// place. This is useful when a builtin function requires custom
1256/// type-checking for some of its arguments but not necessarily all of
1257/// them.
1258///
1259/// Returns true on error.
1260static bool checkBuiltinArgument(Sema &S, CallExpr *E, unsigned ArgIndex) {
1261 FunctionDecl *Fn = E->getDirectCallee();
1262 assert(Fn && "builtin call without direct callee!");
1263
1264 ParmVarDecl *Param = Fn->getParamDecl(ArgIndex);
1265 InitializedEntity Entity =
1266 InitializedEntity::InitializeParameter(S.Context, Param);
1267
1268 ExprResult Arg = E->getArg(0);
1269 Arg = S.PerformCopyInitialization(Entity, SourceLocation(), Arg);
1270 if (Arg.isInvalid())
1271 return true;
1272
1273 E->setArg(ArgIndex, Arg.take());
1274 return false;
1275}
1276
Chris Lattnerdc046542009-05-08 06:58:22 +00001277/// SemaBuiltinAtomicOverloaded - We have a call to a function like
1278/// __sync_fetch_and_add, which is an overloaded function based on the pointer
1279/// type of its first argument. The main ActOnCallExpr routines have already
1280/// promoted the types of arguments because all of these calls are prototyped as
1281/// void(...).
1282///
1283/// This function goes through and does final semantic checking for these
1284/// builtins,
John McCalldadc5752010-08-24 06:29:42 +00001285ExprResult
1286Sema::SemaBuiltinAtomicOverloaded(ExprResult TheCallResult) {
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001287 CallExpr *TheCall = (CallExpr *)TheCallResult.get();
Chris Lattnerdc046542009-05-08 06:58:22 +00001288 DeclRefExpr *DRE =cast<DeclRefExpr>(TheCall->getCallee()->IgnoreParenCasts());
1289 FunctionDecl *FDecl = cast<FunctionDecl>(DRE->getDecl());
1290
1291 // Ensure that we have at least one argument to do type inference from.
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001292 if (TheCall->getNumArgs() < 1) {
1293 Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args_at_least)
1294 << 0 << 1 << TheCall->getNumArgs()
1295 << TheCall->getCallee()->getSourceRange();
1296 return ExprError();
1297 }
Mike Stump11289f42009-09-09 15:08:12 +00001298
Chris Lattnerdc046542009-05-08 06:58:22 +00001299 // Inspect the first argument of the atomic builtin. This should always be
1300 // a pointer type, whose element is an integral scalar or pointer type.
1301 // Because it is a pointer type, we don't have to worry about any implicit
1302 // casts here.
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001303 // FIXME: We don't allow floating point scalars as input.
Chris Lattnerdc046542009-05-08 06:58:22 +00001304 Expr *FirstArg = TheCall->getArg(0);
Eli Friedman844f9452012-01-23 02:35:22 +00001305 ExprResult FirstArgResult = DefaultFunctionArrayLvalueConversion(FirstArg);
1306 if (FirstArgResult.isInvalid())
1307 return ExprError();
1308 FirstArg = FirstArgResult.take();
1309 TheCall->setArg(0, FirstArg);
1310
John McCall31168b02011-06-15 23:02:42 +00001311 const PointerType *pointerType = FirstArg->getType()->getAs<PointerType>();
1312 if (!pointerType) {
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001313 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer)
1314 << FirstArg->getType() << FirstArg->getSourceRange();
1315 return ExprError();
1316 }
Mike Stump11289f42009-09-09 15:08:12 +00001317
John McCall31168b02011-06-15 23:02:42 +00001318 QualType ValType = pointerType->getPointeeType();
Chris Lattnerbb3bcd82010-09-17 21:12:38 +00001319 if (!ValType->isIntegerType() && !ValType->isAnyPointerType() &&
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001320 !ValType->isBlockPointerType()) {
1321 Diag(DRE->getLocStart(), diag::err_atomic_builtin_must_be_pointer_intptr)
1322 << FirstArg->getType() << FirstArg->getSourceRange();
1323 return ExprError();
1324 }
Chris Lattnerdc046542009-05-08 06:58:22 +00001325
John McCall31168b02011-06-15 23:02:42 +00001326 switch (ValType.getObjCLifetime()) {
1327 case Qualifiers::OCL_None:
1328 case Qualifiers::OCL_ExplicitNone:
1329 // okay
1330 break;
1331
1332 case Qualifiers::OCL_Weak:
1333 case Qualifiers::OCL_Strong:
1334 case Qualifiers::OCL_Autoreleasing:
Argyrios Kyrtzidiscff00d92011-06-24 00:08:59 +00001335 Diag(DRE->getLocStart(), diag::err_arc_atomic_ownership)
John McCall31168b02011-06-15 23:02:42 +00001336 << ValType << FirstArg->getSourceRange();
1337 return ExprError();
1338 }
1339
John McCallb50451a2011-10-05 07:41:44 +00001340 // Strip any qualifiers off ValType.
1341 ValType = ValType.getUnqualifiedType();
1342
Chandler Carruth3973af72010-07-18 20:54:12 +00001343 // The majority of builtins return a value, but a few have special return
1344 // types, so allow them to override appropriately below.
1345 QualType ResultType = ValType;
1346
Chris Lattnerdc046542009-05-08 06:58:22 +00001347 // We need to figure out which concrete builtin this maps onto. For example,
1348 // __sync_fetch_and_add with a 2 byte object turns into
1349 // __sync_fetch_and_add_2.
1350#define BUILTIN_ROW(x) \
1351 { Builtin::BI##x##_1, Builtin::BI##x##_2, Builtin::BI##x##_4, \
1352 Builtin::BI##x##_8, Builtin::BI##x##_16 }
Mike Stump11289f42009-09-09 15:08:12 +00001353
Chris Lattnerdc046542009-05-08 06:58:22 +00001354 static const unsigned BuiltinIndices[][5] = {
1355 BUILTIN_ROW(__sync_fetch_and_add),
1356 BUILTIN_ROW(__sync_fetch_and_sub),
1357 BUILTIN_ROW(__sync_fetch_and_or),
1358 BUILTIN_ROW(__sync_fetch_and_and),
1359 BUILTIN_ROW(__sync_fetch_and_xor),
Mike Stump11289f42009-09-09 15:08:12 +00001360
Chris Lattnerdc046542009-05-08 06:58:22 +00001361 BUILTIN_ROW(__sync_add_and_fetch),
1362 BUILTIN_ROW(__sync_sub_and_fetch),
1363 BUILTIN_ROW(__sync_and_and_fetch),
1364 BUILTIN_ROW(__sync_or_and_fetch),
1365 BUILTIN_ROW(__sync_xor_and_fetch),
Mike Stump11289f42009-09-09 15:08:12 +00001366
Chris Lattnerdc046542009-05-08 06:58:22 +00001367 BUILTIN_ROW(__sync_val_compare_and_swap),
1368 BUILTIN_ROW(__sync_bool_compare_and_swap),
1369 BUILTIN_ROW(__sync_lock_test_and_set),
Chris Lattner9cb59fa2011-04-09 03:57:26 +00001370 BUILTIN_ROW(__sync_lock_release),
1371 BUILTIN_ROW(__sync_swap)
Chris Lattnerdc046542009-05-08 06:58:22 +00001372 };
Mike Stump11289f42009-09-09 15:08:12 +00001373#undef BUILTIN_ROW
1374
Chris Lattnerdc046542009-05-08 06:58:22 +00001375 // Determine the index of the size.
1376 unsigned SizeIndex;
Ken Dyck40775002010-01-11 17:06:35 +00001377 switch (Context.getTypeSizeInChars(ValType).getQuantity()) {
Chris Lattnerdc046542009-05-08 06:58:22 +00001378 case 1: SizeIndex = 0; break;
1379 case 2: SizeIndex = 1; break;
1380 case 4: SizeIndex = 2; break;
1381 case 8: SizeIndex = 3; break;
1382 case 16: SizeIndex = 4; break;
1383 default:
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001384 Diag(DRE->getLocStart(), diag::err_atomic_builtin_pointer_size)
1385 << FirstArg->getType() << FirstArg->getSourceRange();
1386 return ExprError();
Chris Lattnerdc046542009-05-08 06:58:22 +00001387 }
Mike Stump11289f42009-09-09 15:08:12 +00001388
Chris Lattnerdc046542009-05-08 06:58:22 +00001389 // Each of these builtins has one pointer argument, followed by some number of
1390 // values (0, 1 or 2) followed by a potentially empty varags list of stuff
1391 // that we ignore. Find out which row of BuiltinIndices to read from as well
1392 // as the number of fixed args.
Douglas Gregor15fc9562009-09-12 00:22:50 +00001393 unsigned BuiltinID = FDecl->getBuiltinID();
Chris Lattnerdc046542009-05-08 06:58:22 +00001394 unsigned BuiltinIndex, NumFixed = 1;
1395 switch (BuiltinID) {
David Blaikie83d382b2011-09-23 05:06:16 +00001396 default: llvm_unreachable("Unknown overloaded atomic builtin!");
Douglas Gregor73722482011-11-28 16:30:08 +00001397 case Builtin::BI__sync_fetch_and_add:
1398 case Builtin::BI__sync_fetch_and_add_1:
1399 case Builtin::BI__sync_fetch_and_add_2:
1400 case Builtin::BI__sync_fetch_and_add_4:
1401 case Builtin::BI__sync_fetch_and_add_8:
1402 case Builtin::BI__sync_fetch_and_add_16:
1403 BuiltinIndex = 0;
1404 break;
1405
1406 case Builtin::BI__sync_fetch_and_sub:
1407 case Builtin::BI__sync_fetch_and_sub_1:
1408 case Builtin::BI__sync_fetch_and_sub_2:
1409 case Builtin::BI__sync_fetch_and_sub_4:
1410 case Builtin::BI__sync_fetch_and_sub_8:
1411 case Builtin::BI__sync_fetch_and_sub_16:
1412 BuiltinIndex = 1;
1413 break;
1414
1415 case Builtin::BI__sync_fetch_and_or:
1416 case Builtin::BI__sync_fetch_and_or_1:
1417 case Builtin::BI__sync_fetch_and_or_2:
1418 case Builtin::BI__sync_fetch_and_or_4:
1419 case Builtin::BI__sync_fetch_and_or_8:
1420 case Builtin::BI__sync_fetch_and_or_16:
1421 BuiltinIndex = 2;
1422 break;
1423
1424 case Builtin::BI__sync_fetch_and_and:
1425 case Builtin::BI__sync_fetch_and_and_1:
1426 case Builtin::BI__sync_fetch_and_and_2:
1427 case Builtin::BI__sync_fetch_and_and_4:
1428 case Builtin::BI__sync_fetch_and_and_8:
1429 case Builtin::BI__sync_fetch_and_and_16:
1430 BuiltinIndex = 3;
1431 break;
Mike Stump11289f42009-09-09 15:08:12 +00001432
Douglas Gregor73722482011-11-28 16:30:08 +00001433 case Builtin::BI__sync_fetch_and_xor:
1434 case Builtin::BI__sync_fetch_and_xor_1:
1435 case Builtin::BI__sync_fetch_and_xor_2:
1436 case Builtin::BI__sync_fetch_and_xor_4:
1437 case Builtin::BI__sync_fetch_and_xor_8:
1438 case Builtin::BI__sync_fetch_and_xor_16:
1439 BuiltinIndex = 4;
1440 break;
1441
1442 case Builtin::BI__sync_add_and_fetch:
1443 case Builtin::BI__sync_add_and_fetch_1:
1444 case Builtin::BI__sync_add_and_fetch_2:
1445 case Builtin::BI__sync_add_and_fetch_4:
1446 case Builtin::BI__sync_add_and_fetch_8:
1447 case Builtin::BI__sync_add_and_fetch_16:
1448 BuiltinIndex = 5;
1449 break;
1450
1451 case Builtin::BI__sync_sub_and_fetch:
1452 case Builtin::BI__sync_sub_and_fetch_1:
1453 case Builtin::BI__sync_sub_and_fetch_2:
1454 case Builtin::BI__sync_sub_and_fetch_4:
1455 case Builtin::BI__sync_sub_and_fetch_8:
1456 case Builtin::BI__sync_sub_and_fetch_16:
1457 BuiltinIndex = 6;
1458 break;
1459
1460 case Builtin::BI__sync_and_and_fetch:
1461 case Builtin::BI__sync_and_and_fetch_1:
1462 case Builtin::BI__sync_and_and_fetch_2:
1463 case Builtin::BI__sync_and_and_fetch_4:
1464 case Builtin::BI__sync_and_and_fetch_8:
1465 case Builtin::BI__sync_and_and_fetch_16:
1466 BuiltinIndex = 7;
1467 break;
1468
1469 case Builtin::BI__sync_or_and_fetch:
1470 case Builtin::BI__sync_or_and_fetch_1:
1471 case Builtin::BI__sync_or_and_fetch_2:
1472 case Builtin::BI__sync_or_and_fetch_4:
1473 case Builtin::BI__sync_or_and_fetch_8:
1474 case Builtin::BI__sync_or_and_fetch_16:
1475 BuiltinIndex = 8;
1476 break;
1477
1478 case Builtin::BI__sync_xor_and_fetch:
1479 case Builtin::BI__sync_xor_and_fetch_1:
1480 case Builtin::BI__sync_xor_and_fetch_2:
1481 case Builtin::BI__sync_xor_and_fetch_4:
1482 case Builtin::BI__sync_xor_and_fetch_8:
1483 case Builtin::BI__sync_xor_and_fetch_16:
1484 BuiltinIndex = 9;
1485 break;
Mike Stump11289f42009-09-09 15:08:12 +00001486
Chris Lattnerdc046542009-05-08 06:58:22 +00001487 case Builtin::BI__sync_val_compare_and_swap:
Douglas Gregor73722482011-11-28 16:30:08 +00001488 case Builtin::BI__sync_val_compare_and_swap_1:
1489 case Builtin::BI__sync_val_compare_and_swap_2:
1490 case Builtin::BI__sync_val_compare_and_swap_4:
1491 case Builtin::BI__sync_val_compare_and_swap_8:
1492 case Builtin::BI__sync_val_compare_and_swap_16:
Daniel Dunbar3f540c0d2010-03-25 17:13:09 +00001493 BuiltinIndex = 10;
Chris Lattnerdc046542009-05-08 06:58:22 +00001494 NumFixed = 2;
1495 break;
Douglas Gregor73722482011-11-28 16:30:08 +00001496
Chris Lattnerdc046542009-05-08 06:58:22 +00001497 case Builtin::BI__sync_bool_compare_and_swap:
Douglas Gregor73722482011-11-28 16:30:08 +00001498 case Builtin::BI__sync_bool_compare_and_swap_1:
1499 case Builtin::BI__sync_bool_compare_and_swap_2:
1500 case Builtin::BI__sync_bool_compare_and_swap_4:
1501 case Builtin::BI__sync_bool_compare_and_swap_8:
1502 case Builtin::BI__sync_bool_compare_and_swap_16:
Daniel Dunbar3f540c0d2010-03-25 17:13:09 +00001503 BuiltinIndex = 11;
Chris Lattnerdc046542009-05-08 06:58:22 +00001504 NumFixed = 2;
Chandler Carruth3973af72010-07-18 20:54:12 +00001505 ResultType = Context.BoolTy;
Chris Lattnerdc046542009-05-08 06:58:22 +00001506 break;
Douglas Gregor73722482011-11-28 16:30:08 +00001507
1508 case Builtin::BI__sync_lock_test_and_set:
1509 case Builtin::BI__sync_lock_test_and_set_1:
1510 case Builtin::BI__sync_lock_test_and_set_2:
1511 case Builtin::BI__sync_lock_test_and_set_4:
1512 case Builtin::BI__sync_lock_test_and_set_8:
1513 case Builtin::BI__sync_lock_test_and_set_16:
1514 BuiltinIndex = 12;
1515 break;
1516
Chris Lattnerdc046542009-05-08 06:58:22 +00001517 case Builtin::BI__sync_lock_release:
Douglas Gregor73722482011-11-28 16:30:08 +00001518 case Builtin::BI__sync_lock_release_1:
1519 case Builtin::BI__sync_lock_release_2:
1520 case Builtin::BI__sync_lock_release_4:
1521 case Builtin::BI__sync_lock_release_8:
1522 case Builtin::BI__sync_lock_release_16:
Daniel Dunbar3f540c0d2010-03-25 17:13:09 +00001523 BuiltinIndex = 13;
Chris Lattnerdc046542009-05-08 06:58:22 +00001524 NumFixed = 0;
Chandler Carruth3973af72010-07-18 20:54:12 +00001525 ResultType = Context.VoidTy;
Chris Lattnerdc046542009-05-08 06:58:22 +00001526 break;
Douglas Gregor73722482011-11-28 16:30:08 +00001527
1528 case Builtin::BI__sync_swap:
1529 case Builtin::BI__sync_swap_1:
1530 case Builtin::BI__sync_swap_2:
1531 case Builtin::BI__sync_swap_4:
1532 case Builtin::BI__sync_swap_8:
1533 case Builtin::BI__sync_swap_16:
1534 BuiltinIndex = 14;
1535 break;
Chris Lattnerdc046542009-05-08 06:58:22 +00001536 }
Mike Stump11289f42009-09-09 15:08:12 +00001537
Chris Lattnerdc046542009-05-08 06:58:22 +00001538 // Now that we know how many fixed arguments we expect, first check that we
1539 // have at least that many.
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001540 if (TheCall->getNumArgs() < 1+NumFixed) {
1541 Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args_at_least)
1542 << 0 << 1+NumFixed << TheCall->getNumArgs()
1543 << TheCall->getCallee()->getSourceRange();
1544 return ExprError();
1545 }
Mike Stump11289f42009-09-09 15:08:12 +00001546
Chris Lattner5b9241b2009-05-08 15:36:58 +00001547 // Get the decl for the concrete builtin from this, we can tell what the
1548 // concrete integer type we should convert to is.
1549 unsigned NewBuiltinID = BuiltinIndices[BuiltinIndex][SizeIndex];
1550 const char *NewBuiltinName = Context.BuiltinInfo.GetName(NewBuiltinID);
Abramo Bagnara6cba23a2012-09-22 09:05:22 +00001551 FunctionDecl *NewBuiltinDecl;
1552 if (NewBuiltinID == BuiltinID)
1553 NewBuiltinDecl = FDecl;
1554 else {
1555 // Perform builtin lookup to avoid redeclaring it.
1556 DeclarationName DN(&Context.Idents.get(NewBuiltinName));
1557 LookupResult Res(*this, DN, DRE->getLocStart(), LookupOrdinaryName);
1558 LookupName(Res, TUScope, /*AllowBuiltinCreation=*/true);
1559 assert(Res.getFoundDecl());
1560 NewBuiltinDecl = dyn_cast<FunctionDecl>(Res.getFoundDecl());
1561 if (NewBuiltinDecl == 0)
1562 return ExprError();
1563 }
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001564
John McCallcf142162010-08-07 06:22:56 +00001565 // The first argument --- the pointer --- has a fixed type; we
1566 // deduce the types of the rest of the arguments accordingly. Walk
1567 // the remaining arguments, converting them to the deduced value type.
Chris Lattnerdc046542009-05-08 06:58:22 +00001568 for (unsigned i = 0; i != NumFixed; ++i) {
John Wiegley01296292011-04-08 18:41:53 +00001569 ExprResult Arg = TheCall->getArg(i+1);
Mike Stump11289f42009-09-09 15:08:12 +00001570
Chris Lattnerdc046542009-05-08 06:58:22 +00001571 // GCC does an implicit conversion to the pointer or integer ValType. This
1572 // can fail in some cases (1i -> int**), check for this error case now.
John McCallb50451a2011-10-05 07:41:44 +00001573 // Initialize the argument.
1574 InitializedEntity Entity = InitializedEntity::InitializeParameter(Context,
1575 ValType, /*consume*/ false);
1576 Arg = PerformCopyInitialization(Entity, SourceLocation(), Arg);
John Wiegley01296292011-04-08 18:41:53 +00001577 if (Arg.isInvalid())
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001578 return ExprError();
Mike Stump11289f42009-09-09 15:08:12 +00001579
Chris Lattnerdc046542009-05-08 06:58:22 +00001580 // Okay, we have something that *can* be converted to the right type. Check
1581 // to see if there is a potentially weird extension going on here. This can
1582 // happen when you do an atomic operation on something like an char* and
1583 // pass in 42. The 42 gets converted to char. This is even more strange
1584 // for things like 45.123 -> char, etc.
Mike Stump11289f42009-09-09 15:08:12 +00001585 // FIXME: Do this check.
John McCallb50451a2011-10-05 07:41:44 +00001586 TheCall->setArg(i+1, Arg.take());
Chris Lattnerdc046542009-05-08 06:58:22 +00001587 }
Mike Stump11289f42009-09-09 15:08:12 +00001588
Douglas Gregor6b3bcf22011-09-09 16:51:10 +00001589 ASTContext& Context = this->getASTContext();
1590
1591 // Create a new DeclRefExpr to refer to the new decl.
1592 DeclRefExpr* NewDRE = DeclRefExpr::Create(
1593 Context,
1594 DRE->getQualifierLoc(),
Abramo Bagnara7945c982012-01-27 09:46:47 +00001595 SourceLocation(),
Douglas Gregor6b3bcf22011-09-09 16:51:10 +00001596 NewBuiltinDecl,
John McCall113bee02012-03-10 09:33:50 +00001597 /*enclosing*/ false,
Douglas Gregor6b3bcf22011-09-09 16:51:10 +00001598 DRE->getLocation(),
Eli Friedman34866c72012-08-31 00:14:07 +00001599 Context.BuiltinFnTy,
Douglas Gregor6b3bcf22011-09-09 16:51:10 +00001600 DRE->getValueKind());
Mike Stump11289f42009-09-09 15:08:12 +00001601
Chris Lattnerdc046542009-05-08 06:58:22 +00001602 // Set the callee in the CallExpr.
Eli Friedman34866c72012-08-31 00:14:07 +00001603 // FIXME: This loses syntactic information.
1604 QualType CalleePtrTy = Context.getPointerType(NewBuiltinDecl->getType());
1605 ExprResult PromotedCall = ImpCastExprToType(NewDRE, CalleePtrTy,
1606 CK_BuiltinFnToFnPtr);
John Wiegley01296292011-04-08 18:41:53 +00001607 TheCall->setCallee(PromotedCall.take());
Mike Stump11289f42009-09-09 15:08:12 +00001608
Chandler Carruthbc8cab12010-07-18 07:23:17 +00001609 // Change the result type of the call to match the original value type. This
1610 // is arbitrary, but the codegen for these builtins ins design to handle it
1611 // gracefully.
Chandler Carruth3973af72010-07-18 20:54:12 +00001612 TheCall->setType(ResultType);
Chandler Carruth741e5ce2010-07-09 18:59:35 +00001613
Benjamin Kramer62b95d82012-08-23 21:35:17 +00001614 return TheCallResult;
Chris Lattnerdc046542009-05-08 06:58:22 +00001615}
1616
Chris Lattner6436fb62009-02-18 06:01:06 +00001617/// CheckObjCString - Checks that the argument to the builtin
Anders Carlsson98f07902007-08-17 05:31:46 +00001618/// CFString constructor is correct
Steve Narofffb46e862009-04-13 20:26:29 +00001619/// Note: It might also make sense to do the UTF-16 conversion here (would
1620/// simplify the backend).
Chris Lattner6436fb62009-02-18 06:01:06 +00001621bool Sema::CheckObjCString(Expr *Arg) {
Chris Lattnerf2660962008-02-13 01:02:39 +00001622 Arg = Arg->IgnoreParenCasts();
Anders Carlsson98f07902007-08-17 05:31:46 +00001623 StringLiteral *Literal = dyn_cast<StringLiteral>(Arg);
1624
Douglas Gregorfb65e592011-07-27 05:40:30 +00001625 if (!Literal || !Literal->isAscii()) {
Chris Lattner3b054132008-11-19 05:08:23 +00001626 Diag(Arg->getLocStart(), diag::err_cfstring_literal_not_string_constant)
1627 << Arg->getSourceRange();
Anders Carlssona3a9c432007-08-17 15:44:17 +00001628 return true;
Anders Carlsson98f07902007-08-17 05:31:46 +00001629 }
Mike Stump11289f42009-09-09 15:08:12 +00001630
Fariborz Jahanian56603ef2010-09-07 19:38:13 +00001631 if (Literal->containsNonAsciiOrNull()) {
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001632 StringRef String = Literal->getString();
Fariborz Jahanian56603ef2010-09-07 19:38:13 +00001633 unsigned NumBytes = String.size();
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001634 SmallVector<UTF16, 128> ToBuf(NumBytes);
Roman Divackye6377112012-09-06 15:59:27 +00001635 const UTF8 *FromPtr = (const UTF8 *)String.data();
Fariborz Jahanian56603ef2010-09-07 19:38:13 +00001636 UTF16 *ToPtr = &ToBuf[0];
1637
1638 ConversionResult Result = ConvertUTF8toUTF16(&FromPtr, FromPtr + NumBytes,
1639 &ToPtr, ToPtr + NumBytes,
1640 strictConversion);
1641 // Check for conversion failure.
1642 if (Result != conversionOK)
1643 Diag(Arg->getLocStart(),
1644 diag::warn_cfstring_truncated) << Arg->getSourceRange();
1645 }
Anders Carlssona3a9c432007-08-17 15:44:17 +00001646 return false;
Chris Lattnerb87b1b32007-08-10 20:18:51 +00001647}
1648
Chris Lattnere202e6a2007-12-20 00:05:45 +00001649/// SemaBuiltinVAStart - Check the arguments to __builtin_va_start for validity.
1650/// Emit an error and return true on failure, return false on success.
Chris Lattner08464942007-12-28 05:29:59 +00001651bool Sema::SemaBuiltinVAStart(CallExpr *TheCall) {
1652 Expr *Fn = TheCall->getCallee();
1653 if (TheCall->getNumArgs() > 2) {
Chris Lattnercedef8d2008-11-21 18:44:24 +00001654 Diag(TheCall->getArg(2)->getLocStart(),
Chris Lattner3b054132008-11-19 05:08:23 +00001655 diag::err_typecheck_call_too_many_args)
Eric Christopher2a5aaff2010-04-16 04:56:46 +00001656 << 0 /*function call*/ << 2 << TheCall->getNumArgs()
1657 << Fn->getSourceRange()
Mike Stump11289f42009-09-09 15:08:12 +00001658 << SourceRange(TheCall->getArg(2)->getLocStart(),
Chris Lattner3b054132008-11-19 05:08:23 +00001659 (*(TheCall->arg_end()-1))->getLocEnd());
Chris Lattner43be2e62007-12-19 23:59:04 +00001660 return true;
1661 }
Eli Friedmanbb2b3be2008-12-15 22:05:35 +00001662
1663 if (TheCall->getNumArgs() < 2) {
Eric Christopherabf1e182010-04-16 04:48:22 +00001664 return Diag(TheCall->getLocEnd(),
1665 diag::err_typecheck_call_too_few_args_at_least)
1666 << 0 /*function call*/ << 2 << TheCall->getNumArgs();
Eli Friedmanbb2b3be2008-12-15 22:05:35 +00001667 }
1668
John McCall29ad95b2011-08-27 01:09:30 +00001669 // Type-check the first argument normally.
1670 if (checkBuiltinArgument(*this, TheCall, 0))
1671 return true;
1672
Chris Lattnere202e6a2007-12-20 00:05:45 +00001673 // Determine whether the current function is variadic or not.
Douglas Gregor9a28e842010-03-01 23:15:13 +00001674 BlockScopeInfo *CurBlock = getCurBlock();
Chris Lattnere202e6a2007-12-20 00:05:45 +00001675 bool isVariadic;
Steve Naroff439a3e42009-04-15 19:33:47 +00001676 if (CurBlock)
John McCall8e346702010-06-04 19:02:56 +00001677 isVariadic = CurBlock->TheDecl->isVariadic();
Ted Kremenek186a0742010-04-29 16:49:01 +00001678 else if (FunctionDecl *FD = getCurFunctionDecl())
1679 isVariadic = FD->isVariadic();
1680 else
Argyrios Kyrtzidis853fbea2008-06-28 06:07:14 +00001681 isVariadic = getCurMethodDecl()->isVariadic();
Mike Stump11289f42009-09-09 15:08:12 +00001682
Chris Lattnere202e6a2007-12-20 00:05:45 +00001683 if (!isVariadic) {
Chris Lattner43be2e62007-12-19 23:59:04 +00001684 Diag(Fn->getLocStart(), diag::err_va_start_used_in_non_variadic_function);
1685 return true;
1686 }
Mike Stump11289f42009-09-09 15:08:12 +00001687
Chris Lattner43be2e62007-12-19 23:59:04 +00001688 // Verify that the second argument to the builtin is the last argument of the
1689 // current function or method.
1690 bool SecondArgIsLastNamedArgument = false;
Anders Carlsson73cc5072008-02-13 01:22:59 +00001691 const Expr *Arg = TheCall->getArg(1)->IgnoreParenCasts();
Mike Stump11289f42009-09-09 15:08:12 +00001692
Nico Weber9eea7642013-05-24 23:31:57 +00001693 // These are valid if SecondArgIsLastNamedArgument is false after the next
1694 // block.
1695 QualType Type;
1696 SourceLocation ParamLoc;
1697
Anders Carlsson6a8350b2008-02-11 04:20:54 +00001698 if (const DeclRefExpr *DR = dyn_cast<DeclRefExpr>(Arg)) {
1699 if (const ParmVarDecl *PV = dyn_cast<ParmVarDecl>(DR->getDecl())) {
Chris Lattner43be2e62007-12-19 23:59:04 +00001700 // FIXME: This isn't correct for methods (results in bogus warning).
1701 // Get the last formal in the current function.
Anders Carlsson6a8350b2008-02-11 04:20:54 +00001702 const ParmVarDecl *LastArg;
Steve Naroff439a3e42009-04-15 19:33:47 +00001703 if (CurBlock)
1704 LastArg = *(CurBlock->TheDecl->param_end()-1);
1705 else if (FunctionDecl *FD = getCurFunctionDecl())
Chris Lattner79413952008-12-04 23:50:19 +00001706 LastArg = *(FD->param_end()-1);
Chris Lattner43be2e62007-12-19 23:59:04 +00001707 else
Argyrios Kyrtzidis853fbea2008-06-28 06:07:14 +00001708 LastArg = *(getCurMethodDecl()->param_end()-1);
Chris Lattner43be2e62007-12-19 23:59:04 +00001709 SecondArgIsLastNamedArgument = PV == LastArg;
Nico Weber9eea7642013-05-24 23:31:57 +00001710
1711 Type = PV->getType();
1712 ParamLoc = PV->getLocation();
Chris Lattner43be2e62007-12-19 23:59:04 +00001713 }
1714 }
Mike Stump11289f42009-09-09 15:08:12 +00001715
Chris Lattner43be2e62007-12-19 23:59:04 +00001716 if (!SecondArgIsLastNamedArgument)
Mike Stump11289f42009-09-09 15:08:12 +00001717 Diag(TheCall->getArg(1)->getLocStart(),
Chris Lattner43be2e62007-12-19 23:59:04 +00001718 diag::warn_second_parameter_of_va_start_not_last_named_argument);
Nico Weber9eea7642013-05-24 23:31:57 +00001719 else if (Type->isReferenceType()) {
1720 Diag(Arg->getLocStart(),
1721 diag::warn_va_start_of_reference_type_is_undefined);
1722 Diag(ParamLoc, diag::note_parameter_type) << Type;
1723 }
1724
Enea Zaffanellab1b1b8a2013-11-07 08:14:26 +00001725 TheCall->setType(Context.VoidTy);
Chris Lattner43be2e62007-12-19 23:59:04 +00001726 return false;
Eli Friedmanf8353032008-05-20 08:23:37 +00001727}
Chris Lattner43be2e62007-12-19 23:59:04 +00001728
Chris Lattner2da14fb2007-12-20 00:26:33 +00001729/// SemaBuiltinUnorderedCompare - Handle functions like __builtin_isgreater and
1730/// friends. This is declared to take (...), so we have to check everything.
Chris Lattner08464942007-12-28 05:29:59 +00001731bool Sema::SemaBuiltinUnorderedCompare(CallExpr *TheCall) {
1732 if (TheCall->getNumArgs() < 2)
Chris Lattnercedef8d2008-11-21 18:44:24 +00001733 return Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args)
Eric Christopherabf1e182010-04-16 04:48:22 +00001734 << 0 << 2 << TheCall->getNumArgs()/*function call*/;
Chris Lattner08464942007-12-28 05:29:59 +00001735 if (TheCall->getNumArgs() > 2)
Mike Stump11289f42009-09-09 15:08:12 +00001736 return Diag(TheCall->getArg(2)->getLocStart(),
Chris Lattner3b054132008-11-19 05:08:23 +00001737 diag::err_typecheck_call_too_many_args)
Eric Christopher2a5aaff2010-04-16 04:56:46 +00001738 << 0 /*function call*/ << 2 << TheCall->getNumArgs()
Chris Lattner3b054132008-11-19 05:08:23 +00001739 << SourceRange(TheCall->getArg(2)->getLocStart(),
1740 (*(TheCall->arg_end()-1))->getLocEnd());
Mike Stump11289f42009-09-09 15:08:12 +00001741
John Wiegley01296292011-04-08 18:41:53 +00001742 ExprResult OrigArg0 = TheCall->getArg(0);
1743 ExprResult OrigArg1 = TheCall->getArg(1);
Douglas Gregorc25f7662009-05-19 22:10:17 +00001744
Chris Lattner2da14fb2007-12-20 00:26:33 +00001745 // Do standard promotions between the two arguments, returning their common
1746 // type.
Chris Lattner08464942007-12-28 05:29:59 +00001747 QualType Res = UsualArithmeticConversions(OrigArg0, OrigArg1, false);
John Wiegley01296292011-04-08 18:41:53 +00001748 if (OrigArg0.isInvalid() || OrigArg1.isInvalid())
1749 return true;
Daniel Dunbar96f86772009-02-19 19:28:43 +00001750
1751 // Make sure any conversions are pushed back into the call; this is
1752 // type safe since unordered compare builtins are declared as "_Bool
1753 // foo(...)".
John Wiegley01296292011-04-08 18:41:53 +00001754 TheCall->setArg(0, OrigArg0.get());
1755 TheCall->setArg(1, OrigArg1.get());
Mike Stump11289f42009-09-09 15:08:12 +00001756
John Wiegley01296292011-04-08 18:41:53 +00001757 if (OrigArg0.get()->isTypeDependent() || OrigArg1.get()->isTypeDependent())
Douglas Gregorc25f7662009-05-19 22:10:17 +00001758 return false;
1759
Chris Lattner2da14fb2007-12-20 00:26:33 +00001760 // If the common type isn't a real floating type, then the arguments were
1761 // invalid for this operation.
Eli Friedman93ee5ca2012-06-16 02:19:17 +00001762 if (Res.isNull() || !Res->isRealFloatingType())
John Wiegley01296292011-04-08 18:41:53 +00001763 return Diag(OrigArg0.get()->getLocStart(),
Chris Lattner3b054132008-11-19 05:08:23 +00001764 diag::err_typecheck_call_invalid_ordered_compare)
John Wiegley01296292011-04-08 18:41:53 +00001765 << OrigArg0.get()->getType() << OrigArg1.get()->getType()
1766 << SourceRange(OrigArg0.get()->getLocStart(), OrigArg1.get()->getLocEnd());
Mike Stump11289f42009-09-09 15:08:12 +00001767
Chris Lattner2da14fb2007-12-20 00:26:33 +00001768 return false;
1769}
1770
Benjamin Kramer634fc102010-02-15 22:42:31 +00001771/// SemaBuiltinSemaBuiltinFPClassification - Handle functions like
1772/// __builtin_isnan and friends. This is declared to take (...), so we have
Benjamin Kramer64aae502010-02-16 10:07:31 +00001773/// to check everything. We expect the last argument to be a floating point
1774/// value.
1775bool Sema::SemaBuiltinFPClassification(CallExpr *TheCall, unsigned NumArgs) {
1776 if (TheCall->getNumArgs() < NumArgs)
Eli Friedman7e4faac2009-08-31 20:06:00 +00001777 return Diag(TheCall->getLocEnd(), diag::err_typecheck_call_too_few_args)
Eric Christopherabf1e182010-04-16 04:48:22 +00001778 << 0 << NumArgs << TheCall->getNumArgs()/*function call*/;
Benjamin Kramer64aae502010-02-16 10:07:31 +00001779 if (TheCall->getNumArgs() > NumArgs)
1780 return Diag(TheCall->getArg(NumArgs)->getLocStart(),
Eli Friedman7e4faac2009-08-31 20:06:00 +00001781 diag::err_typecheck_call_too_many_args)
Eric Christopher2a5aaff2010-04-16 04:56:46 +00001782 << 0 /*function call*/ << NumArgs << TheCall->getNumArgs()
Benjamin Kramer64aae502010-02-16 10:07:31 +00001783 << SourceRange(TheCall->getArg(NumArgs)->getLocStart(),
Eli Friedman7e4faac2009-08-31 20:06:00 +00001784 (*(TheCall->arg_end()-1))->getLocEnd());
1785
Benjamin Kramer64aae502010-02-16 10:07:31 +00001786 Expr *OrigArg = TheCall->getArg(NumArgs-1);
Mike Stump11289f42009-09-09 15:08:12 +00001787
Eli Friedman7e4faac2009-08-31 20:06:00 +00001788 if (OrigArg->isTypeDependent())
1789 return false;
1790
Chris Lattner68784ef2010-05-06 05:50:07 +00001791 // This operation requires a non-_Complex floating-point number.
Eli Friedman7e4faac2009-08-31 20:06:00 +00001792 if (!OrigArg->getType()->isRealFloatingType())
Mike Stump11289f42009-09-09 15:08:12 +00001793 return Diag(OrigArg->getLocStart(),
Eli Friedman7e4faac2009-08-31 20:06:00 +00001794 diag::err_typecheck_call_invalid_unary_fp)
1795 << OrigArg->getType() << OrigArg->getSourceRange();
Mike Stump11289f42009-09-09 15:08:12 +00001796
Chris Lattner68784ef2010-05-06 05:50:07 +00001797 // If this is an implicit conversion from float -> double, remove it.
1798 if (ImplicitCastExpr *Cast = dyn_cast<ImplicitCastExpr>(OrigArg)) {
1799 Expr *CastArg = Cast->getSubExpr();
1800 if (CastArg->getType()->isSpecificBuiltinType(BuiltinType::Float)) {
1801 assert(Cast->getType()->isSpecificBuiltinType(BuiltinType::Double) &&
1802 "promotion from float to double is the only expected cast here");
1803 Cast->setSubExpr(0);
Chris Lattner68784ef2010-05-06 05:50:07 +00001804 TheCall->setArg(NumArgs-1, CastArg);
Chris Lattner68784ef2010-05-06 05:50:07 +00001805 }
1806 }
1807
Eli Friedman7e4faac2009-08-31 20:06:00 +00001808 return false;
1809}
1810
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001811/// SemaBuiltinShuffleVector - Handle __builtin_shufflevector.
1812// This is declared to take (...), so we have to check everything.
John McCalldadc5752010-08-24 06:29:42 +00001813ExprResult Sema::SemaBuiltinShuffleVector(CallExpr *TheCall) {
Nate Begemana0110022010-06-08 00:16:34 +00001814 if (TheCall->getNumArgs() < 2)
Sebastian Redlc215cfc2009-01-19 00:08:26 +00001815 return ExprError(Diag(TheCall->getLocEnd(),
Eric Christopherabf1e182010-04-16 04:48:22 +00001816 diag::err_typecheck_call_too_few_args_at_least)
Craig Topper304602a2013-07-28 21:50:10 +00001817 << 0 /*function call*/ << 2 << TheCall->getNumArgs()
1818 << TheCall->getSourceRange());
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001819
Nate Begemana0110022010-06-08 00:16:34 +00001820 // Determine which of the following types of shufflevector we're checking:
1821 // 1) unary, vector mask: (lhs, mask)
1822 // 2) binary, vector mask: (lhs, rhs, mask)
1823 // 3) binary, scalar mask: (lhs, rhs, index, ..., index)
1824 QualType resType = TheCall->getArg(0)->getType();
1825 unsigned numElements = 0;
Craig Topper61d01cc2013-07-19 04:46:31 +00001826
Douglas Gregorc25f7662009-05-19 22:10:17 +00001827 if (!TheCall->getArg(0)->isTypeDependent() &&
1828 !TheCall->getArg(1)->isTypeDependent()) {
Nate Begemana0110022010-06-08 00:16:34 +00001829 QualType LHSType = TheCall->getArg(0)->getType();
1830 QualType RHSType = TheCall->getArg(1)->getType();
Craig Topper61d01cc2013-07-19 04:46:31 +00001831
Craig Topperbaca3892013-07-29 06:47:04 +00001832 if (!LHSType->isVectorType() || !RHSType->isVectorType())
1833 return ExprError(Diag(TheCall->getLocStart(),
1834 diag::err_shufflevector_non_vector)
1835 << SourceRange(TheCall->getArg(0)->getLocStart(),
1836 TheCall->getArg(1)->getLocEnd()));
Craig Topper61d01cc2013-07-19 04:46:31 +00001837
Nate Begemana0110022010-06-08 00:16:34 +00001838 numElements = LHSType->getAs<VectorType>()->getNumElements();
1839 unsigned numResElements = TheCall->getNumArgs() - 2;
Mike Stump11289f42009-09-09 15:08:12 +00001840
Nate Begemana0110022010-06-08 00:16:34 +00001841 // Check to see if we have a call with 2 vector arguments, the unary shuffle
1842 // with mask. If so, verify that RHS is an integer vector type with the
1843 // same number of elts as lhs.
1844 if (TheCall->getNumArgs() == 2) {
Sylvestre Ledru8e5d82e2013-07-06 08:00:09 +00001845 if (!RHSType->hasIntegerRepresentation() ||
Nate Begemana0110022010-06-08 00:16:34 +00001846 RHSType->getAs<VectorType>()->getNumElements() != numElements)
Craig Topperbaca3892013-07-29 06:47:04 +00001847 return ExprError(Diag(TheCall->getLocStart(),
1848 diag::err_shufflevector_incompatible_vector)
1849 << SourceRange(TheCall->getArg(1)->getLocStart(),
1850 TheCall->getArg(1)->getLocEnd()));
Craig Topper61d01cc2013-07-19 04:46:31 +00001851 } else if (!Context.hasSameUnqualifiedType(LHSType, RHSType)) {
Craig Topperbaca3892013-07-29 06:47:04 +00001852 return ExprError(Diag(TheCall->getLocStart(),
1853 diag::err_shufflevector_incompatible_vector)
1854 << SourceRange(TheCall->getArg(0)->getLocStart(),
1855 TheCall->getArg(1)->getLocEnd()));
Nate Begemana0110022010-06-08 00:16:34 +00001856 } else if (numElements != numResElements) {
1857 QualType eltType = LHSType->getAs<VectorType>()->getElementType();
Chris Lattner37141f42010-06-23 06:00:24 +00001858 resType = Context.getVectorType(eltType, numResElements,
Bob Wilsonaeb56442010-11-10 21:56:12 +00001859 VectorType::GenericVector);
Douglas Gregorc25f7662009-05-19 22:10:17 +00001860 }
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001861 }
1862
1863 for (unsigned i = 2; i < TheCall->getNumArgs(); i++) {
Douglas Gregorc25f7662009-05-19 22:10:17 +00001864 if (TheCall->getArg(i)->isTypeDependent() ||
1865 TheCall->getArg(i)->isValueDependent())
1866 continue;
1867
Nate Begemana0110022010-06-08 00:16:34 +00001868 llvm::APSInt Result(32);
1869 if (!TheCall->getArg(i)->isIntegerConstantExpr(Result, Context))
1870 return ExprError(Diag(TheCall->getLocStart(),
Craig Topper304602a2013-07-28 21:50:10 +00001871 diag::err_shufflevector_nonconstant_argument)
1872 << TheCall->getArg(i)->getSourceRange());
Sebastian Redlc215cfc2009-01-19 00:08:26 +00001873
Craig Topper50ad5b72013-08-03 17:40:38 +00001874 // Allow -1 which will be translated to undef in the IR.
1875 if (Result.isSigned() && Result.isAllOnesValue())
1876 continue;
1877
Chris Lattner7ab824e2008-08-10 02:05:13 +00001878 if (Result.getActiveBits() > 64 || Result.getZExtValue() >= numElements*2)
Sebastian Redlc215cfc2009-01-19 00:08:26 +00001879 return ExprError(Diag(TheCall->getLocStart(),
Craig Topper304602a2013-07-28 21:50:10 +00001880 diag::err_shufflevector_argument_too_large)
1881 << TheCall->getArg(i)->getSourceRange());
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001882 }
1883
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001884 SmallVector<Expr*, 32> exprs;
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001885
Chris Lattner7ab824e2008-08-10 02:05:13 +00001886 for (unsigned i = 0, e = TheCall->getNumArgs(); i != e; i++) {
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001887 exprs.push_back(TheCall->getArg(i));
1888 TheCall->setArg(i, 0);
1889 }
1890
Benjamin Kramerc215e762012-08-24 11:54:20 +00001891 return Owned(new (Context) ShuffleVectorExpr(Context, exprs, resType,
Ted Kremenek5a201952009-02-07 01:47:29 +00001892 TheCall->getCallee()->getLocStart(),
1893 TheCall->getRParenLoc()));
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001894}
Chris Lattner43be2e62007-12-19 23:59:04 +00001895
Hal Finkelc4d7c822013-09-18 03:29:45 +00001896/// SemaConvertVectorExpr - Handle __builtin_convertvector
1897ExprResult Sema::SemaConvertVectorExpr(Expr *E, TypeSourceInfo *TInfo,
1898 SourceLocation BuiltinLoc,
1899 SourceLocation RParenLoc) {
1900 ExprValueKind VK = VK_RValue;
1901 ExprObjectKind OK = OK_Ordinary;
1902 QualType DstTy = TInfo->getType();
1903 QualType SrcTy = E->getType();
1904
1905 if (!SrcTy->isVectorType() && !SrcTy->isDependentType())
1906 return ExprError(Diag(BuiltinLoc,
1907 diag::err_convertvector_non_vector)
1908 << E->getSourceRange());
1909 if (!DstTy->isVectorType() && !DstTy->isDependentType())
1910 return ExprError(Diag(BuiltinLoc,
1911 diag::err_convertvector_non_vector_type));
1912
1913 if (!SrcTy->isDependentType() && !DstTy->isDependentType()) {
1914 unsigned SrcElts = SrcTy->getAs<VectorType>()->getNumElements();
1915 unsigned DstElts = DstTy->getAs<VectorType>()->getNumElements();
1916 if (SrcElts != DstElts)
1917 return ExprError(Diag(BuiltinLoc,
1918 diag::err_convertvector_incompatible_vector)
1919 << E->getSourceRange());
1920 }
1921
1922 return Owned(new (Context) ConvertVectorExpr(E, TInfo, DstTy, VK, OK,
1923 BuiltinLoc, RParenLoc));
1924
1925}
1926
Daniel Dunbarb7257262008-07-21 22:59:13 +00001927/// SemaBuiltinPrefetch - Handle __builtin_prefetch.
1928// This is declared to take (const void*, ...) and can take two
1929// optional constant int args.
1930bool Sema::SemaBuiltinPrefetch(CallExpr *TheCall) {
Chris Lattner3b054132008-11-19 05:08:23 +00001931 unsigned NumArgs = TheCall->getNumArgs();
Daniel Dunbarb7257262008-07-21 22:59:13 +00001932
Chris Lattner3b054132008-11-19 05:08:23 +00001933 if (NumArgs > 3)
Eric Christopher2a5aaff2010-04-16 04:56:46 +00001934 return Diag(TheCall->getLocEnd(),
1935 diag::err_typecheck_call_too_many_args_at_most)
1936 << 0 /*function call*/ << 3 << NumArgs
1937 << TheCall->getSourceRange();
Daniel Dunbarb7257262008-07-21 22:59:13 +00001938
1939 // Argument 0 is checked for us and the remaining arguments must be
1940 // constant integers.
Chris Lattner3b054132008-11-19 05:08:23 +00001941 for (unsigned i = 1; i != NumArgs; ++i) {
Daniel Dunbarb7257262008-07-21 22:59:13 +00001942 Expr *Arg = TheCall->getArg(i);
Douglas Gregor98c3cfc2012-06-29 01:05:22 +00001943
1944 // We can't check the value of a dependent argument.
1945 if (Arg->isTypeDependent() || Arg->isValueDependent())
1946 continue;
1947
Eli Friedman5efba262009-12-04 00:30:06 +00001948 llvm::APSInt Result;
Eric Christopher8d0c6212010-04-17 02:26:23 +00001949 if (SemaBuiltinConstantArg(TheCall, i, Result))
1950 return true;
Mike Stump11289f42009-09-09 15:08:12 +00001951
Daniel Dunbarb7257262008-07-21 22:59:13 +00001952 // FIXME: gcc issues a warning and rewrites these to 0. These
1953 // seems especially odd for the third argument since the default
1954 // is 3.
