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1 /* Definitions for -*- C++ -*- parsing and type checking.
2 Copyright (C) 1987-2021 Free Software Foundation, Inc.
3 Contributed by Michael Tiemann (tiemann@cygnus.com)
4
5 This file is part of GCC.
6
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
10 any later version.
11
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21 #ifndef GCC_CP_TREE_H
22 #define GCC_CP_TREE_H
23
24 #include "tm.h"
25 #include "hard-reg-set.h"
26 #include "function.h"
27
28 /* In order for the format checking to accept the C++ front end
29 diagnostic framework extensions, you must include this file before
30 diagnostic-core.h, not after. We override the definition of GCC_DIAG_STYLE
31 in c-common.h. */
32 #undef GCC_DIAG_STYLE
33 #define GCC_DIAG_STYLE __gcc_cxxdiag__
34 #if defined(GCC_DIAGNOSTIC_CORE_H) || defined (GCC_C_COMMON_H)
35 #error \
36 In order for the format checking to accept the C++ front end diagnostic \
37 framework extensions, you must include this file before diagnostic-core.h and \
38 c-common.h, not after.
39 #endif
40 #include "c-family/c-common.h"
41 #include "diagnostic.h"
42
43 /* A tree node, together with a location, so that we can track locations
44 (and ranges) during parsing.
45
46 The location is redundant for node kinds that have locations,
47 but not all node kinds do (e.g. constants, and references to
48 params, locals, etc), so we stash a copy here. */
49
50 extern location_t cp_expr_location (const_tree);
51
52 class cp_expr
53 {
54 public:
55 cp_expr () :
56 m_value (NULL), m_loc (UNKNOWN_LOCATION) {}
57
58 cp_expr (tree value) :
59 m_value (value), m_loc (cp_expr_location (m_value)) {}
60
61 cp_expr (tree value, location_t loc):
62 m_value (value), m_loc (loc)
63 {
64 protected_set_expr_location (value, loc);
65 }
66
67 /* Implicit conversions to tree. */
68 operator tree () const { return m_value; }
69 tree & operator* () { return m_value; }
70 tree operator* () const { return m_value; }
71 tree & operator-> () { return m_value; }
72 tree operator-> () const { return m_value; }
73
74 tree get_value () const { return m_value; }
75 location_t get_location () const { return m_loc; }
76 location_t get_start () const
77 {
78 source_range src_range = get_range_from_loc (line_table, m_loc);
79 return src_range.m_start;
80 }
81 location_t get_finish () const
82 {
83 source_range src_range = get_range_from_loc (line_table, m_loc);
84 return src_range.m_finish;
85 }
86
87 void set_location (location_t loc)
88 {
89 protected_set_expr_location (m_value, loc);
90 m_loc = loc;
91 }
92
93 void set_range (location_t start, location_t finish)
94 {
95 set_location (make_location (m_loc, start, finish));
96 }
97
98 cp_expr& maybe_add_location_wrapper ()
99 {
100 m_value = maybe_wrap_with_location (m_value, m_loc);
101 return *this;
102 }
103
104 private:
105 tree m_value;
106 location_t m_loc;
107 };
108
109 inline bool
110 operator == (const cp_expr &lhs, tree rhs)
111 {
112 return lhs.get_value () == rhs;
113 }
114
115 \f
116 enum cp_tree_index
117 {
118 CPTI_WCHAR_DECL,
119 CPTI_VTABLE_ENTRY_TYPE,
120 CPTI_DELTA_TYPE,
121 CPTI_VTABLE_INDEX_TYPE,
122 CPTI_CLEANUP_TYPE,
123 CPTI_VTT_PARM_TYPE,
124
125 CPTI_CLASS_TYPE,
126 CPTI_UNKNOWN_TYPE,
127 CPTI_INIT_LIST_TYPE,
128 CPTI_EXPLICIT_VOID_LIST,
129 CPTI_VTBL_TYPE,
130 CPTI_VTBL_PTR_TYPE,
131 CPTI_GLOBAL,
132 CPTI_ABORT_FNDECL,
133 CPTI_AGGR_TAG,
134 CPTI_CONV_OP_MARKER,
135
136 CPTI_CTOR_IDENTIFIER,
137 CPTI_COMPLETE_CTOR_IDENTIFIER,
138 CPTI_BASE_CTOR_IDENTIFIER,
139 CPTI_DTOR_IDENTIFIER,
140 CPTI_COMPLETE_DTOR_IDENTIFIER,
141 CPTI_BASE_DTOR_IDENTIFIER,
142 CPTI_DELETING_DTOR_IDENTIFIER,
143 CPTI_CONV_OP_IDENTIFIER,
144 CPTI_DELTA_IDENTIFIER,
145 CPTI_IN_CHARGE_IDENTIFIER,
146 CPTI_VTT_PARM_IDENTIFIER,
147 CPTI_AS_BASE_IDENTIFIER,
148 CPTI_THIS_IDENTIFIER,
149 CPTI_PFN_IDENTIFIER,
150 CPTI_VPTR_IDENTIFIER,
151 CPTI_GLOBAL_IDENTIFIER,
152 CPTI_ANON_IDENTIFIER,
153 CPTI_AUTO_IDENTIFIER,
154 CPTI_DECLTYPE_AUTO_IDENTIFIER,
155 CPTI_INIT_LIST_IDENTIFIER,
156 CPTI_FOR_RANGE__IDENTIFIER,
157 CPTI_FOR_BEGIN__IDENTIFIER,
158 CPTI_FOR_END__IDENTIFIER,
159 CPTI_FOR_RANGE_IDENTIFIER,
160 CPTI_FOR_BEGIN_IDENTIFIER,
161 CPTI_FOR_END_IDENTIFIER,
162 CPTI_ABI_TAG_IDENTIFIER,
163 CPTI_ALIGNED_IDENTIFIER,
164 CPTI_BEGIN_IDENTIFIER,
165 CPTI_END_IDENTIFIER,
166 CPTI_GET_IDENTIFIER,
167 CPTI_GNU_IDENTIFIER,
168 CPTI_TUPLE_ELEMENT_IDENTIFIER,
169 CPTI_TUPLE_SIZE_IDENTIFIER,
170 CPTI_TYPE_IDENTIFIER,
171 CPTI_VALUE_IDENTIFIER,
172 CPTI_FUN_IDENTIFIER,
173 CPTI_CLOSURE_IDENTIFIER,
174 CPTI_HEAP_UNINIT_IDENTIFIER,
175 CPTI_HEAP_IDENTIFIER,
176 CPTI_HEAP_DELETED_IDENTIFIER,
177 CPTI_HEAP_VEC_UNINIT_IDENTIFIER,
178 CPTI_HEAP_VEC_IDENTIFIER,
179
180 CPTI_LANG_NAME_C,
181 CPTI_LANG_NAME_CPLUSPLUS,
182
183 CPTI_EMPTY_EXCEPT_SPEC,
184 CPTI_NOEXCEPT_TRUE_SPEC,
185 CPTI_NOEXCEPT_FALSE_SPEC,
186 CPTI_NOEXCEPT_DEFERRED_SPEC,
187
188 CPTI_NULLPTR,
189 CPTI_NULLPTR_TYPE,
190
191 CPTI_ANY_TARG,
192
193 CPTI_MODULE_HWM,
194 /* Nodes after here change during compilation, or should not be in
195 the module's global tree table. Such nodes must be locatable
196 via name lookup or type-construction, as those are the only
197 cross-TU matching capabilities remaining. */
198
199 /* We must find these via the global namespace. */
200 CPTI_STD,
201 CPTI_ABI,
202
203 /* These are created at init time, but the library/headers provide
204 definitions. */
205 CPTI_ALIGN_TYPE,
206 CPTI_CONST_TYPE_INFO_TYPE,
207 CPTI_TYPE_INFO_PTR_TYPE,
208 CPTI_TERMINATE_FN,
209 CPTI_CALL_UNEXPECTED_FN,
210
211 /* These are lazily inited. */
212 CPTI_GET_EXCEPTION_PTR_FN,
213 CPTI_BEGIN_CATCH_FN,
214 CPTI_END_CATCH_FN,
215 CPTI_ALLOCATE_EXCEPTION_FN,
216 CPTI_FREE_EXCEPTION_FN,
217 CPTI_THROW_FN,
218 CPTI_RETHROW_FN,
219 CPTI_ATEXIT_FN_PTR_TYPE,
220 CPTI_ATEXIT,
221 CPTI_DSO_HANDLE,
222 CPTI_DCAST,
223
224 CPTI_SOURCE_LOCATION_IMPL,
225
226 CPTI_FALLBACK_DFLOAT32_TYPE,
227 CPTI_FALLBACK_DFLOAT64_TYPE,
228 CPTI_FALLBACK_DFLOAT128_TYPE,
229
230 CPTI_MAX
231 };
232
233 extern GTY(()) tree cp_global_trees[CPTI_MAX];
234
235 #define wchar_decl_node cp_global_trees[CPTI_WCHAR_DECL]
236 #define vtable_entry_type cp_global_trees[CPTI_VTABLE_ENTRY_TYPE]
237 /* The type used to represent an offset by which to adjust the `this'
238 pointer in pointer-to-member types. */
239 #define delta_type_node cp_global_trees[CPTI_DELTA_TYPE]
240 /* The type used to represent an index into the vtable. */
241 #define vtable_index_type cp_global_trees[CPTI_VTABLE_INDEX_TYPE]
242
243 #define class_type_node cp_global_trees[CPTI_CLASS_TYPE]
244 #define unknown_type_node cp_global_trees[CPTI_UNKNOWN_TYPE]
245 #define init_list_type_node cp_global_trees[CPTI_INIT_LIST_TYPE]
246 #define explicit_void_list_node cp_global_trees[CPTI_EXPLICIT_VOID_LIST]
247 #define vtbl_type_node cp_global_trees[CPTI_VTBL_TYPE]
248 #define vtbl_ptr_type_node cp_global_trees[CPTI_VTBL_PTR_TYPE]
249 #define std_node cp_global_trees[CPTI_STD]
250 #define abi_node cp_global_trees[CPTI_ABI]
251 #define global_namespace cp_global_trees[CPTI_GLOBAL]
252 #define const_type_info_type_node cp_global_trees[CPTI_CONST_TYPE_INFO_TYPE]
253 #define type_info_ptr_type cp_global_trees[CPTI_TYPE_INFO_PTR_TYPE]
254 #define conv_op_marker cp_global_trees[CPTI_CONV_OP_MARKER]
255 #define abort_fndecl cp_global_trees[CPTI_ABORT_FNDECL]
256 #define current_aggr cp_global_trees[CPTI_AGGR_TAG]
257 #define nullptr_node cp_global_trees[CPTI_NULLPTR]
258 #define nullptr_type_node cp_global_trees[CPTI_NULLPTR_TYPE]
259 /* std::align_val_t */
260 #define align_type_node cp_global_trees[CPTI_ALIGN_TYPE]
261
262 /* We cache these tree nodes so as to call get_identifier less frequently.
263 For identifiers for functions, including special member functions such
264 as ctors and assignment operators, the nodes can be used (among other
265 things) to iterate over their overloads defined by/for a type. For
266 example:
267
268 tree ovlid = assign_op_identifier;
269 tree overloads = get_class_binding (type, ovlid);
270 for (ovl_iterator it (overloads); it; ++it) { ... }
271
272 iterates over the set of implicitly and explicitly defined overloads
273 of the assignment operator for type (including the copy and move
274 assignment operators, whether deleted or not). */
275
276 /* The name of a constructor that takes an in-charge parameter to
277 decide whether or not to construct virtual base classes. */
278 #define ctor_identifier cp_global_trees[CPTI_CTOR_IDENTIFIER]
279 /* The name of a constructor that constructs virtual base classes. */
280 #define complete_ctor_identifier cp_global_trees[CPTI_COMPLETE_CTOR_IDENTIFIER]
281 /* The name of a constructor that does not construct virtual base classes. */
282 #define base_ctor_identifier cp_global_trees[CPTI_BASE_CTOR_IDENTIFIER]
283 /* The name of a destructor that takes an in-charge parameter to
284 decide whether or not to destroy virtual base classes and whether
285 or not to delete the object. */
286 #define dtor_identifier cp_global_trees[CPTI_DTOR_IDENTIFIER]
287 /* The name of a destructor that destroys virtual base classes. */
288 #define complete_dtor_identifier cp_global_trees[CPTI_COMPLETE_DTOR_IDENTIFIER]
289 /* The name of a destructor that does not destroy virtual base
290 classes. */
291 #define base_dtor_identifier cp_global_trees[CPTI_BASE_DTOR_IDENTIFIER]
292 /* The name of a destructor that destroys virtual base classes, and
293 then deletes the entire object. */
294 #define deleting_dtor_identifier cp_global_trees[CPTI_DELETING_DTOR_IDENTIFIER]
295
296 /* The name used for conversion operators -- but note that actual
297 conversion functions use special identifiers outside the identifier
298 table. */
299 #define conv_op_identifier cp_global_trees[CPTI_CONV_OP_IDENTIFIER]
300
301 #define delta_identifier cp_global_trees[CPTI_DELTA_IDENTIFIER]
302 #define in_charge_identifier cp_global_trees[CPTI_IN_CHARGE_IDENTIFIER]
303 /* The name of the parameter that contains a pointer to the VTT to use
304 for this subobject constructor or destructor. */
305 #define vtt_parm_identifier cp_global_trees[CPTI_VTT_PARM_IDENTIFIER]
306 #define as_base_identifier cp_global_trees[CPTI_AS_BASE_IDENTIFIER]
307 #define this_identifier cp_global_trees[CPTI_THIS_IDENTIFIER]
308 #define pfn_identifier cp_global_trees[CPTI_PFN_IDENTIFIER]
309 #define vptr_identifier cp_global_trees[CPTI_VPTR_IDENTIFIER]
310 /* The name of the ::, std & anon namespaces. */
311 #define global_identifier cp_global_trees[CPTI_GLOBAL_IDENTIFIER]
312 #define anon_identifier cp_global_trees[CPTI_ANON_IDENTIFIER]
313 /* auto and declspec(auto) identifiers. */
314 #define auto_identifier cp_global_trees[CPTI_AUTO_IDENTIFIER]
315 #define decltype_auto_identifier cp_global_trees[CPTI_DECLTYPE_AUTO_IDENTIFIER]
316 #define init_list_identifier cp_global_trees[CPTI_INIT_LIST_IDENTIFIER]
317 #define for_range__identifier cp_global_trees[CPTI_FOR_RANGE__IDENTIFIER]
318 #define for_begin__identifier cp_global_trees[CPTI_FOR_BEGIN__IDENTIFIER]
319 #define for_end__identifier cp_global_trees[CPTI_FOR_END__IDENTIFIER]
320 #define for_range_identifier cp_global_trees[CPTI_FOR_RANGE_IDENTIFIER]
321 #define for_begin_identifier cp_global_trees[CPTI_FOR_BEGIN_IDENTIFIER]
322 #define for_end_identifier cp_global_trees[CPTI_FOR_END_IDENTIFIER]
323 #define abi_tag_identifier cp_global_trees[CPTI_ABI_TAG_IDENTIFIER]
324 #define aligned_identifier cp_global_trees[CPTI_ALIGNED_IDENTIFIER]
325 #define begin_identifier cp_global_trees[CPTI_BEGIN_IDENTIFIER]
326 #define end_identifier cp_global_trees[CPTI_END_IDENTIFIER]
327 #define get__identifier cp_global_trees[CPTI_GET_IDENTIFIER]
328 #define gnu_identifier cp_global_trees[CPTI_GNU_IDENTIFIER]
329 #define tuple_element_identifier cp_global_trees[CPTI_TUPLE_ELEMENT_IDENTIFIER]
330 #define tuple_size_identifier cp_global_trees[CPTI_TUPLE_SIZE_IDENTIFIER]
331 #define type_identifier cp_global_trees[CPTI_TYPE_IDENTIFIER]
332 #define value_identifier cp_global_trees[CPTI_VALUE_IDENTIFIER]
333 #define fun_identifier cp_global_trees[CPTI_FUN_IDENTIFIER]
334 #define closure_identifier cp_global_trees[CPTI_CLOSURE_IDENTIFIER]
335 #define heap_uninit_identifier cp_global_trees[CPTI_HEAP_UNINIT_IDENTIFIER]
336 #define heap_identifier cp_global_trees[CPTI_HEAP_IDENTIFIER]
337 #define heap_deleted_identifier cp_global_trees[CPTI_HEAP_DELETED_IDENTIFIER]
338 #define heap_vec_uninit_identifier cp_global_trees[CPTI_HEAP_VEC_UNINIT_IDENTIFIER]
339 #define heap_vec_identifier cp_global_trees[CPTI_HEAP_VEC_IDENTIFIER]
340 #define lang_name_c cp_global_trees[CPTI_LANG_NAME_C]
341 #define lang_name_cplusplus cp_global_trees[CPTI_LANG_NAME_CPLUSPLUS]
342
343 /* Exception specifiers used for throw(), noexcept(true),
344 noexcept(false) and deferred noexcept. We rely on these being
345 uncloned. */
346 #define empty_except_spec cp_global_trees[CPTI_EMPTY_EXCEPT_SPEC]
347 #define noexcept_true_spec cp_global_trees[CPTI_NOEXCEPT_TRUE_SPEC]
348 #define noexcept_false_spec cp_global_trees[CPTI_NOEXCEPT_FALSE_SPEC]
349 #define noexcept_deferred_spec cp_global_trees[CPTI_NOEXCEPT_DEFERRED_SPEC]
350
351 /* Exception handling function declarations. */
352 #define terminate_fn cp_global_trees[CPTI_TERMINATE_FN]
353 #define call_unexpected_fn cp_global_trees[CPTI_CALL_UNEXPECTED_FN]
354 #define get_exception_ptr_fn cp_global_trees[CPTI_GET_EXCEPTION_PTR_FN]
355 #define begin_catch_fn cp_global_trees[CPTI_BEGIN_CATCH_FN]
356 #define end_catch_fn cp_global_trees[CPTI_END_CATCH_FN]
357 #define allocate_exception_fn cp_global_trees[CPTI_ALLOCATE_EXCEPTION_FN]
358 #define free_exception_fn cp_global_trees[CPTI_FREE_EXCEPTION_FN]
359 #define throw_fn cp_global_trees[CPTI_THROW_FN]
360 #define rethrow_fn cp_global_trees[CPTI_RETHROW_FN]
361
362 /* The type of the function-pointer argument to "__cxa_atexit" (or
363 "std::atexit", if "__cxa_atexit" is not being used). */
364 #define atexit_fn_ptr_type_node cp_global_trees[CPTI_ATEXIT_FN_PTR_TYPE]
365
366 /* A pointer to `std::atexit'. */
367 #define atexit_node cp_global_trees[CPTI_ATEXIT]
368
369 /* A pointer to `__dso_handle'. */
370 #define dso_handle_node cp_global_trees[CPTI_DSO_HANDLE]
371
372 /* The declaration of the dynamic_cast runtime. */
373 #define dynamic_cast_node cp_global_trees[CPTI_DCAST]
374
375 /* The type of a destructor. */
376 #define cleanup_type cp_global_trees[CPTI_CLEANUP_TYPE]
377
378 /* The type of the vtt parameter passed to subobject constructors and
379 destructors. */
380 #define vtt_parm_type cp_global_trees[CPTI_VTT_PARM_TYPE]
381
382 /* A node which matches any template argument. */
383 #define any_targ_node cp_global_trees[CPTI_ANY_TARG]
384
385 /* std::source_location::__impl class. */
386 #define source_location_impl cp_global_trees[CPTI_SOURCE_LOCATION_IMPL]
387
388 /* Node to indicate default access. This must be distinct from the
389 access nodes in tree.h. */
390
391 #define access_default_node null_node
392
393 /* Variant of dfloat{32,64,128}_type_node only used for fundamental
394 rtti purposes if DFP is disabled. */
395 #define fallback_dfloat32_type cp_global_trees[CPTI_FALLBACK_DFLOAT32_TYPE]
396 #define fallback_dfloat64_type cp_global_trees[CPTI_FALLBACK_DFLOAT64_TYPE]
397 #define fallback_dfloat128_type cp_global_trees[CPTI_FALLBACK_DFLOAT128_TYPE]
398
399 \f
400 #include "name-lookup.h"
401
402 /* Usage of TREE_LANG_FLAG_?:
403 0: IDENTIFIER_KIND_BIT_0 (in IDENTIFIER_NODE)
404 NEW_EXPR_USE_GLOBAL (in NEW_EXPR).
405 COND_EXPR_IS_VEC_DELETE (in COND_EXPR).
406 DELETE_EXPR_USE_GLOBAL (in DELETE_EXPR).
407 COMPOUND_EXPR_OVERLOADED (in COMPOUND_EXPR).
408 CLEANUP_P (in TRY_BLOCK)
409 AGGR_INIT_VIA_CTOR_P (in AGGR_INIT_EXPR)
410 PTRMEM_OK_P (in ADDR_EXPR, OFFSET_REF, SCOPE_REF)
411 PAREN_STRING_LITERAL_P (in STRING_CST)
412 CP_DECL_THREAD_LOCAL_P (in VAR_DECL)
413 KOENIG_LOOKUP_P (in CALL_EXPR)
414 STATEMENT_LIST_NO_SCOPE (in STATEMENT_LIST).
415 EXPR_STMT_STMT_EXPR_RESULT (in EXPR_STMT)
416 STMT_EXPR_NO_SCOPE (in STMT_EXPR)
417 BIND_EXPR_TRY_BLOCK (in BIND_EXPR)
418 TYPENAME_IS_ENUM_P (in TYPENAME_TYPE)
419 OMP_FOR_GIMPLIFYING_P (in OMP_FOR, OMP_SIMD, OMP_DISTRIBUTE,
420 and OMP_TASKLOOP)
421 BASELINK_QUALIFIED_P (in BASELINK)
422 TARGET_EXPR_IMPLICIT_P (in TARGET_EXPR)
423 TEMPLATE_PARM_PARAMETER_PACK (in TEMPLATE_PARM_INDEX)
424 ATTR_IS_DEPENDENT (in the TREE_LIST for an attribute)
425 ABI_TAG_IMPLICIT (in the TREE_LIST for the argument of abi_tag)
426 LAMBDA_CAPTURE_EXPLICIT_P (in a TREE_LIST in LAMBDA_EXPR_CAPTURE_LIST)
427 PARENTHESIZED_LIST_P (in the TREE_LIST for a parameter-declaration-list)
428 CONSTRUCTOR_IS_DIRECT_INIT (in CONSTRUCTOR)
429 LAMBDA_EXPR_CAPTURES_THIS_P (in LAMBDA_EXPR)
430 DECLTYPE_FOR_LAMBDA_CAPTURE (in DECLTYPE_TYPE)
431 VEC_INIT_EXPR_IS_CONSTEXPR (in VEC_INIT_EXPR)
432 DECL_OVERRIDE_P (in FUNCTION_DECL)
433 IMPLICIT_CONV_EXPR_DIRECT_INIT (in IMPLICIT_CONV_EXPR)
434 TRANSACTION_EXPR_IS_STMT (in TRANSACTION_EXPR)
435 CONVERT_EXPR_VBASE_PATH (in CONVERT_EXPR)
436 PACK_EXPANSION_LOCAL_P (in *_PACK_EXPANSION)
437 TINFO_HAS_ACCESS_ERRORS (in TEMPLATE_INFO)
438 SIZEOF_EXPR_TYPE_P (in SIZEOF_EXPR)
439 COMPOUND_REQ_NOEXCEPT_P (in COMPOUND_REQ)
440 WILDCARD_PACK_P (in WILDCARD_DECL)
441 BLOCK_OUTER_CURLY_BRACE_P (in BLOCK)
442 FOLD_EXPR_MODOP_P (*_FOLD_EXPR)
443 IF_STMT_CONSTEXPR_P (IF_STMT)
444 TEMPLATE_TYPE_PARM_FOR_CLASS (TEMPLATE_TYPE_PARM)
445 DECL_NAMESPACE_INLINE_P (in NAMESPACE_DECL)
446 SWITCH_STMT_ALL_CASES_P (in SWITCH_STMT)
447 REINTERPRET_CAST_P (in NOP_EXPR)
448 ALIGNOF_EXPR_STD_P (in ALIGNOF_EXPR)
449 OVL_DEDUP_P (in OVERLOAD)
450 ATOMIC_CONSTR_MAP_INSTANTIATED_P (in ATOMIC_CONSTR)
451 1: IDENTIFIER_KIND_BIT_1 (in IDENTIFIER_NODE)
452 TI_PENDING_TEMPLATE_FLAG.
453 TEMPLATE_PARMS_FOR_INLINE.
454 DELETE_EXPR_USE_VEC (in DELETE_EXPR).
455 (TREE_CALLS_NEW) (in _EXPR or _REF) (commented-out).
456 ICS_ELLIPSIS_FLAG (in _CONV)
457 DECL_INITIALIZED_P (in VAR_DECL)
458 TYPENAME_IS_CLASS_P (in TYPENAME_TYPE)
459 STMT_IS_FULL_EXPR_P (in _STMT)
460 TARGET_EXPR_LIST_INIT_P (in TARGET_EXPR)
461 LAMBDA_EXPR_MUTABLE_P (in LAMBDA_EXPR)
462 DECL_FINAL_P (in FUNCTION_DECL)
463 QUALIFIED_NAME_IS_TEMPLATE (in SCOPE_REF)
464 CONSTRUCTOR_IS_DEPENDENT (in CONSTRUCTOR)
465 TINFO_USED_TEMPLATE_ID (in TEMPLATE_INFO)
466 PACK_EXPANSION_SIZEOF_P (in *_PACK_EXPANSION)
467 OVL_USING_P (in OVERLOAD)
468 IMPLICIT_CONV_EXPR_NONTYPE_ARG (in IMPLICIT_CONV_EXPR)
469 2: IDENTIFIER_KIND_BIT_2 (in IDENTIFIER_NODE)
470 ICS_THIS_FLAG (in _CONV)
471 DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (in VAR_DECL)
472 STATEMENT_LIST_TRY_BLOCK (in STATEMENT_LIST)
473 TYPENAME_IS_RESOLVING_P (in TYPE_NAME_TYPE)
474 TARGET_EXPR_DIRECT_INIT_P (in TARGET_EXPR)
475 FNDECL_USED_AUTO (in FUNCTION_DECL)
476 DECLTYPE_FOR_LAMBDA_PROXY (in DECLTYPE_TYPE)
477 REF_PARENTHESIZED_P (in COMPONENT_REF, INDIRECT_REF, SCOPE_REF, VIEW_CONVERT_EXPR)
478 AGGR_INIT_ZERO_FIRST (in AGGR_INIT_EXPR)
479 CONSTRUCTOR_MUTABLE_POISON (in CONSTRUCTOR)
480 OVL_HIDDEN_P (in OVERLOAD)
481 SWITCH_STMT_NO_BREAK_P (in SWITCH_STMT)
482 LAMBDA_EXPR_CAPTURE_OPTIMIZED (in LAMBDA_EXPR)
483 IMPLICIT_CONV_EXPR_BRACED_INIT (in IMPLICIT_CONV_EXPR)
484 PACK_EXPANSION_AUTO_P (in *_PACK_EXPANSION)
485 3: IMPLICIT_RVALUE_P (in NON_LVALUE_EXPR or STATIC_CAST_EXPR)
486 ICS_BAD_FLAG (in _CONV)
487 FN_TRY_BLOCK_P (in TRY_BLOCK)
488 BIND_EXPR_BODY_BLOCK (in BIND_EXPR)
489 CALL_EXPR_ORDERED_ARGS (in CALL_EXPR, AGGR_INIT_EXPR)
490 DECLTYPE_FOR_REF_CAPTURE (in DECLTYPE_TYPE)
491 CONSTRUCTOR_C99_COMPOUND_LITERAL (in CONSTRUCTOR)
492 OVL_NESTED_P (in OVERLOAD)
493 DECL_MODULE_EXPORT_P (in _DECL)
494 4: IDENTIFIER_MARKED (IDENTIFIER_NODEs)
495 TREE_HAS_CONSTRUCTOR (in INDIRECT_REF, SAVE_EXPR, CONSTRUCTOR,
496 CALL_EXPR, or FIELD_DECL).
497 DECL_TINFO_P (in VAR_DECL, TYPE_DECL)
498 FUNCTION_REF_QUALIFIED (in FUNCTION_TYPE, METHOD_TYPE)
499 OVL_LOOKUP_P (in OVERLOAD)
500 LOOKUP_FOUND_P (in RECORD_TYPE, UNION_TYPE, ENUMERAL_TYPE, NAMESPACE_DECL)
501 5: IDENTIFIER_VIRTUAL_P (in IDENTIFIER_NODE)
502 FUNCTION_RVALUE_QUALIFIED (in FUNCTION_TYPE, METHOD_TYPE)
503 CALL_EXPR_REVERSE_ARGS (in CALL_EXPR, AGGR_INIT_EXPR)
504 CONSTRUCTOR_PLACEHOLDER_BOUNDARY (in CONSTRUCTOR)
505 OVL_EXPORT_P (in OVERLOAD)
506 6: TYPE_MARKED_P (in _TYPE)
507 DECL_NONTRIVIALLY_INITIALIZED_P (in VAR_DECL)
508 RANGE_FOR_IVDEP (in RANGE_FOR_STMT)
509 CALL_EXPR_OPERATOR_SYNTAX (in CALL_EXPR, AGGR_INIT_EXPR)
510 CONSTRUCTOR_IS_DESIGNATED_INIT (in CONSTRUCTOR)
511
512 Usage of TYPE_LANG_FLAG_?:
513 0: TYPE_DEPENDENT_P
514 1: TYPE_HAS_USER_CONSTRUCTOR.
515 2: TYPE_HAS_LATE_RETURN_TYPE (in FUNCTION_TYPE, METHOD_TYPE)
516 TYPE_PTRMEMFUNC_FLAG (in RECORD_TYPE)
517 4: TYPE_HAS_NONTRIVIAL_DESTRUCTOR
518 5: CLASS_TYPE_P (in RECORD_TYPE and UNION_TYPE)
519 ENUM_FIXED_UNDERLYING_TYPE_P (in ENUMERAL_TYPE)
520 AUTO_IS_DECLTYPE (in TEMPLATE_TYPE_PARM)
521 6: TYPE_DEPENDENT_P_VALID
522
523 Usage of DECL_LANG_FLAG_?:
524 0: DECL_TEMPLATE_PARM_P (in PARM_DECL, CONST_DECL, TYPE_DECL, or TEMPLATE_DECL)
525 DECL_LOCAL_DECL_P (in FUNCTION_DECL, VAR_DECL)
526 DECL_MUTABLE_P (in FIELD_DECL)
527 DECL_DEPENDENT_P (in USING_DECL)
528 LABEL_DECL_BREAK (in LABEL_DECL)
529 1: C_TYPEDEF_EXPLICITLY_SIGNED (in TYPE_DECL).
530 DECL_TEMPLATE_INSTANTIATED (in a VAR_DECL or a FUNCTION_DECL)
531 DECL_MEMBER_TEMPLATE_P (in TEMPLATE_DECL)
532 USING_DECL_TYPENAME_P (in USING_DECL)
533 DECL_VLA_CAPTURE_P (in FIELD_DECL)
534 DECL_ARRAY_PARAMETER_P (in PARM_DECL)
535 LABEL_DECL_CONTINUE (in LABEL_DECL)
536 2: DECL_THIS_EXTERN (in VAR_DECL, FUNCTION_DECL or PARM_DECL)
537 DECL_IMPLICIT_TYPEDEF_P (in a TYPE_DECL)
538 DECL_CONSTRAINT_VAR_P (in a PARM_DECL)
539 TEMPLATE_DECL_COMPLEX_ALIAS_P (in TEMPLATE_DECL)
540 DECL_INSTANTIATING_NSDMI_P (in a FIELD_DECL)
541 LABEL_DECL_CDTOR (in LABEL_DECL)
542 USING_DECL_UNRELATED_P (in USING_DECL)
543 3: DECL_IN_AGGR_P.
544 4: DECL_C_BIT_FIELD (in a FIELD_DECL)
545 DECL_ANON_UNION_VAR_P (in a VAR_DECL)
546 DECL_SELF_REFERENCE_P (in a TYPE_DECL)
547 DECL_INVALID_OVERRIDER_P (in a FUNCTION_DECL)
548 DECL_UNINSTANIATED_TEMPLATE_FRIEND_P (in TEMPLATE_DECL)
549 5: DECL_INTERFACE_KNOWN.
550 6: DECL_THIS_STATIC (in VAR_DECL, FUNCTION_DECL or PARM_DECL)
551 DECL_FIELD_IS_BASE (in FIELD_DECL)
552 TYPE_DECL_ALIAS_P (in TYPE_DECL)
553 7: DECL_THUNK_P (in a member FUNCTION_DECL)
554 DECL_NORMAL_CAPTURE_P (in FIELD_DECL)
555 DECL_DECLARED_CONSTINIT_P (in VAR_DECL)
556 8: DECL_DECLARED_CONSTEXPR_P (in VAR_DECL, FUNCTION_DECL)
557
558 Usage of language-independent fields in a language-dependent manner:
559
560 TYPE_ALIAS_SET
561 This field is used by TYPENAME_TYPEs, TEMPLATE_TYPE_PARMs, and so
562 forth as a substitute for the mark bits provided in `lang_type'.
563 At present, only the six low-order bits are used.
564
565 TYPE_LANG_SLOT_1
566 For a FUNCTION_TYPE or METHOD_TYPE, this is TYPE_RAISES_EXCEPTIONS.
567 For a POINTER_TYPE (to a METHOD_TYPE), this is TYPE_PTRMEMFUNC_TYPE.
568 For an ENUMERAL_TYPE, BOUND_TEMPLATE_TEMPLATE_PARM_TYPE,
569 RECORD_TYPE or UNION_TYPE this is TYPE_TEMPLATE_INFO,
570
571 BINFO_VIRTUALS
572 For a binfo, this is a TREE_LIST. There is an entry for each
573 virtual function declared either in BINFO or its direct and
574 indirect primary bases.
575
576 The BV_DELTA of each node gives the amount by which to adjust the
577 `this' pointer when calling the function. If the method is an
578 overridden version of a base class method, then it is assumed
579 that, prior to adjustment, the this pointer points to an object
580 of the base class.
581
582 The BV_VCALL_INDEX of each node, if non-NULL, gives the vtable
583 index of the vcall offset for this entry.
584
585 The BV_FN is the declaration for the virtual function itself.
586
587 If BV_LOST_PRIMARY is set, it means that this entry is for a lost
588 primary virtual base and can be left null in the vtable.
589
590 BINFO_VTABLE
591 This is an expression with POINTER_TYPE that gives the value
592 to which the vptr should be initialized. Use get_vtbl_decl_for_binfo
593 to extract the VAR_DECL for the complete vtable.
594
595 DECL_VINDEX
596 This field is NULL for a non-virtual function. For a virtual
597 function, it is eventually set to an INTEGER_CST indicating the
598 index in the vtable at which this function can be found. When
599 a virtual function is declared, but before it is known what
600 function is overridden, this field is the error_mark_node.
