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Chad Rosier571c5e92012-08-17 21:27:25 +00001//===--- SemaStmtAsm.cpp - Semantic Analysis for Asm Statements -----------===//
Chad Rosier0731aff2012-08-17 21:19:40 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements semantic analysis for inline asm statements.
11//
12//===----------------------------------------------------------------------===//
13
14#include "clang/Sema/SemaInternal.h"
Chad Rosier5c563642012-10-25 21:49:22 +000015#include "clang/AST/RecordLayout.h"
Chad Rosier0731aff2012-08-17 21:19:40 +000016#include "clang/AST/TypeLoc.h"
Chad Rosier0731aff2012-08-17 21:19:40 +000017#include "clang/Basic/TargetInfo.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000018#include "clang/Sema/Initialization.h"
19#include "clang/Sema/Lookup.h"
20#include "clang/Sema/Scope.h"
21#include "clang/Sema/ScopeInfo.h"
Chad Rosier0731aff2012-08-17 21:19:40 +000022#include "llvm/ADT/ArrayRef.h"
23#include "llvm/ADT/BitVector.h"
Chad Rosier0731aff2012-08-17 21:19:40 +000024using namespace clang;
25using namespace sema;
26
27/// CheckAsmLValue - GNU C has an extremely ugly extension whereby they silently
28/// ignore "noop" casts in places where an lvalue is required by an inline asm.
29/// We emulate this behavior when -fheinous-gnu-extensions is specified, but
30/// provide a strong guidance to not use it.
31///
32/// This method checks to see if the argument is an acceptable l-value and
33/// returns false if it is a case we can handle.
34static bool CheckAsmLValue(const Expr *E, Sema &S) {
35 // Type dependent expressions will be checked during instantiation.
36 if (E->isTypeDependent())
37 return false;
38
39 if (E->isLValue())
40 return false; // Cool, this is an lvalue.
41
42 // Okay, this is not an lvalue, but perhaps it is the result of a cast that we
43 // are supposed to allow.
44 const Expr *E2 = E->IgnoreParenNoopCasts(S.Context);
45 if (E != E2 && E2->isLValue()) {
46 if (!S.getLangOpts().HeinousExtensions)
47 S.Diag(E2->getLocStart(), diag::err_invalid_asm_cast_lvalue)
48 << E->getSourceRange();
49 else
50 S.Diag(E2->getLocStart(), diag::warn_invalid_asm_cast_lvalue)
51 << E->getSourceRange();
52 // Accept, even if we emitted an error diagnostic.
53 return false;
54 }
55
56 // None of the above, just randomly invalid non-lvalue.
57 return true;
58}
59
60/// isOperandMentioned - Return true if the specified operand # is mentioned
61/// anywhere in the decomposed asm string.
62static bool isOperandMentioned(unsigned OpNo,
Chad Rosierde70e0e2012-08-25 00:11:56 +000063 ArrayRef<GCCAsmStmt::AsmStringPiece> AsmStrPieces) {
Chad Rosier0731aff2012-08-17 21:19:40 +000064 for (unsigned p = 0, e = AsmStrPieces.size(); p != e; ++p) {
Chad Rosierde70e0e2012-08-25 00:11:56 +000065 const GCCAsmStmt::AsmStringPiece &Piece = AsmStrPieces[p];
Chad Rosier0731aff2012-08-17 21:19:40 +000066 if (!Piece.isOperand()) continue;
67
68 // If this is a reference to the input and if the input was the smaller
69 // one, then we have to reject this asm.