Chris Lattner3b054132008-11-19 05:08:23 +00001955 if (i == 1) {
Eli Friedman5efba262009-12-04 00:30:06 +00001956 if (Result.getLimitedValue() > 1)
Chris Lattner3b054132008-11-19 05:08:23 +00001957 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
Chris Lattnerd545ad12009-09-23 06:06:36 +00001958 << "0" << "1" << Arg->getSourceRange();
Daniel Dunbarb7257262008-07-21 22:59:13 +00001959 } else {
Eli Friedman5efba262009-12-04 00:30:06 +00001960 if (Result.getLimitedValue() > 3)
Chris Lattner3b054132008-11-19 05:08:23 +00001961 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
Chris Lattnerd545ad12009-09-23 06:06:36 +00001962 << "0" << "3" << Arg->getSourceRange();
Daniel Dunbarb7257262008-07-21 22:59:13 +00001963 }
1964 }
1965
Chris Lattner3b054132008-11-19 05:08:23 +00001966 return false;
Daniel Dunbarb7257262008-07-21 22:59:13 +00001967}
1968
Warren Hunt20e4a5d2014-02-21 23:08:53 +00001969/// SemaBuiltinMMPrefetch - Handle _mm_prefetch.
1970// This is declared to take (const char*, int)
1971bool Sema::SemaBuiltinMMPrefetch(CallExpr *TheCall) {
1972 Expr *Arg = TheCall->getArg(1);
1973
1974 // We can't check the value of a dependent argument.
1975 if (Arg->isTypeDependent() || Arg->isValueDependent())
1976 return false;
1977
1978 llvm::APSInt Result;
1979 if (SemaBuiltinConstantArg(TheCall, 1, Result))
1980 return true;
1981
1982 if (Result.getLimitedValue() > 3)
1983 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
1984 << "0" << "3" << Arg->getSourceRange();
1985
1986 return false;
1987}
1988
Eric Christopher8d0c6212010-04-17 02:26:23 +00001989/// SemaBuiltinConstantArg - Handle a check if argument ArgNum of CallExpr
1990/// TheCall is a constant expression.
1991bool Sema::SemaBuiltinConstantArg(CallExpr *TheCall, int ArgNum,
1992 llvm::APSInt &Result) {
1993 Expr *Arg = TheCall->getArg(ArgNum);
1994 DeclRefExpr *DRE =cast<DeclRefExpr>(TheCall->getCallee()->IgnoreParenCasts());
1995 FunctionDecl *FDecl = cast<FunctionDecl>(DRE->getDecl());
1996
1997 if (Arg->isTypeDependent() || Arg->isValueDependent()) return false;
1998
1999 if (!Arg->isIntegerConstantExpr(Result, Context))
2000 return Diag(TheCall->getLocStart(), diag::err_constant_integer_arg_type)
Eric Christopher63448c32010-04-19 18:23:02 +00002001 << FDecl->getDeclName() << Arg->getSourceRange();
Eric Christopher8d0c6212010-04-17 02:26:23 +00002002
Chris Lattnerd545ad12009-09-23 06:06:36 +00002003 return false;
2004}
2005
Daniel Dunbarb0d34c82008-09-03 21:13:56 +00002006/// SemaBuiltinObjectSize - Handle __builtin_object_size(void *ptr,
2007/// int type). This simply type checks that type is one of the defined
2008/// constants (0-3).
Chris Lattner57540c52011-04-15 05:22:18 +00002009// For compatibility check 0-3, llvm only handles 0 and 2.
Daniel Dunbarb0d34c82008-09-03 21:13:56 +00002010bool Sema::SemaBuiltinObjectSize(CallExpr *TheCall) {
Eric Christopher8d0c6212010-04-17 02:26:23 +00002011 llvm::APSInt Result;
Douglas Gregor98c3cfc2012-06-29 01:05:22 +00002012
2013 // We can't check the value of a dependent argument.
2014 if (TheCall->getArg(1)->isTypeDependent() ||
2015 TheCall->getArg(1)->isValueDependent())
2016 return false;
2017
Eric Christopher8d0c6212010-04-17 02:26:23 +00002018 // Check constant-ness first.
2019 if (SemaBuiltinConstantArg(TheCall, 1, Result))
2020 return true;
2021
Daniel Dunbarb0d34c82008-09-03 21:13:56 +00002022 Expr *Arg = TheCall->getArg(1);
Daniel Dunbarb0d34c82008-09-03 21:13:56 +00002023 if (Result.getSExtValue() < 0 || Result.getSExtValue() > 3) {
Chris Lattner3b054132008-11-19 05:08:23 +00002024 return Diag(TheCall->getLocStart(), diag::err_argument_invalid_range)
2025 << "0" << "3" << SourceRange(Arg->getLocStart(), Arg->getLocEnd());
Daniel Dunbarb0d34c82008-09-03 21:13:56 +00002026 }
2027
2028 return false;
2029}
2030
Eli Friedmanc97d0142009-05-03 06:04:26 +00002031/// SemaBuiltinLongjmp - Handle __builtin_longjmp(void *env[5], int val).
Eli Friedmaneed8ad22009-05-03 04:46:36 +00002032/// This checks that val is a constant 1.
2033bool Sema::SemaBuiltinLongjmp(CallExpr *TheCall) {
2034 Expr *Arg = TheCall->getArg(1);
Eric Christopher8d0c6212010-04-17 02:26:23 +00002035 llvm::APSInt Result;
Douglas Gregorc25f7662009-05-19 22:10:17 +00002036
Eric Christopher8d0c6212010-04-17 02:26:23 +00002037 // TODO: This is less than ideal. Overload this to take a value.
2038 if (SemaBuiltinConstantArg(TheCall, 1, Result))
2039 return true;
2040
2041 if (Result != 1)
Eli Friedmaneed8ad22009-05-03 04:46:36 +00002042 return Diag(TheCall->getLocStart(), diag::err_builtin_longjmp_invalid_val)
2043 << SourceRange(Arg->getLocStart(), Arg->getLocEnd());
2044
2045 return false;
2046}
2047
Richard Smithd7293d72013-08-05 18:49:43 +00002048namespace {
2049enum StringLiteralCheckType {
2050 SLCT_NotALiteral,
2051 SLCT_UncheckedLiteral,
2052 SLCT_CheckedLiteral
2053};
2054}
2055
Richard Smith55ce3522012-06-25 20:30:08 +00002056// Determine if an expression is a string literal or constant string.
2057// If this function returns false on the arguments to a function expecting a
2058// format string, we will usually need to emit a warning.
2059// True string literals are then checked by CheckFormatString.
Richard Smithd7293d72013-08-05 18:49:43 +00002060static StringLiteralCheckType
2061checkFormatStringExpr(Sema &S, const Expr *E, ArrayRef<const Expr *> Args,
2062 bool HasVAListArg, unsigned format_idx,
2063 unsigned firstDataArg, Sema::FormatStringType Type,
2064 Sema::VariadicCallType CallType, bool InFunctionCall,
2065 llvm::SmallBitVector &CheckedVarArgs) {
Ted Kremenek808829352010-09-09 03:51:39 +00002066 tryAgain:
Douglas Gregorc25f7662009-05-19 22:10:17 +00002067 if (E->isTypeDependent() || E->isValueDependent())
Richard Smith55ce3522012-06-25 20:30:08 +00002068 return SLCT_NotALiteral;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002069
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00002070 E = E->IgnoreParenCasts();
Peter Collingbourne91147592011-04-15 00:35:48 +00002071
Richard Smithd7293d72013-08-05 18:49:43 +00002072 if (E->isNullPointerConstant(S.Context, Expr::NPC_ValueDependentIsNotNull))
David Blaikie59fe3f82012-02-10 21:07:25 +00002073 // Technically -Wformat-nonliteral does not warn about this case.
2074 // The behavior of printf and friends in this case is implementation
2075 // dependent. Ideally if the format string cannot be null then
2076 // it should have a 'nonnull' attribute in the function prototype.
Richard Smithd7293d72013-08-05 18:49:43 +00002077 return SLCT_UncheckedLiteral;
David Blaikie59fe3f82012-02-10 21:07:25 +00002078
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002079 switch (E->getStmtClass()) {
John McCallc07a0c72011-02-17 10:25:35 +00002080 case Stmt::BinaryConditionalOperatorClass:
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002081 case Stmt::ConditionalOperatorClass: {
Richard Smith55ce3522012-06-25 20:30:08 +00002082 // The expression is a literal if both sub-expressions were, and it was
2083 // completely checked only if both sub-expressions were checked.
2084 const AbstractConditionalOperator *C =
2085 cast<AbstractConditionalOperator>(E);
2086 StringLiteralCheckType Left =
Richard Smithd7293d72013-08-05 18:49:43 +00002087 checkFormatStringExpr(S, C->getTrueExpr(), Args,
Richard Smith55ce3522012-06-25 20:30:08 +00002088 HasVAListArg, format_idx, firstDataArg,
Richard Smithd7293d72013-08-05 18:49:43 +00002089 Type, CallType, InFunctionCall, CheckedVarArgs);
Richard Smith55ce3522012-06-25 20:30:08 +00002090 if (Left == SLCT_NotALiteral)
2091 return SLCT_NotALiteral;
2092 StringLiteralCheckType Right =
Richard Smithd7293d72013-08-05 18:49:43 +00002093 checkFormatStringExpr(S, C->getFalseExpr(), Args,
Richard Smith55ce3522012-06-25 20:30:08 +00002094 HasVAListArg, format_idx, firstDataArg,
Richard Smithd7293d72013-08-05 18:49:43 +00002095 Type, CallType, InFunctionCall, CheckedVarArgs);
Richard Smith55ce3522012-06-25 20:30:08 +00002096 return Left < Right ? Left : Right;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002097 }
2098
2099 case Stmt::ImplicitCastExprClass: {
Ted Kremenek808829352010-09-09 03:51:39 +00002100 E = cast<ImplicitCastExpr>(E)->getSubExpr();
2101 goto tryAgain;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002102 }
2103
John McCallc07a0c72011-02-17 10:25:35 +00002104 case Stmt::OpaqueValueExprClass:
2105 if (const Expr *src = cast<OpaqueValueExpr>(E)->getSourceExpr()) {
2106 E = src;
2107 goto tryAgain;
2108 }
Richard Smith55ce3522012-06-25 20:30:08 +00002109 return SLCT_NotALiteral;
John McCallc07a0c72011-02-17 10:25:35 +00002110
Ted Kremeneka8890832011-02-24 23:03:04 +00002111 case Stmt::PredefinedExprClass:
2112 // While __func__, etc., are technically not string literals, they
2113 // cannot contain format specifiers and thus are not a security
2114 // liability.
Richard Smith55ce3522012-06-25 20:30:08 +00002115 return SLCT_UncheckedLiteral;
Ted Kremeneka8890832011-02-24 23:03:04 +00002116
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002117 case Stmt::DeclRefExprClass: {
2118 const DeclRefExpr *DR = cast<DeclRefExpr>(E);
Mike Stump11289f42009-09-09 15:08:12 +00002119
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002120 // As an exception, do not flag errors for variables binding to
2121 // const string literals.
2122 if (const VarDecl *VD = dyn_cast<VarDecl>(DR->getDecl())) {
2123 bool isConstant = false;
2124 QualType T = DR->getType();
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002125
Richard Smithd7293d72013-08-05 18:49:43 +00002126 if (const ArrayType *AT = S.Context.getAsArrayType(T)) {
2127 isConstant = AT->getElementType().isConstant(S.Context);
Mike Stump12b8ce12009-08-04 21:02:39 +00002128 } else if (const PointerType *PT = T->getAs<PointerType>()) {
Richard Smithd7293d72013-08-05 18:49:43 +00002129 isConstant = T.isConstant(S.Context) &&
2130 PT->getPointeeType().isConstant(S.Context);
Jean-Daniel Dupasd5f7ef42012-01-25 10:35:33 +00002131 } else if (T->isObjCObjectPointerType()) {
2132 // In ObjC, there is usually no "const ObjectPointer" type,
2133 // so don't check if the pointee type is constant.
Richard Smithd7293d72013-08-05 18:49:43 +00002134 isConstant = T.isConstant(S.Context);
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002135 }
Mike Stump11289f42009-09-09 15:08:12 +00002136
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002137 if (isConstant) {
Matt Beaumont-Gayd8735082012-05-11 22:10:59 +00002138 if (const Expr *Init = VD->getAnyInitializer()) {
2139 // Look through initializers like const char c[] = { "foo" }
2140 if (const InitListExpr *InitList = dyn_cast<InitListExpr>(Init)) {
2141 if (InitList->isStringLiteralInit())
2142 Init = InitList->getInit(0)->IgnoreParenImpCasts();
2143 }
Richard Smithd7293d72013-08-05 18:49:43 +00002144 return checkFormatStringExpr(S, Init, Args,
Richard Smith55ce3522012-06-25 20:30:08 +00002145 HasVAListArg, format_idx,
Jordan Rose3e0ec582012-07-19 18:10:23 +00002146 firstDataArg, Type, CallType,
Richard Smithd7293d72013-08-05 18:49:43 +00002147 /*InFunctionCall*/false, CheckedVarArgs);
Matt Beaumont-Gayd8735082012-05-11 22:10:59 +00002148 }
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002149 }
Mike Stump11289f42009-09-09 15:08:12 +00002150
Anders Carlssonb012ca92009-06-28 19:55:58 +00002151 // For vprintf* functions (i.e., HasVAListArg==true), we add a
2152 // special check to see if the format string is a function parameter
2153 // of the function calling the printf function. If the function
2154 // has an attribute indicating it is a printf-like function, then we
2155 // should suppress warnings concerning non-literals being used in a call
2156 // to a vprintf function. For example:
2157 //
2158 // void
2159 // logmessage(char const *fmt __attribute__ (format (printf, 1, 2)), ...){
2160 // va_list ap;
2161 // va_start(ap, fmt);
2162 // vprintf(fmt, ap); // Do NOT emit a warning about "fmt".
2163 // ...
Richard Smithd7293d72013-08-05 18:49:43 +00002164 // }
Jean-Daniel Dupas58dab682012-02-21 20:00:53 +00002165 if (HasVAListArg) {
2166 if (const ParmVarDecl *PV = dyn_cast<ParmVarDecl>(VD)) {
2167 if (const NamedDecl *ND = dyn_cast<NamedDecl>(PV->getDeclContext())) {
2168 int PVIndex = PV->getFunctionScopeIndex() + 1;
Aaron Ballmanbe22bcb2014-03-10 17:08:28 +00002169 for (const auto *PVFormat : ND->specific_attrs<FormatAttr>()) {
Jean-Daniel Dupas58dab682012-02-21 20:00:53 +00002170 // adjust for implicit parameter
2171 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(ND))
2172 if (MD->isInstance())
2173 ++PVIndex;
2174 // We also check if the formats are compatible.
2175 // We can't pass a 'scanf' string to a 'printf' function.
2176 if (PVIndex == PVFormat->getFormatIdx() &&
Richard Smithd7293d72013-08-05 18:49:43 +00002177 Type == S.GetFormatStringType(PVFormat))
Richard Smith55ce3522012-06-25 20:30:08 +00002178 return SLCT_UncheckedLiteral;
Jean-Daniel Dupas58dab682012-02-21 20:00:53 +00002179 }
2180 }
2181 }
2182 }
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002183 }
Mike Stump11289f42009-09-09 15:08:12 +00002184
Richard Smith55ce3522012-06-25 20:30:08 +00002185 return SLCT_NotALiteral;
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002186 }
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002187
Jean-Daniel Dupas6255bd12012-02-07 19:01:42 +00002188 case Stmt::CallExprClass:
2189 case Stmt::CXXMemberCallExprClass: {
Anders Carlssonf0a7f3b2009-06-27 04:05:33 +00002190 const CallExpr *CE = cast<CallExpr>(E);
Jean-Daniel Dupas6255bd12012-02-07 19:01:42 +00002191 if (const NamedDecl *ND = dyn_cast_or_null<NamedDecl>(CE->getCalleeDecl())) {
2192 if (const FormatArgAttr *FA = ND->getAttr<FormatArgAttr>()) {
2193 unsigned ArgIndex = FA->getFormatIdx();
2194 if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(ND))
2195 if (MD->isInstance())
2196 --ArgIndex;
2197 const Expr *Arg = CE->getArg(ArgIndex - 1);
Mike Stump11289f42009-09-09 15:08:12 +00002198
Richard Smithd7293d72013-08-05 18:49:43 +00002199 return checkFormatStringExpr(S, Arg, Args,
Richard Smith55ce3522012-06-25 20:30:08 +00002200 HasVAListArg, format_idx, firstDataArg,
Richard Smithd7293d72013-08-05 18:49:43 +00002201 Type, CallType, InFunctionCall,
2202 CheckedVarArgs);
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002203 } else if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(ND)) {
2204 unsigned BuiltinID = FD->getBuiltinID();
2205 if (BuiltinID == Builtin::BI__builtin___CFStringMakeConstantString ||
2206 BuiltinID == Builtin::BI__builtin___NSStringMakeConstantString) {
2207 const Expr *Arg = CE->getArg(0);
Richard Smithd7293d72013-08-05 18:49:43 +00002208 return checkFormatStringExpr(S, Arg, Args,
Richard Smith55ce3522012-06-25 20:30:08 +00002209 HasVAListArg, format_idx,
Jordan Rose3e0ec582012-07-19 18:10:23 +00002210 firstDataArg, Type, CallType,
Richard Smithd7293d72013-08-05 18:49:43 +00002211 InFunctionCall, CheckedVarArgs);
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002212 }
Anders Carlssonf0a7f3b2009-06-27 04:05:33 +00002213 }
2214 }
Mike Stump11289f42009-09-09 15:08:12 +00002215
Richard Smith55ce3522012-06-25 20:30:08 +00002216 return SLCT_NotALiteral;
Anders Carlssonf0a7f3b2009-06-27 04:05:33 +00002217 }
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002218 case Stmt::ObjCStringLiteralClass:
2219 case Stmt::StringLiteralClass: {
2220 const StringLiteral *StrE = NULL;
Mike Stump11289f42009-09-09 15:08:12 +00002221
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002222 if (const ObjCStringLiteral *ObjCFExpr = dyn_cast<ObjCStringLiteral>(E))
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002223 StrE = ObjCFExpr->getString();
2224 else
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002225 StrE = cast<StringLiteral>(E);
Mike Stump11289f42009-09-09 15:08:12 +00002226
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002227 if (StrE) {
Richard Smithd7293d72013-08-05 18:49:43 +00002228 S.CheckFormatString(StrE, E, Args, HasVAListArg, format_idx, firstDataArg,
2229 Type, InFunctionCall, CallType, CheckedVarArgs);
Richard Smith55ce3522012-06-25 20:30:08 +00002230 return SLCT_CheckedLiteral;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002231 }
Mike Stump11289f42009-09-09 15:08:12 +00002232
Richard Smith55ce3522012-06-25 20:30:08 +00002233 return SLCT_NotALiteral;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002234 }
Mike Stump11289f42009-09-09 15:08:12 +00002235
Ted Kremenekdfd72c22009-03-20 21:35:28 +00002236 default:
Richard Smith55ce3522012-06-25 20:30:08 +00002237 return SLCT_NotALiteral;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002238 }
2239}
2240
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00002241Sema::FormatStringType Sema::GetFormatStringType(const FormatAttr *Format) {
Aaron Ballmanf58070b2013-09-03 21:02:22 +00002242 return llvm::StringSwitch<FormatStringType>(Format->getType()->getName())
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00002243 .Case("scanf", FST_Scanf)
2244 .Cases("printf", "printf0", FST_Printf)
2245 .Cases("NSString", "CFString", FST_NSString)
2246 .Case("strftime", FST_Strftime)
2247 .Case("strfmon", FST_Strfmon)
2248 .Cases("kprintf", "cmn_err", "vcmn_err", "zcmn_err", FST_Kprintf)
2249 .Default(FST_Unknown);
2250}
2251
Jordan Rose3e0ec582012-07-19 18:10:23 +00002252/// CheckFormatArguments - Check calls to printf and scanf (and similar
Ted Kremenek02087932010-07-16 02:11:22 +00002253/// functions) for correct use of format strings.
Richard Smith55ce3522012-06-25 20:30:08 +00002254/// Returns true if a format string has been fully checked.
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002255bool Sema::CheckFormatArguments(const FormatAttr *Format,
2256 ArrayRef<const Expr *> Args,
2257 bool IsCXXMember,
Jordan Rose3e0ec582012-07-19 18:10:23 +00002258 VariadicCallType CallType,
Richard Smithd7293d72013-08-05 18:49:43 +00002259 SourceLocation Loc, SourceRange Range,
2260 llvm::SmallBitVector &CheckedVarArgs) {
Richard Smith55ce3522012-06-25 20:30:08 +00002261 FormatStringInfo FSI;
2262 if (getFormatStringInfo(Format, IsCXXMember, &FSI))
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002263 return CheckFormatArguments(Args, FSI.HasVAListArg, FSI.FormatIdx,
Richard Smith55ce3522012-06-25 20:30:08 +00002264 FSI.FirstDataArg, GetFormatStringType(Format),
Richard Smithd7293d72013-08-05 18:49:43 +00002265 CallType, Loc, Range, CheckedVarArgs);
Richard Smith55ce3522012-06-25 20:30:08 +00002266 return false;
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002267}
Sebastian Redl6eedcc12009-11-17 18:02:24 +00002268
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002269bool Sema::CheckFormatArguments(ArrayRef<const Expr *> Args,
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00002270 bool HasVAListArg, unsigned format_idx,
2271 unsigned firstDataArg, FormatStringType Type,
Jordan Rose3e0ec582012-07-19 18:10:23 +00002272 VariadicCallType CallType,
Richard Smithd7293d72013-08-05 18:49:43 +00002273 SourceLocation Loc, SourceRange Range,
2274 llvm::SmallBitVector &CheckedVarArgs) {
Ted Kremenek02087932010-07-16 02:11:22 +00002275 // CHECK: printf/scanf-like function is called with no format string.
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002276 if (format_idx >= Args.size()) {
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002277 Diag(Loc, diag::warn_missing_format_string) << Range;
Richard Smith55ce3522012-06-25 20:30:08 +00002278 return false;
Ted Kremeneke68f1aa2007-08-14 17:39:48 +00002279 }
Mike Stump11289f42009-09-09 15:08:12 +00002280
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002281 const Expr *OrigFormatExpr = Args[format_idx]->IgnoreParenCasts();
Mike Stump11289f42009-09-09 15:08:12 +00002282
Chris Lattnerb87b1b32007-08-10 20:18:51 +00002283 // CHECK: format string is not a string literal.
Mike Stump11289f42009-09-09 15:08:12 +00002284 //
Ted Kremeneke68f1aa2007-08-14 17:39:48 +00002285 // Dynamically generated format strings are difficult to
2286 // automatically vet at compile time. Requiring that format strings
2287 // are string literals: (1) permits the checking of format strings by
2288 // the compiler and thereby (2) can practically remove the source of
2289 // many format string exploits.
Ted Kremenek34f664d2008-06-16 18:00:42 +00002290
Mike Stump11289f42009-09-09 15:08:12 +00002291 // Format string can be either ObjC string (e.g. @"%d") or
Ted Kremenek34f664d2008-06-16 18:00:42 +00002292 // C string (e.g. "%d")
Mike Stump11289f42009-09-09 15:08:12 +00002293 // ObjC string uses the same format specifiers as C string, so we can use
Ted Kremenek34f664d2008-06-16 18:00:42 +00002294 // the same format string checking logic for both ObjC and C strings.
Richard Smith55ce3522012-06-25 20:30:08 +00002295 StringLiteralCheckType CT =
Richard Smithd7293d72013-08-05 18:49:43 +00002296 checkFormatStringExpr(*this, OrigFormatExpr, Args, HasVAListArg,
2297 format_idx, firstDataArg, Type, CallType,
2298 /*IsFunctionCall*/true, CheckedVarArgs);
Richard Smith55ce3522012-06-25 20:30:08 +00002299 if (CT != SLCT_NotALiteral)
2300 // Literal format string found, check done!
2301 return CT == SLCT_CheckedLiteral;
Ted Kremenek34f664d2008-06-16 18:00:42 +00002302
Jean-Daniel Dupas6567f482012-02-07 23:10:53 +00002303 // Strftime is particular as it always uses a single 'time' argument,
2304 // so it is safe to pass a non-literal string.
2305 if (Type == FST_Strftime)
Richard Smith55ce3522012-06-25 20:30:08 +00002306 return false;
Jean-Daniel Dupas6567f482012-02-07 23:10:53 +00002307
Jean-Daniel Dupas537aa1a2012-01-30 19:46:17 +00002308 // Do not emit diag when the string param is a macro expansion and the
2309 // format is either NSString or CFString. This is a hack to prevent
2310 // diag when using the NSLocalizedString and CFCopyLocalizedString macros
2311 // which are usually used in place of NS and CF string literals.
Jean-Daniel Dupas2b7da832012-05-04 21:08:08 +00002312 if (Type == FST_NSString &&
2313 SourceMgr.isInSystemMacro(Args[format_idx]->getLocStart()))
Richard Smith55ce3522012-06-25 20:30:08 +00002314 return false;
Jean-Daniel Dupas537aa1a2012-01-30 19:46:17 +00002315
Chris Lattnercc5d1c22009-04-29 04:59:47 +00002316 // If there are no arguments specified, warn with -Wformat-security, otherwise
2317 // warn only with -Wformat-nonliteral.
Eli Friedman0e5d6772013-06-18 18:10:01 +00002318 if (Args.size() == firstDataArg)
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002319 Diag(Args[format_idx]->getLocStart(),
Ted Kremenek02087932010-07-16 02:11:22 +00002320 diag::warn_format_nonliteral_noargs)
Chris Lattnercc5d1c22009-04-29 04:59:47 +00002321 << OrigFormatExpr->getSourceRange();
2322 else
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002323 Diag(Args[format_idx]->getLocStart(),
Ted Kremenek02087932010-07-16 02:11:22 +00002324 diag::warn_format_nonliteral)
Chris Lattnercc5d1c22009-04-29 04:59:47 +00002325 << OrigFormatExpr->getSourceRange();
Richard Smith55ce3522012-06-25 20:30:08 +00002326 return false;
Ted Kremenek6dfeb552009-01-12 23:09:09 +00002327}
Ted Kremeneke68f1aa2007-08-14 17:39:48 +00002328
Ted Kremenekab278de2010-01-28 23:39:18 +00002329namespace {
Ted Kremenek02087932010-07-16 02:11:22 +00002330class CheckFormatHandler : public analyze_format_string::FormatStringHandler {
2331protected:
Ted Kremenekab278de2010-01-28 23:39:18 +00002332 Sema &S;
2333 const StringLiteral *FExpr;
2334 const Expr *OrigFormatExpr;
Ted Kremenek4d745dd2010-03-25 03:59:12 +00002335 const unsigned FirstDataArg;
Ted Kremenekab278de2010-01-28 23:39:18 +00002336 const unsigned NumDataArgs;
Ted Kremenekab278de2010-01-28 23:39:18 +00002337 const char *Beg; // Start of format string.
Ted Kremenek5739de72010-01-29 01:06:55 +00002338 const bool HasVAListArg;
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002339 ArrayRef<const Expr *> Args;
Ted Kremenek5739de72010-01-29 01:06:55 +00002340 unsigned FormatIdx;
Richard Smithd7293d72013-08-05 18:49:43 +00002341 llvm::SmallBitVector CoveredArgs;
Ted Kremenekd1668192010-02-27 01:41:03 +00002342 bool usesPositionalArgs;
2343 bool atFirstArg;
Richard Trieu03cf7b72011-10-28 00:41:25 +00002344 bool inFunctionCall;
Jordan Rose3e0ec582012-07-19 18:10:23 +00002345 Sema::VariadicCallType CallType;
Richard Smithd7293d72013-08-05 18:49:43 +00002346 llvm::SmallBitVector &CheckedVarArgs;
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002347public:
Ted Kremenek02087932010-07-16 02:11:22 +00002348 CheckFormatHandler(Sema &s, const StringLiteral *fexpr,
Ted Kremenek4d745dd2010-03-25 03:59:12 +00002349 const Expr *origFormatExpr, unsigned firstDataArg,
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002350 unsigned numDataArgs, const char *beg, bool hasVAListArg,
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002351 ArrayRef<const Expr *> Args,
Jordan Rose3e0ec582012-07-19 18:10:23 +00002352 unsigned formatIdx, bool inFunctionCall,
Richard Smithd7293d72013-08-05 18:49:43 +00002353 Sema::VariadicCallType callType,
2354 llvm::SmallBitVector &CheckedVarArgs)
Ted Kremenekab278de2010-01-28 23:39:18 +00002355 : S(s), FExpr(fexpr), OrigFormatExpr(origFormatExpr),
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002356 FirstDataArg(firstDataArg), NumDataArgs(numDataArgs),
2357 Beg(beg), HasVAListArg(hasVAListArg),
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002358 Args(Args), FormatIdx(formatIdx),
Richard Trieu03cf7b72011-10-28 00:41:25 +00002359 usesPositionalArgs(false), atFirstArg(true),
Richard Smithd7293d72013-08-05 18:49:43 +00002360 inFunctionCall(inFunctionCall), CallType(callType),
2361 CheckedVarArgs(CheckedVarArgs) {
2362 CoveredArgs.resize(numDataArgs);
2363 CoveredArgs.reset();
2364 }
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002365
Ted Kremenek019d2242010-01-29 01:50:07 +00002366 void DoneProcessing();
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002367
Ted Kremenek02087932010-07-16 02:11:22 +00002368 void HandleIncompleteSpecifier(const char *startSpecifier,
Craig Toppere14c0f82014-03-12 04:55:44 +00002369 unsigned specifierLen) override;
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002370
Jordan Rose92303592012-09-08 04:00:03 +00002371 void HandleInvalidLengthModifier(
Craig Toppere14c0f82014-03-12 04:55:44 +00002372 const analyze_format_string::FormatSpecifier &FS,
2373 const analyze_format_string::ConversionSpecifier &CS,
2374 const char *startSpecifier, unsigned specifierLen,
2375 unsigned DiagID);
Jordan Rose92303592012-09-08 04:00:03 +00002376
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002377 void HandleNonStandardLengthModifier(
Craig Toppere14c0f82014-03-12 04:55:44 +00002378 const analyze_format_string::FormatSpecifier &FS,
2379 const char *startSpecifier, unsigned specifierLen);
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002380
2381 void HandleNonStandardConversionSpecifier(
Craig Toppere14c0f82014-03-12 04:55:44 +00002382 const analyze_format_string::ConversionSpecifier &CS,
2383 const char *startSpecifier, unsigned specifierLen);
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002384
Craig Toppere14c0f82014-03-12 04:55:44 +00002385 void HandlePosition(const char *startPos, unsigned posLen) override;
Hans Wennborgaa8c61c2012-03-09 10:10:54 +00002386
Craig Toppere14c0f82014-03-12 04:55:44 +00002387 void HandleInvalidPosition(const char *startSpecifier,
2388 unsigned specifierLen,
2389 analyze_format_string::PositionContext p) override;
Ted Kremenekd1668192010-02-27 01:41:03 +00002390
Craig Toppere14c0f82014-03-12 04:55:44 +00002391 void HandleZeroPosition(const char *startPos, unsigned posLen) override;
Ted Kremenekd1668192010-02-27 01:41:03 +00002392
Craig Toppere14c0f82014-03-12 04:55:44 +00002393 void HandleNullChar(const char *nullCharacter) override;
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002394
Richard Trieu03cf7b72011-10-28 00:41:25 +00002395 template <typename Range>
2396 static void EmitFormatDiagnostic(Sema &S, bool inFunctionCall,
2397 const Expr *ArgumentExpr,
2398 PartialDiagnostic PDiag,
2399 SourceLocation StringLoc,
2400 bool IsStringLocation, Range StringRange,
Dmitri Gribenko44ebbd52013-05-05 00:41:58 +00002401 ArrayRef<FixItHint> Fixit = None);
Richard Trieu03cf7b72011-10-28 00:41:25 +00002402
Ted Kremenek02087932010-07-16 02:11:22 +00002403protected:
Ted Kremenekce815422010-07-19 21:25:57 +00002404 bool HandleInvalidConversionSpecifier(unsigned argIndex, SourceLocation Loc,
2405 const char *startSpec,
2406 unsigned specifierLen,
2407 const char *csStart, unsigned csLen);
Richard Trieu03cf7b72011-10-28 00:41:25 +00002408
2409 void HandlePositionalNonpositionalArgs(SourceLocation Loc,
2410 const char *startSpec,
2411 unsigned specifierLen);
Ted Kremenekce815422010-07-19 21:25:57 +00002412
Ted Kremenek8d9842d2010-01-29 20:55:36 +00002413 SourceRange getFormatStringRange();
Ted Kremenek02087932010-07-16 02:11:22 +00002414 CharSourceRange getSpecifierRange(const char *startSpecifier,
2415 unsigned specifierLen);
Ted Kremenekab278de2010-01-28 23:39:18 +00002416 SourceLocation getLocationOfByte(const char *x);
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002417
Ted Kremenek5739de72010-01-29 01:06:55 +00002418 const Expr *getDataArg(unsigned i) const;
Ted Kremenek6adb7e32010-07-26 19:45:42 +00002419
2420 bool CheckNumArgs(const analyze_format_string::FormatSpecifier &FS,
2421 const analyze_format_string::ConversionSpecifier &CS,
2422 const char *startSpecifier, unsigned specifierLen,
2423 unsigned argIndex);
Richard Trieu03cf7b72011-10-28 00:41:25 +00002424
2425 template <typename Range>
2426 void EmitFormatDiagnostic(PartialDiagnostic PDiag, SourceLocation StringLoc,
2427 bool IsStringLocation, Range StringRange,
Dmitri Gribenko44ebbd52013-05-05 00:41:58 +00002428 ArrayRef<FixItHint> Fixit = None);
Ted Kremenekab278de2010-01-28 23:39:18 +00002429};
2430}
2431
Ted Kremenek02087932010-07-16 02:11:22 +00002432SourceRange CheckFormatHandler::getFormatStringRange() {
Ted Kremenekab278de2010-01-28 23:39:18 +00002433 return OrigFormatExpr->getSourceRange();
2434}
2435
Ted Kremenek02087932010-07-16 02:11:22 +00002436CharSourceRange CheckFormatHandler::
2437getSpecifierRange(const char *startSpecifier, unsigned specifierLen) {
Tom Care3f272b82010-06-21 21:21:01 +00002438 SourceLocation Start = getLocationOfByte(startSpecifier);
2439 SourceLocation End = getLocationOfByte(startSpecifier + specifierLen - 1);
2440
2441 // Advance the end SourceLocation by one due to half-open ranges.
Argyrios Kyrtzidise6e67de2011-09-19 20:40:19 +00002442 End = End.getLocWithOffset(1);
Tom Care3f272b82010-06-21 21:21:01 +00002443
2444 return CharSourceRange::getCharRange(Start, End);
Ted Kremenek8d9842d2010-01-29 20:55:36 +00002445}
2446
Ted Kremenek02087932010-07-16 02:11:22 +00002447SourceLocation CheckFormatHandler::getLocationOfByte(const char *x) {
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002448 return S.getLocationOfStringLiteralByte(FExpr, x - Beg);
Ted Kremenekab278de2010-01-28 23:39:18 +00002449}
2450
Ted Kremenek02087932010-07-16 02:11:22 +00002451void CheckFormatHandler::HandleIncompleteSpecifier(const char *startSpecifier,
2452 unsigned specifierLen){
Richard Trieu03cf7b72011-10-28 00:41:25 +00002453 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_incomplete_specifier),
2454 getLocationOfByte(startSpecifier),
2455 /*IsStringLocation*/true,
2456 getSpecifierRange(startSpecifier, specifierLen));
Ted Kremenekc22f78d2010-01-29 03:16:21 +00002457}
2458
Jordan Rose92303592012-09-08 04:00:03 +00002459void CheckFormatHandler::HandleInvalidLengthModifier(
2460 const analyze_format_string::FormatSpecifier &FS,
2461 const analyze_format_string::ConversionSpecifier &CS,
Jordan Rose2f9cc042012-09-08 04:00:12 +00002462 const char *startSpecifier, unsigned specifierLen, unsigned DiagID) {
Jordan Rose92303592012-09-08 04:00:03 +00002463 using namespace analyze_format_string;
2464
2465 const LengthModifier &LM = FS.getLengthModifier();
2466 CharSourceRange LMRange = getSpecifierRange(LM.getStart(), LM.getLength());
2467
2468 // See if we know how to fix this length modifier.
David Blaikie05785d12013-02-20 22:23:23 +00002469 Optional<LengthModifier> FixedLM = FS.getCorrectedLengthModifier();
Jordan Rose92303592012-09-08 04:00:03 +00002470 if (FixedLM) {
Jordan Rose2f9cc042012-09-08 04:00:12 +00002471 EmitFormatDiagnostic(S.PDiag(DiagID) << LM.toString() << CS.toString(),
Jordan Rose92303592012-09-08 04:00:03 +00002472 getLocationOfByte(LM.getStart()),
2473 /*IsStringLocation*/true,
2474 getSpecifierRange(startSpecifier, specifierLen));
2475
2476 S.Diag(getLocationOfByte(LM.getStart()), diag::note_format_fix_specifier)
2477 << FixedLM->toString()
2478 << FixItHint::CreateReplacement(LMRange, FixedLM->toString());
2479
2480 } else {
Jordan Rose2f9cc042012-09-08 04:00:12 +00002481 FixItHint Hint;
2482 if (DiagID == diag::warn_format_nonsensical_length)
2483 Hint = FixItHint::CreateRemoval(LMRange);
2484
2485 EmitFormatDiagnostic(S.PDiag(DiagID) << LM.toString() << CS.toString(),
Jordan Rose92303592012-09-08 04:00:03 +00002486 getLocationOfByte(LM.getStart()),
2487 /*IsStringLocation*/true,
2488 getSpecifierRange(startSpecifier, specifierLen),
Jordan Rose2f9cc042012-09-08 04:00:12 +00002489 Hint);
Jordan Rose92303592012-09-08 04:00:03 +00002490 }
2491}
2492
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002493void CheckFormatHandler::HandleNonStandardLengthModifier(
Jordan Rose2f9cc042012-09-08 04:00:12 +00002494 const analyze_format_string::FormatSpecifier &FS,
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002495 const char *startSpecifier, unsigned specifierLen) {
Jordan Rose2f9cc042012-09-08 04:00:12 +00002496 using namespace analyze_format_string;
2497
2498 const LengthModifier &LM = FS.getLengthModifier();
2499 CharSourceRange LMRange = getSpecifierRange(LM.getStart(), LM.getLength());
2500
2501 // See if we know how to fix this length modifier.
David Blaikie05785d12013-02-20 22:23:23 +00002502 Optional<LengthModifier> FixedLM = FS.getCorrectedLengthModifier();
Jordan Rose2f9cc042012-09-08 04:00:12 +00002503 if (FixedLM) {
2504 EmitFormatDiagnostic(S.PDiag(diag::warn_format_non_standard)
2505 << LM.toString() << 0,
2506 getLocationOfByte(LM.getStart()),
2507 /*IsStringLocation*/true,
2508 getSpecifierRange(startSpecifier, specifierLen));
2509
2510 S.Diag(getLocationOfByte(LM.getStart()), diag::note_format_fix_specifier)
2511 << FixedLM->toString()
2512 << FixItHint::CreateReplacement(LMRange, FixedLM->toString());
2513
2514 } else {
2515 EmitFormatDiagnostic(S.PDiag(diag::warn_format_non_standard)
2516 << LM.toString() << 0,
2517 getLocationOfByte(LM.getStart()),
2518 /*IsStringLocation*/true,
2519 getSpecifierRange(startSpecifier, specifierLen));
2520 }
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002521}
2522
2523void CheckFormatHandler::HandleNonStandardConversionSpecifier(
2524 const analyze_format_string::ConversionSpecifier &CS,
2525 const char *startSpecifier, unsigned specifierLen) {
Jordan Rose4c266aa2012-09-13 02:11:15 +00002526 using namespace analyze_format_string;
2527
2528 // See if we know how to fix this conversion specifier.
David Blaikie05785d12013-02-20 22:23:23 +00002529 Optional<ConversionSpecifier> FixedCS = CS.getStandardSpecifier();
Jordan Rose4c266aa2012-09-13 02:11:15 +00002530 if (FixedCS) {
2531 EmitFormatDiagnostic(S.PDiag(diag::warn_format_non_standard)
2532 << CS.toString() << /*conversion specifier*/1,
2533 getLocationOfByte(CS.getStart()),
2534 /*IsStringLocation*/true,
2535 getSpecifierRange(startSpecifier, specifierLen));
2536
2537 CharSourceRange CSRange = getSpecifierRange(CS.getStart(), CS.getLength());
2538 S.Diag(getLocationOfByte(CS.getStart()), diag::note_format_fix_specifier)
2539 << FixedCS->toString()
2540 << FixItHint::CreateReplacement(CSRange, FixedCS->toString());
2541 } else {
2542 EmitFormatDiagnostic(S.PDiag(diag::warn_format_non_standard)
2543 << CS.toString() << /*conversion specifier*/1,
2544 getLocationOfByte(CS.getStart()),
2545 /*IsStringLocation*/true,
2546 getSpecifierRange(startSpecifier, specifierLen));
2547 }
Hans Wennborgc9dd9462012-02-22 10:17:01 +00002548}
2549
Hans Wennborgaa8c61c2012-03-09 10:10:54 +00002550void CheckFormatHandler::HandlePosition(const char *startPos,
2551 unsigned posLen) {
2552 EmitFormatDiagnostic(S.PDiag(diag::warn_format_non_standard_positional_arg),
2553 getLocationOfByte(startPos),
2554 /*IsStringLocation*/true,
2555 getSpecifierRange(startPos, posLen));
2556}
2557
Ted Kremenekd1668192010-02-27 01:41:03 +00002558void
Ted Kremenek02087932010-07-16 02:11:22 +00002559CheckFormatHandler::HandleInvalidPosition(const char *startPos, unsigned posLen,
2560 analyze_format_string::PositionContext p) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002561 EmitFormatDiagnostic(S.PDiag(diag::warn_format_invalid_positional_specifier)
2562 << (unsigned) p,
2563 getLocationOfByte(startPos), /*IsStringLocation*/true,
2564 getSpecifierRange(startPos, posLen));
Ted Kremenekd1668192010-02-27 01:41:03 +00002565}
2566
Ted Kremenek02087932010-07-16 02:11:22 +00002567void CheckFormatHandler::HandleZeroPosition(const char *startPos,
Ted Kremenekd1668192010-02-27 01:41:03 +00002568 unsigned posLen) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002569 EmitFormatDiagnostic(S.PDiag(diag::warn_format_zero_positional_specifier),
2570 getLocationOfByte(startPos),
2571 /*IsStringLocation*/true,
2572 getSpecifierRange(startPos, posLen));
Ted Kremenekd1668192010-02-27 01:41:03 +00002573}
2574
Ted Kremenek02087932010-07-16 02:11:22 +00002575void CheckFormatHandler::HandleNullChar(const char *nullCharacter) {
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002576 if (!isa<ObjCStringLiteral>(OrigFormatExpr)) {
Ted Kremenek0d5b9ef2011-03-15 21:18:48 +00002577 // The presence of a null character is likely an error.
Richard Trieu03cf7b72011-10-28 00:41:25 +00002578 EmitFormatDiagnostic(
2579 S.PDiag(diag::warn_printf_format_string_contains_null_char),
2580 getLocationOfByte(nullCharacter), /*IsStringLocation*/true,
2581 getFormatStringRange());
Ted Kremenek0d5b9ef2011-03-15 21:18:48 +00002582 }
Ted Kremenek02087932010-07-16 02:11:22 +00002583}
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002584
Jordan Rose58bbe422012-07-19 18:10:08 +00002585// Note that this may return NULL if there was an error parsing or building
2586// one of the argument expressions.
Ted Kremenek02087932010-07-16 02:11:22 +00002587const Expr *CheckFormatHandler::getDataArg(unsigned i) const {
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002588 return Args[FirstDataArg + i];
Ted Kremenek02087932010-07-16 02:11:22 +00002589}
2590
2591void CheckFormatHandler::DoneProcessing() {
2592 // Does the number of data arguments exceed the number of
2593 // format conversions in the format string?
2594 if (!HasVAListArg) {
2595 // Find any arguments that weren't covered.
2596 CoveredArgs.flip();
2597 signed notCoveredArg = CoveredArgs.find_first();
2598 if (notCoveredArg >= 0) {
2599 assert((unsigned)notCoveredArg < NumDataArgs);
Jordan Rose58bbe422012-07-19 18:10:08 +00002600 if (const Expr *E = getDataArg((unsigned) notCoveredArg)) {
2601 SourceLocation Loc = E->getLocStart();
2602 if (!S.getSourceManager().isInSystemMacro(Loc)) {
2603 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_data_arg_not_used),
2604 Loc, /*IsStringLocation*/false,
2605 getFormatStringRange());
2606 }
Bob Wilson23cd4342012-05-03 19:47:19 +00002607 }
Ted Kremenek02087932010-07-16 02:11:22 +00002608 }
2609 }
2610}
2611
Ted Kremenekce815422010-07-19 21:25:57 +00002612bool
2613CheckFormatHandler::HandleInvalidConversionSpecifier(unsigned argIndex,
2614 SourceLocation Loc,
2615 const char *startSpec,
2616 unsigned specifierLen,
2617 const char *csStart,
2618 unsigned csLen) {
2619
2620 bool keepGoing = true;
2621 if (argIndex < NumDataArgs) {
2622 // Consider the argument coverered, even though the specifier doesn't
2623 // make sense.
2624 CoveredArgs.set(argIndex);
2625 }
2626 else {
2627 // If argIndex exceeds the number of data arguments we
2628 // don't issue a warning because that is just a cascade of warnings (and
2629 // they may have intended '%%' anyway). We don't want to continue processing
2630 // the format string after this point, however, as we will like just get
2631 // gibberish when trying to match arguments.
2632 keepGoing = false;
2633 }
2634
Richard Trieu03cf7b72011-10-28 00:41:25 +00002635 EmitFormatDiagnostic(S.PDiag(diag::warn_format_invalid_conversion)
2636 << StringRef(csStart, csLen),
2637 Loc, /*IsStringLocation*/true,
2638 getSpecifierRange(startSpec, specifierLen));
Ted Kremenekce815422010-07-19 21:25:57 +00002639
2640 return keepGoing;
2641}
2642
Richard Trieu03cf7b72011-10-28 00:41:25 +00002643void
2644CheckFormatHandler::HandlePositionalNonpositionalArgs(SourceLocation Loc,
2645 const char *startSpec,
2646 unsigned specifierLen) {
2647 EmitFormatDiagnostic(
2648 S.PDiag(diag::warn_format_mix_positional_nonpositional_args),
2649 Loc, /*isStringLoc*/true, getSpecifierRange(startSpec, specifierLen));
2650}
2651
Ted Kremenek6adb7e32010-07-26 19:45:42 +00002652bool
2653CheckFormatHandler::CheckNumArgs(
2654 const analyze_format_string::FormatSpecifier &FS,
2655 const analyze_format_string::ConversionSpecifier &CS,
2656 const char *startSpecifier, unsigned specifierLen, unsigned argIndex) {
2657
2658 if (argIndex >= NumDataArgs) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002659 PartialDiagnostic PDiag = FS.usesPositionalArg()
2660 ? (S.PDiag(diag::warn_printf_positional_arg_exceeds_data_args)
2661 << (argIndex+1) << NumDataArgs)
2662 : S.PDiag(diag::warn_printf_insufficient_data_args);
2663 EmitFormatDiagnostic(
2664 PDiag, getLocationOfByte(CS.getStart()), /*IsStringLocation*/true,
2665 getSpecifierRange(startSpecifier, specifierLen));
Ted Kremenek6adb7e32010-07-26 19:45:42 +00002666 return false;
2667 }
2668 return true;
2669}
2670
Richard Trieu03cf7b72011-10-28 00:41:25 +00002671template<typename Range>
2672void CheckFormatHandler::EmitFormatDiagnostic(PartialDiagnostic PDiag,
2673 SourceLocation Loc,
2674 bool IsStringLocation,
2675 Range StringRange,
Jordan Roseaee34382012-09-05 22:56:26 +00002676 ArrayRef<FixItHint> FixIt) {
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00002677 EmitFormatDiagnostic(S, inFunctionCall, Args[FormatIdx], PDiag,
Richard Trieu03cf7b72011-10-28 00:41:25 +00002678 Loc, IsStringLocation, StringRange, FixIt);
2679}
2680
2681/// \brief If the format string is not within the funcion call, emit a note
2682/// so that the function call and string are in diagnostic messages.
2683///
Dmitri Gribenkoadba9be2012-08-23 17:58:28 +00002684/// \param InFunctionCall if true, the format string is within the function
Richard Trieu03cf7b72011-10-28 00:41:25 +00002685/// call and only one diagnostic message will be produced. Otherwise, an
2686/// extra note will be emitted pointing to location of the format string.
2687///
2688/// \param ArgumentExpr the expression that is passed as the format string
2689/// argument in the function call. Used for getting locations when two
2690/// diagnostics are emitted.
2691///
2692/// \param PDiag the callee should already have provided any strings for the
2693/// diagnostic message. This function only adds locations and fixits
2694/// to diagnostics.
2695///
2696/// \param Loc primary location for diagnostic. If two diagnostics are
2697/// required, one will be at Loc and a new SourceLocation will be created for
2698/// the other one.