601
602 Temporarily, it may be set to a TREE_LIST whose TREE_VALUE is
603 the virtual function this one overrides, and whose TREE_CHAIN is
604 the old DECL_VINDEX. */
605
606 /* Language-specific tree checkers. */
607
608 #define VAR_OR_FUNCTION_DECL_CHECK(NODE) \
609 TREE_CHECK2(NODE,VAR_DECL,FUNCTION_DECL)
610
611 #define TYPE_FUNCTION_OR_TEMPLATE_DECL_CHECK(NODE) \
612 TREE_CHECK3(NODE,TYPE_DECL,TEMPLATE_DECL,FUNCTION_DECL)
613
614 #define TYPE_FUNCTION_OR_TEMPLATE_DECL_P(NODE) \
615 (TREE_CODE (NODE) == TYPE_DECL || TREE_CODE (NODE) == TEMPLATE_DECL \
616 || TREE_CODE (NODE) == FUNCTION_DECL)
617
618 #define VAR_FUNCTION_OR_PARM_DECL_CHECK(NODE) \
619 TREE_CHECK3(NODE,VAR_DECL,FUNCTION_DECL,PARM_DECL)
620
621 #define VAR_TEMPL_TYPE_OR_FUNCTION_DECL_CHECK(NODE) \
622 TREE_CHECK4(NODE,VAR_DECL,FUNCTION_DECL,TYPE_DECL,TEMPLATE_DECL)
623
624 #define VAR_TEMPL_TYPE_FIELD_OR_FUNCTION_DECL_CHECK(NODE) \
625 TREE_CHECK5(NODE,VAR_DECL,FIELD_DECL,FUNCTION_DECL,TYPE_DECL,TEMPLATE_DECL)
626
627 #define BOUND_TEMPLATE_TEMPLATE_PARM_TYPE_CHECK(NODE) \
628 TREE_CHECK(NODE,BOUND_TEMPLATE_TEMPLATE_PARM)
629
630 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
631
632 /* Returns t iff the node can have a TEMPLATE_INFO field. */
633
634 inline tree
635 template_info_decl_check (const_tree t, const char* f, int l, const char* fn)
636 {
637 switch (TREE_CODE (t))
638 {
639 case VAR_DECL:
640 case FUNCTION_DECL:
641 case FIELD_DECL:
642 case TYPE_DECL:
643 case CONCEPT_DECL:
644 case TEMPLATE_DECL:
645 return const_cast<tree>(t);
646 default:
647 break;
648 }
649 tree_check_failed (t, f, l, fn,
650 VAR_DECL, FUNCTION_DECL, FIELD_DECL, TYPE_DECL,
651 CONCEPT_DECL, TEMPLATE_DECL, 0);
652 gcc_unreachable ();
653 }
654
655 #define TEMPLATE_INFO_DECL_CHECK(NODE) \
656 template_info_decl_check ((NODE), __FILE__, __LINE__, __FUNCTION__)
657
658 #define THUNK_FUNCTION_CHECK(NODE) __extension__ \
659 ({ __typeof (NODE) const __t = (NODE); \
660 if (TREE_CODE (__t) != FUNCTION_DECL || !__t->decl_common.lang_specific \
661 || !__t->decl_common.lang_specific->u.fn.thunk_p) \
662 tree_check_failed (__t, __FILE__, __LINE__, __FUNCTION__, 0); \
663 __t; })
664
665 #else /* ENABLE_TREE_CHECKING */
666
667 #define TEMPLATE_INFO_DECL_CHECK(NODE) (NODE)
668 #define THUNK_FUNCTION_CHECK(NODE) (NODE)
669
670 #endif /* ENABLE_TREE_CHECKING */
671 \f
672 /* Language-dependent contents of an identifier. */
673
674 struct GTY(()) lang_identifier {
675 struct c_common_identifier c_common;
676 cxx_binding *bindings;
677 };
678
679 /* Return a typed pointer version of T if it designates a
680 C++ front-end identifier. */
681 inline lang_identifier*
682 identifier_p (tree t)
683 {
684 if (TREE_CODE (t) == IDENTIFIER_NODE)
685 return (lang_identifier*) t;
686 return NULL;
687 }
688
689 #define LANG_IDENTIFIER_CAST(NODE) \
690 ((struct lang_identifier*)IDENTIFIER_NODE_CHECK (NODE))
691
692 struct GTY(()) template_parm_index {
693 struct tree_common common;
694 int index;
695 int level;
696 int orig_level;
697 tree decl;
698 };
699
700 struct GTY(()) ptrmem_cst {
701 struct tree_common common;
702 tree member;
703 };
704 typedef struct ptrmem_cst * ptrmem_cst_t;
705
706 #define CLEANUP_P(NODE) TREE_LANG_FLAG_0 (TRY_BLOCK_CHECK (NODE))
707
708 #define BIND_EXPR_TRY_BLOCK(NODE) \
709 TREE_LANG_FLAG_0 (BIND_EXPR_CHECK (NODE))
710
711 /* Used to mark the block around the member initializers and cleanups. */
712 #define BIND_EXPR_BODY_BLOCK(NODE) \
713 TREE_LANG_FLAG_3 (BIND_EXPR_CHECK (NODE))
714 #define FUNCTION_NEEDS_BODY_BLOCK(NODE) \
715 (DECL_CONSTRUCTOR_P (NODE) || DECL_DESTRUCTOR_P (NODE) \
716 || LAMBDA_FUNCTION_P (NODE))
717
718 #define STATEMENT_LIST_NO_SCOPE(NODE) \
719 TREE_LANG_FLAG_0 (STATEMENT_LIST_CHECK (NODE))
720 #define STATEMENT_LIST_TRY_BLOCK(NODE) \
721 TREE_LANG_FLAG_2 (STATEMENT_LIST_CHECK (NODE))
722
723 /* Mark the outer curly brace BLOCK. */
724 #define BLOCK_OUTER_CURLY_BRACE_P(NODE) TREE_LANG_FLAG_0 (BLOCK_CHECK (NODE))
725
726 /* Nonzero if this statement should be considered a full-expression,
727 i.e., if temporaries created during this statement should have
728 their destructors run at the end of this statement. */
729 #define STMT_IS_FULL_EXPR_P(NODE) TREE_LANG_FLAG_1 ((NODE))
730
731 /* Marks the result of a statement expression. */
732 #define EXPR_STMT_STMT_EXPR_RESULT(NODE) \
733 TREE_LANG_FLAG_0 (EXPR_STMT_CHECK (NODE))
734
735 /* Nonzero if this statement-expression does not have an associated scope. */
736 #define STMT_EXPR_NO_SCOPE(NODE) \
737 TREE_LANG_FLAG_0 (STMT_EXPR_CHECK (NODE))
738
739 #define COND_EXPR_IS_VEC_DELETE(NODE) \
740 TREE_LANG_FLAG_0 (COND_EXPR_CHECK (NODE))
741
742 /* Nonzero if this NOP_EXPR is a reinterpret_cast. Such conversions
743 are not constexprs. Other NOP_EXPRs are. */
744 #define REINTERPRET_CAST_P(NODE) \
745 TREE_LANG_FLAG_0 (NOP_EXPR_CHECK (NODE))
746
747 /* Returns nonzero iff TYPE1 and TYPE2 are the same type, in the usual
748 sense of `same'. */
749 #define same_type_p(TYPE1, TYPE2) \
750 comptypes ((TYPE1), (TYPE2), COMPARE_STRICT)
751
752 /* Returns nonzero iff NODE is a declaration for the global function
753 `main'. */
754 #define DECL_MAIN_P(NODE) \
755 (DECL_EXTERN_C_FUNCTION_P (NODE) \
756 && DECL_NAME (NODE) != NULL_TREE \
757 && MAIN_NAME_P (DECL_NAME (NODE)) \
758 && flag_hosted)
759
760 /* Lookup walker marking. */
761 #define LOOKUP_SEEN_P(NODE) TREE_VISITED (NODE)
762 #define LOOKUP_FOUND_P(NODE) \
763 TREE_LANG_FLAG_4 (TREE_CHECK4 (NODE,RECORD_TYPE,UNION_TYPE,ENUMERAL_TYPE,\
764 NAMESPACE_DECL))
765
766 /* These two accessors should only be used by OVL manipulators.
767 Other users should use iterators and convenience functions. */
768 #define OVL_FUNCTION(NODE) \
769 (((struct tree_overload*)OVERLOAD_CHECK (NODE))->function)
770 #define OVL_CHAIN(NODE) \
771 (((struct tree_overload*)OVERLOAD_CHECK (NODE))->common.chain)
772
773 /* If set, this or a subsequent overload contains decls that need deduping. */
774 #define OVL_DEDUP_P(NODE) TREE_LANG_FLAG_0 (OVERLOAD_CHECK (NODE))
775 /* If set, this was imported in a using declaration. */
776 #define OVL_USING_P(NODE) TREE_LANG_FLAG_1 (OVERLOAD_CHECK (NODE))
777 /* If set, this overload is a hidden decl. */
778 #define OVL_HIDDEN_P(NODE) TREE_LANG_FLAG_2 (OVERLOAD_CHECK (NODE))
779 /* If set, this overload contains a nested overload. */
780 #define OVL_NESTED_P(NODE) TREE_LANG_FLAG_3 (OVERLOAD_CHECK (NODE))
781 /* If set, this overload was constructed during lookup. */
782 #define OVL_LOOKUP_P(NODE) TREE_LANG_FLAG_4 (OVERLOAD_CHECK (NODE))
783 /* If set, this OVL_USING_P overload is exported. */
784 #define OVL_EXPORT_P(NODE) TREE_LANG_FLAG_5 (OVERLOAD_CHECK (NODE))
785
786 /* The first decl of an overload. */
787 #define OVL_FIRST(NODE) ovl_first (NODE)
788 /* The name of the overload set. */
789 #define OVL_NAME(NODE) DECL_NAME (OVL_FIRST (NODE))
790
791 /* Whether this is a set of overloaded functions. TEMPLATE_DECLS are
792 always wrapped in an OVERLOAD, so we don't need to check them
793 here. */
794 #define OVL_P(NODE) \
795 (TREE_CODE (NODE) == FUNCTION_DECL || TREE_CODE (NODE) == OVERLOAD)
796 /* Whether this is a single member overload. */
797 #define OVL_SINGLE_P(NODE) \
798 (TREE_CODE (NODE) != OVERLOAD || !OVL_CHAIN (NODE))
799
800 /* OVL_HIDDEN_P nodes come before other nodes. */
801
802 struct GTY(()) tree_overload {
803 struct tree_common common;
804 tree function;
805 };
806
807 /* Iterator for a 1 dimensional overload. Permits iterating over the
808 outer level of a 2-d overload when explicitly enabled. */
809
810 class ovl_iterator {
811 tree ovl;
812 const bool allow_inner; /* Only used when checking. */
813
814 public:
815 explicit ovl_iterator (tree o, bool allow = false)
816 : ovl (o), allow_inner (allow)
817 {
818 }
819
820 public:
821 operator bool () const
822 {
823 return ovl;
824 }
825 ovl_iterator &operator++ ()
826 {
827 ovl = TREE_CODE (ovl) != OVERLOAD ? NULL_TREE : OVL_CHAIN (ovl);
828 return *this;
829 }
830 tree operator* () const
831 {
832 tree fn = TREE_CODE (ovl) != OVERLOAD ? ovl : OVL_FUNCTION (ovl);
833
834 /* Check this is not an unexpected 2-dimensional overload. */
835 gcc_checking_assert (allow_inner || TREE_CODE (fn) != OVERLOAD);
836
837 return fn;
838 }
839 bool operator== (const ovl_iterator &o) const
840 {
841 return ovl == o.ovl;
842 }
843 tree get_using () const
844 {
845 gcc_checking_assert (using_p ());
846 return ovl;
847 }
848
849 public:
850 /* Whether this overload was introduced by a using decl. */
851 bool using_p () const
852 {
853 return (TREE_CODE (ovl) == USING_DECL
854 || (TREE_CODE (ovl) == OVERLOAD && OVL_USING_P (ovl)));
855 }
856 /* Whether this using is being exported. */
857 bool exporting_p () const
858 {
859 return OVL_EXPORT_P (get_using ());
860 }
861
862 bool hidden_p () const
863 {
864 return TREE_CODE (ovl) == OVERLOAD && OVL_HIDDEN_P (ovl);
865 }
866
867 public:
868 tree remove_node (tree head)
869 {
870 return remove_node (head, ovl);
871 }
872 tree reveal_node (tree head)
873 {
874 return reveal_node (head, ovl);
875 }
876
877 protected:
878 /* If we have a nested overload, point at the inner overload and
879 return the next link on the outer one. */
880 tree maybe_push ()
881 {
882 tree r = NULL_TREE;
883
884 if (ovl && TREE_CODE (ovl) == OVERLOAD && OVL_NESTED_P (ovl))
885 {
886 r = OVL_CHAIN (ovl);
887 ovl = OVL_FUNCTION (ovl);
888 }
889 return r;
890 }
891 /* Restore an outer nested overload. */
892 void pop (tree outer)
893 {
894 gcc_checking_assert (!ovl);
895 ovl = outer;
896 }
897
898 private:
899 /* We make these static functions to avoid the address of the
900 iterator escaping the local context. */
901 static tree remove_node (tree head, tree node);
902 static tree reveal_node (tree ovl, tree node);
903 };
904
905 /* Treat a tree as a range of ovl_iterator, e.g.
906 for (tree f : ovl_range (fns)) { ... } */
907
908 class ovl_range
909 {
910 tree t;
911 bool allow;
912 public:
913 explicit ovl_range (tree t, bool allow = false): t(t), allow(allow) { }
914 ovl_iterator begin() { return ovl_iterator (t, allow); }
915 ovl_iterator end() { return ovl_iterator (NULL_TREE, allow); }
916 };
917
918 /* Iterator over a (potentially) 2 dimensional overload, which is
919 produced by name lookup. */
920
921 class lkp_iterator : public ovl_iterator {
922 typedef ovl_iterator parent;
923
924 tree outer;
925
926 public:
927 explicit lkp_iterator (tree o)
928 : parent (o, true), outer (maybe_push ())
929 {
930 }
931
932 public:
933 lkp_iterator &operator++ ()
934 {
935 bool repush = !outer;
936
937 if (!parent::operator++ () && !repush)
938 {
939 pop (outer);
940 repush = true;
941 }
942
943 if (repush)
944 outer = maybe_push ();
945
946 return *this;
947 }
948 };
949
950 /* Treat a tree as a range of lkp_iterator, e.g.
951 for (tree f : lkp_range (fns)) { ... } */
952
953 class lkp_range
954 {
955 tree t;
956 public:
957 lkp_range (tree t): t(t) { }
958 lkp_iterator begin() { return lkp_iterator (t); }
959 lkp_iterator end() { return lkp_iterator (NULL_TREE); }
960 };
961
962 /* hash traits for declarations. Hashes potential overload sets via
963 DECL_NAME. */
964
965 struct named_decl_hash : ggc_remove <tree> {
966 typedef tree value_type; /* A DECL or OVERLOAD */
967 typedef tree compare_type; /* An identifier. */
968
969 inline static hashval_t hash (const value_type decl);
970 inline static bool equal (const value_type existing, compare_type candidate);
971
972 static const bool empty_zero_p = true;
973 static inline void mark_empty (value_type &p) {p = NULL_TREE;}
974 static inline bool is_empty (value_type p) {return !p;}
975
976 /* Nothing is deletable. Everything is insertable. */
977 static bool is_deleted (value_type) { return false; }
978 static void mark_deleted (value_type) { gcc_unreachable (); }
979 };
980
981 /* Simplified unique_ptr clone to release a tree vec on exit. */
982
983 class releasing_vec
984 {
985 public:
986 typedef vec<tree, va_gc> vec_t;
987
988 releasing_vec (vec_t *v): v(v) { }
989 releasing_vec (): v(make_tree_vector ()) { }
990
991 /* Copy ops are deliberately declared but not defined,
992 copies must always be elided. */
993 releasing_vec (const releasing_vec &);
994 releasing_vec &operator= (const releasing_vec &);
995
996 vec_t &operator* () const { return *v; }
997 vec_t *operator-> () const { return v; }
998 vec_t *get() const { return v; }
999 operator vec_t *() const { return v; }
1000 vec_t ** operator& () { return &v; }
1001
1002 /* Breaks pointer/value consistency for convenience. This takes ptrdiff_t
1003 rather than unsigned to avoid ambiguity with the built-in operator[]
1004 (bootstrap/91828). */
1005 tree& operator[] (ptrdiff_t i) const { return (*v)[i]; }
1006
1007 ~releasing_vec() { release_tree_vector (v); }
1008 private:
1009 vec_t *v;
1010 };
1011 /* Forwarding functions for vec_safe_* that might reallocate. */
1012 inline tree* vec_safe_push (releasing_vec& r, const tree &t CXX_MEM_STAT_INFO)
1013 { return vec_safe_push (*&r, t PASS_MEM_STAT); }
1014 inline bool vec_safe_reserve (releasing_vec& r, unsigned n, bool e = false CXX_MEM_STAT_INFO)
1015 { return vec_safe_reserve (*&r, n, e PASS_MEM_STAT); }
1016 inline unsigned vec_safe_length (releasing_vec &r)
1017 { return r->length(); }
1018 inline void vec_safe_splice (releasing_vec &r, vec<tree, va_gc> *p CXX_MEM_STAT_INFO)
1019 { vec_safe_splice (*&r, p PASS_MEM_STAT); }
1020 void release_tree_vector (releasing_vec &); // cause link error
1021
1022 struct GTY(()) tree_template_decl {
1023 struct tree_decl_common common;
1024 tree arguments;
1025 tree result;
1026 };
1027
1028 /* Returns true iff NODE is a BASELINK. */
1029 #define BASELINK_P(NODE) \
1030 (TREE_CODE (NODE) == BASELINK)
1031 /* The BINFO indicating the base in which lookup found the
1032 BASELINK_FUNCTIONS. */
1033 #define BASELINK_BINFO(NODE) \
1034 (((struct tree_baselink*) BASELINK_CHECK (NODE))->binfo)
1035 /* The functions referred to by the BASELINK; either a FUNCTION_DECL,
1036 a TEMPLATE_DECL, an OVERLOAD, or a TEMPLATE_ID_EXPR. */
1037 #define BASELINK_FUNCTIONS(NODE) \
1038 (((struct tree_baselink*) BASELINK_CHECK (NODE))->functions)
1039 /* If T is a BASELINK, grab the functions, otherwise just T, which is
1040 expected to already be a (list of) functions. */
1041 #define MAYBE_BASELINK_FUNCTIONS(T) \
1042 (BASELINK_P (T) ? BASELINK_FUNCTIONS (T) : T)
1043 /* The BINFO in which the search for the functions indicated by this baselink
1044 began. This base is used to determine the accessibility of functions
1045 selected by overload resolution. */
1046 #define BASELINK_ACCESS_BINFO(NODE) \
1047 (((struct tree_baselink*) BASELINK_CHECK (NODE))->access_binfo)
1048 /* For a type-conversion operator, the BASELINK_OPTYPE indicates the type
1049 to which the conversion should occur. This value is important if
1050 the BASELINK_FUNCTIONS include a template conversion operator --
1051 the BASELINK_OPTYPE can be used to determine what type the user
1052 requested. */
1053 #define BASELINK_OPTYPE(NODE) \
1054 (TREE_CHAIN (BASELINK_CHECK (NODE)))
1055 /* Nonzero if this baselink was from a qualified lookup. */
1056 #define BASELINK_QUALIFIED_P(NODE) \
1057 TREE_LANG_FLAG_0 (BASELINK_CHECK (NODE))
1058
1059 struct GTY(()) tree_baselink {
1060 struct tree_common common;
1061 tree binfo;
1062 tree functions;
1063 tree access_binfo;
1064 };
1065
1066 /* The different kinds of ids that we encounter. */
1067
1068 enum cp_id_kind
1069 {
1070 /* Not an id at all. */
1071 CP_ID_KIND_NONE,
1072 /* An unqualified-id that is not a template-id. */
1073 CP_ID_KIND_UNQUALIFIED,
1074 /* An unqualified-id that is a dependent name. */
1075 CP_ID_KIND_UNQUALIFIED_DEPENDENT,
1076 /* An unqualified template-id. */
1077 CP_ID_KIND_TEMPLATE_ID,
1078 /* A qualified-id. */
1079 CP_ID_KIND_QUALIFIED
1080 };
1081
1082
1083 /* The various kinds of C++0x warnings we encounter. */
1084
1085 enum cpp0x_warn_str
1086 {
1087 /* extended initializer lists */
1088 CPP0X_INITIALIZER_LISTS,
1089 /* explicit conversion operators */
1090 CPP0X_EXPLICIT_CONVERSION,
1091 /* variadic templates */
1092 CPP0X_VARIADIC_TEMPLATES,
1093 /* lambda expressions */
1094 CPP0X_LAMBDA_EXPR,
1095 /* C++0x auto */
1096 CPP0X_AUTO,
1097 /* scoped enums */
1098 CPP0X_SCOPED_ENUMS,
1099 /* defaulted and deleted functions */
1100 CPP0X_DEFAULTED_DELETED,
1101 /* inline namespaces */
1102 CPP0X_INLINE_NAMESPACES,
1103 /* override controls, override/final */
1104 CPP0X_OVERRIDE_CONTROLS,
1105 /* non-static data member initializers */
1106 CPP0X_NSDMI,
1107 /* user defined literals */
1108 CPP0X_USER_DEFINED_LITERALS,
1109 /* delegating constructors */
1110 CPP0X_DELEGATING_CTORS,
1111 /* inheriting constructors */
1112 CPP0X_INHERITING_CTORS,
1113 /* C++11 attributes */
1114 CPP0X_ATTRIBUTES,
1115 /* ref-qualified member functions */
1116 CPP0X_REF_QUALIFIER
1117 };
1118
1119 /* The various kinds of operation used by composite_pointer_type. */
1120
1121 enum composite_pointer_operation
1122 {
1123 /* comparison */
1124 CPO_COMPARISON,
1125 /* conversion */
1126 CPO_CONVERSION,
1127 /* conditional expression */
1128 CPO_CONDITIONAL_EXPR
1129 };
1130
1131 /* Possible cases of expression list used by build_x_compound_expr_from_list. */
1132 enum expr_list_kind {
1133 ELK_INIT, /* initializer */
1134 ELK_MEM_INIT, /* member initializer */
1135 ELK_FUNC_CAST /* functional cast */
1136 };
1137
1138 /* Possible cases of implicit bad rhs conversions. */
1139 enum impl_conv_rhs {
1140 ICR_DEFAULT_ARGUMENT, /* default argument */
1141 ICR_CONVERTING, /* converting */
1142 ICR_INIT, /* initialization */
1143 ICR_ARGPASS, /* argument passing */
1144 ICR_RETURN, /* return */
1145 ICR_ASSIGN /* assignment */
1146 };
1147
1148 /* Possible cases of implicit or explicit bad conversions to void. */
1149 enum impl_conv_void {
1150 ICV_CAST, /* (explicit) conversion to void */
1151 ICV_SECOND_OF_COND, /* second operand of conditional expression */
1152 ICV_THIRD_OF_COND, /* third operand of conditional expression */
1153 ICV_RIGHT_OF_COMMA, /* right operand of comma operator */
1154 ICV_LEFT_OF_COMMA, /* left operand of comma operator */
1155 ICV_STATEMENT, /* statement */
1156 ICV_THIRD_IN_FOR /* for increment expression */
1157 };
1158
1159 /* Possible invalid uses of an abstract class that might not have a
1160 specific associated declaration. */
1161 enum GTY(()) abstract_class_use {
1162 ACU_UNKNOWN, /* unknown or decl provided */
1163 ACU_CAST, /* cast to abstract class */
1164 ACU_NEW, /* new-expression of abstract class */
1165 ACU_THROW, /* throw-expression of abstract class */
1166 ACU_CATCH, /* catch-parameter of abstract class */
1167 ACU_ARRAY, /* array of abstract class */
1168 ACU_RETURN, /* return type of abstract class */
1169 ACU_PARM /* parameter type of abstract class */
1170 };
1171
1172 /* Macros for access to language-specific slots in an identifier. */
1173
1174 /* Identifiers map directly to block or class-scope bindings.
1175 Namespace-scope bindings are held in hash tables on the respective
1176 namespaces. The identifier bindings are the innermost active
1177 binding, from whence you can get the decl and/or implicit-typedef
1178 of an elaborated type. When not bound to a local entity the
1179 values are NULL. */
1180 #define IDENTIFIER_BINDING(NODE) \
1181 (LANG_IDENTIFIER_CAST (NODE)->bindings)
1182 #define REAL_IDENTIFIER_TYPE_VALUE(NODE) TREE_TYPE (NODE)
1183 #define SET_IDENTIFIER_TYPE_VALUE(NODE,TYPE) (TREE_TYPE (NODE) = (TYPE))
1184
1185 /* Kinds of identifiers. Values are carefully chosen. */
1186 enum cp_identifier_kind {
1187 cik_normal = 0, /* Not a special identifier. */
1188 cik_keyword = 1, /* A keyword. */
1189 cik_ctor = 2, /* Constructor (in-chg, complete or base). */
1190 cik_dtor = 3, /* Destructor (in-chg, deleting, complete or
1191 base). */
1192 cik_simple_op = 4, /* Non-assignment operator name. */
1193 cik_assign_op = 5, /* An assignment operator name. */
1194 cik_conv_op = 6, /* Conversion operator name. */
1195 cik_reserved_for_udlit = 7, /* Not yet in use */
1196 cik_max
1197 };
1198
1199 /* Kind bits. */
1200 #define IDENTIFIER_KIND_BIT_0(NODE) \
1201 TREE_LANG_FLAG_0 (IDENTIFIER_NODE_CHECK (NODE))
1202 #define IDENTIFIER_KIND_BIT_1(NODE) \
1203 TREE_LANG_FLAG_1 (IDENTIFIER_NODE_CHECK (NODE))
1204 #define IDENTIFIER_KIND_BIT_2(NODE) \
1205 TREE_LANG_FLAG_2 (IDENTIFIER_NODE_CHECK (NODE))
1206
1207 /* Used by various search routines. */
1208 #define IDENTIFIER_MARKED(NODE) \
1209 TREE_LANG_FLAG_4 (IDENTIFIER_NODE_CHECK (NODE))
1210
1211 /* Nonzero if this identifier is used as a virtual function name somewhere
1212 (optimizes searches). */
1213 #define IDENTIFIER_VIRTUAL_P(NODE) \
1214 TREE_LANG_FLAG_5 (IDENTIFIER_NODE_CHECK (NODE))
1215
1216 /* True if this identifier is a reserved word. C_RID_CODE (node) is
1217 then the RID_* value of the keyword. Value 1. */
1218 #define IDENTIFIER_KEYWORD_P(NODE) \
1219 ((!IDENTIFIER_KIND_BIT_2 (NODE)) \
1220 & (!IDENTIFIER_KIND_BIT_1 (NODE)) \
1221 & IDENTIFIER_KIND_BIT_0 (NODE))
1222
1223 /* True if this identifier is the name of a constructor or
1224 destructor. Value 2 or 3. */
1225 #define IDENTIFIER_CDTOR_P(NODE) \
1226 ((!IDENTIFIER_KIND_BIT_2 (NODE)) \
1227 & IDENTIFIER_KIND_BIT_1 (NODE))
1228
1229 /* True if this identifier is the name of a constructor. Value 2. */
1230 #define IDENTIFIER_CTOR_P(NODE) \
1231 (IDENTIFIER_CDTOR_P(NODE) \
1232 & (!IDENTIFIER_KIND_BIT_0 (NODE)))
1233
1234 /* True if this identifier is the name of a destructor. Value 3. */
1235 #define IDENTIFIER_DTOR_P(NODE) \
1236 (IDENTIFIER_CDTOR_P(NODE) \
1237 & IDENTIFIER_KIND_BIT_0 (NODE))
1238
1239 /* True if this identifier is for any operator name (including
1240 conversions). Value 4, 5, 6 or 7. */
1241 #define IDENTIFIER_ANY_OP_P(NODE) \
1242 (IDENTIFIER_KIND_BIT_2 (NODE))
1243
1244 /* True if this identifier is for an overloaded operator. Values 4, 5. */
1245 #define IDENTIFIER_OVL_OP_P(NODE) \
1246 (IDENTIFIER_ANY_OP_P (NODE) \
1247 & (!IDENTIFIER_KIND_BIT_1 (NODE)))
1248
1249 /* True if this identifier is for any assignment. Values 5. */
1250 #define IDENTIFIER_ASSIGN_OP_P(NODE) \
1251 (IDENTIFIER_OVL_OP_P (NODE) \
1252 & IDENTIFIER_KIND_BIT_0 (NODE))
1253
1254 /* True if this identifier is the name of a type-conversion
1255 operator. Value 7. */
1256 #define IDENTIFIER_CONV_OP_P(NODE) \
1257 (IDENTIFIER_ANY_OP_P (NODE) \
1258 & IDENTIFIER_KIND_BIT_1 (NODE) \
1259 & (!IDENTIFIER_KIND_BIT_0 (NODE)))
1260
1261 /* True if this identifier is a new or delete operator. */
1262 #define IDENTIFIER_NEWDEL_OP_P(NODE) \
1263 (IDENTIFIER_OVL_OP_P (NODE) \
1264 && IDENTIFIER_OVL_OP_FLAGS (NODE) & OVL_OP_FLAG_ALLOC)
1265
1266 /* True if this identifier is a new operator. */
1267 #define IDENTIFIER_NEW_OP_P(NODE) \
1268 (IDENTIFIER_OVL_OP_P (NODE) \
1269 && (IDENTIFIER_OVL_OP_FLAGS (NODE) \
1270 & (OVL_OP_FLAG_ALLOC | OVL_OP_FLAG_DELETE)) == OVL_OP_FLAG_ALLOC)
1271
1272 /* Access a C++-specific index for identifier NODE.
1273 Used to optimize operator mappings etc. */
1274 #define IDENTIFIER_CP_INDEX(NODE) \
1275 (IDENTIFIER_NODE_CHECK(NODE)->base.u.bits.address_space)
1276
1277 /* In a RECORD_TYPE or UNION_TYPE, nonzero if any component is read-only. */
1278 #define C_TYPE_FIELDS_READONLY(TYPE) \
1279 (LANG_TYPE_CLASS_CHECK (TYPE)->fields_readonly)
1280
1281 /* The tokens stored in the unparsed operand. */
1282
1283 #define DEFPARSE_TOKENS(NODE) \
1284 (((struct tree_deferred_parse *)DEFERRED_PARSE_CHECK (NODE))->tokens)
1285 #define DEFPARSE_INSTANTIATIONS(NODE) \
1286 (((struct tree_deferred_parse *)DEFERRED_PARSE_CHECK (NODE))->instantiations)
1287
1288 struct GTY (()) tree_deferred_parse {
1289 struct tree_base base;
1290 struct cp_token_cache *tokens;
1291 vec<tree, va_gc> *instantiations;
1292 };
1293
1294
1295 #define DEFERRED_NOEXCEPT_PATTERN(NODE) \
1296 (((struct tree_deferred_noexcept *)DEFERRED_NOEXCEPT_CHECK (NODE))->pattern)
1297 #define DEFERRED_NOEXCEPT_ARGS(NODE) \
1298 (((struct tree_deferred_noexcept *)DEFERRED_NOEXCEPT_CHECK (NODE))->args)
1299 #define DEFERRED_NOEXCEPT_SPEC_P(NODE) \
1300 ((NODE) && (TREE_PURPOSE (NODE)) \
1301 && (TREE_CODE (TREE_PURPOSE (NODE)) == DEFERRED_NOEXCEPT))
1302 #define UNEVALUATED_NOEXCEPT_SPEC_P(NODE) \
1303 (DEFERRED_NOEXCEPT_SPEC_P (NODE) \
1304 && DEFERRED_NOEXCEPT_PATTERN (TREE_PURPOSE (NODE)) == NULL_TREE)
1305 #define UNPARSED_NOEXCEPT_SPEC_P(NODE) \
1306 ((NODE) && (TREE_PURPOSE (NODE)) \
1307 && (TREE_CODE (TREE_PURPOSE (NODE)) == DEFERRED_PARSE))
1308
1309 struct GTY (()) tree_deferred_noexcept {
1310 struct tree_base base;
1311 tree pattern;
1312 tree args;
1313 };
1314
1315
1316 /* The condition associated with the static assertion. This must be
1317 an integral constant expression. */
1318 #define STATIC_ASSERT_CONDITION(NODE) \
1319 (((struct tree_static_assert *)STATIC_ASSERT_CHECK (NODE))->condition)
1320
1321 /* The message associated with the static assertion. This must be a
1322 string constant, which will be emitted as an error message when the
1323 static assert condition is false. */
1324 #define STATIC_ASSERT_MESSAGE(NODE) \
1325 (((struct tree_static_assert *)STATIC_ASSERT_CHECK (NODE))->message)
1326
1327 /* Source location information for a static assertion. */
1328 #define STATIC_ASSERT_SOURCE_LOCATION(NODE) \
1329 (((struct tree_static_assert *)STATIC_ASSERT_CHECK (NODE))->location)
1330
1331 struct GTY (()) tree_static_assert {
1332 struct tree_common common;
1333 tree condition;
1334 tree message;
1335 location_t location;
1336 };
1337
1338 struct GTY (()) tree_argument_pack_select {
1339 struct tree_common common;
1340 tree argument_pack;
1341 int index;
1342 };
1343
1344 /* The different kinds of traits that we encounter. */
1345
1346 enum cp_trait_kind
1347 {
1348 CPTK_BASES,
1349 CPTK_DIRECT_BASES,
1350 CPTK_HAS_NOTHROW_ASSIGN,
1351 CPTK_HAS_NOTHROW_CONSTRUCTOR,
1352 CPTK_HAS_NOTHROW_COPY,
1353 CPTK_HAS_TRIVIAL_ASSIGN,
1354 CPTK_HAS_TRIVIAL_CONSTRUCTOR,
1355 CPTK_HAS_TRIVIAL_COPY,
1356 CPTK_HAS_TRIVIAL_DESTRUCTOR,
1357 CPTK_HAS_UNIQUE_OBJ_REPRESENTATIONS,
1358 CPTK_HAS_VIRTUAL_DESTRUCTOR,
1359 CPTK_IS_ABSTRACT,
1360 CPTK_IS_AGGREGATE,
1361 CPTK_IS_BASE_OF,
1362 CPTK_IS_CLASS,
1363 CPTK_IS_EMPTY,
1364 CPTK_IS_ENUM,
1365 CPTK_IS_FINAL,
1366 CPTK_IS_LITERAL_TYPE,
1367 CPTK_IS_POD,
1368 CPTK_IS_POLYMORPHIC,
1369 CPTK_IS_SAME_AS,
1370 CPTK_IS_STD_LAYOUT,
1371 CPTK_IS_TRIVIAL,
1372 CPTK_IS_TRIVIALLY_ASSIGNABLE,
1373 CPTK_IS_TRIVIALLY_CONSTRUCTIBLE,
1374 CPTK_IS_TRIVIALLY_COPYABLE,
1375 CPTK_IS_UNION,
1376 CPTK_UNDERLYING_TYPE,
1377 CPTK_IS_ASSIGNABLE,
1378 CPTK_IS_CONSTRUCTIBLE,
1379 CPTK_IS_NOTHROW_ASSIGNABLE,
1380 CPTK_IS_NOTHROW_CONSTRUCTIBLE
1381 };
1382
1383 /* The types that we are processing. */
1384 #define TRAIT_EXPR_TYPE1(NODE) \
1385 (((struct tree_trait_expr *)TRAIT_EXPR_CHECK (NODE))->type1)
1386
1387 #define TRAIT_EXPR_TYPE2(NODE) \
1388 (((struct tree_trait_expr *)TRAIT_EXPR_CHECK (NODE))->type2)
1389
1390 /* The specific trait that we are processing. */
1391 #define TRAIT_EXPR_KIND(NODE) \
1392 (((struct tree_trait_expr *)TRAIT_EXPR_CHECK (NODE))->kind)
1393
1394 #define TRAIT_EXPR_LOCATION(NODE) \
1395 (((struct tree_trait_expr *)TRAIT_EXPR_CHECK (NODE))->locus)
1396
1397 struct GTY (()) tree_trait_expr {
1398 struct tree_common common;
1399 tree type1;
1400 tree type2;
1401 location_t locus;
1402 enum cp_trait_kind kind;
1403 };
1404
1405 /* Identifiers used for lambda types are almost anonymous. Use this
1406 spare flag to distinguish them (they also have the anonymous flag). */
1407 #define IDENTIFIER_LAMBDA_P(NODE) \
1408 (IDENTIFIER_NODE_CHECK(NODE)->base.protected_flag)
1409
1410 /* Based off of TYPE_UNNAMED_P. */
1411 #define LAMBDA_TYPE_P(NODE) \
1412 (TREE_CODE (NODE) == RECORD_TYPE \
1413 && TYPE_LINKAGE_IDENTIFIER (NODE) \
1414 && IDENTIFIER_LAMBDA_P (TYPE_LINKAGE_IDENTIFIER (NODE)))
1415
1416 /* Test if FUNCTION_DECL is a lambda function. */
1417 #define LAMBDA_FUNCTION_P(FNDECL) \
1418 (DECL_DECLARES_FUNCTION_P (FNDECL) \
1419 && DECL_OVERLOADED_OPERATOR_P (FNDECL) \
1420 && DECL_OVERLOADED_OPERATOR_IS (FNDECL, CALL_EXPR) \
1421 && LAMBDA_TYPE_P (CP_DECL_CONTEXT (FNDECL)))
1422
1423 enum cp_lambda_default_capture_mode_type {
1424 CPLD_NONE,
1425 CPLD_COPY,
1426 CPLD_REFERENCE
1427 };
1428
1429 /* The method of default capture, if any. */
1430 #define LAMBDA_EXPR_DEFAULT_CAPTURE_MODE(NODE) \
1431 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->default_capture_mode)
1432
1433 /* The capture-list, including `this'. Each capture is stored as a FIELD_DECL
1434 * so that the name, type, and field are all together, whether or not it has
1435 * been added to the lambda's class type.
1436 TREE_LIST:
1437 TREE_PURPOSE: The FIELD_DECL for this capture.
1438 TREE_VALUE: The initializer. This is part of a GNU extension. */
1439 #define LAMBDA_EXPR_CAPTURE_LIST(NODE) \
1440 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->capture_list)
1441
1442 /* During parsing of the lambda-introducer, the node in the capture-list
1443 that holds the 'this' capture. During parsing of the body, the
1444 capture proxy for that node. */
1445 #define LAMBDA_EXPR_THIS_CAPTURE(NODE) \
1446 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->this_capture)
1447
1448 /* Predicate tracking whether `this' is in the effective capture set. */
1449 #define LAMBDA_EXPR_CAPTURES_THIS_P(NODE) \
1450 LAMBDA_EXPR_THIS_CAPTURE(NODE)
1451
1452 /* Predicate tracking whether the lambda was declared 'mutable'. */
1453 #define LAMBDA_EXPR_MUTABLE_P(NODE) \
1454 TREE_LANG_FLAG_1 (LAMBDA_EXPR_CHECK (NODE))
1455
1456 /* True iff uses of a const variable capture were optimized away. */
1457 #define LAMBDA_EXPR_CAPTURE_OPTIMIZED(NODE) \
1458 TREE_LANG_FLAG_2 (LAMBDA_EXPR_CHECK (NODE))
1459
1460 /* True if this TREE_LIST in LAMBDA_EXPR_CAPTURE_LIST is for an explicit
1461 capture. */
1462 #define LAMBDA_CAPTURE_EXPLICIT_P(NODE) \
1463 TREE_LANG_FLAG_0 (TREE_LIST_CHECK (NODE))
1464
1465 /* The source location of the lambda. */
1466 #define LAMBDA_EXPR_LOCATION(NODE) \
1467 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->locus)
1468
1469 /* The mangling scope for the lambda: FUNCTION_DECL, PARM_DECL, VAR_DECL,
1470 FIELD_DECL or NULL_TREE. If this is NULL_TREE, we have no linkage. */
1471 #define LAMBDA_EXPR_EXTRA_SCOPE(NODE) \
1472 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->extra_scope)
1473
1474 /* If EXTRA_SCOPE, this is the number of the lambda within that scope. */
1475 #define LAMBDA_EXPR_DISCRIMINATOR(NODE) \
1476 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->discriminator)
1477
1478 /* During parsing of the lambda, a vector of capture proxies which need
1479 to be pushed once we're done processing a nested lambda. */
1480 #define LAMBDA_EXPR_PENDING_PROXIES(NODE) \
1481 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->pending_proxies)
1482
1483 /* If NODE was regenerated via tsubst_lambda_expr, this is a TEMPLATE_INFO
1484 whose TI_TEMPLATE is the immediate LAMBDA_EXPR from which NODE was
1485 regenerated, and TI_ARGS is the full set of template arguments used
1486 to regenerate NODE from the most general lambda. */
1487 #define LAMBDA_EXPR_REGEN_INFO(NODE) \
1488 (((struct tree_lambda_expr *)LAMBDA_EXPR_CHECK (NODE))->regen_info)
1489
1490 /* The closure type of the lambda, which is also the type of the
1491 LAMBDA_EXPR. */
1492 #define LAMBDA_EXPR_CLOSURE(NODE) \
1493 (TREE_TYPE (LAMBDA_EXPR_CHECK (NODE)))
1494
1495 struct GTY (()) tree_lambda_expr
1496 {
1497 struct tree_typed typed;
1498 tree capture_list;
1499 tree this_capture;
1500 tree extra_scope;
1501 tree regen_info;
1502 vec<tree, va_gc> *pending_proxies;
1503 location_t locus;
1504 enum cp_lambda_default_capture_mode_type default_capture_mode : 8;
1505 short int discriminator;
1506 };
1507
1508 /* Non-zero if this template specialization has access violations that
1509 should be rechecked when the function is instantiated outside argument
1510 deduction. */
1511 #define TINFO_HAS_ACCESS_ERRORS(NODE) \
1512 (TREE_LANG_FLAG_0 (TEMPLATE_INFO_CHECK (NODE)))
1513 #define FNDECL_HAS_ACCESS_ERRORS(NODE) \
1514 (TINFO_HAS_ACCESS_ERRORS (DECL_TEMPLATE_INFO (NODE)))
1515
1516 /* Non-zero if this variable template specialization was specified using a
1517 template-id, so it's a partial or full specialization and not a definition
1518 of the member template of a particular class specialization. */
1519 #define TINFO_USED_TEMPLATE_ID(NODE) \
1520 (TREE_LANG_FLAG_1 (TEMPLATE_INFO_CHECK (NODE)))
1521
1522 /* The representation of a deferred access check. */
1523
1524 struct GTY(()) deferred_access_check {
1525 /* The base class in which the declaration is referenced. */
1526 tree binfo;
1527 /* The declaration whose access must be checked. */
1528 tree decl;
1529 /* The declaration that should be used in the error message. */
1530 tree diag_decl;
1531 /* The location of this access. */
1532 location_t loc;
1533 };
1534
1535 struct GTY(()) tree_template_info {
1536 struct tree_base base;
1537 tree tmpl;
1538 tree args;
1539 vec<deferred_access_check, va_gc> *deferred_access_checks;
1540 };
1541
1542 // Constraint information for a C++ declaration. Constraint information is
1543 // comprised of:
1544 //
1545 // - a constraint expression introduced by the template header
1546 // - a constraint expression introduced by a function declarator
1547 // - the associated constraints, which are the conjunction of those,
1548 // and used for declaration matching
1549 //
1550 // The template and declarator requirements are kept to support pretty
1551 // printing constrained declarations.