70 if (Piece.getOperandNo() == OpNo)
71 return true;
72 }
73 return false;
74}
75
Chad Rosierde70e0e2012-08-25 00:11:56 +000076StmtResult Sema::ActOnGCCAsmStmt(SourceLocation AsmLoc, bool IsSimple,
77 bool IsVolatile, unsigned NumOutputs,
78 unsigned NumInputs, IdentifierInfo **Names,
Dmitri Gribenkoea2d5f82013-05-10 01:14:26 +000079 MultiExprArg constraints, MultiExprArg Exprs,
Chad Rosierde70e0e2012-08-25 00:11:56 +000080 Expr *asmString, MultiExprArg clobbers,
81 SourceLocation RParenLoc) {
Chad Rosier0731aff2012-08-17 21:19:40 +000082 unsigned NumClobbers = clobbers.size();
83 StringLiteral **Constraints =
Benjamin Kramercc4c49d2012-08-23 23:38:35 +000084 reinterpret_cast<StringLiteral**>(constraints.data());
Chad Rosier0731aff2012-08-17 21:19:40 +000085 StringLiteral *AsmString = cast<StringLiteral>(asmString);
Benjamin Kramercc4c49d2012-08-23 23:38:35 +000086 StringLiteral **Clobbers = reinterpret_cast<StringLiteral**>(clobbers.data());
Chad Rosier0731aff2012-08-17 21:19:40 +000087
88 SmallVector<TargetInfo::ConstraintInfo, 4> OutputConstraintInfos;
89
90 // The parser verifies that there is a string literal here.
91 if (!AsmString->isAscii())
92 return StmtError(Diag(AsmString->getLocStart(),diag::err_asm_wide_character)
93 << AsmString->getSourceRange());
94
95 for (unsigned i = 0; i != NumOutputs; i++) {
96 StringLiteral *Literal = Constraints[i];
97 if (!Literal->isAscii())
98 return StmtError(Diag(Literal->getLocStart(),diag::err_asm_wide_character)
99 << Literal->getSourceRange());
100
101 StringRef OutputName;
102 if (Names[i])
103 OutputName = Names[i]->getName();
104
105 TargetInfo::ConstraintInfo Info(Literal->getString(), OutputName);
106 if (!Context.getTargetInfo().validateOutputConstraint(Info))
107 return StmtError(Diag(Literal->getLocStart(),
108 diag::err_asm_invalid_output_constraint)
109 << Info.getConstraintStr());
110
111 // Check that the output exprs are valid lvalues.
112 Expr *OutputExpr = Exprs[i];
Bill Wendlingc4fc3a22013-03-25 21:09:49 +0000113 if (CheckAsmLValue(OutputExpr, *this))
Chad Rosier0731aff2012-08-17 21:19:40 +0000114 return StmtError(Diag(OutputExpr->getLocStart(),
Bill Wendlingc4fc3a22013-03-25 21:09:49 +0000115 diag::err_asm_invalid_lvalue_in_output)
116 << OutputExpr->getSourceRange());
117
Bill Wendlingb68b7572013-03-27 06:06:26 +0000118 if (RequireCompleteType(OutputExpr->getLocStart(), Exprs[i]->getType(),
119 diag::err_dereference_incomplete_type))
120 return StmtError();
Chad Rosier0731aff2012-08-17 21:19:40 +0000121
122 OutputConstraintInfos.push_back(Info);
123 }
124
125 SmallVector<TargetInfo::ConstraintInfo, 4> InputConstraintInfos;
126
127 for (unsigned i = NumOutputs, e = NumOutputs + NumInputs; i != e; i++) {
128 StringLiteral *Literal = Constraints[i];
129 if (!Literal->isAscii())
130 return StmtError(Diag(Literal->getLocStart(),diag::err_asm_wide_character)
131 << Literal->getSourceRange());
132
133 StringRef InputName;
134 if (Names[i])
135 InputName = Names[i]->getName();
136
137 TargetInfo::ConstraintInfo Info(Literal->getString(), InputName);
138 if (!Context.getTargetInfo().validateInputConstraint(OutputConstraintInfos.data(),
139 NumOutputs, Info)) {
140 return StmtError(Diag(Literal->getLocStart(),
141 diag::err_asm_invalid_input_constraint)
142 << Info.getConstraintStr());
143 }
144
145 Expr *InputExpr = Exprs[i];
146
147 // Only allow void types for memory constraints.