2699///
2700/// \param IsStringLocation if true, Loc points to the format string should be
2701/// used for the note. Otherwise, Loc points to the argument list and will
2702/// be used with PDiag.
2703///
2704/// \param StringRange some or all of the string to highlight. This is
2705/// templated so it can accept either a CharSourceRange or a SourceRange.
2706///
Dmitri Gribenkoadba9be2012-08-23 17:58:28 +00002707/// \param FixIt optional fix it hint for the format string.
Richard Trieu03cf7b72011-10-28 00:41:25 +00002708template<typename Range>
2709void CheckFormatHandler::EmitFormatDiagnostic(Sema &S, bool InFunctionCall,
2710 const Expr *ArgumentExpr,
2711 PartialDiagnostic PDiag,
2712 SourceLocation Loc,
2713 bool IsStringLocation,
2714 Range StringRange,
Jordan Roseaee34382012-09-05 22:56:26 +00002715 ArrayRef<FixItHint> FixIt) {
2716 if (InFunctionCall) {
2717 const Sema::SemaDiagnosticBuilder &D = S.Diag(Loc, PDiag);
2718 D << StringRange;
2719 for (ArrayRef<FixItHint>::iterator I = FixIt.begin(), E = FixIt.end();
2720 I != E; ++I) {
2721 D << *I;
2722 }
2723 } else {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002724 S.Diag(IsStringLocation ? ArgumentExpr->getExprLoc() : Loc, PDiag)
2725 << ArgumentExpr->getSourceRange();
Jordan Roseaee34382012-09-05 22:56:26 +00002726
2727 const Sema::SemaDiagnosticBuilder &Note =
2728 S.Diag(IsStringLocation ? Loc : StringRange.getBegin(),
2729 diag::note_format_string_defined);
2730
2731 Note << StringRange;
2732 for (ArrayRef<FixItHint>::iterator I = FixIt.begin(), E = FixIt.end();
2733 I != E; ++I) {
2734 Note << *I;
2735 }
Richard Trieu03cf7b72011-10-28 00:41:25 +00002736 }
2737}
2738
Ted Kremenek02087932010-07-16 02:11:22 +00002739//===--- CHECK: Printf format string checking ------------------------------===//
2740
2741namespace {
2742class CheckPrintfHandler : public CheckFormatHandler {
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002743 bool ObjCContext;
Ted Kremenek02087932010-07-16 02:11:22 +00002744public:
2745 CheckPrintfHandler(Sema &s, const StringLiteral *fexpr,
2746 const Expr *origFormatExpr, unsigned firstDataArg,
Jordan Rose97c6f2b2012-06-04 23:52:23 +00002747 unsigned numDataArgs, bool isObjC,
Ted Kremenek02087932010-07-16 02:11:22 +00002748 const char *beg, bool hasVAListArg,
Dmitri Gribenko765396f2013-01-13 20:46:02 +00002749 ArrayRef<const Expr *> Args,
Jordan Rose3e0ec582012-07-19 18:10:23 +00002750 unsigned formatIdx, bool inFunctionCall,
Richard Smithd7293d72013-08-05 18:49:43 +00002751 Sema::VariadicCallType CallType,
2752 llvm::SmallBitVector &CheckedVarArgs)
2753 : CheckFormatHandler(s, fexpr, origFormatExpr, firstDataArg,
2754 numDataArgs, beg, hasVAListArg, Args,
2755 formatIdx, inFunctionCall, CallType, CheckedVarArgs),
2756 ObjCContext(isObjC)
Jordan Rose3e0ec582012-07-19 18:10:23 +00002757 {}
2758
Craig Toppere14c0f82014-03-12 04:55:44 +00002759
Ted Kremenek02087932010-07-16 02:11:22 +00002760 bool HandleInvalidPrintfConversionSpecifier(
2761 const analyze_printf::PrintfSpecifier &FS,
2762 const char *startSpecifier,
Craig Toppere14c0f82014-03-12 04:55:44 +00002763 unsigned specifierLen) override;
2764
Ted Kremenek02087932010-07-16 02:11:22 +00002765 bool HandlePrintfSpecifier(const analyze_printf::PrintfSpecifier &FS,
2766 const char *startSpecifier,
Craig Toppere14c0f82014-03-12 04:55:44 +00002767 unsigned specifierLen) override;
Richard Smith55ce3522012-06-25 20:30:08 +00002768 bool checkFormatExpr(const analyze_printf::PrintfSpecifier &FS,
2769 const char *StartSpecifier,
2770 unsigned SpecifierLen,
2771 const Expr *E);
2772
Ted Kremenek02087932010-07-16 02:11:22 +00002773 bool HandleAmount(const analyze_format_string::OptionalAmount &Amt, unsigned k,
2774 const char *startSpecifier, unsigned specifierLen);
2775 void HandleInvalidAmount(const analyze_printf::PrintfSpecifier &FS,
2776 const analyze_printf::OptionalAmount &Amt,
2777 unsigned type,
2778 const char *startSpecifier, unsigned specifierLen);
2779 void HandleFlag(const analyze_printf::PrintfSpecifier &FS,
2780 const analyze_printf::OptionalFlag &flag,
2781 const char *startSpecifier, unsigned specifierLen);
2782 void HandleIgnoredFlag(const analyze_printf::PrintfSpecifier &FS,
2783 const analyze_printf::OptionalFlag &ignoredFlag,
2784 const analyze_printf::OptionalFlag &flag,
2785 const char *startSpecifier, unsigned specifierLen);
Hans Wennborgc3b3da02012-08-07 08:11:26 +00002786 bool checkForCStrMembers(const analyze_printf::ArgType &AT,
Richard Smith2868a732014-02-28 01:36:39 +00002787 const Expr *E);
Richard Smith55ce3522012-06-25 20:30:08 +00002788
Ted Kremenek02087932010-07-16 02:11:22 +00002789};
2790}
2791
2792bool CheckPrintfHandler::HandleInvalidPrintfConversionSpecifier(
2793 const analyze_printf::PrintfSpecifier &FS,
2794 const char *startSpecifier,
2795 unsigned specifierLen) {
Ted Kremenekf03e6d852010-07-20 20:04:27 +00002796 const analyze_printf::PrintfConversionSpecifier &CS =
Ted Kremenekce815422010-07-19 21:25:57 +00002797 FS.getConversionSpecifier();
Ted Kremenek02087932010-07-16 02:11:22 +00002798
Ted Kremenekce815422010-07-19 21:25:57 +00002799 return HandleInvalidConversionSpecifier(FS.getArgIndex(),
2800 getLocationOfByte(CS.getStart()),
2801 startSpecifier, specifierLen,
2802 CS.getStart(), CS.getLength());
Ted Kremenek94af5752010-01-29 02:40:24 +00002803}
2804
Ted Kremenek02087932010-07-16 02:11:22 +00002805bool CheckPrintfHandler::HandleAmount(
2806 const analyze_format_string::OptionalAmount &Amt,
2807 unsigned k, const char *startSpecifier,
2808 unsigned specifierLen) {
Ted Kremenek5739de72010-01-29 01:06:55 +00002809
2810 if (Amt.hasDataArgument()) {
Ted Kremenek5739de72010-01-29 01:06:55 +00002811 if (!HasVAListArg) {
Ted Kremenek4a49d982010-02-26 19:18:41 +00002812 unsigned argIndex = Amt.getArgIndex();
2813 if (argIndex >= NumDataArgs) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002814 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_asterisk_missing_arg)
2815 << k,
2816 getLocationOfByte(Amt.getStart()),
2817 /*IsStringLocation*/true,
2818 getSpecifierRange(startSpecifier, specifierLen));
Ted Kremenek5739de72010-01-29 01:06:55 +00002819 // Don't do any more checking. We will just emit
2820 // spurious errors.
2821 return false;
2822 }
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002823
Ted Kremenek5739de72010-01-29 01:06:55 +00002824 // Type check the data argument. It should be an 'int'.
Ted Kremenek605b0112010-01-29 23:32:22 +00002825 // Although not in conformance with C99, we also allow the argument to be
2826 // an 'unsigned int' as that is a reasonably safe case. GCC also
2827 // doesn't emit a warning for that case.
Ted Kremenek4a49d982010-02-26 19:18:41 +00002828 CoveredArgs.set(argIndex);
2829 const Expr *Arg = getDataArg(argIndex);
Jordan Rose58bbe422012-07-19 18:10:08 +00002830 if (!Arg)
2831 return false;
2832
Ted Kremenek5739de72010-01-29 01:06:55 +00002833 QualType T = Arg->getType();
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002834
Hans Wennborgc3b3da02012-08-07 08:11:26 +00002835 const analyze_printf::ArgType &AT = Amt.getArgType(S.Context);
2836 assert(AT.isValid());
Ted Kremenekc8b188d2010-02-16 01:46:59 +00002837
Hans Wennborgc3b3da02012-08-07 08:11:26 +00002838 if (!AT.matchesType(S.Context, T)) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002839 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_asterisk_wrong_type)
Hans Wennborgc3b3da02012-08-07 08:11:26 +00002840 << k << AT.getRepresentativeTypeName(S.Context)
Richard Trieu03cf7b72011-10-28 00:41:25 +00002841 << T << Arg->getSourceRange(),
2842 getLocationOfByte(Amt.getStart()),
2843 /*IsStringLocation*/true,
2844 getSpecifierRange(startSpecifier, specifierLen));
Ted Kremenek5739de72010-01-29 01:06:55 +00002845 // Don't do any more checking. We will just emit
2846 // spurious errors.
2847 return false;
2848 }
2849 }
2850 }
2851 return true;
2852}
Ted Kremenek5739de72010-01-29 01:06:55 +00002853
Tom Careb49ec692010-06-17 19:00:27 +00002854void CheckPrintfHandler::HandleInvalidAmount(
Ted Kremenek02087932010-07-16 02:11:22 +00002855 const analyze_printf::PrintfSpecifier &FS,
Tom Careb49ec692010-06-17 19:00:27 +00002856 const analyze_printf::OptionalAmount &Amt,
2857 unsigned type,
2858 const char *startSpecifier,
2859 unsigned specifierLen) {
Ted Kremenekf03e6d852010-07-20 20:04:27 +00002860 const analyze_printf::PrintfConversionSpecifier &CS =
2861 FS.getConversionSpecifier();
Tom Careb49ec692010-06-17 19:00:27 +00002862
Richard Trieu03cf7b72011-10-28 00:41:25 +00002863 FixItHint fixit =
2864 Amt.getHowSpecified() == analyze_printf::OptionalAmount::Constant
2865 ? FixItHint::CreateRemoval(getSpecifierRange(Amt.getStart(),
2866 Amt.getConstantLength()))
2867 : FixItHint();
2868
2869 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_nonsensical_optional_amount)
2870 << type << CS.toString(),
2871 getLocationOfByte(Amt.getStart()),
2872 /*IsStringLocation*/true,
2873 getSpecifierRange(startSpecifier, specifierLen),
2874 fixit);
Tom Careb49ec692010-06-17 19:00:27 +00002875}
2876
Ted Kremenek02087932010-07-16 02:11:22 +00002877void CheckPrintfHandler::HandleFlag(const analyze_printf::PrintfSpecifier &FS,
Tom Careb49ec692010-06-17 19:00:27 +00002878 const analyze_printf::OptionalFlag &flag,
2879 const char *startSpecifier,
2880 unsigned specifierLen) {
2881 // Warn about pointless flag with a fixit removal.
Ted Kremenekf03e6d852010-07-20 20:04:27 +00002882 const analyze_printf::PrintfConversionSpecifier &CS =
2883 FS.getConversionSpecifier();
Richard Trieu03cf7b72011-10-28 00:41:25 +00002884 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_nonsensical_flag)
2885 << flag.toString() << CS.toString(),
2886 getLocationOfByte(flag.getPosition()),
2887 /*IsStringLocation*/true,
2888 getSpecifierRange(startSpecifier, specifierLen),
2889 FixItHint::CreateRemoval(
2890 getSpecifierRange(flag.getPosition(), 1)));
Tom Careb49ec692010-06-17 19:00:27 +00002891}
2892
2893void CheckPrintfHandler::HandleIgnoredFlag(
Ted Kremenek02087932010-07-16 02:11:22 +00002894 const analyze_printf::PrintfSpecifier &FS,
Tom Careb49ec692010-06-17 19:00:27 +00002895 const analyze_printf::OptionalFlag &ignoredFlag,
2896 const analyze_printf::OptionalFlag &flag,
2897 const char *startSpecifier,
2898 unsigned specifierLen) {
2899 // Warn about ignored flag with a fixit removal.
Richard Trieu03cf7b72011-10-28 00:41:25 +00002900 EmitFormatDiagnostic(S.PDiag(diag::warn_printf_ignored_flag)
2901 << ignoredFlag.toString() << flag.toString(),
2902 getLocationOfByte(ignoredFlag.getPosition()),
2903 /*IsStringLocation*/true,
2904 getSpecifierRange(startSpecifier, specifierLen),
2905 FixItHint::CreateRemoval(
2906 getSpecifierRange(ignoredFlag.getPosition(), 1)));
Tom Careb49ec692010-06-17 19:00:27 +00002907}
2908
Richard Smith55ce3522012-06-25 20:30:08 +00002909// Determines if the specified is a C++ class or struct containing
2910// a member with the specified name and kind (e.g. a CXXMethodDecl named
2911// "c_str()").
2912template<typename MemberKind>
2913static llvm::SmallPtrSet<MemberKind*, 1>
2914CXXRecordMembersNamed(StringRef Name, Sema &S, QualType Ty) {
2915 const RecordType *RT = Ty->getAs<RecordType>();
2916 llvm::SmallPtrSet<MemberKind*, 1> Results;
2917
2918 if (!RT)
2919 return Results;
2920 const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(RT->getDecl());
Richard Smith2868a732014-02-28 01:36:39 +00002921 if (!RD || !RD->getDefinition())
Richard Smith55ce3522012-06-25 20:30:08 +00002922 return Results;
2923
2924 LookupResult R(S, &S.PP.getIdentifierTable().get(Name), SourceLocation(),
2925 Sema::LookupMemberName);
Richard Smith2868a732014-02-28 01:36:39 +00002926 R.suppressDiagnostics();
Richard Smith55ce3522012-06-25 20:30:08 +00002927
2928 // We just need to include all members of the right kind turned up by the
2929 // filter, at this point.
2930 if (S.LookupQualifiedName(R, RT->getDecl()))
2931 for (LookupResult::iterator I = R.begin(), E = R.end(); I != E; ++I) {
2932 NamedDecl *decl = (*I)->getUnderlyingDecl();
2933 if (MemberKind *FK = dyn_cast<MemberKind>(decl))
2934 Results.insert(FK);
2935 }
2936 return Results;
2937}
2938
Richard Smith2868a732014-02-28 01:36:39 +00002939/// Check if we could call '.c_str()' on an object.
2940///
2941/// FIXME: This returns the wrong results in some cases (if cv-qualifiers don't
2942/// allow the call, or if it would be ambiguous).
2943bool Sema::hasCStrMethod(const Expr *E) {
2944 typedef llvm::SmallPtrSet<CXXMethodDecl*, 1> MethodSet;
2945 MethodSet Results =
2946 CXXRecordMembersNamed<CXXMethodDecl>("c_str", *this, E->getType());
2947 for (MethodSet::iterator MI = Results.begin(), ME = Results.end();
2948 MI != ME; ++MI)
2949 if ((*MI)->getMinRequiredArguments() == 0)
2950 return true;
2951 return false;
2952}
2953
Richard Smith55ce3522012-06-25 20:30:08 +00002954// Check if a (w)string was passed when a (w)char* was needed, and offer a
Hans Wennborgc3b3da02012-08-07 08:11:26 +00002955// better diagnostic if so. AT is assumed to be valid.
Richard Smith55ce3522012-06-25 20:30:08 +00002956// Returns true when a c_str() conversion method is found.
2957bool CheckPrintfHandler::checkForCStrMembers(
Richard Smith2868a732014-02-28 01:36:39 +00002958 const analyze_printf::ArgType &AT, const Expr *E) {
Richard Smith55ce3522012-06-25 20:30:08 +00002959 typedef llvm::SmallPtrSet<CXXMethodDecl*, 1> MethodSet;
2960
2961 MethodSet Results =
2962 CXXRecordMembersNamed<CXXMethodDecl>("c_str", S, E->getType());
2963
2964 for (MethodSet::iterator MI = Results.begin(), ME = Results.end();
2965 MI != ME; ++MI) {
2966 const CXXMethodDecl *Method = *MI;
Richard Smith2868a732014-02-28 01:36:39 +00002967 if (Method->getMinRequiredArguments() == 0 &&
Alp Toker314cc812014-01-25 16:55:45 +00002968 AT.matchesType(S.Context, Method->getReturnType())) {
Richard Smith55ce3522012-06-25 20:30:08 +00002969 // FIXME: Suggest parens if the expression needs them.
2970 SourceLocation EndLoc =
2971 S.getPreprocessor().getLocForEndOfToken(E->getLocEnd());
2972 S.Diag(E->getLocStart(), diag::note_printf_c_str)
2973 << "c_str()"
2974 << FixItHint::CreateInsertion(EndLoc, ".c_str()");
2975 return true;
2976 }
2977 }
2978
2979 return false;
2980}
2981
Ted Kremenekab278de2010-01-28 23:39:18 +00002982bool
Ted Kremenek02087932010-07-16 02:11:22 +00002983CheckPrintfHandler::HandlePrintfSpecifier(const analyze_printf::PrintfSpecifier
Ted Kremenekd31b2632010-02-11 09:27:41 +00002984 &FS,
Ted Kremenekab278de2010-01-28 23:39:18 +00002985 const char *startSpecifier,
2986 unsigned specifierLen) {
2987
Ted Kremenekf03e6d852010-07-20 20:04:27 +00002988 using namespace analyze_format_string;
Ted Kremenekd1668192010-02-27 01:41:03 +00002989 using namespace analyze_printf;
Ted Kremenekf03e6d852010-07-20 20:04:27 +00002990 const PrintfConversionSpecifier &CS = FS.getConversionSpecifier();
Ted Kremenekab278de2010-01-28 23:39:18 +00002991
Ted Kremenek6cd69422010-07-19 22:01:06 +00002992 if (FS.consumesDataArgument()) {
2993 if (atFirstArg) {
2994 atFirstArg = false;
2995 usesPositionalArgs = FS.usesPositionalArg();
2996 }
2997 else if (usesPositionalArgs != FS.usesPositionalArg()) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00002998 HandlePositionalNonpositionalArgs(getLocationOfByte(CS.getStart()),
2999 startSpecifier, specifierLen);
Ted Kremenek6cd69422010-07-19 22:01:06 +00003000 return false;
3001 }
Ted Kremenek5739de72010-01-29 01:06:55 +00003002 }
Ted Kremenekc8b188d2010-02-16 01:46:59 +00003003
Ted Kremenekd1668192010-02-27 01:41:03 +00003004 // First check if the field width, precision, and conversion specifier
3005 // have matching data arguments.
3006 if (!HandleAmount(FS.getFieldWidth(), /* field width */ 0,
3007 startSpecifier, specifierLen)) {
3008 return false;
3009 }
3010
3011 if (!HandleAmount(FS.getPrecision(), /* precision */ 1,
3012 startSpecifier, specifierLen)) {
Ted Kremenek5739de72010-01-29 01:06:55 +00003013 return false;
3014 }
3015
Ted Kremenek8d9842d2010-01-29 20:55:36 +00003016 if (!CS.consumesDataArgument()) {
3017 // FIXME: Technically specifying a precision or field width here
3018 // makes no sense. Worth issuing a warning at some point.
Ted Kremenekfb45d352010-02-10 02:16:30 +00003019 return true;
Ted Kremenek8d9842d2010-01-29 20:55:36 +00003020 }
Ted Kremenekc8b188d2010-02-16 01:46:59 +00003021
Ted Kremenek4a49d982010-02-26 19:18:41 +00003022 // Consume the argument.
3023 unsigned argIndex = FS.getArgIndex();
Ted Kremenek09597b42010-02-27 08:34:51 +00003024 if (argIndex < NumDataArgs) {
3025 // The check to see if the argIndex is valid will come later.
3026 // We set the bit here because we may exit early from this
3027 // function if we encounter some other error.
3028 CoveredArgs.set(argIndex);
3029 }
Ted Kremenek4a49d982010-02-26 19:18:41 +00003030
3031 // Check for using an Objective-C specific conversion specifier
3032 // in a non-ObjC literal.
Jordan Rose97c6f2b2012-06-04 23:52:23 +00003033 if (!ObjCContext && CS.isObjCArg()) {
Ted Kremenek02087932010-07-16 02:11:22 +00003034 return HandleInvalidPrintfConversionSpecifier(FS, startSpecifier,
3035 specifierLen);
Ted Kremenek4a49d982010-02-26 19:18:41 +00003036 }
Ted Kremenekc8b188d2010-02-16 01:46:59 +00003037
Tom Careb49ec692010-06-17 19:00:27 +00003038 // Check for invalid use of field width
3039 if (!FS.hasValidFieldWidth()) {
Tom Care3f272b82010-06-21 21:21:01 +00003040 HandleInvalidAmount(FS, FS.getFieldWidth(), /* field width */ 0,
Tom Careb49ec692010-06-17 19:00:27 +00003041 startSpecifier, specifierLen);
3042 }
3043
3044 // Check for invalid use of precision
3045 if (!FS.hasValidPrecision()) {
3046 HandleInvalidAmount(FS, FS.getPrecision(), /* precision */ 1,
3047 startSpecifier, specifierLen);
3048 }
3049
3050 // Check each flag does not conflict with any other component.
Ted Kremenekbf4832c2011-01-08 05:28:46 +00003051 if (!FS.hasValidThousandsGroupingPrefix())
3052 HandleFlag(FS, FS.hasThousandsGrouping(), startSpecifier, specifierLen);
Tom Careb49ec692010-06-17 19:00:27 +00003053 if (!FS.hasValidLeadingZeros())
3054 HandleFlag(FS, FS.hasLeadingZeros(), startSpecifier, specifierLen);
3055 if (!FS.hasValidPlusPrefix())
3056 HandleFlag(FS, FS.hasPlusPrefix(), startSpecifier, specifierLen);
Tom Care3f272b82010-06-21 21:21:01 +00003057 if (!FS.hasValidSpacePrefix())
3058 HandleFlag(FS, FS.hasSpacePrefix(), startSpecifier, specifierLen);
Tom Careb49ec692010-06-17 19:00:27 +00003059 if (!FS.hasValidAlternativeForm())
3060 HandleFlag(FS, FS.hasAlternativeForm(), startSpecifier, specifierLen);
3061 if (!FS.hasValidLeftJustified())
3062 HandleFlag(FS, FS.isLeftJustified(), startSpecifier, specifierLen);
3063
3064 // Check that flags are not ignored by another flag
Tom Care3f272b82010-06-21 21:21:01 +00003065 if (FS.hasSpacePrefix() && FS.hasPlusPrefix()) // ' ' ignored by '+'
3066 HandleIgnoredFlag(FS, FS.hasSpacePrefix(), FS.hasPlusPrefix(),
3067 startSpecifier, specifierLen);
Tom Careb49ec692010-06-17 19:00:27 +00003068 if (FS.hasLeadingZeros() && FS.isLeftJustified()) // '0' ignored by '-'
3069 HandleIgnoredFlag(FS, FS.hasLeadingZeros(), FS.isLeftJustified(),
3070 startSpecifier, specifierLen);
3071
3072 // Check the length modifier is valid with the given conversion specifier.
Jordan Rose92303592012-09-08 04:00:03 +00003073 if (!FS.hasValidLengthModifier(S.getASTContext().getTargetInfo()))
Jordan Rose2f9cc042012-09-08 04:00:12 +00003074 HandleInvalidLengthModifier(FS, CS, startSpecifier, specifierLen,
3075 diag::warn_format_nonsensical_length);
Jordan Rose92303592012-09-08 04:00:03 +00003076 else if (!FS.hasStandardLengthModifier())
Jordan Rose2f9cc042012-09-08 04:00:12 +00003077 HandleNonStandardLengthModifier(FS, startSpecifier, specifierLen);
Jordan Rose92303592012-09-08 04:00:03 +00003078 else if (!FS.hasStandardLengthConversionCombination())
Jordan Rose2f9cc042012-09-08 04:00:12 +00003079 HandleInvalidLengthModifier(FS, CS, startSpecifier, specifierLen,
3080 diag::warn_format_non_standard_conversion_spec);
Tom Careb49ec692010-06-17 19:00:27 +00003081
Jordan Rose92303592012-09-08 04:00:03 +00003082 if (!FS.hasStandardConversionSpecifier(S.getLangOpts()))
3083 HandleNonStandardConversionSpecifier(CS, startSpecifier, specifierLen);
3084
Ted Kremenek9fcd8302010-01-29 01:43:31 +00003085 // The remaining checks depend on the data arguments.
3086 if (HasVAListArg)
3087 return true;
Ted Kremenekc8b188d2010-02-16 01:46:59 +00003088
Ted Kremenek6adb7e32010-07-26 19:45:42 +00003089 if (!CheckNumArgs(FS, CS, startSpecifier, specifierLen, argIndex))
Ted Kremenek9fcd8302010-01-29 01:43:31 +00003090 return false;
Ted Kremenekc8b188d2010-02-16 01:46:59 +00003091
Jordan Rose58bbe422012-07-19 18:10:08 +00003092 const Expr *Arg = getDataArg(argIndex);
3093 if (!Arg)
3094 return true;
3095
3096 return checkFormatExpr(FS, startSpecifier, specifierLen, Arg);
Richard Smith55ce3522012-06-25 20:30:08 +00003097}
3098
Jordan Roseaee34382012-09-05 22:56:26 +00003099static bool requiresParensToAddCast(const Expr *E) {
3100 // FIXME: We should have a general way to reason about operator
3101 // precedence and whether parens are actually needed here.
3102 // Take care of a few common cases where they aren't.
3103 const Expr *Inside = E->IgnoreImpCasts();
3104 if (const PseudoObjectExpr *POE = dyn_cast<PseudoObjectExpr>(Inside))
3105 Inside = POE->getSyntacticForm()->IgnoreImpCasts();
3106
3107 switch (Inside->getStmtClass()) {
3108 case Stmt::ArraySubscriptExprClass:
3109 case Stmt::CallExprClass:
Jordan Roseea0fdfe2012-12-05 18:44:44 +00003110 case Stmt::CharacterLiteralClass:
3111 case Stmt::CXXBoolLiteralExprClass:
Jordan Roseaee34382012-09-05 22:56:26 +00003112 case Stmt::DeclRefExprClass:
Jordan Roseea0fdfe2012-12-05 18:44:44 +00003113 case Stmt::FloatingLiteralClass:
3114 case Stmt::IntegerLiteralClass:
Jordan Roseaee34382012-09-05 22:56:26 +00003115 case Stmt::MemberExprClass:
Jordan Roseea0fdfe2012-12-05 18:44:44 +00003116 case Stmt::ObjCArrayLiteralClass:
3117 case Stmt::ObjCBoolLiteralExprClass:
3118 case Stmt::ObjCBoxedExprClass:
3119 case Stmt::ObjCDictionaryLiteralClass:
3120 case Stmt::ObjCEncodeExprClass:
Jordan Roseaee34382012-09-05 22:56:26 +00003121 case Stmt::ObjCIvarRefExprClass:
3122 case Stmt::ObjCMessageExprClass:
3123 case Stmt::ObjCPropertyRefExprClass:
Jordan Roseea0fdfe2012-12-05 18:44:44 +00003124 case Stmt::ObjCStringLiteralClass:
3125 case Stmt::ObjCSubscriptRefExprClass:
Jordan Roseaee34382012-09-05 22:56:26 +00003126 case Stmt::ParenExprClass:
Jordan Roseea0fdfe2012-12-05 18:44:44 +00003127 case Stmt::StringLiteralClass:
Jordan Roseaee34382012-09-05 22:56:26 +00003128 case Stmt::UnaryOperatorClass:
3129 return false;
3130 default:
3131 return true;
3132 }
3133}
3134
Richard Smith55ce3522012-06-25 20:30:08 +00003135bool
3136CheckPrintfHandler::checkFormatExpr(const analyze_printf::PrintfSpecifier &FS,
3137 const char *StartSpecifier,
3138 unsigned SpecifierLen,
3139 const Expr *E) {
3140 using namespace analyze_format_string;
3141 using namespace analyze_printf;
Michael J. Spencer2c35bc12010-07-27 04:46:02 +00003142 // Now type check the data expression that matches the
3143 // format specifier.
Hans Wennborgc3b3da02012-08-07 08:11:26 +00003144 const analyze_printf::ArgType &AT = FS.getArgType(S.Context,
3145 ObjCContext);
Jordan Rose22b74712012-09-05 22:56:19 +00003146 if (!AT.isValid())
3147 return true;
Jordan Roseaee34382012-09-05 22:56:26 +00003148
Jordan Rose598ec092012-12-05 18:44:40 +00003149 QualType ExprTy = E->getType();
Ted Kremenek3365e522013-04-10 06:26:26 +00003150 while (const TypeOfExprType *TET = dyn_cast<TypeOfExprType>(ExprTy)) {
3151 ExprTy = TET->getUnderlyingExpr()->getType();
3152 }
3153
Jordan Rose598ec092012-12-05 18:44:40 +00003154 if (AT.matchesType(S.Context, ExprTy))
Jordan Rose22b74712012-09-05 22:56:19 +00003155 return true;
Jordan Rose98709982012-06-04 22:48:57 +00003156
Jordan Rose22b74712012-09-05 22:56:19 +00003157 // Look through argument promotions for our error message's reported type.
3158 // This includes the integral and floating promotions, but excludes array
3159 // and function pointer decay; seeing that an argument intended to be a
3160 // string has type 'char [6]' is probably more confusing than 'char *'.
3161 if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(E)) {
3162 if (ICE->getCastKind() == CK_IntegralCast ||
3163 ICE->getCastKind() == CK_FloatingCast) {
3164 E = ICE->getSubExpr();
Jordan Rose598ec092012-12-05 18:44:40 +00003165 ExprTy = E->getType();
Jordan Rose22b74712012-09-05 22:56:19 +00003166
3167 // Check if we didn't match because of an implicit cast from a 'char'
3168 // or 'short' to an 'int'. This is done because printf is a varargs
3169 // function.
3170 if (ICE->getType() == S.Context.IntTy ||
3171 ICE->getType() == S.Context.UnsignedIntTy) {
3172 // All further checking is done on the subexpression.
Jordan Rose598ec092012-12-05 18:44:40 +00003173 if (AT.matchesType(S.Context, ExprTy))
Jordan Rose22b74712012-09-05 22:56:19 +00003174 return true;
Ted Kremenek12a37de2010-10-21 04:00:58 +00003175 }
Jordan Rose98709982012-06-04 22:48:57 +00003176 }
Jordan Rose598ec092012-12-05 18:44:40 +00003177 } else if (const CharacterLiteral *CL = dyn_cast<CharacterLiteral>(E)) {
3178 // Special case for 'a', which has type 'int' in C.
3179 // Note, however, that we do /not/ want to treat multibyte constants like
3180 // 'MooV' as characters! This form is deprecated but still exists.
3181 if (ExprTy == S.Context.IntTy)
3182 if (llvm::isUIntN(S.Context.getCharWidth(), CL->getValue()))
3183 ExprTy = S.Context.CharTy;
Jordan Rose22b74712012-09-05 22:56:19 +00003184 }
Michael J. Spencer2c35bc12010-07-27 04:46:02 +00003185
Jordan Rose0e5badd2012-12-05 18:44:49 +00003186 // %C in an Objective-C context prints a unichar, not a wchar_t.
3187 // If the argument is an integer of some kind, believe the %C and suggest
3188 // a cast instead of changing the conversion specifier.
Jordan Rose598ec092012-12-05 18:44:40 +00003189 QualType IntendedTy = ExprTy;
Jordan Rose0e5badd2012-12-05 18:44:49 +00003190 if (ObjCContext &&
3191 FS.getConversionSpecifier().getKind() == ConversionSpecifier::CArg) {
3192 if (ExprTy->isIntegralOrUnscopedEnumerationType() &&
3193 !ExprTy->isCharType()) {
3194 // 'unichar' is defined as a typedef of unsigned short, but we should
3195 // prefer using the typedef if it is visible.
3196 IntendedTy = S.Context.UnsignedShortTy;
Ted Kremenekda2f4052013-10-15 05:25:17 +00003197
3198 // While we are here, check if the value is an IntegerLiteral that happens
3199 // to be within the valid range.
3200 if (const IntegerLiteral *IL = dyn_cast<IntegerLiteral>(E)) {
3201 const llvm::APInt &V = IL->getValue();
3202 if (V.getActiveBits() <= S.Context.getTypeSize(IntendedTy))
3203 return true;
3204 }
3205
Jordan Rose0e5badd2012-12-05 18:44:49 +00003206 LookupResult Result(S, &S.Context.Idents.get("unichar"), E->getLocStart(),
3207 Sema::LookupOrdinaryName);
3208 if (S.LookupName(Result, S.getCurScope())) {
3209 NamedDecl *ND = Result.getFoundDecl();
3210 if (TypedefNameDecl *TD = dyn_cast<TypedefNameDecl>(ND))
3211 if (TD->getUnderlyingType() == IntendedTy)
3212 IntendedTy = S.Context.getTypedefType(TD);
3213 }
3214 }
3215 }
3216
3217 // Special-case some of Darwin's platform-independence types by suggesting
3218 // casts to primitive types that are known to be large enough.
3219 bool ShouldNotPrintDirectly = false;
Jordan Roseaee34382012-09-05 22:56:26 +00003220 if (S.Context.getTargetInfo().getTriple().isOSDarwin()) {
Ted Kremenekcd3d4402013-03-25 22:28:37 +00003221 // Use a 'while' to peel off layers of typedefs.
3222 QualType TyTy = IntendedTy;
3223 while (const TypedefType *UserTy = TyTy->getAs<TypedefType>()) {
Jordan Roseaee34382012-09-05 22:56:26 +00003224 StringRef Name = UserTy->getDecl()->getName();
Jordan Rose0e5badd2012-12-05 18:44:49 +00003225 QualType CastTy = llvm::StringSwitch<QualType>(Name)
Jordan Roseaee34382012-09-05 22:56:26 +00003226 .Case("NSInteger", S.Context.LongTy)
3227 .Case("NSUInteger", S.Context.UnsignedLongTy)
3228 .Case("SInt32", S.Context.IntTy)
3229 .Case("UInt32", S.Context.UnsignedIntTy)
Jordan Rose0e5badd2012-12-05 18:44:49 +00003230 .Default(QualType());
3231
3232 if (!CastTy.isNull()) {
3233 ShouldNotPrintDirectly = true;
3234 IntendedTy = CastTy;
Ted Kremenekcd3d4402013-03-25 22:28:37 +00003235 break;
Jordan Rose0e5badd2012-12-05 18:44:49 +00003236 }
Ted Kremenekcd3d4402013-03-25 22:28:37 +00003237 TyTy = UserTy->desugar();
Jordan Roseaee34382012-09-05 22:56:26 +00003238 }
3239 }
3240
Jordan Rose22b74712012-09-05 22:56:19 +00003241 // We may be able to offer a FixItHint if it is a supported type.
3242 PrintfSpecifier fixedFS = FS;
Jordan Roseaee34382012-09-05 22:56:26 +00003243 bool success = fixedFS.fixType(IntendedTy, S.getLangOpts(),
Jordan Rose22b74712012-09-05 22:56:19 +00003244 S.Context, ObjCContext);
Michael J. Spencer2c35bc12010-07-27 04:46:02 +00003245
Jordan Rose22b74712012-09-05 22:56:19 +00003246 if (success) {
3247 // Get the fix string from the fixed format specifier
3248 SmallString<16> buf;
3249 llvm::raw_svector_ostream os(buf);
3250 fixedFS.toString(os);
Michael J. Spencer2c35bc12010-07-27 04:46:02 +00003251
Jordan Roseaee34382012-09-05 22:56:26 +00003252 CharSourceRange SpecRange = getSpecifierRange(StartSpecifier, SpecifierLen);
3253
Jordan Rose0e5badd2012-12-05 18:44:49 +00003254 if (IntendedTy == ExprTy) {
3255 // In this case, the specifier is wrong and should be changed to match
3256 // the argument.
3257 EmitFormatDiagnostic(
3258 S.PDiag(diag::warn_printf_conversion_argument_type_mismatch)
3259 << AT.getRepresentativeTypeName(S.Context) << IntendedTy
3260 << E->getSourceRange(),
3261 E->getLocStart(),
3262 /*IsStringLocation*/false,
3263 SpecRange,
3264 FixItHint::CreateReplacement(SpecRange, os.str()));
3265
3266 } else {
Jordan Roseaee34382012-09-05 22:56:26 +00003267 // The canonical type for formatting this value is different from the
3268 // actual type of the expression. (This occurs, for example, with Darwin's
3269 // NSInteger on 32-bit platforms, where it is typedef'd as 'int', but
3270 // should be printed as 'long' for 64-bit compatibility.)
3271 // Rather than emitting a normal format/argument mismatch, we want to
3272 // add a cast to the recommended type (and correct the format string
3273 // if necessary).
3274 SmallString<16> CastBuf;
3275 llvm::raw_svector_ostream CastFix(CastBuf);
3276 CastFix << "(";
3277 IntendedTy.print(CastFix, S.Context.getPrintingPolicy());
3278 CastFix << ")";
3279
3280 SmallVector<FixItHint,4> Hints;
3281 if (!AT.matchesType(S.Context, IntendedTy))
3282 Hints.push_back(FixItHint::CreateReplacement(SpecRange, os.str()));
3283
3284 if (const CStyleCastExpr *CCast = dyn_cast<CStyleCastExpr>(E)) {
3285 // If there's already a cast present, just replace it.
3286 SourceRange CastRange(CCast->getLParenLoc(), CCast->getRParenLoc());
3287 Hints.push_back(FixItHint::CreateReplacement(CastRange, CastFix.str()));
3288
3289 } else if (!requiresParensToAddCast(E)) {
3290 // If the expression has high enough precedence,
3291 // just write the C-style cast.
3292 Hints.push_back(FixItHint::CreateInsertion(E->getLocStart(),
3293 CastFix.str()));
3294 } else {
3295 // Otherwise, add parens around the expression as well as the cast.
3296 CastFix << "(";
3297 Hints.push_back(FixItHint::CreateInsertion(E->getLocStart(),
3298 CastFix.str()));
3299
3300 SourceLocation After = S.PP.getLocForEndOfToken(E->getLocEnd());
3301 Hints.push_back(FixItHint::CreateInsertion(After, ")"));
3302 }
3303
Jordan Rose0e5badd2012-12-05 18:44:49 +00003304 if (ShouldNotPrintDirectly) {
3305 // The expression has a type that should not be printed directly.
3306 // We extract the name from the typedef because we don't want to show
3307 // the underlying type in the diagnostic.
3308 StringRef Name = cast<TypedefType>(ExprTy)->getDecl()->getName();
Jordan Roseaee34382012-09-05 22:56:26 +00003309
Jordan Rose0e5badd2012-12-05 18:44:49 +00003310 EmitFormatDiagnostic(S.PDiag(diag::warn_format_argument_needs_cast)
3311 << Name << IntendedTy
3312 << E->getSourceRange(),
3313 E->getLocStart(), /*IsStringLocation=*/false,
3314 SpecRange, Hints);
3315 } else {
3316 // In this case, the expression could be printed using a different
3317 // specifier, but we've decided that the specifier is probably correct
3318 // and we should cast instead. Just use the normal warning message.
3319 EmitFormatDiagnostic(
3320 S.PDiag(diag::warn_printf_conversion_argument_type_mismatch)
3321 << AT.getRepresentativeTypeName(S.Context) << ExprTy
3322 << E->getSourceRange(),
3323 E->getLocStart(), /*IsStringLocation*/false,
3324 SpecRange, Hints);
3325 }
Jordan Roseaee34382012-09-05 22:56:26 +00003326 }
Jordan Rose22b74712012-09-05 22:56:19 +00003327 } else {
3328 const CharSourceRange &CSR = getSpecifierRange(StartSpecifier,
3329 SpecifierLen);
3330 // Since the warning for passing non-POD types to variadic functions
3331 // was deferred until now, we emit a warning for non-POD
3332 // arguments here.
Richard Smithd7293d72013-08-05 18:49:43 +00003333 switch (S.isValidVarArgType(ExprTy)) {
3334 case Sema::VAK_Valid:
3335 case Sema::VAK_ValidInCXX11:
Jordan Rose22b74712012-09-05 22:56:19 +00003336 EmitFormatDiagnostic(
Richard Smithd7293d72013-08-05 18:49:43 +00003337 S.PDiag(diag::warn_printf_conversion_argument_type_mismatch)
3338 << AT.getRepresentativeTypeName(S.Context) << ExprTy
3339 << CSR
3340 << E->getSourceRange(),
3341 E->getLocStart(), /*IsStringLocation*/false, CSR);
3342 break;
3343
3344 case Sema::VAK_Undefined:
3345 EmitFormatDiagnostic(
3346 S.PDiag(diag::warn_non_pod_vararg_with_format_string)
Richard Smith2bf7fdb2013-01-02 11:42:31 +00003347 << S.getLangOpts().CPlusPlus11
Jordan Rose598ec092012-12-05 18:44:40 +00003348 << ExprTy
Jordan Rose22b74712012-09-05 22:56:19 +00003349 << CallType
3350 << AT.getRepresentativeTypeName(S.Context)
3351 << CSR
3352 << E->getSourceRange(),
3353 E->getLocStart(), /*IsStringLocation*/false, CSR);
Richard Smith2868a732014-02-28 01:36:39 +00003354 checkForCStrMembers(AT, E);
Richard Smithd7293d72013-08-05 18:49:43 +00003355 break;
3356
3357 case Sema::VAK_Invalid:
3358 if (ExprTy->isObjCObjectType())
3359 EmitFormatDiagnostic(
3360 S.PDiag(diag::err_cannot_pass_objc_interface_to_vararg_format)
3361 << S.getLangOpts().CPlusPlus11
3362 << ExprTy
3363 << CallType
3364 << AT.getRepresentativeTypeName(S.Context)
3365 << CSR
3366 << E->getSourceRange(),
3367 E->getLocStart(), /*IsStringLocation*/false, CSR);
3368 else
3369 // FIXME: If this is an initializer list, suggest removing the braces
3370 // or inserting a cast to the target type.
3371 S.Diag(E->getLocStart(), diag::err_cannot_pass_to_vararg_format)
3372 << isa<InitListExpr>(E) << ExprTy << CallType
3373 << AT.getRepresentativeTypeName(S.Context)
3374 << E->getSourceRange();
3375 break;
3376 }
3377
3378 assert(FirstDataArg + FS.getArgIndex() < CheckedVarArgs.size() &&
3379 "format string specifier index out of range");
3380 CheckedVarArgs[FirstDataArg + FS.getArgIndex()] = true;
Michael J. Spencer2c35bc12010-07-27 04:46:02 +00003381 }
3382
Ted Kremenekab278de2010-01-28 23:39:18 +00003383 return true;
3384}
3385
Ted Kremenek02087932010-07-16 02:11:22 +00003386//===--- CHECK: Scanf format string checking ------------------------------===//
3387
3388namespace {
3389class CheckScanfHandler : public CheckFormatHandler {
3390public:
3391 CheckScanfHandler(Sema &s, const StringLiteral *fexpr,
3392 const Expr *origFormatExpr, unsigned firstDataArg,
Jordan Rose97c6f2b2012-06-04 23:52:23 +00003393 unsigned numDataArgs, const char *beg, bool hasVAListArg,
Dmitri Gribenko765396f2013-01-13 20:46:02 +00003394 ArrayRef<const Expr *> Args,
Jordan Rose3e0ec582012-07-19 18:10:23 +00003395 unsigned formatIdx, bool inFunctionCall,
Richard Smithd7293d72013-08-05 18:49:43 +00003396 Sema::VariadicCallType CallType,
3397 llvm::SmallBitVector &CheckedVarArgs)
3398 : CheckFormatHandler(s, fexpr, origFormatExpr, firstDataArg,
3399 numDataArgs, beg, hasVAListArg,
3400 Args, formatIdx, inFunctionCall, CallType,
3401 CheckedVarArgs)
Jordan Rose3e0ec582012-07-19 18:10:23 +00003402 {}
Ted Kremenek02087932010-07-16 02:11:22 +00003403
3404 bool HandleScanfSpecifier(const analyze_scanf::ScanfSpecifier &FS,
3405 const char *startSpecifier,
Craig Toppere14c0f82014-03-12 04:55:44 +00003406 unsigned specifierLen) override;
Ted Kremenekce815422010-07-19 21:25:57 +00003407
3408 bool HandleInvalidScanfConversionSpecifier(
3409 const analyze_scanf::ScanfSpecifier &FS,
3410 const char *startSpecifier,
Craig Toppere14c0f82014-03-12 04:55:44 +00003411 unsigned specifierLen) override;
Ted Kremenekd7b31cc2010-07-16 18:28:03 +00003412
Craig Toppere14c0f82014-03-12 04:55:44 +00003413 void HandleIncompleteScanList(const char *start, const char *end) override;
Ted Kremenek02087932010-07-16 02:11:22 +00003414};
Ted Kremenek019d2242010-01-29 01:50:07 +00003415}
Ted Kremenekab278de2010-01-28 23:39:18 +00003416
Ted Kremenekd7b31cc2010-07-16 18:28:03 +00003417void CheckScanfHandler::HandleIncompleteScanList(const char *start,
3418 const char *end) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00003419 EmitFormatDiagnostic(S.PDiag(diag::warn_scanf_scanlist_incomplete),
3420 getLocationOfByte(end), /*IsStringLocation*/true,
3421 getSpecifierRange(start, end - start));
Ted Kremenekd7b31cc2010-07-16 18:28:03 +00003422}
3423
Ted Kremenekce815422010-07-19 21:25:57 +00003424bool CheckScanfHandler::HandleInvalidScanfConversionSpecifier(
3425 const analyze_scanf::ScanfSpecifier &FS,
3426 const char *startSpecifier,
3427 unsigned specifierLen) {
3428
Ted Kremenekf03e6d852010-07-20 20:04:27 +00003429 const analyze_scanf::ScanfConversionSpecifier &CS =
Ted Kremenekce815422010-07-19 21:25:57 +00003430 FS.getConversionSpecifier();
3431
3432 return HandleInvalidConversionSpecifier(FS.getArgIndex(),
3433 getLocationOfByte(CS.getStart()),
3434 startSpecifier, specifierLen,
3435 CS.getStart(), CS.getLength());
3436}
3437
Ted Kremenek02087932010-07-16 02:11:22 +00003438bool CheckScanfHandler::HandleScanfSpecifier(
3439 const analyze_scanf::ScanfSpecifier &FS,
3440 const char *startSpecifier,
3441 unsigned specifierLen) {
3442
3443 using namespace analyze_scanf;
3444 using namespace analyze_format_string;
3445
Ted Kremenekf03e6d852010-07-20 20:04:27 +00003446 const ScanfConversionSpecifier &CS = FS.getConversionSpecifier();
Ted Kremenek02087932010-07-16 02:11:22 +00003447
Ted Kremenek6cd69422010-07-19 22:01:06 +00003448 // Handle case where '%' and '*' don't consume an argument. These shouldn't
3449 // be used to decide if we are using positional arguments consistently.
3450 if (FS.consumesDataArgument()) {
3451 if (atFirstArg) {
3452 atFirstArg = false;
3453 usesPositionalArgs = FS.usesPositionalArg();
3454 }
3455 else if (usesPositionalArgs != FS.usesPositionalArg()) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00003456 HandlePositionalNonpositionalArgs(getLocationOfByte(CS.getStart()),
3457 startSpecifier, specifierLen);
Ted Kremenek6cd69422010-07-19 22:01:06 +00003458 return false;
3459 }
Ted Kremenek02087932010-07-16 02:11:22 +00003460 }
3461
3462 // Check if the field with is non-zero.
3463 const OptionalAmount &Amt = FS.getFieldWidth();
3464 if (Amt.getHowSpecified() == OptionalAmount::Constant) {
3465 if (Amt.getConstantAmount() == 0) {
3466 const CharSourceRange &R = getSpecifierRange(Amt.getStart(),
3467 Amt.getConstantLength());
Richard Trieu03cf7b72011-10-28 00:41:25 +00003468 EmitFormatDiagnostic(S.PDiag(diag::warn_scanf_nonzero_width),
3469 getLocationOfByte(Amt.getStart()),
3470 /*IsStringLocation*/true, R,
3471 FixItHint::CreateRemoval(R));
Ted Kremenek02087932010-07-16 02:11:22 +00003472 }
3473 }
3474
3475 if (!FS.consumesDataArgument()) {
3476 // FIXME: Technically specifying a precision or field width here
3477 // makes no sense. Worth issuing a warning at some point.
3478 return true;
3479 }
3480
3481 // Consume the argument.
3482 unsigned argIndex = FS.getArgIndex();
3483 if (argIndex < NumDataArgs) {
3484 // The check to see if the argIndex is valid will come later.
3485 // We set the bit here because we may exit early from this
3486 // function if we encounter some other error.
3487 CoveredArgs.set(argIndex);
3488 }
3489
Ted Kremenek4407ea42010-07-20 20:04:47 +00003490 // Check the length modifier is valid with the given conversion specifier.