1552 struct GTY(()) tree_constraint_info {
1553 struct tree_base base;
1554 tree template_reqs;
1555 tree declarator_reqs;
1556 tree associated_constr;
1557 };
1558
1559 // Require that pointer P is non-null before returning.
1560 template<typename T>
1561 inline T*
1562 check_nonnull (T* p)
1563 {
1564 gcc_assert (p);
1565 return p;
1566 }
1567
1568 /* Returns true iff T is non-null and represents constraint info. */
1569 inline tree_constraint_info *
1570 check_constraint_info (tree t)
1571 {
1572 if (t && TREE_CODE (t) == CONSTRAINT_INFO)
1573 return (tree_constraint_info *)t;
1574 return NULL;
1575 }
1576
1577 /* Access the expression describing the template constraints. This may be
1578 null if no constraints were introduced in the template parameter list,
1579 a requirements clause after the template parameter list, or constraints
1580 through a constrained-type-specifier. */
1581 #define CI_TEMPLATE_REQS(NODE) \
1582 check_constraint_info (check_nonnull (NODE))->template_reqs
1583
1584 /* Access the expression describing the trailing constraints. This is non-null
1585 for any implicit instantiation of a constrained declaration. For a
1586 templated declaration it is non-null only when a trailing requires-clause
1587 was specified. */
1588 #define CI_DECLARATOR_REQS(NODE) \
1589 check_constraint_info (check_nonnull (NODE))->declarator_reqs
1590
1591 /* The computed associated constraint expression for a declaration. */
1592 #define CI_ASSOCIATED_CONSTRAINTS(NODE) \
1593 check_constraint_info (check_nonnull (NODE))->associated_constr
1594
1595 /* Access the constraint-expression introduced by the requires-clause
1596 associate the template parameter list NODE. */
1597 #define TEMPLATE_PARMS_CONSTRAINTS(NODE) \
1598 TREE_TYPE (TREE_LIST_CHECK (NODE))
1599
1600 /* Access the logical constraints on the template parameter declaration
1601 indicated by NODE. */
1602 #define TEMPLATE_PARM_CONSTRAINTS(NODE) \
1603 TREE_TYPE (TREE_LIST_CHECK (NODE))
1604
1605 /* Non-zero if the noexcept is present in a compound requirement. */
1606 #define COMPOUND_REQ_NOEXCEPT_P(NODE) \
1607 TREE_LANG_FLAG_0 (TREE_CHECK (NODE, COMPOUND_REQ))
1608
1609 /* A TREE_LIST whose TREE_VALUE is the constraints on the 'auto' placeholder
1610 type NODE, used in an argument deduction constraint. The TREE_PURPOSE
1611 holds the set of template parameters that were in-scope when this 'auto'
1612 was formed. */
1613 #define PLACEHOLDER_TYPE_CONSTRAINTS_INFO(NODE) \
1614 DECL_SIZE_UNIT (TYPE_NAME (NODE))
1615
1616 /* The constraints on the 'auto' placeholder type NODE. */
1617 #define PLACEHOLDER_TYPE_CONSTRAINTS(NODE) \
1618 (PLACEHOLDER_TYPE_CONSTRAINTS_INFO (NODE) \
1619 ? TREE_VALUE (PLACEHOLDER_TYPE_CONSTRAINTS_INFO (NODE)) \
1620 : NULL_TREE)
1621
1622 /* True if NODE is a constraint. */
1623 #define CONSTR_P(NODE) \
1624 (TREE_CODE (NODE) == ATOMIC_CONSTR \
1625 || TREE_CODE (NODE) == CONJ_CONSTR \
1626 || TREE_CODE (NODE) == DISJ_CONSTR)
1627
1628 /* Valid for any normalized constraint. */
1629 #define CONSTR_CHECK(NODE) \
1630 TREE_CHECK3 (NODE, ATOMIC_CONSTR, CONJ_CONSTR, DISJ_CONSTR)
1631
1632 /* The CONSTR_INFO stores normalization data for a constraint. It refers to
1633 the original expression and the expression or declaration
1634 from which the constraint was normalized.
1635
1636 This is TREE_LIST whose TREE_PURPOSE is the original expression and whose
1637 TREE_VALUE is a list of contexts. */
1638 #define CONSTR_INFO(NODE) \
1639 TREE_TYPE (CONSTR_CHECK (NODE))
1640
1641 /* The expression evaluated by the constraint. */
1642 #define CONSTR_EXPR(NODE) \
1643 TREE_PURPOSE (CONSTR_INFO (NODE))
1644
1645 /* The expression or declaration from which this constraint was normalized.
1646 This is a TREE_LIST whose TREE_VALUE is either a template-id expression
1647 denoting a concept check or the declaration introducing the constraint.
1648 These are chained to other context objects. */
1649 #define CONSTR_CONTEXT(NODE) \
1650 TREE_VALUE (CONSTR_INFO (NODE))
1651
1652 /* The parameter mapping for an atomic constraint. */
1653 #define ATOMIC_CONSTR_MAP(NODE) \
1654 TREE_OPERAND (TREE_CHECK (NODE, ATOMIC_CONSTR), 0)
1655
1656 /* Whether the parameter mapping of this atomic constraint
1657 is already instantiated with concrete template arguments.
1658 Used only in satisfy_atom and in the satisfaction cache. */
1659 #define ATOMIC_CONSTR_MAP_INSTANTIATED_P(NODE) \
1660 TREE_LANG_FLAG_0 (ATOMIC_CONSTR_CHECK (NODE))
1661
1662 /* The expression of an atomic constraint. */
1663 #define ATOMIC_CONSTR_EXPR(NODE) \
1664 CONSTR_EXPR (ATOMIC_CONSTR_CHECK (NODE))
1665
1666 /* The concept of a concept check. */
1667 #define CHECK_CONSTR_CONCEPT(NODE) \
1668 TREE_OPERAND (TREE_CHECK (NODE, CHECK_CONSTR), 0)
1669
1670 /* The template arguments of a concept check. */
1671 #define CHECK_CONSTR_ARGS(NODE) \
1672 TREE_OPERAND (TREE_CHECK (NODE, CHECK_CONSTR), 1)
1673
1674 /* Whether a PARM_DECL represents a local parameter in a
1675 requires-expression. */
1676 #define CONSTRAINT_VAR_P(NODE) \
1677 DECL_LANG_FLAG_2 (TREE_CHECK (NODE, PARM_DECL))
1678
1679 /* The concept constraining this constrained template-parameter. */
1680 #define CONSTRAINED_PARM_CONCEPT(NODE) \
1681 DECL_SIZE_UNIT (TYPE_DECL_CHECK (NODE))
1682 /* Any extra template arguments specified for a constrained
1683 template-parameter. */
1684 #define CONSTRAINED_PARM_EXTRA_ARGS(NODE) \
1685 DECL_SIZE (TYPE_DECL_CHECK (NODE))
1686 /* The first template parameter of CONSTRAINED_PARM_CONCEPT to be used as a
1687 prototype for the constrained parameter in finish_shorthand_constraint,
1688 attached for convenience. */
1689 #define CONSTRAINED_PARM_PROTOTYPE(NODE) \
1690 DECL_INITIAL (TYPE_DECL_CHECK (NODE))
1691
1692 /* Module flags on FUNCTION,VAR,TYPE,CONCEPT or NAMESPACE
1693 A TEMPLATE_DECL holds them on the DECL_TEMPLATE_RESULT object --
1694 it's just not practical to keep them consistent. */
1695 #define DECL_MODULE_CHECK(NODE) \
1696 TREE_NOT_CHECK (NODE, TEMPLATE_DECL)
1697
1698 /* In the purview of a module (including header unit). */
1699 #define DECL_MODULE_PURVIEW_P(N) \
1700 (DECL_LANG_SPECIFIC (DECL_MODULE_CHECK (N))->u.base.module_purview_p)
1701
1702 /* True if the live version of the decl was imported. */
1703 #define DECL_MODULE_IMPORT_P(NODE) \
1704 (DECL_LANG_SPECIFIC (DECL_MODULE_CHECK (NODE))->u.base.module_import_p)
1705
1706 /* True if this decl is in the entity hash & array. This means that
1707 some variant was imported, even if DECL_MODULE_IMPORT_P is false. */
1708 #define DECL_MODULE_ENTITY_P(NODE) \
1709 (DECL_LANG_SPECIFIC (DECL_MODULE_CHECK (NODE))->u.base.module_entity_p)
1710
1711 /* DECL that has attached decls for ODR-relatedness. */
1712 #define DECL_MODULE_ATTACHMENTS_P(NODE) \
1713 (DECL_LANG_SPECIFIC (TREE_CHECK2(NODE,FUNCTION_DECL,VAR_DECL))\
1714 ->u.base.module_attached_p)
1715
1716 /* Whether this is an exported DECL. Held on any decl that can appear
1717 at namespace scope (function, var, type, template, const or
1718 namespace). templates copy from their template_result, consts have
1719 it for unscoped enums. */
1720 #define DECL_MODULE_EXPORT_P(NODE) TREE_LANG_FLAG_3 (NODE)
1721
1722 \f
1723 /* The list of local parameters introduced by this requires-expression,
1724 in the form of a chain of PARM_DECLs. */
1725 #define REQUIRES_EXPR_PARMS(NODE) \
1726 TREE_OPERAND (TREE_CHECK (NODE, REQUIRES_EXPR), 0)
1727
1728 /* A TREE_LIST of the requirements for this requires-expression.
1729 The requirements are stored in lexical order within the TREE_VALUE
1730 of each TREE_LIST node. The TREE_PURPOSE of each node is unused. */
1731 #define REQUIRES_EXPR_REQS(NODE) \
1732 TREE_OPERAND (TREE_CHECK (NODE, REQUIRES_EXPR), 1)
1733
1734 /* Like PACK_EXPANSION_EXTRA_ARGS, for requires-expressions. */
1735 #define REQUIRES_EXPR_EXTRA_ARGS(NODE) \
1736 TREE_OPERAND (TREE_CHECK (NODE, REQUIRES_EXPR), 2)
1737
1738 enum cp_tree_node_structure_enum {
1739 TS_CP_GENERIC,
1740 TS_CP_IDENTIFIER,
1741 TS_CP_TPI,
1742 TS_CP_PTRMEM,
1743 TS_CP_OVERLOAD,
1744 TS_CP_BINDING_VECTOR,
1745 TS_CP_BASELINK,
1746 TS_CP_TEMPLATE_DECL,
1747 TS_CP_DEFERRED_PARSE,
1748 TS_CP_DEFERRED_NOEXCEPT,
1749 TS_CP_STATIC_ASSERT,
1750 TS_CP_ARGUMENT_PACK_SELECT,
1751 TS_CP_TRAIT_EXPR,
1752 TS_CP_LAMBDA_EXPR,
1753 TS_CP_TEMPLATE_INFO,
1754 TS_CP_CONSTRAINT_INFO,
1755 TS_CP_USERDEF_LITERAL
1756 };
1757
1758 /* The resulting tree type. */
1759 union GTY((desc ("cp_tree_node_structure (&%h)"),
1760 chain_next ("(union lang_tree_node *) c_tree_chain_next (&%h.generic)"))) lang_tree_node {
1761 union tree_node GTY ((tag ("TS_CP_GENERIC"),
1762 desc ("tree_node_structure (&%h)"))) generic;
1763 struct template_parm_index GTY ((tag ("TS_CP_TPI"))) tpi;
1764 struct ptrmem_cst GTY ((tag ("TS_CP_PTRMEM"))) ptrmem;
1765 struct tree_overload GTY ((tag ("TS_CP_OVERLOAD"))) overload;
1766 struct tree_binding_vec GTY ((tag ("TS_CP_BINDING_VECTOR"))) binding_vec;
1767 struct tree_baselink GTY ((tag ("TS_CP_BASELINK"))) baselink;
1768 struct tree_template_decl GTY ((tag ("TS_CP_TEMPLATE_DECL"))) template_decl;
1769 struct tree_deferred_parse GTY ((tag ("TS_CP_DEFERRED_PARSE"))) deferred_parse;
1770 struct tree_deferred_noexcept GTY ((tag ("TS_CP_DEFERRED_NOEXCEPT"))) deferred_noexcept;
1771 struct lang_identifier GTY ((tag ("TS_CP_IDENTIFIER"))) identifier;
1772 struct tree_static_assert GTY ((tag ("TS_CP_STATIC_ASSERT")))
1773 static_assertion;
1774 struct tree_argument_pack_select GTY ((tag ("TS_CP_ARGUMENT_PACK_SELECT")))
1775 argument_pack_select;
1776 struct tree_trait_expr GTY ((tag ("TS_CP_TRAIT_EXPR")))
1777 trait_expression;
1778 struct tree_lambda_expr GTY ((tag ("TS_CP_LAMBDA_EXPR")))
1779 lambda_expression;
1780 struct tree_template_info GTY ((tag ("TS_CP_TEMPLATE_INFO")))
1781 template_info;
1782 struct tree_constraint_info GTY ((tag ("TS_CP_CONSTRAINT_INFO")))
1783 constraint_info;
1784 struct tree_userdef_literal GTY ((tag ("TS_CP_USERDEF_LITERAL")))
1785 userdef_literal;
1786 };
1787
1788 \f
1789 /* Global state. */
1790
1791 struct GTY(()) saved_scope {
1792 vec<cxx_saved_binding, va_gc> *old_bindings;
1793 tree old_namespace;
1794 vec<tree, va_gc> *decl_ns_list;
1795 tree class_name;
1796 tree class_type;
1797 tree access_specifier;
1798 tree function_decl;
1799 vec<tree, va_gc> *lang_base;
1800 tree lang_name;
1801 tree template_parms;
1802 cp_binding_level *x_previous_class_level;
1803 tree x_saved_tree;
1804
1805 /* Only used for uses of this in trailing return type. */
1806 tree x_current_class_ptr;
1807 tree x_current_class_ref;
1808
1809 int x_processing_template_decl;
1810 int x_processing_specialization;
1811 int x_processing_constraint;
1812 int suppress_location_wrappers;
1813 BOOL_BITFIELD x_processing_explicit_instantiation : 1;
1814 BOOL_BITFIELD need_pop_function_context : 1;
1815
1816 /* Nonzero if we are parsing the discarded statement of a constexpr
1817 if-statement. */
1818 BOOL_BITFIELD discarded_stmt : 1;
1819
1820 int unevaluated_operand;
1821 int inhibit_evaluation_warnings;
1822 int noexcept_operand;
1823 /* If non-zero, implicit "omp declare target" attribute is added into the
1824 attribute lists. */
1825 int omp_declare_target_attribute;
1826 int ref_temp_count;
1827
1828 struct stmt_tree_s x_stmt_tree;
1829
1830 cp_binding_level *class_bindings;
1831 cp_binding_level *bindings;
1832
1833 hash_map<tree, tree> *GTY((skip)) x_local_specializations;
1834
1835 struct saved_scope *prev;
1836 };
1837
1838 extern GTY(()) struct saved_scope *scope_chain;
1839
1840 /* The current open namespace. */
1841
1842 #define current_namespace scope_chain->old_namespace
1843
1844 /* The stack for namespaces of current declarations. */
1845
1846 #define decl_namespace_list scope_chain->decl_ns_list
1847
1848 /* IDENTIFIER_NODE: name of current class */
1849
1850 #define current_class_name scope_chain->class_name
1851
1852 /* _TYPE: the type of the current class */
1853
1854 #define current_class_type scope_chain->class_type
1855
1856 /* When parsing a class definition, the access specifier most recently
1857 given by the user, or, if no access specifier was given, the
1858 default value appropriate for the kind of class (i.e., struct,
1859 class, or union). */
1860
1861 #define current_access_specifier scope_chain->access_specifier
1862
1863 /* Pointer to the top of the language name stack. */
1864
1865 #define current_lang_base scope_chain->lang_base
1866 #define current_lang_name scope_chain->lang_name
1867
1868 /* When parsing a template declaration, a TREE_LIST represents the
1869 active template parameters. Each node in the list represents one
1870 level of template parameters. The innermost level is first in the
1871 list. The depth of each level is stored as an INTEGER_CST in the
1872 TREE_PURPOSE of each node. The parameters for that level are
1873 stored in the TREE_VALUE. */
1874
1875 #define current_template_parms scope_chain->template_parms
1876
1877 #define processing_template_decl scope_chain->x_processing_template_decl
1878 #define processing_specialization scope_chain->x_processing_specialization
1879 #define processing_explicit_instantiation scope_chain->x_processing_explicit_instantiation
1880
1881 #define in_discarded_stmt scope_chain->discarded_stmt
1882
1883 #define current_ref_temp_count scope_chain->ref_temp_count
1884
1885 /* RAII sentinel to handle clearing processing_template_decl and restoring
1886 it when done. */
1887
1888 class processing_template_decl_sentinel
1889 {
1890 public:
1891 int saved;
1892 processing_template_decl_sentinel (bool reset = true)
1893 : saved (processing_template_decl)
1894 {
1895 if (reset)
1896 processing_template_decl = 0;
1897 }
1898 ~processing_template_decl_sentinel()
1899 {
1900 processing_template_decl = saved;
1901 }
1902 };
1903
1904 /* RAII sentinel to disable certain warnings during template substitution
1905 and elsewhere. */
1906
1907 class warning_sentinel
1908 {
1909 public:
1910 int &flag;
1911 int val;
1912 warning_sentinel(int& flag, bool suppress=true)
1913 : flag(flag), val(flag) { if (suppress) flag = 0; }
1914 ~warning_sentinel() { flag = val; }
1915 };
1916
1917 /* RAII sentinel to temporarily override input_location. This will not set
1918 input_location to UNKNOWN_LOCATION or BUILTINS_LOCATION. */
1919
1920 class iloc_sentinel
1921 {
1922 location_t saved_loc;
1923 public:
1924 iloc_sentinel (location_t loc): saved_loc (input_location)
1925 {
1926 if (loc >= RESERVED_LOCATION_COUNT)
1927 input_location = loc;
1928 }
1929 ~iloc_sentinel ()
1930 {
1931 input_location = saved_loc;
1932 }
1933 };
1934
1935 /* RAII sentinel that saves the value of a variable, optionally
1936 overrides it right away, and restores its value when the sentinel
1937 id destructed. */
1938
1939 template <typename T>
1940 class temp_override
1941 {
1942 T& overridden_variable;
1943 T saved_value;
1944 public:
1945 temp_override(T& var) : overridden_variable (var), saved_value (var) {}
1946 temp_override(T& var, T overrider)
1947 : overridden_variable (var), saved_value (var)
1948 {
1949 overridden_variable = overrider;
1950 }
1951 ~temp_override() { overridden_variable = saved_value; }
1952 };
1953
1954 /* Wrapping a template parameter in type_identity_t hides it from template
1955 argument deduction. */
1956 #if __cpp_lib_type_identity
1957 using std::type_identity_t;
1958 #else
1959 template <typename T>
1960 struct type_identity { typedef T type; };
1961 template <typename T>
1962 using type_identity_t = typename type_identity<T>::type;
1963 #endif
1964
1965 /* Object generator function for temp_override, so you don't need to write the
1966 type of the object as a template argument.
1967
1968 Use as auto x = make_temp_override (flag); */
1969
1970 template <typename T>
1971 inline temp_override<T>
1972 make_temp_override (T& var)
1973 {
1974 return { var };
1975 }
1976
1977 /* Likewise, but use as auto x = make_temp_override (flag, value); */
1978
1979 template <typename T>
1980 inline temp_override<T>
1981 make_temp_override (T& var, type_identity_t<T> overrider)
1982 {
1983 return { var, overrider };
1984 }
1985
1986 /* The cached class binding level, from the most recently exited
1987 class, or NULL if none. */
1988
1989 #define previous_class_level scope_chain->x_previous_class_level
1990
1991 /* A map from local variable declarations in the body of the template
1992 presently being instantiated to the corresponding instantiated
1993 local variables. */
1994
1995 #define local_specializations scope_chain->x_local_specializations
1996
1997 /* Nonzero if we are parsing the operand of a noexcept operator. */
1998
1999 #define cp_noexcept_operand scope_chain->noexcept_operand
2000
2001 struct named_label_entry; /* Defined in decl.c. */
2002
2003 struct named_label_hash : ggc_remove <named_label_entry *>
2004 {
2005 typedef named_label_entry *value_type;
2006 typedef tree compare_type; /* An identifier. */
2007
2008 inline static hashval_t hash (value_type);
2009 inline static bool equal (const value_type, compare_type);
2010
2011 static const bool empty_zero_p = true;
2012 inline static void mark_empty (value_type &p) {p = NULL;}
2013 inline static bool is_empty (value_type p) {return !p;}
2014
2015 /* Nothing is deletable. Everything is insertable. */
2016 inline static bool is_deleted (value_type) { return false; }
2017 inline static void mark_deleted (value_type) { gcc_unreachable (); }
2018 };
2019
2020 /* Global state pertinent to the current function. */
2021
2022 struct GTY(()) language_function {
2023 struct c_language_function base;
2024
2025 tree x_cdtor_label;
2026 tree x_current_class_ptr;
2027 tree x_current_class_ref;
2028 tree x_eh_spec_block;
2029 tree x_in_charge_parm;
2030 tree x_vtt_parm;
2031 tree x_return_value;
2032
2033 BOOL_BITFIELD returns_value : 1;
2034 BOOL_BITFIELD returns_null : 1;
2035 BOOL_BITFIELD returns_abnormally : 1;
2036 BOOL_BITFIELD infinite_loop: 1;
2037 BOOL_BITFIELD x_in_function_try_handler : 1;
2038 BOOL_BITFIELD x_in_base_initializer : 1;
2039
2040 /* True if this function can throw an exception. */
2041 BOOL_BITFIELD can_throw : 1;
2042
2043 BOOL_BITFIELD invalid_constexpr : 1;
2044 BOOL_BITFIELD throwing_cleanup : 1;
2045
2046 hash_table<named_label_hash> *x_named_labels;
2047
2048 cp_binding_level *bindings;
2049
2050 /* Tracking possibly infinite loops. This is a vec<tree> only because
2051 vec<bool> doesn't work with gtype. */
2052 vec<tree, va_gc> *infinite_loops;
2053 };
2054
2055 /* The current C++-specific per-function global variables. */
2056
2057 #define cp_function_chain (cfun->language)
2058
2059 /* In a constructor destructor, the point at which all derived class
2060 destroying/construction has been done. I.e., just before a
2061 constructor returns, or before any base class destroying will be done
2062 in a destructor. */
2063
2064 #define cdtor_label cp_function_chain->x_cdtor_label
2065
2066 /* When we're processing a member function, current_class_ptr is the
2067 PARM_DECL for the `this' pointer. The current_class_ref is an
2068 expression for `*this'. */
2069
2070 #define current_class_ptr \
2071 (*(cfun && cp_function_chain \
2072 ? &cp_function_chain->x_current_class_ptr \
2073 : &scope_chain->x_current_class_ptr))
2074 #define current_class_ref \
2075 (*(cfun && cp_function_chain \
2076 ? &cp_function_chain->x_current_class_ref \
2077 : &scope_chain->x_current_class_ref))
2078
2079 /* The EH_SPEC_BLOCK for the exception-specifiers for the current
2080 function, if any. */
2081
2082 #define current_eh_spec_block cp_function_chain->x_eh_spec_block
2083
2084 /* The `__in_chrg' parameter for the current function. Only used for
2085 constructors and destructors. */
2086
2087 #define current_in_charge_parm cp_function_chain->x_in_charge_parm
2088
2089 /* The `__vtt_parm' parameter for the current function. Only used for
2090 constructors and destructors. */
2091
2092 #define current_vtt_parm cp_function_chain->x_vtt_parm
2093
2094 /* A boolean flag to control whether we need to clean up the return value if a
2095 local destructor throws. Only used in functions that return by value a
2096 class with a destructor. Which 'tors don't, so we can use the same
2097 field as current_vtt_parm. */
2098
2099 #define current_retval_sentinel current_vtt_parm
2100
2101 /* Set to 0 at beginning of a function definition, set to 1 if
2102 a return statement that specifies a return value is seen. */
2103
2104 #define current_function_returns_value cp_function_chain->returns_value
2105
2106 /* Set to 0 at beginning of a function definition, set to 1 if
2107 a return statement with no argument is seen. */
2108
2109 #define current_function_returns_null cp_function_chain->returns_null
2110
2111 /* Set to 0 at beginning of a function definition, set to 1 if
2112 a call to a noreturn function is seen. */
2113
2114 #define current_function_returns_abnormally \
2115 cp_function_chain->returns_abnormally
2116
2117 /* Set to 0 at beginning of a function definition, set to 1 if we see an
2118 obvious infinite loop. This can have false positives and false
2119 negatives, so it should only be used as a heuristic. */
2120
2121 #define current_function_infinite_loop cp_function_chain->infinite_loop
2122
2123 /* Nonzero if we are processing a base initializer. Zero elsewhere. */
2124 #define in_base_initializer cp_function_chain->x_in_base_initializer
2125
2126 #define in_function_try_handler cp_function_chain->x_in_function_try_handler
2127
2128 /* Expression always returned from function, or error_mark_node
2129 otherwise, for use by the automatic named return value optimization. */
2130
2131 #define current_function_return_value \
2132 (cp_function_chain->x_return_value)
2133
2134 /* In parser.c. */
2135 extern tree cp_literal_operator_id (const char *);
2136
2137 #define NON_ERROR(NODE) ((NODE) == error_mark_node ? NULL_TREE : (NODE))
2138
2139 /* TRUE if a tree code represents a statement. */
2140 extern bool statement_code_p[MAX_TREE_CODES];
2141
2142 #define STATEMENT_CODE_P(CODE) statement_code_p[(int) (CODE)]
2143
2144 enum languages { lang_c, lang_cplusplus };
2145
2146 /* Macros to make error reporting functions' lives easier. */
2147 #define TYPE_LINKAGE_IDENTIFIER(NODE) \
2148 (TYPE_IDENTIFIER (TYPE_MAIN_VARIANT (NODE)))
2149 #define TYPE_NAME_STRING(NODE) (IDENTIFIER_POINTER (TYPE_IDENTIFIER (NODE)))
2150 #define TYPE_NAME_LENGTH(NODE) (IDENTIFIER_LENGTH (TYPE_IDENTIFIER (NODE)))
2151
2152 /* Any kind of anonymous type. */
2153 #define TYPE_ANON_P(NODE) \
2154 (TYPE_LINKAGE_IDENTIFIER (NODE) \
2155 && IDENTIFIER_ANON_P (TYPE_LINKAGE_IDENTIFIER (NODE)))
2156
2157 /* Nonzero if NODE, a TYPE, has no name for linkage purposes. */
2158 #define TYPE_UNNAMED_P(NODE) \
2159 (TYPE_ANON_P (NODE) \
2160 && !IDENTIFIER_LAMBDA_P (TYPE_LINKAGE_IDENTIFIER (NODE)))
2161
2162 /* The _DECL for this _TYPE. */
2163 #define TYPE_MAIN_DECL(NODE) (TYPE_STUB_DECL (TYPE_MAIN_VARIANT (NODE)))
2164
2165 /* Nonzero if T is a type that could resolve to any kind of concrete type
2166 at instantiation time. */
2167 #define WILDCARD_TYPE_P(T) \
2168 (TREE_CODE (T) == TEMPLATE_TYPE_PARM \
2169 || TREE_CODE (T) == TYPENAME_TYPE \
2170 || TREE_CODE (T) == TYPEOF_TYPE \
2171 || TREE_CODE (T) == BOUND_TEMPLATE_TEMPLATE_PARM \
2172 || TREE_CODE (T) == DECLTYPE_TYPE)
2173
2174 /* Nonzero if T is a class (or struct or union) type. Also nonzero
2175 for template type parameters, typename types, and instantiated
2176 template template parameters. Keep these checks in ascending code
2177 order. */
2178 #define MAYBE_CLASS_TYPE_P(T) (WILDCARD_TYPE_P (T) || CLASS_TYPE_P (T))
2179
2180 /* Set CLASS_TYPE_P for T to VAL. T must be a class, struct, or
2181 union type. */
2182 #define SET_CLASS_TYPE_P(T, VAL) \
2183 (TYPE_LANG_FLAG_5 (RECORD_OR_UNION_CHECK (T)) = (VAL))
2184
2185 /* Nonzero if T is a class type. Zero for template type parameters,
2186 typename types, and so forth. */
2187 #define CLASS_TYPE_P(T) \
2188 (RECORD_OR_UNION_CODE_P (TREE_CODE (T)) && TYPE_LANG_FLAG_5 (T))
2189
2190 /* Nonzero if T is a class type but not a union. */
2191 #define NON_UNION_CLASS_TYPE_P(T) \
2192 (TREE_CODE (T) == RECORD_TYPE && TYPE_LANG_FLAG_5 (T))
2193
2194 /* Keep these checks in ascending code order. */
2195 #define RECORD_OR_UNION_CODE_P(T) \
2196 ((T) == RECORD_TYPE || (T) == UNION_TYPE)
2197 #define OVERLOAD_TYPE_P(T) \
2198 (CLASS_TYPE_P (T) || TREE_CODE (T) == ENUMERAL_TYPE)
2199
2200 /* True if this type is dependent. This predicate is only valid if
2201 TYPE_DEPENDENT_P_VALID is true. */
2202 #define TYPE_DEPENDENT_P(NODE) TYPE_LANG_FLAG_0 (NODE)
2203
2204 /* True if dependent_type_p has been called for this type, with the
2205 result that TYPE_DEPENDENT_P is valid. */
2206 #define TYPE_DEPENDENT_P_VALID(NODE) TYPE_LANG_FLAG_6(NODE)
2207
2208 /* Nonzero if this type is const-qualified. */
2209 #define CP_TYPE_CONST_P(NODE) \
2210 ((cp_type_quals (NODE) & TYPE_QUAL_CONST) != 0)
2211
2212 /* Nonzero if this type is volatile-qualified. */
2213 #define CP_TYPE_VOLATILE_P(NODE) \
2214 ((cp_type_quals (NODE) & TYPE_QUAL_VOLATILE) != 0)
2215
2216 /* Nonzero if this type is restrict-qualified. */
2217 #define CP_TYPE_RESTRICT_P(NODE) \
2218 ((cp_type_quals (NODE) & TYPE_QUAL_RESTRICT) != 0)
2219
2220 /* Nonzero if this type is const-qualified, but not
2221 volatile-qualified. Other qualifiers are ignored. This macro is
2222 used to test whether or not it is OK to bind an rvalue to a
2223 reference. */
2224 #define CP_TYPE_CONST_NON_VOLATILE_P(NODE) \
2225 ((cp_type_quals (NODE) & (TYPE_QUAL_CONST | TYPE_QUAL_VOLATILE)) \
2226 == TYPE_QUAL_CONST)
2227
2228 #define FUNCTION_ARG_CHAIN(NODE) \
2229 TREE_CHAIN (TYPE_ARG_TYPES (TREE_TYPE (NODE)))
2230
2231 /* Given a FUNCTION_DECL, returns the first TREE_LIST out of TYPE_ARG_TYPES
2232 which refers to a user-written parameter. */
2233 #define FUNCTION_FIRST_USER_PARMTYPE(NODE) \
2234 skip_artificial_parms_for ((NODE), TYPE_ARG_TYPES (TREE_TYPE (NODE)))
2235
2236 /* Similarly, but for DECL_ARGUMENTS. */
2237 #define FUNCTION_FIRST_USER_PARM(NODE) \
2238 skip_artificial_parms_for ((NODE), DECL_ARGUMENTS (NODE))
2239
2240 /* Nonzero iff TYPE is derived from PARENT. Ignores accessibility and
2241 ambiguity issues. */
2242 #define DERIVED_FROM_P(PARENT, TYPE) \
2243 (lookup_base ((TYPE), (PARENT), ba_any, NULL, tf_none) != NULL_TREE)
2244
2245 /* Gives the visibility specification for a class type. */
2246 #define CLASSTYPE_VISIBILITY(TYPE) \
2247 DECL_VISIBILITY (TYPE_MAIN_DECL (TYPE))
2248 #define CLASSTYPE_VISIBILITY_SPECIFIED(TYPE) \
2249 DECL_VISIBILITY_SPECIFIED (TYPE_MAIN_DECL (TYPE))
2250
2251 struct GTY (()) tree_pair_s {
2252 tree purpose;
2253 tree value;
2254 };
2255 typedef tree_pair_s *tree_pair_p;
2256
2257 /* This structure provides additional information above and beyond
2258 what is provide in the ordinary tree_type. In the past, we used it
2259 for the types of class types, template parameters types, typename
2260 types, and so forth. However, there can be many (tens to hundreds
2261 of thousands) of template parameter types in a compilation, and
2262 there's no need for this additional information in that case.
2263 Therefore, we now use this data structure only for class types.
2264
2265 In the past, it was thought that there would be relatively few
2266 class types. However, in the presence of heavy use of templates,
2267 many (i.e., thousands) of classes can easily be generated.
2268 Therefore, we should endeavor to keep the size of this structure to
2269 a minimum. */
2270 struct GTY(()) lang_type {
2271 unsigned char align;
2272
2273 unsigned has_type_conversion : 1;
2274 unsigned has_copy_ctor : 1;
2275 unsigned has_default_ctor : 1;
2276 unsigned const_needs_init : 1;
2277 unsigned ref_needs_init : 1;
2278 unsigned has_const_copy_assign : 1;
2279 unsigned use_template : 2;
2280
2281 unsigned has_mutable : 1;
2282 unsigned com_interface : 1;
2283 unsigned non_pod_class : 1;
2284 unsigned nearly_empty_p : 1;
2285 unsigned user_align : 1;
2286 unsigned has_copy_assign : 1;
2287 unsigned has_new : 1;
2288 unsigned has_array_new : 1;
2289
2290 unsigned gets_delete : 2;
2291 unsigned interface_only : 1;
2292 unsigned interface_unknown : 1;
2293 unsigned contains_empty_class_p : 1;
2294 unsigned anon_aggr : 1;
2295 unsigned non_zero_init : 1;
2296 unsigned empty_p : 1;
2297 /* 32 bits allocated. */
2298
2299 unsigned vec_new_uses_cookie : 1;
2300 unsigned declared_class : 1;
2301 unsigned diamond_shaped : 1;
2302 unsigned repeated_base : 1;
2303 unsigned being_defined : 1;
2304 unsigned debug_requested : 1;
2305 unsigned fields_readonly : 1;
2306 unsigned ptrmemfunc_flag : 1;
2307
2308 unsigned lazy_default_ctor : 1;
2309 unsigned lazy_copy_ctor : 1;
2310 unsigned lazy_copy_assign : 1;
2311 unsigned lazy_destructor : 1;
2312 unsigned has_const_copy_ctor : 1;
2313 unsigned has_complex_copy_ctor : 1;
2314 unsigned has_complex_copy_assign : 1;
2315 unsigned non_aggregate : 1;
2316
2317 unsigned has_complex_dflt : 1;
2318 unsigned has_list_ctor : 1;
2319 unsigned non_std_layout : 1;
2320 unsigned is_literal : 1;
2321 unsigned lazy_move_ctor : 1;
2322 unsigned lazy_move_assign : 1;
2323 unsigned has_complex_move_ctor : 1;
2324 unsigned has_complex_move_assign : 1;
2325
2326 unsigned has_constexpr_ctor : 1;
2327 unsigned unique_obj_representations : 1;
2328 unsigned unique_obj_representations_set : 1;
2329
2330 /* When adding a flag here, consider whether or not it ought to
2331 apply to a template instance if it applies to the template. If
2332 so, make sure to copy it in instantiate_class_template! */
2333
2334 /* There are some bits left to fill out a 32-bit word. Keep track
2335 of this by updating the size of this bitfield whenever you add or
2336 remove a flag. */
2337 unsigned dummy : 5;
2338
2339 tree primary_base;
2340 vec<tree_pair_s, va_gc> *vcall_indices;
2341 tree vtables;
2342 tree typeinfo_var;
2343 vec<tree, va_gc> *vbases;
2344 tree as_base;
2345 vec<tree, va_gc> *pure_virtuals;
2346 tree friend_classes;
2347 vec<tree, va_gc> * GTY((reorder ("resort_type_member_vec"))) members;
2348 tree key_method;
2349 tree decl_list;
2350 tree befriending_classes;
2351 /* In a RECORD_TYPE, information specific to Objective-C++, such
2352 as a list of adopted protocols or a pointer to a corresponding
2353 @interface. See objc/objc-act.h for details. */
2354 tree objc_info;
2355 /* FIXME reuse another field? */
2356 tree lambda_expr;
2357 };
2358
2359 /* We used to have a variant type for lang_type. Keep the name of the
2360 checking accessor for the sole survivor. */
2361 #define LANG_TYPE_CLASS_CHECK(NODE) (TYPE_LANG_SPECIFIC (NODE))
2362
2363 /* Nonzero for _CLASSTYPE means that operator delete is defined. */
2364 #define TYPE_GETS_DELETE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->gets_delete)
2365 #define TYPE_GETS_REG_DELETE(NODE) (TYPE_GETS_DELETE (NODE) & 1)
2366
2367 /* Nonzero if `new NODE[x]' should cause the allocation of extra
2368 storage to indicate how many array elements are in use. */
2369 #define TYPE_VEC_NEW_USES_COOKIE(NODE) \
2370 (CLASS_TYPE_P (NODE) \
2371 && LANG_TYPE_CLASS_CHECK (NODE)->vec_new_uses_cookie)
2372
2373 /* Nonzero means that this _CLASSTYPE node defines ways of converting
2374 itself to other types. */
2375 #define TYPE_HAS_CONVERSION(NODE) \
2376 (LANG_TYPE_CLASS_CHECK (NODE)->has_type_conversion)
2377
2378 /* Nonzero means that NODE (a class type) has a default constructor --
2379 but that it has not yet been declared. */
2380 #define CLASSTYPE_LAZY_DEFAULT_CTOR(NODE) \
2381 (LANG_TYPE_CLASS_CHECK (NODE)->lazy_default_ctor)
2382
2383 /* Nonzero means that NODE (a class type) has a copy constructor --
2384 but that it has not yet been declared. */
2385 #define CLASSTYPE_LAZY_COPY_CTOR(NODE) \
2386 (LANG_TYPE_CLASS_CHECK (NODE)->lazy_copy_ctor)
2387
2388 /* Nonzero means that NODE (a class type) has a move constructor --
2389 but that it has not yet been declared. */
2390 #define CLASSTYPE_LAZY_MOVE_CTOR(NODE) \
2391 (LANG_TYPE_CLASS_CHECK (NODE)->lazy_move_ctor)
2392
2393 /* Nonzero means that NODE (a class type) has an assignment operator
2394 -- but that it has not yet been declared. */
2395 #define CLASSTYPE_LAZY_COPY_ASSIGN(NODE) \
2396 (LANG_TYPE_CLASS_CHECK (NODE)->lazy_copy_assign)
2397
2398 /* Nonzero means that NODE (a class type) has an assignment operator
2399 -- but that it has not yet been declared. */
2400 #define CLASSTYPE_LAZY_MOVE_ASSIGN(NODE) \
2401 (LANG_TYPE_CLASS_CHECK (NODE)->lazy_move_assign)
2402
2403 /* Nonzero means that NODE (a class type) has a destructor -- but that
2404 it has not yet been declared. */
2405 #define CLASSTYPE_LAZY_DESTRUCTOR(NODE) \
2406 (LANG_TYPE_CLASS_CHECK (NODE)->lazy_destructor)
2407
2408 /* Nonzero means that NODE (a class type) is final */
2409 #define CLASSTYPE_FINAL(NODE) \
2410 TYPE_FINAL_P (NODE)
2411
2412
2413 /* Nonzero means that this _CLASSTYPE node overloads operator=(X&). */
2414 #define TYPE_HAS_COPY_ASSIGN(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_copy_assign)
2415
2416 /* True iff the class type NODE has an "operator =" whose parameter
2417 has a parameter of type "const X&". */
2418 #define TYPE_HAS_CONST_COPY_ASSIGN(NODE) \
2419 (LANG_TYPE_CLASS_CHECK (NODE)->has_const_copy_assign)
2420
2421 /* Nonzero means that this _CLASSTYPE node has an X(X&) constructor. */
2422 #define TYPE_HAS_COPY_CTOR(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_copy_ctor)
2423 #define TYPE_HAS_CONST_COPY_CTOR(NODE) \
2424 (LANG_TYPE_CLASS_CHECK (NODE)->has_const_copy_ctor)
2425
2426 /* Nonzero if this class has an X(initializer_list<T>) constructor. */
2427 #define TYPE_HAS_LIST_CTOR(NODE) \
2428 (LANG_TYPE_CLASS_CHECK (NODE)->has_list_ctor)
2429
2430 /* Nonzero if this class has a constexpr constructor other than a copy/move
2431 constructor. Note that a class can have constexpr constructors for
2432 static initialization even if it isn't a literal class. */
2433 #define TYPE_HAS_CONSTEXPR_CTOR(NODE) \
2434 (LANG_TYPE_CLASS_CHECK (NODE)->has_constexpr_ctor)
2435
2436 /* Nonzero if this class defines an overloaded operator new. (An
2437 operator new [] doesn't count.) */
2438 #define TYPE_HAS_NEW_OPERATOR(NODE) \
2439 (LANG_TYPE_CLASS_CHECK (NODE)->has_new)
2440
2441 /* Nonzero if this class defines an overloaded operator new[]. */
2442 #define TYPE_HAS_ARRAY_NEW_OPERATOR(NODE) \
2443 (LANG_TYPE_CLASS_CHECK (NODE)->has_array_new)
2444
2445 /* Nonzero means that this type is being defined. I.e., the left brace
2446 starting the definition of this type has been seen. */
2447 #define TYPE_BEING_DEFINED(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->being_defined)
2448
2449 /* Nonzero means that this type is either complete or being defined, so we
2450 can do lookup in it. */
2451 #define COMPLETE_OR_OPEN_TYPE_P(NODE) \
2452 (COMPLETE_TYPE_P (NODE) || (CLASS_TYPE_P (NODE) && TYPE_BEING_DEFINED (NODE)))
2453
2454 /* Mark bits for repeated base checks. */
2455 #define TYPE_MARKED_P(NODE) TREE_LANG_FLAG_6 (TYPE_CHECK (NODE))
2456
2457 /* Nonzero if the class NODE has multiple paths to the same (virtual)
2458 base object. */
2459 #define CLASSTYPE_DIAMOND_SHAPED_P(NODE) \
2460 (LANG_TYPE_CLASS_CHECK(NODE)->diamond_shaped)
2461
2462 /* Nonzero if the class NODE has multiple instances of the same base
2463 type. */
2464 #define CLASSTYPE_REPEATED_BASE_P(NODE) \
2465 (LANG_TYPE_CLASS_CHECK(NODE)->repeated_base)
2466
2467 /* The member function with which the vtable will be emitted:
2468 the first noninline non-pure-virtual member function. NULL_TREE
2469 if there is no key function or if this is a class template */
2470 #define CLASSTYPE_KEY_METHOD(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->key_method)
2471
2472 /* Vector of members. During definition, it is unordered and only
2473 member functions are present. After completion it is sorted and
2474 contains both member functions and non-functions. STAT_HACK is
2475 involved to preserve oneslot per name invariant. */
2476 #define CLASSTYPE_MEMBER_VEC(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->members)
2477
2478 /* For class templates, this is a TREE_LIST of all member data,
2479 functions, types, and friends in the order of declaration.