148 if (Info.allowsMemory() && !Info.allowsRegister()) {
149 if (CheckAsmLValue(InputExpr, *this))
150 return StmtError(Diag(InputExpr->getLocStart(),
151 diag::err_asm_invalid_lvalue_in_input)
152 << Info.getConstraintStr()
153 << InputExpr->getSourceRange());
154 }
155
156 if (Info.allowsRegister()) {
157 if (InputExpr->getType()->isVoidType()) {
158 return StmtError(Diag(InputExpr->getLocStart(),
159 diag::err_asm_invalid_type_in_input)
160 << InputExpr->getType() << Info.getConstraintStr()
161 << InputExpr->getSourceRange());
162 }
163 }
164
165 ExprResult Result = DefaultFunctionArrayLvalueConversion(Exprs[i]);
166 if (Result.isInvalid())
167 return StmtError();
168
169 Exprs[i] = Result.take();
170 InputConstraintInfos.push_back(Info);
Bill Wendling887b4852012-11-12 06:42:51 +0000171
172 const Type *Ty = Exprs[i]->getType().getTypePtr();
Bill Wendlingc4fc3a22013-03-25 21:09:49 +0000173 if (Ty->isDependentType())
Eric Christopherd41010a2012-11-12 23:13:34 +0000174 continue;
175
Bill Wendlingc4fc3a22013-03-25 21:09:49 +0000176 if (!Ty->isVoidType() || !Info.allowsMemory())
Bill Wendlingb68b7572013-03-27 06:06:26 +0000177 if (RequireCompleteType(InputExpr->getLocStart(), Exprs[i]->getType(),
178 diag::err_dereference_incomplete_type))
179 return StmtError();
Bill Wendlingc4fc3a22013-03-25 21:09:49 +0000180
Bill Wendling887b4852012-11-12 06:42:51 +0000181 unsigned Size = Context.getTypeSize(Ty);
182 if (!Context.getTargetInfo().validateInputSize(Literal->getString(),
183 Size))
184 return StmtError(Diag(InputExpr->getLocStart(),
185 diag::err_asm_invalid_input_size)
186 << Info.getConstraintStr());
Chad Rosier0731aff2012-08-17 21:19:40 +0000187 }
188
189 // Check that the clobbers are valid.
190 for (unsigned i = 0; i != NumClobbers; i++) {
191 StringLiteral *Literal = Clobbers[i];
192 if (!Literal->isAscii())
193 return StmtError(Diag(Literal->getLocStart(),diag::err_asm_wide_character)
194 << Literal->getSourceRange());
195
196 StringRef Clobber = Literal->getString();
197
198 if (!Context.getTargetInfo().isValidClobber(Clobber))
199 return StmtError(Diag(Literal->getLocStart(),
200 diag::err_asm_unknown_register_name) << Clobber);
201 }
202
Chad Rosierde70e0e2012-08-25 00:11:56 +0000203 GCCAsmStmt *NS =
204 new (Context) GCCAsmStmt(Context, AsmLoc, IsSimple, IsVolatile, NumOutputs,
Dmitri Gribenkoea2d5f82013-05-10 01:14:26 +0000205 NumInputs, Names, Constraints, Exprs.data(),
206 AsmString, NumClobbers, Clobbers, RParenLoc);
Chad Rosier0731aff2012-08-17 21:19:40 +0000207 // Validate the asm string, ensuring it makes sense given the operands we
208 // have.
Chad Rosierde70e0e2012-08-25 00:11:56 +0000209 SmallVector<GCCAsmStmt::AsmStringPiece, 8> Pieces;
Chad Rosier0731aff2012-08-17 21:19:40 +0000210 unsigned DiagOffs;
211 if (unsigned DiagID = NS->AnalyzeAsmString(Pieces, Context, DiagOffs)) {
212 Diag(getLocationOfStringLiteralByte(AsmString, DiagOffs), DiagID)
213 << AsmString->getSourceRange();
214 return StmtError();
215 }
216
Bill Wendling9d1ee112012-10-25 23:28:48 +0000217 // Validate constraints and modifiers.
218 for (unsigned i = 0, e = Pieces.size(); i != e; ++i) {
219 GCCAsmStmt::AsmStringPiece &Piece = Pieces[i];
220 if (!Piece.isOperand()) continue;
221
222 // Look for the correct constraint index.