Jordan Rose92303592012-09-08 04:00:03 +00003491 if (!FS.hasValidLengthModifier(S.getASTContext().getTargetInfo()))
Jordan Rose2f9cc042012-09-08 04:00:12 +00003492 HandleInvalidLengthModifier(FS, CS, startSpecifier, specifierLen,
3493 diag::warn_format_nonsensical_length);
Jordan Rose92303592012-09-08 04:00:03 +00003494 else if (!FS.hasStandardLengthModifier())
Jordan Rose2f9cc042012-09-08 04:00:12 +00003495 HandleNonStandardLengthModifier(FS, startSpecifier, specifierLen);
Jordan Rose92303592012-09-08 04:00:03 +00003496 else if (!FS.hasStandardLengthConversionCombination())
Jordan Rose2f9cc042012-09-08 04:00:12 +00003497 HandleInvalidLengthModifier(FS, CS, startSpecifier, specifierLen,
3498 diag::warn_format_non_standard_conversion_spec);
Hans Wennborgc9dd9462012-02-22 10:17:01 +00003499
Jordan Rose92303592012-09-08 04:00:03 +00003500 if (!FS.hasStandardConversionSpecifier(S.getLangOpts()))
3501 HandleNonStandardConversionSpecifier(CS, startSpecifier, specifierLen);
3502
Ted Kremenek02087932010-07-16 02:11:22 +00003503 // The remaining checks depend on the data arguments.
3504 if (HasVAListArg)
3505 return true;
3506
Ted Kremenek6adb7e32010-07-26 19:45:42 +00003507 if (!CheckNumArgs(FS, CS, startSpecifier, specifierLen, argIndex))
Ted Kremenek02087932010-07-16 02:11:22 +00003508 return false;
Ted Kremenek02087932010-07-16 02:11:22 +00003509
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003510 // Check that the argument type matches the format specifier.
3511 const Expr *Ex = getDataArg(argIndex);
Jordan Rose58bbe422012-07-19 18:10:08 +00003512 if (!Ex)
3513 return true;
3514
Hans Wennborgb1ab2a82012-08-07 08:59:46 +00003515 const analyze_format_string::ArgType &AT = FS.getArgType(S.Context);
3516 if (AT.isValid() && !AT.matchesType(S.Context, Ex->getType())) {
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003517 ScanfSpecifier fixedFS = FS;
Jordan Rose177b0a32014-03-20 03:32:39 +00003518 bool success = fixedFS.fixType(Ex->getType(),
3519 Ex->IgnoreImpCasts()->getType(),
3520 S.getLangOpts(), S.Context);
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003521
3522 if (success) {
3523 // Get the fix string from the fixed format specifier.
Dylan Noblesmith2c1dd272012-02-05 02:13:05 +00003524 SmallString<128> buf;
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003525 llvm::raw_svector_ostream os(buf);
3526 fixedFS.toString(os);
3527
3528 EmitFormatDiagnostic(
3529 S.PDiag(diag::warn_printf_conversion_argument_type_mismatch)
Hans Wennborgb1ab2a82012-08-07 08:59:46 +00003530 << AT.getRepresentativeTypeName(S.Context) << Ex->getType()
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003531 << Ex->getSourceRange(),
Matt Beaumont-Gay32d825a2012-05-17 00:03:16 +00003532 Ex->getLocStart(),
3533 /*IsStringLocation*/false,
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003534 getSpecifierRange(startSpecifier, specifierLen),
3535 FixItHint::CreateReplacement(
3536 getSpecifierRange(startSpecifier, specifierLen),
3537 os.str()));
3538 } else {
Jean-Daniel Dupascb197b02012-01-31 18:12:08 +00003539 EmitFormatDiagnostic(
3540 S.PDiag(diag::warn_printf_conversion_argument_type_mismatch)
Hans Wennborgb1ab2a82012-08-07 08:59:46 +00003541 << AT.getRepresentativeTypeName(S.Context) << Ex->getType()
Jean-Daniel Dupascb197b02012-01-31 18:12:08 +00003542 << Ex->getSourceRange(),
Matt Beaumont-Gay32d825a2012-05-17 00:03:16 +00003543 Ex->getLocStart(),
3544 /*IsStringLocation*/false,
Jean-Daniel Dupascb197b02012-01-31 18:12:08 +00003545 getSpecifierRange(startSpecifier, specifierLen));
Hans Wennborgb1a5e092011-12-10 13:20:11 +00003546 }
3547 }
3548
Ted Kremenek02087932010-07-16 02:11:22 +00003549 return true;
3550}
3551
3552void Sema::CheckFormatString(const StringLiteral *FExpr,
Ted Kremenekfb45d352010-02-10 02:16:30 +00003553 const Expr *OrigFormatExpr,
Dmitri Gribenko765396f2013-01-13 20:46:02 +00003554 ArrayRef<const Expr *> Args,
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00003555 bool HasVAListArg, unsigned format_idx,
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00003556 unsigned firstDataArg, FormatStringType Type,
Richard Smithd7293d72013-08-05 18:49:43 +00003557 bool inFunctionCall, VariadicCallType CallType,
3558 llvm::SmallBitVector &CheckedVarArgs) {
Ted Kremenek02087932010-07-16 02:11:22 +00003559
Ted Kremenekab278de2010-01-28 23:39:18 +00003560 // CHECK: is the format string a wide literal?
Richard Smith4060f772012-06-13 05:37:23 +00003561 if (!FExpr->isAscii() && !FExpr->isUTF8()) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00003562 CheckFormatHandler::EmitFormatDiagnostic(
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00003563 *this, inFunctionCall, Args[format_idx],
Richard Trieu03cf7b72011-10-28 00:41:25 +00003564 PDiag(diag::warn_format_string_is_wide_literal), FExpr->getLocStart(),
3565 /*IsStringLocation*/true, OrigFormatExpr->getSourceRange());
Ted Kremenekab278de2010-01-28 23:39:18 +00003566 return;
3567 }
Ted Kremenek02087932010-07-16 02:11:22 +00003568
Ted Kremenekab278de2010-01-28 23:39:18 +00003569 // Str - The format string. NOTE: this is NOT null-terminated!
Chris Lattner0e62c1c2011-07-23 10:55:15 +00003570 StringRef StrRef = FExpr->getString();
Benjamin Kramer35b077e2010-08-17 12:54:38 +00003571 const char *Str = StrRef.data();
Benjamin Kramer6c6a4f42014-02-20 17:05:38 +00003572 // Account for cases where the string literal is truncated in a declaration.
3573 const ConstantArrayType *T = Context.getAsConstantArrayType(FExpr->getType());
3574 assert(T && "String literal not of constant array type!");
3575 size_t TypeSize = T->getSize().getZExtValue();
3576 size_t StrLen = std::min(std::max(TypeSize, size_t(1)) - 1, StrRef.size());
Dmitri Gribenko765396f2013-01-13 20:46:02 +00003577 const unsigned numDataArgs = Args.size() - firstDataArg;
Benjamin Kramer6c6a4f42014-02-20 17:05:38 +00003578
3579 // Emit a warning if the string literal is truncated and does not contain an
3580 // embedded null character.
3581 if (TypeSize <= StrRef.size() &&
3582 StrRef.substr(0, TypeSize).find('\0') == StringRef::npos) {
3583 CheckFormatHandler::EmitFormatDiagnostic(
3584 *this, inFunctionCall, Args[format_idx],
3585 PDiag(diag::warn_printf_format_string_not_null_terminated),
3586 FExpr->getLocStart(),
3587 /*IsStringLocation=*/true, OrigFormatExpr->getSourceRange());
3588 return;
3589 }
3590
Ted Kremenekab278de2010-01-28 23:39:18 +00003591 // CHECK: empty format string?
Ted Kremenek6e302b22011-09-29 05:52:16 +00003592 if (StrLen == 0 && numDataArgs > 0) {
Richard Trieu03cf7b72011-10-28 00:41:25 +00003593 CheckFormatHandler::EmitFormatDiagnostic(
Jean-Daniel Dupas0ae6e672012-01-17 20:03:31 +00003594 *this, inFunctionCall, Args[format_idx],
Richard Trieu03cf7b72011-10-28 00:41:25 +00003595 PDiag(diag::warn_empty_format_string), FExpr->getLocStart(),
3596 /*IsStringLocation*/true, OrigFormatExpr->getSourceRange());
Ted Kremenekab278de2010-01-28 23:39:18 +00003597 return;
3598 }
Ted Kremenek02087932010-07-16 02:11:22 +00003599
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00003600 if (Type == FST_Printf || Type == FST_NSString) {
Ted Kremenek02087932010-07-16 02:11:22 +00003601 CheckPrintfHandler H(*this, FExpr, OrigFormatExpr, firstDataArg,
Jordan Rose97c6f2b2012-06-04 23:52:23 +00003602 numDataArgs, (Type == FST_NSString),
Dmitri Gribenko765396f2013-01-13 20:46:02 +00003603 Str, HasVAListArg, Args, format_idx,
Richard Smithd7293d72013-08-05 18:49:43 +00003604 inFunctionCall, CallType, CheckedVarArgs);
Ted Kremenek02087932010-07-16 02:11:22 +00003605
Hans Wennborg23926bd2011-12-15 10:25:47 +00003606 if (!analyze_format_string::ParsePrintfString(H, Str, Str + StrLen,
Jordan Rose510260c2012-09-13 02:11:03 +00003607 getLangOpts(),
3608 Context.getTargetInfo()))
Ted Kremenek02087932010-07-16 02:11:22 +00003609 H.DoneProcessing();
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00003610 } else if (Type == FST_Scanf) {
Jordan Rose97c6f2b2012-06-04 23:52:23 +00003611 CheckScanfHandler H(*this, FExpr, OrigFormatExpr, firstDataArg, numDataArgs,
Dmitri Gribenko765396f2013-01-13 20:46:02 +00003612 Str, HasVAListArg, Args, format_idx,
Richard Smithd7293d72013-08-05 18:49:43 +00003613 inFunctionCall, CallType, CheckedVarArgs);
Ted Kremenek02087932010-07-16 02:11:22 +00003614
Hans Wennborg23926bd2011-12-15 10:25:47 +00003615 if (!analyze_format_string::ParseScanfString(H, Str, Str + StrLen,
Jordan Rose510260c2012-09-13 02:11:03 +00003616 getLangOpts(),
3617 Context.getTargetInfo()))
Ted Kremenek02087932010-07-16 02:11:22 +00003618 H.DoneProcessing();
Jean-Daniel Dupas028573e72012-01-30 08:46:47 +00003619 } // TODO: handle other formats
Ted Kremenekc70ee862010-01-28 01:18:22 +00003620}
3621
Richard Trieu7eb0b2c2014-02-26 01:17:28 +00003622//===--- CHECK: Warn on use of wrong absolute value function. -------------===//
3623
3624// Returns the related absolute value function that is larger, of 0 if one
3625// does not exist.
3626static unsigned getLargerAbsoluteValueFunction(unsigned AbsFunction) {
3627 switch (AbsFunction) {
3628 default:
3629 return 0;
3630
3631 case Builtin::BI__builtin_abs:
3632 return Builtin::BI__builtin_labs;
3633 case Builtin::BI__builtin_labs:
3634 return Builtin::BI__builtin_llabs;
3635 case Builtin::BI__builtin_llabs:
3636 return 0;
3637
3638 case Builtin::BI__builtin_fabsf:
3639 return Builtin::BI__builtin_fabs;
3640 case Builtin::BI__builtin_fabs:
3641 return Builtin::BI__builtin_fabsl;
3642 case Builtin::BI__builtin_fabsl:
3643 return 0;
3644
3645 case Builtin::BI__builtin_cabsf:
3646 return Builtin::BI__builtin_cabs;
3647 case Builtin::BI__builtin_cabs:
3648 return Builtin::BI__builtin_cabsl;
3649 case Builtin::BI__builtin_cabsl:
3650 return 0;
3651
3652 case Builtin::BIabs:
3653 return Builtin::BIlabs;
3654 case Builtin::BIlabs:
3655 return Builtin::BIllabs;
3656 case Builtin::BIllabs:
3657 return 0;
3658
3659 case Builtin::BIfabsf:
3660 return Builtin::BIfabs;
3661 case Builtin::BIfabs:
3662 return Builtin::BIfabsl;
3663 case Builtin::BIfabsl:
3664 return 0;
3665
3666 case Builtin::BIcabsf:
3667 return Builtin::BIcabs;
3668 case Builtin::BIcabs:
3669 return Builtin::BIcabsl;
3670 case Builtin::BIcabsl:
3671 return 0;
3672 }
3673}
3674
3675// Returns the argument type of the absolute value function.
3676static QualType getAbsoluteValueArgumentType(ASTContext &Context,
3677 unsigned AbsType) {
3678 if (AbsType == 0)
3679 return QualType();
3680
3681 ASTContext::GetBuiltinTypeError Error = ASTContext::GE_None;
3682 QualType BuiltinType = Context.GetBuiltinType(AbsType, Error);
3683 if (Error != ASTContext::GE_None)
3684 return QualType();
3685
3686 const FunctionProtoType *FT = BuiltinType->getAs<FunctionProtoType>();
3687 if (!FT)
3688 return QualType();
3689
3690 if (FT->getNumParams() != 1)
3691 return QualType();
3692
3693 return FT->getParamType(0);
3694}
3695
3696// Returns the best absolute value function, or zero, based on type and
3697// current absolute value function.
3698static unsigned getBestAbsFunction(ASTContext &Context, QualType ArgType,
3699 unsigned AbsFunctionKind) {
3700 unsigned BestKind = 0;
3701 uint64_t ArgSize = Context.getTypeSize(ArgType);
3702 for (unsigned Kind = AbsFunctionKind; Kind != 0;
3703 Kind = getLargerAbsoluteValueFunction(Kind)) {
3704 QualType ParamType = getAbsoluteValueArgumentType(Context, Kind);
3705 if (Context.getTypeSize(ParamType) >= ArgSize) {
3706 if (BestKind == 0)
3707 BestKind = Kind;
3708 else if (Context.hasSameType(ParamType, ArgType)) {
3709 BestKind = Kind;
3710 break;
3711 }
3712 }
3713 }
3714 return BestKind;
3715}
3716
3717enum AbsoluteValueKind {
3718 AVK_Integer,
3719 AVK_Floating,
3720 AVK_Complex
3721};
3722
3723static AbsoluteValueKind getAbsoluteValueKind(QualType T) {
3724 if (T->isIntegralOrEnumerationType())
3725 return AVK_Integer;
3726 if (T->isRealFloatingType())
3727 return AVK_Floating;
3728 if (T->isAnyComplexType())
3729 return AVK_Complex;
3730
3731 llvm_unreachable("Type not integer, floating, or complex");
3732}
3733
3734// Changes the absolute value function to a different type. Preserves whether
3735// the function is a builtin.
3736static unsigned changeAbsFunction(unsigned AbsKind,
3737 AbsoluteValueKind ValueKind) {
3738 switch (ValueKind) {
3739 case AVK_Integer:
3740 switch (AbsKind) {
3741 default:
3742 return 0;
3743 case Builtin::BI__builtin_fabsf:
3744 case Builtin::BI__builtin_fabs:
3745 case Builtin::BI__builtin_fabsl:
3746 case Builtin::BI__builtin_cabsf:
3747 case Builtin::BI__builtin_cabs:
3748 case Builtin::BI__builtin_cabsl:
3749 return Builtin::BI__builtin_abs;
3750 case Builtin::BIfabsf:
3751 case Builtin::BIfabs:
3752 case Builtin::BIfabsl:
3753 case Builtin::BIcabsf:
3754 case Builtin::BIcabs:
3755 case Builtin::BIcabsl:
3756 return Builtin::BIabs;
3757 }
3758 case AVK_Floating:
3759 switch (AbsKind) {
3760 default:
3761 return 0;
3762 case Builtin::BI__builtin_abs:
3763 case Builtin::BI__builtin_labs:
3764 case Builtin::BI__builtin_llabs:
3765 case Builtin::BI__builtin_cabsf:
3766 case Builtin::BI__builtin_cabs:
3767 case Builtin::BI__builtin_cabsl:
3768 return Builtin::BI__builtin_fabsf;
3769 case Builtin::BIabs:
3770 case Builtin::BIlabs:
3771 case Builtin::BIllabs:
3772 case Builtin::BIcabsf:
3773 case Builtin::BIcabs:
3774 case Builtin::BIcabsl:
3775 return Builtin::BIfabsf;
3776 }
3777 case AVK_Complex:
3778 switch (AbsKind) {
3779 default:
3780 return 0;
3781 case Builtin::BI__builtin_abs:
3782 case Builtin::BI__builtin_labs:
3783 case Builtin::BI__builtin_llabs:
3784 case Builtin::BI__builtin_fabsf:
3785 case Builtin::BI__builtin_fabs:
3786 case Builtin::BI__builtin_fabsl:
3787 return Builtin::BI__builtin_cabsf;
3788 case Builtin::BIabs:
3789 case Builtin::BIlabs:
3790 case Builtin::BIllabs:
3791 case Builtin::BIfabsf:
3792 case Builtin::BIfabs:
3793 case Builtin::BIfabsl:
3794 return Builtin::BIcabsf;
3795 }
3796 }
3797 llvm_unreachable("Unable to convert function");
3798}
3799
Benjamin Kramer3d6220d2014-03-01 17:21:22 +00003800static unsigned getAbsoluteValueFunctionKind(const FunctionDecl *FDecl) {
Richard Trieu7eb0b2c2014-02-26 01:17:28 +00003801 const IdentifierInfo *FnInfo = FDecl->getIdentifier();
3802 if (!FnInfo)
3803 return 0;
3804
3805 switch (FDecl->getBuiltinID()) {
3806 default:
3807 return 0;
3808 case Builtin::BI__builtin_abs:
3809 case Builtin::BI__builtin_fabs:
3810 case Builtin::BI__builtin_fabsf:
3811 case Builtin::BI__builtin_fabsl:
3812 case Builtin::BI__builtin_labs:
3813 case Builtin::BI__builtin_llabs:
3814 case Builtin::BI__builtin_cabs:
3815 case Builtin::BI__builtin_cabsf:
3816 case Builtin::BI__builtin_cabsl:
3817 case Builtin::BIabs:
3818 case Builtin::BIlabs:
3819 case Builtin::BIllabs:
3820 case Builtin::BIfabs:
3821 case Builtin::BIfabsf:
3822 case Builtin::BIfabsl:
3823 case Builtin::BIcabs:
3824 case Builtin::BIcabsf:
3825 case Builtin::BIcabsl:
3826 return FDecl->getBuiltinID();
3827 }
3828 llvm_unreachable("Unknown Builtin type");
3829}
3830
3831// If the replacement is valid, emit a note with replacement function.
3832// Additionally, suggest including the proper header if not already included.
3833static void emitReplacement(Sema &S, SourceLocation Loc, SourceRange Range,
3834 unsigned AbsKind) {
3835 std::string AbsName = S.Context.BuiltinInfo.GetName(AbsKind);
3836
3837 // Look up absolute value function in TU scope.
3838 DeclarationName DN(&S.Context.Idents.get(AbsName));
3839 LookupResult R(S, DN, Loc, Sema::LookupAnyName);
Richard Trieufe771c02014-03-06 02:25:04 +00003840 R.suppressDiagnostics();
Richard Trieu7eb0b2c2014-02-26 01:17:28 +00003841 S.LookupName(R, S.TUScope);
3842
3843 // Skip notes if multiple results found in lookup.
3844 if (!R.empty() && !R.isSingleResult())
3845 return;
3846
3847 FunctionDecl *FD = 0;
3848 bool FoundFunction = R.isSingleResult();
3849 // When one result is found, see if it is the correct function.
3850 if (R.isSingleResult()) {
3851 FD = dyn_cast<FunctionDecl>(R.getFoundDecl());
3852 if (!FD || FD->getBuiltinID() != AbsKind)
3853 return;
3854 }
3855
3856 // Look for local name conflict, prepend "::" as necessary.
3857 R.clear();
3858 S.LookupName(R, S.getCurScope());
3859
3860 if (!FoundFunction) {
3861 if (!R.empty()) {
3862 AbsName = "::" + AbsName;
3863 }
3864 } else { // FoundFunction
3865 if (R.isSingleResult()) {
3866 if (R.getFoundDecl() != FD) {
3867 AbsName = "::" + AbsName;
3868 }
3869 } else if (!R.empty()) {
3870 AbsName = "::" + AbsName;
3871 }
3872 }
3873
3874 S.Diag(Loc, diag::note_replace_abs_function)
3875 << AbsName << FixItHint::CreateReplacement(Range, AbsName);
3876
3877 if (!FoundFunction) {
3878 S.Diag(Loc, diag::note_please_include_header)
3879 << S.Context.BuiltinInfo.getHeaderName(AbsKind)
3880 << S.Context.BuiltinInfo.GetName(AbsKind);
3881 }
3882}
3883
3884// Warn when using the wrong abs() function.
3885void Sema::CheckAbsoluteValueFunction(const CallExpr *Call,
3886 const FunctionDecl *FDecl,
3887 IdentifierInfo *FnInfo) {
3888 if (Call->getNumArgs() != 1)
3889 return;
3890
3891 unsigned AbsKind = getAbsoluteValueFunctionKind(FDecl);
3892 if (AbsKind == 0)
3893 return;
3894
3895 QualType ArgType = Call->getArg(0)->IgnoreParenImpCasts()->getType();
3896 QualType ParamType = Call->getArg(0)->getType();
3897
3898 // Unsigned types can not be negative. Suggest to drop the absolute value
3899 // function.
3900 if (ArgType->isUnsignedIntegerType()) {
3901 Diag(Call->getExprLoc(), diag::warn_unsigned_abs) << ArgType << ParamType;
3902 Diag(Call->getExprLoc(), diag::note_remove_abs)
3903 << FDecl
3904 << FixItHint::CreateRemoval(Call->getCallee()->getSourceRange());
3905 return;
3906 }
3907
3908 AbsoluteValueKind ArgValueKind = getAbsoluteValueKind(ArgType);
3909 AbsoluteValueKind ParamValueKind = getAbsoluteValueKind(ParamType);
3910
3911 // The argument and parameter are the same kind. Check if they are the right
3912 // size.
3913 if (ArgValueKind == ParamValueKind) {
3914 if (Context.getTypeSize(ArgType) <= Context.getTypeSize(ParamType))
3915 return;
3916
3917 unsigned NewAbsKind = getBestAbsFunction(Context, ArgType, AbsKind);
3918 Diag(Call->getExprLoc(), diag::warn_abs_too_small)
3919 << FDecl << ArgType << ParamType;
3920
3921 if (NewAbsKind == 0)
3922 return;
3923
3924 emitReplacement(*this, Call->getExprLoc(),
3925 Call->getCallee()->getSourceRange(), NewAbsKind);
3926 return;
3927 }
3928
3929 // ArgValueKind != ParamValueKind
3930 // The wrong type of absolute value function was used. Attempt to find the
3931 // proper one.
3932 unsigned NewAbsKind = changeAbsFunction(AbsKind, ArgValueKind);
3933 NewAbsKind = getBestAbsFunction(Context, ArgType, NewAbsKind);
3934 if (NewAbsKind == 0)
3935 return;
3936
3937 Diag(Call->getExprLoc(), diag::warn_wrong_absolute_value_type)
3938 << FDecl << ParamValueKind << ArgValueKind;
3939
3940 emitReplacement(*this, Call->getExprLoc(),
3941 Call->getCallee()->getSourceRange(), NewAbsKind);
3942 return;
3943}
3944
Chandler Carruth53caa4d2011-04-27 07:05:31 +00003945//===--- CHECK: Standard memory functions ---------------------------------===//
3946
Nico Weber0e6daef2013-12-26 23:38:39 +00003947/// \brief Takes the expression passed to the size_t parameter of functions
3948/// such as memcmp, strncat, etc and warns if it's a comparison.
3949///
3950/// This is to catch typos like `if (memcmp(&a, &b, sizeof(a) > 0))`.
3951static bool CheckMemorySizeofForComparison(Sema &S, const Expr *E,
3952 IdentifierInfo *FnName,
3953 SourceLocation FnLoc,
3954 SourceLocation RParenLoc) {
3955 const BinaryOperator *Size = dyn_cast<BinaryOperator>(E);
3956 if (!Size)
3957 return false;
3958
3959 // if E is binop and op is >, <, >=, <=, ==, &&, ||:
3960 if (!Size->isComparisonOp() && !Size->isEqualityOp() && !Size->isLogicalOp())
3961 return false;
3962
3963 Preprocessor &PP = S.getPreprocessor();
3964 SourceRange SizeRange = Size->getSourceRange();
3965 S.Diag(Size->getOperatorLoc(), diag::warn_memsize_comparison)
3966 << SizeRange << FnName;
3967 S.Diag(FnLoc, diag::warn_memsize_comparison_paren_note)
3968 << FnName
3969 << FixItHint::CreateInsertion(
3970 PP.getLocForEndOfToken(Size->getLHS()->getLocEnd()),
3971 ")")
3972 << FixItHint::CreateRemoval(RParenLoc);
3973 S.Diag(SizeRange.getBegin(), diag::warn_memsize_comparison_cast_note)
3974 << FixItHint::CreateInsertion(SizeRange.getBegin(), "(size_t)(")
3975 << FixItHint::CreateInsertion(
3976 PP.getLocForEndOfToken(SizeRange.getEnd()), ")");
3977
3978 return true;
3979}
3980
Douglas Gregora74926b2011-05-03 20:05:22 +00003981/// \brief Determine whether the given type is a dynamic class type (e.g.,
3982/// whether it has a vtable).
3983static bool isDynamicClassType(QualType T) {
3984 if (CXXRecordDecl *Record = T->getAsCXXRecordDecl())
3985 if (CXXRecordDecl *Definition = Record->getDefinition())
3986 if (Definition->isDynamicClass())
3987 return true;
3988
3989 return false;
3990}
3991
Chandler Carruth889ed862011-06-21 23:04:20 +00003992/// \brief If E is a sizeof expression, returns its argument expression,
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00003993/// otherwise returns NULL.
3994static const Expr *getSizeOfExprArg(const Expr* E) {
Nico Weberc5e73862011-06-14 16:14:58 +00003995 if (const UnaryExprOrTypeTraitExpr *SizeOf =
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00003996 dyn_cast<UnaryExprOrTypeTraitExpr>(E))
3997 if (SizeOf->getKind() == clang::UETT_SizeOf && !SizeOf->isArgumentType())
3998 return SizeOf->getArgumentExpr()->IgnoreParenImpCasts();
Nico Weberc5e73862011-06-14 16:14:58 +00003999
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004000 return 0;
4001}
4002
Chandler Carruth889ed862011-06-21 23:04:20 +00004003/// \brief If E is a sizeof expression, returns its argument type.
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004004static QualType getSizeOfArgType(const Expr* E) {
4005 if (const UnaryExprOrTypeTraitExpr *SizeOf =
4006 dyn_cast<UnaryExprOrTypeTraitExpr>(E))
4007 if (SizeOf->getKind() == clang::UETT_SizeOf)
4008 return SizeOf->getTypeOfArgument();
4009
4010 return QualType();
Nico Weberc5e73862011-06-14 16:14:58 +00004011}
4012
Chandler Carruth53caa4d2011-04-27 07:05:31 +00004013/// \brief Check for dangerous or invalid arguments to memset().
4014///
Chandler Carruthac687262011-06-03 06:23:57 +00004015/// This issues warnings on known problematic, dangerous or unspecified
Matt Beaumont-Gay3c489902011-08-05 00:22:34 +00004016/// arguments to the standard 'memset', 'memcpy', 'memmove', and 'memcmp'
4017/// function calls.
Chandler Carruth53caa4d2011-04-27 07:05:31 +00004018///
4019/// \param Call The call expression to diagnose.
Matt Beaumont-Gay3c489902011-08-05 00:22:34 +00004020void Sema::CheckMemaccessArguments(const CallExpr *Call,
Anna Zaks22122702012-01-17 00:37:07 +00004021 unsigned BId,
Matt Beaumont-Gay3c489902011-08-05 00:22:34 +00004022 IdentifierInfo *FnName) {
Anna Zaks22122702012-01-17 00:37:07 +00004023 assert(BId != 0);
4024
Ted Kremenekb5fabb22011-04-28 01:38:02 +00004025 // It is possible to have a non-standard definition of memset. Validate
Douglas Gregor18739c32011-06-16 17:56:04 +00004026 // we have enough arguments, and if not, abort further checking.
Anna Zaks22122702012-01-17 00:37:07 +00004027 unsigned ExpectedNumArgs = (BId == Builtin::BIstrndup ? 2 : 3);
Nico Weber39bfed82011-10-13 22:30:23 +00004028 if (Call->getNumArgs() < ExpectedNumArgs)
Ted Kremenekb5fabb22011-04-28 01:38:02 +00004029 return;
4030
Anna Zaks22122702012-01-17 00:37:07 +00004031 unsigned LastArg = (BId == Builtin::BImemset ||
4032 BId == Builtin::BIstrndup ? 1 : 2);
4033 unsigned LenArg = (BId == Builtin::BIstrndup ? 1 : 2);
Nico Weber39bfed82011-10-13 22:30:23 +00004034 const Expr *LenExpr = Call->getArg(LenArg)->IgnoreParenImpCasts();
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004035
Nico Weber0e6daef2013-12-26 23:38:39 +00004036 if (CheckMemorySizeofForComparison(*this, LenExpr, FnName,
4037 Call->getLocStart(), Call->getRParenLoc()))
4038 return;
4039
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004040 // We have special checking when the length is a sizeof expression.
4041 QualType SizeOfArgTy = getSizeOfArgType(LenExpr);
4042 const Expr *SizeOfArg = getSizeOfExprArg(LenExpr);
4043 llvm::FoldingSetNodeID SizeOfArgID;
4044
Douglas Gregor3bb2a812011-05-03 20:37:33 +00004045 for (unsigned ArgIdx = 0; ArgIdx != LastArg; ++ArgIdx) {
4046 const Expr *Dest = Call->getArg(ArgIdx)->IgnoreParenImpCasts();
Nico Weberc5e73862011-06-14 16:14:58 +00004047 SourceRange ArgRange = Call->getArg(ArgIdx)->getSourceRange();
Chandler Carruth53caa4d2011-04-27 07:05:31 +00004048
Douglas Gregor3bb2a812011-05-03 20:37:33 +00004049 QualType DestTy = Dest->getType();
4050 if (const PointerType *DestPtrTy = DestTy->getAs<PointerType>()) {
4051 QualType PointeeTy = DestPtrTy->getPointeeType();
John McCall31168b02011-06-15 23:02:42 +00004052
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004053 // Never warn about void type pointers. This can be used to suppress
4054 // false positives.
4055 if (PointeeTy->isVoidType())
Douglas Gregor3bb2a812011-05-03 20:37:33 +00004056 continue;
Chandler Carruth53caa4d2011-04-27 07:05:31 +00004057
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004058 // Catch "memset(p, 0, sizeof(p))" -- needs to be sizeof(*p). Do this by
4059 // actually comparing the expressions for equality. Because computing the
4060 // expression IDs can be expensive, we only do this if the diagnostic is
4061 // enabled.
4062 if (SizeOfArg &&
4063 Diags.getDiagnosticLevel(diag::warn_sizeof_pointer_expr_memaccess,
4064 SizeOfArg->getExprLoc())) {
4065 // We only compute IDs for expressions if the warning is enabled, and
4066 // cache the sizeof arg's ID.
4067 if (SizeOfArgID == llvm::FoldingSetNodeID())
4068 SizeOfArg->Profile(SizeOfArgID, Context, true);
4069 llvm::FoldingSetNodeID DestID;
4070 Dest->Profile(DestID, Context, true);
4071 if (DestID == SizeOfArgID) {
Nico Weber39bfed82011-10-13 22:30:23 +00004072 // TODO: For strncpy() and friends, this could suggest sizeof(dst)
4073 // over sizeof(src) as well.
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004074 unsigned ActionIdx = 0; // Default is to suggest dereferencing.
Anna Zaks869aecc2012-05-30 00:34:21 +00004075 StringRef ReadableName = FnName->getName();
4076
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004077 if (const UnaryOperator *UnaryOp = dyn_cast<UnaryOperator>(Dest))
Anna Zaksd08d9152012-05-30 23:14:52 +00004078 if (UnaryOp->getOpcode() == UO_AddrOf)
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004079 ActionIdx = 1; // If its an address-of operator, just remove it.
Fariborz Jahanian4d365ba2013-01-30 01:12:44 +00004080 if (!PointeeTy->isIncompleteType() &&
4081 (Context.getTypeSize(PointeeTy) == Context.getCharWidth()))
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004082 ActionIdx = 2; // If the pointee's size is sizeof(char),
4083 // suggest an explicit length.
Anna Zaks869aecc2012-05-30 00:34:21 +00004084
4085 // If the function is defined as a builtin macro, do not show macro
4086 // expansion.
4087 SourceLocation SL = SizeOfArg->getExprLoc();
4088 SourceRange DSR = Dest->getSourceRange();
4089 SourceRange SSR = SizeOfArg->getSourceRange();
4090 SourceManager &SM = PP.getSourceManager();
4091
4092 if (SM.isMacroArgExpansion(SL)) {
4093 ReadableName = Lexer::getImmediateMacroName(SL, SM, LangOpts);
4094 SL = SM.getSpellingLoc(SL);
4095 DSR = SourceRange(SM.getSpellingLoc(DSR.getBegin()),
4096 SM.getSpellingLoc(DSR.getEnd()));
4097 SSR = SourceRange(SM.getSpellingLoc(SSR.getBegin()),
4098 SM.getSpellingLoc(SSR.getEnd()));
4099 }
4100
Anna Zaksd08d9152012-05-30 23:14:52 +00004101 DiagRuntimeBehavior(SL, SizeOfArg,
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004102 PDiag(diag::warn_sizeof_pointer_expr_memaccess)
Anna Zaks869aecc2012-05-30 00:34:21 +00004103 << ReadableName
Anna Zaksd08d9152012-05-30 23:14:52 +00004104 << PointeeTy
4105 << DestTy
Anna Zaks869aecc2012-05-30 00:34:21 +00004106 << DSR
Anna Zaksd08d9152012-05-30 23:14:52 +00004107 << SSR);
4108 DiagRuntimeBehavior(SL, SizeOfArg,
4109 PDiag(diag::warn_sizeof_pointer_expr_memaccess_note)
4110 << ActionIdx
4111 << SSR);
4112
Chandler Carruth8b9e5a72011-06-16 09:09:40 +00004113 break;
4114 }
4115 }
4116
4117 // Also check for cases where the sizeof argument is the exact same
4118 // type as the memory argument, and where it points to a user-defined
4119 // record type.
4120 if (SizeOfArgTy != QualType()) {
4121 if (PointeeTy->isRecordType() &&
4122 Context.typesAreCompatible(SizeOfArgTy, DestTy)) {
4123 DiagRuntimeBehavior(LenExpr->getExprLoc(), Dest,
4124 PDiag(diag::warn_sizeof_pointer_type_memaccess)
4125 << FnName << SizeOfArgTy << ArgIdx
4126 << PointeeTy << Dest->getSourceRange()
4127 << LenExpr->getSourceRange());
4128 break;
4129 }
Nico Weberc5e73862011-06-14 16:14:58 +00004130 }
4131
Douglas Gregor3bb2a812011-05-03 20:37:33 +00004132 // Always complain about dynamic classes.
Anna Zaks22122702012-01-17 00:37:07 +00004133 if (isDynamicClassType(PointeeTy)) {
4134
4135 unsigned OperationType = 0;
4136 // "overwritten" if we're warning about the destination for any call
4137 // but memcmp; otherwise a verb appropriate to the call.
4138 if (ArgIdx != 0 || BId == Builtin::BImemcmp) {
4139 if (BId == Builtin::BImemcpy)
4140 OperationType = 1;
4141 else if(BId == Builtin::BImemmove)
4142 OperationType = 2;
4143 else if (BId == Builtin::BImemcmp)
4144 OperationType = 3;
4145 }
4146
Matt Beaumont-Gay335e6532011-08-19 20:40:18 +00004147 DiagRuntimeBehavior(
4148 Dest->getExprLoc(), Dest,
4149 PDiag(diag::warn_dyn_class_memaccess)
Anna Zaks22122702012-01-17 00:37:07 +00004150 << (BId == Builtin::BImemcmp ? ArgIdx + 2 : ArgIdx)
Anna Zaks201d4892012-01-13 21:52:01 +00004151 << FnName << PointeeTy
Anna Zaks22122702012-01-17 00:37:07 +00004152 << OperationType
Matt Beaumont-Gay335e6532011-08-19 20:40:18 +00004153 << Call->getCallee()->getSourceRange());
Anna Zaks22122702012-01-17 00:37:07 +00004154 } else if (PointeeTy.hasNonTrivialObjCLifetime() &&
4155 BId != Builtin::BImemset)
Matt Beaumont-Gay335e6532011-08-19 20:40:18 +00004156 DiagRuntimeBehavior(
4157 Dest->getExprLoc(), Dest,
4158 PDiag(diag::warn_arc_object_memaccess)
4159 << ArgIdx << FnName << PointeeTy
4160 << Call->getCallee()->getSourceRange());
John McCall31168b02011-06-15 23:02:42 +00004161 else
Douglas Gregor3bb2a812011-05-03 20:37:33 +00004162 continue;
John McCall31168b02011-06-15 23:02:42 +00004163
4164 DiagRuntimeBehavior(
4165 Dest->getExprLoc(), Dest,
Chandler Carruthac687262011-06-03 06:23:57 +00004166 PDiag(diag::note_bad_memaccess_silence)
Douglas Gregor3bb2a812011-05-03 20:37:33 +00004167 << FixItHint::CreateInsertion(ArgRange.getBegin(), "(void*)"));
4168 break;
4169 }
Chandler Carruth53caa4d2011-04-27 07:05:31 +00004170 }
4171}
4172
Ted Kremenek6865f772011-08-18 20:55:45 +00004173// A little helper routine: ignore addition and subtraction of integer literals.
4174// This intentionally does not ignore all integer constant expressions because
4175// we don't want to remove sizeof().
4176static const Expr *ignoreLiteralAdditions(const Expr *Ex, ASTContext &Ctx) {
4177 Ex = Ex->IgnoreParenCasts();
4178
4179 for (;;) {
4180 const BinaryOperator * BO = dyn_cast<BinaryOperator>(Ex);
4181 if (!BO || !BO->isAdditiveOp())
4182 break;
4183
4184 const Expr *RHS = BO->getRHS()->IgnoreParenCasts();
4185 const Expr *LHS = BO->getLHS()->IgnoreParenCasts();
4186
4187 if (isa<IntegerLiteral>(RHS))
4188 Ex = LHS;
4189 else if (isa<IntegerLiteral>(LHS))
4190 Ex = RHS;
4191 else
4192 break;
4193 }
4194
4195 return Ex;
4196}
4197
Anna Zaks13b08572012-08-08 21:42:23 +00004198static bool isConstantSizeArrayWithMoreThanOneElement(QualType Ty,
4199 ASTContext &Context) {
4200 // Only handle constant-sized or VLAs, but not flexible members.
4201 if (const ConstantArrayType *CAT = Context.getAsConstantArrayType(Ty)) {
4202 // Only issue the FIXIT for arrays of size > 1.
4203 if (CAT->getSize().getSExtValue() <= 1)
4204 return false;
4205 } else if (!Ty->isVariableArrayType()) {
4206 return false;
4207 }
4208 return true;
4209}
4210
Ted Kremenek6865f772011-08-18 20:55:45 +00004211// Warn if the user has made the 'size' argument to strlcpy or strlcat
4212// be the size of the source, instead of the destination.
4213void Sema::CheckStrlcpycatArguments(const CallExpr *Call,
4214 IdentifierInfo *FnName) {
4215
4216 // Don't crash if the user has the wrong number of arguments
4217 if (Call->getNumArgs() != 3)
4218 return;
4219
4220 const Expr *SrcArg = ignoreLiteralAdditions(Call->getArg(1), Context);
4221 const Expr *SizeArg = ignoreLiteralAdditions(Call->getArg(2), Context);
4222 const Expr *CompareWithSrc = NULL;
Nico Weber0e6daef2013-12-26 23:38:39 +00004223
4224 if (CheckMemorySizeofForComparison(*this, SizeArg, FnName,
4225 Call->getLocStart(), Call->getRParenLoc()))
4226 return;
Ted Kremenek6865f772011-08-18 20:55:45 +00004227
4228 // Look for 'strlcpy(dst, x, sizeof(x))'
4229 if (const Expr *Ex = getSizeOfExprArg(SizeArg))
4230 CompareWithSrc = Ex;
4231 else {
4232 // Look for 'strlcpy(dst, x, strlen(x))'
4233 if (const CallExpr *SizeCall = dyn_cast<CallExpr>(SizeArg)) {
Alp Tokera724cff2013-12-28 21:59:02 +00004234 if (SizeCall->getBuiltinCallee() == Builtin::BIstrlen &&
4235 SizeCall->getNumArgs() == 1)
Ted Kremenek6865f772011-08-18 20:55:45 +00004236 CompareWithSrc = ignoreLiteralAdditions(SizeCall->getArg(0), Context);
4237 }
4238 }
4239
4240 if (!CompareWithSrc)
4241 return;
4242
4243 // Determine if the argument to sizeof/strlen is equal to the source
4244 // argument. In principle there's all kinds of things you could do
4245 // here, for instance creating an == expression and evaluating it with
4246 // EvaluateAsBooleanCondition, but this uses a more direct technique:
4247 const DeclRefExpr *SrcArgDRE = dyn_cast<DeclRefExpr>(SrcArg);
4248 if (!SrcArgDRE)
4249 return;
4250
4251 const DeclRefExpr *CompareWithSrcDRE = dyn_cast<DeclRefExpr>(CompareWithSrc);
4252 if (!CompareWithSrcDRE ||
4253 SrcArgDRE->getDecl() != CompareWithSrcDRE->getDecl())
4254 return;
4255
4256 const Expr *OriginalSizeArg = Call->getArg(2);
4257 Diag(CompareWithSrcDRE->getLocStart(), diag::warn_strlcpycat_wrong_size)
4258 << OriginalSizeArg->getSourceRange() << FnName;
4259
4260 // Output a FIXIT hint if the destination is an array (rather than a
4261 // pointer to an array). This could be enhanced to handle some
4262 // pointers if we know the actual size, like if DstArg is 'array+2'
4263 // we could say 'sizeof(array)-2'.
4264 const Expr *DstArg = Call->getArg(0)->IgnoreParenImpCasts();
Anna Zaks13b08572012-08-08 21:42:23 +00004265 if (!isConstantSizeArrayWithMoreThanOneElement(DstArg->getType(), Context))
Ted Kremenek18db5d42011-08-18 22:48:41 +00004266 return;
Ted Kremenek18db5d42011-08-18 22:48:41 +00004267
Dylan Noblesmith2c1dd272012-02-05 02:13:05 +00004268 SmallString<128> sizeString;
Ted Kremenek18db5d42011-08-18 22:48:41 +00004269 llvm::raw_svector_ostream OS(sizeString);
4270 OS << "sizeof(";
Richard Smith235341b2012-08-16 03:56:14 +00004271 DstArg->printPretty(OS, 0, getPrintingPolicy());
Ted Kremenek18db5d42011-08-18 22:48:41 +00004272 OS << ")";
4273
4274 Diag(OriginalSizeArg->getLocStart(), diag::note_strlcpycat_wrong_size)
4275 << FixItHint::CreateReplacement(OriginalSizeArg->getSourceRange(),
4276 OS.str());
Ted Kremenek6865f772011-08-18 20:55:45 +00004277}
4278
Anna Zaks314cd092012-02-01 19:08:57 +00004279/// Check if two expressions refer to the same declaration.
4280static bool referToTheSameDecl(const Expr *E1, const Expr *E2) {
4281 if (const DeclRefExpr *D1 = dyn_cast_or_null<DeclRefExpr>(E1))
4282 if (const DeclRefExpr *D2 = dyn_cast_or_null<DeclRefExpr>(E2))
4283 return D1->getDecl() == D2->getDecl();
4284 return false;
4285}
4286
4287static const Expr *getStrlenExprArg(const Expr *E) {
4288 if (const CallExpr *CE = dyn_cast<CallExpr>(E)) {
4289 const FunctionDecl *FD = CE->getDirectCallee();
4290 if (!FD || FD->getMemoryFunctionKind() != Builtin::BIstrlen)
4291 return 0;
4292 return CE->getArg(0)->IgnoreParenCasts();
4293 }
4294 return 0;
4295}
4296
4297// Warn on anti-patterns as the 'size' argument to strncat.
4298// The correct size argument should look like following:
4299// strncat(dst, src, sizeof(dst) - strlen(dest) - 1);
4300void Sema::CheckStrncatArguments(const CallExpr *CE,
4301 IdentifierInfo *FnName) {
4302 // Don't crash if the user has the wrong number of arguments.
4303 if (CE->getNumArgs() < 3)
4304 return;
4305 const Expr *DstArg = CE->getArg(0)->IgnoreParenCasts();
4306 const Expr *SrcArg = CE->getArg(1)->IgnoreParenCasts();
4307 const Expr *LenArg = CE->getArg(2)->IgnoreParenCasts();
4308
Nico Weber0e6daef2013-12-26 23:38:39 +00004309 if (CheckMemorySizeofForComparison(*this, LenArg, FnName, CE->getLocStart(),
4310 CE->getRParenLoc()))
4311 return;
4312
Anna Zaks314cd092012-02-01 19:08:57 +00004313 // Identify common expressions, which are wrongly used as the size argument
4314 // to strncat and may lead to buffer overflows.
4315 unsigned PatternType = 0;
4316 if (const Expr *SizeOfArg = getSizeOfExprArg(LenArg)) {
4317 // - sizeof(dst)
4318 if (referToTheSameDecl(SizeOfArg, DstArg))
4319 PatternType = 1;
4320 // - sizeof(src)
4321 else if (referToTheSameDecl(SizeOfArg, SrcArg))
4322 PatternType = 2;
4323 } else if (const BinaryOperator *BE = dyn_cast<BinaryOperator>(LenArg)) {
4324 if (BE->getOpcode() == BO_Sub) {
4325 const Expr *L = BE->getLHS()->IgnoreParenCasts();
4326 const Expr *R = BE->getRHS()->IgnoreParenCasts();
4327 // - sizeof(dst) - strlen(dst)
4328 if (referToTheSameDecl(DstArg, getSizeOfExprArg(L)) &&
4329 referToTheSameDecl(DstArg, getStrlenExprArg(R)))
4330 PatternType = 1;
4331 // - sizeof(src) - (anything)
4332 else if (referToTheSameDecl(SrcArg, getSizeOfExprArg(L)))
4333 PatternType = 2;
4334 }
4335 }
4336
4337 if (PatternType == 0)
4338 return;
4339
Anna Zaks5069aa32012-02-03 01:27:37 +00004340 // Generate the diagnostic.
4341 SourceLocation SL = LenArg->getLocStart();
4342 SourceRange SR = LenArg->getSourceRange();
4343 SourceManager &SM = PP.getSourceManager();
4344
4345 // If the function is defined as a builtin macro, do not show macro expansion.
4346 if (SM.isMacroArgExpansion(SL)) {
4347 SL = SM.getSpellingLoc(SL);
4348 SR = SourceRange(SM.getSpellingLoc(SR.getBegin()),
4349 SM.getSpellingLoc(SR.getEnd()));
4350 }
4351
Anna Zaks13b08572012-08-08 21:42:23 +00004352 // Check if the destination is an array (rather than a pointer to an array).
4353 QualType DstTy = DstArg->getType();
4354 bool isKnownSizeArray = isConstantSizeArrayWithMoreThanOneElement(DstTy,
4355 Context);
4356 if (!isKnownSizeArray) {
4357 if (PatternType == 1)
4358 Diag(SL, diag::warn_strncat_wrong_size) << SR;
4359 else
4360 Diag(SL, diag::warn_strncat_src_size) << SR;
4361 return;
4362 }
4363
Anna Zaks314cd092012-02-01 19:08:57 +00004364 if (PatternType == 1)
Anna Zaks5069aa32012-02-03 01:27:37 +00004365 Diag(SL, diag::warn_strncat_large_size) << SR;
Anna Zaks314cd092012-02-01 19:08:57 +00004366 else
Anna Zaks5069aa32012-02-03 01:27:37 +00004367 Diag(SL, diag::warn_strncat_src_size) << SR;
Anna Zaks314cd092012-02-01 19:08:57 +00004368
Dylan Noblesmith2c1dd272012-02-05 02:13:05 +00004369 SmallString<128> sizeString;
Anna Zaks314cd092012-02-01 19:08:57 +00004370 llvm::raw_svector_ostream OS(sizeString);
4371 OS << "sizeof(";
Richard Smith235341b2012-08-16 03:56:14 +00004372 DstArg->printPretty(OS, 0, getPrintingPolicy());
Anna Zaks314cd092012-02-01 19:08:57 +00004373 OS << ") - ";
4374 OS << "strlen(";
Richard Smith235341b2012-08-16 03:56:14 +00004375 DstArg->printPretty(OS, 0, getPrintingPolicy());
Anna Zaks314cd092012-02-01 19:08:57 +00004376 OS << ") - 1";
4377
Anna Zaks5069aa32012-02-03 01:27:37 +00004378 Diag(SL, diag::note_strncat_wrong_size)
4379 << FixItHint::CreateReplacement(SR, OS.str());
Anna Zaks314cd092012-02-01 19:08:57 +00004380}
4381
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004382//===--- CHECK: Return Address of Stack Variable --------------------------===//
4383
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004384static Expr *EvalVal(Expr *E, SmallVectorImpl<DeclRefExpr *> &refVars,
4385 Decl *ParentDecl);
4386static Expr *EvalAddr(Expr* E, SmallVectorImpl<DeclRefExpr *> &refVars,
4387 Decl *ParentDecl);
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004388
4389/// CheckReturnStackAddr - Check if a return statement returns the address
4390/// of a stack variable.