2480 The TREE_PURPOSE of each TREE_LIST is NULL_TREE for a friend,
2481 and the RECORD_TYPE for the class template otherwise. */
2482 #define CLASSTYPE_DECL_LIST(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->decl_list)
2483
2484 /* A FUNCTION_DECL or OVERLOAD for the constructors for NODE. These
2485 are the constructors that take an in-charge parameter. */
2486 #define CLASSTYPE_CONSTRUCTORS(NODE) \
2487 (get_class_binding_direct (NODE, ctor_identifier))
2488
2489 /* A FUNCTION_DECL for the destructor for NODE. This is the
2490 destructors that take an in-charge parameter. If
2491 CLASSTYPE_LAZY_DESTRUCTOR is true, then this entry will be NULL
2492 until the destructor is created with lazily_declare_fn. */
2493 #define CLASSTYPE_DESTRUCTOR(NODE) \
2494 (get_class_binding_direct (NODE, dtor_identifier))
2495
2496 /* Nonzero if NODE has a primary base class, i.e., a base class with
2497 which it shares the virtual function table pointer. */
2498 #define CLASSTYPE_HAS_PRIMARY_BASE_P(NODE) \
2499 (CLASSTYPE_PRIMARY_BINFO (NODE) != NULL_TREE)
2500
2501 /* If non-NULL, this is the binfo for the primary base class, i.e.,
2502 the base class which contains the virtual function table pointer
2503 for this class. */
2504 #define CLASSTYPE_PRIMARY_BINFO(NODE) \
2505 (LANG_TYPE_CLASS_CHECK (NODE)->primary_base)
2506
2507 /* A vector of BINFOs for the direct and indirect virtual base classes
2508 that this type uses in a post-order depth-first left-to-right
2509 order. (In other words, these bases appear in the order that they
2510 should be initialized.) */
2511 #define CLASSTYPE_VBASECLASSES(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->vbases)
2512
2513 /* The type corresponding to NODE when NODE is used as a base class,
2514 i.e., NODE without virtual base classes or tail padding. */
2515 #define CLASSTYPE_AS_BASE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->as_base)
2516
2517 /* True iff NODE is the CLASSTYPE_AS_BASE version of some type. */
2518 #define IS_FAKE_BASE_TYPE(NODE) \
2519 (TREE_CODE (NODE) == RECORD_TYPE \
2520 && TYPE_CONTEXT (NODE) && CLASS_TYPE_P (TYPE_CONTEXT (NODE)) \
2521 && CLASSTYPE_AS_BASE (TYPE_CONTEXT (NODE)) == (NODE))
2522
2523 /* These are the size and alignment of the type without its virtual
2524 base classes, for when we use this type as a base itself. */
2525 #define CLASSTYPE_SIZE(NODE) TYPE_SIZE (CLASSTYPE_AS_BASE (NODE))
2526 #define CLASSTYPE_SIZE_UNIT(NODE) TYPE_SIZE_UNIT (CLASSTYPE_AS_BASE (NODE))
2527 #define CLASSTYPE_ALIGN(NODE) TYPE_ALIGN (CLASSTYPE_AS_BASE (NODE))
2528 #define CLASSTYPE_USER_ALIGN(NODE) TYPE_USER_ALIGN (CLASSTYPE_AS_BASE (NODE))
2529
2530 /* The alignment of NODE, without its virtual bases, in bytes. */
2531 #define CLASSTYPE_ALIGN_UNIT(NODE) \
2532 (CLASSTYPE_ALIGN (NODE) / BITS_PER_UNIT)
2533
2534 /* A vec<tree> of virtual functions which cannot be inherited by
2535 derived classes. When deriving from this type, the derived
2536 class must provide its own definition for each of these functions. */
2537 #define CLASSTYPE_PURE_VIRTUALS(NODE) \
2538 (LANG_TYPE_CLASS_CHECK (NODE)->pure_virtuals)
2539
2540 /* Nonzero means that this type is an abstract class type. */
2541 #define ABSTRACT_CLASS_TYPE_P(NODE) \
2542 (CLASS_TYPE_P (NODE) && CLASSTYPE_PURE_VIRTUALS(NODE))
2543
2544 /* Nonzero means that this type has an X() constructor. */
2545 #define TYPE_HAS_DEFAULT_CONSTRUCTOR(NODE) \
2546 (LANG_TYPE_CLASS_CHECK (NODE)->has_default_ctor)
2547
2548 /* Nonzero means that this type contains a mutable member. */
2549 #define CLASSTYPE_HAS_MUTABLE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_mutable)
2550 #define TYPE_HAS_MUTABLE_P(NODE) (cp_has_mutable_p (NODE))
2551
2552 /* Nonzero means that this class type is not POD for the purpose of layout
2553 (as defined in the ABI). This is different from the language's POD. */
2554 #define CLASSTYPE_NON_LAYOUT_POD_P(NODE) \
2555 (LANG_TYPE_CLASS_CHECK (NODE)->non_pod_class)
2556
2557 /* Nonzero means that this class type is a non-standard-layout class. */
2558 #define CLASSTYPE_NON_STD_LAYOUT(NODE) \
2559 (LANG_TYPE_CLASS_CHECK (NODE)->non_std_layout)
2560
2561 /* Nonzero means that this class type does have unique object
2562 representations. */
2563 #define CLASSTYPE_UNIQUE_OBJ_REPRESENTATIONS(NODE) \
2564 (LANG_TYPE_CLASS_CHECK (NODE)->unique_obj_representations)
2565
2566 /* Nonzero means that this class type has
2567 CLASSTYPE_UNIQUE_OBJ_REPRESENTATIONS computed. */
2568 #define CLASSTYPE_UNIQUE_OBJ_REPRESENTATIONS_SET(NODE) \
2569 (LANG_TYPE_CLASS_CHECK (NODE)->unique_obj_representations_set)
2570
2571 /* Nonzero means that this class contains pod types whose default
2572 initialization is not a zero initialization (namely, pointers to
2573 data members). */
2574 #define CLASSTYPE_NON_ZERO_INIT_P(NODE) \
2575 (LANG_TYPE_CLASS_CHECK (NODE)->non_zero_init)
2576
2577 /* Nonzero if this class is "empty" in the sense of the C++ ABI. */
2578 #define CLASSTYPE_EMPTY_P(NODE) \
2579 (LANG_TYPE_CLASS_CHECK (NODE)->empty_p)
2580
2581 /* Nonzero if this class is "nearly empty", i.e., contains only a
2582 virtual function table pointer. */
2583 #define CLASSTYPE_NEARLY_EMPTY_P(NODE) \
2584 (LANG_TYPE_CLASS_CHECK (NODE)->nearly_empty_p)
2585
2586 /* Nonzero if this class contains an empty subobject. */
2587 #define CLASSTYPE_CONTAINS_EMPTY_CLASS_P(NODE) \
2588 (LANG_TYPE_CLASS_CHECK (NODE)->contains_empty_class_p)
2589
2590 /* A list of class types of which this type is a friend. The
2591 TREE_VALUE is normally a TYPE, but will be a TEMPLATE_DECL in the
2592 case of a template friend. */
2593 #define CLASSTYPE_FRIEND_CLASSES(NODE) \
2594 (LANG_TYPE_CLASS_CHECK (NODE)->friend_classes)
2595
2596 /* A list of the classes which grant friendship to this class. */
2597 #define CLASSTYPE_BEFRIENDING_CLASSES(NODE) \
2598 (LANG_TYPE_CLASS_CHECK (NODE)->befriending_classes)
2599
2600 /* The associated LAMBDA_EXPR that made this class. */
2601 #define CLASSTYPE_LAMBDA_EXPR(NODE) \
2602 (LANG_TYPE_CLASS_CHECK (NODE)->lambda_expr)
2603 /* The extra mangling scope for this closure type. */
2604 #define LAMBDA_TYPE_EXTRA_SCOPE(NODE) \
2605 (LAMBDA_EXPR_EXTRA_SCOPE (CLASSTYPE_LAMBDA_EXPR (NODE)))
2606
2607 /* Say whether this node was declared as a "class" or a "struct". */
2608 #define CLASSTYPE_DECLARED_CLASS(NODE) \
2609 (LANG_TYPE_CLASS_CHECK (NODE)->declared_class)
2610
2611 /* Nonzero if this class has const members
2612 which have no specified initialization. */
2613 #define CLASSTYPE_READONLY_FIELDS_NEED_INIT(NODE) \
2614 (TYPE_LANG_SPECIFIC (NODE) \
2615 ? LANG_TYPE_CLASS_CHECK (NODE)->const_needs_init : 0)
2616 #define SET_CLASSTYPE_READONLY_FIELDS_NEED_INIT(NODE, VALUE) \
2617 (LANG_TYPE_CLASS_CHECK (NODE)->const_needs_init = (VALUE))
2618
2619 /* Nonzero if this class has ref members
2620 which have no specified initialization. */
2621 #define CLASSTYPE_REF_FIELDS_NEED_INIT(NODE) \
2622 (TYPE_LANG_SPECIFIC (NODE) \
2623 ? LANG_TYPE_CLASS_CHECK (NODE)->ref_needs_init : 0)
2624 #define SET_CLASSTYPE_REF_FIELDS_NEED_INIT(NODE, VALUE) \
2625 (LANG_TYPE_CLASS_CHECK (NODE)->ref_needs_init = (VALUE))
2626
2627 /* Nonzero if this class is included from a header file which employs
2628 `#pragma interface', and it is not included in its implementation file. */
2629 #define CLASSTYPE_INTERFACE_ONLY(NODE) \
2630 (LANG_TYPE_CLASS_CHECK (NODE)->interface_only)
2631
2632 /* True if we have already determined whether or not vtables, VTTs,
2633 typeinfo, and other similar per-class data should be emitted in
2634 this translation unit. This flag does not indicate whether or not
2635 these items should be emitted; it only indicates that we know one
2636 way or the other. */
2637 #define CLASSTYPE_INTERFACE_KNOWN(NODE) \
2638 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown == 0)
2639 /* The opposite of CLASSTYPE_INTERFACE_KNOWN. */
2640 #define CLASSTYPE_INTERFACE_UNKNOWN(NODE) \
2641 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown)
2642
2643 #define SET_CLASSTYPE_INTERFACE_UNKNOWN_X(NODE,X) \
2644 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown = !!(X))
2645 #define SET_CLASSTYPE_INTERFACE_UNKNOWN(NODE) \
2646 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown = 1)
2647 #define SET_CLASSTYPE_INTERFACE_KNOWN(NODE) \
2648 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown = 0)
2649
2650 /* Nonzero if a _DECL node requires us to output debug info for this class. */
2651 #define CLASSTYPE_DEBUG_REQUESTED(NODE) \
2652 (LANG_TYPE_CLASS_CHECK (NODE)->debug_requested)
2653 \f
2654 /* Additional macros for inheritance information. */
2655
2656 /* Nonzero means that this class is on a path leading to a new vtable. */
2657 #define BINFO_VTABLE_PATH_MARKED(NODE) BINFO_FLAG_1 (NODE)
2658
2659 /* Nonzero means B (a BINFO) has its own vtable. Any copies will not
2660 have this flag set. */
2661 #define BINFO_NEW_VTABLE_MARKED(B) (BINFO_FLAG_2 (B))
2662
2663 /* Compare a BINFO_TYPE with another type for equality. For a binfo,
2664 this is functionally equivalent to using same_type_p, but
2665 measurably faster. At least one of the arguments must be a
2666 BINFO_TYPE. The other can be a BINFO_TYPE or a regular type. If
2667 BINFO_TYPE(T) ever stops being the main variant of the class the
2668 binfo is for, this macro must change. */
2669 #define SAME_BINFO_TYPE_P(A, B) ((A) == (B))
2670
2671 /* Any subobject that needs a new vtable must have a vptr and must not
2672 be a non-virtual primary base (since it would then use the vtable from a
2673 derived class and never become non-primary.) */
2674 #define SET_BINFO_NEW_VTABLE_MARKED(B) \
2675 (BINFO_NEW_VTABLE_MARKED (B) = 1, \
2676 gcc_assert (!BINFO_PRIMARY_P (B) || BINFO_VIRTUAL_P (B)), \
2677 gcc_assert (TYPE_VFIELD (BINFO_TYPE (B))))
2678
2679 /* Nonzero if this binfo is for a dependent base - one that should not
2680 be searched. */
2681 #define BINFO_DEPENDENT_BASE_P(NODE) BINFO_FLAG_3 (NODE)
2682
2683 /* Nonzero if this binfo has lost its primary base binfo (because that
2684 is a nearly-empty virtual base that has been taken by some other
2685 base in the complete hierarchy. */
2686 #define BINFO_LOST_PRIMARY_P(NODE) BINFO_FLAG_4 (NODE)
2687
2688 /* Nonzero if this BINFO is a primary base class. */
2689 #define BINFO_PRIMARY_P(NODE) BINFO_FLAG_5(NODE)
2690 \f
2691 /* A vec<tree_pair_s> of the vcall indices associated with the class
2692 NODE. The PURPOSE of each element is a FUNCTION_DECL for a virtual
2693 function. The VALUE is the index into the virtual table where the
2694 vcall offset for that function is stored, when NODE is a virtual
2695 base. */
2696 #define CLASSTYPE_VCALL_INDICES(NODE) \
2697 (LANG_TYPE_CLASS_CHECK (NODE)->vcall_indices)
2698
2699 /* The various vtables for the class NODE. The primary vtable will be
2700 first, followed by the construction vtables and VTT, if any. */
2701 #define CLASSTYPE_VTABLES(NODE) \
2702 (LANG_TYPE_CLASS_CHECK (NODE)->vtables)
2703
2704 /* The std::type_info variable representing this class, or NULL if no
2705 such variable has been created. This field is only set for the
2706 TYPE_MAIN_VARIANT of the class. */
2707 #define CLASSTYPE_TYPEINFO_VAR(NODE) \
2708 (LANG_TYPE_CLASS_CHECK (NODE)->typeinfo_var)
2709
2710 /* Accessor macros for the BINFO_VIRTUALS list. */
2711
2712 /* The number of bytes by which to adjust the `this' pointer when
2713 calling this virtual function. Subtract this value from the this
2714 pointer. Always non-NULL, might be constant zero though. */
2715 #define BV_DELTA(NODE) (TREE_PURPOSE (NODE))
2716
2717 /* If non-NULL, the vtable index at which to find the vcall offset
2718 when calling this virtual function. Add the value at that vtable
2719 index to the this pointer. */
2720 #define BV_VCALL_INDEX(NODE) (TREE_TYPE (NODE))
2721
2722 /* The function to call. */
2723 #define BV_FN(NODE) (TREE_VALUE (NODE))
2724
2725 /* Whether or not this entry is for a lost primary virtual base. */
2726 #define BV_LOST_PRIMARY(NODE) (TREE_LANG_FLAG_0 (NODE))
2727 \f
2728 /* For FUNCTION_TYPE or METHOD_TYPE, a list of the exceptions that
2729 this type can raise. Each TREE_VALUE is a _TYPE. The TREE_VALUE
2730 will be NULL_TREE to indicate a throw specification of `()', or
2731 no exceptions allowed. For a noexcept specification, TREE_VALUE
2732 is NULL_TREE and TREE_PURPOSE is the constant-expression. For
2733 a deferred noexcept-specification, TREE_PURPOSE is a DEFERRED_NOEXCEPT
2734 (for templates) or an OVERLOAD list of functions (for implicitly
2735 declared functions). */
2736 #define TYPE_RAISES_EXCEPTIONS(NODE) \
2737 TYPE_LANG_SLOT_1 (FUNC_OR_METHOD_CHECK (NODE))
2738
2739 /* For FUNCTION_TYPE or METHOD_TYPE, return 1 iff it is declared `throw()'
2740 or noexcept(true). */
2741 #define TYPE_NOTHROW_P(NODE) nothrow_spec_p (TYPE_RAISES_EXCEPTIONS (NODE))
2742
2743 /* For FUNCTION_TYPE or METHOD_TYPE, true if NODE is noexcept. This is the
2744 case for things declared noexcept(true) and, with -fnothrow-opt, for
2745 throw() functions. */
2746 #define TYPE_NOEXCEPT_P(NODE) type_noexcept_p (NODE)
2747
2748 /* The binding level associated with the namespace. */
2749 #define NAMESPACE_LEVEL(NODE) \
2750 (LANG_DECL_NS_CHECK (NODE)->level)
2751 \f
2752 /* Discriminator values for lang_decl. */
2753
2754 enum lang_decl_selector
2755 {
2756 lds_min,
2757 lds_fn,
2758 lds_ns,
2759 lds_parm,
2760 lds_decomp
2761 };
2762
2763 /* Flags shared by all forms of DECL_LANG_SPECIFIC.
2764
2765 Some of the flags live here only to make lang_decl_min/fn smaller. Do
2766 not make this struct larger than 32 bits. */
2767
2768 struct GTY(()) lang_decl_base {
2769 ENUM_BITFIELD(lang_decl_selector) selector : 3;
2770 ENUM_BITFIELD(languages) language : 1;
2771 unsigned use_template : 2;
2772 unsigned not_really_extern : 1; /* var or fn */
2773 unsigned initialized_in_class : 1; /* var or fn */
2774
2775 unsigned threadprivate_or_deleted_p : 1; /* var or fn */
2776 /* anticipated_p is no longer used for anticipated_decls (fn, type
2777 or template). It is used as DECL_OMP_PRIVATIZED_MEMBER in
2778 var. */
2779 unsigned anticipated_p : 1;
2780 unsigned friend_or_tls : 1; /* var, fn, type or template */
2781 unsigned unknown_bound_p : 1; /* var */
2782 unsigned odr_used : 1; /* var or fn */
2783 unsigned concept_p : 1; /* applies to vars and functions */
2784 unsigned var_declared_inline_p : 1; /* var */
2785 unsigned dependent_init_p : 1; /* var */
2786
2787 /* The following apply to VAR, FUNCTION, TYPE, CONCEPT, & NAMESPACE
2788 decls. */
2789 unsigned module_purview_p : 1; /* in module purview (not GMF) */
2790 unsigned module_import_p : 1; /* from an import */
2791 unsigned module_entity_p : 1; /* is in the entitity ary &
2792 hash. */
2793 /* VAR_DECL or FUNCTION_DECL has attached decls. */
2794 unsigned module_attached_p : 1;
2795
2796 /* 12 spare bits. */
2797 };
2798
2799 /* True for DECL codes which have template info and access. */
2800 #define LANG_DECL_HAS_MIN(NODE) \
2801 (VAR_OR_FUNCTION_DECL_P (NODE) \
2802 || TREE_CODE (NODE) == FIELD_DECL \
2803 || TREE_CODE (NODE) == CONST_DECL \
2804 || TREE_CODE (NODE) == TYPE_DECL \
2805 || TREE_CODE (NODE) == TEMPLATE_DECL \
2806 || TREE_CODE (NODE) == USING_DECL \
2807 || TREE_CODE (NODE) == CONCEPT_DECL)
2808
2809 /* DECL_LANG_SPECIFIC for the above codes. */
2810
2811 struct GTY(()) lang_decl_min {
2812 struct lang_decl_base base; /* 32-bits. */
2813
2814 /* In a FUNCTION_DECL for which DECL_THUNK_P holds, this is
2815 THUNK_ALIAS.
2816 In a FUNCTION_DECL for which DECL_THUNK_P does not hold,
2817 VAR_DECL, TYPE_DECL, or TEMPLATE_DECL, this is
2818 DECL_TEMPLATE_INFO. */
2819 tree template_info;
2820
2821 /* In a DECL_THUNK_P FUNCTION_DECL, this is THUNK_VIRTUAL_OFFSET.
2822 In a lambda-capture proxy VAR_DECL, this is DECL_CAPTURED_VARIABLE.
2823 In a function-scope TREE_STATIC VAR_DECL or IMPLICIT_TYPEDEF_P TYPE_DECL,
2824 this is DECL_DISCRIMINATOR.
2825 In a DECL_LOCAL_DECL_P decl, this is the namespace decl it aliases.
2826 Otherwise, in a class-scope DECL, this is DECL_ACCESS. */
2827 tree access;
2828 };
2829
2830 /* Additional DECL_LANG_SPECIFIC information for functions. */
2831
2832 struct GTY(()) lang_decl_fn {
2833 struct lang_decl_min min;
2834
2835 /* In a overloaded operator, this is the compressed operator code. */
2836 unsigned ovl_op_code : 6;
2837 unsigned global_ctor_p : 1;
2838 unsigned global_dtor_p : 1;
2839
2840 unsigned static_function : 1;
2841 unsigned pure_virtual : 1;
2842 unsigned defaulted_p : 1;
2843 unsigned has_in_charge_parm_p : 1;
2844 unsigned has_vtt_parm_p : 1;
2845 unsigned pending_inline_p : 1;
2846 unsigned nonconverting : 1;
2847 unsigned thunk_p : 1;
2848
2849 unsigned this_thunk_p : 1;
2850 unsigned omp_declare_reduction_p : 1;
2851 unsigned has_dependent_explicit_spec_p : 1;
2852 unsigned immediate_fn_p : 1;
2853 unsigned maybe_deleted : 1;
2854 unsigned coroutine_p : 1;
2855
2856 unsigned spare : 10;
2857
2858 /* 32-bits padding on 64-bit host. */
2859
2860 /* For a non-thunk function decl, this is a tree list of
2861 friendly classes. For a thunk function decl, it is the
2862 thunked to function decl. */
2863 tree befriending_classes;
2864
2865 /* For a virtual FUNCTION_DECL for which
2866 DECL_THIS_THUNK_P does not hold, this is DECL_THUNKS. Both
2867 this pointer and result pointer adjusting thunks are
2868 chained here. This pointer thunks to return pointer thunks
2869 will be chained on the return pointer thunk.
2870 For a DECL_CONSTUCTOR_P FUNCTION_DECL, this is the base from
2871 whence we inherit. Otherwise, it is the class in which a
2872 (namespace-scope) friend is defined (if any). */
2873 tree context;
2874
2875 union lang_decl_u5
2876 {
2877 /* In a non-thunk FUNCTION_DECL, this is DECL_CLONED_FUNCTION. */
2878 tree GTY ((tag ("0"))) cloned_function;
2879
2880 /* In a FUNCTION_DECL for which THUNK_P holds this is the
2881 THUNK_FIXED_OFFSET. */
2882 HOST_WIDE_INT GTY ((tag ("1"))) fixed_offset;
2883 } GTY ((desc ("%1.thunk_p"))) u5;
2884
2885 union lang_decl_u3
2886 {
2887 struct cp_token_cache * GTY ((tag ("1"))) pending_inline_info;
2888 tree GTY ((tag ("0"))) saved_auto_return_type;
2889 } GTY ((desc ("%1.pending_inline_p"))) u;
2890
2891 };
2892
2893 /* DECL_LANG_SPECIFIC for namespaces. */
2894
2895 struct GTY(()) lang_decl_ns {
2896 struct lang_decl_base base; /* 32 bits. */
2897 cp_binding_level *level;
2898
2899 /* Inline children. Needs to be va_gc, because of PCH. */
2900 vec<tree, va_gc> *inlinees;
2901
2902 /* Hash table of bound decls. It'd be nice to have this inline, but
2903 as the hash_map has a dtor, we can't then put this struct into a
2904 union (until moving to c++11). */
2905 hash_table<named_decl_hash> *bindings;
2906 };
2907
2908 /* DECL_LANG_SPECIFIC for parameters. */
2909
2910 struct GTY(()) lang_decl_parm {
2911 struct lang_decl_base base; /* 32 bits. */
2912 int level;
2913 int index;
2914 };
2915
2916 /* Additional DECL_LANG_SPECIFIC information for structured bindings. */
2917
2918 struct GTY(()) lang_decl_decomp {
2919 struct lang_decl_min min;
2920 /* The artificial underlying "e" variable of the structured binding
2921 variable. */
2922 tree base;
2923 };
2924
2925 /* DECL_LANG_SPECIFIC for all types. It would be nice to just make this a
2926 union rather than a struct containing a union as its only field, but
2927 tree.h declares it as a struct. */
2928
2929 struct GTY(()) lang_decl {
2930 union GTY((desc ("%h.base.selector"))) lang_decl_u {
2931 /* Nothing of only the base type exists. */
2932 struct lang_decl_base GTY ((default)) base;
2933 struct lang_decl_min GTY((tag ("lds_min"))) min;
2934 struct lang_decl_fn GTY ((tag ("lds_fn"))) fn;
2935 struct lang_decl_ns GTY((tag ("lds_ns"))) ns;
2936 struct lang_decl_parm GTY((tag ("lds_parm"))) parm;
2937 struct lang_decl_decomp GTY((tag ("lds_decomp"))) decomp;
2938 } u;
2939 };
2940
2941 /* Looks through a template (if present) to find what it declares. */
2942 #define STRIP_TEMPLATE(NODE) \
2943 (TREE_CODE (NODE) == TEMPLATE_DECL ? DECL_TEMPLATE_RESULT (NODE) : NODE)
2944
2945 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
2946
2947 #define LANG_DECL_MIN_CHECK(NODE) __extension__ \
2948 ({ struct lang_decl *lt = DECL_LANG_SPECIFIC (NODE); \
2949 if (!LANG_DECL_HAS_MIN (NODE)) \
2950 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
2951 &lt->u.min; })
2952
2953 /* We want to be able to check DECL_CONSTRUCTOR_P and such on a function
2954 template, not just on a FUNCTION_DECL. So when looking for things in
2955 lang_decl_fn, look down through a TEMPLATE_DECL into its result. */
2956 #define LANG_DECL_FN_CHECK(NODE) __extension__ \
2957 ({ struct lang_decl *lt = DECL_LANG_SPECIFIC (STRIP_TEMPLATE (NODE)); \
2958 if (!DECL_DECLARES_FUNCTION_P (NODE) \
2959 || lt->u.base.selector != lds_fn) \
2960 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
2961 &lt->u.fn; })
2962
2963 #define LANG_DECL_NS_CHECK(NODE) __extension__ \
2964 ({ struct lang_decl *lt = DECL_LANG_SPECIFIC (NODE); \
2965 if (TREE_CODE (NODE) != NAMESPACE_DECL \
2966 || lt->u.base.selector != lds_ns) \
2967 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
2968 &lt->u.ns; })
2969
2970 #define LANG_DECL_PARM_CHECK(NODE) __extension__ \
2971 ({ struct lang_decl *lt = DECL_LANG_SPECIFIC (NODE); \
2972 if (TREE_CODE (NODE) != PARM_DECL \
2973 || lt->u.base.selector != lds_parm) \
2974 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
2975 &lt->u.parm; })
2976
2977 #define LANG_DECL_DECOMP_CHECK(NODE) __extension__ \
2978 ({ struct lang_decl *lt = DECL_LANG_SPECIFIC (NODE); \
2979 if (!VAR_P (NODE) \
2980 || lt->u.base.selector != lds_decomp) \
2981 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
2982 &lt->u.decomp; })
2983
2984 #else
2985
2986 #define LANG_DECL_MIN_CHECK(NODE) \
2987 (&DECL_LANG_SPECIFIC (NODE)->u.min)
2988
2989 #define LANG_DECL_FN_CHECK(NODE) \
2990 (&DECL_LANG_SPECIFIC (STRIP_TEMPLATE (NODE))->u.fn)
2991
2992 #define LANG_DECL_NS_CHECK(NODE) \
2993 (&DECL_LANG_SPECIFIC (NODE)->u.ns)
2994
2995 #define LANG_DECL_PARM_CHECK(NODE) \
2996 (&DECL_LANG_SPECIFIC (NODE)->u.parm)
2997
2998 #define LANG_DECL_DECOMP_CHECK(NODE) \
2999 (&DECL_LANG_SPECIFIC (NODE)->u.decomp)
3000
3001 #endif /* ENABLE_TREE_CHECKING */
3002
3003 /* For a FUNCTION_DECL or a VAR_DECL, the language linkage for the
3004 declaration. Some entities (like a member function in a local
3005 class, or a local variable) do not have linkage at all, and this
3006 macro should not be used in those cases.
3007
3008 Implementation note: A FUNCTION_DECL without DECL_LANG_SPECIFIC was
3009 created by language-independent code, and has C linkage. Most
3010 VAR_DECLs have C++ linkage, and do not have DECL_LANG_SPECIFIC, but
3011 we do create DECL_LANG_SPECIFIC for variables with non-C++ linkage. */
3012 #define DECL_LANGUAGE(NODE) \
3013 (DECL_LANG_SPECIFIC (NODE) \
3014 ? DECL_LANG_SPECIFIC (NODE)->u.base.language \
3015 : (TREE_CODE (NODE) == FUNCTION_DECL \
3016 ? lang_c : lang_cplusplus))
3017
3018 /* Set the language linkage for NODE to LANGUAGE. */
3019 #define SET_DECL_LANGUAGE(NODE, LANGUAGE) \
3020 (DECL_LANG_SPECIFIC (NODE)->u.base.language = (LANGUAGE))
3021
3022 /* For FUNCTION_DECLs and TEMPLATE_DECLs: nonzero means that this function
3023 is a constructor. */
3024 #define DECL_CONSTRUCTOR_P(NODE) \
3025 DECL_CXX_CONSTRUCTOR_P (STRIP_TEMPLATE (NODE))
3026
3027 /* Nonzero if NODE (a FUNCTION_DECL) is a constructor for a complete
3028 object. */
3029 #define DECL_COMPLETE_CONSTRUCTOR_P(NODE) \
3030 (DECL_NAME (NODE) == complete_ctor_identifier)
3031
3032 /* Nonzero if NODE (a FUNCTION_DECL) is a constructor for a base
3033 object. */
3034 #define DECL_BASE_CONSTRUCTOR_P(NODE) \
3035 (DECL_NAME (NODE) == base_ctor_identifier)
3036
3037 /* Nonzero if NODE (a FUNCTION_DECL) is a constructor, but not either the
3038 specialized in-charge constructor or the specialized not-in-charge
3039 constructor. */
3040 #define DECL_MAYBE_IN_CHARGE_CONSTRUCTOR_P(NODE) \
3041 (DECL_NAME (NODE) == ctor_identifier)
3042
3043 /* Nonzero if NODE (a FUNCTION_DECL) is a copy constructor. */
3044 #define DECL_COPY_CONSTRUCTOR_P(NODE) \
3045 (DECL_CONSTRUCTOR_P (NODE) && copy_fn_p (NODE) > 0)
3046
3047 /* Nonzero if NODE (a FUNCTION_DECL) is a move constructor. */
3048 #define DECL_MOVE_CONSTRUCTOR_P(NODE) \
3049 (DECL_CONSTRUCTOR_P (NODE) && move_fn_p (NODE))
3050
3051 /* Nonzero if NODE (a FUNCTION_DECL or TEMPLATE_DECL)
3052 is a destructor. */
3053 #define DECL_DESTRUCTOR_P(NODE) \
3054 DECL_CXX_DESTRUCTOR_P (STRIP_TEMPLATE (NODE))
3055
3056 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor, but not the
3057 specialized in-charge constructor, in-charge deleting constructor,
3058 or the base destructor. */
3059 #define DECL_MAYBE_IN_CHARGE_DESTRUCTOR_P(NODE) \
3060 (DECL_NAME (NODE) == dtor_identifier)
3061
3062 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor for a complete
3063 object. */
3064 #define DECL_COMPLETE_DESTRUCTOR_P(NODE) \
3065 (DECL_NAME (NODE) == complete_dtor_identifier)
3066
3067 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor for a base
3068 object. */
3069 #define DECL_BASE_DESTRUCTOR_P(NODE) \
3070 (DECL_NAME (NODE) == base_dtor_identifier)
3071
3072 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor for a complete
3073 object that deletes the object after it has been destroyed. */
3074 #define DECL_DELETING_DESTRUCTOR_P(NODE) \
3075 (DECL_NAME (NODE) == deleting_dtor_identifier)
3076
3077 /* Nonzero if either DECL_MAYBE_IN_CHARGE_CONSTRUCTOR_P or
3078 DECL_MAYBE_IN_CHARGE_DESTRUCTOR_P is true of NODE. */
3079 #define DECL_MAYBE_IN_CHARGE_CDTOR_P(NODE) \
3080 (DECL_MAYBE_IN_CHARGE_CONSTRUCTOR_P (NODE) \
3081 || DECL_MAYBE_IN_CHARGE_DESTRUCTOR_P (NODE))
3082
3083 /* Nonzero if NODE (a _DECL) is a cloned constructor or
3084 destructor. */
3085 #define DECL_CLONED_FUNCTION_P(NODE) \
3086 (DECL_NAME (NODE) \
3087 && IDENTIFIER_CDTOR_P (DECL_NAME (NODE)) \
3088 && !DECL_MAYBE_IN_CHARGE_CDTOR_P (NODE))
3089
3090 /* If DECL_CLONED_FUNCTION_P holds, this is the function that was
3091 cloned. */
3092 #define DECL_CLONED_FUNCTION(NODE) \
3093 (DECL_LANG_SPECIFIC (FUNCTION_DECL_CHECK (NODE))->u.fn.u5.cloned_function)
3094
3095 /* Perform an action for each clone of FN, if FN is a function with
3096 clones. This macro should be used like:
3097
3098 FOR_EACH_CLONE (clone, fn)
3099 { ... }
3100
3101 */
3102 #define FOR_EACH_CLONE(CLONE, FN) \
3103 if (!(TREE_CODE (FN) == FUNCTION_DECL \
3104 && DECL_MAYBE_IN_CHARGE_CDTOR_P (FN))) \
3105 ; \
3106 else \
3107 for (CLONE = DECL_CHAIN (FN); \
3108 CLONE && DECL_CLONED_FUNCTION_P (CLONE); \
3109 CLONE = DECL_CHAIN (CLONE))
3110
3111 /* Nonzero if NODE has DECL_DISCRIMINATOR and not DECL_ACCESS. */
3112 #define DECL_DISCRIMINATOR_P(NODE) \
3113 (((TREE_CODE (NODE) == VAR_DECL && TREE_STATIC (NODE)) \
3114 || DECL_IMPLICIT_TYPEDEF_P (NODE)) \
3115 && DECL_FUNCTION_SCOPE_P (NODE))
3116
3117 /* Discriminator for name mangling. */
3118 #define DECL_DISCRIMINATOR(NODE) (LANG_DECL_MIN_CHECK (NODE)->access)
3119
3120 /* The index of a user-declared parameter in its function, starting at 1.
