Subversion Repositories QNX 8.QNX8 LLVM/Clang compiler suite

Rev

Details | Last modification | View Log | RSS feed

Rev Author Line No. Line
14 pmbaty 1
//===--- Attr.h - Classes for representing attributes ----------*- C++ -*-===//
2
//
3
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4
// See https://llvm.org/LICENSE.txt for license information.
5
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6
//
7
//===----------------------------------------------------------------------===//
8
//
9
//  This file defines the Attr interface and subclasses.
10
//
11
//===----------------------------------------------------------------------===//
12
 
13
#ifndef LLVM_CLANG_AST_ATTR_H
14
#define LLVM_CLANG_AST_ATTR_H
15
 
16
#include "clang/AST/ASTFwd.h"
17
#include "clang/AST/AttrIterator.h"
18
#include "clang/AST/Decl.h"
19
#include "clang/AST/Type.h"
20
#include "clang/Basic/AttrKinds.h"
21
#include "clang/Basic/AttributeCommonInfo.h"
22
#include "clang/Basic/LangOptions.h"
23
#include "clang/Basic/LLVM.h"
24
#include "clang/Basic/OpenMPKinds.h"
25
#include "clang/Basic/Sanitizers.h"
26
#include "clang/Basic/SourceLocation.h"
27
#include "llvm/Support/ErrorHandling.h"
28
#include "llvm/Support/VersionTuple.h"
29
#include "llvm/Support/raw_ostream.h"
30
#include <algorithm>
31
#include <cassert>
32
 
33
namespace clang {
34
class ASTContext;
35
class AttributeCommonInfo;
36
class FunctionDecl;
37
class OMPTraitInfo;
38
 
39
/// Attr - This represents one attribute.
40
class Attr : public AttributeCommonInfo {
41
private:
42
  unsigned AttrKind : 16;
43
 
44
protected:
45
  /// An index into the spelling list of an
46
  /// attribute defined in Attr.td file.
47
  unsigned Inherited : 1;
48
  unsigned IsPackExpansion : 1;
49
  unsigned Implicit : 1;
50
  // FIXME: These are properties of the attribute kind, not state for this
51
  // instance of the attribute.
52
  unsigned IsLateParsed : 1;
53
  unsigned InheritEvenIfAlreadyPresent : 1;
54
 
55
  void *operator new(size_t bytes) noexcept {
56
    llvm_unreachable("Attrs cannot be allocated with regular 'new'.");
57
  }
58
  void operator delete(void *data) noexcept {
59
    llvm_unreachable("Attrs cannot be released with regular 'delete'.");
60
  }
61
 
62
public:
63
  // Forward so that the regular new and delete do not hide global ones.
64
  void *operator new(size_t Bytes, ASTContext &C,
65
                     size_t Alignment = 8) noexcept {
66
    return ::operator new(Bytes, C, Alignment);
67
  }
68
  void operator delete(void *Ptr, ASTContext &C, size_t Alignment) noexcept {
69
    return ::operator delete(Ptr, C, Alignment);
70
  }
71
 
72
protected:
73
  Attr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
74
       attr::Kind AK, bool IsLateParsed)
75
      : AttributeCommonInfo(CommonInfo), AttrKind(AK), Inherited(false),
76
        IsPackExpansion(false), Implicit(false), IsLateParsed(IsLateParsed),
77
        InheritEvenIfAlreadyPresent(false) {}
78
 
79
public:
80
  attr::Kind getKind() const { return static_cast<attr::Kind>(AttrKind); }
81
 
82
  unsigned getSpellingListIndex() const {
83
    return getAttributeSpellingListIndex();
84
  }
85
  const char *getSpelling() const;
86
 
87
  SourceLocation getLocation() const { return getRange().getBegin(); }
88
 
89
  bool isInherited() const { return Inherited; }
90
 
91
  /// Returns true if the attribute has been implicitly created instead
92
  /// of explicitly written by the user.
93
  bool isImplicit() const { return Implicit; }
94
  void setImplicit(bool I) { Implicit = I; }
95
 