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004391static void
4392CheckReturnStackAddr(Sema &S, Expr *RetValExp, QualType lhsType,
4393 SourceLocation ReturnLoc) {
Mike Stump11289f42009-09-09 15:08:12 +00004394
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004395 Expr *stackE = 0;
Chris Lattner0e62c1c2011-07-23 10:55:15 +00004396 SmallVector<DeclRefExpr *, 8> refVars;
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004397
4398 // Perform checking for returned stack addresses, local blocks,
4399 // label addresses or references to temporaries.
John McCall31168b02011-06-15 23:02:42 +00004400 if (lhsType->isPointerType() ||
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004401 (!S.getLangOpts().ObjCAutoRefCount && lhsType->isBlockPointerType())) {
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004402 stackE = EvalAddr(RetValExp, refVars, /*ParentDecl=*/0);
Mike Stump12b8ce12009-08-04 21:02:39 +00004403 } else if (lhsType->isReferenceType()) {
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004404 stackE = EvalVal(RetValExp, refVars, /*ParentDecl=*/0);
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004405 }
4406
4407 if (stackE == 0)
4408 return; // Nothing suspicious was found.
4409
4410 SourceLocation diagLoc;
4411 SourceRange diagRange;
4412 if (refVars.empty()) {
4413 diagLoc = stackE->getLocStart();
4414 diagRange = stackE->getSourceRange();
4415 } else {
4416 // We followed through a reference variable. 'stackE' contains the
4417 // problematic expression but we will warn at the return statement pointing
4418 // at the reference variable. We will later display the "trail" of
4419 // reference variables using notes.
4420 diagLoc = refVars[0]->getLocStart();
4421 diagRange = refVars[0]->getSourceRange();
4422 }
4423
4424 if (DeclRefExpr *DR = dyn_cast<DeclRefExpr>(stackE)) { //address of local var.
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004425 S.Diag(diagLoc, lhsType->isReferenceType() ? diag::warn_ret_stack_ref
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004426 : diag::warn_ret_stack_addr)
4427 << DR->getDecl()->getDeclName() << diagRange;
4428 } else if (isa<BlockExpr>(stackE)) { // local block.
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004429 S.Diag(diagLoc, diag::err_ret_local_block) << diagRange;
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004430 } else if (isa<AddrLabelExpr>(stackE)) { // address of label.
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004431 S.Diag(diagLoc, diag::warn_ret_addr_label) << diagRange;
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004432 } else { // local temporary.
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004433 S.Diag(diagLoc, lhsType->isReferenceType() ? diag::warn_ret_local_temp_ref
4434 : diag::warn_ret_local_temp_addr)
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004435 << diagRange;
4436 }
4437
4438 // Display the "trail" of reference variables that we followed until we
4439 // found the problematic expression using notes.
4440 for (unsigned i = 0, e = refVars.size(); i != e; ++i) {
4441 VarDecl *VD = cast<VarDecl>(refVars[i]->getDecl());
4442 // If this var binds to another reference var, show the range of the next
4443 // var, otherwise the var binds to the problematic expression, in which case
4444 // show the range of the expression.
4445 SourceRange range = (i < e-1) ? refVars[i+1]->getSourceRange()
4446 : stackE->getSourceRange();
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004447 S.Diag(VD->getLocation(), diag::note_ref_var_local_bind)
4448 << VD->getDeclName() << range;
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004449 }
4450}
4451
4452/// EvalAddr - EvalAddr and EvalVal are mutually recursive functions that
4453/// check if the expression in a return statement evaluates to an address
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004454/// to a location on the stack, a local block, an address of a label, or a
4455/// reference to local temporary. The recursion is used to traverse the
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004456/// AST of the return expression, with recursion backtracking when we
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004457/// encounter a subexpression that (1) clearly does not lead to one of the
4458/// above problematic expressions (2) is something we cannot determine leads to
4459/// a problematic expression based on such local checking.
4460///
4461/// Both EvalAddr and EvalVal follow through reference variables to evaluate
4462/// the expression that they point to. Such variables are added to the
4463/// 'refVars' vector so that we know what the reference variable "trail" was.
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004464///
Ted Kremeneke07a8cd2007-08-28 17:02:55 +00004465/// EvalAddr processes expressions that are pointers that are used as
4466/// references (and not L-values). EvalVal handles all other values.
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004467/// At the base case of the recursion is a check for the above problematic
4468/// expressions.
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004469///
4470/// This implementation handles:
4471///
4472/// * pointer-to-pointer casts
4473/// * implicit conversions from array references to pointers
4474/// * taking the address of fields
4475/// * arbitrary interplay between "&" and "*" operators
4476/// * pointer arithmetic from an address of a stack variable
4477/// * taking the address of an array element where the array is on the stack
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004478static Expr *EvalAddr(Expr *E, SmallVectorImpl<DeclRefExpr *> &refVars,
4479 Decl *ParentDecl) {
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004480 if (E->isTypeDependent())
Craig Topper47005942013-08-02 05:10:31 +00004481 return NULL;
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004482
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004483 // We should only be called for evaluating pointer expressions.
David Chisnall9f57c292009-08-17 16:35:33 +00004484 assert((E->getType()->isAnyPointerType() ||
Steve Naroff8de9c3a2008-09-05 22:11:13 +00004485 E->getType()->isBlockPointerType() ||
Ted Kremenek1b0ea822008-01-07 19:49:32 +00004486 E->getType()->isObjCQualifiedIdType()) &&
Chris Lattner934edb22007-12-28 05:31:15 +00004487 "EvalAddr only works on pointers");
Mike Stump11289f42009-09-09 15:08:12 +00004488
Peter Collingbourne91147592011-04-15 00:35:48 +00004489 E = E->IgnoreParens();
4490
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004491 // Our "symbolic interpreter" is just a dispatch off the currently
4492 // viewed AST node. We then recursively traverse the AST by calling
4493 // EvalAddr and EvalVal appropriately.
4494 switch (E->getStmtClass()) {
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004495 case Stmt::DeclRefExprClass: {
4496 DeclRefExpr *DR = cast<DeclRefExpr>(E);
4497
Richard Smith40f08eb2014-01-30 22:05:38 +00004498 // If we leave the immediate function, the lifetime isn't about to end.
4499 if (DR->refersToEnclosingLocal())
4500 return 0;
4501
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004502 if (VarDecl *V = dyn_cast<VarDecl>(DR->getDecl()))
4503 // If this is a reference variable, follow through to the expression that
4504 // it points to.
4505 if (V->hasLocalStorage() &&
4506 V->getType()->isReferenceType() && V->hasInit()) {
4507 // Add the reference variable to the "trail".
4508 refVars.push_back(DR);
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004509 return EvalAddr(V->getInit(), refVars, ParentDecl);
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004510 }
4511
4512 return NULL;
4513 }
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004514
Chris Lattner934edb22007-12-28 05:31:15 +00004515 case Stmt::UnaryOperatorClass: {
4516 // The only unary operator that make sense to handle here
4517 // is AddrOf. All others don't make sense as pointers.
4518 UnaryOperator *U = cast<UnaryOperator>(E);
Mike Stump11289f42009-09-09 15:08:12 +00004519
John McCalle3027922010-08-25 11:45:40 +00004520 if (U->getOpcode() == UO_AddrOf)
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004521 return EvalVal(U->getSubExpr(), refVars, ParentDecl);
Chris Lattner934edb22007-12-28 05:31:15 +00004522 else
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004523 return NULL;
4524 }
Mike Stump11289f42009-09-09 15:08:12 +00004525
Chris Lattner934edb22007-12-28 05:31:15 +00004526 case Stmt::BinaryOperatorClass: {
4527 // Handle pointer arithmetic. All other binary operators are not valid
4528 // in this context.
4529 BinaryOperator *B = cast<BinaryOperator>(E);
John McCalle3027922010-08-25 11:45:40 +00004530 BinaryOperatorKind op = B->getOpcode();
Mike Stump11289f42009-09-09 15:08:12 +00004531
John McCalle3027922010-08-25 11:45:40 +00004532 if (op != BO_Add && op != BO_Sub)
Chris Lattner934edb22007-12-28 05:31:15 +00004533 return NULL;
Mike Stump11289f42009-09-09 15:08:12 +00004534
Chris Lattner934edb22007-12-28 05:31:15 +00004535 Expr *Base = B->getLHS();
4536
4537 // Determine which argument is the real pointer base. It could be
4538 // the RHS argument instead of the LHS.
4539 if (!Base->getType()->isPointerType()) Base = B->getRHS();
Mike Stump11289f42009-09-09 15:08:12 +00004540
Chris Lattner934edb22007-12-28 05:31:15 +00004541 assert (Base->getType()->isPointerType());
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004542 return EvalAddr(Base, refVars, ParentDecl);
Chris Lattner934edb22007-12-28 05:31:15 +00004543 }
Steve Naroff2752a172008-09-10 19:17:48 +00004544
Chris Lattner934edb22007-12-28 05:31:15 +00004545 // For conditional operators we need to see if either the LHS or RHS are
4546 // valid DeclRefExpr*s. If one of them is valid, we return it.
4547 case Stmt::ConditionalOperatorClass: {
4548 ConditionalOperator *C = cast<ConditionalOperator>(E);
Mike Stump11289f42009-09-09 15:08:12 +00004549
Chris Lattner934edb22007-12-28 05:31:15 +00004550 // Handle the GNU extension for missing LHS.
Richard Smith6a6a4bb2014-01-27 04:19:56 +00004551 // FIXME: That isn't a ConditionalOperator, so doesn't get here.
4552 if (Expr *LHSExpr = C->getLHS()) {
4553 // In C++, we can have a throw-expression, which has 'void' type.
4554 if (!LHSExpr->getType()->isVoidType())
4555 if (Expr *LHS = EvalAddr(LHSExpr, refVars, ParentDecl))
Douglas Gregor270b2ef2010-10-21 16:21:08 +00004556 return LHS;
4557 }
Chris Lattner934edb22007-12-28 05:31:15 +00004558
Douglas Gregor270b2ef2010-10-21 16:21:08 +00004559 // In C++, we can have a throw-expression, which has 'void' type.
4560 if (C->getRHS()->getType()->isVoidType())
Richard Smith6a6a4bb2014-01-27 04:19:56 +00004561 return 0;
Douglas Gregor270b2ef2010-10-21 16:21:08 +00004562
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004563 return EvalAddr(C->getRHS(), refVars, ParentDecl);
Chris Lattner934edb22007-12-28 05:31:15 +00004564 }
Richard Smith6a6a4bb2014-01-27 04:19:56 +00004565
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004566 case Stmt::BlockExprClass:
John McCallc63de662011-02-02 13:00:07 +00004567 if (cast<BlockExpr>(E)->getBlockDecl()->hasCaptures())
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004568 return E; // local block.
4569 return NULL;
4570
4571 case Stmt::AddrLabelExprClass:
4572 return E; // address of label.
Mike Stump11289f42009-09-09 15:08:12 +00004573
John McCall28fc7092011-11-10 05:35:25 +00004574 case Stmt::ExprWithCleanupsClass:
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004575 return EvalAddr(cast<ExprWithCleanups>(E)->getSubExpr(), refVars,
4576 ParentDecl);
John McCall28fc7092011-11-10 05:35:25 +00004577
Ted Kremenekc3b4c522008-08-07 00:49:01 +00004578 // For casts, we need to handle conversions from arrays to
4579 // pointer values, and pointer-to-pointer conversions.
Douglas Gregore200adc2008-10-27 19:41:14 +00004580 case Stmt::ImplicitCastExprClass:
Douglas Gregorf19b2312008-10-28 15:36:24 +00004581 case Stmt::CStyleCastExprClass:
John McCall31168b02011-06-15 23:02:42 +00004582 case Stmt::CXXFunctionalCastExprClass:
Eli Friedman8195ad72012-02-23 23:04:32 +00004583 case Stmt::ObjCBridgedCastExprClass:
Mike Stump11289f42009-09-09 15:08:12 +00004584 case Stmt::CXXStaticCastExprClass:
4585 case Stmt::CXXDynamicCastExprClass:
Douglas Gregore200adc2008-10-27 19:41:14 +00004586 case Stmt::CXXConstCastExprClass:
4587 case Stmt::CXXReinterpretCastExprClass: {
Eli Friedman8195ad72012-02-23 23:04:32 +00004588 Expr* SubExpr = cast<CastExpr>(E)->getSubExpr();
4589 switch (cast<CastExpr>(E)->getCastKind()) {
4590 case CK_BitCast:
4591 case CK_LValueToRValue:
4592 case CK_NoOp:
4593 case CK_BaseToDerived:
4594 case CK_DerivedToBase:
4595 case CK_UncheckedDerivedToBase:
4596 case CK_Dynamic:
4597 case CK_CPointerToObjCPointerCast:
4598 case CK_BlockPointerToObjCPointerCast:
4599 case CK_AnyPointerToBlockPointerCast:
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004600 return EvalAddr(SubExpr, refVars, ParentDecl);
Eli Friedman8195ad72012-02-23 23:04:32 +00004601
4602 case CK_ArrayToPointerDecay:
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004603 return EvalVal(SubExpr, refVars, ParentDecl);
Eli Friedman8195ad72012-02-23 23:04:32 +00004604
4605 default:
4606 return 0;
4607 }
Chris Lattner934edb22007-12-28 05:31:15 +00004608 }
Mike Stump11289f42009-09-09 15:08:12 +00004609
Douglas Gregorfe314812011-06-21 17:03:29 +00004610 case Stmt::MaterializeTemporaryExprClass:
4611 if (Expr *Result = EvalAddr(
4612 cast<MaterializeTemporaryExpr>(E)->GetTemporaryExpr(),
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004613 refVars, ParentDecl))
Douglas Gregorfe314812011-06-21 17:03:29 +00004614 return Result;
4615
4616 return E;
4617
Chris Lattner934edb22007-12-28 05:31:15 +00004618 // Everything else: we simply don't reason about them.
4619 default:
4620 return NULL;
4621 }
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004622}
Mike Stump11289f42009-09-09 15:08:12 +00004623
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004624
4625/// EvalVal - This function is complements EvalAddr in the mutual recursion.
4626/// See the comments for EvalAddr for more details.
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004627static Expr *EvalVal(Expr *E, SmallVectorImpl<DeclRefExpr *> &refVars,
4628 Decl *ParentDecl) {
Ted Kremenekb7861562010-08-04 20:01:07 +00004629do {
Ted Kremeneke07a8cd2007-08-28 17:02:55 +00004630 // We should only be called for evaluating non-pointer expressions, or
4631 // expressions with a pointer type that are not used as references but instead
4632 // are l-values (e.g., DeclRefExpr with a pointer type).
Mike Stump11289f42009-09-09 15:08:12 +00004633
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004634 // Our "symbolic interpreter" is just a dispatch off the currently
4635 // viewed AST node. We then recursively traverse the AST by calling
4636 // EvalAddr and EvalVal appropriately.
Peter Collingbourne91147592011-04-15 00:35:48 +00004637
4638 E = E->IgnoreParens();
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004639 switch (E->getStmtClass()) {
Ted Kremenekb7861562010-08-04 20:01:07 +00004640 case Stmt::ImplicitCastExprClass: {
4641 ImplicitCastExpr *IE = cast<ImplicitCastExpr>(E);
John McCall2536c6d2010-08-25 10:28:54 +00004642 if (IE->getValueKind() == VK_LValue) {
Ted Kremenekb7861562010-08-04 20:01:07 +00004643 E = IE->getSubExpr();
4644 continue;
4645 }
4646 return NULL;
4647 }
4648
John McCall28fc7092011-11-10 05:35:25 +00004649 case Stmt::ExprWithCleanupsClass:
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004650 return EvalVal(cast<ExprWithCleanups>(E)->getSubExpr(), refVars,ParentDecl);
John McCall28fc7092011-11-10 05:35:25 +00004651
Douglas Gregor4bd90e52009-10-23 18:54:35 +00004652 case Stmt::DeclRefExprClass: {
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004653 // When we hit a DeclRefExpr we are looking at code that refers to a
4654 // variable's name. If it's not a reference variable we check if it has
4655 // local storage within the function, and if so, return the expression.
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004656 DeclRefExpr *DR = cast<DeclRefExpr>(E);
Mike Stump11289f42009-09-09 15:08:12 +00004657
Richard Smith40f08eb2014-01-30 22:05:38 +00004658 // If we leave the immediate function, the lifetime isn't about to end.
4659 if (DR->refersToEnclosingLocal())
4660 return 0;
4661
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004662 if (VarDecl *V = dyn_cast<VarDecl>(DR->getDecl())) {
4663 // Check if it refers to itself, e.g. "int& i = i;".
4664 if (V == ParentDecl)
4665 return DR;
4666
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004667 if (V->hasLocalStorage()) {
4668 if (!V->getType()->isReferenceType())
4669 return DR;
4670
4671 // Reference variable, follow through to the expression that
4672 // it points to.
4673 if (V->hasInit()) {
4674 // Add the reference variable to the "trail".
4675 refVars.push_back(DR);
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004676 return EvalVal(V->getInit(), refVars, V);
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004677 }
4678 }
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004679 }
Mike Stump11289f42009-09-09 15:08:12 +00004680
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004681 return NULL;
4682 }
Mike Stump11289f42009-09-09 15:08:12 +00004683
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004684 case Stmt::UnaryOperatorClass: {
4685 // The only unary operator that make sense to handle here
4686 // is Deref. All others don't resolve to a "name." This includes
4687 // handling all sorts of rvalues passed to a unary operator.
4688 UnaryOperator *U = cast<UnaryOperator>(E);
Mike Stump11289f42009-09-09 15:08:12 +00004689
John McCalle3027922010-08-25 11:45:40 +00004690 if (U->getOpcode() == UO_Deref)
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004691 return EvalAddr(U->getSubExpr(), refVars, ParentDecl);
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004692
4693 return NULL;
4694 }
Mike Stump11289f42009-09-09 15:08:12 +00004695
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004696 case Stmt::ArraySubscriptExprClass: {
4697 // Array subscripts are potential references to data on the stack. We
4698 // retrieve the DeclRefExpr* for the array variable if it indeed
4699 // has local storage.
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004700 return EvalAddr(cast<ArraySubscriptExpr>(E)->getBase(), refVars,ParentDecl);
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004701 }
Mike Stump11289f42009-09-09 15:08:12 +00004702
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004703 case Stmt::ConditionalOperatorClass: {
4704 // For conditional operators we need to see if either the LHS or RHS are
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004705 // non-NULL Expr's. If one is non-NULL, we return it.
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004706 ConditionalOperator *C = cast<ConditionalOperator>(E);
4707
Anders Carlsson801c5c72007-11-30 19:04:31 +00004708 // Handle the GNU extension for missing LHS.
Richard Smith6a6a4bb2014-01-27 04:19:56 +00004709 if (Expr *LHSExpr = C->getLHS()) {
4710 // In C++, we can have a throw-expression, which has 'void' type.
4711 if (!LHSExpr->getType()->isVoidType())
4712 if (Expr *LHS = EvalVal(LHSExpr, refVars, ParentDecl))
4713 return LHS;
4714 }
4715
4716 // In C++, we can have a throw-expression, which has 'void' type.
4717 if (C->getRHS()->getType()->isVoidType())
4718 return 0;
Anders Carlsson801c5c72007-11-30 19:04:31 +00004719
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004720 return EvalVal(C->getRHS(), refVars, ParentDecl);
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004721 }
Mike Stump11289f42009-09-09 15:08:12 +00004722
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004723 // Accesses to members are potential references to data on the stack.
Douglas Gregorf405d7e2009-08-31 23:41:50 +00004724 case Stmt::MemberExprClass: {
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004725 MemberExpr *M = cast<MemberExpr>(E);
Mike Stump11289f42009-09-09 15:08:12 +00004726
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004727 // Check for indirect access. We only want direct field accesses.
Ted Kremenekcbe6b0b2010-09-02 01:12:13 +00004728 if (M->isArrow())
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004729 return NULL;
Ted Kremenekcbe6b0b2010-09-02 01:12:13 +00004730
4731 // Check whether the member type is itself a reference, in which case
4732 // we're not going to refer to the member, but to what the member refers to.
4733 if (M->getMemberDecl()->getType()->isReferenceType())
4734 return NULL;
4735
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004736 return EvalVal(M->getBase(), refVars, ParentDecl);
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004737 }
Mike Stump11289f42009-09-09 15:08:12 +00004738
Douglas Gregorfe314812011-06-21 17:03:29 +00004739 case Stmt::MaterializeTemporaryExprClass:
4740 if (Expr *Result = EvalVal(
4741 cast<MaterializeTemporaryExpr>(E)->GetTemporaryExpr(),
Argyrios Kyrtzidisb4015e12012-04-30 23:23:55 +00004742 refVars, ParentDecl))
Douglas Gregorfe314812011-06-21 17:03:29 +00004743 return Result;
4744
4745 return E;
4746
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004747 default:
Argyrios Kyrtzidise72f7152010-11-30 22:57:32 +00004748 // Check that we don't return or take the address of a reference to a
4749 // temporary. This is only useful in C++.
4750 if (!E->isTypeDependent() && E->isRValue())
4751 return E;
4752
4753 // Everything else: we simply don't reason about them.
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004754 return NULL;
4755 }
Ted Kremenekb7861562010-08-04 20:01:07 +00004756} while (true);
Ted Kremenekcff94fa2007-08-17 16:46:58 +00004757}
Ted Kremenek43fb8b02007-11-25 00:58:00 +00004758
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004759void
4760Sema::CheckReturnValExpr(Expr *RetValExp, QualType lhsType,
4761 SourceLocation ReturnLoc,
4762 bool isObjCMethod,
Artyom Skrobov9f213442014-01-24 11:10:39 +00004763 const AttrVec *Attrs,
4764 const FunctionDecl *FD) {
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004765 CheckReturnStackAddr(*this, RetValExp, lhsType, ReturnLoc);
4766
4767 // Check if the return value is null but should not be.
Benjamin Kramerae852a62014-02-23 14:34:50 +00004768 if (Attrs && hasSpecificAttr<ReturnsNonNullAttr>(*Attrs) &&
4769 CheckNonNullExpr(*this, RetValExp))
4770 Diag(ReturnLoc, diag::warn_null_ret)
4771 << (isObjCMethod ? 1 : 0) << RetValExp->getSourceRange();
Artyom Skrobov9f213442014-01-24 11:10:39 +00004772
4773 // C++11 [basic.stc.dynamic.allocation]p4:
4774 // If an allocation function declared with a non-throwing
4775 // exception-specification fails to allocate storage, it shall return
4776 // a null pointer. Any other allocation function that fails to allocate
4777 // storage shall indicate failure only by throwing an exception [...]
4778 if (FD) {
4779 OverloadedOperatorKind Op = FD->getOverloadedOperator();
4780 if (Op == OO_New || Op == OO_Array_New) {
4781 const FunctionProtoType *Proto
4782 = FD->getType()->castAs<FunctionProtoType>();
4783 if (!Proto->isNothrow(Context, /*ResultIfDependent*/true) &&
4784 CheckNonNullExpr(*this, RetValExp))
4785 Diag(ReturnLoc, diag::warn_operator_new_returns_null)
4786 << FD << getLangOpts().CPlusPlus11;
4787 }
4788 }
Ted Kremenekef9e7f82014-01-22 06:10:28 +00004789}
4790
Ted Kremenek43fb8b02007-11-25 00:58:00 +00004791//===--- CHECK: Floating-Point comparisons (-Wfloat-equal) ---------------===//
4792
4793/// Check for comparisons of floating point operands using != and ==.
4794/// Issue a warning if these are no self-comparisons, as they are not likely
4795/// to do what the programmer intended.
Richard Trieu82402a02011-09-15 21:56:47 +00004796void Sema::CheckFloatComparison(SourceLocation Loc, Expr* LHS, Expr *RHS) {
Richard Trieu82402a02011-09-15 21:56:47 +00004797 Expr* LeftExprSansParen = LHS->IgnoreParenImpCasts();
4798 Expr* RightExprSansParen = RHS->IgnoreParenImpCasts();
Ted Kremenek43fb8b02007-11-25 00:58:00 +00004799
4800 // Special case: check for x == x (which is OK).
4801 // Do not emit warnings for such cases.
4802 if (DeclRefExpr* DRL = dyn_cast<DeclRefExpr>(LeftExprSansParen))
4803 if (DeclRefExpr* DRR = dyn_cast<DeclRefExpr>(RightExprSansParen))
4804 if (DRL->getDecl() == DRR->getDecl())
David Blaikie1f4ff152012-07-16 20:47:22 +00004805 return;
Mike Stump11289f42009-09-09 15:08:12 +00004806
4807
Ted Kremenekeda40e22007-11-29 00:59:04 +00004808 // Special case: check for comparisons against literals that can be exactly
4809 // represented by APFloat. In such cases, do not emit a warning. This
4810 // is a heuristic: often comparison against such literals are used to
4811 // detect if a value in a variable has not changed. This clearly can
4812 // lead to false negatives.
David Blaikie1f4ff152012-07-16 20:47:22 +00004813 if (FloatingLiteral* FLL = dyn_cast<FloatingLiteral>(LeftExprSansParen)) {
4814 if (FLL->isExact())
4815 return;
4816 } else
4817 if (FloatingLiteral* FLR = dyn_cast<FloatingLiteral>(RightExprSansParen))
4818 if (FLR->isExact())
4819 return;
Mike Stump11289f42009-09-09 15:08:12 +00004820
Ted Kremenek43fb8b02007-11-25 00:58:00 +00004821 // Check for comparisons with builtin types.
David Blaikie1f4ff152012-07-16 20:47:22 +00004822 if (CallExpr* CL = dyn_cast<CallExpr>(LeftExprSansParen))
Alp Tokera724cff2013-12-28 21:59:02 +00004823 if (CL->getBuiltinCallee())
David Blaikie1f4ff152012-07-16 20:47:22 +00004824 return;
Mike Stump11289f42009-09-09 15:08:12 +00004825
David Blaikie1f4ff152012-07-16 20:47:22 +00004826 if (CallExpr* CR = dyn_cast<CallExpr>(RightExprSansParen))
Alp Tokera724cff2013-12-28 21:59:02 +00004827 if (CR->getBuiltinCallee())
David Blaikie1f4ff152012-07-16 20:47:22 +00004828 return;
Mike Stump11289f42009-09-09 15:08:12 +00004829
Ted Kremenek43fb8b02007-11-25 00:58:00 +00004830 // Emit the diagnostic.
David Blaikie1f4ff152012-07-16 20:47:22 +00004831 Diag(Loc, diag::warn_floatingpoint_eq)
4832 << LHS->getSourceRange() << RHS->getSourceRange();
Ted Kremenek43fb8b02007-11-25 00:58:00 +00004833}
John McCallca01b222010-01-04 23:21:16 +00004834
John McCall70aa5392010-01-06 05:24:50 +00004835//===--- CHECK: Integer mixed-sign comparisons (-Wsign-compare) --------===//
4836//===--- CHECK: Lossy implicit conversions (-Wconversion) --------------===//
John McCallca01b222010-01-04 23:21:16 +00004837
John McCall70aa5392010-01-06 05:24:50 +00004838namespace {
John McCallca01b222010-01-04 23:21:16 +00004839
John McCall70aa5392010-01-06 05:24:50 +00004840/// Structure recording the 'active' range of an integer-valued
4841/// expression.
4842struct IntRange {
4843 /// The number of bits active in the int.
4844 unsigned Width;
John McCallca01b222010-01-04 23:21:16 +00004845
John McCall70aa5392010-01-06 05:24:50 +00004846 /// True if the int is known not to have negative values.
4847 bool NonNegative;
John McCallca01b222010-01-04 23:21:16 +00004848
John McCall70aa5392010-01-06 05:24:50 +00004849 IntRange(unsigned Width, bool NonNegative)
4850 : Width(Width), NonNegative(NonNegative)
4851 {}
John McCallca01b222010-01-04 23:21:16 +00004852
John McCall817d4af2010-11-10 23:38:19 +00004853 /// Returns the range of the bool type.
John McCall70aa5392010-01-06 05:24:50 +00004854 static IntRange forBoolType() {
4855 return IntRange(1, true);
John McCall263a48b2010-01-04 23:31:57 +00004856 }
4857
John McCall817d4af2010-11-10 23:38:19 +00004858 /// Returns the range of an opaque value of the given integral type.
4859 static IntRange forValueOfType(ASTContext &C, QualType T) {
4860 return forValueOfCanonicalType(C,
4861 T->getCanonicalTypeInternal().getTypePtr());
John McCall263a48b2010-01-04 23:31:57 +00004862 }
4863
John McCall817d4af2010-11-10 23:38:19 +00004864 /// Returns the range of an opaque value of a canonical integral type.
4865 static IntRange forValueOfCanonicalType(ASTContext &C, const Type *T) {
John McCall70aa5392010-01-06 05:24:50 +00004866 assert(T->isCanonicalUnqualified());
4867
4868 if (const VectorType *VT = dyn_cast<VectorType>(T))
4869 T = VT->getElementType().getTypePtr();
4870 if (const ComplexType *CT = dyn_cast<ComplexType>(T))
4871 T = CT->getElementType().getTypePtr();
John McCallcc7e5bf2010-05-06 08:58:33 +00004872
David Majnemer6a426652013-06-07 22:07:20 +00004873 // For enum types, use the known bit width of the enumerators.
John McCallcc7e5bf2010-05-06 08:58:33 +00004874 if (const EnumType *ET = dyn_cast<EnumType>(T)) {
David Majnemer6a426652013-06-07 22:07:20 +00004875 EnumDecl *Enum = ET->getDecl();
4876 if (!Enum->isCompleteDefinition())
4877 return IntRange(C.getIntWidth(QualType(T, 0)), false);
John McCall18a2c2c2010-11-09 22:22:12 +00004878
David Majnemer6a426652013-06-07 22:07:20 +00004879 unsigned NumPositive = Enum->getNumPositiveBits();
4880 unsigned NumNegative = Enum->getNumNegativeBits();
John McCallcc7e5bf2010-05-06 08:58:33 +00004881
David Majnemer6a426652013-06-07 22:07:20 +00004882 if (NumNegative == 0)
4883 return IntRange(NumPositive, true/*NonNegative*/);
4884 else
4885 return IntRange(std::max(NumPositive + 1, NumNegative),
4886 false/*NonNegative*/);
John McCallcc7e5bf2010-05-06 08:58:33 +00004887 }
John McCall70aa5392010-01-06 05:24:50 +00004888
4889 const BuiltinType *BT = cast<BuiltinType>(T);
4890 assert(BT->isInteger());
4891
4892 return IntRange(C.getIntWidth(QualType(T, 0)), BT->isUnsignedInteger());
4893 }
4894
John McCall817d4af2010-11-10 23:38:19 +00004895 /// Returns the "target" range of a canonical integral type, i.e.
4896 /// the range of values expressible in the type.
4897 ///
4898 /// This matches forValueOfCanonicalType except that enums have the
4899 /// full range of their type, not the range of their enumerators.
4900 static IntRange forTargetOfCanonicalType(ASTContext &C, const Type *T) {
4901 assert(T->isCanonicalUnqualified());
4902
4903 if (const VectorType *VT = dyn_cast<VectorType>(T))
4904 T = VT->getElementType().getTypePtr();
4905 if (const ComplexType *CT = dyn_cast<ComplexType>(T))
4906 T = CT->getElementType().getTypePtr();
4907 if (const EnumType *ET = dyn_cast<EnumType>(T))
Douglas Gregor3168dcf2011-09-08 23:29:05 +00004908 T = C.getCanonicalType(ET->getDecl()->getIntegerType()).getTypePtr();
John McCall817d4af2010-11-10 23:38:19 +00004909
4910 const BuiltinType *BT = cast<BuiltinType>(T);
4911 assert(BT->isInteger());
4912
4913 return IntRange(C.getIntWidth(QualType(T, 0)), BT->isUnsignedInteger());
4914 }
4915
4916 /// Returns the supremum of two ranges: i.e. their conservative merge.
John McCallff96ccd2010-02-23 19:22:29 +00004917 static IntRange join(IntRange L, IntRange R) {
John McCall70aa5392010-01-06 05:24:50 +00004918 return IntRange(std::max(L.Width, R.Width),
John McCall2ce81ad2010-01-06 22:07:33 +00004919 L.NonNegative && R.NonNegative);
4920 }
4921
John McCall817d4af2010-11-10 23:38:19 +00004922 /// Returns the infinum of two ranges: i.e. their aggressive merge.
John McCallff96ccd2010-02-23 19:22:29 +00004923 static IntRange meet(IntRange L, IntRange R) {
John McCall2ce81ad2010-01-06 22:07:33 +00004924 return IntRange(std::min(L.Width, R.Width),
4925 L.NonNegative || R.NonNegative);
John McCall70aa5392010-01-06 05:24:50 +00004926 }
4927};
4928
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00004929static IntRange GetValueRange(ASTContext &C, llvm::APSInt &value,
4930 unsigned MaxWidth) {
John McCall70aa5392010-01-06 05:24:50 +00004931 if (value.isSigned() && value.isNegative())
4932 return IntRange(value.getMinSignedBits(), false);
4933
4934 if (value.getBitWidth() > MaxWidth)
Jay Foad6d4db0c2010-12-07 08:25:34 +00004935 value = value.trunc(MaxWidth);
John McCall70aa5392010-01-06 05:24:50 +00004936
4937 // isNonNegative() just checks the sign bit without considering
4938 // signedness.
4939 return IntRange(value.getActiveBits(), true);
4940}
4941
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00004942static IntRange GetValueRange(ASTContext &C, APValue &result, QualType Ty,
4943 unsigned MaxWidth) {
John McCall70aa5392010-01-06 05:24:50 +00004944 if (result.isInt())
4945 return GetValueRange(C, result.getInt(), MaxWidth);
4946
4947 if (result.isVector()) {
John McCall74430522010-01-06 22:57:21 +00004948 IntRange R = GetValueRange(C, result.getVectorElt(0), Ty, MaxWidth);
4949 for (unsigned i = 1, e = result.getVectorLength(); i != e; ++i) {
4950 IntRange El = GetValueRange(C, result.getVectorElt(i), Ty, MaxWidth);
4951 R = IntRange::join(R, El);
4952 }
John McCall70aa5392010-01-06 05:24:50 +00004953 return R;
4954 }
4955
4956 if (result.isComplexInt()) {
4957 IntRange R = GetValueRange(C, result.getComplexIntReal(), MaxWidth);
4958 IntRange I = GetValueRange(C, result.getComplexIntImag(), MaxWidth);
4959 return IntRange::join(R, I);
John McCall263a48b2010-01-04 23:31:57 +00004960 }
4961
4962 // This can happen with lossless casts to intptr_t of "based" lvalues.
4963 // Assume it might use arbitrary bits.
John McCall74430522010-01-06 22:57:21 +00004964 // FIXME: The only reason we need to pass the type in here is to get
4965 // the sign right on this one case. It would be nice if APValue
4966 // preserved this.
Eli Friedmanfd5e54d2012-01-04 23:13:47 +00004967 assert(result.isLValue() || result.isAddrLabelDiff());
Douglas Gregor61b6e492011-05-21 16:28:01 +00004968 return IntRange(MaxWidth, Ty->isUnsignedIntegerOrEnumerationType());
John McCall263a48b2010-01-04 23:31:57 +00004969}
John McCall70aa5392010-01-06 05:24:50 +00004970
Eli Friedmane6d33952013-07-08 20:20:06 +00004971static QualType GetExprType(Expr *E) {
4972 QualType Ty = E->getType();
4973 if (const AtomicType *AtomicRHS = Ty->getAs<AtomicType>())
4974 Ty = AtomicRHS->getValueType();
4975 return Ty;
4976}
4977
John McCall70aa5392010-01-06 05:24:50 +00004978/// Pseudo-evaluate the given integer expression, estimating the
4979/// range of values it might take.
4980///
4981/// \param MaxWidth - the width to which the value will be truncated
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00004982static IntRange GetExprRange(ASTContext &C, Expr *E, unsigned MaxWidth) {
John McCall70aa5392010-01-06 05:24:50 +00004983 E = E->IgnoreParens();
4984
4985 // Try a full evaluation first.
4986 Expr::EvalResult result;
Richard Smith7b553f12011-10-29 00:50:52 +00004987 if (E->EvaluateAsRValue(result, C))
Eli Friedmane6d33952013-07-08 20:20:06 +00004988 return GetValueRange(C, result.Val, GetExprType(E), MaxWidth);
John McCall70aa5392010-01-06 05:24:50 +00004989
4990 // I think we only want to look through implicit casts here; if the
4991 // user has an explicit widening cast, we should treat the value as
4992 // being of the new, wider type.
4993 if (ImplicitCastExpr *CE = dyn_cast<ImplicitCastExpr>(E)) {
Eli Friedman8349dc12011-12-15 02:41:52 +00004994 if (CE->getCastKind() == CK_NoOp || CE->getCastKind() == CK_LValueToRValue)
John McCall70aa5392010-01-06 05:24:50 +00004995 return GetExprRange(C, CE->getSubExpr(), MaxWidth);
4996
Eli Friedmane6d33952013-07-08 20:20:06 +00004997 IntRange OutputTypeRange = IntRange::forValueOfType(C, GetExprType(CE));
John McCall70aa5392010-01-06 05:24:50 +00004998
John McCalle3027922010-08-25 11:45:40 +00004999 bool isIntegerCast = (CE->getCastKind() == CK_IntegralCast);
John McCall2ce81ad2010-01-06 22:07:33 +00005000
John McCall70aa5392010-01-06 05:24:50 +00005001 // Assume that non-integer casts can span the full range of the type.
John McCall2ce81ad2010-01-06 22:07:33 +00005002 if (!isIntegerCast)
John McCall70aa5392010-01-06 05:24:50 +00005003 return OutputTypeRange;
5004
5005 IntRange SubRange
5006 = GetExprRange(C, CE->getSubExpr(),
5007 std::min(MaxWidth, OutputTypeRange.Width));
5008
5009 // Bail out if the subexpr's range is as wide as the cast type.
5010 if (SubRange.Width >= OutputTypeRange.Width)
5011 return OutputTypeRange;
5012
5013 // Otherwise, we take the smaller width, and we're non-negative if
5014 // either the output type or the subexpr is.
5015 return IntRange(SubRange.Width,
5016 SubRange.NonNegative || OutputTypeRange.NonNegative);
5017 }
5018
5019 if (ConditionalOperator *CO = dyn_cast<ConditionalOperator>(E)) {
5020 // If we can fold the condition, just take that operand.
5021 bool CondResult;
5022 if (CO->getCond()->EvaluateAsBooleanCondition(CondResult, C))
5023 return GetExprRange(C, CondResult ? CO->getTrueExpr()
5024 : CO->getFalseExpr(),
5025 MaxWidth);
5026
5027 // Otherwise, conservatively merge.
5028 IntRange L = GetExprRange(C, CO->getTrueExpr(), MaxWidth);
5029 IntRange R = GetExprRange(C, CO->getFalseExpr(), MaxWidth);
5030 return IntRange::join(L, R);
5031 }
5032
5033 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
5034 switch (BO->getOpcode()) {
5035
5036 // Boolean-valued operations are single-bit and positive.
John McCalle3027922010-08-25 11:45:40 +00005037 case BO_LAnd:
5038 case BO_LOr:
5039 case BO_LT:
5040 case BO_GT:
5041 case BO_LE:
5042 case BO_GE:
5043 case BO_EQ:
5044 case BO_NE:
John McCall70aa5392010-01-06 05:24:50 +00005045 return IntRange::forBoolType();
5046
John McCallc3688382011-07-13 06:35:24 +00005047 // The type of the assignments is the type of the LHS, so the RHS
5048 // is not necessarily the same type.
John McCalle3027922010-08-25 11:45:40 +00005049 case BO_MulAssign:
5050 case BO_DivAssign:
5051 case BO_RemAssign:
5052 case BO_AddAssign:
5053 case BO_SubAssign:
John McCallc3688382011-07-13 06:35:24 +00005054 case BO_XorAssign:
5055 case BO_OrAssign:
5056 // TODO: bitfields?
Eli Friedmane6d33952013-07-08 20:20:06 +00005057 return IntRange::forValueOfType(C, GetExprType(E));
John McCallff96ccd2010-02-23 19:22:29 +00005058
John McCallc3688382011-07-13 06:35:24 +00005059 // Simple assignments just pass through the RHS, which will have
5060 // been coerced to the LHS type.
5061 case BO_Assign:
5062 // TODO: bitfields?
5063 return GetExprRange(C, BO->getRHS(), MaxWidth);
5064
John McCall70aa5392010-01-06 05:24:50 +00005065 // Operations with opaque sources are black-listed.
John McCalle3027922010-08-25 11:45:40 +00005066 case BO_PtrMemD:
5067 case BO_PtrMemI:
Eli Friedmane6d33952013-07-08 20:20:06 +00005068 return IntRange::forValueOfType(C, GetExprType(E));
John McCall70aa5392010-01-06 05:24:50 +00005069
John McCall2ce81ad2010-01-06 22:07:33 +00005070 // Bitwise-and uses the *infinum* of the two source ranges.
John McCalle3027922010-08-25 11:45:40 +00005071 case BO_And:
5072 case BO_AndAssign:
John McCall2ce81ad2010-01-06 22:07:33 +00005073 return IntRange::meet(GetExprRange(C, BO->getLHS(), MaxWidth),
5074 GetExprRange(C, BO->getRHS(), MaxWidth));
5075
John McCall70aa5392010-01-06 05:24:50 +00005076 // Left shift gets black-listed based on a judgement call.
John McCalle3027922010-08-25 11:45:40 +00005077 case BO_Shl:
John McCall1bff9932010-04-07 01:14:35 +00005078 // ...except that we want to treat '1 << (blah)' as logically
5079 // positive. It's an important idiom.
5080 if (IntegerLiteral *I
5081 = dyn_cast<IntegerLiteral>(BO->getLHS()->IgnoreParenCasts())) {
5082 if (I->getValue() == 1) {
Eli Friedmane6d33952013-07-08 20:20:06 +00005083 IntRange R = IntRange::forValueOfType(C, GetExprType(E));
John McCall1bff9932010-04-07 01:14:35 +00005084 return IntRange(R.Width, /*NonNegative*/ true);
5085 }
5086 }
5087 // fallthrough
5088
John McCalle3027922010-08-25 11:45:40 +00005089 case BO_ShlAssign:
Eli Friedmane6d33952013-07-08 20:20:06 +00005090 return IntRange::forValueOfType(C, GetExprType(E));
John McCall70aa5392010-01-06 05:24:50 +00005091
John McCall2ce81ad2010-01-06 22:07:33 +00005092 // Right shift by a constant can narrow its left argument.
John McCalle3027922010-08-25 11:45:40 +00005093 case BO_Shr:
5094 case BO_ShrAssign: {
John McCall2ce81ad2010-01-06 22:07:33 +00005095 IntRange L = GetExprRange(C, BO->getLHS(), MaxWidth);
5096
5097 // If the shift amount is a positive constant, drop the width by
5098 // that much.
5099 llvm::APSInt shift;
5100 if (BO->getRHS()->isIntegerConstantExpr(shift, C) &&
5101 shift.isNonNegative()) {
5102 unsigned zext = shift.getZExtValue();
5103 if (zext >= L.Width)
5104 L.Width = (L.NonNegative ? 0 : 1);
5105 else
5106 L.Width -= zext;
5107 }
5108
5109 return L;
5110 }
5111
5112 // Comma acts as its right operand.
John McCalle3027922010-08-25 11:45:40 +00005113 case BO_Comma:
John McCall70aa5392010-01-06 05:24:50 +00005114 return GetExprRange(C, BO->getRHS(), MaxWidth);
5115
John McCall2ce81ad2010-01-06 22:07:33 +00005116 // Black-list pointer subtractions.
John McCalle3027922010-08-25 11:45:40 +00005117 case BO_Sub:
John McCall70aa5392010-01-06 05:24:50 +00005118 if (BO->getLHS()->getType()->isPointerType())
Eli Friedmane6d33952013-07-08 20:20:06 +00005119 return IntRange::forValueOfType(C, GetExprType(E));
John McCall51431812011-07-14 22:39:48 +00005120 break;
Ted Kremenekc8b188d2010-02-16 01:46:59 +00005121
John McCall51431812011-07-14 22:39:48 +00005122 // The width of a division result is mostly determined by the size
5123 // of the LHS.
5124 case BO_Div: {
5125 // Don't 'pre-truncate' the operands.
Eli Friedmane6d33952013-07-08 20:20:06 +00005126 unsigned opWidth = C.getIntWidth(GetExprType(E));
John McCall51431812011-07-14 22:39:48 +00005127 IntRange L = GetExprRange(C, BO->getLHS(), opWidth);
5128
5129 // If the divisor is constant, use that.
5130 llvm::APSInt divisor;
5131 if (BO->getRHS()->isIntegerConstantExpr(divisor, C)) {
5132 unsigned log2 = divisor.logBase2(); // floor(log_2(divisor))
5133 if (log2 >= L.Width)
5134 L.Width = (L.NonNegative ? 0 : 1);
5135 else
5136 L.Width = std::min(L.Width - log2, MaxWidth);
5137 return L;
5138 }
5139
5140 // Otherwise, just use the LHS's width.
5141 IntRange R = GetExprRange(C, BO->getRHS(), opWidth);
5142 return IntRange(L.Width, L.NonNegative && R.NonNegative);
5143 }
5144
5145 // The result of a remainder can't be larger than the result of
5146 // either side.
5147 case BO_Rem: {
5148 // Don't 'pre-truncate' the operands.
Eli Friedmane6d33952013-07-08 20:20:06 +00005149 unsigned opWidth = C.getIntWidth(GetExprType(E));
John McCall51431812011-07-14 22:39:48 +00005150 IntRange L = GetExprRange(C, BO->getLHS(), opWidth);
5151 IntRange R = GetExprRange(C, BO->getRHS(), opWidth);
5152
5153 IntRange meet = IntRange::meet(L, R);
5154 meet.Width = std::min(meet.Width, MaxWidth);
5155 return meet;
5156 }
5157
5158 // The default behavior is okay for these.
5159 case BO_Mul:
5160 case BO_Add:
5161 case BO_Xor:
5162 case BO_Or:
John McCall70aa5392010-01-06 05:24:50 +00005163 break;
5164 }
5165
John McCall51431812011-07-14 22:39:48 +00005166 // The default case is to treat the operation as if it were closed
5167 // on the narrowest type that encompasses both operands.
John McCall70aa5392010-01-06 05:24:50 +00005168 IntRange L = GetExprRange(C, BO->getLHS(), MaxWidth);
5169 IntRange R = GetExprRange(C, BO->getRHS(), MaxWidth);
5170 return IntRange::join(L, R);
5171 }
5172
5173 if (UnaryOperator *UO = dyn_cast<UnaryOperator>(E)) {
5174 switch (UO->getOpcode()) {
5175 // Boolean-valued operations are white-listed.
John McCalle3027922010-08-25 11:45:40 +00005176 case UO_LNot:
John McCall70aa5392010-01-06 05:24:50 +00005177 return IntRange::forBoolType();
5178
5179 // Operations with opaque sources are black-listed.
John McCalle3027922010-08-25 11:45:40 +00005180 case UO_Deref:
5181 case UO_AddrOf: // should be impossible
Eli Friedmane6d33952013-07-08 20:20:06 +00005182 return IntRange::forValueOfType(C, GetExprType(E));
John McCall70aa5392010-01-06 05:24:50 +00005183
5184 default:
5185 return GetExprRange(C, UO->getSubExpr(), MaxWidth);
5186 }
5187 }
5188
Ted Kremeneka553fbf2013-10-14 18:55:27 +00005189 if (OpaqueValueExpr *OVE = dyn_cast<OpaqueValueExpr>(E))
5190 return GetExprRange(C, OVE->getSourceExpr(), MaxWidth);
5191
John McCalld25db7e2013-05-06 21:39:12 +00005192 if (FieldDecl *BitField = E->getSourceBitField())
Richard Smithcaf33902011-10-10 18:28:20 +00005193 return IntRange(BitField->getBitWidthValue(C),
Douglas Gregor61b6e492011-05-21 16:28:01 +00005194 BitField->getType()->isUnsignedIntegerOrEnumerationType());
John McCall70aa5392010-01-06 05:24:50 +00005195
Eli Friedmane6d33952013-07-08 20:20:06 +00005196 return IntRange::forValueOfType(C, GetExprType(E));
John McCall70aa5392010-01-06 05:24:50 +00005197}
John McCall263a48b2010-01-04 23:31:57 +00005198
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005199static IntRange GetExprRange(ASTContext &C, Expr *E) {
Eli Friedmane6d33952013-07-08 20:20:06 +00005200 return GetExprRange(C, E, C.getIntWidth(GetExprType(E)));
John McCallcc7e5bf2010-05-06 08:58:33 +00005201}
5202
John McCall263a48b2010-01-04 23:31:57 +00005203/// Checks whether the given value, which currently has the given
5204/// source semantics, has the same value when coerced through the
5205/// target semantics.