3121 All artificial parameters will have index 0. */
3122 #define DECL_PARM_INDEX(NODE) \
3123 (LANG_DECL_PARM_CHECK (NODE)->index)
3124
3125 /* The level of a user-declared parameter in its function, starting at 1.
3126 A parameter of the function will have level 1; a parameter of the first
3127 nested function declarator (i.e. t in void f (void (*p)(T t))) will have
3128 level 2. */
3129 #define DECL_PARM_LEVEL(NODE) \
3130 (LANG_DECL_PARM_CHECK (NODE)->level)
3131
3132 /* Nonzero if the VTT parm has been added to NODE. */
3133 #define DECL_HAS_VTT_PARM_P(NODE) \
3134 (LANG_DECL_FN_CHECK (NODE)->has_vtt_parm_p)
3135
3136 /* Nonzero if NODE is a user-defined conversion operator. */
3137 #define DECL_CONV_FN_P(NODE) IDENTIFIER_CONV_OP_P (DECL_NAME (NODE))
3138
3139 /* The type to which conversion operator FN converts to. */
3140 #define DECL_CONV_FN_TYPE(FN) \
3141 TREE_TYPE ((gcc_checking_assert (DECL_CONV_FN_P (FN)), DECL_NAME (FN)))
3142
3143 /* Nonzero if NODE, a static data member, was declared in its class as an
3144 array of unknown bound. */
3145 #define VAR_HAD_UNKNOWN_BOUND(NODE) \
3146 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE)) \
3147 ? DECL_LANG_SPECIFIC (NODE)->u.base.unknown_bound_p \
3148 : false)
3149 #define SET_VAR_HAD_UNKNOWN_BOUND(NODE) \
3150 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE))->u.base.unknown_bound_p = true)
3151
3152 /* True iff decl NODE is for an overloaded operator. */
3153 #define DECL_OVERLOADED_OPERATOR_P(NODE) \
3154 IDENTIFIER_ANY_OP_P (DECL_NAME (NODE))
3155
3156 /* Nonzero if NODE is an assignment operator (including += and such). */
3157 #define DECL_ASSIGNMENT_OPERATOR_P(NODE) \
3158 IDENTIFIER_ASSIGN_OP_P (DECL_NAME (NODE))
3159
3160 /* NODE is a function_decl for an overloaded operator. Return its
3161 compressed (raw) operator code. Note that this is not a TREE_CODE. */
3162 #define DECL_OVERLOADED_OPERATOR_CODE_RAW(NODE) \
3163 (LANG_DECL_FN_CHECK (NODE)->ovl_op_code)
3164
3165 /* DECL is an overloaded operator. Test whether it is for TREE_CODE
3166 (a literal constant). */
3167 #define DECL_OVERLOADED_OPERATOR_IS(DECL, CODE) \
3168 (DECL_OVERLOADED_OPERATOR_CODE_RAW (DECL) == OVL_OP_##CODE)
3169
3170 /* For FUNCTION_DECLs: nonzero means that this function is a
3171 constructor or a destructor with an extra in-charge parameter to
3172 control whether or not virtual bases are constructed. */
3173 #define DECL_HAS_IN_CHARGE_PARM_P(NODE) \
3174 (LANG_DECL_FN_CHECK (NODE)->has_in_charge_parm_p)
3175
3176 /* Nonzero if DECL is a declaration of __builtin_constant_p. */
3177 #define DECL_IS_BUILTIN_CONSTANT_P(NODE) \
3178 (TREE_CODE (NODE) == FUNCTION_DECL \
3179 && DECL_BUILT_IN_CLASS (NODE) == BUILT_IN_NORMAL \
3180 && DECL_FUNCTION_CODE (NODE) == BUILT_IN_CONSTANT_P)
3181
3182 /* Nonzero for _DECL means that this decl appears in (or will appear
3183 in) as a member in a RECORD_TYPE or UNION_TYPE node. It is also for
3184 detecting circularity in case members are multiply defined. In the
3185 case of a VAR_DECL, it means that no definition has been seen, even
3186 if an initializer has been. */
3187 #define DECL_IN_AGGR_P(NODE) (DECL_LANG_FLAG_3 (NODE))
3188
3189 /* Nonzero for a VAR_DECL means that the variable's initialization (if
3190 any) has been processed. (In general, DECL_INITIALIZED_P is
3191 !DECL_EXTERNAL, but static data members may be initialized even if
3192 not defined.) */
3193 #define DECL_INITIALIZED_P(NODE) \
3194 (TREE_LANG_FLAG_1 (VAR_DECL_CHECK (NODE)))
3195
3196 /* Nonzero for a VAR_DECL iff an explicit initializer was provided
3197 or a non-trivial constructor is called. */
3198 #define DECL_NONTRIVIALLY_INITIALIZED_P(NODE) \
3199 (TREE_LANG_FLAG_6 (VAR_DECL_CHECK (NODE)))
3200
3201 /* Nonzero for a VAR_DECL that was initialized with a
3202 constant-expression. */
3203 #define DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P(NODE) \
3204 (TREE_LANG_FLAG_2 (VAR_DECL_CHECK (NODE)))
3205
3206 /* Nonzero if the DECL was initialized in the class definition itself,
3207 rather than outside the class. This is used for both static member
3208 VAR_DECLS, and FUNCTION_DECLS that are defined in the class. */
3209 #define DECL_INITIALIZED_IN_CLASS_P(DECL) \
3210 (DECL_LANG_SPECIFIC (VAR_OR_FUNCTION_DECL_CHECK (DECL)) \
3211 ->u.base.initialized_in_class)
3212
3213 /* Nonzero if the DECL is used in the sense of 3.2 [basic.def.odr].
3214 Only available for decls with DECL_LANG_SPECIFIC. */
3215 #define DECL_ODR_USED(DECL) \
3216 (DECL_LANG_SPECIFIC (VAR_OR_FUNCTION_DECL_CHECK (DECL)) \
3217 ->u.base.odr_used)
3218
3219 /* Nonzero for FUNCTION_DECL means that this is a friend that is
3220 either not pushed into a namespace/looked up in a class (because it
3221 is a dependent type, in an uninstantiated template), or it has
3222 /only/ been subject to hidden friend injection from one or more
3223 befriending classes. Once another decl matches, the flag is
3224 cleared. There are requirements on its default parms. */
3225 #define DECL_UNIQUE_FRIEND_P(NODE) \
3226 (DECL_LANG_SPECIFIC (FUNCTION_DECL_CHECK (NODE)) \
3227 ->u.base.friend_or_tls)
3228
3229 /* True of a TEMPLATE_DECL that is a template class friend. Such
3230 decls are not pushed until instantiated (as they may depend on
3231 parameters of the befriending class). DECL_CHAIN is the
3232 befriending class. */
3233 #define DECL_UNINSTANTIATED_TEMPLATE_FRIEND_P(NODE) \
3234 (DECL_LANG_FLAG_4 (TEMPLATE_DECL_CHECK (NODE)))
3235
3236 /* Nonzero if the thread-local variable was declared with __thread as
3237 opposed to thread_local. */
3238 #define DECL_GNU_TLS_P(NODE) \
3239 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE)) \
3240 && DECL_LANG_SPECIFIC (NODE)->u.base.friend_or_tls)
3241 #define SET_DECL_GNU_TLS_P(NODE) \
3242 (retrofit_lang_decl (VAR_DECL_CHECK (NODE)), \
3243 DECL_LANG_SPECIFIC (NODE)->u.base.friend_or_tls = true)
3244
3245 /* A TREE_LIST of the types which have befriended this FUNCTION_DECL. */
3246 #define DECL_BEFRIENDING_CLASSES(NODE) \
3247 (LANG_DECL_FN_CHECK (NODE)->befriending_classes)
3248
3249 /* Nonzero for FUNCTION_DECL means that this decl is a static
3250 member function. */
3251 #define DECL_STATIC_FUNCTION_P(NODE) \
3252 (LANG_DECL_FN_CHECK (NODE)->static_function)
3253
3254 /* Nonzero for FUNCTION_DECL means that this decl is a non-static
3255 member function. */
3256 #define DECL_NONSTATIC_MEMBER_FUNCTION_P(NODE) \
3257 (TREE_CODE (TREE_TYPE (NODE)) == METHOD_TYPE)
3258
3259 /* Nonzero for FUNCTION_DECL means that this decl is a member function
3260 (static or non-static). */
3261 #define DECL_FUNCTION_MEMBER_P(NODE) \
3262 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) || DECL_STATIC_FUNCTION_P (NODE))
3263
3264 /* Nonzero for FUNCTION_DECL means that this member function
3265 has `this' as const X *const. */
3266 #define DECL_CONST_MEMFUNC_P(NODE) \
3267 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) \
3268 && CP_TYPE_CONST_P (TREE_TYPE (TREE_VALUE \
3269 (TYPE_ARG_TYPES (TREE_TYPE (NODE))))))
3270
3271 /* Nonzero for FUNCTION_DECL means that this member function
3272 has `this' as volatile X *const. */
3273 #define DECL_VOLATILE_MEMFUNC_P(NODE) \
3274 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) \
3275 && CP_TYPE_VOLATILE_P (TREE_TYPE (TREE_VALUE \
3276 (TYPE_ARG_TYPES (TREE_TYPE (NODE))))))
3277
3278 /* Nonzero for a DECL means that this member is a non-static member. */
3279 #define DECL_NONSTATIC_MEMBER_P(NODE) \
3280 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) \
3281 || TREE_CODE (NODE) == FIELD_DECL)
3282
3283 /* Nonzero for a FIELD_DECL means that this member object type
3284 is mutable. */
3285 #define DECL_MUTABLE_P(NODE) (DECL_LANG_FLAG_0 (FIELD_DECL_CHECK (NODE)))
3286
3287 /* Nonzero for _DECL means that this constructor or conversion function is
3288 non-converting. */
3289 #define DECL_NONCONVERTING_P(NODE) \
3290 (LANG_DECL_FN_CHECK (NODE)->nonconverting)
3291
3292 /* Nonzero for FUNCTION_DECL means that this member function is a pure
3293 virtual function. */
3294 #define DECL_PURE_VIRTUAL_P(NODE) \
3295 (LANG_DECL_FN_CHECK (NODE)->pure_virtual)
3296
3297 /* Nonzero for FUNCTION_DECL means that this member function (either
3298 a constructor or a conversion function) has an explicit specifier
3299 with a value-dependent expression. */
3300 #define DECL_HAS_DEPENDENT_EXPLICIT_SPEC_P(NODE) \
3301 (LANG_DECL_FN_CHECK (NODE)->has_dependent_explicit_spec_p)
3302
3303 /* Nonzero for a defaulted FUNCTION_DECL for which we haven't decided yet if
3304 it's deleted; we will decide in synthesize_method. */
3305 #define DECL_MAYBE_DELETED(NODE) \
3306 (LANG_DECL_FN_CHECK (NODE)->maybe_deleted)
3307
3308 /* True (in a FUNCTION_DECL) if NODE is a virtual function that is an
3309 invalid overrider for a function from a base class. Once we have
3310 complained about an invalid overrider we avoid complaining about it
3311 again. */
3312 #define DECL_INVALID_OVERRIDER_P(NODE) \
3313 (DECL_LANG_FLAG_4 (NODE))
3314
3315 /* True (in a FUNCTION_DECL) if NODE is a function declared with
3316 an override virt-specifier */
3317 #define DECL_OVERRIDE_P(NODE) (TREE_LANG_FLAG_0 (NODE))
3318
3319 /* The thunks associated with NODE, a FUNCTION_DECL. */
3320 #define DECL_THUNKS(NODE) \
3321 (DECL_VIRTUAL_P (NODE) ? LANG_DECL_FN_CHECK (NODE)->context : NULL_TREE)
3322
3323 /* Set DECL_THUNKS. */
3324 #define SET_DECL_THUNKS(NODE,THUNKS) \
3325 (LANG_DECL_FN_CHECK (NODE)->context = (THUNKS))
3326
3327 /* If NODE, a FUNCTION_DECL, is a C++11 inheriting constructor, then this
3328 is the constructor it inherits from. */
3329 #define DECL_INHERITED_CTOR(NODE) \
3330 (DECL_DECLARES_FUNCTION_P (NODE) && DECL_CONSTRUCTOR_P (NODE) \
3331 ? LANG_DECL_FN_CHECK (NODE)->context : NULL_TREE)
3332
3333 /* And this is the base that constructor comes from. */
3334 #define DECL_INHERITED_CTOR_BASE(NODE) \
3335 (DECL_INHERITED_CTOR (NODE) \
3336 ? DECL_CONTEXT (flag_new_inheriting_ctors \
3337 ? strip_inheriting_ctors (NODE) \
3338 : DECL_INHERITED_CTOR (NODE)) \
3339 : NULL_TREE)
3340
3341 /* Set the inherited base. */
3342 #define SET_DECL_INHERITED_CTOR(NODE,INH) \
3343 (LANG_DECL_FN_CHECK (NODE)->context = (INH))
3344
3345 /* Nonzero if NODE is a thunk, rather than an ordinary function. */
3346 #define DECL_THUNK_P(NODE) \
3347 (TREE_CODE (NODE) == FUNCTION_DECL \
3348 && DECL_LANG_SPECIFIC (NODE) \
3349 && LANG_DECL_FN_CHECK (NODE)->thunk_p)
3350
3351 /* Set DECL_THUNK_P for node. */
3352 #define SET_DECL_THUNK_P(NODE, THIS_ADJUSTING) \
3353 (LANG_DECL_FN_CHECK (NODE)->thunk_p = 1, \
3354 LANG_DECL_FN_CHECK (NODE)->this_thunk_p = (THIS_ADJUSTING))
3355
3356 /* Nonzero if NODE is a this pointer adjusting thunk. */
3357 #define DECL_THIS_THUNK_P(NODE) \
3358 (DECL_THUNK_P (NODE) && LANG_DECL_FN_CHECK (NODE)->this_thunk_p)
3359
3360 /* Nonzero if NODE is a result pointer adjusting thunk. */
3361 #define DECL_RESULT_THUNK_P(NODE) \
3362 (DECL_THUNK_P (NODE) && !LANG_DECL_FN_CHECK (NODE)->this_thunk_p)
3363
3364 /* Nonzero if NODE is a FUNCTION_DECL, but not a thunk. */
3365 #define DECL_NON_THUNK_FUNCTION_P(NODE) \
3366 (TREE_CODE (NODE) == FUNCTION_DECL && !DECL_THUNK_P (NODE))
3367
3368 /* Nonzero if NODE is `extern "C"'. */
3369 #define DECL_EXTERN_C_P(NODE) \
3370 (DECL_LANGUAGE (NODE) == lang_c)
3371
3372 /* Nonzero if NODE is an `extern "C"' function. */
3373 #define DECL_EXTERN_C_FUNCTION_P(NODE) \
3374 (DECL_NON_THUNK_FUNCTION_P (NODE) && DECL_EXTERN_C_P (NODE))
3375
3376 /* Non-zero if this variable is declared `constinit' specifier. */
3377 #define DECL_DECLARED_CONSTINIT_P(NODE) \
3378 (DECL_LANG_FLAG_7 (VAR_DECL_CHECK (NODE)))
3379
3380 /* True if DECL is declared 'constexpr'. */
3381 #define DECL_DECLARED_CONSTEXPR_P(DECL) \
3382 DECL_LANG_FLAG_8 (VAR_OR_FUNCTION_DECL_CHECK (STRIP_TEMPLATE (DECL)))
3383
3384 /* True if FNDECL is an immediate function. */
3385 #define DECL_IMMEDIATE_FUNCTION_P(NODE) \
3386 (DECL_LANG_SPECIFIC (FUNCTION_DECL_CHECK (STRIP_TEMPLATE (NODE))) \
3387 ? LANG_DECL_FN_CHECK (NODE)->immediate_fn_p \
3388 : false)
3389 #define SET_DECL_IMMEDIATE_FUNCTION_P(NODE) \
3390 (retrofit_lang_decl (FUNCTION_DECL_CHECK (NODE)), \
3391 LANG_DECL_FN_CHECK (NODE)->immediate_fn_p = true)
3392
3393 // True if NODE was declared as 'concept'. The flag implies that the
3394 // declaration is constexpr, that the declaration cannot be specialized or
3395 // refined, and that the result type must be convertible to bool.
3396 #define DECL_DECLARED_CONCEPT_P(NODE) \
3397 (DECL_LANG_SPECIFIC (NODE)->u.base.concept_p)
3398
3399 /* Nonzero if this DECL is the __PRETTY_FUNCTION__ variable in a
3400 template function. */
3401 #define DECL_PRETTY_FUNCTION_P(NODE) \
3402 (DECL_NAME (NODE) \
3403 && id_equal (DECL_NAME (NODE), "__PRETTY_FUNCTION__"))
3404
3405 /* For a DECL, true if it is __func__ or similar. */
3406 #define DECL_FNAME_P(NODE) \
3407 (VAR_P (NODE) && DECL_NAME (NODE) && DECL_ARTIFICIAL (NODE) \
3408 && DECL_HAS_VALUE_EXPR_P (NODE) \
3409 && (id_equal (DECL_NAME (NODE), "__PRETTY_FUNCTION__") \
3410 || id_equal (DECL_NAME (NODE), "__FUNCTION__") \
3411 || id_equal (DECL_NAME (NODE), "__func__")))
3412
3413 /* Nonzero if the variable was declared to be thread-local.
3414 We need a special C++ version of this test because the middle-end
3415 DECL_THREAD_LOCAL_P uses the symtab, so we can't use it for
3416 templates. */
3417 #define CP_DECL_THREAD_LOCAL_P(NODE) \
3418 (TREE_LANG_FLAG_0 (VAR_DECL_CHECK (NODE)))
3419
3420 /* The _TYPE context in which this _DECL appears. This field holds the
3421 class where a virtual function instance is actually defined. */
3422 #define DECL_CLASS_CONTEXT(NODE) \
3423 (DECL_CLASS_SCOPE_P (NODE) ? DECL_CONTEXT (NODE) : NULL_TREE)
3424
3425 /* For a non-member friend function, the class (if any) in which this
3426 friend was defined. For example, given:
3427
3428 struct S { friend void f () { ... } };
3429
3430 the DECL_FRIEND_CONTEXT for `f' will be `S'. */
3431 #define DECL_FRIEND_CONTEXT(NODE) \
3432 ((DECL_DECLARES_FUNCTION_P (NODE) && !DECL_VIRTUAL_P (NODE) \
3433 && !DECL_CONSTRUCTOR_P (NODE)) \
3434 ? LANG_DECL_FN_CHECK (NODE)->context \
3435 : NULL_TREE)
3436
3437 /* Set the DECL_FRIEND_CONTEXT for NODE to CONTEXT. */
3438 #define SET_DECL_FRIEND_CONTEXT(NODE, CONTEXT) \
3439 (LANG_DECL_FN_CHECK (NODE)->context = (CONTEXT))
3440
3441 #define CP_DECL_CONTEXT(NODE) \
3442 (!DECL_FILE_SCOPE_P (NODE) ? DECL_CONTEXT (NODE) : global_namespace)
3443 #define CP_TYPE_CONTEXT(NODE) \
3444 (!TYPE_FILE_SCOPE_P (NODE) ? TYPE_CONTEXT (NODE) : global_namespace)
3445 #define FROB_CONTEXT(NODE) \
3446 ((NODE) == global_namespace ? DECL_CONTEXT (NODE) : (NODE))
3447
3448 /* 1 iff NODE has namespace scope, including the global namespace. */
3449 #define DECL_NAMESPACE_SCOPE_P(NODE) \
3450 (!DECL_TEMPLATE_PARM_P (NODE) \
3451 && TREE_CODE (CP_DECL_CONTEXT (NODE)) == NAMESPACE_DECL)
3452
3453 #define TYPE_NAMESPACE_SCOPE_P(NODE) \
3454 (TREE_CODE (CP_TYPE_CONTEXT (NODE)) == NAMESPACE_DECL)
3455
3456 #define NAMESPACE_SCOPE_P(NODE) \
3457 ((DECL_P (NODE) && DECL_NAMESPACE_SCOPE_P (NODE)) \
3458 || (TYPE_P (NODE) && TYPE_NAMESPACE_SCOPE_P (NODE)))
3459
3460 /* 1 iff NODE is a class member. */
3461 #define DECL_CLASS_SCOPE_P(NODE) \
3462 (DECL_CONTEXT (NODE) && TYPE_P (DECL_CONTEXT (NODE)))
3463
3464 #define TYPE_CLASS_SCOPE_P(NODE) \
3465 (TYPE_CONTEXT (NODE) && TYPE_P (TYPE_CONTEXT (NODE)))
3466
3467 /* 1 iff NODE is function-local. */
3468 #define DECL_FUNCTION_SCOPE_P(NODE) \
3469 (DECL_CONTEXT (NODE) \
3470 && TREE_CODE (DECL_CONTEXT (NODE)) == FUNCTION_DECL)
3471
3472 #define TYPE_FUNCTION_SCOPE_P(NODE) \
3473 (TYPE_CONTEXT (NODE) && TREE_CODE (TYPE_CONTEXT (NODE)) == FUNCTION_DECL)
3474
3475 /* 1 iff VAR_DECL node NODE is a type-info decl. This flag is set for
3476 both the primary typeinfo object and the associated NTBS name. */
3477 #define DECL_TINFO_P(NODE) \
3478 TREE_LANG_FLAG_4 (TREE_CHECK2 (NODE,VAR_DECL,TYPE_DECL))
3479
3480 /* 1 iff VAR_DECL node NODE is virtual table or VTT. We forward to
3481 DECL_VIRTUAL_P from the common code, as that has the semantics we
3482 need. But we want a more descriptive name. */
3483 #define DECL_VTABLE_OR_VTT_P(NODE) DECL_VIRTUAL_P (VAR_DECL_CHECK (NODE))
3484
3485 /* 1 iff FUNCTION_TYPE or METHOD_TYPE has a ref-qualifier (either & or &&). */
3486 #define FUNCTION_REF_QUALIFIED(NODE) \
3487 TREE_LANG_FLAG_4 (FUNC_OR_METHOD_CHECK (NODE))
3488
3489 /* 1 iff FUNCTION_TYPE or METHOD_TYPE has &&-ref-qualifier. */
3490 #define FUNCTION_RVALUE_QUALIFIED(NODE) \
3491 TREE_LANG_FLAG_5 (FUNC_OR_METHOD_CHECK (NODE))
3492
3493 /* 1 iff NODE is function-local, but for types. */
3494 #define LOCAL_CLASS_P(NODE) \
3495 (decl_function_context (TYPE_MAIN_DECL (NODE)) != NULL_TREE)
3496
3497 /* The nesting depth of namespace, class or function. Makes is_ancestor much
3498 simpler. Only 8 bits available. */
3499 #define SCOPE_DEPTH(NODE) \
3500 (NAMESPACE_DECL_CHECK (NODE)->base.u.bits.address_space)
3501
3502 /* Whether the namepace is an inline namespace. */
3503 #define DECL_NAMESPACE_INLINE_P(NODE) \
3504 TREE_LANG_FLAG_0 (NAMESPACE_DECL_CHECK (NODE))
3505
3506 /* In a NAMESPACE_DECL, a vector of inline namespaces. */
3507 #define DECL_NAMESPACE_INLINEES(NODE) \
3508 (LANG_DECL_NS_CHECK (NODE)->inlinees)
3509
3510 /* Pointer to hash_map from IDENTIFIERS to DECLS */
3511 #define DECL_NAMESPACE_BINDINGS(NODE) \
3512 (LANG_DECL_NS_CHECK (NODE)->bindings)
3513
3514 /* In a NAMESPACE_DECL, points to the original namespace if this is
3515 a namespace alias. */
3516 #define DECL_NAMESPACE_ALIAS(NODE) \
3517 DECL_ABSTRACT_ORIGIN (NAMESPACE_DECL_CHECK (NODE))
3518 #define ORIGINAL_NAMESPACE(NODE) \
3519 (DECL_NAMESPACE_ALIAS (NODE) ? DECL_NAMESPACE_ALIAS (NODE) : (NODE))
3520
3521 /* Nonzero if NODE is the std namespace. */
3522 #define DECL_NAMESPACE_STD_P(NODE) \
3523 ((NODE) == std_node)
3524
3525 /* In a TREE_LIST in an attribute list, indicates that the attribute
3526 must be applied at instantiation time. */
3527 #define ATTR_IS_DEPENDENT(NODE) TREE_LANG_FLAG_0 (TREE_LIST_CHECK (NODE))
3528
3529 /* In a TREE_LIST in the argument of attribute abi_tag, indicates that the tag
3530 was inherited from a template parameter, not explicitly indicated. */
3531 #define ABI_TAG_IMPLICIT(NODE) TREE_LANG_FLAG_0 (TREE_LIST_CHECK (NODE))
3532
3533 /* In a TREE_LIST for a parameter-declaration-list, indicates that all the
3534 parameters in the list have declarators enclosed in (). */
3535 #define PARENTHESIZED_LIST_P(NODE) TREE_LANG_FLAG_0 (TREE_LIST_CHECK (NODE))
3536
3537 /* Non zero if this is a using decl for a dependent scope. */
3538 #define DECL_DEPENDENT_P(NODE) DECL_LANG_FLAG_0 (USING_DECL_CHECK (NODE))
3539
3540 /* The scope named in a using decl. */
3541 #define USING_DECL_SCOPE(NODE) DECL_RESULT_FLD (USING_DECL_CHECK (NODE))
3542
3543 /* The decls named by a using decl. */
3544 #define USING_DECL_DECLS(NODE) DECL_INITIAL (USING_DECL_CHECK (NODE))
3545
3546 /* Non zero if the using decl refers to a dependent type. */
3547 #define USING_DECL_TYPENAME_P(NODE) DECL_LANG_FLAG_1 (USING_DECL_CHECK (NODE))
3548
3549 /* True if member using decl NODE refers to a non-inherited NODE. */
3550 #define USING_DECL_UNRELATED_P(NODE) DECL_LANG_FLAG_2 (USING_DECL_CHECK (NODE))
3551
3552 /* True iff the CONST_DECL is a class-scope clone from C++20 using enum,
3553 created by handle_using_decl. */
3554 #define CONST_DECL_USING_P(NODE) \
3555 (TREE_CODE (NODE) == CONST_DECL \
3556 && TREE_TYPE (NODE) \
3557 && TREE_CODE (TREE_TYPE (NODE)) == ENUMERAL_TYPE \
3558 && DECL_CONTEXT (NODE) != TREE_TYPE (NODE))
3559
3560 /* In a FUNCTION_DECL, this is nonzero if this function was defined in
3561 the class definition. We have saved away the text of the function,
3562 but have not yet processed it. */
3563 #define DECL_PENDING_INLINE_P(NODE) \
3564 (LANG_DECL_FN_CHECK (NODE)->pending_inline_p)
3565
3566 /* If DECL_PENDING_INLINE_P holds, this is the saved text of the
3567 function. */
3568 #define DECL_PENDING_INLINE_INFO(NODE) \
3569 (LANG_DECL_FN_CHECK (NODE)->u.pending_inline_info)
3570
3571 /* Nonzero for TYPE_DECL means that it was written 'using name = type'. */
3572 #define TYPE_DECL_ALIAS_P(NODE) \
3573 DECL_LANG_FLAG_6 (TYPE_DECL_CHECK (NODE))
3574
3575 /* Nonzero for TEMPLATE_DECL means that it is a 'complex' alias template. */
3576 #define TEMPLATE_DECL_COMPLEX_ALIAS_P(NODE) \
3577 DECL_LANG_FLAG_2 (TEMPLATE_DECL_CHECK (NODE))
3578
3579 /* Nonzero for a type which is an alias for another type; i.e, a type
3580 which declaration was written 'using name-of-type =
3581 another-type'. */
3582 #define TYPE_ALIAS_P(NODE) \
3583 (TYPE_P (NODE) \
3584 && TYPE_NAME (NODE) \
3585 && TREE_CODE (TYPE_NAME (NODE)) == TYPE_DECL \
3586 && TYPE_DECL_ALIAS_P (TYPE_NAME (NODE)))
3587
3588 /* If non-NULL for a VAR_DECL, FUNCTION_DECL, TYPE_DECL, TEMPLATE_DECL,
3589 or CONCEPT_DECL, the entity is either a template specialization (if
3590 DECL_USE_TEMPLATE is nonzero) or the abstract instance of the
3591 template itself.
3592
3593 In either case, DECL_TEMPLATE_INFO is a TEMPLATE_INFO, whose
3594 TI_TEMPLATE is the TEMPLATE_DECL of which this entity is a
3595 specialization or abstract instance. The TI_ARGS is the
3596 template arguments used to specialize the template.
3597
3598 Consider:
3599
3600 template <typename T> struct S { friend void f(T) {} };
3601
3602 In this case, S<int>::f is, from the point of view of the compiler,
3603 an instantiation of a template -- but, from the point of view of
3604 the language, each instantiation of S results in a wholly unrelated
3605 global function f. In this case, DECL_TEMPLATE_INFO for S<int>::f
3606 will be non-NULL, but DECL_USE_TEMPLATE will be zero.
3607
3608 In a friend declaration, TI_TEMPLATE can be an overload set, or
3609 identifier. */
3610 #define DECL_TEMPLATE_INFO(NODE) \
3611 (DECL_LANG_SPECIFIC (TEMPLATE_INFO_DECL_CHECK (NODE)) \
3612 ->u.min.template_info)
3613
3614 /* For a lambda capture proxy, its captured variable. */
3615 #define DECL_CAPTURED_VARIABLE(NODE) \
3616 (LANG_DECL_MIN_CHECK (NODE)->access)
3617
3618 /* For a VAR_DECL, indicates that the variable is actually a
3619 non-static data member of anonymous union that has been promoted to
3620 variable status. */
3621 #define DECL_ANON_UNION_VAR_P(NODE) \
3622 (DECL_LANG_FLAG_4 (VAR_DECL_CHECK (NODE)))
3623
3624 /* Template information for a RECORD_TYPE or UNION_TYPE. */
3625 #define CLASSTYPE_TEMPLATE_INFO(NODE) \
3626 (TYPE_LANG_SLOT_1 (RECORD_OR_UNION_CHECK (NODE)))
3627
3628 /* Template information for a template template parameter. */
3629 #define TEMPLATE_TEMPLATE_PARM_TEMPLATE_INFO(NODE) \
3630 (TYPE_LANG_SLOT_1 (BOUND_TEMPLATE_TEMPLATE_PARM_TYPE_CHECK (NODE)))
3631
3632 /* Template information for an ENUMERAL_, RECORD_, UNION_TYPE, or
3633 BOUND_TEMPLATE_TEMPLATE_PARM type. This ignores any alias
3634 templateness of NODE. It'd be nice if this could unconditionally
3635 access the slot, rather than return NULL if given a
3636 non-templatable type. */
3637 #define TYPE_TEMPLATE_INFO(NODE) \
3638 (TREE_CODE (NODE) == ENUMERAL_TYPE \
3639 || TREE_CODE (NODE) == BOUND_TEMPLATE_TEMPLATE_PARM \
3640 || RECORD_OR_UNION_TYPE_P (NODE) \
3641 ? TYPE_LANG_SLOT_1 (NODE) : NULL_TREE)
3642
3643 /* Template information (if any) for an alias type. */
3644 #define TYPE_ALIAS_TEMPLATE_INFO(NODE) \
3645 (DECL_LANG_SPECIFIC (TYPE_NAME (NODE)) \
3646 ? DECL_TEMPLATE_INFO (TYPE_NAME (NODE)) \
3647 : NULL_TREE)
3648
3649 /* If NODE is a type alias, this accessor returns the template info
3650 for the alias template (if any). Otherwise behave as
3651 TYPE_TEMPLATE_INFO. */
3652 #define TYPE_TEMPLATE_INFO_MAYBE_ALIAS(NODE) \
3653 (typedef_variant_p (NODE) \
3654 ? TYPE_ALIAS_TEMPLATE_INFO (NODE) \
3655 : TYPE_TEMPLATE_INFO (NODE))
3656
3657 /* Set the template information for a non-alias n ENUMERAL_, RECORD_,
3658 or UNION_TYPE to VAL. ALIAS's are dealt with separately. */
3659 #define SET_TYPE_TEMPLATE_INFO(NODE, VAL) \
3660 (TREE_CODE (NODE) == ENUMERAL_TYPE \
3661 || (CLASS_TYPE_P (NODE) && !TYPE_ALIAS_P (NODE)) \
3662 ? (TYPE_LANG_SLOT_1 (NODE) = (VAL)) \
3663 : (DECL_TEMPLATE_INFO (TYPE_NAME (NODE)) = (VAL))) \
3664
3665 #define TI_TEMPLATE(NODE) \
3666 ((struct tree_template_info*)TEMPLATE_INFO_CHECK (NODE))->tmpl
3667 #define TI_ARGS(NODE) \
3668 ((struct tree_template_info*)TEMPLATE_INFO_CHECK (NODE))->args
3669 #define TI_PENDING_TEMPLATE_FLAG(NODE) \
3670 TREE_LANG_FLAG_1 (TEMPLATE_INFO_CHECK (NODE))
3671 /* For a given TREE_VEC containing a template argument list,
3672 this property contains the number of arguments that are not
3673 defaulted. */
3674 #define NON_DEFAULT_TEMPLATE_ARGS_COUNT(NODE) \
3675 TREE_CHAIN (TREE_VEC_CHECK (NODE))
3676
3677 /* Below are the setter and getter of the NON_DEFAULT_TEMPLATE_ARGS_COUNT
3678 property. */
3679 #define SET_NON_DEFAULT_TEMPLATE_ARGS_COUNT(NODE, INT_VALUE) \
3680 NON_DEFAULT_TEMPLATE_ARGS_COUNT(NODE) = build_int_cst (NULL_TREE, INT_VALUE)
3681 #if CHECKING_P
3682 #define GET_NON_DEFAULT_TEMPLATE_ARGS_COUNT(NODE) \
3683 int_cst_value (NON_DEFAULT_TEMPLATE_ARGS_COUNT (NODE))
3684 #else
3685 #define GET_NON_DEFAULT_TEMPLATE_ARGS_COUNT(NODE) \
3686 NON_DEFAULT_TEMPLATE_ARGS_COUNT (NODE) \
3687 ? int_cst_value (NON_DEFAULT_TEMPLATE_ARGS_COUNT (NODE)) \
3688 : TREE_VEC_LENGTH (INNERMOST_TEMPLATE_ARGS (NODE))
3689 #endif
3690
3691 /* The list of access checks that were deferred during parsing
3692 which need to be performed at template instantiation time.
3693
3694 FIXME this should be associated with the TEMPLATE_DECL, not the
3695 TEMPLATE_INFO. */
3696 #define TI_DEFERRED_ACCESS_CHECKS(NODE) \
3697 ((struct tree_template_info*)TEMPLATE_INFO_CHECK \
3698 (NODE))->deferred_access_checks
3699
3700 /* We use TREE_VECs to hold template arguments. If there is only one
3701 level of template arguments, then the TREE_VEC contains the
3702 arguments directly. If there is more than one level of template
3703 arguments, then each entry in the TREE_VEC is itself a TREE_VEC,
3704 containing the template arguments for a single level. The first
3705 entry in the outer TREE_VEC is the outermost level of template
3706 parameters; the last is the innermost.
3707
3708 It is incorrect to ever form a template argument vector containing
3709 only one level of arguments, but which is a TREE_VEC containing as
3710 its only entry the TREE_VEC for that level.
3711
3712 For each TREE_VEC containing the template arguments for a single
3713 level, it's possible to get or set the number of non defaulted
3714 template arguments by using the accessor macros
3715 GET_NON_DEFAULT_TEMPLATE_ARGS_COUNT or
3716 SET_NON_DEFAULT_TEMPLATE_ARGS_COUNT. */
3717
3718 /* Nonzero if the template arguments is actually a vector of vectors,
3719 rather than just a vector. */
3720 #define TMPL_ARGS_HAVE_MULTIPLE_LEVELS(NODE) \
3721 (NODE && TREE_VEC_LENGTH (NODE) && TREE_VEC_ELT (NODE, 0) \
3722 && TREE_CODE (TREE_VEC_ELT (NODE, 0)) == TREE_VEC)
3723
3724 /* The depth of a template argument vector. When called directly by
3725 the parser, we use a TREE_LIST rather than a TREE_VEC to represent
3726 template arguments. In fact, we may even see NULL_TREE if there
3727 are no template arguments. In both of those cases, there is only
3728 one level of template arguments. */
3729 #define TMPL_ARGS_DEPTH(NODE) \
3730 (TMPL_ARGS_HAVE_MULTIPLE_LEVELS (NODE) ? TREE_VEC_LENGTH (NODE) : 1)
3731
3732 /* The LEVELth level of the template ARGS. The outermost level of
3733 args is level 1, not level 0. */
3734 #define TMPL_ARGS_LEVEL(ARGS, LEVEL) \
3735 (TMPL_ARGS_HAVE_MULTIPLE_LEVELS (ARGS) \
3736 ? TREE_VEC_ELT (ARGS, (LEVEL) - 1) : (ARGS))
3737
3738 /* Set the LEVELth level of the template ARGS to VAL. This macro does
3739 not work with single-level argument vectors. */
3740 #define SET_TMPL_ARGS_LEVEL(ARGS, LEVEL, VAL) \
3741 (TREE_VEC_ELT (ARGS, (LEVEL) - 1) = (VAL))
3742
3743 /* Accesses the IDXth parameter in the LEVELth level of the ARGS. */
3744 #define TMPL_ARG(ARGS, LEVEL, IDX) \
3745 (TREE_VEC_ELT (TMPL_ARGS_LEVEL (ARGS, LEVEL), IDX))
3746
3747 /* Given a single level of template arguments in NODE, return the
3748 number of arguments. */
3749 #define NUM_TMPL_ARGS(NODE) \
3750 (TREE_VEC_LENGTH (NODE))
3751
3752 /* Returns the innermost level of template arguments in ARGS. */
3753 #define INNERMOST_TEMPLATE_ARGS(NODE) \
3754 (get_innermost_template_args ((NODE), 1))
3755
3756 /* The number of levels of template parameters given by NODE. */
3757 #define TMPL_PARMS_DEPTH(NODE) \
3758 ((HOST_WIDE_INT) TREE_INT_CST_LOW (TREE_PURPOSE (NODE)))
3759
3760 /* The TEMPLATE_DECL instantiated or specialized by NODE. This
3761 TEMPLATE_DECL will be the immediate parent, not the most general
3762 template. For example, in:
3763
3764 template <class T> struct S { template <class U> void f(U); }
3765
3766 the FUNCTION_DECL for S<int>::f<double> will have, as its
3767 DECL_TI_TEMPLATE, `template <class U> S<int>::f<U>'.
3768
3769 As a special case, for a member friend template of a template
3770 class, this value will not be a TEMPLATE_DECL, but rather an
3771 IDENTIFIER_NODE or OVERLOAD indicating the name of the template and
3772 any explicit template arguments provided. For example, in:
3773
3774 template <class T> struct S { friend void f<int>(int, double); }
3775
3776 the DECL_TI_TEMPLATE will be an IDENTIFIER_NODE for `f' and the
3777 DECL_TI_ARGS will be {int}.
3778
3779 For a FIELD_DECL with a non-static data member initializer, this value
3780 is the FIELD_DECL it was instantiated from. */
3781 #define DECL_TI_TEMPLATE(NODE) TI_TEMPLATE (DECL_TEMPLATE_INFO (NODE))
3782
3783 /* The template arguments used to obtain this decl from the most
3784 general form of DECL_TI_TEMPLATE. For the example given for
3785 DECL_TI_TEMPLATE, the DECL_TI_ARGS will be {int, double}. These
3786 are always the full set of arguments required to instantiate this
3787 declaration from the most general template specialized here. */
3788 #define DECL_TI_ARGS(NODE) TI_ARGS (DECL_TEMPLATE_INFO (NODE))
3789
3790 /* The TEMPLATE_DECL associated with NODE, a class type. Even if NODE
3791 will be generated from a partial specialization, the TEMPLATE_DECL
3792 referred to here will be the original template. For example,
3793 given:
3794
3795 template <typename T> struct S {};
3796 template <typename T> struct S<T*> {};
3797
3798 the CLASSTYPE_TI_TEMPLATE for S<int*> will be S, not the S<T*>.