223 unsigned Idx = 0;
224 unsigned ConstraintIdx = 0;
225 for (unsigned i = 0, e = NS->getNumOutputs(); i != e; ++i, ++ConstraintIdx) {
226 TargetInfo::ConstraintInfo &Info = OutputConstraintInfos[i];
227 if (Idx == Piece.getOperandNo())
228 break;
229 ++Idx;
230
231 if (Info.isReadWrite()) {
232 if (Idx == Piece.getOperandNo())
233 break;
234 ++Idx;
235 }
236 }
237
238 for (unsigned i = 0, e = NS->getNumInputs(); i != e; ++i, ++ConstraintIdx) {
239 TargetInfo::ConstraintInfo &Info = InputConstraintInfos[i];
240 if (Idx == Piece.getOperandNo())
241 break;
242 ++Idx;
243
244 if (Info.isReadWrite()) {
245 if (Idx == Piece.getOperandNo())
246 break;
247 ++Idx;
248 }
249 }
250
251 // Now that we have the right indexes go ahead and check.
252 StringLiteral *Literal = Constraints[ConstraintIdx];
253 const Type *Ty = Exprs[ConstraintIdx]->getType().getTypePtr();
254 if (Ty->isDependentType() || Ty->isIncompleteType())
255 continue;
256
257 unsigned Size = Context.getTypeSize(Ty);
258 if (!Context.getTargetInfo()
259 .validateConstraintModifier(Literal->getString(), Piece.getModifier(),
260 Size))
261 Diag(Exprs[ConstraintIdx]->getLocStart(),
262 diag::warn_asm_mismatched_size_modifier);
263 }
264
Chad Rosier0731aff2012-08-17 21:19:40 +0000265 // Validate tied input operands for type mismatches.
266 for (unsigned i = 0, e = InputConstraintInfos.size(); i != e; ++i) {
267 TargetInfo::ConstraintInfo &Info = InputConstraintInfos[i];
268
269 // If this is a tied constraint, verify that the output and input have
270 // either exactly the same type, or that they are int/ptr operands with the
271 // same size (int/long, int*/long, are ok etc).
272 if (!Info.hasTiedOperand()) continue;
273
274 unsigned TiedTo = Info.getTiedOperand();
275 unsigned InputOpNo = i+NumOutputs;
276 Expr *OutputExpr = Exprs[TiedTo];
277 Expr *InputExpr = Exprs[InputOpNo];
278
279 if (OutputExpr->isTypeDependent() || InputExpr->isTypeDependent())
280 continue;
281
282 QualType InTy = InputExpr->getType();
283 QualType OutTy = OutputExpr->getType();
284 if (Context.hasSameType(InTy, OutTy))
285 continue; // All types can be tied to themselves.
286
287 // Decide if the input and output are in the same domain (integer/ptr or
288 // floating point.
289 enum AsmDomain {
290 AD_Int, AD_FP, AD_Other
291 } InputDomain, OutputDomain;
292
293 if (InTy->isIntegerType() || InTy->isPointerType())
294 InputDomain = AD_Int;
295 else if (InTy->isRealFloatingType())
296 InputDomain = AD_FP;
297 else
298 InputDomain = AD_Other;
299
300 if (OutTy->isIntegerType() || OutTy->isPointerType())
301 OutputDomain = AD_Int;
302 else if (OutTy->isRealFloatingType())
303 OutputDomain = AD_FP;
304 else
305 OutputDomain = AD_Other;
306
307 // They are ok if they are the same size and in the same domain. This
308 // allows tying things like:
309 // void* to int*
310 // void* to int if they are the same size.
311 // double to long double if they are the same size.
312 //
313 uint64_t OutSize = Context.getTypeSize(OutTy);
314 uint64_t InSize = Context.getTypeSize(InTy);
315 if (OutSize == InSize && InputDomain == OutputDomain &&
316 InputDomain != AD_Other)
317 continue;
318
319 // If the smaller input/output operand is not mentioned in the asm string,
320 // then we can promote the smaller one to a larger input and the asm string
321 // won't notice.
322 bool SmallerValueMentioned = false;
323
324 // If this is a reference to the input and if the input was the smaller
325 // one, then we have to reject this asm.
326 if (isOperandMentioned(InputOpNo, Pieces)) {
327 // This is a use in the asm string of the smaller operand. Since we
328 // codegen this by promoting to a wider value, the asm will get printed
329 // "wrong".