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005206static bool IsSameFloatAfterCast(const llvm::APFloat &value,
5207 const llvm::fltSemantics &Src,
5208 const llvm::fltSemantics &Tgt) {
John McCall263a48b2010-01-04 23:31:57 +00005209 llvm::APFloat truncated = value;
5210
5211 bool ignored;
5212 truncated.convert(Src, llvm::APFloat::rmNearestTiesToEven, &ignored);
5213 truncated.convert(Tgt, llvm::APFloat::rmNearestTiesToEven, &ignored);
5214
5215 return truncated.bitwiseIsEqual(value);
5216}
5217
5218/// Checks whether the given value, which currently has the given
5219/// source semantics, has the same value when coerced through the
5220/// target semantics.
5221///
5222/// The value might be a vector of floats (or a complex number).
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005223static bool IsSameFloatAfterCast(const APValue &value,
5224 const llvm::fltSemantics &Src,
5225 const llvm::fltSemantics &Tgt) {
John McCall263a48b2010-01-04 23:31:57 +00005226 if (value.isFloat())
5227 return IsSameFloatAfterCast(value.getFloat(), Src, Tgt);
5228
5229 if (value.isVector()) {
5230 for (unsigned i = 0, e = value.getVectorLength(); i != e; ++i)
5231 if (!IsSameFloatAfterCast(value.getVectorElt(i), Src, Tgt))
5232 return false;
5233 return true;
5234 }
5235
5236 assert(value.isComplexFloat());
5237 return (IsSameFloatAfterCast(value.getComplexFloatReal(), Src, Tgt) &&
5238 IsSameFloatAfterCast(value.getComplexFloatImag(), Src, Tgt));
5239}
5240
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005241static void AnalyzeImplicitConversions(Sema &S, Expr *E, SourceLocation CC);
John McCallcc7e5bf2010-05-06 08:58:33 +00005242
Ted Kremenek6274be42010-09-23 21:43:44 +00005243static bool IsZero(Sema &S, Expr *E) {
5244 // Suppress cases where we are comparing against an enum constant.
5245 if (const DeclRefExpr *DR =
5246 dyn_cast<DeclRefExpr>(E->IgnoreParenImpCasts()))
5247 if (isa<EnumConstantDecl>(DR->getDecl()))
5248 return false;
5249
5250 // Suppress cases where the '0' value is expanded from a macro.
5251 if (E->getLocStart().isMacroID())
5252 return false;
5253
John McCallcc7e5bf2010-05-06 08:58:33 +00005254 llvm::APSInt Value;
5255 return E->isIntegerConstantExpr(Value, S.Context) && Value == 0;
5256}
5257
John McCall2551c1b2010-10-06 00:25:24 +00005258static bool HasEnumType(Expr *E) {
5259 // Strip off implicit integral promotions.
5260 while (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(E)) {
Argyrios Kyrtzidis15a9edc2010-10-07 21:52:18 +00005261 if (ICE->getCastKind() != CK_IntegralCast &&
5262 ICE->getCastKind() != CK_NoOp)
John McCall2551c1b2010-10-06 00:25:24 +00005263 break;
Argyrios Kyrtzidis15a9edc2010-10-07 21:52:18 +00005264 E = ICE->getSubExpr();
John McCall2551c1b2010-10-06 00:25:24 +00005265 }
5266
5267 return E->getType()->isEnumeralType();
5268}
5269
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005270static void CheckTrivialUnsignedComparison(Sema &S, BinaryOperator *E) {
Richard Trieu36594562013-11-01 21:47:19 +00005271 // Disable warning in template instantiations.
5272 if (!S.ActiveTemplateInstantiations.empty())
5273 return;
5274
John McCalle3027922010-08-25 11:45:40 +00005275 BinaryOperatorKind op = E->getOpcode();
Douglas Gregorb14dbd72010-12-21 07:22:56 +00005276 if (E->isValueDependent())
5277 return;
5278
John McCalle3027922010-08-25 11:45:40 +00005279 if (op == BO_LT && IsZero(S, E->getRHS())) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005280 S.Diag(E->getOperatorLoc(), diag::warn_lunsigned_always_true_comparison)
John McCall2551c1b2010-10-06 00:25:24 +00005281 << "< 0" << "false" << HasEnumType(E->getLHS())
John McCallcc7e5bf2010-05-06 08:58:33 +00005282 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
John McCalle3027922010-08-25 11:45:40 +00005283 } else if (op == BO_GE && IsZero(S, E->getRHS())) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005284 S.Diag(E->getOperatorLoc(), diag::warn_lunsigned_always_true_comparison)
John McCall2551c1b2010-10-06 00:25:24 +00005285 << ">= 0" << "true" << HasEnumType(E->getLHS())
John McCallcc7e5bf2010-05-06 08:58:33 +00005286 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
John McCalle3027922010-08-25 11:45:40 +00005287 } else if (op == BO_GT && IsZero(S, E->getLHS())) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005288 S.Diag(E->getOperatorLoc(), diag::warn_runsigned_always_true_comparison)
John McCall2551c1b2010-10-06 00:25:24 +00005289 << "0 >" << "false" << HasEnumType(E->getRHS())
John McCallcc7e5bf2010-05-06 08:58:33 +00005290 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
John McCalle3027922010-08-25 11:45:40 +00005291 } else if (op == BO_LE && IsZero(S, E->getLHS())) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005292 S.Diag(E->getOperatorLoc(), diag::warn_runsigned_always_true_comparison)
John McCall2551c1b2010-10-06 00:25:24 +00005293 << "0 <=" << "true" << HasEnumType(E->getRHS())
John McCallcc7e5bf2010-05-06 08:58:33 +00005294 << E->getLHS()->getSourceRange() << E->getRHS()->getSourceRange();
5295 }
5296}
5297
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005298static void DiagnoseOutOfRangeComparison(Sema &S, BinaryOperator *E,
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005299 Expr *Constant, Expr *Other,
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005300 llvm::APSInt Value,
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005301 bool RhsConstant) {
Richard Trieudd51d742013-11-01 21:19:43 +00005302 // Disable warning in template instantiations.
5303 if (!S.ActiveTemplateInstantiations.empty())
5304 return;
5305
Richard Trieu560910c2012-11-14 22:50:24 +00005306 // 0 values are handled later by CheckTrivialUnsignedComparison().
5307 if (Value == 0)
5308 return;
5309
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005310 BinaryOperatorKind op = E->getOpcode();
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005311 QualType OtherT = Other->getType();
5312 QualType ConstantT = Constant->getType();
Richard Trieu560910c2012-11-14 22:50:24 +00005313 QualType CommonT = E->getLHS()->getType();
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005314 if (S.Context.hasSameUnqualifiedType(OtherT, ConstantT))
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005315 return;
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005316 assert((OtherT->isIntegerType() && ConstantT->isIntegerType())
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005317 && "comparison with non-integer type");
Richard Trieu560910c2012-11-14 22:50:24 +00005318
5319 bool ConstantSigned = ConstantT->isSignedIntegerType();
Richard Trieu560910c2012-11-14 22:50:24 +00005320 bool CommonSigned = CommonT->isSignedIntegerType();
5321
5322 bool EqualityOnly = false;
5323
5324 // TODO: Investigate using GetExprRange() to get tighter bounds on
5325 // on the bit ranges.
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005326 IntRange OtherRange = IntRange::forValueOfType(S.Context, OtherT);
Richard Trieu560910c2012-11-14 22:50:24 +00005327 unsigned OtherWidth = OtherRange.Width;
5328
5329 if (CommonSigned) {
5330 // The common type is signed, therefore no signed to unsigned conversion.
Eli Friedman5ac98752012-11-30 23:09:29 +00005331 if (!OtherRange.NonNegative) {
Richard Trieu560910c2012-11-14 22:50:24 +00005332 // Check that the constant is representable in type OtherT.
5333 if (ConstantSigned) {
5334 if (OtherWidth >= Value.getMinSignedBits())
5335 return;
5336 } else { // !ConstantSigned
5337 if (OtherWidth >= Value.getActiveBits() + 1)
5338 return;
5339 }
5340 } else { // !OtherSigned
5341 // Check that the constant is representable in type OtherT.
5342 // Negative values are out of range.
5343 if (ConstantSigned) {
5344 if (Value.isNonNegative() && OtherWidth >= Value.getActiveBits())
5345 return;
5346 } else { // !ConstantSigned
5347 if (OtherWidth >= Value.getActiveBits())
5348 return;
5349 }
5350 }
5351 } else { // !CommonSigned
Eli Friedman5ac98752012-11-30 23:09:29 +00005352 if (OtherRange.NonNegative) {
Richard Trieu560910c2012-11-14 22:50:24 +00005353 if (OtherWidth >= Value.getActiveBits())
5354 return;
Eli Friedman5ac98752012-11-30 23:09:29 +00005355 } else if (!OtherRange.NonNegative && !ConstantSigned) {
Richard Trieu560910c2012-11-14 22:50:24 +00005356 // Check to see if the constant is representable in OtherT.
5357 if (OtherWidth > Value.getActiveBits())
5358 return;
5359 // Check to see if the constant is equivalent to a negative value
5360 // cast to CommonT.
5361 if (S.Context.getIntWidth(ConstantT) == S.Context.getIntWidth(CommonT) &&
Richard Trieu03c3a2f2012-11-15 03:43:50 +00005362 Value.isNegative() && Value.getMinSignedBits() <= OtherWidth)
Richard Trieu560910c2012-11-14 22:50:24 +00005363 return;
5364 // The constant value rests between values that OtherT can represent after
5365 // conversion. Relational comparison still works, but equality
5366 // comparisons will be tautological.
5367 EqualityOnly = true;
5368 } else { // OtherSigned && ConstantSigned
5369 assert(0 && "Two signed types converted to unsigned types.");
5370 }
5371 }
5372
5373 bool PositiveConstant = !ConstantSigned || Value.isNonNegative();
5374
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005375 bool IsTrue = true;
Richard Trieu560910c2012-11-14 22:50:24 +00005376 if (op == BO_EQ || op == BO_NE) {
5377 IsTrue = op == BO_NE;
5378 } else if (EqualityOnly) {
5379 return;
5380 } else if (RhsConstant) {
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005381 if (op == BO_GT || op == BO_GE)
Richard Trieu560910c2012-11-14 22:50:24 +00005382 IsTrue = !PositiveConstant;
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005383 else // op == BO_LT || op == BO_LE
Richard Trieu560910c2012-11-14 22:50:24 +00005384 IsTrue = PositiveConstant;
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005385 } else {
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005386 if (op == BO_LT || op == BO_LE)
Richard Trieu560910c2012-11-14 22:50:24 +00005387 IsTrue = !PositiveConstant;
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005388 else // op == BO_GT || op == BO_GE
Richard Trieu560910c2012-11-14 22:50:24 +00005389 IsTrue = PositiveConstant;
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005390 }
Ted Kremenekb7d7dd42013-03-15 21:50:10 +00005391
5392 // If this is a comparison to an enum constant, include that
5393 // constant in the diagnostic.
5394 const EnumConstantDecl *ED = 0;
5395 if (const DeclRefExpr *DR = dyn_cast<DeclRefExpr>(Constant))
5396 ED = dyn_cast<EnumConstantDecl>(DR->getDecl());
5397
5398 SmallString<64> PrettySourceValue;
5399 llvm::raw_svector_ostream OS(PrettySourceValue);
5400 if (ED)
Ted Kremeneke943ce12013-03-15 22:02:46 +00005401 OS << '\'' << *ED << "' (" << Value << ")";
Ted Kremenekb7d7dd42013-03-15 21:50:10 +00005402 else
5403 OS << Value;
5404
Richard Trieuc38786b2014-01-10 04:38:09 +00005405 S.DiagRuntimeBehavior(E->getOperatorLoc(), E,
5406 S.PDiag(diag::warn_out_of_range_compare)
5407 << OS.str() << OtherT << IsTrue
5408 << E->getLHS()->getSourceRange()
5409 << E->getRHS()->getSourceRange());
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005410}
5411
John McCallcc7e5bf2010-05-06 08:58:33 +00005412/// Analyze the operands of the given comparison. Implements the
5413/// fallback case from AnalyzeComparison.
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005414static void AnalyzeImpConvsInComparison(Sema &S, BinaryOperator *E) {
John McCallacf0ee52010-10-08 02:01:28 +00005415 AnalyzeImplicitConversions(S, E->getLHS(), E->getOperatorLoc());
5416 AnalyzeImplicitConversions(S, E->getRHS(), E->getOperatorLoc());
John McCallcc7e5bf2010-05-06 08:58:33 +00005417}
John McCall263a48b2010-01-04 23:31:57 +00005418
John McCallca01b222010-01-04 23:21:16 +00005419/// \brief Implements -Wsign-compare.
5420///
Richard Trieu82402a02011-09-15 21:56:47 +00005421/// \param E the binary operator to check for warnings
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005422static void AnalyzeComparison(Sema &S, BinaryOperator *E) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005423 // The type the comparison is being performed in.
5424 QualType T = E->getLHS()->getType();
5425 assert(S.Context.hasSameUnqualifiedType(T, E->getRHS()->getType())
5426 && "comparison with mismatched types");
Fariborz Jahanian282071e2012-09-18 17:46:26 +00005427 if (E->isValueDependent())
5428 return AnalyzeImpConvsInComparison(S, E);
John McCallca01b222010-01-04 23:21:16 +00005429
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005430 Expr *LHS = E->getLHS()->IgnoreParenImpCasts();
5431 Expr *RHS = E->getRHS()->IgnoreParenImpCasts();
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005432
5433 bool IsComparisonConstant = false;
5434
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005435 // Check whether an integer constant comparison results in a value
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005436 // of 'true' or 'false'.
5437 if (T->isIntegralType(S.Context)) {
5438 llvm::APSInt RHSValue;
5439 bool IsRHSIntegralLiteral =
5440 RHS->isIntegerConstantExpr(RHSValue, S.Context);
5441 llvm::APSInt LHSValue;
5442 bool IsLHSIntegralLiteral =
5443 LHS->isIntegerConstantExpr(LHSValue, S.Context);
5444 if (IsRHSIntegralLiteral && !IsLHSIntegralLiteral)
5445 DiagnoseOutOfRangeComparison(S, E, RHS, LHS, RHSValue, true);
5446 else if (!IsRHSIntegralLiteral && IsLHSIntegralLiteral)
5447 DiagnoseOutOfRangeComparison(S, E, LHS, RHS, LHSValue, false);
5448 else
5449 IsComparisonConstant =
5450 (IsRHSIntegralLiteral && IsLHSIntegralLiteral);
Fariborz Jahanian2f4e33a2012-09-20 19:36:41 +00005451 } else if (!T->hasUnsignedIntegerRepresentation())
5452 IsComparisonConstant = E->isIntegerConstantExpr(S.Context);
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005453
John McCallcc7e5bf2010-05-06 08:58:33 +00005454 // We don't do anything special if this isn't an unsigned integral
5455 // comparison: we're only interested in integral comparisons, and
5456 // signed comparisons only happen in cases we don't care to warn about.
Douglas Gregor5b054542011-02-19 22:34:59 +00005457 //
5458 // We also don't care about value-dependent expressions or expressions
5459 // whose result is a constant.
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005460 if (!T->hasUnsignedIntegerRepresentation() || IsComparisonConstant)
John McCallcc7e5bf2010-05-06 08:58:33 +00005461 return AnalyzeImpConvsInComparison(S, E);
Fariborz Jahanianb1885422012-09-18 17:37:21 +00005462
John McCallcc7e5bf2010-05-06 08:58:33 +00005463 // Check to see if one of the (unmodified) operands is of different
5464 // signedness.
5465 Expr *signedOperand, *unsignedOperand;
Richard Trieu82402a02011-09-15 21:56:47 +00005466 if (LHS->getType()->hasSignedIntegerRepresentation()) {
5467 assert(!RHS->getType()->hasSignedIntegerRepresentation() &&
John McCallcc7e5bf2010-05-06 08:58:33 +00005468 "unsigned comparison between two signed integer expressions?");
Richard Trieu82402a02011-09-15 21:56:47 +00005469 signedOperand = LHS;
5470 unsignedOperand = RHS;
5471 } else if (RHS->getType()->hasSignedIntegerRepresentation()) {
5472 signedOperand = RHS;
5473 unsignedOperand = LHS;
John McCallca01b222010-01-04 23:21:16 +00005474 } else {
John McCallcc7e5bf2010-05-06 08:58:33 +00005475 CheckTrivialUnsignedComparison(S, E);
5476 return AnalyzeImpConvsInComparison(S, E);
John McCallca01b222010-01-04 23:21:16 +00005477 }
5478
John McCallcc7e5bf2010-05-06 08:58:33 +00005479 // Otherwise, calculate the effective range of the signed operand.
5480 IntRange signedRange = GetExprRange(S.Context, signedOperand);
John McCall70aa5392010-01-06 05:24:50 +00005481
John McCallcc7e5bf2010-05-06 08:58:33 +00005482 // Go ahead and analyze implicit conversions in the operands. Note
5483 // that we skip the implicit conversions on both sides.
Richard Trieu82402a02011-09-15 21:56:47 +00005484 AnalyzeImplicitConversions(S, LHS, E->getOperatorLoc());
5485 AnalyzeImplicitConversions(S, RHS, E->getOperatorLoc());
John McCallca01b222010-01-04 23:21:16 +00005486
John McCallcc7e5bf2010-05-06 08:58:33 +00005487 // If the signed range is non-negative, -Wsign-compare won't fire,
5488 // but we should still check for comparisons which are always true
5489 // or false.
5490 if (signedRange.NonNegative)
5491 return CheckTrivialUnsignedComparison(S, E);
John McCallca01b222010-01-04 23:21:16 +00005492
5493 // For (in)equality comparisons, if the unsigned operand is a
5494 // constant which cannot collide with a overflowed signed operand,
5495 // then reinterpreting the signed operand as unsigned will not
5496 // change the result of the comparison.
John McCallcc7e5bf2010-05-06 08:58:33 +00005497 if (E->isEqualityOp()) {
5498 unsigned comparisonWidth = S.Context.getIntWidth(T);
5499 IntRange unsignedRange = GetExprRange(S.Context, unsignedOperand);
John McCallca01b222010-01-04 23:21:16 +00005500
John McCallcc7e5bf2010-05-06 08:58:33 +00005501 // We should never be unable to prove that the unsigned operand is
5502 // non-negative.
5503 assert(unsignedRange.NonNegative && "unsigned range includes negative?");
5504
5505 if (unsignedRange.Width < comparisonWidth)
5506 return;
5507 }
5508
Douglas Gregorbfb4a212012-05-01 01:53:49 +00005509 S.DiagRuntimeBehavior(E->getOperatorLoc(), E,
5510 S.PDiag(diag::warn_mixed_sign_comparison)
5511 << LHS->getType() << RHS->getType()
5512 << LHS->getSourceRange() << RHS->getSourceRange());
John McCallca01b222010-01-04 23:21:16 +00005513}
5514
John McCall1f425642010-11-11 03:21:53 +00005515/// Analyzes an attempt to assign the given value to a bitfield.
5516///
5517/// Returns true if there was something fishy about the attempt.
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005518static bool AnalyzeBitFieldAssignment(Sema &S, FieldDecl *Bitfield, Expr *Init,
5519 SourceLocation InitLoc) {
John McCall1f425642010-11-11 03:21:53 +00005520 assert(Bitfield->isBitField());
5521 if (Bitfield->isInvalidDecl())
5522 return false;
5523
John McCalldeebbcf2010-11-11 05:33:51 +00005524 // White-list bool bitfields.
5525 if (Bitfield->getType()->isBooleanType())
5526 return false;
5527
Douglas Gregor789adec2011-02-04 13:09:01 +00005528 // Ignore value- or type-dependent expressions.
5529 if (Bitfield->getBitWidth()->isValueDependent() ||
5530 Bitfield->getBitWidth()->isTypeDependent() ||
5531 Init->isValueDependent() ||
5532 Init->isTypeDependent())
5533 return false;
5534
John McCall1f425642010-11-11 03:21:53 +00005535 Expr *OriginalInit = Init->IgnoreParenImpCasts();
5536
Richard Smith5fab0c92011-12-28 19:48:30 +00005537 llvm::APSInt Value;
5538 if (!OriginalInit->EvaluateAsInt(Value, S.Context, Expr::SE_AllowSideEffects))
John McCall1f425642010-11-11 03:21:53 +00005539 return false;
5540
John McCall1f425642010-11-11 03:21:53 +00005541 unsigned OriginalWidth = Value.getBitWidth();
Richard Smithcaf33902011-10-10 18:28:20 +00005542 unsigned FieldWidth = Bitfield->getBitWidthValue(S.Context);
John McCall1f425642010-11-11 03:21:53 +00005543
5544 if (OriginalWidth <= FieldWidth)
5545 return false;
5546
Eli Friedmanc267a322012-01-26 23:11:39 +00005547 // Compute the value which the bitfield will contain.
Jay Foad6d4db0c2010-12-07 08:25:34 +00005548 llvm::APSInt TruncatedValue = Value.trunc(FieldWidth);
Eli Friedmanc267a322012-01-26 23:11:39 +00005549 TruncatedValue.setIsSigned(Bitfield->getType()->isSignedIntegerType());
John McCall1f425642010-11-11 03:21:53 +00005550
Eli Friedmanc267a322012-01-26 23:11:39 +00005551 // Check whether the stored value is equal to the original value.
5552 TruncatedValue = TruncatedValue.extend(OriginalWidth);
Richard Trieuc320c742012-07-23 20:21:35 +00005553 if (llvm::APSInt::isSameValue(Value, TruncatedValue))
John McCall1f425642010-11-11 03:21:53 +00005554 return false;
5555
Eli Friedmanc267a322012-01-26 23:11:39 +00005556 // Special-case bitfields of width 1: booleans are naturally 0/1, and
Eli Friedmane1ffd492012-02-02 00:40:20 +00005557 // therefore don't strictly fit into a signed bitfield of width 1.
5558 if (FieldWidth == 1 && Value == 1)
Eli Friedmanc267a322012-01-26 23:11:39 +00005559 return false;
5560
John McCall1f425642010-11-11 03:21:53 +00005561 std::string PrettyValue = Value.toString(10);
5562 std::string PrettyTrunc = TruncatedValue.toString(10);
5563
5564 S.Diag(InitLoc, diag::warn_impcast_bitfield_precision_constant)
5565 << PrettyValue << PrettyTrunc << OriginalInit->getType()
5566 << Init->getSourceRange();
5567
5568 return true;
5569}
5570
John McCalld2a53122010-11-09 23:24:47 +00005571/// Analyze the given simple or compound assignment for warning-worthy
5572/// operations.
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005573static void AnalyzeAssignment(Sema &S, BinaryOperator *E) {
John McCalld2a53122010-11-09 23:24:47 +00005574 // Just recurse on the LHS.
5575 AnalyzeImplicitConversions(S, E->getLHS(), E->getOperatorLoc());
5576
5577 // We want to recurse on the RHS as normal unless we're assigning to
5578 // a bitfield.
John McCalld25db7e2013-05-06 21:39:12 +00005579 if (FieldDecl *Bitfield = E->getLHS()->getSourceBitField()) {
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00005580 if (AnalyzeBitFieldAssignment(S, Bitfield, E->getRHS(),
John McCall1f425642010-11-11 03:21:53 +00005581 E->getOperatorLoc())) {
5582 // Recurse, ignoring any implicit conversions on the RHS.
5583 return AnalyzeImplicitConversions(S, E->getRHS()->IgnoreParenImpCasts(),
5584 E->getOperatorLoc());
John McCalld2a53122010-11-09 23:24:47 +00005585 }
5586 }
5587
5588 AnalyzeImplicitConversions(S, E->getRHS(), E->getOperatorLoc());
5589}
5590
John McCall263a48b2010-01-04 23:31:57 +00005591/// Diagnose an implicit cast; purely a helper for CheckImplicitConversion.
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005592static void DiagnoseImpCast(Sema &S, Expr *E, QualType SourceType, QualType T,
Anna Zaks314cd092012-02-01 19:08:57 +00005593 SourceLocation CContext, unsigned diag,
5594 bool pruneControlFlow = false) {
5595 if (pruneControlFlow) {
5596 S.DiagRuntimeBehavior(E->getExprLoc(), E,
5597 S.PDiag(diag)
5598 << SourceType << T << E->getSourceRange()
5599 << SourceRange(CContext));
5600 return;
5601 }
Douglas Gregor364f7db2011-03-12 00:14:31 +00005602 S.Diag(E->getExprLoc(), diag)
5603 << SourceType << T << E->getSourceRange() << SourceRange(CContext);
5604}
5605
Chandler Carruth7f3654f2011-04-05 06:47:57 +00005606/// Diagnose an implicit cast; purely a helper for CheckImplicitConversion.
Ted Kremenek8a92c8b2012-01-31 05:37:37 +00005607static void DiagnoseImpCast(Sema &S, Expr *E, QualType T,
Anna Zaks314cd092012-02-01 19:08:57 +00005608 SourceLocation CContext, unsigned diag,
5609 bool pruneControlFlow = false) {
5610 DiagnoseImpCast(S, E, E->getType(), T, CContext, diag, pruneControlFlow);
Chandler Carruth7f3654f2011-04-05 06:47:57 +00005611}
5612
Matt Beaumont-Gayc6221632011-10-14 15:36:25 +00005613/// Diagnose an implicit cast from a literal expression. Does not warn when the
5614/// cast wouldn't lose information.
Chandler Carruth016ef402011-04-10 08:36:24 +00005615void DiagnoseFloatingLiteralImpCast(Sema &S, FloatingLiteral *FL, QualType T,
5616 SourceLocation CContext) {
Matt Beaumont-Gayc6221632011-10-14 15:36:25 +00005617 // Try to convert the literal exactly to an integer. If we can, don't warn.
Chandler Carruth016ef402011-04-10 08:36:24 +00005618 bool isExact = false;
Matt Beaumont-Gayc6221632011-10-14 15:36:25 +00005619 const llvm::APFloat &Value = FL->getValue();
Jeffrey Yasskind0f079d2011-07-15 17:03:07 +00005620 llvm::APSInt IntegerValue(S.Context.getIntWidth(T),
5621 T->hasUnsignedIntegerRepresentation());
5622 if (Value.convertToInteger(IntegerValue,
Chandler Carruth016ef402011-04-10 08:36:24 +00005623 llvm::APFloat::rmTowardZero, &isExact)
Matt Beaumont-Gayc6221632011-10-14 15:36:25 +00005624 == llvm::APFloat::opOK && isExact)
Chandler Carruth016ef402011-04-10 08:36:24 +00005625 return;
5626
Eli Friedman07185912013-08-29 23:44:43 +00005627 // FIXME: Force the precision of the source value down so we don't print
5628 // digits which are usually useless (we don't really care here if we
5629 // truncate a digit by accident in edge cases). Ideally, APFloat::toString
5630 // would automatically print the shortest representation, but it's a bit
5631 // tricky to implement.
David Blaikie7555b6a2012-05-15 16:56:36 +00005632 SmallString<16> PrettySourceValue;
Eli Friedman07185912013-08-29 23:44:43 +00005633 unsigned precision = llvm::APFloat::semanticsPrecision(Value.getSemantics());
5634 precision = (precision * 59 + 195) / 196;
5635 Value.toString(PrettySourceValue, precision);
5636
David Blaikie9b88cc02012-05-15 17:18:27 +00005637 SmallString<16> PrettyTargetValue;
David Blaikie7555b6a2012-05-15 16:56:36 +00005638 if (T->isSpecificBuiltinType(BuiltinType::Bool))
5639 PrettyTargetValue = IntegerValue == 0 ? "false" : "true";
5640 else
David Blaikie9b88cc02012-05-15 17:18:27 +00005641 IntegerValue.toString(PrettyTargetValue);
David Blaikie7555b6a2012-05-15 16:56:36 +00005642
Matt Beaumont-Gayc6221632011-10-14 15:36:25 +00005643 S.Diag(FL->getExprLoc(), diag::warn_impcast_literal_float_to_integer)
David Blaikie7555b6a2012-05-15 16:56:36 +00005644 << FL->getType() << T.getUnqualifiedType() << PrettySourceValue
5645 << PrettyTargetValue << FL->getSourceRange() << SourceRange(CContext);
Chandler Carruth016ef402011-04-10 08:36:24 +00005646}
5647
John McCall18a2c2c2010-11-09 22:22:12 +00005648std::string PrettyPrintInRange(const llvm::APSInt &Value, IntRange Range) {
5649 if (!Range.Width) return "0";
5650
5651 llvm::APSInt ValueInRange = Value;
5652 ValueInRange.setIsSigned(!Range.NonNegative);
Jay Foad6d4db0c2010-12-07 08:25:34 +00005653 ValueInRange = ValueInRange.trunc(Range.Width);
John McCall18a2c2c2010-11-09 22:22:12 +00005654 return ValueInRange.toString(10);
5655}
5656
Hans Wennborgf4ad2322012-08-28 15:44:30 +00005657static bool IsImplicitBoolFloatConversion(Sema &S, Expr *Ex, bool ToBool) {
5658 if (!isa<ImplicitCastExpr>(Ex))
5659 return false;
5660
5661 Expr *InnerE = Ex->IgnoreParenImpCasts();
5662 const Type *Target = S.Context.getCanonicalType(Ex->getType()).getTypePtr();
5663 const Type *Source =
5664 S.Context.getCanonicalType(InnerE->getType()).getTypePtr();
5665 if (Target->isDependentType())
5666 return false;
5667
5668 const BuiltinType *FloatCandidateBT =
5669 dyn_cast<BuiltinType>(ToBool ? Source : Target);
5670 const Type *BoolCandidateType = ToBool ? Target : Source;
5671
5672 return (BoolCandidateType->isSpecificBuiltinType(BuiltinType::Bool) &&
5673 FloatCandidateBT && (FloatCandidateBT->isFloatingPoint()));
5674}
5675
5676void CheckImplicitArgumentConversions(Sema &S, CallExpr *TheCall,
5677 SourceLocation CC) {
5678 unsigned NumArgs = TheCall->getNumArgs();
5679 for (unsigned i = 0; i < NumArgs; ++i) {
5680 Expr *CurrA = TheCall->getArg(i);
5681 if (!IsImplicitBoolFloatConversion(S, CurrA, true))
5682 continue;
5683
5684 bool IsSwapped = ((i > 0) &&
5685 IsImplicitBoolFloatConversion(S, TheCall->getArg(i - 1), false));
5686 IsSwapped |= ((i < (NumArgs - 1)) &&
5687 IsImplicitBoolFloatConversion(S, TheCall->getArg(i + 1), false));
5688 if (IsSwapped) {
5689 // Warn on this floating-point to bool conversion.
5690 DiagnoseImpCast(S, CurrA->IgnoreParenImpCasts(),
5691 CurrA->getType(), CC,
5692 diag::warn_impcast_floating_point_to_bool);
5693 }
5694 }
5695}
5696
John McCallcc7e5bf2010-05-06 08:58:33 +00005697void CheckImplicitConversion(Sema &S, Expr *E, QualType T,
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00005698 SourceLocation CC, bool *ICContext = 0) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005699 if (E->isTypeDependent() || E->isValueDependent()) return;
John McCall263a48b2010-01-04 23:31:57 +00005700
John McCallcc7e5bf2010-05-06 08:58:33 +00005701 const Type *Source = S.Context.getCanonicalType(E->getType()).getTypePtr();
5702 const Type *Target = S.Context.getCanonicalType(T).getTypePtr();
5703 if (Source == Target) return;
5704 if (Target->isDependentType()) return;
John McCall263a48b2010-01-04 23:31:57 +00005705
Chandler Carruthc22845a2011-07-26 05:40:03 +00005706 // If the conversion context location is invalid don't complain. We also
5707 // don't want to emit a warning if the issue occurs from the expansion of
5708 // a system macro. The problem is that 'getSpellingLoc()' is slow, so we
5709 // delay this check as long as possible. Once we detect we are in that
5710 // scenario, we just return.
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005711 if (CC.isInvalid())
John McCallacf0ee52010-10-08 02:01:28 +00005712 return;
5713
Richard Trieu021baa32011-09-23 20:10:00 +00005714 // Diagnose implicit casts to bool.
5715 if (Target->isSpecificBuiltinType(BuiltinType::Bool)) {
5716 if (isa<StringLiteral>(E))
5717 // Warn on string literal to bool. Checks for string literals in logical
Richard Trieu955231d2014-01-25 01:10:35 +00005718 // and expressions, for instance, assert(0 && "error here"), are
5719 // prevented by a check in AnalyzeImplicitConversions().
Richard Trieu021baa32011-09-23 20:10:00 +00005720 return DiagnoseImpCast(S, E, T, CC,
5721 diag::warn_impcast_string_literal_to_bool);
Richard Trieu1e632af2014-01-28 23:40:26 +00005722 if (isa<ObjCStringLiteral>(E) || isa<ObjCArrayLiteral>(E) ||
5723 isa<ObjCDictionaryLiteral>(E) || isa<ObjCBoxedExpr>(E)) {
5724 // This covers the literal expressions that evaluate to Objective-C
5725 // objects.
5726 return DiagnoseImpCast(S, E, T, CC,
5727 diag::warn_impcast_objective_c_literal_to_bool);
5728 }
Richard Trieu3bb8b562014-02-26 02:36:06 +00005729 if (Source->isPointerType() || Source->canDecayToPointerType()) {
5730 // Warn on pointer to bool conversion that is always true.
5731 S.DiagnoseAlwaysNonNullPointer(E, Expr::NPCK_NotNull, /*IsEqual*/ false,
5732 SourceRange(CC));
Lang Hamesdf5c1212011-12-05 20:49:50 +00005733 }
Richard Trieu021baa32011-09-23 20:10:00 +00005734 }
John McCall263a48b2010-01-04 23:31:57 +00005735
5736 // Strip vector types.
5737 if (isa<VectorType>(Source)) {
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005738 if (!isa<VectorType>(Target)) {
Matt Beaumont-Gay7a57ada2012-01-06 22:43:58 +00005739 if (S.SourceMgr.isInSystemMacro(CC))
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005740 return;
John McCallacf0ee52010-10-08 02:01:28 +00005741 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_vector_scalar);
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005742 }
Chris Lattneree7286f2011-06-14 04:51:15 +00005743
5744 // If the vector cast is cast between two vectors of the same size, it is
5745 // a bitcast, not a conversion.
5746 if (S.Context.getTypeSize(Source) == S.Context.getTypeSize(Target))
5747 return;
John McCall263a48b2010-01-04 23:31:57 +00005748
5749 Source = cast<VectorType>(Source)->getElementType().getTypePtr();
5750 Target = cast<VectorType>(Target)->getElementType().getTypePtr();
5751 }
5752
5753 // Strip complex types.
5754 if (isa<ComplexType>(Source)) {
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005755 if (!isa<ComplexType>(Target)) {
Matt Beaumont-Gay7a57ada2012-01-06 22:43:58 +00005756 if (S.SourceMgr.isInSystemMacro(CC))
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005757 return;
5758
John McCallacf0ee52010-10-08 02:01:28 +00005759 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_complex_scalar);
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005760 }
John McCall263a48b2010-01-04 23:31:57 +00005761
5762 Source = cast<ComplexType>(Source)->getElementType().getTypePtr();
5763 Target = cast<ComplexType>(Target)->getElementType().getTypePtr();
5764 }
5765
5766 const BuiltinType *SourceBT = dyn_cast<BuiltinType>(Source);
5767 const BuiltinType *TargetBT = dyn_cast<BuiltinType>(Target);
5768
5769 // If the source is floating point...
5770 if (SourceBT && SourceBT->isFloatingPoint()) {
5771 // ...and the target is floating point...
5772 if (TargetBT && TargetBT->isFloatingPoint()) {
5773 // ...then warn if we're dropping FP rank.
5774
5775 // Builtin FP kinds are ordered by increasing FP rank.
5776 if (SourceBT->getKind() > TargetBT->getKind()) {
5777 // Don't warn about float constants that are precisely
5778 // representable in the target type.
5779 Expr::EvalResult result;
Richard Smith7b553f12011-10-29 00:50:52 +00005780 if (E->EvaluateAsRValue(result, S.Context)) {
John McCall263a48b2010-01-04 23:31:57 +00005781 // Value might be a float, a float vector, or a float complex.
5782 if (IsSameFloatAfterCast(result.Val,
John McCallcc7e5bf2010-05-06 08:58:33 +00005783 S.Context.getFloatTypeSemantics(QualType(TargetBT, 0)),
5784 S.Context.getFloatTypeSemantics(QualType(SourceBT, 0))))
John McCall263a48b2010-01-04 23:31:57 +00005785 return;
5786 }
5787
Matt Beaumont-Gay7a57ada2012-01-06 22:43:58 +00005788 if (S.SourceMgr.isInSystemMacro(CC))
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005789 return;
5790
John McCallacf0ee52010-10-08 02:01:28 +00005791 DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_float_precision);
John McCall263a48b2010-01-04 23:31:57 +00005792 }
5793 return;
5794 }
5795
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005796 // If the target is integral, always warn.
David Blaikie7555b6a2012-05-15 16:56:36 +00005797 if (TargetBT && TargetBT->isInteger()) {
Matt Beaumont-Gay7a57ada2012-01-06 22:43:58 +00005798 if (S.SourceMgr.isInSystemMacro(CC))
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005799 return;
5800
Chandler Carruth22c7a792011-02-17 11:05:49 +00005801 Expr *InnerE = E->IgnoreParenImpCasts();
Matt Beaumont-Gay042ce8e2011-09-08 22:30:47 +00005802 // We also want to warn on, e.g., "int i = -1.234"
5803 if (UnaryOperator *UOp = dyn_cast<UnaryOperator>(InnerE))
5804 if (UOp->getOpcode() == UO_Minus || UOp->getOpcode() == UO_Plus)
5805 InnerE = UOp->getSubExpr()->IgnoreParenImpCasts();
5806
Chandler Carruth016ef402011-04-10 08:36:24 +00005807 if (FloatingLiteral *FL = dyn_cast<FloatingLiteral>(InnerE)) {
5808 DiagnoseFloatingLiteralImpCast(S, FL, T, CC);
Chandler Carruth22c7a792011-02-17 11:05:49 +00005809 } else {
5810 DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_float_integer);
5811 }
5812 }
John McCall263a48b2010-01-04 23:31:57 +00005813
Hans Wennborgf4ad2322012-08-28 15:44:30 +00005814 // If the target is bool, warn if expr is a function or method call.
5815 if (Target->isSpecificBuiltinType(BuiltinType::Bool) &&
5816 isa<CallExpr>(E)) {
5817 // Check last argument of function call to see if it is an
5818 // implicit cast from a type matching the type the result
5819 // is being cast to.
5820 CallExpr *CEx = cast<CallExpr>(E);
5821 unsigned NumArgs = CEx->getNumArgs();
5822 if (NumArgs > 0) {
5823 Expr *LastA = CEx->getArg(NumArgs - 1);
5824 Expr *InnerE = LastA->IgnoreParenImpCasts();
5825 const Type *InnerType =
5826 S.Context.getCanonicalType(InnerE->getType()).getTypePtr();
5827 if (isa<ImplicitCastExpr>(LastA) && (InnerType == Target)) {
5828 // Warn on this floating-point to bool conversion
5829 DiagnoseImpCast(S, E, T, CC,
5830 diag::warn_impcast_floating_point_to_bool);
5831 }
5832 }
5833 }
John McCall263a48b2010-01-04 23:31:57 +00005834 return;
5835 }
5836
Richard Trieubeaf3452011-05-29 19:59:02 +00005837 if ((E->isNullPointerConstant(S.Context, Expr::NPC_ValueDependentIsNotNull)
David Blaikie9366d2b2012-06-19 21:19:06 +00005838 == Expr::NPCK_GNUNull) && !Target->isAnyPointerType()
David Blaikiea1edff02012-11-08 00:41:20 +00005839 && !Target->isBlockPointerType() && !Target->isMemberPointerType()
David Blaikiebcd4b552013-02-16 00:56:22 +00005840 && Target->isScalarType() && !Target->isNullPtrType()) {
David Blaikieae12b182012-03-16 20:30:12 +00005841 SourceLocation Loc = E->getSourceRange().getBegin();
5842 if (Loc.isMacroID())
5843 Loc = S.SourceMgr.getImmediateExpansionRange(Loc).first;
David Blaikie18e9ac72012-05-15 21:57:38 +00005844 if (!Loc.isMacroID() || CC.isMacroID())
5845 S.Diag(Loc, diag::warn_impcast_null_pointer_to_integer)
5846 << T << clang::SourceRange(CC)
Richard Smithf7ec86a2013-09-20 00:27:40 +00005847 << FixItHint::CreateReplacement(Loc,
5848 S.getFixItZeroLiteralForType(T, Loc));
Richard Trieubeaf3452011-05-29 19:59:02 +00005849 }
5850
David Blaikie9366d2b2012-06-19 21:19:06 +00005851 if (!Source->isIntegerType() || !Target->isIntegerType())
5852 return;
5853
David Blaikie7555b6a2012-05-15 16:56:36 +00005854 // TODO: remove this early return once the false positives for constant->bool
5855 // in templates, macros, etc, are reduced or removed.
5856 if (Target->isSpecificBuiltinType(BuiltinType::Bool))
5857 return;
5858
John McCallcc7e5bf2010-05-06 08:58:33 +00005859 IntRange SourceRange = GetExprRange(S.Context, E);
John McCall817d4af2010-11-10 23:38:19 +00005860 IntRange TargetRange = IntRange::forTargetOfCanonicalType(S.Context, Target);
John McCall70aa5392010-01-06 05:24:50 +00005861
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00005862 if (SourceRange.Width > TargetRange.Width) {
Sam Panzer6fffec62013-03-28 19:07:11 +00005863 // If the source is a constant, use a default-on diagnostic.
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00005864 // TODO: this should happen for bitfield stores, too.
5865 llvm::APSInt Value(32);
5866 if (E->isIntegerConstantExpr(Value, S.Context)) {
5867 if (S.SourceMgr.isInSystemMacro(CC))
5868 return;
5869
John McCall18a2c2c2010-11-09 22:22:12 +00005870 std::string PrettySourceValue = Value.toString(10);
5871 std::string PrettyTargetValue = PrettyPrintInRange(Value, TargetRange);
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00005872
Ted Kremenek33ba9952011-10-22 02:37:33 +00005873 S.DiagRuntimeBehavior(E->getExprLoc(), E,
5874 S.PDiag(diag::warn_impcast_integer_precision_constant)
5875 << PrettySourceValue << PrettyTargetValue
5876 << E->getType() << T << E->getSourceRange()
5877 << clang::SourceRange(CC));
John McCall18a2c2c2010-11-09 22:22:12 +00005878 return;
5879 }
5880
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00005881 // People want to build with -Wshorten-64-to-32 and not -Wconversion.
5882 if (S.SourceMgr.isInSystemMacro(CC))
5883 return;
5884
David Blaikie9455da02012-04-12 22:40:54 +00005885 if (TargetRange.Width == 32 && S.Context.getIntWidth(E->getType()) == 64)
Anna Zaks314cd092012-02-01 19:08:57 +00005886 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_integer_64_32,
5887 /* pruneControlFlow */ true);
John McCallacf0ee52010-10-08 02:01:28 +00005888 return DiagnoseImpCast(S, E, T, CC, diag::warn_impcast_integer_precision);
John McCallcc7e5bf2010-05-06 08:58:33 +00005889 }
5890
5891 if ((TargetRange.NonNegative && !SourceRange.NonNegative) ||
5892 (!TargetRange.NonNegative && SourceRange.NonNegative &&
5893 SourceRange.Width == TargetRange.Width)) {
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005894
Matt Beaumont-Gay7a57ada2012-01-06 22:43:58 +00005895 if (S.SourceMgr.isInSystemMacro(CC))
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005896 return;
5897
John McCallcc7e5bf2010-05-06 08:58:33 +00005898 unsigned DiagID = diag::warn_impcast_integer_sign;
5899
5900 // Traditionally, gcc has warned about this under -Wsign-compare.
5901 // We also want to warn about it in -Wconversion.
5902 // So if -Wconversion is off, use a completely identical diagnostic
5903 // in the sign-compare group.
5904 // The conditional-checking code will
5905 if (ICContext) {
5906 DiagID = diag::warn_impcast_integer_sign_conditional;
5907 *ICContext = true;
5908 }
5909
John McCallacf0ee52010-10-08 02:01:28 +00005910 return DiagnoseImpCast(S, E, T, CC, DiagID);
John McCall263a48b2010-01-04 23:31:57 +00005911 }
5912
Douglas Gregora78f1932011-02-22 02:45:07 +00005913 // Diagnose conversions between different enumeration types.
Douglas Gregor364f7db2011-03-12 00:14:31 +00005914 // In C, we pretend that the type of an EnumConstantDecl is its enumeration
5915 // type, to give us better diagnostics.
5916 QualType SourceType = E->getType();
David Blaikiebbafb8a2012-03-11 07:00:24 +00005917 if (!S.getLangOpts().CPlusPlus) {
Douglas Gregor364f7db2011-03-12 00:14:31 +00005918 if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E))
5919 if (EnumConstantDecl *ECD = dyn_cast<EnumConstantDecl>(DRE->getDecl())) {
5920 EnumDecl *Enum = cast<EnumDecl>(ECD->getDeclContext());
5921 SourceType = S.Context.getTypeDeclType(Enum);
5922 Source = S.Context.getCanonicalType(SourceType).getTypePtr();
5923 }
5924 }
5925
Douglas Gregora78f1932011-02-22 02:45:07 +00005926 if (const EnumType *SourceEnum = Source->getAs<EnumType>())
5927 if (const EnumType *TargetEnum = Target->getAs<EnumType>())
John McCall5ea95772013-03-09 00:54:27 +00005928 if (SourceEnum->getDecl()->hasNameForLinkage() &&
5929 TargetEnum->getDecl()->hasNameForLinkage() &&
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005930 SourceEnum != TargetEnum) {
Matt Beaumont-Gay7a57ada2012-01-06 22:43:58 +00005931 if (S.SourceMgr.isInSystemMacro(CC))
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005932 return;
5933
Douglas Gregor364f7db2011-03-12 00:14:31 +00005934 return DiagnoseImpCast(S, E, SourceType, T, CC,
Douglas Gregora78f1932011-02-22 02:45:07 +00005935 diag::warn_impcast_different_enum_types);
Ted Kremenek4c0826c2011-03-10 20:03:42 +00005936 }
Douglas Gregora78f1932011-02-22 02:45:07 +00005937
John McCall263a48b2010-01-04 23:31:57 +00005938 return;
5939}
5940
David Blaikie18e9ac72012-05-15 21:57:38 +00005941void CheckConditionalOperator(Sema &S, ConditionalOperator *E,
5942 SourceLocation CC, QualType T);
John McCallcc7e5bf2010-05-06 08:58:33 +00005943
5944void CheckConditionalOperand(Sema &S, Expr *E, QualType T,
John McCallacf0ee52010-10-08 02:01:28 +00005945 SourceLocation CC, bool &ICContext) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005946 E = E->IgnoreParenImpCasts();
5947
5948 if (isa<ConditionalOperator>(E))
David Blaikie18e9ac72012-05-15 21:57:38 +00005949 return CheckConditionalOperator(S, cast<ConditionalOperator>(E), CC, T);
John McCallcc7e5bf2010-05-06 08:58:33 +00005950
John McCallacf0ee52010-10-08 02:01:28 +00005951 AnalyzeImplicitConversions(S, E, CC);
John McCallcc7e5bf2010-05-06 08:58:33 +00005952 if (E->getType() != T)
John McCallacf0ee52010-10-08 02:01:28 +00005953 return CheckImplicitConversion(S, E, T, CC, &ICContext);
John McCallcc7e5bf2010-05-06 08:58:33 +00005954 return;
5955}
5956
David Blaikie18e9ac72012-05-15 21:57:38 +00005957void CheckConditionalOperator(Sema &S, ConditionalOperator *E,
5958 SourceLocation CC, QualType T) {
John McCallacf0ee52010-10-08 02:01:28 +00005959 AnalyzeImplicitConversions(S, E->getCond(), CC);
John McCallcc7e5bf2010-05-06 08:58:33 +00005960
5961 bool Suspicious = false;
John McCallacf0ee52010-10-08 02:01:28 +00005962 CheckConditionalOperand(S, E->getTrueExpr(), T, CC, Suspicious);
5963 CheckConditionalOperand(S, E->getFalseExpr(), T, CC, Suspicious);
John McCallcc7e5bf2010-05-06 08:58:33 +00005964
5965 // If -Wconversion would have warned about either of the candidates
5966 // for a signedness conversion to the context type...
5967 if (!Suspicious) return;
5968
5969 // ...but it's currently ignored...
Argyrios Kyrtzidis1cb0de12010-12-15 18:44:22 +00005970 if (S.Diags.getDiagnosticLevel(diag::warn_impcast_integer_sign_conditional,
5971 CC))
John McCallcc7e5bf2010-05-06 08:58:33 +00005972 return;
5973
John McCallcc7e5bf2010-05-06 08:58:33 +00005974 // ...then check whether it would have warned about either of the
5975 // candidates for a signedness conversion to the condition type.