3799
3800 For a member class template, CLASSTYPE_TI_TEMPLATE always refers to the
3801 partial instantiation rather than the primary template. CLASSTYPE_TI_ARGS
3802 are for the primary template if the partial instantiation isn't
3803 specialized, or for the explicit specialization if it is, e.g.
3804
3805 template <class T> class C { template <class U> class D; }
3806 template <> template <class U> class C<int>::D; */
3807 #define CLASSTYPE_TI_TEMPLATE(NODE) TI_TEMPLATE (CLASSTYPE_TEMPLATE_INFO (NODE))
3808 #define CLASSTYPE_TI_ARGS(NODE) TI_ARGS (CLASSTYPE_TEMPLATE_INFO (NODE))
3809
3810 /* For a template instantiation TYPE, returns the TYPE corresponding
3811 to the primary template. Otherwise returns TYPE itself. */
3812 #define CLASSTYPE_PRIMARY_TEMPLATE_TYPE(TYPE) \
3813 ((CLASSTYPE_USE_TEMPLATE ((TYPE)) \
3814 && !CLASSTYPE_TEMPLATE_SPECIALIZATION ((TYPE))) \
3815 ? TREE_TYPE (DECL_TEMPLATE_RESULT (DECL_PRIMARY_TEMPLATE \
3816 (CLASSTYPE_TI_TEMPLATE ((TYPE))))) \
3817 : (TYPE))
3818
3819 /* Like CLASS_TI_TEMPLATE, but also works for ENUMERAL_TYPEs. */
3820 #define TYPE_TI_TEMPLATE(NODE) \
3821 (TI_TEMPLATE (TYPE_TEMPLATE_INFO (NODE)))
3822
3823 /* Like DECL_TI_ARGS, but for an ENUMERAL_, RECORD_, or UNION_TYPE. */
3824 #define TYPE_TI_ARGS(NODE) \
3825 (TI_ARGS (TYPE_TEMPLATE_INFO (NODE)))
3826
3827 #define INNERMOST_TEMPLATE_PARMS(NODE) TREE_VALUE (NODE)
3828
3829 /* Nonzero if NODE (a TEMPLATE_DECL) is a member template, in the
3830 sense of [temp.mem]. */
3831 #define DECL_MEMBER_TEMPLATE_P(NODE) \
3832 (DECL_LANG_FLAG_1 (TEMPLATE_DECL_CHECK (NODE)))
3833
3834 /* Nonzero if the NODE corresponds to the template parameters for a
3835 member template, whose inline definition is being processed after
3836 the class definition is complete. */
3837 #define TEMPLATE_PARMS_FOR_INLINE(NODE) TREE_LANG_FLAG_1 (NODE)
3838
3839 /* Determine if a declaration (PARM_DECL or FIELD_DECL) is a pack. */
3840 #define DECL_PACK_P(NODE) \
3841 (DECL_P (NODE) && PACK_EXPANSION_P (TREE_TYPE (NODE)))
3842
3843 /* Determines if NODE is an expansion of one or more parameter packs,
3844 e.g., a TYPE_PACK_EXPANSION or EXPR_PACK_EXPANSION. */
3845 #define PACK_EXPANSION_P(NODE) \
3846 (TREE_CODE (NODE) == TYPE_PACK_EXPANSION \
3847 || TREE_CODE (NODE) == EXPR_PACK_EXPANSION)
3848
3849 /* Extracts the type or expression pattern from a TYPE_PACK_EXPANSION or
3850 EXPR_PACK_EXPANSION. */
3851 #define PACK_EXPANSION_PATTERN(NODE) \
3852 (TREE_CODE (NODE) == TYPE_PACK_EXPANSION ? TREE_TYPE (NODE) \
3853 : TREE_OPERAND (NODE, 0))
3854
3855 /* Sets the type or expression pattern for a TYPE_PACK_EXPANSION or
3856 EXPR_PACK_EXPANSION. */
3857 #define SET_PACK_EXPANSION_PATTERN(NODE,VALUE) \
3858 if (TREE_CODE (NODE) == TYPE_PACK_EXPANSION) \
3859 TREE_TYPE (NODE) = VALUE; \
3860 else \
3861 TREE_OPERAND (NODE, 0) = VALUE
3862
3863 /* The list of parameter packs used in the PACK_EXPANSION_* node. The
3864 TREE_VALUE of each TREE_LIST contains the parameter packs. */
3865 #define PACK_EXPANSION_PARAMETER_PACKS(NODE) \
3866 *(TREE_CODE (NODE) == EXPR_PACK_EXPANSION \
3867 ? &TREE_OPERAND (NODE, 1) \
3868 : &TYPE_MIN_VALUE_RAW (TYPE_PACK_EXPANSION_CHECK (NODE)))
3869
3870 /* Any additional template args to be applied when substituting into
3871 the pattern, set by tsubst_pack_expansion for partial instantiations.
3872 If this is a TREE_LIST, the TREE_VALUE of the first element is the
3873 usual template argument TREE_VEC, and the TREE_PURPOSE of later elements
3874 are enclosing functions that provided function parameter packs we'll need
3875 to map appropriately. */
3876 #define PACK_EXPANSION_EXTRA_ARGS(NODE) \
3877 *(TREE_CODE (NODE) == TYPE_PACK_EXPANSION \
3878 ? &TYPE_MAX_VALUE_RAW (NODE) \
3879 : &TREE_OPERAND ((NODE), 2))
3880
3881 /* True iff this pack expansion is within a function context. */
3882 #define PACK_EXPANSION_LOCAL_P(NODE) TREE_LANG_FLAG_0 (NODE)
3883
3884 /* True iff this pack expansion is for sizeof.... */
3885 #define PACK_EXPANSION_SIZEOF_P(NODE) TREE_LANG_FLAG_1 (NODE)
3886
3887 /* True iff this pack expansion is for auto... in lambda init-capture. */
3888 #define PACK_EXPANSION_AUTO_P(NODE) TREE_LANG_FLAG_2 (NODE)
3889
3890 /* True iff the wildcard can match a template parameter pack. */
3891 #define WILDCARD_PACK_P(NODE) TREE_LANG_FLAG_0 (NODE)
3892
3893 /* Determine if this is an argument pack. */
3894 #define ARGUMENT_PACK_P(NODE) \
3895 (TREE_CODE (NODE) == TYPE_ARGUMENT_PACK \
3896 || TREE_CODE (NODE) == NONTYPE_ARGUMENT_PACK)
3897
3898 /* The arguments stored in an argument pack. Arguments are stored in a
3899 TREE_VEC, which may have length zero. */
3900 #define ARGUMENT_PACK_ARGS(NODE) \
3901 (TREE_CODE (NODE) == TYPE_ARGUMENT_PACK? TREE_TYPE (NODE) \
3902 : TREE_OPERAND (NODE, 0))
3903
3904 /* Set the arguments stored in an argument pack. VALUE must be a
3905 TREE_VEC. */
3906 #define SET_ARGUMENT_PACK_ARGS(NODE,VALUE) \
3907 if (TREE_CODE (NODE) == TYPE_ARGUMENT_PACK) \
3908 TREE_TYPE (NODE) = VALUE; \
3909 else \
3910 TREE_OPERAND (NODE, 0) = VALUE
3911
3912 /* Whether the argument pack is "incomplete", meaning that more
3913 arguments can still be deduced. Incomplete argument packs are only
3914 used when the user has provided an explicit template argument list
3915 for a variadic function template. Some of the explicit template
3916 arguments will be placed into the beginning of the argument pack,
3917 but additional arguments might still be deduced. */
3918 #define ARGUMENT_PACK_INCOMPLETE_P(NODE) \
3919 TREE_ADDRESSABLE (ARGUMENT_PACK_ARGS (NODE))
3920
3921 /* When ARGUMENT_PACK_INCOMPLETE_P, stores the explicit template
3922 arguments used to fill this pack. */
3923 #define ARGUMENT_PACK_EXPLICIT_ARGS(NODE) \
3924 TREE_TYPE (ARGUMENT_PACK_ARGS (NODE))
3925
3926 /* In an ARGUMENT_PACK_SELECT, the argument pack from which an
3927 argument will be selected. */
3928 #define ARGUMENT_PACK_SELECT_FROM_PACK(NODE) \
3929 (((struct tree_argument_pack_select *)ARGUMENT_PACK_SELECT_CHECK (NODE))->argument_pack)
3930
3931 /* In an ARGUMENT_PACK_SELECT, the index of the argument we want to
3932 select. */
3933 #define ARGUMENT_PACK_SELECT_INDEX(NODE) \
3934 (((struct tree_argument_pack_select *)ARGUMENT_PACK_SELECT_CHECK (NODE))->index)
3935
3936 #define FOLD_EXPR_CHECK(NODE) \
3937 TREE_CHECK4 (NODE, UNARY_LEFT_FOLD_EXPR, UNARY_RIGHT_FOLD_EXPR, \
3938 BINARY_LEFT_FOLD_EXPR, BINARY_RIGHT_FOLD_EXPR)
3939
3940 #define BINARY_FOLD_EXPR_CHECK(NODE) \
3941 TREE_CHECK2 (NODE, BINARY_LEFT_FOLD_EXPR, BINARY_RIGHT_FOLD_EXPR)
3942
3943 /* True if NODE is UNARY_FOLD_EXPR or a BINARY_FOLD_EXPR */
3944 #define FOLD_EXPR_P(NODE) \
3945 (TREE_CODE (NODE) == UNARY_LEFT_FOLD_EXPR \
3946 || TREE_CODE (NODE) == UNARY_RIGHT_FOLD_EXPR \
3947 || TREE_CODE (NODE) == BINARY_LEFT_FOLD_EXPR \
3948 || TREE_CODE (NODE) == BINARY_RIGHT_FOLD_EXPR)
3949
3950 /* True when NODE is a fold over a compound assignment operator. */
3951 #define FOLD_EXPR_MODIFY_P(NODE) \
3952 TREE_LANG_FLAG_0 (FOLD_EXPR_CHECK (NODE))
3953
3954 /* An INTEGER_CST containing the tree code of the folded operator. */
3955 #define FOLD_EXPR_OP(NODE) \
3956 TREE_OPERAND (FOLD_EXPR_CHECK (NODE), 0)
3957
3958 /* The expression containing an unexpanded parameter pack. */
3959 #define FOLD_EXPR_PACK(NODE) \
3960 TREE_OPERAND (FOLD_EXPR_CHECK (NODE), 1)
3961
3962 /* In a binary fold expression, the argument with no unexpanded
3963 parameter packs. */
3964 #define FOLD_EXPR_INIT(NODE) \
3965 TREE_OPERAND (BINARY_FOLD_EXPR_CHECK (NODE), 2)
3966
3967 /* In a FUNCTION_DECL, the saved auto-return pattern. */
3968 #define DECL_SAVED_AUTO_RETURN_TYPE(NODE) \
3969 (LANG_DECL_FN_CHECK (FUNCTION_DECL_CHECK (NODE)) \
3970 ->u.saved_auto_return_type)
3971
3972 /* True if NODE is an implicit INDIRECT_REF from convert_from_reference. */
3973 #define REFERENCE_REF_P(NODE) \
3974 (INDIRECT_REF_P (NODE) \
3975 && TREE_TYPE (TREE_OPERAND (NODE, 0)) \
3976 && TYPE_REF_P (TREE_TYPE (TREE_OPERAND ((NODE), 0))))
3977
3978 /* True iff this represents an lvalue being treated as an rvalue during return
3979 or throw as per [class.copy.elision]. */
3980 #define IMPLICIT_RVALUE_P(NODE) \
3981 TREE_LANG_FLAG_3 (TREE_CHECK2 ((NODE), NON_LVALUE_EXPR, STATIC_CAST_EXPR))
3982
3983 #define NEW_EXPR_USE_GLOBAL(NODE) \
3984 TREE_LANG_FLAG_0 (NEW_EXPR_CHECK (NODE))
3985 #define DELETE_EXPR_USE_GLOBAL(NODE) \
3986 TREE_LANG_FLAG_0 (DELETE_EXPR_CHECK (NODE))
3987 #define DELETE_EXPR_USE_VEC(NODE) \
3988 TREE_LANG_FLAG_1 (DELETE_EXPR_CHECK (NODE))
3989
3990 #define CALL_OR_AGGR_INIT_CHECK(NODE) \
3991 TREE_CHECK2 ((NODE), CALL_EXPR, AGGR_INIT_EXPR)
3992
3993 /* Indicates that this is a non-dependent COMPOUND_EXPR which will
3994 resolve to a function call. */
3995 #define COMPOUND_EXPR_OVERLOADED(NODE) \
3996 TREE_LANG_FLAG_0 (COMPOUND_EXPR_CHECK (NODE))
3997
3998 /* In a CALL_EXPR appearing in a template, true if Koenig lookup
3999 should be performed at instantiation time. */
4000 #define KOENIG_LOOKUP_P(NODE) TREE_LANG_FLAG_0 (CALL_EXPR_CHECK (NODE))
4001
4002 /* True if the arguments to NODE should be evaluated in left-to-right
4003 order regardless of PUSH_ARGS_REVERSED. */
4004 #define CALL_EXPR_ORDERED_ARGS(NODE) \
4005 TREE_LANG_FLAG_3 (CALL_OR_AGGR_INIT_CHECK (NODE))
4006
4007 /* True if the arguments to NODE should be evaluated in right-to-left
4008 order regardless of PUSH_ARGS_REVERSED. */
4009 #define CALL_EXPR_REVERSE_ARGS(NODE) \
4010 TREE_LANG_FLAG_5 (CALL_OR_AGGR_INIT_CHECK (NODE))
4011
4012 /* True if CALL_EXPR was written as an operator expression, not a function
4013 call. */
4014 #define CALL_EXPR_OPERATOR_SYNTAX(NODE) \
4015 TREE_LANG_FLAG_6 (CALL_OR_AGGR_INIT_CHECK (NODE))
4016
4017 /* Indicates whether a string literal has been parenthesized. Such
4018 usages are disallowed in certain circumstances. */
4019
4020 #define PAREN_STRING_LITERAL_P(NODE) \
4021 TREE_LANG_FLAG_0 (STRING_CST_CHECK (NODE))
4022
4023 /* Indicates whether a COMPONENT_REF or a SCOPE_REF has been parenthesized, or
4024 an INDIRECT_REF comes from parenthesizing a _DECL. Currently only set some
4025 of the time in C++14 mode. */
4026
4027 #define REF_PARENTHESIZED_P(NODE) \
4028 TREE_LANG_FLAG_2 (TREE_CHECK4 ((NODE), COMPONENT_REF, INDIRECT_REF, SCOPE_REF, VIEW_CONVERT_EXPR))
4029
4030 /* Nonzero if this AGGR_INIT_EXPR provides for initialization via a
4031 constructor call, rather than an ordinary function call. */
4032 #define AGGR_INIT_VIA_CTOR_P(NODE) \
4033 TREE_LANG_FLAG_0 (AGGR_INIT_EXPR_CHECK (NODE))
4034
4035 /* Nonzero if expanding this AGGR_INIT_EXPR should first zero-initialize
4036 the object. */
4037 #define AGGR_INIT_ZERO_FIRST(NODE) \
4038 TREE_LANG_FLAG_2 (AGGR_INIT_EXPR_CHECK (NODE))
4039
4040 /* Nonzero means that the call is the jump from a thunk to the
4041 thunked-to function. */
4042 #define AGGR_INIT_FROM_THUNK_P(NODE) \
4043 (AGGR_INIT_EXPR_CHECK (NODE)->base.protected_flag)
4044
4045 /* AGGR_INIT_EXPR accessors. These are equivalent to the CALL_EXPR
4046 accessors, except for AGGR_INIT_EXPR_SLOT (which takes the place of
4047 CALL_EXPR_STATIC_CHAIN). */
4048
4049 #define AGGR_INIT_EXPR_FN(NODE) TREE_OPERAND (AGGR_INIT_EXPR_CHECK (NODE), 1)
4050 #define AGGR_INIT_EXPR_SLOT(NODE) \
4051 TREE_OPERAND (AGGR_INIT_EXPR_CHECK (NODE), 2)
4052 #define AGGR_INIT_EXPR_ARG(NODE, I) \
4053 TREE_OPERAND (AGGR_INIT_EXPR_CHECK (NODE), (I) + 3)
4054 #define aggr_init_expr_nargs(NODE) (VL_EXP_OPERAND_LENGTH(NODE) - 3)
4055
4056 /* AGGR_INIT_EXPR_ARGP returns a pointer to the argument vector for NODE.
4057 We can't use &AGGR_INIT_EXPR_ARG (NODE, 0) because that will complain if
4058 the argument count is zero when checking is enabled. Instead, do
4059 the pointer arithmetic to advance past the 3 fixed operands in a
4060 AGGR_INIT_EXPR. That produces a valid pointer to just past the end of
4061 the operand array, even if it's not valid to dereference it. */
4062 #define AGGR_INIT_EXPR_ARGP(NODE) \
4063 (&(TREE_OPERAND (AGGR_INIT_EXPR_CHECK (NODE), 0)) + 3)
4064
4065 /* Abstract iterators for AGGR_INIT_EXPRs. */
4066
4067 /* Structure containing iterator state. */
4068 struct aggr_init_expr_arg_iterator {
4069 tree t; /* the aggr_init_expr */
4070 int n; /* argument count */
4071 int i; /* next argument index */
4072 };
4073
4074 /* Initialize the abstract argument list iterator object ITER with the
4075 arguments from AGGR_INIT_EXPR node EXP. */
4076 inline void
4077 init_aggr_init_expr_arg_iterator (tree exp,
4078 aggr_init_expr_arg_iterator *iter)
4079 {
4080 iter->t = exp;
4081 iter->n = aggr_init_expr_nargs (exp);
4082 iter->i = 0;
4083 }
4084
4085 /* Return the next argument from abstract argument list iterator object ITER,
4086 and advance its state. Return NULL_TREE if there are no more arguments. */
4087 inline tree
4088 next_aggr_init_expr_arg (aggr_init_expr_arg_iterator *iter)
4089 {
4090 tree result;
4091 if (iter->i >= iter->n)
4092 return NULL_TREE;
4093 result = AGGR_INIT_EXPR_ARG (iter->t, iter->i);
4094 iter->i++;
4095 return result;
4096 }
4097
4098 /* Initialize the abstract argument list iterator object ITER, then advance
4099 past and return the first argument. Useful in for expressions, e.g.
4100 for (arg = first_aggr_init_expr_arg (exp, &iter); arg;
4101 arg = next_aggr_init_expr_arg (&iter)) */
4102 inline tree
4103 first_aggr_init_expr_arg (tree exp, aggr_init_expr_arg_iterator *iter)
4104 {
4105 init_aggr_init_expr_arg_iterator (exp, iter);
4106 return next_aggr_init_expr_arg (iter);
4107 }
4108
4109 /* Test whether there are more arguments in abstract argument list iterator
4110 ITER, without changing its state. */
4111 inline bool
4112 more_aggr_init_expr_args_p (const aggr_init_expr_arg_iterator *iter)
4113 {
4114 return (iter->i < iter->n);
4115 }
4116
4117 /* Iterate through each argument ARG of AGGR_INIT_EXPR CALL, using variable
4118 ITER (of type aggr_init_expr_arg_iterator) to hold the iteration state. */
4119 #define FOR_EACH_AGGR_INIT_EXPR_ARG(arg, iter, call) \
4120 for ((arg) = first_aggr_init_expr_arg ((call), &(iter)); (arg); \
4121 (arg) = next_aggr_init_expr_arg (&(iter)))
4122
4123 /* VEC_INIT_EXPR accessors. */
4124 #define VEC_INIT_EXPR_SLOT(NODE) TREE_OPERAND (VEC_INIT_EXPR_CHECK (NODE), 0)
4125 #define VEC_INIT_EXPR_INIT(NODE) TREE_OPERAND (VEC_INIT_EXPR_CHECK (NODE), 1)
4126
4127 /* Indicates that a VEC_INIT_EXPR is a potential constant expression.
4128 Only set when the current function is constexpr. */
4129 #define VEC_INIT_EXPR_IS_CONSTEXPR(NODE) \
4130 TREE_LANG_FLAG_0 (VEC_INIT_EXPR_CHECK (NODE))
4131
4132 /* Indicates that a VEC_INIT_EXPR is expressing value-initialization. */
4133 #define VEC_INIT_EXPR_VALUE_INIT(NODE) \
4134 TREE_LANG_FLAG_1 (VEC_INIT_EXPR_CHECK (NODE))
4135
4136 /* The condition under which this MUST_NOT_THROW_EXPR actually blocks
4137 exceptions. NULL_TREE means 'true'. */
4138 #define MUST_NOT_THROW_COND(NODE) \
4139 TREE_OPERAND (MUST_NOT_THROW_EXPR_CHECK (NODE), 1)
4140
4141 /* The TYPE_MAIN_DECL for a class template type is a TYPE_DECL, not a
4142 TEMPLATE_DECL. This macro determines whether or not a given class
4143 type is really a template type, as opposed to an instantiation or
4144 specialization of one. */
4145 #define CLASSTYPE_IS_TEMPLATE(NODE) \
4146 (CLASSTYPE_TEMPLATE_INFO (NODE) \
4147 && !CLASSTYPE_USE_TEMPLATE (NODE) \
4148 && PRIMARY_TEMPLATE_P (CLASSTYPE_TI_TEMPLATE (NODE)))
4149
4150 /* The name used by the user to name the typename type. Typically,
4151 this is an IDENTIFIER_NODE, and the same as the DECL_NAME on the
4152 corresponding TYPE_DECL. However, this may also be a
4153 TEMPLATE_ID_EXPR if we had something like `typename X::Y<T>'. */
4154 #define TYPENAME_TYPE_FULLNAME(NODE) \
4155 (TYPE_VALUES_RAW (TYPENAME_TYPE_CHECK (NODE)))
4156
4157 /* True if a TYPENAME_TYPE was declared as an "enum". */
4158 #define TYPENAME_IS_ENUM_P(NODE) \
4159 (TREE_LANG_FLAG_0 (TYPENAME_TYPE_CHECK (NODE)))
4160
4161 /* True if a TYPENAME_TYPE was declared as a "class", "struct", or
4162 "union". */
4163 #define TYPENAME_IS_CLASS_P(NODE) \
4164 (TREE_LANG_FLAG_1 (TYPENAME_TYPE_CHECK (NODE)))
4165
4166 /* True if a TYPENAME_TYPE is in the process of being resolved. */
4167 #define TYPENAME_IS_RESOLVING_P(NODE) \
4168 (TREE_LANG_FLAG_2 (TYPENAME_TYPE_CHECK (NODE)))
4169
4170 /* [class.virtual]
4171
4172 A class that declares or inherits a virtual function is called a
4173 polymorphic class. */
4174 #define TYPE_POLYMORPHIC_P(NODE) (TREE_LANG_FLAG_2 (NODE))
4175
4176 /* Nonzero if this class has a virtual function table pointer. */
4177 #define TYPE_CONTAINS_VPTR_P(NODE) \
4178 (TYPE_POLYMORPHIC_P (NODE) || CLASSTYPE_VBASECLASSES (NODE))
4179
4180 /* Nonzero if NODE is a FUNCTION_DECL or VARIABLE_DECL (for a decl
4181 with namespace scope) declared in a local scope. */
4182 #define DECL_LOCAL_DECL_P(NODE) \
4183 DECL_LANG_FLAG_0 (VAR_OR_FUNCTION_DECL_CHECK (NODE))
4184
4185 /* The namespace-scope decl a DECL_LOCAL_DECL_P aliases. */
4186 #define DECL_LOCAL_DECL_ALIAS(NODE) \
4187 DECL_ACCESS ((gcc_checking_assert (DECL_LOCAL_DECL_P (NODE)), NODE))
4188
4189 /* Nonzero if NODE is the target for genericization of 'return' stmts
4190 in constructors/destructors of targetm.cxx.cdtor_returns_this targets. */
4191 #define LABEL_DECL_CDTOR(NODE) \
4192 DECL_LANG_FLAG_2 (LABEL_DECL_CHECK (NODE))
4193
4194 /* True if NODE was declared with auto in its return type, but it has
4195 started compilation and so the return type might have been changed by
4196 return type deduction; its declared return type should be found in
4197 DECL_SAVED_AUTO_RETURN_TYPE (NODE). */
4198 #define FNDECL_USED_AUTO(NODE) \
4199 TREE_LANG_FLAG_2 (FUNCTION_DECL_CHECK (NODE))
4200
4201 /* True for artificial decls added for OpenMP privatized non-static
4202 data members. */
4203 #define DECL_OMP_PRIVATIZED_MEMBER(NODE) \
4204 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE))->u.base.anticipated_p)
4205
4206 /* Nonzero if NODE is an artificial FUNCTION_DECL for
4207 #pragma omp declare reduction. */
4208 #define DECL_OMP_DECLARE_REDUCTION_P(NODE) \
4209 (LANG_DECL_FN_CHECK (DECL_COMMON_CHECK (NODE))->omp_declare_reduction_p)
4210
4211 /* Nonzero if DECL has been declared threadprivate by
4212 #pragma omp threadprivate. */
4213 #define CP_DECL_THREADPRIVATE_P(DECL) \
4214 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (DECL))->u.base.threadprivate_or_deleted_p)
4215
4216 /* Nonzero if NODE is a VAR_DECL which has been declared inline. */
4217 #define DECL_VAR_DECLARED_INLINE_P(NODE) \
4218 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE)) \
4219 ? DECL_LANG_SPECIFIC (NODE)->u.base.var_declared_inline_p \
4220 : false)
4221 #define SET_DECL_VAR_DECLARED_INLINE_P(NODE) \
4222 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE))->u.base.var_declared_inline_p \
4223 = true)
4224
4225 /* True if NODE is a constant variable with a value-dependent initializer. */
4226 #define DECL_DEPENDENT_INIT_P(NODE) \
4227 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE)) \
4228 && DECL_LANG_SPECIFIC (NODE)->u.base.dependent_init_p)
4229 #define SET_DECL_DEPENDENT_INIT_P(NODE, X) \
4230 (DECL_LANG_SPECIFIC (VAR_DECL_CHECK (NODE))->u.base.dependent_init_p = (X))
4231
4232 /* Nonzero if NODE is an artificial VAR_DECL for a C++17 structured binding
4233 declaration or one of VAR_DECLs for the user identifiers in it. */
4234 #define DECL_DECOMPOSITION_P(NODE) \
4235 (VAR_P (NODE) && DECL_LANG_SPECIFIC (NODE) \
4236 ? DECL_LANG_SPECIFIC (NODE)->u.base.selector == lds_decomp \
4237 : false)
4238
4239 /* The underlying artificial VAR_DECL for structured binding. */
4240 #define DECL_DECOMP_BASE(NODE) \
4241 (LANG_DECL_DECOMP_CHECK (NODE)->base)
4242
4243 /* Nonzero if NODE is an inline VAR_DECL. In C++17, static data members
4244 declared with constexpr specifier are implicitly inline variables. */
4245 #define DECL_INLINE_VAR_P(NODE) \
4246 (DECL_VAR_DECLARED_INLINE_P (NODE) \
4247 || (cxx_dialect >= cxx17 \
4248 && DECL_DECLARED_CONSTEXPR_P (NODE) \
4249 && DECL_CLASS_SCOPE_P (NODE)))
4250
4251 /* Nonzero if DECL was declared with '= delete'. */
4252 #define DECL_DELETED_FN(DECL) \
4253 (LANG_DECL_FN_CHECK (DECL)->min.base.threadprivate_or_deleted_p)
4254
4255 /* Nonzero if DECL was declared with '= default' (maybe implicitly). */
4256 #define DECL_DEFAULTED_FN(DECL) \
4257 (LANG_DECL_FN_CHECK (DECL)->defaulted_p)
4258
4259 /* Nonzero if DECL is explicitly defaulted in the class body. */
4260 #define DECL_DEFAULTED_IN_CLASS_P(DECL) \
4261 (DECL_DEFAULTED_FN (DECL) && DECL_INITIALIZED_IN_CLASS_P (DECL))
4262 /* Nonzero if DECL was defaulted outside the class body. */
4263 #define DECL_DEFAULTED_OUTSIDE_CLASS_P(DECL) \
4264 (DECL_DEFAULTED_FN (DECL) \
4265 && !(DECL_ARTIFICIAL (DECL) || DECL_INITIALIZED_IN_CLASS_P (DECL)))
4266
4267 /* Record whether a typedef for type `int' was actually `signed int'. */
4268 #define C_TYPEDEF_EXPLICITLY_SIGNED(EXP) DECL_LANG_FLAG_1 (EXP)
4269
4270 /* Returns nonzero if DECL has external linkage, as specified by the
4271 language standard. (This predicate may hold even when the
4272 corresponding entity is not actually given external linkage in the
4273 object file; see decl_linkage for details.) */
4274 #define DECL_EXTERNAL_LINKAGE_P(DECL) \
4275 (decl_linkage (DECL) == lk_external)
4276
4277 /* Keep these codes in ascending code order. */
4278
4279 #define INTEGRAL_CODE_P(CODE) \
4280 ((CODE) == ENUMERAL_TYPE \
4281 || (CODE) == BOOLEAN_TYPE \
4282 || (CODE) == INTEGER_TYPE)
4283
4284 /* [basic.fundamental]
4285
4286 Types bool, char, wchar_t, and the signed and unsigned integer types
4287 are collectively called integral types.
4288
4289 Note that INTEGRAL_TYPE_P, as defined in tree.h, allows enumeration
4290 types as well, which is incorrect in C++. Keep these checks in
4291 ascending code order. */
4292 #define CP_INTEGRAL_TYPE_P(TYPE) \
4293 (TREE_CODE (TYPE) == BOOLEAN_TYPE \
4294 || TREE_CODE (TYPE) == INTEGER_TYPE)
4295
4296 /* Returns true if TYPE is an integral or enumeration name. Keep
4297 these checks in ascending code order. */
4298 #define INTEGRAL_OR_ENUMERATION_TYPE_P(TYPE) \
4299 (TREE_CODE (TYPE) == ENUMERAL_TYPE || CP_INTEGRAL_TYPE_P (TYPE))
4300
4301 /* Returns true if TYPE is an integral or unscoped enumeration type. */
4302 #define INTEGRAL_OR_UNSCOPED_ENUMERATION_TYPE_P(TYPE) \
4303 (UNSCOPED_ENUM_P (TYPE) || CP_INTEGRAL_TYPE_P (TYPE))
4304
4305 /* True if the class type TYPE is a literal type. */
4306 #define CLASSTYPE_LITERAL_P(TYPE) \
4307 (LANG_TYPE_CLASS_CHECK (TYPE)->is_literal)
4308
4309 /* [basic.fundamental]
4310
4311 Integral and floating types are collectively called arithmetic
4312 types.
4313
4314 As a GNU extension, we also accept complex types.
4315
4316 Keep these checks in ascending code order. */
4317 #define ARITHMETIC_TYPE_P(TYPE) \
4318 (CP_INTEGRAL_TYPE_P (TYPE) \
4319 || TREE_CODE (TYPE) == REAL_TYPE \
4320 || TREE_CODE (TYPE) == COMPLEX_TYPE)
4321
4322 /* True iff TYPE is cv decltype(nullptr). */
4323 #define NULLPTR_TYPE_P(TYPE) (TREE_CODE (TYPE) == NULLPTR_TYPE)
4324
4325 /* [basic.types]
4326
4327 Arithmetic types, enumeration types, pointer types,
4328 pointer-to-member types, and std::nullptr_t are collectively called
4329 scalar types.
4330
4331 Keep these checks in ascending code order. */
4332 #define SCALAR_TYPE_P(TYPE) \
4333 (TYPE_PTRDATAMEM_P (TYPE) \
4334 || TREE_CODE (TYPE) == ENUMERAL_TYPE \
4335 || ARITHMETIC_TYPE_P (TYPE) \
4336 || TYPE_PTR_P (TYPE) \
4337 || TYPE_PTRMEMFUNC_P (TYPE) \
4338 || NULLPTR_TYPE_P (TYPE))
4339
4340 /* Determines whether this type is a C++0x scoped enumeration
4341 type. Scoped enumerations types are introduced via "enum class" or
4342 "enum struct", e.g.,
4343
4344 enum class Color {
4345 Red, Green, Blue
4346 };
4347
4348 Scoped enumeration types are different from normal (unscoped)
4349 enumeration types in several ways:
4350
4351 - The enumerators of a scoped enumeration type are only available
4352 within the scope of the enumeration type and not in the
4353 enclosing scope. For example, the Red color can be referred to
4354 with "Color::Red" but not "Red".
4355
4356 - Scoped enumerators and enumerations do not implicitly convert
4357 to integers or 'bool'.
4358
4359 - The underlying type of the enum is well-defined. */
4360 #define SCOPED_ENUM_P(TYPE) \
4361 (TREE_CODE (TYPE) == ENUMERAL_TYPE && ENUM_IS_SCOPED (TYPE))
4362
4363 /* Determine whether this is an unscoped enumeration type. */
4364 #define UNSCOPED_ENUM_P(TYPE) \
4365 (TREE_CODE (TYPE) == ENUMERAL_TYPE && !ENUM_IS_SCOPED (TYPE))
4366
4367 /* Set the flag indicating whether an ENUMERAL_TYPE is a C++0x scoped
4368 enumeration type (1) or a normal (unscoped) enumeration type
4369 (0). */
4370 #define SET_SCOPED_ENUM_P(TYPE, VAL) \
4371 (ENUM_IS_SCOPED (TYPE) = (VAL))
4372
4373 #define SET_OPAQUE_ENUM_P(TYPE, VAL) \
4374 (ENUM_IS_OPAQUE (TYPE) = (VAL))
4375
4376 #define OPAQUE_ENUM_P(TYPE) \
4377 (TREE_CODE (TYPE) == ENUMERAL_TYPE && ENUM_IS_OPAQUE (TYPE))
4378
4379 /* Determines whether an ENUMERAL_TYPE has an explicit
4380 underlying type. */
4381 #define ENUM_FIXED_UNDERLYING_TYPE_P(NODE) (TYPE_LANG_FLAG_5 (NODE))
4382
4383 /* Returns the underlying type of the given enumeration type. The
4384 underlying type is determined in different ways, depending on the
4385 properties of the enum:
4386
4387 - In C++0x, the underlying type can be explicitly specified, e.g.,
4388
4389 enum E1 : char { ... } // underlying type is char
4390
4391 - In a C++0x scoped enumeration, the underlying type is int
4392 unless otherwises specified:
4393
4394 enum class E2 { ... } // underlying type is int
4395
4396 - Otherwise, the underlying type is determined based on the
4397 values of the enumerators. In this case, the
4398 ENUM_UNDERLYING_TYPE will not be set until after the definition
4399 of the enumeration is completed by finish_enum. */
4400 #define ENUM_UNDERLYING_TYPE(TYPE) \
4401 TREE_TYPE (ENUMERAL_TYPE_CHECK (TYPE))
4402
4403 /* [dcl.init.aggr]
4404
4405 An aggregate is an array or a class with no user-provided
4406 constructors, no brace-or-equal-initializers for non-static data
4407 members, no private or protected non-static data members, no
4408 base classes, and no virtual functions.
4409
4410 As an extension, we also treat vectors as aggregates. Keep these
4411 checks in ascending code order. */
4412 #define CP_AGGREGATE_TYPE_P(TYPE) \
4413 (gnu_vector_type_p (TYPE) \
4414 || TREE_CODE (TYPE) == ARRAY_TYPE \
4415 || (CLASS_TYPE_P (TYPE) && COMPLETE_TYPE_P (TYPE) && !CLASSTYPE_NON_AGGREGATE (TYPE)))
4416
4417 /* Nonzero for a class type means that the class type has a
4418 user-declared constructor. */
4419 #define TYPE_HAS_USER_CONSTRUCTOR(NODE) (TYPE_LANG_FLAG_1 (NODE))
4420
4421 /* Nonzero means that the FUNCTION_TYPE or METHOD_TYPE has a
4422 late-specified return type. */
4423 #define TYPE_HAS_LATE_RETURN_TYPE(NODE) \
4424 (TYPE_LANG_FLAG_2 (FUNC_OR_METHOD_CHECK (NODE)))
4425
4426 /* When appearing in an INDIRECT_REF, it means that the tree structure
4427 underneath is actually a call to a constructor. This is needed
4428 when the constructor must initialize local storage (which can
4429 be automatically destroyed), rather than allowing it to allocate
4430 space from the heap.
4431
4432 When appearing in a SAVE_EXPR, it means that underneath
4433 is a call to a constructor.
4434
4435 When appearing in a CONSTRUCTOR, the expression is an unconverted
4436 compound literal.
4437
4438 When appearing in a FIELD_DECL, it means that this field
4439 has been duly initialized in its constructor. */
4440 #define TREE_HAS_CONSTRUCTOR(NODE) (TREE_LANG_FLAG_4 (NODE))
4441
4442 /* True if NODE is a brace-enclosed initializer. */
4443 #define BRACE_ENCLOSED_INITIALIZER_P(NODE) \
4444 (TREE_CODE (NODE) == CONSTRUCTOR && TREE_TYPE (NODE) == init_list_type_node)
4445
4446 /* True if NODE is a compound-literal, i.e., a brace-enclosed
4447 initializer cast to a particular type. This is mostly only set during
4448 template parsing; once the initializer has been digested into an actual
4449 value of the type, the expression is represented by a TARGET_EXPR. */
4450 #define COMPOUND_LITERAL_P(NODE) \
4451 (TREE_CODE (NODE) == CONSTRUCTOR && TREE_HAS_CONSTRUCTOR (NODE))
4452
4453 #define EMPTY_CONSTRUCTOR_P(NODE) (TREE_CODE (NODE) == CONSTRUCTOR \
4454 && vec_safe_is_empty(CONSTRUCTOR_ELTS(NODE))\
4455 && !TREE_HAS_CONSTRUCTOR (NODE))
4456
4457 /* True if NODE is a init-list used as a direct-initializer, i.e.