330 SmallerValueMentioned |= InSize < OutSize;
331 }
332 if (isOperandMentioned(TiedTo, Pieces)) {
333 // If this is a reference to the output, and if the output is the larger
334 // value, then it's ok because we'll promote the input to the larger type.
335 SmallerValueMentioned |= OutSize < InSize;
336 }
337
338 // If the smaller value wasn't mentioned in the asm string, and if the
339 // output was a register, just extend the shorter one to the size of the
340 // larger one.
341 if (!SmallerValueMentioned && InputDomain != AD_Other &&
342 OutputConstraintInfos[TiedTo].allowsRegister())
343 continue;
344
345 // Either both of the operands were mentioned or the smaller one was
346 // mentioned. One more special case that we'll allow: if the tied input is
347 // integer, unmentioned, and is a constant, then we'll allow truncating it
348 // down to the size of the destination.
349 if (InputDomain == AD_Int && OutputDomain == AD_Int &&
350 !isOperandMentioned(InputOpNo, Pieces) &&
351 InputExpr->isEvaluatable(Context)) {
352 CastKind castKind =
353 (OutTy->isBooleanType() ? CK_IntegralToBoolean : CK_IntegralCast);
354 InputExpr = ImpCastExprToType(InputExpr, OutTy, castKind).take();
355 Exprs[InputOpNo] = InputExpr;
356 NS->setInputExpr(i, InputExpr);
357 continue;
358 }
359
360 Diag(InputExpr->getLocStart(),
361 diag::err_asm_tying_incompatible_types)
362 << InTy << OutTy << OutputExpr->getSourceRange()
363 << InputExpr->getSourceRange();
364 return StmtError();
365 }
366
367 return Owned(NS);
368}
369
John McCallf413f5e2013-05-03 00:10:13 +0000370ExprResult Sema::LookupInlineAsmIdentifier(CXXScopeSpec &SS,
371 SourceLocation TemplateKWLoc,
372 UnqualifiedId &Id,
373 InlineAsmIdentifierInfo &Info,
374 bool IsUnevaluatedContext) {
Chad Rosierb18a2852013-04-22 17:01:37 +0000375 Info.clear();
Chad Rosierce2bcbf2012-10-18 15:49:40 +0000376
John McCallf413f5e2013-05-03 00:10:13 +0000377 if (IsUnevaluatedContext)
378 PushExpressionEvaluationContext(UnevaluatedAbstract,
379 ReuseLambdaContextDecl);
380
381 ExprResult Result = ActOnIdExpression(getCurScope(), SS, TemplateKWLoc, Id,
382 /*trailing lparen*/ false,
Chad Rosierb9aff1e2013-05-24 18:32:55 +0000383 /*is & operand*/ false,
384 /*CorrectionCandidateCallback=*/0,
385 /*IsInlineAsmIdentifier=*/ true);
John McCallf413f5e2013-05-03 00:10:13 +0000386
387 if (IsUnevaluatedContext)
388 PopExpressionEvaluationContext();
389
390 if (!Result.isUsable()) return Result;
391
392 Result = CheckPlaceholderExpr(Result.take());
393 if (!Result.isUsable()) return Result;
394
395 QualType T = Result.get()->getType();
396
397 // For now, reject dependent types.
398 if (T->isDependentType()) {
399 Diag(Id.getLocStart(), diag::err_asm_incomplete_type) << T;
400 return ExprError();
Chad Rosierce2bcbf2012-10-18 15:49:40 +0000401 }
402
John McCallf413f5e2013-05-03 00:10:13 +0000403 // Any sort of function type is fine.
404 if (T->isFunctionType()) {
405 return Result;
Chad Rosierce2bcbf2012-10-18 15:49:40 +0000406 }
407
John McCallf413f5e2013-05-03 00:10:13 +0000408 // Otherwise, it needs to be a complete type.
409 if (RequireCompleteExprType(Result.get(), diag::err_asm_incomplete_type)) {
410 return ExprError();
411 }
412
413 // Compute the type size (and array length if applicable?).
414 Info.Type = Info.Size = Context.getTypeSizeInChars(T).getQuantity();
415 if (T->isArrayType()) {
416 const ArrayType *ATy = Context.getAsArrayType(T);
417 Info.Type = Context.getTypeSizeInChars(ATy->getElementType()).getQuantity();
418 Info.Length = Info.Size / Info.Type;
419 }
420
421 // We can work with the expression as long as it's not an r-value.