96
  void setPackExpansion(bool PE) { IsPackExpansion = PE; }
97
  bool isPackExpansion() const { return IsPackExpansion; }
98
 
99
  // Clone this attribute.
100
  Attr *clone(ASTContext &C) const;
101
 
102
  bool isLateParsed() const { return IsLateParsed; }
103
 
104
  // Pretty print this attribute.
105
  void printPretty(raw_ostream &OS, const PrintingPolicy &Policy) const;
106
 
107
  static StringRef getDocumentation(attr::Kind);
108
};
109
 
110
class TypeAttr : public Attr {
111
protected:
112
  TypeAttr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
113
           attr::Kind AK, bool IsLateParsed)
114
      : Attr(Context, CommonInfo, AK, IsLateParsed) {}
115
 
116
public:
117
  static bool classof(const Attr *A) {
118
    return A->getKind() >= attr::FirstTypeAttr &&
119
           A->getKind() <= attr::LastTypeAttr;
120
  }
121
};
122
 
123
class StmtAttr : public Attr {
124
protected:
125
  StmtAttr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
126
           attr::Kind AK, bool IsLateParsed)
127
      : Attr(Context, CommonInfo, AK, IsLateParsed) {}
128
 
129
public:
130
  static bool classof(const Attr *A) {
131
    return A->getKind() >= attr::FirstStmtAttr &&
132
           A->getKind() <= attr::LastStmtAttr;
133
  }
134
};
135
 
136
class InheritableAttr : public Attr {
137
protected:
138
  InheritableAttr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
139
                  attr::Kind AK, bool IsLateParsed,
140
                  bool InheritEvenIfAlreadyPresent)
141
      : Attr(Context, CommonInfo, AK, IsLateParsed) {
142
    this->InheritEvenIfAlreadyPresent = InheritEvenIfAlreadyPresent;
143
  }
144
 
145
public:
146
  void setInherited(bool I) { Inherited = I; }
147
 
148
  /// Should this attribute be inherited from a prior declaration even if it's
149
  /// explicitly provided in the current declaration?
150
  bool shouldInheritEvenIfAlreadyPresent() const {
151
    return InheritEvenIfAlreadyPresent;
152
  }
153
 
154
  // Implement isa/cast/dyncast/etc.
155
  static bool classof(const Attr *A) {
156
    return A->getKind() >= attr::FirstInheritableAttr &&
157
           A->getKind() <= attr::LastInheritableAttr;
158
  }
159
};
160
 
161
class DeclOrStmtAttr : public InheritableAttr {
162
protected:
163
  DeclOrStmtAttr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
164
                 attr::Kind AK, bool IsLateParsed,
165
                 bool InheritEvenIfAlreadyPresent)
166
      : InheritableAttr(Context, CommonInfo, AK, IsLateParsed,
167
                        InheritEvenIfAlreadyPresent) {}
168
 
169
public:
170
  static bool classof(const Attr *A) {
171
    return A->getKind() >= attr::FirstDeclOrStmtAttr &&
172
           A->getKind() <= attr::LastDeclOrStmtAttr;
173
  }
174
};
175
 
176
class InheritableParamAttr : public InheritableAttr {
177
protected:
178
  InheritableParamAttr(ASTContext &Context,
179
                       const AttributeCommonInfo &CommonInfo, attr::Kind AK,
180
                       bool IsLateParsed, bool InheritEvenIfAlreadyPresent)
181
      : InheritableAttr(Context, CommonInfo, AK, IsLateParsed,
182
                        InheritEvenIfAlreadyPresent) {}
183
 
184
public:
185
  // Implement isa/cast/dyncast/etc.
186
  static bool classof(const Attr *A) {
187
    return A->getKind() >= attr::FirstInheritableParamAttr &&
188
           A->getKind() <= attr::LastInheritableParamAttr;
189
  }
190
};
191
 