4458 B b{1,2}, not B b({1,2}) or B b = {1,2}. */
4459 #define CONSTRUCTOR_IS_DIRECT_INIT(NODE) (TREE_LANG_FLAG_0 (CONSTRUCTOR_CHECK (NODE)))
4460
4461 /* True if this CONSTRUCTOR is instantiation-dependent and needs to be
4462 substituted. */
4463 #define CONSTRUCTOR_IS_DEPENDENT(NODE) \
4464 (TREE_LANG_FLAG_1 (CONSTRUCTOR_CHECK (NODE)))
4465
4466 /* True if this CONSTRUCTOR should not be used as a variable initializer
4467 because it was loaded from a constexpr variable with mutable fields. */
4468 #define CONSTRUCTOR_MUTABLE_POISON(NODE) \
4469 (TREE_LANG_FLAG_2 (CONSTRUCTOR_CHECK (NODE)))
4470
4471 /* True if this typed CONSTRUCTOR represents C99 compound-literal syntax rather
4472 than C++11 functional cast syntax. */
4473 #define CONSTRUCTOR_C99_COMPOUND_LITERAL(NODE) \
4474 (TREE_LANG_FLAG_3 (CONSTRUCTOR_CHECK (NODE)))
4475
4476 /* True if this CONSTRUCTOR contains PLACEHOLDER_EXPRs referencing the
4477 CONSTRUCTOR's type not nested inside another CONSTRUCTOR marked with
4478 CONSTRUCTOR_PLACEHOLDER_BOUNDARY. */
4479 #define CONSTRUCTOR_PLACEHOLDER_BOUNDARY(NODE) \
4480 (TREE_LANG_FLAG_5 (CONSTRUCTOR_CHECK (NODE)))
4481
4482 #define DIRECT_LIST_INIT_P(NODE) \
4483 (BRACE_ENCLOSED_INITIALIZER_P (NODE) && CONSTRUCTOR_IS_DIRECT_INIT (NODE))
4484
4485 /* True if this is a designated initializer (when we allow initializer-clauses
4486 mixed with designated-initializer-clauses set whenever there is at least
4487 one designated-initializer-clause), or a C99 designator. */
4488 #define CONSTRUCTOR_IS_DESIGNATED_INIT(NODE) \
4489 (TREE_LANG_FLAG_6 (CONSTRUCTOR_CHECK (NODE)))
4490
4491 /* True if this CONSTRUCTOR comes from a parenthesized list of values, e.g.
4492 A(1, 2, 3). */
4493 #define CONSTRUCTOR_IS_PAREN_INIT(NODE) \
4494 (CONSTRUCTOR_CHECK(NODE)->base.private_flag)
4495
4496 /* True if NODE represents a conversion for direct-initialization in a
4497 template. Set by perform_implicit_conversion_flags. */
4498 #define IMPLICIT_CONV_EXPR_DIRECT_INIT(NODE) \
4499 (TREE_LANG_FLAG_0 (IMPLICIT_CONV_EXPR_CHECK (NODE)))
4500
4501 /* True if NODE represents a dependent conversion of a non-type template
4502 argument. Set by maybe_convert_nontype_argument. */
4503 #define IMPLICIT_CONV_EXPR_NONTYPE_ARG(NODE) \
4504 (TREE_LANG_FLAG_1 (IMPLICIT_CONV_EXPR_CHECK (NODE)))
4505
4506 /* True if NODE represents a conversion for braced-init-list in a
4507 template. Set by perform_implicit_conversion_flags. */
4508 #define IMPLICIT_CONV_EXPR_BRACED_INIT(NODE) \
4509 (TREE_LANG_FLAG_2 (IMPLICIT_CONV_EXPR_CHECK (NODE)))
4510
4511 /* Nonzero means that an object of this type cannot be initialized using
4512 an initializer list. */
4513 #define CLASSTYPE_NON_AGGREGATE(NODE) \
4514 (LANG_TYPE_CLASS_CHECK (NODE)->non_aggregate)
4515 #define TYPE_NON_AGGREGATE_CLASS(NODE) \
4516 (CLASS_TYPE_P (NODE) && CLASSTYPE_NON_AGGREGATE (NODE))
4517
4518 /* Nonzero if there is a non-trivial X::op=(cv X&) for this class. */
4519 #define TYPE_HAS_COMPLEX_COPY_ASSIGN(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_copy_assign)
4520
4521 /* Nonzero if there is a non-trivial X::X(cv X&) for this class. */
4522 #define TYPE_HAS_COMPLEX_COPY_CTOR(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_copy_ctor)
4523
4524 /* Nonzero if there is a non-trivial X::op=(X&&) for this class. */
4525 #define TYPE_HAS_COMPLEX_MOVE_ASSIGN(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_move_assign)
4526
4527 /* Nonzero if there is a non-trivial X::X(X&&) for this class. */
4528 #define TYPE_HAS_COMPLEX_MOVE_CTOR(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_move_ctor)
4529
4530 /* Nonzero if there is no trivial default constructor for this class. */
4531 #define TYPE_HAS_COMPLEX_DFLT(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_dflt)
4532
4533 /* Nonzero if TYPE has a trivial destructor. From [class.dtor]:
4534
4535 A destructor is trivial if it is an implicitly declared
4536 destructor and if:
4537
4538 - all of the direct base classes of its class have trivial
4539 destructors,
4540
4541 - for all of the non-static data members of its class that are
4542 of class type (or array thereof), each such class has a
4543 trivial destructor. */
4544 #define TYPE_HAS_TRIVIAL_DESTRUCTOR(NODE) \
4545 (!TYPE_HAS_NONTRIVIAL_DESTRUCTOR (NODE))
4546
4547 /* Nonzero for _TYPE node means that this type does not have a trivial
4548 destructor. Therefore, destroying an object of this type will
4549 involve a call to a destructor. This can apply to objects of
4550 ARRAY_TYPE if the type of the elements needs a destructor. */
4551 #define TYPE_HAS_NONTRIVIAL_DESTRUCTOR(NODE) \
4552 (TYPE_LANG_FLAG_4 (NODE))
4553
4554 /* Nonzero for class type means that the default constructor is trivial. */
4555 #define TYPE_HAS_TRIVIAL_DFLT(NODE) \
4556 (TYPE_HAS_DEFAULT_CONSTRUCTOR (NODE) && ! TYPE_HAS_COMPLEX_DFLT (NODE))
4557
4558 /* Nonzero for class type means that copy initialization of this type can use
4559 a bitwise copy. */
4560 #define TYPE_HAS_TRIVIAL_COPY_CTOR(NODE) \
4561 (TYPE_HAS_COPY_CTOR (NODE) && ! TYPE_HAS_COMPLEX_COPY_CTOR (NODE))
4562
4563 /* Nonzero for class type means that assignment of this type can use
4564 a bitwise copy. */
4565 #define TYPE_HAS_TRIVIAL_COPY_ASSIGN(NODE) \
4566 (TYPE_HAS_COPY_ASSIGN (NODE) && ! TYPE_HAS_COMPLEX_COPY_ASSIGN (NODE))
4567
4568 /* Returns true if NODE is a pointer-to-data-member. */
4569 #define TYPE_PTRDATAMEM_P(NODE) \
4570 (TREE_CODE (NODE) == OFFSET_TYPE)
4571
4572 /* Returns true if NODE is a pointer. */
4573 #define TYPE_PTR_P(NODE) \
4574 (TREE_CODE (NODE) == POINTER_TYPE)
4575
4576 /* Returns true if NODE is a reference. */
4577 #define TYPE_REF_P(NODE) \
4578 (TREE_CODE (NODE) == REFERENCE_TYPE)
4579
4580 /* Returns true if NODE is a pointer or a reference. */
4581 #define INDIRECT_TYPE_P(NODE) \
4582 (TYPE_PTR_P (NODE) || TYPE_REF_P (NODE))
4583
4584 /* Returns true if NODE is an object type:
4585
4586 [basic.types]
4587
4588 An object type is a (possibly cv-qualified) type that is not a
4589 function type, not a reference type, and not a void type.
4590
4591 Keep these checks in ascending order, for speed. */
4592 #define TYPE_OBJ_P(NODE) \
4593 (!TYPE_REF_P (NODE) \
4594 && !VOID_TYPE_P (NODE) \
4595 && !FUNC_OR_METHOD_TYPE_P (NODE))
4596
4597 /* Returns true if NODE is a pointer to an object. Keep these checks
4598 in ascending tree code order. */
4599 #define TYPE_PTROB_P(NODE) \
4600 (TYPE_PTR_P (NODE) && TYPE_OBJ_P (TREE_TYPE (NODE)))
4601
4602 /* Returns true if NODE is a reference to an object. Keep these checks
4603 in ascending tree code order. */
4604 #define TYPE_REF_OBJ_P(NODE) \
4605 (TYPE_REF_P (NODE) && TYPE_OBJ_P (TREE_TYPE (NODE)))
4606
4607 /* Returns true if NODE is a pointer to an object, or a pointer to
4608 void. Keep these checks in ascending tree code order. */
4609 #define TYPE_PTROBV_P(NODE) \
4610 (TYPE_PTR_P (NODE) \
4611 && !FUNC_OR_METHOD_TYPE_P (TREE_TYPE (NODE)))
4612
4613 /* Returns true if NODE is a pointer to function type. */
4614 #define TYPE_PTRFN_P(NODE) \
4615 (TYPE_PTR_P (NODE) \
4616 && TREE_CODE (TREE_TYPE (NODE)) == FUNCTION_TYPE)
4617
4618 /* Returns true if NODE is a reference to function type. */
4619 #define TYPE_REFFN_P(NODE) \
4620 (TYPE_REF_P (NODE) \
4621 && TREE_CODE (TREE_TYPE (NODE)) == FUNCTION_TYPE)
4622
4623 /* Returns true if NODE is a pointer to member function type. */
4624 #define TYPE_PTRMEMFUNC_P(NODE) \
4625 (TREE_CODE (NODE) == RECORD_TYPE \
4626 && TYPE_PTRMEMFUNC_FLAG (NODE))
4627
4628 #define TYPE_PTRMEMFUNC_FLAG(NODE) \
4629 (TYPE_LANG_FLAG_2 (RECORD_TYPE_CHECK (NODE)))
4630
4631 /* Returns true if NODE is a pointer-to-member. */
4632 #define TYPE_PTRMEM_P(NODE) \
4633 (TYPE_PTRDATAMEM_P (NODE) || TYPE_PTRMEMFUNC_P (NODE))
4634
4635 /* Returns true if NODE is a pointer or a pointer-to-member. */
4636 #define TYPE_PTR_OR_PTRMEM_P(NODE) \
4637 (TYPE_PTR_P (NODE) || TYPE_PTRMEM_P (NODE))
4638
4639 /* Indicates when overload resolution may resolve to a pointer to
4640 member function. [expr.unary.op]/3 */
4641 #define PTRMEM_OK_P(NODE) \
4642 TREE_LANG_FLAG_0 (TREE_CHECK3 ((NODE), ADDR_EXPR, OFFSET_REF, SCOPE_REF))
4643
4644 /* Get the POINTER_TYPE to the METHOD_TYPE associated with this
4645 pointer to member function. TYPE_PTRMEMFUNC_P _must_ be true,
4646 before using this macro. */
4647 #define TYPE_PTRMEMFUNC_FN_TYPE(NODE) \
4648 (cp_build_qualified_type (TREE_TYPE (TYPE_FIELDS (NODE)),\
4649 cp_type_quals (NODE)))
4650
4651 /* As above, but can be used in places that want an lvalue at the expense
4652 of not necessarily having the correct cv-qualifiers. */
4653 #define TYPE_PTRMEMFUNC_FN_TYPE_RAW(NODE) \
4654 (TREE_TYPE (TYPE_FIELDS (NODE)))
4655
4656 /* Returns `A' for a type like `int (A::*)(double)' */
4657 #define TYPE_PTRMEMFUNC_OBJECT_TYPE(NODE) \
4658 TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (NODE)))
4659
4660 /* The canonical internal RECORD_TYPE from the POINTER_TYPE to
4661 METHOD_TYPE. */
4662 #define TYPE_PTRMEMFUNC_TYPE(NODE) \
4663 TYPE_LANG_SLOT_1 (NODE)
4664
4665 /* For a pointer-to-member type of the form `T X::*', this is `X'.
4666 For a type like `void (X::*)() const', this type is `X', not `const
4667 X'. To get at the `const X' you have to look at the
4668 TYPE_PTRMEM_POINTED_TO_TYPE; there, the first parameter will have
4669 type `const X*'. */
4670 #define TYPE_PTRMEM_CLASS_TYPE(NODE) \
4671 (TYPE_PTRDATAMEM_P (NODE) \
4672 ? TYPE_OFFSET_BASETYPE (NODE) \
4673 : TYPE_PTRMEMFUNC_OBJECT_TYPE (NODE))
4674
4675 /* For a pointer-to-member type of the form `T X::*', this is `T'. */
4676 #define TYPE_PTRMEM_POINTED_TO_TYPE(NODE) \
4677 (TYPE_PTRDATAMEM_P (NODE) \
4678 ? TREE_TYPE (NODE) \
4679 : TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (NODE)))
4680
4681 /* For a pointer-to-member constant `X::Y' this is the RECORD_TYPE for
4682 `X'. */
4683 #define PTRMEM_CST_CLASS(NODE) \
4684 TYPE_PTRMEM_CLASS_TYPE (TREE_TYPE (PTRMEM_CST_CHECK (NODE)))
4685
4686 /* For a pointer-to-member constant `X::Y' this is the _DECL for
4687 `Y'. */
4688 #define PTRMEM_CST_MEMBER(NODE) \
4689 (((ptrmem_cst_t)PTRMEM_CST_CHECK (NODE))->member)
4690
4691 /* The expression in question for a TYPEOF_TYPE. */
4692 #define TYPEOF_TYPE_EXPR(NODE) (TYPE_VALUES_RAW (TYPEOF_TYPE_CHECK (NODE)))
4693
4694 /* The type in question for an UNDERLYING_TYPE. */
4695 #define UNDERLYING_TYPE_TYPE(NODE) \
4696 (TYPE_VALUES_RAW (UNDERLYING_TYPE_CHECK (NODE)))
4697
4698 /* The type in question for BASES. */
4699 #define BASES_TYPE(NODE) \
4700 (TYPE_VALUES_RAW (BASES_CHECK (NODE)))
4701
4702 #define BASES_DIRECT(NODE) \
4703 TREE_LANG_FLAG_0 (BASES_CHECK (NODE))
4704
4705 /* The expression in question for a DECLTYPE_TYPE. */
4706 #define DECLTYPE_TYPE_EXPR(NODE) (TYPE_VALUES_RAW (DECLTYPE_TYPE_CHECK (NODE)))
4707
4708 /* Whether the DECLTYPE_TYPE_EXPR of NODE was originally parsed as an
4709 id-expression or a member-access expression. When false, it was
4710 parsed as a full expression. */
4711 #define DECLTYPE_TYPE_ID_EXPR_OR_MEMBER_ACCESS_P(NODE) \
4712 (DECLTYPE_TYPE_CHECK (NODE))->type_common.string_flag
4713
4714 /* These flags indicate that we want different semantics from normal
4715 decltype: lambda capture just drops references,
4716 lambda proxies look through implicit dereference. */
4717 #define DECLTYPE_FOR_LAMBDA_CAPTURE(NODE) \
4718 TREE_LANG_FLAG_0 (DECLTYPE_TYPE_CHECK (NODE))
4719 #define DECLTYPE_FOR_LAMBDA_PROXY(NODE) \
4720 TREE_LANG_FLAG_2 (DECLTYPE_TYPE_CHECK (NODE))
4721 #define DECLTYPE_FOR_REF_CAPTURE(NODE) \
4722 TREE_LANG_FLAG_3 (DECLTYPE_TYPE_CHECK (NODE))
4723
4724 /* Nonzero for VAR_DECL and FUNCTION_DECL node means that `extern' was
4725 specified in its declaration. This can also be set for an
4726 erroneously declared PARM_DECL. */
4727 #define DECL_THIS_EXTERN(NODE) \
4728 DECL_LANG_FLAG_2 (VAR_FUNCTION_OR_PARM_DECL_CHECK (NODE))
4729
4730 /* Nonzero for VAR_DECL and FUNCTION_DECL node means that `static' was
4731 specified in its declaration. This can also be set for an
4732 erroneously declared PARM_DECL. */
4733 #define DECL_THIS_STATIC(NODE) \
4734 DECL_LANG_FLAG_6 (VAR_FUNCTION_OR_PARM_DECL_CHECK (NODE))
4735
4736 /* Nonzero for FIELD_DECL node means that this field is a lambda capture
4737 field for an array of runtime bound. */
4738 #define DECL_VLA_CAPTURE_P(NODE) \
4739 DECL_LANG_FLAG_1 (FIELD_DECL_CHECK (NODE))
4740
4741 /* Nonzero for PARM_DECL node means that this is an array function
4742 parameter, i.e, a[] rather than *a. */
4743 #define DECL_ARRAY_PARAMETER_P(NODE) \
4744 DECL_LANG_FLAG_1 (PARM_DECL_CHECK (NODE))
4745
4746 /* Nonzero for a FIELD_DECL who's NSMDI is currently being
4747 instantiated. */
4748 #define DECL_INSTANTIATING_NSDMI_P(NODE) \
4749 DECL_LANG_FLAG_2 (FIELD_DECL_CHECK (NODE))
4750
4751 /* Nonzero for FIELD_DECL node means that this field is a base class
4752 of the parent object, as opposed to a member field. */
4753 #define DECL_FIELD_IS_BASE(NODE) \
4754 DECL_LANG_FLAG_6 (FIELD_DECL_CHECK (NODE))
4755
4756 /* Nonzero for FIELD_DECL node means that this field is a simple (no
4757 explicit initializer) lambda capture field, making it invisible to
4758 name lookup in unevaluated contexts. */
4759 #define DECL_NORMAL_CAPTURE_P(NODE) \
4760 DECL_LANG_FLAG_7 (FIELD_DECL_CHECK (NODE))
4761
4762 /* Nonzero if TYPE is an anonymous union or struct type. We have to use a
4763 flag for this because "A union for which objects or pointers are
4764 declared is not an anonymous union" [class.union]. */
4765 #define ANON_AGGR_TYPE_P(NODE) \
4766 (CLASS_TYPE_P (NODE) && LANG_TYPE_CLASS_CHECK (NODE)->anon_aggr)
4767 #define SET_ANON_AGGR_TYPE_P(NODE) \
4768 (LANG_TYPE_CLASS_CHECK (NODE)->anon_aggr = 1)
4769
4770 /* Nonzero if TYPE is an anonymous union type. */
4771 #define ANON_UNION_TYPE_P(NODE) \
4772 (TREE_CODE (NODE) == UNION_TYPE && ANON_AGGR_TYPE_P (NODE))
4773
4774 /* Define fields and accessors for nodes representing declared names. */
4775
4776 /* True if TYPE is an unnamed structured type with a typedef for
4777 linkage purposes. In that case TYPE_NAME and TYPE_STUB_DECL of the
4778 MAIN-VARIANT are different. */
4779 #define TYPE_WAS_UNNAMED(NODE) \
4780 (TYPE_NAME (TYPE_MAIN_VARIANT (NODE)) \
4781 != TYPE_STUB_DECL (TYPE_MAIN_VARIANT (NODE)))
4782
4783 /* C++: all of these are overloaded! These apply only to TYPE_DECLs. */
4784
4785 /* The format of each node in the DECL_FRIENDLIST is as follows:
4786
4787 The TREE_PURPOSE will be the name of a function, i.e., an
4788 IDENTIFIER_NODE. The TREE_VALUE will be itself a TREE_LIST, whose
4789 TREE_VALUEs are friends with the given name. */
4790 #define DECL_FRIENDLIST(NODE) (DECL_INITIAL (NODE))
4791 #define FRIEND_NAME(LIST) (TREE_PURPOSE (LIST))
4792 #define FRIEND_DECLS(LIST) (TREE_VALUE (LIST))
4793
4794 /* The DECL_ACCESS, if non-NULL, is a TREE_LIST. The TREE_PURPOSE of
4795 each node is a type; the TREE_VALUE is the access granted for this
4796 DECL in that type. The DECL_ACCESS is set by access declarations.
4797 For example, if a member that would normally be public in a
4798 derived class is made protected, then the derived class and the
4799 protected_access_node will appear in the DECL_ACCESS for the node. */
4800 #define DECL_ACCESS(NODE) (LANG_DECL_MIN_CHECK (NODE)->access)
4801
4802 /* Nonzero if the FUNCTION_DECL is a global constructor. */
4803 #define DECL_GLOBAL_CTOR_P(NODE) \
4804 (LANG_DECL_FN_CHECK (NODE)->global_ctor_p)
4805
4806 /* Nonzero if the FUNCTION_DECL is a global destructor. */
4807 #define DECL_GLOBAL_DTOR_P(NODE) \
4808 (LANG_DECL_FN_CHECK (NODE)->global_dtor_p)
4809
4810 /* Accessor macros for C++ template decl nodes. */
4811
4812 /* The DECL_TEMPLATE_PARMS are a list. The TREE_PURPOSE of each node
4813 is a INT_CST whose TREE_INT_CST_LOW indicates the level of the
4814 template parameters, with 1 being the outermost set of template
4815 parameters. The TREE_VALUE is a vector, whose elements are the
4816 template parameters at each level. Each element in the vector is a
4817 TREE_LIST, whose TREE_VALUE is a PARM_DECL (if the parameter is a
4818 non-type parameter), or a TYPE_DECL (if the parameter is a type
4819 parameter) or a TEMPLATE_DECL (if the parameter is a template
4820 parameter). The TREE_PURPOSE is the default value, if any. The
4821 TEMPLATE_PARM_INDEX for the parameter is available as the
4822 DECL_INITIAL (for a PARM_DECL) or as the TREE_TYPE (for a
4823 TYPE_DECL).
4824
4825 FIXME: CONST_CAST_TREE is a hack that hopefully will go away after
4826 tree is converted to C++ class hiearchy. */
4827 #define DECL_TEMPLATE_PARMS(NODE) \
4828 ((struct tree_template_decl *)CONST_CAST_TREE (TEMPLATE_DECL_CHECK (NODE)))->arguments
4829 #define DECL_INNERMOST_TEMPLATE_PARMS(NODE) \
4830 INNERMOST_TEMPLATE_PARMS (DECL_TEMPLATE_PARMS (NODE))
4831 #define DECL_NTPARMS(NODE) \
4832 TREE_VEC_LENGTH (DECL_INNERMOST_TEMPLATE_PARMS (NODE))
4833 /* For function, method, class-data templates.
4834
4835 FIXME: CONST_CAST_TREE is a hack that hopefully will go away after
4836 tree is converted to C++ class hiearchy. */
4837 #define DECL_TEMPLATE_RESULT(NODE) \
4838 ((struct tree_template_decl *)CONST_CAST_TREE(TEMPLATE_DECL_CHECK (NODE)))->result
4839 /* For a function template at namespace scope, DECL_TEMPLATE_INSTANTIATIONS
4840 lists all instantiations and specializations of the function so that
4841 tsubst_friend_function can reassign them to another template if we find
4842 that the namespace-scope template is really a partial instantiation of a
4843 friend template.
4844
4845 For a class template the DECL_TEMPLATE_INSTANTIATIONS lists holds
4846 all instantiations and specializations of the class type, including
4847 partial instantiations and partial specializations, so that if we
4848 explicitly specialize a partial instantiation we can walk the list
4849 in maybe_process_partial_specialization and reassign them or complain
4850 as appropriate.
4851
4852 In both cases, the TREE_PURPOSE of each node contains the arguments
4853 used; the TREE_VALUE contains the generated variable. The template
4854 arguments are always complete. For example, given:
4855
4856 template <class T> struct S1 {
4857 template <class U> struct S2 {};
4858 template <class U> struct S2<U*> {};
4859 };
4860
4861 the record for the partial specialization will contain, as its
4862 argument list, { {T}, {U*} }, and will be on the
4863 DECL_TEMPLATE_INSTANTIATIONS list for `template <class T> template
4864 <class U> struct S1<T>::S2'.
4865
4866 This list is not used for other templates. */
4867 #define DECL_TEMPLATE_INSTANTIATIONS(NODE) \
4868 DECL_SIZE_UNIT (TEMPLATE_DECL_CHECK (NODE))
4869
4870 /* For a class template, this list contains the partial
4871 specializations of this template. (Full specializations are not
4872 recorded on this list.) The TREE_PURPOSE holds the arguments used
4873 in the partial specialization (e.g., for `template <class T> struct
4874 S<T*, int>' this will be `T*, int'.) The arguments will also include
4875 any outer template arguments. The TREE_VALUE holds the TEMPLATE_DECL
4876 for the partial specialization. The TREE_TYPE is the _TYPE node for
4877 the partial specialization.
4878
4879 This list is not used for other templates. */
4880 #define DECL_TEMPLATE_SPECIALIZATIONS(NODE) \
4881 DECL_SIZE (TEMPLATE_DECL_CHECK (NODE))
4882
4883 /* Nonzero for a DECL which is actually a template parameter. Keep
4884 these checks in ascending tree code order. */
4885 #define DECL_TEMPLATE_PARM_P(NODE) \
4886 (DECL_LANG_FLAG_0 (NODE) \
4887 && (TREE_CODE (NODE) == CONST_DECL \
4888 || TREE_CODE (NODE) == PARM_DECL \
4889 || TREE_CODE (NODE) == TYPE_DECL \
4890 || TREE_CODE (NODE) == TEMPLATE_DECL))
4891
4892 /* Nonzero for a raw template parameter node. */
4893 #define TEMPLATE_PARM_P(NODE) \
4894 (TREE_CODE (NODE) == TEMPLATE_TYPE_PARM \
4895 || TREE_CODE (NODE) == TEMPLATE_TEMPLATE_PARM \
4896 || TREE_CODE (NODE) == TEMPLATE_PARM_INDEX)
4897
4898 /* Mark NODE as a template parameter. */
4899 #define SET_DECL_TEMPLATE_PARM_P(NODE) \
4900 (DECL_LANG_FLAG_0 (NODE) = 1)
4901
4902 /* Nonzero if NODE is a template template parameter. */
4903 #define DECL_TEMPLATE_TEMPLATE_PARM_P(NODE) \
4904 (TREE_CODE (NODE) == TEMPLATE_DECL && DECL_TEMPLATE_PARM_P (NODE))
4905
4906 /* Nonzero for a DECL that represents a function template. */
4907 #define DECL_FUNCTION_TEMPLATE_P(NODE) \
4908 (TREE_CODE (NODE) == TEMPLATE_DECL \
4909 && DECL_TEMPLATE_RESULT (NODE) != NULL_TREE \
4910 && TREE_CODE (DECL_TEMPLATE_RESULT (NODE)) == FUNCTION_DECL)
4911
4912 /* Nonzero for a DECL that represents a class template or alias
4913 template. */
4914 #define DECL_TYPE_TEMPLATE_P(NODE) \
4915 (TREE_CODE (NODE) == TEMPLATE_DECL \
4916 && DECL_TEMPLATE_RESULT (NODE) != NULL_TREE \
4917 && TREE_CODE (DECL_TEMPLATE_RESULT (NODE)) == TYPE_DECL)
4918
4919 /* Nonzero for a DECL that represents a class template. */
4920 #define DECL_CLASS_TEMPLATE_P(NODE) \
4921 (DECL_TYPE_TEMPLATE_P (NODE) \
4922 && DECL_IMPLICIT_TYPEDEF_P (DECL_TEMPLATE_RESULT (NODE)))
4923
4924 /* Nonzero for a TEMPLATE_DECL that represents an alias template. */
4925 #define DECL_ALIAS_TEMPLATE_P(NODE) \
4926 (DECL_TYPE_TEMPLATE_P (NODE) \
4927 && !DECL_ARTIFICIAL (DECL_TEMPLATE_RESULT (NODE)))
4928
4929 /* Nonzero for a NODE which declares a type. */
4930 #define DECL_DECLARES_TYPE_P(NODE) \
4931 (TREE_CODE (NODE) == TYPE_DECL || DECL_TYPE_TEMPLATE_P (NODE))
4932
4933 /* Nonzero if NODE declares a function. */
4934 #define DECL_DECLARES_FUNCTION_P(NODE) \
4935 (TREE_CODE (NODE) == FUNCTION_DECL || DECL_FUNCTION_TEMPLATE_P (NODE))
4936
4937 /* Nonzero if NODE is the typedef implicitly generated for a type when
4938 the type is declared. In C++, `struct S {};' is roughly
4939 equivalent to `struct S {}; typedef struct S S;' in C.
4940 DECL_IMPLICIT_TYPEDEF_P will hold for the typedef indicated in this
4941 example. In C++, there is a second implicit typedef for each
4942 class, called the injected-class-name, in the scope of `S' itself, so that
4943 you can say `S::S'. DECL_SELF_REFERENCE_P will hold for that typedef. */
4944 #define DECL_IMPLICIT_TYPEDEF_P(NODE) \
4945 (TREE_CODE (NODE) == TYPE_DECL && DECL_LANG_FLAG_2 (NODE))
4946 #define SET_DECL_IMPLICIT_TYPEDEF_P(NODE) \
4947 (DECL_LANG_FLAG_2 (NODE) = 1)
4948 #define DECL_SELF_REFERENCE_P(NODE) \
4949 (TREE_CODE (NODE) == TYPE_DECL && DECL_LANG_FLAG_4 (NODE))
4950 #define SET_DECL_SELF_REFERENCE_P(NODE) \
4951 (DECL_LANG_FLAG_4 (NODE) = 1)
4952
4953 /* A `primary' template is one that has its own template header and is not
4954 a partial specialization. A member function of a class template is a
4955 template, but not primary. A member template is primary. Friend
4956 templates are primary, too. */
4957
4958 /* Returns the primary template corresponding to these parameters. */
4959 #define TPARMS_PRIMARY_TEMPLATE(NODE) (TREE_TYPE (NODE))
4960
4961 #define DECL_PRIMARY_TEMPLATE(NODE) \
4962 (TPARMS_PRIMARY_TEMPLATE (DECL_INNERMOST_TEMPLATE_PARMS (NODE)))
4963
4964 /* Returns nonzero if NODE is a primary template. */
4965 #define PRIMARY_TEMPLATE_P(NODE) (DECL_PRIMARY_TEMPLATE (NODE) == (NODE))
4966
4967 /* Nonzero iff NODE is a specialization of a template. The value
4968 indicates the type of specializations:
4969
4970 1=implicit instantiation
4971
4972 2=partial or explicit specialization, e.g.:
4973
4974 template <> int min<int> (int, int),
4975
4976 3=explicit instantiation, e.g.:
4977
4978 template int min<int> (int, int);
4979
4980 Note that NODE will be marked as a specialization even if the
4981 template it is instantiating is not a primary template. For
4982 example, given:
4983
4984 template <typename T> struct O {
4985 void f();
4986 struct I {};
4987 };
4988
4989 both O<int>::f and O<int>::I will be marked as instantiations.
4990
4991 If DECL_USE_TEMPLATE is nonzero, then DECL_TEMPLATE_INFO will also
4992 be non-NULL. */
4993 #define DECL_USE_TEMPLATE(NODE) (DECL_LANG_SPECIFIC (NODE)->u.base.use_template)
4994
4995 /* Like DECL_USE_TEMPLATE, but for class types. */
4996 #define CLASSTYPE_USE_TEMPLATE(NODE) \
4997 (LANG_TYPE_CLASS_CHECK (NODE)->use_template)
4998
4999 /* True if NODE is a specialization of a primary template. */
5000 #define CLASSTYPE_SPECIALIZATION_OF_PRIMARY_TEMPLATE_P(NODE) \
5001 (CLASS_TYPE_P (NODE) \
5002 && CLASSTYPE_USE_TEMPLATE (NODE) \
5003 && PRIMARY_TEMPLATE_P (CLASSTYPE_TI_TEMPLATE (NODE)))
5004
5005 #define DECL_TEMPLATE_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) & 1)
5006 #define CLASSTYPE_TEMPLATE_INSTANTIATION(NODE) \
5007 (CLASSTYPE_USE_TEMPLATE (NODE) & 1)
5008
5009 #define DECL_TEMPLATE_SPECIALIZATION(NODE) (DECL_USE_TEMPLATE (NODE) == 2)
5010 #define SET_DECL_TEMPLATE_SPECIALIZATION(NODE) (DECL_USE_TEMPLATE (NODE) = 2)
5011
5012 /* Returns true for an explicit or partial specialization of a class
5013 template. */
5014 #define CLASSTYPE_TEMPLATE_SPECIALIZATION(NODE) \
5015 (CLASSTYPE_USE_TEMPLATE (NODE) == 2)
5016 #define SET_CLASSTYPE_TEMPLATE_SPECIALIZATION(NODE) \
5017 (CLASSTYPE_USE_TEMPLATE (NODE) = 2)
5018
5019 #define DECL_IMPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) == 1)
5020 #define SET_DECL_IMPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) = 1)
5021 #define CLASSTYPE_IMPLICIT_INSTANTIATION(NODE) \
5022 (CLASSTYPE_USE_TEMPLATE (NODE) == 1)
5023 #define SET_CLASSTYPE_IMPLICIT_INSTANTIATION(NODE) \
5024 (CLASSTYPE_USE_TEMPLATE (NODE) = 1)
5025
5026 #define DECL_EXPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) == 3)
5027 #define SET_DECL_EXPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) = 3)
5028 #define CLASSTYPE_EXPLICIT_INSTANTIATION(NODE) \
5029 (CLASSTYPE_USE_TEMPLATE (NODE) == 3)
5030 #define SET_CLASSTYPE_EXPLICIT_INSTANTIATION(NODE) \
5031 (CLASSTYPE_USE_TEMPLATE (NODE) = 3)
5032
5033 /* Nonzero if DECL is a friend function which is an instantiation
5034 from the point of view of the compiler, but not from the point of
5035 view of the language. For example given:
5036 template <class T> struct S { friend void f(T) {}; };
5037 the declaration of `void f(int)' generated when S<int> is
5038 instantiated will not be a DECL_TEMPLATE_INSTANTIATION, but will be
5039 a DECL_FRIEND_PSEUDO_TEMPLATE_INSTANTIATION. */
5040 #define DECL_FRIEND_PSEUDO_TEMPLATE_INSTANTIATION(DECL) \
5041 (DECL_LANG_SPECIFIC (DECL) && DECL_TEMPLATE_INFO (DECL) \
5042 && !DECL_USE_TEMPLATE (DECL))
5043
5044 /* Nonzero if DECL is a function generated from a function 'temploid',
5045 i.e. template, member of class template, or dependent friend. */
5046 #define DECL_TEMPLOID_INSTANTIATION(DECL) \
5047 (DECL_TEMPLATE_INSTANTIATION (DECL) \
5048 || DECL_FRIEND_PSEUDO_TEMPLATE_INSTANTIATION (DECL))
5049
5050 /* Nonzero if DECL is either defined implicitly by the compiler or
5051 generated from a temploid. */
5052 #define DECL_GENERATED_P(DECL) \
5053 (DECL_TEMPLOID_INSTANTIATION (DECL) || DECL_DEFAULTED_FN (DECL))
5054
5055 /* Nonzero iff we are currently processing a declaration for an
5056 entity with its own template parameter list, and which is not a
5057 full specialization. */
5058 #define PROCESSING_REAL_TEMPLATE_DECL_P() \
5059 (!processing_template_parmlist \
5060 && processing_template_decl > template_class_depth (current_scope ()))
5061
5062 /* Nonzero if this VAR_DECL or FUNCTION_DECL has already been
5063 instantiated, i.e. its definition has been generated from the
5064 pattern given in the template. */
5065 #define DECL_TEMPLATE_INSTANTIATED(NODE) \
5066 DECL_LANG_FLAG_1 (VAR_OR_FUNCTION_DECL_CHECK (NODE))
5067
5068 /* We know what we're doing with this decl now. */
5069 #define DECL_INTERFACE_KNOWN(NODE) DECL_LANG_FLAG_5 (NODE)
5070
5071 /* DECL_EXTERNAL must be set on a decl until the decl is actually emitted,
5072 so that assemble_external will work properly. So we have this flag to
5073 tell us whether the decl is really not external.
5074
5075 This flag does not indicate whether or not the decl is defined in the
5076 current translation unit; it indicates whether or not we should emit the
5077 decl at the end of compilation if it is defined and needed. */
5078 #define DECL_NOT_REALLY_EXTERN(NODE) \
5079 (DECL_LANG_SPECIFIC (NODE)->u.base.not_really_extern)
5080
5081 #define DECL_REALLY_EXTERN(NODE) \
5082 (DECL_EXTERNAL (NODE) \
5083 && (!DECL_LANG_SPECIFIC (NODE) || !DECL_NOT_REALLY_EXTERN (NODE)))
5084
5085 /* A thunk is a stub function.
5086
5087 A thunk is an alternate entry point for an ordinary FUNCTION_DECL.
5088 The address of the ordinary FUNCTION_DECL is given by the
5089 DECL_INITIAL, which is always an ADDR_EXPR whose operand is a
5090 FUNCTION_DECL. The job of the thunk is to either adjust the this
5091 pointer before transferring control to the FUNCTION_DECL, or call
5092 FUNCTION_DECL and then adjust the result value. Note, the result
5093 pointer adjusting thunk must perform a call to the thunked
5094 function, (or be implemented via passing some invisible parameter
5095 to the thunked function, which is modified to perform the
5096 adjustment just before returning).
5097
5098 A thunk may perform either, or both, of the following operations:
5099
5100 o Adjust the this or result pointer by a constant offset.
5101 o Adjust the this or result pointer by looking up a vcall or vbase offset
5102 in the vtable.
5103
5104 A this pointer adjusting thunk converts from a base to a derived
5105 class, and hence adds the offsets. A result pointer adjusting thunk
5106 converts from a derived class to a base, and hence subtracts the
5107 offsets. If both operations are performed, then the constant
5108 adjustment is performed first for this pointer adjustment and last
5109 for the result pointer adjustment.
5110
5111 The constant adjustment is given by THUNK_FIXED_OFFSET. If the
5112 vcall or vbase offset is required, THUNK_VIRTUAL_OFFSET is
5113 used. For this pointer adjusting thunks, it is the vcall offset
5114 into the vtable. For result pointer adjusting thunks it is the
5115 binfo of the virtual base to convert to. Use that binfo's vbase
5116 offset.