422 if (!Result.get()->isRValue())
Chad Rosierb18a2852013-04-22 17:01:37 +0000423 Info.IsVarDecl = true;
Chad Rosierce2bcbf2012-10-18 15:49:40 +0000424
John McCallf413f5e2013-05-03 00:10:13 +0000425 return Result;
Chad Rosier4a0054f2012-10-15 19:56:10 +0000426}
Chad Rosierd997bd12012-08-22 19:18:30 +0000427
Chad Rosier5c563642012-10-25 21:49:22 +0000428bool Sema::LookupInlineAsmField(StringRef Base, StringRef Member,
429 unsigned &Offset, SourceLocation AsmLoc) {
430 Offset = 0;
431 LookupResult BaseResult(*this, &Context.Idents.get(Base), SourceLocation(),
432 LookupOrdinaryName);
433
434 if (!LookupName(BaseResult, getCurScope()))
435 return true;
436
437 if (!BaseResult.isSingleResult())
438 return true;
439
Chad Rosier5c563642012-10-25 21:49:22 +0000440 const RecordType *RT = 0;
Chad Rosier10230d42013-04-01 17:58:03 +0000441 NamedDecl *FoundDecl = BaseResult.getFoundDecl();
442 if (VarDecl *VD = dyn_cast<VarDecl>(FoundDecl))
Chad Rosier5c563642012-10-25 21:49:22 +0000443 RT = VD->getType()->getAs<RecordType>();
Chad Rosier10230d42013-04-01 17:58:03 +0000444 else if (TypedefDecl *TD = dyn_cast<TypedefDecl>(FoundDecl))
Chad Rosier5c563642012-10-25 21:49:22 +0000445 RT = TD->getUnderlyingType()->getAs<RecordType>();
Chad Rosier5c563642012-10-25 21:49:22 +0000446 if (!RT)
447 return true;
448
449 if (RequireCompleteType(AsmLoc, QualType(RT, 0), 0))
450 return true;
451
452 LookupResult FieldResult(*this, &Context.Idents.get(Member), SourceLocation(),
453 LookupMemberName);
454
455 if (!LookupQualifiedName(FieldResult, RT->getDecl()))
456 return true;
457
458 // FIXME: Handle IndirectFieldDecl?
459 FieldDecl *FD = dyn_cast<FieldDecl>(FieldResult.getFoundDecl());
460 if (!FD)
461 return true;
462
463 const ASTRecordLayout &RL = Context.getASTRecordLayout(RT->getDecl());
464 unsigned i = FD->getFieldIndex();
465 CharUnits Result = Context.toCharUnitsFromBits(RL.getFieldOffset(i));
466 Offset = (unsigned)Result.getQuantity();
467
468 return false;
469}
470
Chad Rosierb261a502012-09-13 00:06:55 +0000471StmtResult Sema::ActOnMSAsmStmt(SourceLocation AsmLoc, SourceLocation LBraceLoc,
John McCallf413f5e2013-05-03 00:10:13 +0000472 ArrayRef<Token> AsmToks,
473 StringRef AsmString,
474 unsigned NumOutputs, unsigned NumInputs,
475 ArrayRef<StringRef> Constraints,
476 ArrayRef<StringRef> Clobbers,
477 ArrayRef<Expr*> Exprs,
478 SourceLocation EndLoc) {
479 bool IsSimple = (NumOutputs != 0 || NumInputs != 0);
Chad Rosier0731aff2012-08-17 21:19:40 +0000480 MSAsmStmt *NS =
Chad Rosierce2bcbf2012-10-18 15:49:40 +0000481 new (Context) MSAsmStmt(Context, AsmLoc, LBraceLoc, IsSimple,
482 /*IsVolatile*/ true, AsmToks, NumOutputs, NumInputs,
John McCallf413f5e2013-05-03 00:10:13 +0000483 Constraints, Exprs, AsmString,
484 Clobbers, EndLoc);
Chad Rosier0731aff2012-08-17 21:19:40 +0000485 return Owned(NS);
486}