Richard Trieubb43dec2011-07-21 02:46:28 +00005976 if (E->getType() == T) return;
5977
5978 Suspicious = false;
5979 CheckImplicitConversion(S, E->getTrueExpr()->IgnoreParenImpCasts(),
5980 E->getType(), CC, &Suspicious);
5981 if (!Suspicious)
5982 CheckImplicitConversion(S, E->getFalseExpr()->IgnoreParenImpCasts(),
John McCallacf0ee52010-10-08 02:01:28 +00005983 E->getType(), CC, &Suspicious);
John McCallcc7e5bf2010-05-06 08:58:33 +00005984}
5985
5986/// AnalyzeImplicitConversions - Find and report any interesting
5987/// implicit conversions in the given expression. There are a couple
5988/// of competing diagnostics here, -Wconversion and -Wsign-compare.
John McCallacf0ee52010-10-08 02:01:28 +00005989void AnalyzeImplicitConversions(Sema &S, Expr *OrigE, SourceLocation CC) {
John McCallcc7e5bf2010-05-06 08:58:33 +00005990 QualType T = OrigE->getType();
5991 Expr *E = OrigE->IgnoreParenImpCasts();
5992
Douglas Gregor6e8da6a2011-10-10 17:38:18 +00005993 if (E->isTypeDependent() || E->isValueDependent())
5994 return;
5995
John McCallcc7e5bf2010-05-06 08:58:33 +00005996 // For conditional operators, we analyze the arguments as if they
5997 // were being fed directly into the output.
5998 if (isa<ConditionalOperator>(E)) {
5999 ConditionalOperator *CO = cast<ConditionalOperator>(E);
David Blaikie18e9ac72012-05-15 21:57:38 +00006000 CheckConditionalOperator(S, CO, CC, T);
John McCallcc7e5bf2010-05-06 08:58:33 +00006001 return;
6002 }
6003
Hans Wennborgf4ad2322012-08-28 15:44:30 +00006004 // Check implicit argument conversions for function calls.
6005 if (CallExpr *Call = dyn_cast<CallExpr>(E))
6006 CheckImplicitArgumentConversions(S, Call, CC);
6007
John McCallcc7e5bf2010-05-06 08:58:33 +00006008 // Go ahead and check any implicit conversions we might have skipped.
6009 // The non-canonical typecheck is just an optimization;
6010 // CheckImplicitConversion will filter out dead implicit conversions.
6011 if (E->getType() != T)
John McCallacf0ee52010-10-08 02:01:28 +00006012 CheckImplicitConversion(S, E, T, CC);
John McCallcc7e5bf2010-05-06 08:58:33 +00006013
6014 // Now continue drilling into this expression.
Fariborz Jahanian2cb4a952013-05-15 19:03:04 +00006015
6016 if (PseudoObjectExpr * POE = dyn_cast<PseudoObjectExpr>(E)) {
Fariborz Jahanian0b11ef22013-05-15 22:25:03 +00006017 if (POE->getResultExpr())
6018 E = POE->getResultExpr();
Fariborz Jahanian2cb4a952013-05-15 19:03:04 +00006019 }
6020
Fariborz Jahanian0b11ef22013-05-15 22:25:03 +00006021 if (const OpaqueValueExpr *OVE = dyn_cast<OpaqueValueExpr>(E))
6022 return AnalyzeImplicitConversions(S, OVE->getSourceExpr(), CC);
6023
John McCallcc7e5bf2010-05-06 08:58:33 +00006024 // Skip past explicit casts.
6025 if (isa<ExplicitCastExpr>(E)) {
6026 E = cast<ExplicitCastExpr>(E)->getSubExpr()->IgnoreParenImpCasts();
John McCallacf0ee52010-10-08 02:01:28 +00006027 return AnalyzeImplicitConversions(S, E, CC);
John McCallcc7e5bf2010-05-06 08:58:33 +00006028 }
6029
John McCalld2a53122010-11-09 23:24:47 +00006030 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
6031 // Do a somewhat different check with comparison operators.
6032 if (BO->isComparisonOp())
6033 return AnalyzeComparison(S, BO);
6034
Timur Iskhodzhanov554bdc62013-03-29 00:22:03 +00006035 // And with simple assignments.
6036 if (BO->getOpcode() == BO_Assign)
John McCalld2a53122010-11-09 23:24:47 +00006037 return AnalyzeAssignment(S, BO);
6038 }
John McCallcc7e5bf2010-05-06 08:58:33 +00006039
6040 // These break the otherwise-useful invariant below. Fortunately,
6041 // we don't really need to recurse into them, because any internal
6042 // expressions should have been analyzed already when they were
6043 // built into statements.
6044 if (isa<StmtExpr>(E)) return;
6045
6046 // Don't descend into unevaluated contexts.
Peter Collingbournee190dee2011-03-11 19:24:49 +00006047 if (isa<UnaryExprOrTypeTraitExpr>(E)) return;
John McCallcc7e5bf2010-05-06 08:58:33 +00006048
6049 // Now just recurse over the expression's children.
John McCallacf0ee52010-10-08 02:01:28 +00006050 CC = E->getExprLoc();
Richard Trieu021baa32011-09-23 20:10:00 +00006051 BinaryOperator *BO = dyn_cast<BinaryOperator>(E);
Richard Trieu955231d2014-01-25 01:10:35 +00006052 bool IsLogicalAndOperator = BO && BO->getOpcode() == BO_LAnd;
Richard Trieu021baa32011-09-23 20:10:00 +00006053 for (Stmt::child_range I = E->children(); I; ++I) {
Douglas Gregor73456262012-02-09 10:18:50 +00006054 Expr *ChildExpr = dyn_cast_or_null<Expr>(*I);
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00006055 if (!ChildExpr)
6056 continue;
6057
Richard Trieu955231d2014-01-25 01:10:35 +00006058 if (IsLogicalAndOperator &&
Richard Trieu021baa32011-09-23 20:10:00 +00006059 isa<StringLiteral>(ChildExpr->IgnoreParenImpCasts()))
Richard Trieu955231d2014-01-25 01:10:35 +00006060 // Ignore checking string literals that are in logical and operators.
6061 // This is a common pattern for asserts.
Richard Trieu021baa32011-09-23 20:10:00 +00006062 continue;
6063 AnalyzeImplicitConversions(S, ChildExpr, CC);
6064 }
John McCallcc7e5bf2010-05-06 08:58:33 +00006065}
6066
6067} // end anonymous namespace
6068
Richard Trieu3bb8b562014-02-26 02:36:06 +00006069enum {
6070 AddressOf,
6071 FunctionPointer,
6072 ArrayPointer
6073};
6074
6075/// \brief Diagnose pointers that are always non-null.
6076/// \param E the expression containing the pointer
6077/// \param NullKind NPCK_NotNull if E is a cast to bool, otherwise, E is
6078/// compared to a null pointer
6079/// \param IsEqual True when the comparison is equal to a null pointer
6080/// \param Range Extra SourceRange to highlight in the diagnostic
6081void Sema::DiagnoseAlwaysNonNullPointer(Expr *E,
6082 Expr::NullPointerConstantKind NullKind,
6083 bool IsEqual, SourceRange Range) {
6084
6085 // Don't warn inside macros.
6086 if (E->getExprLoc().isMacroID())
6087 return;
6088 E = E->IgnoreImpCasts();
6089
6090 const bool IsCompare = NullKind != Expr::NPCK_NotNull;
6091
6092 bool IsAddressOf = false;
6093
6094 if (UnaryOperator *UO = dyn_cast<UnaryOperator>(E)) {
6095 if (UO->getOpcode() != UO_AddrOf)
6096 return;
6097 IsAddressOf = true;
6098 E = UO->getSubExpr();
6099 }
6100
6101 // Expect to find a single Decl. Skip anything more complicated.
6102 ValueDecl *D = 0;
6103 if (DeclRefExpr *R = dyn_cast<DeclRefExpr>(E)) {
6104 D = R->getDecl();
6105 } else if (MemberExpr *M = dyn_cast<MemberExpr>(E)) {
6106 D = M->getMemberDecl();
6107 }
6108
6109 // Weak Decls can be null.
6110 if (!D || D->isWeak())
6111 return;
6112
6113 QualType T = D->getType();
6114 const bool IsArray = T->isArrayType();
6115 const bool IsFunction = T->isFunctionType();
6116
6117 if (IsAddressOf) {
6118 // Address of function is used to silence the function warning.
6119 if (IsFunction)
6120 return;
6121 // Address of reference can be null.
6122 if (T->isReferenceType())
6123 return;
6124 }
6125
6126 // Found nothing.
6127 if (!IsAddressOf && !IsFunction && !IsArray)
6128 return;
6129
6130 // Pretty print the expression for the diagnostic.
6131 std::string Str;
6132 llvm::raw_string_ostream S(Str);
6133 E->printPretty(S, 0, getPrintingPolicy());
6134
6135 unsigned DiagID = IsCompare ? diag::warn_null_pointer_compare
6136 : diag::warn_impcast_pointer_to_bool;
6137 unsigned DiagType;
6138 if (IsAddressOf)
6139 DiagType = AddressOf;
6140 else if (IsFunction)
6141 DiagType = FunctionPointer;
6142 else if (IsArray)
6143 DiagType = ArrayPointer;
6144 else
6145 llvm_unreachable("Could not determine diagnostic.");
6146 Diag(E->getExprLoc(), DiagID) << DiagType << S.str() << E->getSourceRange()
6147 << Range << IsEqual;
6148
6149 if (!IsFunction)
6150 return;
6151
6152 // Suggest '&' to silence the function warning.
6153 Diag(E->getExprLoc(), diag::note_function_warning_silence)
6154 << FixItHint::CreateInsertion(E->getLocStart(), "&");
6155
6156 // Check to see if '()' fixit should be emitted.
6157 QualType ReturnType;
6158 UnresolvedSet<4> NonTemplateOverloads;
6159 tryExprAsCall(*E, ReturnType, NonTemplateOverloads);
6160 if (ReturnType.isNull())
6161 return;
6162
6163 if (IsCompare) {
6164 // There are two cases here. If there is null constant, the only suggest
6165 // for a pointer return type. If the null is 0, then suggest if the return
6166 // type is a pointer or an integer type.
6167 if (!ReturnType->isPointerType()) {
6168 if (NullKind == Expr::NPCK_ZeroExpression ||
6169 NullKind == Expr::NPCK_ZeroLiteral) {
6170 if (!ReturnType->isIntegerType())
6171 return;
6172 } else {
6173 return;
6174 }
6175 }
6176 } else { // !IsCompare
6177 // For function to bool, only suggest if the function pointer has bool
6178 // return type.
6179 if (!ReturnType->isSpecificBuiltinType(BuiltinType::Bool))
6180 return;
6181 }
6182 Diag(E->getExprLoc(), diag::note_function_to_function_call)
6183 << FixItHint::CreateInsertion(
6184 getPreprocessor().getLocForEndOfToken(E->getLocEnd()), "()");
6185}
6186
6187
John McCallcc7e5bf2010-05-06 08:58:33 +00006188/// Diagnoses "dangerous" implicit conversions within the given
6189/// expression (which is a full expression). Implements -Wconversion
6190/// and -Wsign-compare.
John McCallacf0ee52010-10-08 02:01:28 +00006191///
6192/// \param CC the "context" location of the implicit conversion, i.e.
6193/// the most location of the syntactic entity requiring the implicit
6194/// conversion
6195void Sema::CheckImplicitConversions(Expr *E, SourceLocation CC) {
John McCallcc7e5bf2010-05-06 08:58:33 +00006196 // Don't diagnose in unevaluated contexts.
David Blaikie131fcb42012-08-06 22:47:24 +00006197 if (isUnevaluatedContext())
John McCallcc7e5bf2010-05-06 08:58:33 +00006198 return;
6199
6200 // Don't diagnose for value- or type-dependent expressions.
6201 if (E->isTypeDependent() || E->isValueDependent())
6202 return;
6203
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006204 // Check for array bounds violations in cases where the check isn't triggered
6205 // elsewhere for other Expr types (like BinaryOperators), e.g. when an
6206 // ArraySubscriptExpr is on the RHS of a variable initialization.
6207 CheckArrayAccess(E);
6208
John McCallacf0ee52010-10-08 02:01:28 +00006209 // This is not the right CC for (e.g.) a variable initialization.
6210 AnalyzeImplicitConversions(*this, E, CC);
John McCallcc7e5bf2010-05-06 08:58:33 +00006211}
6212
Fariborz Jahaniane735ff92013-01-24 22:11:45 +00006213/// Diagnose when expression is an integer constant expression and its evaluation
6214/// results in integer overflow
6215void Sema::CheckForIntOverflow (Expr *E) {
Richard Smithe9ff7702013-11-05 22:23:30 +00006216 if (isa<BinaryOperator>(E->IgnoreParens()))
6217 E->EvaluateForOverflow(Context);
Fariborz Jahaniane735ff92013-01-24 22:11:45 +00006218}
6219
Richard Smithc406cb72013-01-17 01:17:56 +00006220namespace {
6221/// \brief Visitor for expressions which looks for unsequenced operations on the
6222/// same object.
6223class SequenceChecker : public EvaluatedExprVisitor<SequenceChecker> {
Richard Smithe3dbfe02013-06-30 10:40:20 +00006224 typedef EvaluatedExprVisitor<SequenceChecker> Base;
6225
Richard Smithc406cb72013-01-17 01:17:56 +00006226 /// \brief A tree of sequenced regions within an expression. Two regions are
6227 /// unsequenced if one is an ancestor or a descendent of the other. When we
6228 /// finish processing an expression with sequencing, such as a comma
6229 /// expression, we fold its tree nodes into its parent, since they are
6230 /// unsequenced with respect to nodes we will visit later.
6231 class SequenceTree {
6232 struct Value {
6233 explicit Value(unsigned Parent) : Parent(Parent), Merged(false) {}
6234 unsigned Parent : 31;
6235 bool Merged : 1;
6236 };
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006237 SmallVector<Value, 8> Values;
Richard Smithc406cb72013-01-17 01:17:56 +00006238
6239 public:
6240 /// \brief A region within an expression which may be sequenced with respect
6241 /// to some other region.
6242 class Seq {
6243 explicit Seq(unsigned N) : Index(N) {}
6244 unsigned Index;
6245 friend class SequenceTree;
6246 public:
6247 Seq() : Index(0) {}
6248 };
6249
6250 SequenceTree() { Values.push_back(Value(0)); }
6251 Seq root() const { return Seq(0); }
6252
6253 /// \brief Create a new sequence of operations, which is an unsequenced
6254 /// subset of \p Parent. This sequence of operations is sequenced with
6255 /// respect to other children of \p Parent.
6256 Seq allocate(Seq Parent) {
6257 Values.push_back(Value(Parent.Index));
6258 return Seq(Values.size() - 1);
6259 }
6260
6261 /// \brief Merge a sequence of operations into its parent.
6262 void merge(Seq S) {
6263 Values[S.Index].Merged = true;
6264 }
6265
6266 /// \brief Determine whether two operations are unsequenced. This operation
6267 /// is asymmetric: \p Cur should be the more recent sequence, and \p Old
6268 /// should have been merged into its parent as appropriate.
6269 bool isUnsequenced(Seq Cur, Seq Old) {
6270 unsigned C = representative(Cur.Index);
6271 unsigned Target = representative(Old.Index);
6272 while (C >= Target) {
6273 if (C == Target)
6274 return true;
6275 C = Values[C].Parent;
6276 }
6277 return false;
6278 }
6279
6280 private:
6281 /// \brief Pick a representative for a sequence.
6282 unsigned representative(unsigned K) {
6283 if (Values[K].Merged)
6284 // Perform path compression as we go.
6285 return Values[K].Parent = representative(Values[K].Parent);
6286 return K;
6287 }
6288 };
6289
6290 /// An object for which we can track unsequenced uses.
6291 typedef NamedDecl *Object;
6292
6293 /// Different flavors of object usage which we track. We only track the
6294 /// least-sequenced usage of each kind.
6295 enum UsageKind {
6296 /// A read of an object. Multiple unsequenced reads are OK.
6297 UK_Use,
6298 /// A modification of an object which is sequenced before the value
Richard Smith83e37bee2013-06-26 23:16:51 +00006299 /// computation of the expression, such as ++n in C++.
Richard Smithc406cb72013-01-17 01:17:56 +00006300 UK_ModAsValue,
6301 /// A modification of an object which is not sequenced before the value
6302 /// computation of the expression, such as n++.
6303 UK_ModAsSideEffect,
6304
6305 UK_Count = UK_ModAsSideEffect + 1
6306 };
6307
6308 struct Usage {
6309 Usage() : Use(0), Seq() {}
6310 Expr *Use;
6311 SequenceTree::Seq Seq;
6312 };
6313
6314 struct UsageInfo {
6315 UsageInfo() : Diagnosed(false) {}
6316 Usage Uses[UK_Count];
6317 /// Have we issued a diagnostic for this variable already?
6318 bool Diagnosed;
6319 };
6320 typedef llvm::SmallDenseMap<Object, UsageInfo, 16> UsageInfoMap;
6321
6322 Sema &SemaRef;
6323 /// Sequenced regions within the expression.
6324 SequenceTree Tree;
6325 /// Declaration modifications and references which we have seen.
6326 UsageInfoMap UsageMap;
6327 /// The region we are currently within.
6328 SequenceTree::Seq Region;
6329 /// Filled in with declarations which were modified as a side-effect
6330 /// (that is, post-increment operations).
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006331 SmallVectorImpl<std::pair<Object, Usage> > *ModAsSideEffect;
Richard Smithd33f5202013-01-17 23:18:09 +00006332 /// Expressions to check later. We defer checking these to reduce
6333 /// stack usage.
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006334 SmallVectorImpl<Expr *> &WorkList;
Richard Smithc406cb72013-01-17 01:17:56 +00006335
6336 /// RAII object wrapping the visitation of a sequenced subexpression of an
6337 /// expression. At the end of this process, the side-effects of the evaluation
6338 /// become sequenced with respect to the value computation of the result, so
6339 /// we downgrade any UK_ModAsSideEffect within the evaluation to
6340 /// UK_ModAsValue.
6341 struct SequencedSubexpression {
6342 SequencedSubexpression(SequenceChecker &Self)
6343 : Self(Self), OldModAsSideEffect(Self.ModAsSideEffect) {
6344 Self.ModAsSideEffect = &ModAsSideEffect;
6345 }
6346 ~SequencedSubexpression() {
6347 for (unsigned I = 0, E = ModAsSideEffect.size(); I != E; ++I) {
6348 UsageInfo &U = Self.UsageMap[ModAsSideEffect[I].first];
6349 U.Uses[UK_ModAsSideEffect] = ModAsSideEffect[I].second;
6350 Self.addUsage(U, ModAsSideEffect[I].first,
6351 ModAsSideEffect[I].second.Use, UK_ModAsValue);
6352 }
6353 Self.ModAsSideEffect = OldModAsSideEffect;
6354 }
6355
6356 SequenceChecker &Self;
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006357 SmallVector<std::pair<Object, Usage>, 4> ModAsSideEffect;
6358 SmallVectorImpl<std::pair<Object, Usage> > *OldModAsSideEffect;
Richard Smithc406cb72013-01-17 01:17:56 +00006359 };
6360
Richard Smith40238f02013-06-20 22:21:56 +00006361 /// RAII object wrapping the visitation of a subexpression which we might
6362 /// choose to evaluate as a constant. If any subexpression is evaluated and
6363 /// found to be non-constant, this allows us to suppress the evaluation of
6364 /// the outer expression.
6365 class EvaluationTracker {
6366 public:
6367 EvaluationTracker(SequenceChecker &Self)
6368 : Self(Self), Prev(Self.EvalTracker), EvalOK(true) {
6369 Self.EvalTracker = this;
6370 }
6371 ~EvaluationTracker() {
6372 Self.EvalTracker = Prev;
6373 if (Prev)
6374 Prev->EvalOK &= EvalOK;
6375 }
6376
6377 bool evaluate(const Expr *E, bool &Result) {
6378 if (!EvalOK || E->isValueDependent())
6379 return false;
6380 EvalOK = E->EvaluateAsBooleanCondition(Result, Self.SemaRef.Context);
6381 return EvalOK;
6382 }
6383
6384 private:
6385 SequenceChecker &Self;
6386 EvaluationTracker *Prev;
6387 bool EvalOK;
6388 } *EvalTracker;
6389
Richard Smithc406cb72013-01-17 01:17:56 +00006390 /// \brief Find the object which is produced by the specified expression,
6391 /// if any.
6392 Object getObject(Expr *E, bool Mod) const {
6393 E = E->IgnoreParenCasts();
6394 if (UnaryOperator *UO = dyn_cast<UnaryOperator>(E)) {
6395 if (Mod && (UO->getOpcode() == UO_PreInc || UO->getOpcode() == UO_PreDec))
6396 return getObject(UO->getSubExpr(), Mod);
6397 } else if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
6398 if (BO->getOpcode() == BO_Comma)
6399 return getObject(BO->getRHS(), Mod);
6400 if (Mod && BO->isAssignmentOp())
6401 return getObject(BO->getLHS(), Mod);
6402 } else if (MemberExpr *ME = dyn_cast<MemberExpr>(E)) {
6403 // FIXME: Check for more interesting cases, like "x.n = ++x.n".
6404 if (isa<CXXThisExpr>(ME->getBase()->IgnoreParenCasts()))
6405 return ME->getMemberDecl();
6406 } else if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E))
6407 // FIXME: If this is a reference, map through to its value.
6408 return DRE->getDecl();
6409 return 0;
6410 }
6411
6412 /// \brief Note that an object was modified or used by an expression.
6413 void addUsage(UsageInfo &UI, Object O, Expr *Ref, UsageKind UK) {
6414 Usage &U = UI.Uses[UK];
6415 if (!U.Use || !Tree.isUnsequenced(Region, U.Seq)) {
6416 if (UK == UK_ModAsSideEffect && ModAsSideEffect)
6417 ModAsSideEffect->push_back(std::make_pair(O, U));
6418 U.Use = Ref;
6419 U.Seq = Region;
6420 }
6421 }
6422 /// \brief Check whether a modification or use conflicts with a prior usage.
6423 void checkUsage(Object O, UsageInfo &UI, Expr *Ref, UsageKind OtherKind,
6424 bool IsModMod) {
6425 if (UI.Diagnosed)
6426 return;
6427
6428 const Usage &U = UI.Uses[OtherKind];
6429 if (!U.Use || !Tree.isUnsequenced(Region, U.Seq))
6430 return;
6431
6432 Expr *Mod = U.Use;
6433 Expr *ModOrUse = Ref;
6434 if (OtherKind == UK_Use)
6435 std::swap(Mod, ModOrUse);
6436
6437 SemaRef.Diag(Mod->getExprLoc(),
6438 IsModMod ? diag::warn_unsequenced_mod_mod
6439 : diag::warn_unsequenced_mod_use)
6440 << O << SourceRange(ModOrUse->getExprLoc());
6441 UI.Diagnosed = true;
6442 }
6443
6444 void notePreUse(Object O, Expr *Use) {
6445 UsageInfo &U = UsageMap[O];
6446 // Uses conflict with other modifications.
6447 checkUsage(O, U, Use, UK_ModAsValue, false);
6448 }
6449 void notePostUse(Object O, Expr *Use) {
6450 UsageInfo &U = UsageMap[O];
6451 checkUsage(O, U, Use, UK_ModAsSideEffect, false);
6452 addUsage(U, O, Use, UK_Use);
6453 }
6454
6455 void notePreMod(Object O, Expr *Mod) {
6456 UsageInfo &U = UsageMap[O];
6457 // Modifications conflict with other modifications and with uses.
6458 checkUsage(O, U, Mod, UK_ModAsValue, true);
6459 checkUsage(O, U, Mod, UK_Use, false);
6460 }
6461 void notePostMod(Object O, Expr *Use, UsageKind UK) {
6462 UsageInfo &U = UsageMap[O];
6463 checkUsage(O, U, Use, UK_ModAsSideEffect, true);
6464 addUsage(U, O, Use, UK);
6465 }
6466
6467public:
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006468 SequenceChecker(Sema &S, Expr *E, SmallVectorImpl<Expr *> &WorkList)
6469 : Base(S.Context), SemaRef(S), Region(Tree.root()), ModAsSideEffect(0),
6470 WorkList(WorkList), EvalTracker(0) {
Richard Smithc406cb72013-01-17 01:17:56 +00006471 Visit(E);
6472 }
6473
6474 void VisitStmt(Stmt *S) {
6475 // Skip all statements which aren't expressions for now.
6476 }
6477
6478 void VisitExpr(Expr *E) {
6479 // By default, just recurse to evaluated subexpressions.
Richard Smithe3dbfe02013-06-30 10:40:20 +00006480 Base::VisitStmt(E);
Richard Smithc406cb72013-01-17 01:17:56 +00006481 }
6482
6483 void VisitCastExpr(CastExpr *E) {
6484 Object O = Object();
6485 if (E->getCastKind() == CK_LValueToRValue)
6486 O = getObject(E->getSubExpr(), false);
6487
6488 if (O)
6489 notePreUse(O, E);
6490 VisitExpr(E);
6491 if (O)
6492 notePostUse(O, E);
6493 }
6494
6495 void VisitBinComma(BinaryOperator *BO) {
6496 // C++11 [expr.comma]p1:
6497 // Every value computation and side effect associated with the left
6498 // expression is sequenced before every value computation and side
6499 // effect associated with the right expression.
6500 SequenceTree::Seq LHS = Tree.allocate(Region);
6501 SequenceTree::Seq RHS = Tree.allocate(Region);
6502 SequenceTree::Seq OldRegion = Region;
6503
6504 {
6505 SequencedSubexpression SeqLHS(*this);
6506 Region = LHS;
6507 Visit(BO->getLHS());
6508 }
6509
6510 Region = RHS;
6511 Visit(BO->getRHS());
6512
6513 Region = OldRegion;
6514
6515 // Forget that LHS and RHS are sequenced. They are both unsequenced
6516 // with respect to other stuff.
6517 Tree.merge(LHS);
6518 Tree.merge(RHS);
6519 }
6520
6521 void VisitBinAssign(BinaryOperator *BO) {
6522 // The modification is sequenced after the value computation of the LHS
6523 // and RHS, so check it before inspecting the operands and update the
6524 // map afterwards.
6525 Object O = getObject(BO->getLHS(), true);
6526 if (!O)
6527 return VisitExpr(BO);
6528
6529 notePreMod(O, BO);
6530
6531 // C++11 [expr.ass]p7:
6532 // E1 op= E2 is equivalent to E1 = E1 op E2, except that E1 is evaluated
6533 // only once.
6534 //
6535 // Therefore, for a compound assignment operator, O is considered used
6536 // everywhere except within the evaluation of E1 itself.
6537 if (isa<CompoundAssignOperator>(BO))
6538 notePreUse(O, BO);
6539
6540 Visit(BO->getLHS());
6541
6542 if (isa<CompoundAssignOperator>(BO))
6543 notePostUse(O, BO);
6544
6545 Visit(BO->getRHS());
6546
Richard Smith83e37bee2013-06-26 23:16:51 +00006547 // C++11 [expr.ass]p1:
6548 // the assignment is sequenced [...] before the value computation of the
6549 // assignment expression.
6550 // C11 6.5.16/3 has no such rule.
6551 notePostMod(O, BO, SemaRef.getLangOpts().CPlusPlus ? UK_ModAsValue
6552 : UK_ModAsSideEffect);
Richard Smithc406cb72013-01-17 01:17:56 +00006553 }
6554 void VisitCompoundAssignOperator(CompoundAssignOperator *CAO) {
6555 VisitBinAssign(CAO);
6556 }
6557
6558 void VisitUnaryPreInc(UnaryOperator *UO) { VisitUnaryPreIncDec(UO); }
6559 void VisitUnaryPreDec(UnaryOperator *UO) { VisitUnaryPreIncDec(UO); }
6560 void VisitUnaryPreIncDec(UnaryOperator *UO) {
6561 Object O = getObject(UO->getSubExpr(), true);
6562 if (!O)
6563 return VisitExpr(UO);
6564
6565 notePreMod(O, UO);
6566 Visit(UO->getSubExpr());
Richard Smith83e37bee2013-06-26 23:16:51 +00006567 // C++11 [expr.pre.incr]p1:
6568 // the expression ++x is equivalent to x+=1
6569 notePostMod(O, UO, SemaRef.getLangOpts().CPlusPlus ? UK_ModAsValue
6570 : UK_ModAsSideEffect);
Richard Smithc406cb72013-01-17 01:17:56 +00006571 }
6572
6573 void VisitUnaryPostInc(UnaryOperator *UO) { VisitUnaryPostIncDec(UO); }
6574 void VisitUnaryPostDec(UnaryOperator *UO) { VisitUnaryPostIncDec(UO); }
6575 void VisitUnaryPostIncDec(UnaryOperator *UO) {
6576 Object O = getObject(UO->getSubExpr(), true);
6577 if (!O)
6578 return VisitExpr(UO);
6579
6580 notePreMod(O, UO);
6581 Visit(UO->getSubExpr());
6582 notePostMod(O, UO, UK_ModAsSideEffect);
6583 }
6584
6585 /// Don't visit the RHS of '&&' or '||' if it might not be evaluated.
6586 void VisitBinLOr(BinaryOperator *BO) {
6587 // The side-effects of the LHS of an '&&' are sequenced before the
6588 // value computation of the RHS, and hence before the value computation
6589 // of the '&&' itself, unless the LHS evaluates to zero. We treat them
6590 // as if they were unconditionally sequenced.
Richard Smith40238f02013-06-20 22:21:56 +00006591 EvaluationTracker Eval(*this);
Richard Smithc406cb72013-01-17 01:17:56 +00006592 {
6593 SequencedSubexpression Sequenced(*this);
6594 Visit(BO->getLHS());
6595 }
6596
6597 bool Result;
Richard Smith40238f02013-06-20 22:21:56 +00006598 if (Eval.evaluate(BO->getLHS(), Result)) {
Richard Smith01a7fba2013-01-17 22:06:26 +00006599 if (!Result)
6600 Visit(BO->getRHS());
6601 } else {
6602 // Check for unsequenced operations in the RHS, treating it as an
6603 // entirely separate evaluation.
6604 //
6605 // FIXME: If there are operations in the RHS which are unsequenced
6606 // with respect to operations outside the RHS, and those operations
6607 // are unconditionally evaluated, diagnose them.
Richard Smithd33f5202013-01-17 23:18:09 +00006608 WorkList.push_back(BO->getRHS());
Richard Smith01a7fba2013-01-17 22:06:26 +00006609 }
Richard Smithc406cb72013-01-17 01:17:56 +00006610 }
6611 void VisitBinLAnd(BinaryOperator *BO) {
Richard Smith40238f02013-06-20 22:21:56 +00006612 EvaluationTracker Eval(*this);
Richard Smithc406cb72013-01-17 01:17:56 +00006613 {
6614 SequencedSubexpression Sequenced(*this);
6615 Visit(BO->getLHS());
6616 }
6617
6618 bool Result;
Richard Smith40238f02013-06-20 22:21:56 +00006619 if (Eval.evaluate(BO->getLHS(), Result)) {
Richard Smith01a7fba2013-01-17 22:06:26 +00006620 if (Result)
6621 Visit(BO->getRHS());
6622 } else {
Richard Smithd33f5202013-01-17 23:18:09 +00006623 WorkList.push_back(BO->getRHS());
Richard Smith01a7fba2013-01-17 22:06:26 +00006624 }
Richard Smithc406cb72013-01-17 01:17:56 +00006625 }
6626
6627 // Only visit the condition, unless we can be sure which subexpression will
6628 // be chosen.
6629 void VisitAbstractConditionalOperator(AbstractConditionalOperator *CO) {
Richard Smith40238f02013-06-20 22:21:56 +00006630 EvaluationTracker Eval(*this);
Richard Smith83e37bee2013-06-26 23:16:51 +00006631 {
6632 SequencedSubexpression Sequenced(*this);
6633 Visit(CO->getCond());
6634 }
Richard Smithc406cb72013-01-17 01:17:56 +00006635
6636 bool Result;
Richard Smith40238f02013-06-20 22:21:56 +00006637 if (Eval.evaluate(CO->getCond(), Result))
Richard Smithc406cb72013-01-17 01:17:56 +00006638 Visit(Result ? CO->getTrueExpr() : CO->getFalseExpr());
Richard Smith01a7fba2013-01-17 22:06:26 +00006639 else {
Richard Smithd33f5202013-01-17 23:18:09 +00006640 WorkList.push_back(CO->getTrueExpr());
6641 WorkList.push_back(CO->getFalseExpr());
Richard Smith01a7fba2013-01-17 22:06:26 +00006642 }
Richard Smithc406cb72013-01-17 01:17:56 +00006643 }
6644
Richard Smithe3dbfe02013-06-30 10:40:20 +00006645 void VisitCallExpr(CallExpr *CE) {
6646 // C++11 [intro.execution]p15:
6647 // When calling a function [...], every value computation and side effect
6648 // associated with any argument expression, or with the postfix expression
6649 // designating the called function, is sequenced before execution of every
6650 // expression or statement in the body of the function [and thus before
6651 // the value computation of its result].
6652 SequencedSubexpression Sequenced(*this);
6653 Base::VisitCallExpr(CE);
6654
6655 // FIXME: CXXNewExpr and CXXDeleteExpr implicitly call functions.
6656 }
6657
Richard Smithc406cb72013-01-17 01:17:56 +00006658 void VisitCXXConstructExpr(CXXConstructExpr *CCE) {
Richard Smithe3dbfe02013-06-30 10:40:20 +00006659 // This is a call, so all subexpressions are sequenced before the result.
6660 SequencedSubexpression Sequenced(*this);
6661
Richard Smithc406cb72013-01-17 01:17:56 +00006662 if (!CCE->isListInitialization())
6663 return VisitExpr(CCE);
6664
6665 // In C++11, list initializations are sequenced.
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006666 SmallVector<SequenceTree::Seq, 32> Elts;
Richard Smithc406cb72013-01-17 01:17:56 +00006667 SequenceTree::Seq Parent = Region;
6668 for (CXXConstructExpr::arg_iterator I = CCE->arg_begin(),
6669 E = CCE->arg_end();
6670 I != E; ++I) {
6671 Region = Tree.allocate(Parent);
6672 Elts.push_back(Region);
6673 Visit(*I);
6674 }
6675
6676 // Forget that the initializers are sequenced.
6677 Region = Parent;
6678 for (unsigned I = 0; I < Elts.size(); ++I)
6679 Tree.merge(Elts[I]);
6680 }
6681
6682 void VisitInitListExpr(InitListExpr *ILE) {
6683 if (!SemaRef.getLangOpts().CPlusPlus11)
6684 return VisitExpr(ILE);
6685
6686 // In C++11, list initializations are sequenced.
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006687 SmallVector<SequenceTree::Seq, 32> Elts;
Richard Smithc406cb72013-01-17 01:17:56 +00006688 SequenceTree::Seq Parent = Region;
6689 for (unsigned I = 0; I < ILE->getNumInits(); ++I) {
6690 Expr *E = ILE->getInit(I);
6691 if (!E) continue;
6692 Region = Tree.allocate(Parent);
6693 Elts.push_back(Region);
6694 Visit(E);
6695 }
6696
6697 // Forget that the initializers are sequenced.
6698 Region = Parent;
6699 for (unsigned I = 0; I < Elts.size(); ++I)
6700 Tree.merge(Elts[I]);
6701 }
6702};
6703}
6704
6705void Sema::CheckUnsequencedOperations(Expr *E) {
Robert Wilhelmb869a8f2013-08-10 12:33:24 +00006706 SmallVector<Expr *, 8> WorkList;
Richard Smithd33f5202013-01-17 23:18:09 +00006707 WorkList.push_back(E);
6708 while (!WorkList.empty()) {
Robert Wilhelm25284cc2013-08-23 16:11:15 +00006709 Expr *Item = WorkList.pop_back_val();
Richard Smithd33f5202013-01-17 23:18:09 +00006710 SequenceChecker(*this, Item, WorkList);
6711 }
Richard Smithc406cb72013-01-17 01:17:56 +00006712}
6713
Fariborz Jahaniane735ff92013-01-24 22:11:45 +00006714void Sema::CheckCompletedExpr(Expr *E, SourceLocation CheckLoc,
6715 bool IsConstexpr) {
Richard Smithc406cb72013-01-17 01:17:56 +00006716 CheckImplicitConversions(E, CheckLoc);
6717 CheckUnsequencedOperations(E);
Fariborz Jahaniane735ff92013-01-24 22:11:45 +00006718 if (!IsConstexpr && !E->isValueDependent())
6719 CheckForIntOverflow(E);
Richard Smithc406cb72013-01-17 01:17:56 +00006720}
6721
John McCall1f425642010-11-11 03:21:53 +00006722void Sema::CheckBitFieldInitialization(SourceLocation InitLoc,
6723 FieldDecl *BitField,
6724 Expr *Init) {
6725 (void) AnalyzeBitFieldAssignment(*this, BitField, Init, InitLoc);
6726}
6727
Mike Stump0c2ec772010-01-21 03:59:47 +00006728/// CheckParmsForFunctionDef - Check that the parameters of the given
6729/// function are appropriate for the definition of a function. This
6730/// takes care of any checks that cannot be performed on the
6731/// declaration itself, e.g., that the types of each of the function
6732/// parameters are complete.
Reid Kleckner5a115802013-06-24 14:38:26 +00006733bool Sema::CheckParmsForFunctionDef(ParmVarDecl *const *P,
6734 ParmVarDecl *const *PEnd,
Douglas Gregorb524d902010-11-01 18:37:59 +00006735 bool CheckParameterNames) {
Mike Stump0c2ec772010-01-21 03:59:47 +00006736 bool HasInvalidParm = false;
Douglas Gregorb524d902010-11-01 18:37:59 +00006737 for (; P != PEnd; ++P) {
6738 ParmVarDecl *Param = *P;
6739
Mike Stump0c2ec772010-01-21 03:59:47 +00006740 // C99 6.7.5.3p4: the parameters in a parameter type list in a
6741 // function declarator that is part of a function definition of
6742 // that function shall not have incomplete type.
6743 //
6744 // This is also C++ [dcl.fct]p6.
6745 if (!Param->isInvalidDecl() &&
6746 RequireCompleteType(Param->getLocation(), Param->getType(),
Douglas Gregor7bfb2d02012-05-04 16:32:21 +00006747 diag::err_typecheck_decl_incomplete_type)) {
Mike Stump0c2ec772010-01-21 03:59:47 +00006748 Param->setInvalidDecl();
6749 HasInvalidParm = true;
6750 }
6751
6752 // C99 6.9.1p5: If the declarator includes a parameter type list, the
6753 // declaration of each parameter shall include an identifier.
Douglas Gregorb524d902010-11-01 18:37:59 +00006754 if (CheckParameterNames &&
6755 Param->getIdentifier() == 0 &&
Mike Stump0c2ec772010-01-21 03:59:47 +00006756 !Param->isImplicit() &&
David Blaikiebbafb8a2012-03-11 07:00:24 +00006757 !getLangOpts().CPlusPlus)
Mike Stump0c2ec772010-01-21 03:59:47 +00006758 Diag(Param->getLocation(), diag::err_parameter_name_omitted);
Sam Weinigdeb55d52010-02-01 05:02:49 +00006759
6760 // C99 6.7.5.3p12:
6761 // If the function declarator is not part of a definition of that
6762 // function, parameters may have incomplete type and may use the [*]
6763 // notation in their sequences of declarator specifiers to specify
6764 // variable length array types.
6765 QualType PType = Param->getOriginalType();
Fariborz Jahanian4289a5a2013-04-29 22:01:25 +00006766 while (const ArrayType *AT = Context.getAsArrayType(PType)) {
Sam Weinigdeb55d52010-02-01 05:02:49 +00006767 if (AT->getSizeModifier() == ArrayType::Star) {
Stefanus Du Toitb3318502013-03-01 21:41:22 +00006768 // FIXME: This diagnostic should point the '[*]' if source-location
Sam Weinigdeb55d52010-02-01 05:02:49 +00006769 // information is added for it.
6770 Diag(Param->getLocation(), diag::err_array_star_in_function_definition);
Fariborz Jahanian4289a5a2013-04-29 22:01:25 +00006771 break;
Sam Weinigdeb55d52010-02-01 05:02:49 +00006772 }
Fariborz Jahanian4289a5a2013-04-29 22:01:25 +00006773 PType= AT->getElementType();
Sam Weinigdeb55d52010-02-01 05:02:49 +00006774 }
Reid Kleckner23f4c4b2013-06-21 12:45:15 +00006775
6776 // MSVC destroys objects passed by value in the callee. Therefore a
6777 // function definition which takes such a parameter must be able to call the
Hans Wennborg0f3c10c2014-01-13 17:23:24 +00006778 // object's destructor. However, we don't perform any direct access check
6779 // on the dtor.
Reid Kleckner739756c2013-12-04 19:23:12 +00006780 if (getLangOpts().CPlusPlus && Context.getTargetInfo()
6781 .getCXXABI()
6782 .areArgsDestroyedLeftToRightInCallee()) {
Hans Wennborg13ac4bd2014-01-13 19:24:31 +00006783 if (!Param->isInvalidDecl()) {
6784 if (const RecordType *RT = Param->getType()->getAs<RecordType>()) {
6785 CXXRecordDecl *ClassDecl = cast<CXXRecordDecl>(RT->getDecl());
6786 if (!ClassDecl->isInvalidDecl() &&
6787 !ClassDecl->hasIrrelevantDestructor() &&
6788 !ClassDecl->isDependentContext()) {
6789 CXXDestructorDecl *Destructor = LookupDestructor(ClassDecl);
6790 MarkFunctionReferenced(Param->getLocation(), Destructor);
6791 DiagnoseUseOfDecl(Destructor, Param->getLocation());
6792 }
Hans Wennborg0f3c10c2014-01-13 17:23:24 +00006793 }
6794 }
Reid Kleckner23f4c4b2013-06-21 12:45:15 +00006795 }
Mike Stump0c2ec772010-01-21 03:59:47 +00006796 }
6797
6798 return HasInvalidParm;
6799}
John McCall2b5c1b22010-08-12 21:44:57 +00006800
6801/// CheckCastAlign - Implements -Wcast-align, which warns when a
6802/// pointer cast increases the alignment requirements.
6803void Sema::CheckCastAlign(Expr *Op, QualType T, SourceRange TRange) {
6804 // This is actually a lot of work to potentially be doing on every
6805 // cast; don't do it if we're ignoring -Wcast_align (as is the default).
Argyrios Kyrtzidis1cb0de12010-12-15 18:44:22 +00006806 if (getDiagnostics().getDiagnosticLevel(diag::warn_cast_align,
6807 TRange.getBegin())
David Blaikie9c902b52011-09-25 23:23:43 +00006808 == DiagnosticsEngine::Ignored)
John McCall2b5c1b22010-08-12 21:44:57 +00006809 return;
6810
6811 // Ignore dependent types.
6812 if (T->isDependentType() || Op->getType()->isDependentType())
6813 return;
6814
6815 // Require that the destination be a pointer type.
6816 const PointerType *DestPtr = T->getAs<PointerType>();
6817 if (!DestPtr) return;
6818
6819 // If the destination has alignment 1, we're done.
6820 QualType DestPointee = DestPtr->getPointeeType();
6821 if (DestPointee->isIncompleteType()) return;
6822 CharUnits DestAlign = Context.getTypeAlignInChars(DestPointee);
6823 if (DestAlign.isOne()) return;
6824
6825 // Require that the source be a pointer type.
6826 const PointerType *SrcPtr = Op->getType()->getAs<PointerType>();
6827 if (!SrcPtr) return;
6828 QualType SrcPointee = SrcPtr->getPointeeType();
6829
6830 // Whitelist casts from cv void*. We already implicitly
6831 // whitelisted casts to cv void*, since they have alignment 1.
6832 // Also whitelist casts involving incomplete types, which implicitly
6833 // includes 'void'.
6834 if (SrcPointee->isIncompleteType()) return;
6835
6836 CharUnits SrcAlign = Context.getTypeAlignInChars(SrcPointee);
6837 if (SrcAlign >= DestAlign) return;
6838
6839 Diag(TRange.getBegin(), diag::warn_cast_align)
6840 << Op->getType() << T
6841 << static_cast<unsigned>(SrcAlign.getQuantity())
6842 << static_cast<unsigned>(DestAlign.getQuantity())
6843 << TRange << Op->getSourceRange();
6844}
6845
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006846static const Type* getElementType(const Expr *BaseExpr) {
6847 const Type* EltType = BaseExpr->getType().getTypePtr();
6848 if (EltType->isAnyPointerType())
6849 return EltType->getPointeeType().getTypePtr();
6850 else if (EltType->isArrayType())
6851 return EltType->getBaseElementTypeUnsafe();
6852 return EltType;
6853}
6854
Chandler Carruth28389f02011-08-05 09:10:50 +00006855/// \brief Check whether this array fits the idiom of a size-one tail padded
6856/// array member of a struct.
6857///
6858/// We avoid emitting out-of-bounds access warnings for such arrays as they are
6859/// commonly used to emulate flexible arrays in C89 code.
6860static bool IsTailPaddedMemberArray(Sema &S, llvm::APInt Size,
6861 const NamedDecl *ND) {
6862 if (Size != 1 || !ND) return false;
6863
6864 const FieldDecl *FD = dyn_cast<FieldDecl>(ND);
6865 if (!FD) return false;
6866
6867 // Don't consider sizes resulting from macro expansions or template argument
6868 // substitution to form C89 tail-padded arrays.
Sean Callanan06a48a62012-05-04 18:22:53 +00006869
6870 TypeSourceInfo *TInfo = FD->getTypeSourceInfo();
Ted Kremenek7ebb4932012-05-09 05:35:08 +00006871 while (TInfo) {
6872 TypeLoc TL = TInfo->getTypeLoc();
6873 // Look through typedefs.
David Blaikie6adc78e2013-02-18 22:06:02 +00006874 if (TypedefTypeLoc TTL = TL.getAs<TypedefTypeLoc>()) {
6875 const TypedefNameDecl *TDL = TTL.getTypedefNameDecl();
Ted Kremenek7ebb4932012-05-09 05:35:08 +00006876 TInfo = TDL->getTypeSourceInfo();
6877 continue;
6878 }
David Blaikie6adc78e2013-02-18 22:06:02 +00006879 if (ConstantArrayTypeLoc CTL = TL.getAs<ConstantArrayTypeLoc>()) {
6880 const Expr *SizeExpr = dyn_cast<IntegerLiteral>(CTL.getSizeExpr());
Chad Rosier70299922013-02-06 00:58:34 +00006881 if (!SizeExpr || SizeExpr->getExprLoc().isMacroID())
6882 return false;
6883 }
Ted Kremenek7ebb4932012-05-09 05:35:08 +00006884 break;
Sean Callanan06a48a62012-05-04 18:22:53 +00006885 }
Chandler Carruth28389f02011-08-05 09:10:50 +00006886
6887 const RecordDecl *RD = dyn_cast<RecordDecl>(FD->getDeclContext());
Matt Beaumont-Gayc93b4892011-11-29 22:43:53 +00006888 if (!RD) return false;
6889 if (RD->isUnion()) return false;
6890 if (const CXXRecordDecl *CRD = dyn_cast<CXXRecordDecl>(RD)) {
6891 if (!CRD->isStandardLayout()) return false;
6892 }
Chandler Carruth28389f02011-08-05 09:10:50 +00006893
Benjamin Kramer8c543672011-08-06 03:04:42 +00006894 // See if this is the last field decl in the record.