192
class HLSLAnnotationAttr : public InheritableAttr {
193
protected:
194
  HLSLAnnotationAttr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
195
                     attr::Kind AK, bool IsLateParsed,
196
                     bool InheritEvenIfAlreadyPresent)
197
      : InheritableAttr(Context, CommonInfo, AK, IsLateParsed,
198
                        InheritEvenIfAlreadyPresent) {}
199
 
200
public:
201
  // Implement isa/cast/dyncast/etc.
202
  static bool classof(const Attr *A) {
203
    return A->getKind() >= attr::FirstHLSLAnnotationAttr &&
204
           A->getKind() <= attr::LastHLSLAnnotationAttr;
205
  }
206
};
207
 
208
/// A parameter attribute which changes the argument-passing ABI rule
209
/// for the parameter.
210
class ParameterABIAttr : public InheritableParamAttr {
211
protected:
212
  ParameterABIAttr(ASTContext &Context, const AttributeCommonInfo &CommonInfo,
213
                   attr::Kind AK, bool IsLateParsed,
214
                   bool InheritEvenIfAlreadyPresent)
215
      : InheritableParamAttr(Context, CommonInfo, AK, IsLateParsed,
216
                             InheritEvenIfAlreadyPresent) {}
217
 
218
public:
219
  ParameterABI getABI() const {
220
    switch (getKind()) {
221
    case attr::SwiftContext:
222
      return ParameterABI::SwiftContext;
223
    case attr::SwiftAsyncContext:
224
      return ParameterABI::SwiftAsyncContext;
225
    case attr::SwiftErrorResult:
226
      return ParameterABI::SwiftErrorResult;
227
    case attr::SwiftIndirectResult:
228
      return ParameterABI::SwiftIndirectResult;
229
    default:
230
      llvm_unreachable("bad parameter ABI attribute kind");
231
    }
232
  }
233
 
234
  static bool classof(const Attr *A) {
235
    return A->getKind() >= attr::FirstParameterABIAttr &&
236
           A->getKind() <= attr::LastParameterABIAttr;
237
   }
238
};
239
 
240
/// A single parameter index whose accessors require each use to make explicit
241
/// the parameter index encoding needed.
242
class ParamIdx {
243
  // Idx is exposed only via accessors that specify specific encodings.
244
  unsigned Idx : 30;
245
  unsigned HasThis : 1;
246
  unsigned IsValid : 1;
247
 
248
  void assertComparable(const ParamIdx &I) const {
249
    assert(isValid() && I.isValid() &&
250
           "ParamIdx must be valid to be compared");
251
    // It's possible to compare indices from separate functions, but so far
252
    // it's not proven useful.  Moreover, it might be confusing because a
253
    // comparison on the results of getASTIndex might be inconsistent with a
254
    // comparison on the ParamIdx objects themselves.
255
    assert(HasThis == I.HasThis &&
256
           "ParamIdx must be for the same function to be compared");
257
  }
258
 
259
public:
260
  /// Construct an invalid parameter index (\c isValid returns false and
261
  /// accessors fail an assert).
262
  ParamIdx() : Idx(0), HasThis(false), IsValid(false) {}
263
 
264
  /// \param Idx is the parameter index as it is normally specified in
265
  /// attributes in the source: one-origin including any C++ implicit this
266
  /// parameter.
267
  ///
268
  /// \param D is the declaration containing the parameters.  It is used to
269
  /// determine if there is a C++ implicit this parameter.
270
  ParamIdx(unsigned Idx, const Decl *D)
271
      : Idx(Idx), HasThis(false), IsValid(true) {
272
    assert(Idx >= 1 && "Idx must be one-origin");
273
    if (const auto *FD = dyn_cast<FunctionDecl>(D))
274
      HasThis = FD->isCXXInstanceMember();
275
  }
276
 