6895 const Decl *D = FD;
6896 while ((D = D->getNextDeclInContext()))
6897 if (isa<FieldDecl>(D))
6898 return false;
6899 return true;
Chandler Carruth28389f02011-08-05 09:10:50 +00006900}
6901
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006902void Sema::CheckArrayAccess(const Expr *BaseExpr, const Expr *IndexExpr,
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006903 const ArraySubscriptExpr *ASE,
Richard Smith13f67182011-12-16 19:31:14 +00006904 bool AllowOnePastEnd, bool IndexNegated) {
Eli Friedman84e6e5c2012-02-27 21:21:40 +00006905 IndexExpr = IndexExpr->IgnoreParenImpCasts();
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006906 if (IndexExpr->isValueDependent())
6907 return;
6908
Matt Beaumont-Gay9d570c42011-12-12 22:35:02 +00006909 const Type *EffectiveType = getElementType(BaseExpr);
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006910 BaseExpr = BaseExpr->IgnoreParenCasts();
Chandler Carruth2a666fc2011-02-17 20:55:08 +00006911 const ConstantArrayType *ArrayTy =
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006912 Context.getAsConstantArrayType(BaseExpr->getType());
Chandler Carruth2a666fc2011-02-17 20:55:08 +00006913 if (!ArrayTy)
Ted Kremenek64699be2011-02-16 01:57:07 +00006914 return;
Chandler Carruth1af88f12011-02-17 21:10:52 +00006915
Chandler Carruth2a666fc2011-02-17 20:55:08 +00006916 llvm::APSInt index;
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006917 if (!IndexExpr->EvaluateAsInt(index, Context))
Ted Kremenek64699be2011-02-16 01:57:07 +00006918 return;
Richard Smith13f67182011-12-16 19:31:14 +00006919 if (IndexNegated)
6920 index = -index;
Ted Kremenek108b2d52011-02-16 04:01:44 +00006921
Chandler Carruth126b1552011-08-05 08:07:29 +00006922 const NamedDecl *ND = NULL;
Chandler Carruth126b1552011-08-05 08:07:29 +00006923 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(BaseExpr))
6924 ND = dyn_cast<NamedDecl>(DRE->getDecl());
Chandler Carruth28389f02011-08-05 09:10:50 +00006925 if (const MemberExpr *ME = dyn_cast<MemberExpr>(BaseExpr))
Chandler Carruth126b1552011-08-05 08:07:29 +00006926 ND = dyn_cast<NamedDecl>(ME->getMemberDecl());
Chandler Carruth126b1552011-08-05 08:07:29 +00006927
Ted Kremeneke4b316c2011-02-23 23:06:04 +00006928 if (index.isUnsigned() || !index.isNegative()) {
Ted Kremeneka7ced2c2011-02-18 02:27:00 +00006929 llvm::APInt size = ArrayTy->getSize();
Chandler Carruth1af88f12011-02-17 21:10:52 +00006930 if (!size.isStrictlyPositive())
6931 return;
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006932
6933 const Type* BaseType = getElementType(BaseExpr);
Nico Weber7c299802011-09-17 22:59:41 +00006934 if (BaseType != EffectiveType) {
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006935 // Make sure we're comparing apples to apples when comparing index to size
6936 uint64_t ptrarith_typesize = Context.getTypeSize(EffectiveType);
6937 uint64_t array_typesize = Context.getTypeSize(BaseType);
Kaelyn Uhrain0fb0bb12011-08-10 19:47:25 +00006938 // Handle ptrarith_typesize being zero, such as when casting to void*
Kaelyn Uhraine5353762011-08-10 18:49:28 +00006939 if (!ptrarith_typesize) ptrarith_typesize = 1;
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006940 if (ptrarith_typesize != array_typesize) {
6941 // There's a cast to a different size type involved
6942 uint64_t ratio = array_typesize / ptrarith_typesize;
6943 // TODO: Be smarter about handling cases where array_typesize is not a
6944 // multiple of ptrarith_typesize
6945 if (ptrarith_typesize * ratio == array_typesize)
6946 size *= llvm::APInt(size.getBitWidth(), ratio);
6947 }
6948 }
6949
Chandler Carruth2a666fc2011-02-17 20:55:08 +00006950 if (size.getBitWidth() > index.getBitWidth())
Eli Friedman84e6e5c2012-02-27 21:21:40 +00006951 index = index.zext(size.getBitWidth());
Ted Kremeneka7ced2c2011-02-18 02:27:00 +00006952 else if (size.getBitWidth() < index.getBitWidth())
Eli Friedman84e6e5c2012-02-27 21:21:40 +00006953 size = size.zext(index.getBitWidth());
Ted Kremeneka7ced2c2011-02-18 02:27:00 +00006954
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006955 // For array subscripting the index must be less than size, but for pointer
6956 // arithmetic also allow the index (offset) to be equal to size since
6957 // computing the next address after the end of the array is legal and
6958 // commonly done e.g. in C++ iterators and range-based for loops.
Eli Friedman84e6e5c2012-02-27 21:21:40 +00006959 if (AllowOnePastEnd ? index.ule(size) : index.ult(size))
Chandler Carruth126b1552011-08-05 08:07:29 +00006960 return;
6961
6962 // Also don't warn for arrays of size 1 which are members of some
6963 // structure. These are often used to approximate flexible arrays in C89
6964 // code.
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006965 if (IsTailPaddedMemberArray(*this, size, ND))
Ted Kremenek108b2d52011-02-16 04:01:44 +00006966 return;
Chandler Carruth2a666fc2011-02-17 20:55:08 +00006967
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006968 // Suppress the warning if the subscript expression (as identified by the
6969 // ']' location) and the index expression are both from macro expansions
6970 // within a system header.
6971 if (ASE) {
6972 SourceLocation RBracketLoc = SourceMgr.getSpellingLoc(
6973 ASE->getRBracketLoc());
6974 if (SourceMgr.isInSystemHeader(RBracketLoc)) {
6975 SourceLocation IndexLoc = SourceMgr.getSpellingLoc(
6976 IndexExpr->getLocStart());
Eli Friedman5ba37d52013-08-22 00:27:10 +00006977 if (SourceMgr.isWrittenInSameFile(RBracketLoc, IndexLoc))
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006978 return;
6979 }
6980 }
6981
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006982 unsigned DiagID = diag::warn_ptr_arith_exceeds_bounds;
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006983 if (ASE)
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006984 DiagID = diag::warn_array_index_exceeds_bounds;
6985
6986 DiagRuntimeBehavior(BaseExpr->getLocStart(), BaseExpr,
6987 PDiag(DiagID) << index.toString(10, true)
6988 << size.toString(10, true)
6989 << (unsigned)size.getLimitedValue(~0U)
6990 << IndexExpr->getSourceRange());
Chandler Carruth2a666fc2011-02-17 20:55:08 +00006991 } else {
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006992 unsigned DiagID = diag::warn_array_index_precedes_bounds;
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00006993 if (!ASE) {
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00006994 DiagID = diag::warn_ptr_arith_precedes_bounds;
6995 if (index.isNegative()) index = -index;
6996 }
6997
6998 DiagRuntimeBehavior(BaseExpr->getLocStart(), BaseExpr,
6999 PDiag(DiagID) << index.toString(10, true)
7000 << IndexExpr->getSourceRange());
Ted Kremenek64699be2011-02-16 01:57:07 +00007001 }
Chandler Carruth1af88f12011-02-17 21:10:52 +00007002
Matt Beaumont-Gayb2339822011-11-29 19:27:11 +00007003 if (!ND) {
7004 // Try harder to find a NamedDecl to point at in the note.
7005 while (const ArraySubscriptExpr *ASE =
7006 dyn_cast<ArraySubscriptExpr>(BaseExpr))
7007 BaseExpr = ASE->getBase()->IgnoreParenCasts();
7008 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(BaseExpr))
7009 ND = dyn_cast<NamedDecl>(DRE->getDecl());
7010 if (const MemberExpr *ME = dyn_cast<MemberExpr>(BaseExpr))
7011 ND = dyn_cast<NamedDecl>(ME->getMemberDecl());
7012 }
7013
Chandler Carruth1af88f12011-02-17 21:10:52 +00007014 if (ND)
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00007015 DiagRuntimeBehavior(ND->getLocStart(), BaseExpr,
7016 PDiag(diag::note_array_index_out_of_bounds)
7017 << ND->getDeclName());
Ted Kremenek64699be2011-02-16 01:57:07 +00007018}
7019
Ted Kremenekdf26df72011-03-01 18:41:00 +00007020void Sema::CheckArrayAccess(const Expr *expr) {
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00007021 int AllowOnePastEnd = 0;
7022 while (expr) {
7023 expr = expr->IgnoreParenImpCasts();
Ted Kremenekdf26df72011-03-01 18:41:00 +00007024 switch (expr->getStmtClass()) {
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00007025 case Stmt::ArraySubscriptExprClass: {
7026 const ArraySubscriptExpr *ASE = cast<ArraySubscriptExpr>(expr);
Matt Beaumont-Gay5533a552011-12-14 16:02:15 +00007027 CheckArrayAccess(ASE->getBase(), ASE->getIdx(), ASE,
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00007028 AllowOnePastEnd > 0);
Ted Kremenekdf26df72011-03-01 18:41:00 +00007029 return;
Kaelyn Uhrain2e7aa5a2011-08-05 23:18:04 +00007030 }
7031 case Stmt::UnaryOperatorClass: {
7032 // Only unwrap the * and & unary operators
7033 const UnaryOperator *UO = cast<UnaryOperator>(expr);
7034 expr = UO->getSubExpr();
7035 switch (UO->getOpcode()) {
7036 case UO_AddrOf:
7037 AllowOnePastEnd++;
7038 break;
7039 case UO_Deref:
7040 AllowOnePastEnd--;
7041 break;
7042 default:
7043 return;
7044 }
7045 break;
7046 }
Ted Kremenekdf26df72011-03-01 18:41:00 +00007047 case Stmt::ConditionalOperatorClass: {
7048 const ConditionalOperator *cond = cast<ConditionalOperator>(expr);
7049 if (const Expr *lhs = cond->getLHS())
7050 CheckArrayAccess(lhs);
7051 if (const Expr *rhs = cond->getRHS())
7052 CheckArrayAccess(rhs);
7053 return;
7054 }
7055 default:
7056 return;
7057 }
Peter Collingbourne91147592011-04-15 00:35:48 +00007058 }
Ted Kremenekdf26df72011-03-01 18:41:00 +00007059}
John McCall31168b02011-06-15 23:02:42 +00007060
7061//===--- CHECK: Objective-C retain cycles ----------------------------------//
7062
7063namespace {
7064 struct RetainCycleOwner {
7065 RetainCycleOwner() : Variable(0), Indirect(false) {}
7066 VarDecl *Variable;
7067 SourceRange Range;
7068 SourceLocation Loc;
7069 bool Indirect;
7070
7071 void setLocsFrom(Expr *e) {
7072 Loc = e->getExprLoc();
7073 Range = e->getSourceRange();
7074 }
7075 };
7076}
7077
7078/// Consider whether capturing the given variable can possibly lead to
7079/// a retain cycle.
7080static bool considerVariable(VarDecl *var, Expr *ref, RetainCycleOwner &owner) {
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +00007081 // In ARC, it's captured strongly iff the variable has __strong
John McCall31168b02011-06-15 23:02:42 +00007082 // lifetime. In MRR, it's captured strongly if the variable is
7083 // __block and has an appropriate type.
7084 if (var->getType().getObjCLifetime() != Qualifiers::OCL_Strong)
7085 return false;
7086
7087 owner.Variable = var;
Jordan Rosefa9e4ba2012-09-15 02:48:31 +00007088 if (ref)
7089 owner.setLocsFrom(ref);
John McCall31168b02011-06-15 23:02:42 +00007090 return true;
7091}
7092
Fariborz Jahanianedbc3452012-01-10 19:28:26 +00007093static bool findRetainCycleOwner(Sema &S, Expr *e, RetainCycleOwner &owner) {
John McCall31168b02011-06-15 23:02:42 +00007094 while (true) {
7095 e = e->IgnoreParens();
7096 if (CastExpr *cast = dyn_cast<CastExpr>(e)) {
7097 switch (cast->getCastKind()) {
7098 case CK_BitCast:
7099 case CK_LValueBitCast:
7100 case CK_LValueToRValue:
John McCall2d637d22011-09-10 06:18:15 +00007101 case CK_ARCReclaimReturnedObject:
John McCall31168b02011-06-15 23:02:42 +00007102 e = cast->getSubExpr();
7103 continue;
7104
John McCall31168b02011-06-15 23:02:42 +00007105 default:
7106 return false;
7107 }
7108 }
7109
7110 if (ObjCIvarRefExpr *ref = dyn_cast<ObjCIvarRefExpr>(e)) {
7111 ObjCIvarDecl *ivar = ref->getDecl();
7112 if (ivar->getType().getObjCLifetime() != Qualifiers::OCL_Strong)
7113 return false;
7114
7115 // Try to find a retain cycle in the base.
Fariborz Jahanianedbc3452012-01-10 19:28:26 +00007116 if (!findRetainCycleOwner(S, ref->getBase(), owner))
John McCall31168b02011-06-15 23:02:42 +00007117 return false;
7118
7119 if (ref->isFreeIvar()) owner.setLocsFrom(ref);
7120 owner.Indirect = true;
7121 return true;
7122 }
7123
7124 if (DeclRefExpr *ref = dyn_cast<DeclRefExpr>(e)) {
7125 VarDecl *var = dyn_cast<VarDecl>(ref->getDecl());
7126 if (!var) return false;
7127 return considerVariable(var, ref, owner);
7128 }
7129
John McCall31168b02011-06-15 23:02:42 +00007130 if (MemberExpr *member = dyn_cast<MemberExpr>(e)) {
7131 if (member->isArrow()) return false;
7132
7133 // Don't count this as an indirect ownership.
7134 e = member->getBase();
7135 continue;
7136 }
7137
John McCallfe96e0b2011-11-06 09:01:30 +00007138 if (PseudoObjectExpr *pseudo = dyn_cast<PseudoObjectExpr>(e)) {
7139 // Only pay attention to pseudo-objects on property references.
7140 ObjCPropertyRefExpr *pre
7141 = dyn_cast<ObjCPropertyRefExpr>(pseudo->getSyntacticForm()
7142 ->IgnoreParens());
7143 if (!pre) return false;
7144 if (pre->isImplicitProperty()) return false;
7145 ObjCPropertyDecl *property = pre->getExplicitProperty();
7146 if (!property->isRetaining() &&
7147 !(property->getPropertyIvarDecl() &&
7148 property->getPropertyIvarDecl()->getType()
7149 .getObjCLifetime() == Qualifiers::OCL_Strong))
7150 return false;
7151
7152 owner.Indirect = true;
Fariborz Jahanianedbc3452012-01-10 19:28:26 +00007153 if (pre->isSuperReceiver()) {
7154 owner.Variable = S.getCurMethodDecl()->getSelfDecl();
7155 if (!owner.Variable)
7156 return false;
7157 owner.Loc = pre->getLocation();
7158 owner.Range = pre->getSourceRange();
7159 return true;
7160 }
John McCallfe96e0b2011-11-06 09:01:30 +00007161 e = const_cast<Expr*>(cast<OpaqueValueExpr>(pre->getBase())
7162 ->getSourceExpr());
7163 continue;
7164 }
7165
John McCall31168b02011-06-15 23:02:42 +00007166 // Array ivars?
7167
7168 return false;
7169 }
7170}
7171
7172namespace {
7173 struct FindCaptureVisitor : EvaluatedExprVisitor<FindCaptureVisitor> {
7174 FindCaptureVisitor(ASTContext &Context, VarDecl *variable)
7175 : EvaluatedExprVisitor<FindCaptureVisitor>(Context),
7176 Variable(variable), Capturer(0) {}
7177
7178 VarDecl *Variable;
7179 Expr *Capturer;
7180
7181 void VisitDeclRefExpr(DeclRefExpr *ref) {
7182 if (ref->getDecl() == Variable && !Capturer)
7183 Capturer = ref;
7184 }
7185
John McCall31168b02011-06-15 23:02:42 +00007186 void VisitObjCIvarRefExpr(ObjCIvarRefExpr *ref) {
7187 if (Capturer) return;
7188 Visit(ref->getBase());
7189 if (Capturer && ref->isFreeIvar())
7190 Capturer = ref;
7191 }
7192
7193 void VisitBlockExpr(BlockExpr *block) {
7194 // Look inside nested blocks
7195 if (block->getBlockDecl()->capturesVariable(Variable))
7196 Visit(block->getBlockDecl()->getBody());
7197 }
Fariborz Jahanian0e337542012-08-31 20:04:47 +00007198
7199 void VisitOpaqueValueExpr(OpaqueValueExpr *OVE) {
7200 if (Capturer) return;
7201 if (OVE->getSourceExpr())
7202 Visit(OVE->getSourceExpr());
7203 }
John McCall31168b02011-06-15 23:02:42 +00007204 };
7205}
7206
7207/// Check whether the given argument is a block which captures a
7208/// variable.
7209static Expr *findCapturingExpr(Sema &S, Expr *e, RetainCycleOwner &owner) {
7210 assert(owner.Variable && owner.Loc.isValid());
7211
7212 e = e->IgnoreParenCasts();
Jordan Rose67e887c2012-09-17 17:54:30 +00007213
7214 // Look through [^{...} copy] and Block_copy(^{...}).
7215 if (ObjCMessageExpr *ME = dyn_cast<ObjCMessageExpr>(e)) {
7216 Selector Cmd = ME->getSelector();
7217 if (Cmd.isUnarySelector() && Cmd.getNameForSlot(0) == "copy") {
7218 e = ME->getInstanceReceiver();
7219 if (!e)
7220 return 0;
7221 e = e->IgnoreParenCasts();
7222 }
7223 } else if (CallExpr *CE = dyn_cast<CallExpr>(e)) {
7224 if (CE->getNumArgs() == 1) {
7225 FunctionDecl *Fn = dyn_cast_or_null<FunctionDecl>(CE->getCalleeDecl());
Ted Kremenekb67c6cc2012-10-02 04:36:54 +00007226 if (Fn) {
7227 const IdentifierInfo *FnI = Fn->getIdentifier();
7228 if (FnI && FnI->isStr("_Block_copy")) {
7229 e = CE->getArg(0)->IgnoreParenCasts();
7230 }
7231 }
Jordan Rose67e887c2012-09-17 17:54:30 +00007232 }
7233 }
7234
John McCall31168b02011-06-15 23:02:42 +00007235 BlockExpr *block = dyn_cast<BlockExpr>(e);
7236 if (!block || !block->getBlockDecl()->capturesVariable(owner.Variable))
7237 return 0;
7238
7239 FindCaptureVisitor visitor(S.Context, owner.Variable);
7240 visitor.Visit(block->getBlockDecl()->getBody());
7241 return visitor.Capturer;
7242}
7243
7244static void diagnoseRetainCycle(Sema &S, Expr *capturer,
7245 RetainCycleOwner &owner) {
7246 assert(capturer);
7247 assert(owner.Variable && owner.Loc.isValid());
7248
7249 S.Diag(capturer->getExprLoc(), diag::warn_arc_retain_cycle)
7250 << owner.Variable << capturer->getSourceRange();
7251 S.Diag(owner.Loc, diag::note_arc_retain_cycle_owner)
7252 << owner.Indirect << owner.Range;
7253}
7254
7255/// Check for a keyword selector that starts with the word 'add' or
7256/// 'set'.
7257static bool isSetterLikeSelector(Selector sel) {
7258 if (sel.isUnarySelector()) return false;
7259
Chris Lattner0e62c1c2011-07-23 10:55:15 +00007260 StringRef str = sel.getNameForSlot(0);
John McCall31168b02011-06-15 23:02:42 +00007261 while (!str.empty() && str.front() == '_') str = str.substr(1);
Ted Kremenek764d63a2011-12-01 00:59:21 +00007262 if (str.startswith("set"))
John McCall31168b02011-06-15 23:02:42 +00007263 str = str.substr(3);
Ted Kremenek764d63a2011-12-01 00:59:21 +00007264 else if (str.startswith("add")) {
7265 // Specially whitelist 'addOperationWithBlock:'.
7266 if (sel.getNumArgs() == 1 && str.startswith("addOperationWithBlock"))
7267 return false;
7268 str = str.substr(3);
7269 }
John McCall31168b02011-06-15 23:02:42 +00007270 else
7271 return false;
7272
7273 if (str.empty()) return true;
Jordan Rosea7d03842013-02-08 22:30:41 +00007274 return !isLowercase(str.front());
John McCall31168b02011-06-15 23:02:42 +00007275}
7276
7277/// Check a message send to see if it's likely to cause a retain cycle.
7278void Sema::checkRetainCycles(ObjCMessageExpr *msg) {
7279 // Only check instance methods whose selector looks like a setter.
7280 if (!msg->isInstanceMessage() || !isSetterLikeSelector(msg->getSelector()))
7281 return;
7282
7283 // Try to find a variable that the receiver is strongly owned by.
7284 RetainCycleOwner owner;
7285 if (msg->getReceiverKind() == ObjCMessageExpr::Instance) {
Fariborz Jahanianedbc3452012-01-10 19:28:26 +00007286 if (!findRetainCycleOwner(*this, msg->getInstanceReceiver(), owner))
John McCall31168b02011-06-15 23:02:42 +00007287 return;
7288 } else {
7289 assert(msg->getReceiverKind() == ObjCMessageExpr::SuperInstance);
7290 owner.Variable = getCurMethodDecl()->getSelfDecl();
7291 owner.Loc = msg->getSuperLoc();
7292 owner.Range = msg->getSuperLoc();
7293 }
7294
7295 // Check whether the receiver is captured by any of the arguments.
7296 for (unsigned i = 0, e = msg->getNumArgs(); i != e; ++i)
7297 if (Expr *capturer = findCapturingExpr(*this, msg->getArg(i), owner))
7298 return diagnoseRetainCycle(*this, capturer, owner);
7299}
7300
7301/// Check a property assign to see if it's likely to cause a retain cycle.
7302void Sema::checkRetainCycles(Expr *receiver, Expr *argument) {
7303 RetainCycleOwner owner;
Fariborz Jahanianedbc3452012-01-10 19:28:26 +00007304 if (!findRetainCycleOwner(*this, receiver, owner))
John McCall31168b02011-06-15 23:02:42 +00007305 return;
7306
7307 if (Expr *capturer = findCapturingExpr(*this, argument, owner))
7308 diagnoseRetainCycle(*this, capturer, owner);
7309}
7310
Jordan Rosefa9e4ba2012-09-15 02:48:31 +00007311void Sema::checkRetainCycles(VarDecl *Var, Expr *Init) {
7312 RetainCycleOwner Owner;
7313 if (!considerVariable(Var, /*DeclRefExpr=*/0, Owner))
7314 return;
7315
7316 // Because we don't have an expression for the variable, we have to set the
7317 // location explicitly here.
7318 Owner.Loc = Var->getLocation();
7319 Owner.Range = Var->getSourceRange();
7320
7321 if (Expr *Capturer = findCapturingExpr(*this, Init, Owner))
7322 diagnoseRetainCycle(*this, Capturer, Owner);
7323}
7324
Ted Kremenek9304da92012-12-21 08:04:28 +00007325static bool checkUnsafeAssignLiteral(Sema &S, SourceLocation Loc,
7326 Expr *RHS, bool isProperty) {
7327 // Check if RHS is an Objective-C object literal, which also can get
7328 // immediately zapped in a weak reference. Note that we explicitly
7329 // allow ObjCStringLiterals, since those are designed to never really die.
7330 RHS = RHS->IgnoreParenImpCasts();
Ted Kremenek44c2a2a2012-12-21 21:59:39 +00007331
Ted Kremenek64873352012-12-21 22:46:35 +00007332 // This enum needs to match with the 'select' in
7333 // warn_objc_arc_literal_assign (off-by-1).
7334 Sema::ObjCLiteralKind Kind = S.CheckLiteralKind(RHS);
7335 if (Kind == Sema::LK_String || Kind == Sema::LK_None)
7336 return false;
Ted Kremenek44c2a2a2012-12-21 21:59:39 +00007337
7338 S.Diag(Loc, diag::warn_arc_literal_assign)
Ted Kremenek64873352012-12-21 22:46:35 +00007339 << (unsigned) Kind
Ted Kremenek9304da92012-12-21 08:04:28 +00007340 << (isProperty ? 0 : 1)
7341 << RHS->getSourceRange();
Ted Kremenek44c2a2a2012-12-21 21:59:39 +00007342
7343 return true;
Ted Kremenek9304da92012-12-21 08:04:28 +00007344}
7345
Ted Kremenekc1f014a2012-12-21 19:45:30 +00007346static bool checkUnsafeAssignObject(Sema &S, SourceLocation Loc,
7347 Qualifiers::ObjCLifetime LT,
7348 Expr *RHS, bool isProperty) {
7349 // Strip off any implicit cast added to get to the one ARC-specific.
7350 while (ImplicitCastExpr *cast = dyn_cast<ImplicitCastExpr>(RHS)) {
7351 if (cast->getCastKind() == CK_ARCConsumeObject) {
7352 S.Diag(Loc, diag::warn_arc_retained_assign)
7353 << (LT == Qualifiers::OCL_ExplicitNone)
7354 << (isProperty ? 0 : 1)
7355 << RHS->getSourceRange();
7356 return true;
7357 }
7358 RHS = cast->getSubExpr();
7359 }
7360
7361 if (LT == Qualifiers::OCL_Weak &&
7362 checkUnsafeAssignLiteral(S, Loc, RHS, isProperty))
7363 return true;
7364
7365 return false;
7366}
7367
Ted Kremenekb36234d2012-12-21 08:04:20 +00007368bool Sema::checkUnsafeAssigns(SourceLocation Loc,
7369 QualType LHS, Expr *RHS) {
7370 Qualifiers::ObjCLifetime LT = LHS.getObjCLifetime();
7371
7372 if (LT != Qualifiers::OCL_Weak && LT != Qualifiers::OCL_ExplicitNone)
7373 return false;
7374
7375 if (checkUnsafeAssignObject(*this, Loc, LT, RHS, false))
7376 return true;
7377
7378 return false;
7379}
7380
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007381void Sema::checkUnsafeExprAssigns(SourceLocation Loc,
7382 Expr *LHS, Expr *RHS) {
Fariborz Jahanianc72a8072012-01-17 22:58:16 +00007383 QualType LHSType;
7384 // PropertyRef on LHS type need be directly obtained from
Alp Tokerf6a24ce2013-12-05 16:25:25 +00007385 // its declaration as it has a PseudoType.
Fariborz Jahanianc72a8072012-01-17 22:58:16 +00007386 ObjCPropertyRefExpr *PRE
7387 = dyn_cast<ObjCPropertyRefExpr>(LHS->IgnoreParens());
7388 if (PRE && !PRE->isImplicitProperty()) {
7389 const ObjCPropertyDecl *PD = PRE->getExplicitProperty();
7390 if (PD)
7391 LHSType = PD->getType();
7392 }
7393
7394 if (LHSType.isNull())
7395 LHSType = LHS->getType();
Jordan Rose657b5f42012-09-28 22:21:35 +00007396
7397 Qualifiers::ObjCLifetime LT = LHSType.getObjCLifetime();
7398
7399 if (LT == Qualifiers::OCL_Weak) {
7400 DiagnosticsEngine::Level Level =
7401 Diags.getDiagnosticLevel(diag::warn_arc_repeated_use_of_weak, Loc);
7402 if (Level != DiagnosticsEngine::Ignored)
7403 getCurFunction()->markSafeWeakUse(LHS);
7404 }
7405
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007406 if (checkUnsafeAssigns(Loc, LHSType, RHS))
7407 return;
Jordan Rose657b5f42012-09-28 22:21:35 +00007408
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007409 // FIXME. Check for other life times.
7410 if (LT != Qualifiers::OCL_None)
7411 return;
7412
Fariborz Jahanianc72a8072012-01-17 22:58:16 +00007413 if (PRE) {
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007414 if (PRE->isImplicitProperty())
7415 return;
7416 const ObjCPropertyDecl *PD = PRE->getExplicitProperty();
7417 if (!PD)
7418 return;
7419
Bill Wendling44426052012-12-20 19:22:21 +00007420 unsigned Attributes = PD->getPropertyAttributes();
7421 if (Attributes & ObjCPropertyDecl::OBJC_PR_assign) {
Fariborz Jahanianc72a8072012-01-17 22:58:16 +00007422 // when 'assign' attribute was not explicitly specified
7423 // by user, ignore it and rely on property type itself
7424 // for lifetime info.
7425 unsigned AsWrittenAttr = PD->getPropertyAttributesAsWritten();
7426 if (!(AsWrittenAttr & ObjCPropertyDecl::OBJC_PR_assign) &&
7427 LHSType->isObjCRetainableType())
7428 return;
7429
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007430 while (ImplicitCastExpr *cast = dyn_cast<ImplicitCastExpr>(RHS)) {
John McCall2d637d22011-09-10 06:18:15 +00007431 if (cast->getCastKind() == CK_ARCConsumeObject) {
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007432 Diag(Loc, diag::warn_arc_retained_property_assign)
7433 << RHS->getSourceRange();
7434 return;
7435 }
7436 RHS = cast->getSubExpr();
7437 }
Fariborz Jahanianc72a8072012-01-17 22:58:16 +00007438 }
Bill Wendling44426052012-12-20 19:22:21 +00007439 else if (Attributes & ObjCPropertyDecl::OBJC_PR_weak) {
Ted Kremenekb36234d2012-12-21 08:04:20 +00007440 if (checkUnsafeAssignObject(*this, Loc, Qualifiers::OCL_Weak, RHS, true))
7441 return;
Fariborz Jahaniandabd1332012-07-06 21:09:27 +00007442 }
Fariborz Jahanian5f98da02011-06-24 18:25:34 +00007443 }
7444}
Dmitri Gribenko800ddf32012-02-14 22:14:32 +00007445
7446//===--- CHECK: Empty statement body (-Wempty-body) ---------------------===//
7447
7448namespace {
7449bool ShouldDiagnoseEmptyStmtBody(const SourceManager &SourceMgr,
7450 SourceLocation StmtLoc,
7451 const NullStmt *Body) {
7452 // Do not warn if the body is a macro that expands to nothing, e.g:
7453 //
7454 // #define CALL(x)
7455 // if (condition)
7456 // CALL(0);
7457 //
7458 if (Body->hasLeadingEmptyMacro())
7459 return false;
7460
7461 // Get line numbers of statement and body.
7462 bool StmtLineInvalid;
7463 unsigned StmtLine = SourceMgr.getSpellingLineNumber(StmtLoc,
7464 &StmtLineInvalid);
7465 if (StmtLineInvalid)
7466 return false;
7467
7468 bool BodyLineInvalid;
7469 unsigned BodyLine = SourceMgr.getSpellingLineNumber(Body->getSemiLoc(),
7470 &BodyLineInvalid);
7471 if (BodyLineInvalid)
7472 return false;
7473
7474 // Warn if null statement and body are on the same line.
7475 if (StmtLine != BodyLine)
7476 return false;
7477
7478 return true;
7479}
7480} // Unnamed namespace
7481
7482void Sema::DiagnoseEmptyStmtBody(SourceLocation StmtLoc,
7483 const Stmt *Body,
7484 unsigned DiagID) {
7485 // Since this is a syntactic check, don't emit diagnostic for template
7486 // instantiations, this just adds noise.
7487 if (CurrentInstantiationScope)
7488 return;
7489
7490 // The body should be a null statement.
7491 const NullStmt *NBody = dyn_cast<NullStmt>(Body);
7492 if (!NBody)
7493 return;
7494
7495 // Do the usual checks.
7496 if (!ShouldDiagnoseEmptyStmtBody(SourceMgr, StmtLoc, NBody))
7497 return;
7498
7499 Diag(NBody->getSemiLoc(), DiagID);
7500 Diag(NBody->getSemiLoc(), diag::note_empty_body_on_separate_line);
7501}
7502
7503void Sema::DiagnoseEmptyLoopBody(const Stmt *S,
7504 const Stmt *PossibleBody) {
7505 assert(!CurrentInstantiationScope); // Ensured by caller
7506
7507 SourceLocation StmtLoc;
7508 const Stmt *Body;
7509 unsigned DiagID;
7510 if (const ForStmt *FS = dyn_cast<ForStmt>(S)) {
7511 StmtLoc = FS->getRParenLoc();
7512 Body = FS->getBody();
7513 DiagID = diag::warn_empty_for_body;
7514 } else if (const WhileStmt *WS = dyn_cast<WhileStmt>(S)) {
7515 StmtLoc = WS->getCond()->getSourceRange().getEnd();
7516 Body = WS->getBody();
7517 DiagID = diag::warn_empty_while_body;
7518 } else
7519 return; // Neither `for' nor `while'.
7520
7521 // The body should be a null statement.
7522 const NullStmt *NBody = dyn_cast<NullStmt>(Body);
7523 if (!NBody)
7524 return;
7525
7526 // Skip expensive checks if diagnostic is disabled.
7527 if (Diags.getDiagnosticLevel(DiagID, NBody->getSemiLoc()) ==
7528 DiagnosticsEngine::Ignored)
7529 return;
7530
7531 // Do the usual checks.
7532 if (!ShouldDiagnoseEmptyStmtBody(SourceMgr, StmtLoc, NBody))
7533 return;
7534
7535 // `for(...);' and `while(...);' are popular idioms, so in order to keep
7536 // noise level low, emit diagnostics only if for/while is followed by a
7537 // CompoundStmt, e.g.:
7538 // for (int i = 0; i < n; i++);
7539 // {
7540 // a(i);
7541 // }
7542 // or if for/while is followed by a statement with more indentation
7543 // than for/while itself:
7544 // for (int i = 0; i < n; i++);
7545 // a(i);
7546 bool ProbableTypo = isa<CompoundStmt>(PossibleBody);
7547 if (!ProbableTypo) {
7548 bool BodyColInvalid;
7549 unsigned BodyCol = SourceMgr.getPresumedColumnNumber(
7550 PossibleBody->getLocStart(),
7551 &BodyColInvalid);
7552 if (BodyColInvalid)
7553 return;
7554
7555 bool StmtColInvalid;
7556 unsigned StmtCol = SourceMgr.getPresumedColumnNumber(
7557 S->getLocStart(),
7558 &StmtColInvalid);
7559 if (StmtColInvalid)
7560 return;
7561
7562 if (BodyCol > StmtCol)
7563 ProbableTypo = true;
7564 }
7565
7566 if (ProbableTypo) {
7567 Diag(NBody->getSemiLoc(), DiagID);
7568 Diag(NBody->getSemiLoc(), diag::note_empty_body_on_separate_line);
7569 }
7570}
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007571
7572//===--- Layout compatibility ----------------------------------------------//
7573
7574namespace {
7575
7576bool isLayoutCompatible(ASTContext &C, QualType T1, QualType T2);
7577
7578/// \brief Check if two enumeration types are layout-compatible.
7579bool isLayoutCompatible(ASTContext &C, EnumDecl *ED1, EnumDecl *ED2) {
7580 // C++11 [dcl.enum] p8:
7581 // Two enumeration types are layout-compatible if they have the same
7582 // underlying type.
7583 return ED1->isComplete() && ED2->isComplete() &&
7584 C.hasSameType(ED1->getIntegerType(), ED2->getIntegerType());
7585}
7586
7587/// \brief Check if two fields are layout-compatible.
7588bool isLayoutCompatible(ASTContext &C, FieldDecl *Field1, FieldDecl *Field2) {
7589 if (!isLayoutCompatible(C, Field1->getType(), Field2->getType()))
7590 return false;
7591
7592 if (Field1->isBitField() != Field2->isBitField())
7593 return false;
7594
7595 if (Field1->isBitField()) {
7596 // Make sure that the bit-fields are the same length.
7597 unsigned Bits1 = Field1->getBitWidthValue(C);
7598 unsigned Bits2 = Field2->getBitWidthValue(C);
7599
7600 if (Bits1 != Bits2)
7601 return false;
7602 }
7603
7604 return true;
7605}
7606
7607/// \brief Check if two standard-layout structs are layout-compatible.
7608/// (C++11 [class.mem] p17)
7609bool isLayoutCompatibleStruct(ASTContext &C,
7610 RecordDecl *RD1,
7611 RecordDecl *RD2) {
7612 // If both records are C++ classes, check that base classes match.
7613 if (const CXXRecordDecl *D1CXX = dyn_cast<CXXRecordDecl>(RD1)) {
7614 // If one of records is a CXXRecordDecl we are in C++ mode,
7615 // thus the other one is a CXXRecordDecl, too.
7616 const CXXRecordDecl *D2CXX = cast<CXXRecordDecl>(RD2);
7617 // Check number of base classes.
7618 if (D1CXX->getNumBases() != D2CXX->getNumBases())
7619 return false;
7620
7621 // Check the base classes.
7622 for (CXXRecordDecl::base_class_const_iterator
7623 Base1 = D1CXX->bases_begin(),
7624 BaseEnd1 = D1CXX->bases_end(),
7625 Base2 = D2CXX->bases_begin();
7626 Base1 != BaseEnd1;
7627 ++Base1, ++Base2) {
7628 if (!isLayoutCompatible(C, Base1->getType(), Base2->getType()))
7629 return false;
7630 }
7631 } else if (const CXXRecordDecl *D2CXX = dyn_cast<CXXRecordDecl>(RD2)) {
7632 // If only RD2 is a C++ class, it should have zero base classes.
7633 if (D2CXX->getNumBases() > 0)
7634 return false;
7635 }
7636
7637 // Check the fields.
7638 RecordDecl::field_iterator Field2 = RD2->field_begin(),
7639 Field2End = RD2->field_end(),
7640 Field1 = RD1->field_begin(),
7641 Field1End = RD1->field_end();
7642 for ( ; Field1 != Field1End && Field2 != Field2End; ++Field1, ++Field2) {
7643 if (!isLayoutCompatible(C, *Field1, *Field2))
7644 return false;
7645 }
7646 if (Field1 != Field1End || Field2 != Field2End)
7647 return false;
7648
7649 return true;
7650}
7651
7652/// \brief Check if two standard-layout unions are layout-compatible.
7653/// (C++11 [class.mem] p18)
7654bool isLayoutCompatibleUnion(ASTContext &C,
7655 RecordDecl *RD1,
7656 RecordDecl *RD2) {
7657 llvm::SmallPtrSet<FieldDecl *, 8> UnmatchedFields;
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00007658 for (auto *Field2 : RD2->fields())
7659 UnmatchedFields.insert(Field2);
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007660
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00007661 for (auto *Field1 : RD1->fields()) {
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007662 llvm::SmallPtrSet<FieldDecl *, 8>::iterator
7663 I = UnmatchedFields.begin(),
7664 E = UnmatchedFields.end();
7665
7666 for ( ; I != E; ++I) {
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00007667 if (isLayoutCompatible(C, Field1, *I)) {
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007668 bool Result = UnmatchedFields.erase(*I);
7669 (void) Result;
7670 assert(Result);
7671 break;
7672 }
7673 }
7674 if (I == E)
7675 return false;
7676 }
7677
7678 return UnmatchedFields.empty();
7679}
7680
7681bool isLayoutCompatible(ASTContext &C, RecordDecl *RD1, RecordDecl *RD2) {
7682 if (RD1->isUnion() != RD2->isUnion())
7683 return false;
7684
7685 if (RD1->isUnion())
7686 return isLayoutCompatibleUnion(C, RD1, RD2);
7687 else
7688 return isLayoutCompatibleStruct(C, RD1, RD2);
7689}
7690
7691/// \brief Check if two types are layout-compatible in C++11 sense.
7692bool isLayoutCompatible(ASTContext &C, QualType T1, QualType T2) {
7693 if (T1.isNull() || T2.isNull())
7694 return false;
7695
7696 // C++11 [basic.types] p11:
7697 // If two types T1 and T2 are the same type, then T1 and T2 are
7698 // layout-compatible types.
7699 if (C.hasSameType(T1, T2))
7700 return true;
7701
7702 T1 = T1.getCanonicalType().getUnqualifiedType();
7703 T2 = T2.getCanonicalType().getUnqualifiedType();
7704
7705 const Type::TypeClass TC1 = T1->getTypeClass();
7706 const Type::TypeClass TC2 = T2->getTypeClass();
7707
7708 if (TC1 != TC2)
7709 return false;
7710
7711 if (TC1 == Type::Enum) {
7712 return isLayoutCompatible(C,
7713 cast<EnumType>(T1)->getDecl(),
7714 cast<EnumType>(T2)->getDecl());
7715 } else if (TC1 == Type::Record) {
7716 if (!T1->isStandardLayoutType() || !T2->isStandardLayoutType())
7717 return false;
7718
7719 return isLayoutCompatible(C,
7720 cast<RecordType>(T1)->getDecl(),
7721 cast<RecordType>(T2)->getDecl());
7722 }
7723
7724 return false;
7725}
7726}
7727
7728//===--- CHECK: pointer_with_type_tag attribute: datatypes should match ----//
7729
7730namespace {
7731/// \brief Given a type tag expression find the type tag itself.
7732///
7733/// \param TypeExpr Type tag expression, as it appears in user's code.
7734///
7735/// \param VD Declaration of an identifier that appears in a type tag.
7736///
7737/// \param MagicValue Type tag magic value.
7738bool FindTypeTagExpr(const Expr *TypeExpr, const ASTContext &Ctx,
7739 const ValueDecl **VD, uint64_t *MagicValue) {
7740 while(true) {
7741 if (!TypeExpr)
7742 return false;
7743
7744 TypeExpr = TypeExpr->IgnoreParenImpCasts()->IgnoreParenCasts();
7745
7746 switch (TypeExpr->getStmtClass()) {
7747 case Stmt::UnaryOperatorClass: {
7748 const UnaryOperator *UO = cast<UnaryOperator>(TypeExpr);
7749 if (UO->getOpcode() == UO_AddrOf || UO->getOpcode() == UO_Deref) {
7750 TypeExpr = UO->getSubExpr();
7751 continue;
7752 }
7753 return false;
7754 }
7755
7756 case Stmt::DeclRefExprClass: {
7757 const DeclRefExpr *DRE = cast<DeclRefExpr>(TypeExpr);
7758 *VD = DRE->getDecl();
7759 return true;
7760 }
7761
7762 case Stmt::IntegerLiteralClass: {
7763 const IntegerLiteral *IL = cast<IntegerLiteral>(TypeExpr);
7764 llvm::APInt MagicValueAPInt = IL->getValue();
7765 if (MagicValueAPInt.getActiveBits() <= 64) {
7766 *MagicValue = MagicValueAPInt.getZExtValue();
7767 return true;
7768 } else
7769 return false;
7770 }
7771
7772 case Stmt::BinaryConditionalOperatorClass:
7773 case Stmt::ConditionalOperatorClass: {
7774 const AbstractConditionalOperator *ACO =
7775 cast<AbstractConditionalOperator>(TypeExpr);
7776 bool Result;
7777 if (ACO->getCond()->EvaluateAsBooleanCondition(Result, Ctx)) {
7778 if (Result)
7779 TypeExpr = ACO->getTrueExpr();
7780 else
7781 TypeExpr = ACO->getFalseExpr();
7782 continue;
7783 }
7784 return false;
7785 }
7786
7787 case Stmt::BinaryOperatorClass: {
7788 const BinaryOperator *BO = cast<BinaryOperator>(TypeExpr);
7789 if (BO->getOpcode() == BO_Comma) {
7790 TypeExpr = BO->getRHS();
7791 continue;
7792 }
7793 return false;
7794 }
7795
7796 default:
7797 return false;
7798 }
7799 }
7800}
7801
7802/// \brief Retrieve the C type corresponding to type tag TypeExpr.
7803///
7804/// \param TypeExpr Expression that specifies a type tag.
7805///
7806/// \param MagicValues Registered magic values.
7807///
7808/// \param FoundWrongKind Set to true if a type tag was found, but of a wrong
7809/// kind.
7810///
7811/// \param TypeInfo Information about the corresponding C type.
7812///
7813/// \returns true if the corresponding C type was found.
7814bool GetMatchingCType(
7815 const IdentifierInfo *ArgumentKind,
7816 const Expr *TypeExpr, const ASTContext &Ctx,
7817 const llvm::DenseMap<Sema::TypeTagMagicValue,
7818 Sema::TypeTagData> *MagicValues,
7819 bool &FoundWrongKind,
7820 Sema::TypeTagData &TypeInfo) {
7821 FoundWrongKind = false;
7822
7823 // Variable declaration that has type_tag_for_datatype attribute.
7824 const ValueDecl *VD = NULL;
7825
7826 uint64_t MagicValue;
7827
7828 if (!FindTypeTagExpr(TypeExpr, Ctx, &VD, &MagicValue))
7829 return false;
7830
7831 if (VD) {
Benjamin Kramerae852a62014-02-23 14:34:50 +00007832 if (TypeTagForDatatypeAttr *I = VD->getAttr<TypeTagForDatatypeAttr>()) {
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007833 if (I->getArgumentKind() != ArgumentKind) {
7834 FoundWrongKind = true;
7835 return false;
7836 }
7837 TypeInfo.Type = I->getMatchingCType();
7838 TypeInfo.LayoutCompatible = I->getLayoutCompatible();
7839 TypeInfo.MustBeNull = I->getMustBeNull();
7840 return true;
7841 }
7842 return false;
7843 }
7844
7845 if (!MagicValues)
7846 return false;
7847
7848 llvm::DenseMap<Sema::TypeTagMagicValue,
7849 Sema::TypeTagData>::const_iterator I =
7850 MagicValues->find(std::make_pair(ArgumentKind, MagicValue));
7851 if (I == MagicValues->end())
7852 return false;
7853
7854 TypeInfo = I->second;
7855 return true;
7856}
7857} // unnamed namespace
7858
7859void Sema::RegisterTypeTagForDatatype(const IdentifierInfo *ArgumentKind,
7860 uint64_t MagicValue, QualType Type,
7861 bool LayoutCompatible,
7862 bool MustBeNull) {
7863 if (!TypeTagForDatatypeMagicValues)
7864 TypeTagForDatatypeMagicValues.reset(
7865 new llvm::DenseMap<TypeTagMagicValue, TypeTagData>);
7866
7867 TypeTagMagicValue Magic(ArgumentKind, MagicValue);
7868 (*TypeTagForDatatypeMagicValues)[Magic] =
7869 TypeTagData(Type, LayoutCompatible, MustBeNull);
7870}
7871
7872namespace {
7873bool IsSameCharType(QualType T1, QualType T2) {
7874 const BuiltinType *BT1 = T1->getAs<BuiltinType>();
7875 if (!BT1)
7876 return false;
7877
7878 const BuiltinType *BT2 = T2->getAs<BuiltinType>();
7879 if (!BT2)
7880 return false;
7881
7882 BuiltinType::Kind T1Kind = BT1->getKind();
7883 BuiltinType::Kind T2Kind = BT2->getKind();
7884
7885 return (T1Kind == BuiltinType::SChar && T2Kind == BuiltinType::Char_S) ||
7886 (T1Kind == BuiltinType::UChar && T2Kind == BuiltinType::Char_U) ||
7887 (T1Kind == BuiltinType::Char_U && T2Kind == BuiltinType::UChar) ||
7888 (T1Kind == BuiltinType::Char_S && T2Kind == BuiltinType::SChar);
7889}
7890} // unnamed namespace
7891
7892void Sema::CheckArgumentWithTypeTag(const ArgumentWithTypeTagAttr *Attr,
7893 const Expr * const *ExprArgs) {
7894 const IdentifierInfo *ArgumentKind = Attr->getArgumentKind();
7895 bool IsPointerAttr = Attr->getIsPointer();
7896
7897 const Expr *TypeTagExpr = ExprArgs[Attr->getTypeTagIdx()];
7898 bool FoundWrongKind;
7899 TypeTagData TypeInfo;
7900 if (!GetMatchingCType(ArgumentKind, TypeTagExpr, Context,
7901 TypeTagForDatatypeMagicValues.get(),
7902 FoundWrongKind, TypeInfo)) {
7903 if (FoundWrongKind)
7904 Diag(TypeTagExpr->getExprLoc(),
7905 diag::warn_type_tag_for_datatype_wrong_kind)
7906 << TypeTagExpr->getSourceRange();
7907 return;
7908 }
7909
7910 const Expr *ArgumentExpr = ExprArgs[Attr->getArgumentIdx()];
7911 if (IsPointerAttr) {
7912 // Skip implicit cast of pointer to `void *' (as a function argument).
7913 if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(ArgumentExpr))
Dmitri Gribenko5ac744e2012-11-03 16:07:49 +00007914 if (ICE->getType()->isVoidPointerType() &&
Dmitri Gribenkof21203b2012-11-03 22:10:18 +00007915 ICE->getCastKind() == CK_BitCast)
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007916 ArgumentExpr = ICE->getSubExpr();
7917 }
7918 QualType ArgumentType = ArgumentExpr->getType();
7919
7920 // Passing a `void*' pointer shouldn't trigger a warning.
7921 if (IsPointerAttr && ArgumentType->isVoidPointerType())
7922 return;
7923
7924 if (TypeInfo.MustBeNull) {
7925 // Type tag with matching void type requires a null pointer.
7926 if (!ArgumentExpr->isNullPointerConstant(Context,
7927 Expr::NPC_ValueDependentIsNotNull)) {
7928 Diag(ArgumentExpr->getExprLoc(),
7929 diag::warn_type_safety_null_pointer_required)
7930 << ArgumentKind->getName()
7931 << ArgumentExpr->getSourceRange()
7932 << TypeTagExpr->getSourceRange();
7933 }
7934 return;
7935 }
7936
7937 QualType RequiredType = TypeInfo.Type;
7938 if (IsPointerAttr)
7939 RequiredType = Context.getPointerType(RequiredType);
7940
7941 bool mismatch = false;
7942 if (!TypeInfo.LayoutCompatible) {
7943 mismatch = !Context.hasSameType(ArgumentType, RequiredType);
7944
7945 // C++11 [basic.fundamental] p1:
7946 // Plain char, signed char, and unsigned char are three distinct types.
7947 //
7948 // But we treat plain `char' as equivalent to `signed char' or `unsigned
7949 // char' depending on the current char signedness mode.
7950 if (mismatch)
7951 if ((IsPointerAttr && IsSameCharType(ArgumentType->getPointeeType(),
7952 RequiredType->getPointeeType())) ||
7953 (!IsPointerAttr && IsSameCharType(ArgumentType, RequiredType)))
7954 mismatch = false;
7955 } else
7956 if (IsPointerAttr)
7957 mismatch = !isLayoutCompatible(Context,
7958 ArgumentType->getPointeeType(),
7959 RequiredType->getPointeeType());
7960 else
7961 mismatch = !isLayoutCompatible(Context, ArgumentType, RequiredType);
7962
7963 if (mismatch)
7964 Diag(ArgumentExpr->getExprLoc(), diag::warn_type_safety_type_mismatch)
Aaron Ballman25dc1e12014-01-03 02:14:08 +00007965 << ArgumentType << ArgumentKind
Dmitri Gribenkoe4a5a902012-08-17 00:08:38 +00007966 << TypeInfo.LayoutCompatible << RequiredType
7967 << ArgumentExpr->getSourceRange()
7968 << TypeTagExpr->getSourceRange();
7969}
Richard Trieu7eb0b2c2014-02-26 01:17:28 +00007970