277
  /// A type into which \c ParamIdx can be serialized.
278
  ///
279
  /// A static assertion that it's of the correct size follows the \c ParamIdx
280
  /// class definition.
281
  typedef uint32_t SerialType;
282
 
283
  /// Produce a representation that can later be passed to \c deserialize to
284
  /// construct an equivalent \c ParamIdx.
285
  SerialType serialize() const {
286
    return *reinterpret_cast<const SerialType *>(this);
287
  }
288
 
289
  /// Construct from a result from \c serialize.
290
  static ParamIdx deserialize(SerialType S) {
291
    // Using this two-step static_cast via void * instead of reinterpret_cast
292
    // silences a -Wstrict-aliasing false positive from GCC7 and earlier.
293
    void *ParamIdxPtr = static_cast<void *>(&S);
294
    ParamIdx P(*static_cast<ParamIdx *>(ParamIdxPtr));
295
    assert((!P.IsValid || P.Idx >= 1) && "valid Idx must be one-origin");
296
    return P;
297
  }
298
 
299
  /// Is this parameter index valid?
300
  bool isValid() const { return IsValid; }
301
 
302
  /// Get the parameter index as it would normally be encoded for attributes at
303
  /// the source level of representation: one-origin including any C++ implicit
304
  /// this parameter.
305
  ///
306
  /// This encoding thus makes sense for diagnostics, pretty printing, and
307
  /// constructing new attributes from a source-like specification.
308
  unsigned getSourceIndex() const {
309
    assert(isValid() && "ParamIdx must be valid");
310
    return Idx;
311
  }
312
 
313
  /// Get the parameter index as it would normally be encoded at the AST level
314
  /// of representation: zero-origin not including any C++ implicit this
315
  /// parameter.
316
  ///
317
  /// This is the encoding primarily used in Sema.  However, in diagnostics,
318
  /// Sema uses \c getSourceIndex instead.
319
  unsigned getASTIndex() const {
320
    assert(isValid() && "ParamIdx must be valid");
321
    assert(Idx >= 1 + HasThis &&
322
           "stored index must be base-1 and not specify C++ implicit this");
323
    return Idx - 1 - HasThis;
324
  }
325
 
326
  /// Get the parameter index as it would normally be encoded at the LLVM level
327
  /// of representation: zero-origin including any C++ implicit this parameter.
328
  ///
329
  /// This is the encoding primarily used in CodeGen.
330
  unsigned getLLVMIndex() const {
331
    assert(isValid() && "ParamIdx must be valid");
332
    assert(Idx >= 1 && "stored index must be base-1");
333
    return Idx - 1;
334
  }
335
 
336
  bool operator==(const ParamIdx &I) const {
337
    assertComparable(I);
338
    return Idx == I.Idx;
339
  }
340
  bool operator!=(const ParamIdx &I) const {
341
    assertComparable(I);
342
    return Idx != I.Idx;
343
  }
344
  bool operator<(const ParamIdx &I) const {
345
    assertComparable(I);
346
    return Idx < I.Idx;
347
  }
348
  bool operator>(const ParamIdx &I) const {
349
    assertComparable(I);
350
    return Idx > I.Idx;
351
  }
352
  bool operator<=(const ParamIdx &I) const {
353
    assertComparable(I);
354
    return Idx <= I.Idx;
355
  }
356
  bool operator>=(const ParamIdx &I) const {
357
    assertComparable(I);
358
    return Idx >= I.Idx;
359
  }
360
};
361
 
362
static_assert(sizeof(ParamIdx) == sizeof(ParamIdx::SerialType),
363
              "ParamIdx does not fit its serialization type");
364
 
365
#include "clang/AST/Attrs.inc"
366
 
367
inline const StreamingDiagnostic &operator<<(const StreamingDiagnostic &DB,
368
                                             const Attr *At) {
369
  DB.AddTaggedVal(reinterpret_cast<uint64_t>(At), DiagnosticsEngine::ak_attr);
370
  return DB;
371
}
372
}  // end namespace clang
373
 
374
#endif