5117
5118 It is possible to have equivalent covariant thunks. These are
5119 distinct virtual covariant thunks whose vbase offsets happen to
5120 have the same value. THUNK_ALIAS is used to pick one as the
5121 canonical thunk, which will get all the this pointer adjusting
5122 thunks attached to it. */
5123
5124 /* An integer indicating how many bytes should be subtracted from the
5125 this or result pointer when this function is called. */
5126 #define THUNK_FIXED_OFFSET(DECL) \
5127 (DECL_LANG_SPECIFIC (THUNK_FUNCTION_CHECK (DECL))->u.fn.u5.fixed_offset)
5128
5129 /* A tree indicating how to perform the virtual adjustment. For a this
5130 adjusting thunk it is the number of bytes to be added to the vtable
5131 to find the vcall offset. For a result adjusting thunk, it is the
5132 binfo of the relevant virtual base. If NULL, then there is no
5133 virtual adjust. (The vptr is always located at offset zero from
5134 the this or result pointer.) (If the covariant type is within the
5135 class hierarchy being laid out, the vbase index is not yet known
5136 at the point we need to create the thunks, hence the need to use
5137 binfos.) */
5138
5139 #define THUNK_VIRTUAL_OFFSET(DECL) \
5140 (LANG_DECL_MIN_CHECK (FUNCTION_DECL_CHECK (DECL))->access)
5141
5142 /* A thunk which is equivalent to another thunk. */
5143 #define THUNK_ALIAS(DECL) \
5144 (DECL_LANG_SPECIFIC (FUNCTION_DECL_CHECK (DECL))->u.min.template_info)
5145
5146 /* For thunk NODE, this is the FUNCTION_DECL thunked to. It is
5147 possible for the target to be a thunk too. */
5148 #define THUNK_TARGET(NODE) \
5149 (LANG_DECL_FN_CHECK (NODE)->befriending_classes)
5150
5151 /* True for a SCOPE_REF iff the "template" keyword was used to
5152 indicate that the qualified name denotes a template. */
5153 #define QUALIFIED_NAME_IS_TEMPLATE(NODE) \
5154 (TREE_LANG_FLAG_1 (SCOPE_REF_CHECK (NODE)))
5155
5156 /* [coroutines]
5157 */
5158
5159 /* True if NODE is a co-routine FUNCTION_DECL. */
5160 #define DECL_COROUTINE_P(NODE) \
5161 (LANG_DECL_FN_CHECK (DECL_COMMON_CHECK (NODE))->coroutine_p)
5162
5163 /* True for an OMP_ATOMIC that has dependent parameters. These are stored
5164 as an expr in operand 1, and integer_zero_node or clauses in operand 0. */
5165 #define OMP_ATOMIC_DEPENDENT_P(NODE) \
5166 (TREE_CODE (TREE_OPERAND (OMP_ATOMIC_CHECK (NODE), 0)) == INTEGER_CST \
5167 || TREE_CODE (TREE_OPERAND (OMP_ATOMIC_CHECK (NODE), 0)) == OMP_CLAUSE)
5168
5169 /* Used while gimplifying continue statements bound to OMP_FOR nodes. */
5170 #define OMP_FOR_GIMPLIFYING_P(NODE) \
5171 (TREE_LANG_FLAG_0 (OMP_LOOPING_CHECK (NODE)))
5172
5173 /* A language-specific token attached to the OpenMP data clauses to
5174 hold code (or code fragments) related to ctors, dtors, and op=.
5175 See semantics.c for details. */
5176 #define CP_OMP_CLAUSE_INFO(NODE) \
5177 TREE_TYPE (OMP_CLAUSE_RANGE_CHECK (NODE, OMP_CLAUSE_PRIVATE, \
5178 OMP_CLAUSE__CONDTEMP_))
5179
5180 /* Nonzero if this transaction expression's body contains statements. */
5181 #define TRANSACTION_EXPR_IS_STMT(NODE) \
5182 TREE_LANG_FLAG_0 (TRANSACTION_EXPR_CHECK (NODE))
5183
5184 /* These macros provide convenient access to the various _STMT nodes
5185 created when parsing template declarations. */
5186 #define TRY_STMTS(NODE) TREE_OPERAND (TRY_BLOCK_CHECK (NODE), 0)
5187 #define TRY_HANDLERS(NODE) TREE_OPERAND (TRY_BLOCK_CHECK (NODE), 1)
5188
5189 #define EH_SPEC_STMTS(NODE) TREE_OPERAND (EH_SPEC_BLOCK_CHECK (NODE), 0)
5190 #define EH_SPEC_RAISES(NODE) TREE_OPERAND (EH_SPEC_BLOCK_CHECK (NODE), 1)
5191
5192 #define USING_STMT_NAMESPACE(NODE) TREE_OPERAND (USING_STMT_CHECK (NODE), 0)
5193
5194 /* Nonzero if this try block is a function try block. */
5195 #define FN_TRY_BLOCK_P(NODE) TREE_LANG_FLAG_3 (TRY_BLOCK_CHECK (NODE))
5196 #define HANDLER_PARMS(NODE) TREE_OPERAND (HANDLER_CHECK (NODE), 0)
5197 #define HANDLER_BODY(NODE) TREE_OPERAND (HANDLER_CHECK (NODE), 1)
5198 #define HANDLER_TYPE(NODE) TREE_TYPE (HANDLER_CHECK (NODE))
5199
5200 /* CLEANUP_STMT accessors. The statement(s) covered, the cleanup to run
5201 and the VAR_DECL for which this cleanup exists. */
5202 #define CLEANUP_BODY(NODE) TREE_OPERAND (CLEANUP_STMT_CHECK (NODE), 0)
5203 #define CLEANUP_EXPR(NODE) TREE_OPERAND (CLEANUP_STMT_CHECK (NODE), 1)
5204 #define CLEANUP_DECL(NODE) TREE_OPERAND (CLEANUP_STMT_CHECK (NODE), 2)
5205
5206 /* IF_STMT accessors. These give access to the condition of the if
5207 statement, the then block of the if statement, and the else block
5208 of the if statement if it exists. */
5209 #define IF_COND(NODE) TREE_OPERAND (IF_STMT_CHECK (NODE), 0)
5210 #define THEN_CLAUSE(NODE) TREE_OPERAND (IF_STMT_CHECK (NODE), 1)
5211 #define ELSE_CLAUSE(NODE) TREE_OPERAND (IF_STMT_CHECK (NODE), 2)
5212 #define IF_SCOPE(NODE) TREE_OPERAND (IF_STMT_CHECK (NODE), 3)
5213 #define IF_STMT_CONSTEXPR_P(NODE) TREE_LANG_FLAG_0 (IF_STMT_CHECK (NODE))
5214
5215 /* Like PACK_EXPANSION_EXTRA_ARGS, for constexpr if. IF_SCOPE is used while
5216 building an IF_STMT; IF_STMT_EXTRA_ARGS is used after it is complete. */
5217 #define IF_STMT_EXTRA_ARGS(NODE) IF_SCOPE (NODE)
5218
5219 /* RANGE_FOR_STMT accessors. These give access to the declarator,
5220 expression, body, and scope of the statement, respectively. */
5221 #define RANGE_FOR_DECL(NODE) TREE_OPERAND (RANGE_FOR_STMT_CHECK (NODE), 0)
5222 #define RANGE_FOR_EXPR(NODE) TREE_OPERAND (RANGE_FOR_STMT_CHECK (NODE), 1)
5223 #define RANGE_FOR_BODY(NODE) TREE_OPERAND (RANGE_FOR_STMT_CHECK (NODE), 2)
5224 #define RANGE_FOR_SCOPE(NODE) TREE_OPERAND (RANGE_FOR_STMT_CHECK (NODE), 3)
5225 #define RANGE_FOR_UNROLL(NODE) TREE_OPERAND (RANGE_FOR_STMT_CHECK (NODE), 4)
5226 #define RANGE_FOR_INIT_STMT(NODE) TREE_OPERAND (RANGE_FOR_STMT_CHECK (NODE), 5)
5227 #define RANGE_FOR_IVDEP(NODE) TREE_LANG_FLAG_6 (RANGE_FOR_STMT_CHECK (NODE))
5228
5229 /* STMT_EXPR accessor. */
5230 #define STMT_EXPR_STMT(NODE) TREE_OPERAND (STMT_EXPR_CHECK (NODE), 0)
5231
5232 /* EXPR_STMT accessor. This gives the expression associated with an
5233 expression statement. */
5234 #define EXPR_STMT_EXPR(NODE) TREE_OPERAND (EXPR_STMT_CHECK (NODE), 0)
5235
5236 /* True if this TARGET_EXPR was created by build_cplus_new, and so we can
5237 discard it if it isn't useful. */
5238 #define TARGET_EXPR_IMPLICIT_P(NODE) \
5239 TREE_LANG_FLAG_0 (TARGET_EXPR_CHECK (NODE))
5240
5241 /* True if this TARGET_EXPR is the result of list-initialization of a
5242 temporary. */
5243 #define TARGET_EXPR_LIST_INIT_P(NODE) \
5244 TREE_LANG_FLAG_1 (TARGET_EXPR_CHECK (NODE))
5245
5246 /* True if this TARGET_EXPR expresses direct-initialization of an object
5247 to be named later. */
5248 #define TARGET_EXPR_DIRECT_INIT_P(NODE) \
5249 TREE_LANG_FLAG_2 (TARGET_EXPR_CHECK (NODE))
5250
5251 /* True if NODE is a TARGET_EXPR that just expresses a copy of its INITIAL; if
5252 the initializer has void type, it's doing something more complicated. */
5253 #define SIMPLE_TARGET_EXPR_P(NODE) \
5254 (TREE_CODE (NODE) == TARGET_EXPR \
5255 && TARGET_EXPR_INITIAL (NODE) \
5256 && !VOID_TYPE_P (TREE_TYPE (TARGET_EXPR_INITIAL (NODE))))
5257
5258 /* True if EXPR expresses direct-initialization of a TYPE. */
5259 #define DIRECT_INIT_EXPR_P(TYPE,EXPR) \
5260 (TREE_CODE (EXPR) == TARGET_EXPR && TREE_LANG_FLAG_2 (EXPR) \
5261 && same_type_ignoring_top_level_qualifiers_p (TYPE, TREE_TYPE (EXPR)))
5262
5263 /* True if this CONVERT_EXPR is for a conversion to virtual base in
5264 an NSDMI, and should be re-evaluated when used in a constructor. */
5265 #define CONVERT_EXPR_VBASE_PATH(NODE) \
5266 TREE_LANG_FLAG_0 (CONVERT_EXPR_CHECK (NODE))
5267
5268 /* True if SIZEOF_EXPR argument is type. */
5269 #define SIZEOF_EXPR_TYPE_P(NODE) \
5270 TREE_LANG_FLAG_0 (SIZEOF_EXPR_CHECK (NODE))
5271
5272 /* True if the ALIGNOF_EXPR was spelled "alignof". */
5273 #define ALIGNOF_EXPR_STD_P(NODE) \
5274 TREE_LANG_FLAG_0 (ALIGNOF_EXPR_CHECK (NODE))
5275
5276 /* OMP_DEPOBJ accessors. These give access to the depobj expression of the
5277 #pragma omp depobj directive and the clauses, respectively. If
5278 OMP_DEPOBJ_CLAUSES is INTEGER_CST, it is instead the update clause kind
5279 or OMP_CLAUSE_DEPEND_LAST for destroy clause. */
5280 #define OMP_DEPOBJ_DEPOBJ(NODE) TREE_OPERAND (OMP_DEPOBJ_CHECK (NODE), 0)
5281 #define OMP_DEPOBJ_CLAUSES(NODE) TREE_OPERAND (OMP_DEPOBJ_CHECK (NODE), 1)
5282
5283 /* An enumeration of the kind of tags that C++ accepts. */
5284 enum tag_types {
5285 none_type = 0, /* Not a tag type. */
5286 record_type, /* "struct" types. */
5287 class_type, /* "class" types. */
5288 union_type, /* "union" types. */
5289 enum_type, /* "enum" types. */
5290 typename_type, /* "typename" types. */
5291 scope_type /* namespace or tagged type name followed by :: */
5292 };
5293
5294 /* The various kinds of lvalues we distinguish. */
5295 enum cp_lvalue_kind_flags {
5296 clk_none = 0, /* Things that are not an lvalue. */
5297 clk_ordinary = 1, /* An ordinary lvalue. */
5298 clk_rvalueref = 2,/* An xvalue (rvalue formed using an rvalue reference) */
5299 clk_class = 4, /* A prvalue of class or array type. */
5300 clk_bitfield = 8, /* An lvalue for a bit-field. */
5301 clk_packed = 16, /* An lvalue for a packed field. */
5302 clk_implicit_rval = 1<<5 /* An lvalue being treated as an xvalue. */
5303 };
5304
5305 /* This type is used for parameters and variables which hold
5306 combinations of the flags in enum cp_lvalue_kind_flags. */
5307 typedef int cp_lvalue_kind;
5308
5309 /* Various kinds of template specialization, instantiation, etc. */
5310 enum tmpl_spec_kind {
5311 tsk_none, /* Not a template at all. */
5312 tsk_invalid_member_spec, /* An explicit member template
5313 specialization, but the enclosing
5314 classes have not all been explicitly
5315 specialized. */
5316 tsk_invalid_expl_inst, /* An explicit instantiation containing
5317 template parameter lists. */
5318 tsk_excessive_parms, /* A template declaration with too many
5319 template parameter lists. */
5320 tsk_insufficient_parms, /* A template declaration with too few
5321 parameter lists. */
5322 tsk_template, /* A template declaration. */
5323 tsk_expl_spec, /* An explicit specialization. */
5324 tsk_expl_inst /* An explicit instantiation. */
5325 };
5326
5327 /* The various kinds of access. BINFO_ACCESS depends on these being
5328 two bit quantities. The numerical values are important; they are
5329 used to initialize RTTI data structures, so changing them changes
5330 the ABI. */
5331 enum access_kind {
5332 ak_none = 0, /* Inaccessible. */
5333 ak_public = 1, /* Accessible, as a `public' thing. */
5334 ak_protected = 2, /* Accessible, as a `protected' thing. */
5335 ak_private = 3 /* Accessible, as a `private' thing. */
5336 };
5337
5338 /* The various kinds of special functions. If you add to this list,
5339 you should update special_function_p as well. */
5340 enum special_function_kind {
5341 sfk_none = 0, /* Not a special function. This enumeral
5342 must have value zero; see
5343 special_function_p. */
5344 /* The following are ordered, for use by member synthesis fns. */
5345 sfk_destructor, /* A destructor. */
5346 sfk_constructor, /* A constructor. */
5347 sfk_inheriting_constructor, /* An inheriting constructor */
5348 sfk_copy_constructor, /* A copy constructor. */
5349 sfk_move_constructor, /* A move constructor. */
5350 sfk_copy_assignment, /* A copy assignment operator. */
5351 sfk_move_assignment, /* A move assignment operator. */
5352 /* The following are unordered. */
5353 sfk_complete_destructor, /* A destructor for complete objects. */
5354 sfk_base_destructor, /* A destructor for base subobjects. */
5355 sfk_deleting_destructor, /* A destructor for complete objects that
5356 deletes the object after it has been
5357 destroyed. */
5358 sfk_conversion, /* A conversion operator. */
5359 sfk_deduction_guide, /* A class template deduction guide. */
5360 sfk_comparison, /* A comparison operator (e.g. ==, <, <=>). */
5361 sfk_virtual_destructor /* Used by member synthesis fns. */
5362 };
5363
5364 /* The various kinds of linkage. From [basic.link],
5365
5366 A name is said to have linkage when it might denote the same
5367 object, reference, function, type, template, namespace or value
5368 as a name introduced in another scope:
5369
5370 -- When a name has external linkage, the entity it denotes can
5371 be referred to from scopes of other translation units or from
5372 other scopes of the same translation unit.
5373
5374 -- When a name has internal linkage, the entity it denotes can
5375 be referred to by names from other scopes in the same
5376 translation unit.
5377
5378 -- When a name has no linkage, the entity it denotes cannot be
5379 referred to by names from other scopes. */
5380
5381 enum linkage_kind {
5382 lk_none, /* No linkage. */
5383 lk_internal, /* Internal linkage. */
5384 lk_external /* External linkage. */
5385 };
5386
5387 enum duration_kind {
5388 dk_static,
5389 dk_thread,
5390 dk_auto,
5391 dk_dynamic
5392 };
5393
5394 /* Bitmask flags to control type substitution. */
5395 enum tsubst_flags {
5396 tf_none = 0, /* nothing special */
5397 tf_error = 1 << 0, /* give error messages */
5398 tf_warning = 1 << 1, /* give warnings too */
5399 tf_ignore_bad_quals = 1 << 2, /* ignore bad cvr qualifiers */
5400 tf_keep_type_decl = 1 << 3, /* retain typedef type decls
5401 (make_typename_type use) */
5402 tf_ptrmem_ok = 1 << 4, /* pointers to member ok (internal
5403 instantiate_type use) */
5404 tf_user = 1 << 5, /* found template must be a user template
5405 (lookup_template_class use) */
5406 tf_conv = 1 << 6, /* We are determining what kind of
5407 conversion might be permissible,
5408 not actually performing the
5409 conversion. */
5410 tf_decltype = 1 << 7, /* We are the operand of decltype.
5411 Used to implement the special rules
5412 for calls in decltype (5.2.2/11). */
5413 tf_partial = 1 << 8, /* Doing initial explicit argument
5414 substitution in fn_type_unification. */
5415 tf_fndecl_type = 1 << 9, /* Substituting the type of a function
5416 declaration. */
5417 tf_no_cleanup = 1 << 10, /* Do not build a cleanup
5418 (build_target_expr and friends) */
5419 tf_norm = 1 << 11, /* Build diagnostic information during
5420 constraint normalization. */
5421 /* Convenient substitution flags combinations. */
5422 tf_warning_or_error = tf_warning | tf_error
5423 };
5424
5425 /* This type is used for parameters and variables which hold
5426 combinations of the flags in enum tsubst_flags. */
5427 typedef int tsubst_flags_t;
5428
5429 /* The kind of checking we can do looking in a class hierarchy. */
5430 enum base_access_flags {
5431 ba_any = 0, /* Do not check access, allow an ambiguous base,
5432 prefer a non-virtual base */
5433 ba_unique = 1 << 0, /* Must be a unique base. */
5434 ba_check_bit = 1 << 1, /* Check access. */
5435 ba_check = ba_unique | ba_check_bit,
5436 ba_ignore_scope = 1 << 2 /* Ignore access allowed by local scope. */
5437 };
5438
5439 /* This type is used for parameters and variables which hold
5440 combinations of the flags in enum base_access_flags. */
5441 typedef int base_access;
5442
5443 /* The various kinds of access check during parsing. */
5444 enum deferring_kind {
5445 dk_no_deferred = 0, /* Check access immediately */
5446 dk_deferred = 1, /* Deferred check */
5447 dk_no_check = 2 /* No access check */
5448 };
5449
5450 /* The kind of base we can find, looking in a class hierarchy.
5451 Values <0 indicate we failed. */
5452 enum base_kind {
5453 bk_inaccessible = -3, /* The base is inaccessible */
5454 bk_ambig = -2, /* The base is ambiguous */
5455 bk_not_base = -1, /* It is not a base */
5456 bk_same_type = 0, /* It is the same type */
5457 bk_proper_base = 1, /* It is a proper base */
5458 bk_via_virtual = 2 /* It is a proper base, but via a virtual
5459 path. This might not be the canonical
5460 binfo. */
5461 };
5462
5463 /* Node for "pointer to (virtual) function".
5464 This may be distinct from ptr_type_node so gdb can distinguish them. */
5465 #define vfunc_ptr_type_node vtable_entry_type
5466
5467
5468 /* For building calls to `delete'. */
5469 extern GTY(()) tree integer_two_node;
5470
5471 /* The number of function bodies which we are currently processing.
5472 (Zero if we are at namespace scope, one inside the body of a
5473 function, two inside the body of a function in a local class, etc.) */
5474 extern int function_depth;
5475
5476 /* Nonzero if we are inside spec_hasher::equal, which affects
5477 comparison of PARM_DECLs in cp_tree_equal. */
5478 extern int comparing_specializations;
5479
5480 /* Nonzero if we want different dependent aliases to compare as unequal.
5481 FIXME we should always do this except during deduction/ordering. */
5482 extern int comparing_dependent_aliases;
5483
5484 /* In parser.c. */
5485
5486 /* Nonzero if we are parsing an unevaluated operand: an operand to
5487 sizeof, typeof, or alignof. This is a count since operands to
5488 sizeof can be nested. */
5489
5490 extern int cp_unevaluated_operand;
5491
5492 /* RAII class used to inhibit the evaluation of operands during parsing
5493 and template instantiation. Evaluation warnings are also inhibited. */
5494
5495 class cp_unevaluated
5496 {
5497 public:
5498 cp_unevaluated ();
5499 ~cp_unevaluated ();
5500 };
5501
5502 /* The reverse: an RAII class used for nested contexts that are evaluated even
5503 if the enclosing context is not. */
5504
5505 class cp_evaluated
5506 {
5507 public:
5508 int uneval;
5509 int inhibit;
5510 cp_evaluated (bool reset = true)
5511 : uneval(cp_unevaluated_operand), inhibit(c_inhibit_evaluation_warnings)
5512 { if (reset)
5513 cp_unevaluated_operand = c_inhibit_evaluation_warnings = 0; }
5514 ~cp_evaluated ()
5515 { cp_unevaluated_operand = uneval;
5516 c_inhibit_evaluation_warnings = inhibit; }
5517 };
5518
5519 /* in pt.c */
5520
5521 /* These values are used for the `STRICT' parameter to type_unification and
5522 fn_type_unification. Their meanings are described with the
5523 documentation for fn_type_unification. */
5524
5525 enum unification_kind_t {
5526 DEDUCE_CALL,
5527 DEDUCE_CONV,
5528 DEDUCE_EXACT
5529 };
5530
5531 // An RAII class used to create a new pointer map for local
5532 // specializations. When the stack goes out of scope, the
5533 // previous pointer map is restored.
5534 enum lss_policy { lss_blank, lss_copy, lss_nop };
5535 class local_specialization_stack
5536 {
5537 public:
5538 local_specialization_stack (lss_policy = lss_blank);
5539 ~local_specialization_stack ();
5540
5541 hash_map<tree, tree> *saved;
5542 };
5543
5544 /* Entry in the specialization hash table. */
5545 struct GTY((for_user)) spec_entry
5546 {
5547 tree tmpl; /* The general template this is a specialization of. */
5548 tree args; /* The args for this (maybe-partial) specialization. */
5549 tree spec; /* The specialization itself. */
5550 };
5551
5552 /* in class.c */
5553
5554 extern int current_class_depth;
5555
5556 /* in decl.c */
5557
5558 /* An array of static vars & fns. */
5559 extern GTY(()) vec<tree, va_gc> *static_decls;
5560
5561 /* An array of vtable-needing types that have no key function, or have
5562 an emitted key function. */
5563 extern GTY(()) vec<tree, va_gc> *keyed_classes;
5564 \f
5565 /* Here's where we control how name mangling takes place. */
5566
5567 /* Cannot use '$' up front, because this confuses gdb
5568 (names beginning with '$' are gdb-local identifiers).
5569
5570 Note that all forms in which the '$' is significant are long enough
5571 for direct indexing (meaning that if we know there is a '$'
5572 at a particular location, we can index into the string at
5573 any other location that provides distinguishing characters). */
5574
5575 /* Define NO_DOT_IN_LABEL in your favorite tm file if your assembler
5576 doesn't allow '.' in symbol names. */
5577 #ifndef NO_DOT_IN_LABEL
5578
5579 #define JOINER '.'
5580
5581 #define AUTO_TEMP_NAME "_.tmp_"
5582 #define VFIELD_BASE ".vf"
5583 #define VFIELD_NAME "_vptr."
5584 #define VFIELD_NAME_FORMAT "_vptr.%s"
5585
5586 #else /* NO_DOT_IN_LABEL */
5587
5588 #ifndef NO_DOLLAR_IN_LABEL
5589
5590 #define JOINER '$'
5591
5592 #define AUTO_TEMP_NAME "_$tmp_"
5593 #define VFIELD_BASE "$vf"
5594 #define VFIELD_NAME "_vptr$"
5595 #define VFIELD_NAME_FORMAT "_vptr$%s"
5596
5597 #else /* NO_DOLLAR_IN_LABEL */
5598
5599 #define VTABLE_NAME "__vt_"
5600 #define VTABLE_NAME_P(ID_NODE) \
5601 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VTABLE_NAME, \
5602 sizeof (VTABLE_NAME) - 1))
5603 #define VFIELD_BASE "__vfb"
5604 #define VFIELD_NAME "__vptr_"
5605 #define VFIELD_NAME_P(ID_NODE) \
5606 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VFIELD_NAME, \
5607 sizeof (VFIELD_NAME) - 1))
5608 #define VFIELD_NAME_FORMAT "__vptr_%s"
5609
5610 #endif /* NO_DOLLAR_IN_LABEL */
5611 #endif /* NO_DOT_IN_LABEL */
5612
5613 #define UDLIT_OP_ANSI_PREFIX "operator\"\""
5614 #define UDLIT_OP_ANSI_FORMAT UDLIT_OP_ANSI_PREFIX "%s"
5615 #define UDLIT_OP_MANGLED_PREFIX "li"
5616 #define UDLIT_OP_MANGLED_FORMAT UDLIT_OP_MANGLED_PREFIX "%s"
5617 #define UDLIT_OPER_P(ID_NODE) \
5618 (!strncmp (IDENTIFIER_POINTER (ID_NODE), \
5619 UDLIT_OP_ANSI_PREFIX, \
5620 sizeof (UDLIT_OP_ANSI_PREFIX) - 1))
5621 #define UDLIT_OP_SUFFIX(ID_NODE) \
5622 (IDENTIFIER_POINTER (ID_NODE) + sizeof (UDLIT_OP_ANSI_PREFIX) - 1)
5623
5624 #if !defined(NO_DOLLAR_IN_LABEL) || !defined(NO_DOT_IN_LABEL)
5625
5626 #define VTABLE_NAME_P(ID_NODE) (IDENTIFIER_POINTER (ID_NODE)[1] == 'v' \
5627 && IDENTIFIER_POINTER (ID_NODE)[2] == 't' \
5628 && IDENTIFIER_POINTER (ID_NODE)[3] == JOINER)
5629
5630 #define VFIELD_NAME_P(ID_NODE) \
5631 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VFIELD_NAME, sizeof(VFIELD_NAME)-1))
5632
5633 #endif /* !defined(NO_DOLLAR_IN_LABEL) || !defined(NO_DOT_IN_LABEL) */
5634
5635 \f
5636 /* Nonzero if we're done parsing and into end-of-file activities.
5637 Two if we're done with front-end processing. */
5638
5639 extern int at_eof;
5640
5641 /* True if note_mangling_alias should enqueue mangling aliases for
5642 later generation, rather than emitting them right away. */
5643
5644 extern bool defer_mangling_aliases;
5645
5646 /* True if noexcept is part of the type (i.e. in C++17). */
5647
5648 extern bool flag_noexcept_type;
5649
5650 /* A list of namespace-scope objects which have constructors or
5651 destructors which reside in the global scope. The decl is stored
5652 in the TREE_VALUE slot and the initializer is stored in the
5653 TREE_PURPOSE slot. */
5654 extern GTY(()) tree static_aggregates;
5655 /* Likewise, for thread local storage. */
5656 extern GTY(()) tree tls_aggregates;
5657
5658 /* A hash-map mapping from variable decls to the dynamic initializer for
5659 the decl. This is currently only used by OpenMP. */
5660 extern GTY(()) decl_tree_map *dynamic_initializers;
5661
5662 enum overload_flags { NO_SPECIAL = 0, DTOR_FLAG, TYPENAME_FLAG };
5663
5664 /* These are uses as bits in flags passed to various functions to
5665 control their behavior. Despite the LOOKUP_ prefix, many of these
5666 do not control name lookup. ??? Functions using these flags should
5667 probably be modified to accept explicit boolean flags for the
5668 behaviors relevant to them. */
5669 /* Check for access violations. */
5670 #define LOOKUP_PROTECT (1 << 0)
5671 #define LOOKUP_NORMAL (LOOKUP_PROTECT)
5672 /* Even if the function found by lookup is a virtual function, it
5673 should be called directly. */
5674 #define LOOKUP_NONVIRTUAL (1 << 1)
5675 /* Non-converting (i.e., "explicit") constructors are not tried. This flag
5676 indicates that we are not performing direct-initialization. */
5677 #define LOOKUP_ONLYCONVERTING (1 << 2)
5678 #define LOOKUP_IMPLICIT (LOOKUP_NORMAL | LOOKUP_ONLYCONVERTING)
5679 /* If a temporary is created, it should be created so that it lives
5680 as long as the current variable bindings; otherwise it only lives
5681 until the end of the complete-expression. It also forces
5682 direct-initialization in cases where other parts of the compiler
5683 have already generated a temporary, such as reference
5684 initialization and the catch parameter. */
5685 #define DIRECT_BIND (1 << 3)
5686 /* We're performing a user-defined conversion, so more user-defined
5687 conversions are not permitted (only built-in conversions). */
5688 #define LOOKUP_NO_CONVERSION (1 << 4)
5689 /* The user has explicitly called a destructor. (Therefore, we do
5690 not need to check that the object is non-NULL before calling the
5691 destructor.) */
5692 #define LOOKUP_DESTRUCTOR (1 << 5)
5693 /* Do not permit references to bind to temporaries. */
5694 #define LOOKUP_NO_TEMP_BIND (1 << 6)
5695 /* We're trying to treat an lvalue as an rvalue. */
5696 /* FIXME remove when we extend the P1825 semantics to all standard modes, the
5697 C++20 approach uses IMPLICIT_RVALUE_P instead. */
5698 #define LOOKUP_PREFER_RVALUE (LOOKUP_NO_TEMP_BIND << 1)
5699 /* We're inside an init-list, so narrowing conversions are ill-formed. */
5700 #define LOOKUP_NO_NARROWING (LOOKUP_PREFER_RVALUE << 1)
5701 /* We're looking up a constructor for list-initialization. */
5702 #define LOOKUP_LIST_INIT_CTOR (LOOKUP_NO_NARROWING << 1)
5703 /* This is the first parameter of a copy constructor. */
5704 #define LOOKUP_COPY_PARM (LOOKUP_LIST_INIT_CTOR << 1)
5705 /* We only want to consider list constructors. */
5706 #define LOOKUP_LIST_ONLY (LOOKUP_COPY_PARM << 1)
5707 /* Return after determining which function to call and checking access.
5708 Used by sythesized_method_walk to determine which functions will
5709 be called to initialize subobjects, in order to determine exception
5710 specification and possible implicit delete.
5711 This is kind of a hack, but exiting early avoids problems with trying
5712 to perform argument conversions when the class isn't complete yet. */
5713 #define LOOKUP_SPECULATIVE (LOOKUP_LIST_ONLY << 1)
5714 /* Used by calls from defaulted functions to limit the overload set to avoid
5715 cycles trying to declare them (core issue 1092). */
5716 #define LOOKUP_DEFAULTED (LOOKUP_SPECULATIVE << 1)
5717 /* Used in calls to store_init_value to suppress its usual call to
5718 digest_init. */
5719 #define LOOKUP_ALREADY_DIGESTED (LOOKUP_DEFAULTED << 1)
5720 /* Like LOOKUP_NO_TEMP_BIND, but also prevent binding to xvalues. */
5721 #define LOOKUP_NO_RVAL_BIND (LOOKUP_ALREADY_DIGESTED << 1)
5722 /* Used by case_conversion to disregard non-integral conversions. */
5723 #define LOOKUP_NO_NON_INTEGRAL (LOOKUP_NO_RVAL_BIND << 1)
5724 /* Used for delegating constructors in order to diagnose self-delegation. */
5725 #define LOOKUP_DELEGATING_CONS (LOOKUP_NO_NON_INTEGRAL << 1)
5726 /* Allow initialization of a flexible array members. */
5727 #define LOOKUP_ALLOW_FLEXARRAY_INIT (LOOKUP_DELEGATING_CONS << 1)
5728 /* We're looking for either a rewritten comparison operator candidate or the
5729 operator to use on the former's result. We distinguish between the two by
5730 knowing that comparisons other than == and <=> must be the latter, as must
5731 a <=> expression trying to rewrite to <=> without reversing. */
5732 #define LOOKUP_REWRITTEN (LOOKUP_ALLOW_FLEXARRAY_INIT << 1)
5733 /* Reverse the order of the two arguments for comparison rewriting. First we
5734 swap the arguments in add_operator_candidates, then we swap the conversions
5735 in add_candidate (so that they correspond to the original order of the
5736 args), then we swap the conversions back in build_new_op_1 (so they
5737 correspond to the order of the args in the candidate). */
5738 #define LOOKUP_REVERSED (LOOKUP_REWRITTEN << 1)
5739 /* We're initializing an aggregate from a parenthesized list of values. */
5740 #define LOOKUP_AGGREGATE_PAREN_INIT (LOOKUP_REVERSED << 1)
5741
5742 /* These flags are used by the conversion code.
5743 CONV_IMPLICIT : Perform implicit conversions (standard and user-defined).
5744 CONV_STATIC : Perform the explicit conversions for static_cast.
5745 CONV_CONST : Perform the explicit conversions for const_cast.
5746 CONV_REINTERPRET: Perform the explicit conversions for reinterpret_cast.
5747 CONV_PRIVATE : Perform upcasts to private bases.
5748 CONV_FORCE_TEMP : Require a new temporary when converting to the same
5749 aggregate type. */
5750
5751 #define CONV_IMPLICIT 1
5752 #define CONV_STATIC 2
5753 #define CONV_CONST 4
5754 #define CONV_REINTERPRET 8
5755 #define CONV_PRIVATE 16
5756 #define CONV_FORCE_TEMP 32
5757 #define CONV_FOLD 64
5758 #define CONV_OLD_CONVERT (CONV_IMPLICIT | CONV_STATIC | CONV_CONST \
5759 | CONV_REINTERPRET)
5760 #define CONV_C_CAST (CONV_IMPLICIT | CONV_STATIC | CONV_CONST \
5761 | CONV_REINTERPRET | CONV_PRIVATE | CONV_FORCE_TEMP)
5762 #define CONV_BACKEND_CONVERT (CONV_OLD_CONVERT | CONV_FOLD)
5763
5764 /* Used by build_expr_type_conversion to indicate which types are
5765 acceptable as arguments to the expression under consideration. */
5766
5767 #define WANT_INT 1 /* integer types, including bool */
5768 #define WANT_FLOAT 2 /* floating point types */
5769 #define WANT_ENUM 4 /* enumerated types */
5770 #define WANT_POINTER 8 /* pointer types */
5771 #define WANT_NULL 16 /* null pointer constant */
5772 #define WANT_VECTOR_OR_COMPLEX 32 /* vector or complex types */
5773 #define WANT_ARITH (WANT_INT | WANT_FLOAT | WANT_VECTOR_OR_COMPLEX)
5774
5775 /* Used with comptypes, and related functions, to guide type
5776 comparison. */
5777
5778 #define COMPARE_STRICT 0 /* Just check if the types are the
5779 same. */
5780 #define COMPARE_BASE 1 /* Check to see if the second type is
5781 derived from the first. */
5782 #define COMPARE_DERIVED 2 /* Like COMPARE_BASE, but in
5783 reverse. */
5784 #define COMPARE_REDECLARATION 4 /* The comparison is being done when
5785 another declaration of an existing
5786 entity is seen. */
5787 #define COMPARE_STRUCTURAL 8 /* The comparison is intended to be
5788 structural. The actual comparison
5789 will be identical to
5790 COMPARE_STRICT. */
5791
5792 /* Used with start function. */
5793 #define SF_DEFAULT 0 /* No flags. */
5794 #define SF_PRE_PARSED 1 /* The function declaration has
5795 already been parsed. */
5796 #define SF_INCLASS_INLINE 2 /* The function is an inline, defined
5797 in the class body. */
5798
5799 /* Used with start_decl's initialized parameter. */
5800 #define SD_UNINITIALIZED 0
5801 #define SD_INITIALIZED 1
5802 /* Like SD_INITIALIZED, but also mark the new decl as DECL_DECOMPOSITION_P. */
5803 #define SD_DECOMPOSITION 2
5804 #define SD_DEFAULTED 3
5805 #define SD_DELETED 4
5806
5807 /* Returns nonzero iff TYPE1 and TYPE2 are the same type, or if TYPE2
5808 is derived from TYPE1, or if TYPE2 is a pointer (reference) to a
5809 class derived from the type pointed to (referred to) by TYPE1. */
5810 #define same_or_base_type_p(TYPE1, TYPE2) \
5811 comptypes ((TYPE1), (TYPE2), COMPARE_BASE)
5812
5813 /* These macros are used to access a TEMPLATE_PARM_INDEX. */
5814 #define TEMPLATE_PARM_INDEX_CAST(NODE) \
5815 ((template_parm_index*)TEMPLATE_PARM_INDEX_CHECK (NODE))
5816 #define TEMPLATE_PARM_IDX(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->index)
5817 #define TEMPLATE_PARM_LEVEL(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->level)
5818 #define TEMPLATE_PARM_DESCENDANTS(NODE) (TREE_CHAIN (NODE))
5819 #define TEMPLATE_PARM_ORIG_LEVEL(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->orig_level)
5820 #define TEMPLATE_PARM_DECL(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->decl)
5821 #define TEMPLATE_PARM_PARAMETER_PACK(NODE) \
5822 (TREE_LANG_FLAG_0 (TEMPLATE_PARM_INDEX_CHECK (NODE)))
5823
5824 /* These macros are for accessing the fields of TEMPLATE_TYPE_PARM,
5825 TEMPLATE_TEMPLATE_PARM and BOUND_TEMPLATE_TEMPLATE_PARM nodes. */
5826 #define TEMPLATE_TYPE_PARM_INDEX(NODE) \
5827 (TYPE_VALUES_RAW (TREE_CHECK3 ((NODE), TEMPLATE_TYPE_PARM, \
5828 TEMPLATE_TEMPLATE_PARM, \
5829 BOUND_TEMPLATE_TEMPLATE_PARM)))
5830 #define TEMPLATE_TYPE_IDX(NODE) \
5831 (TEMPLATE_PARM_IDX (TEMPLATE_TYPE_PARM_INDEX (NODE)))
5832 #define TEMPLATE_TYPE_LEVEL(NODE) \
5833 (TEMPLATE_PARM_LEVEL (TEMPLATE_TYPE_PARM_INDEX (NODE)))
5834 #define TEMPLATE_TYPE_ORIG_LEVEL(NODE) \
5835 (TEMPLATE_PARM_ORIG_LEVEL (TEMPLATE_TYPE_PARM_INDEX (NODE)))
5836 #define TEMPLATE_TYPE_DECL(NODE) \
5837 (TEMPLATE_PARM_DECL (TEMPLATE_TYPE_PARM_INDEX (NODE)))
5838 #define TEMPLATE_TYPE_PARAMETER_PACK(NODE) \
5839 (TEMPLATE_PARM_PARAMETER_PACK (TEMPLATE_TYPE_PARM_INDEX (NODE)))
5840
5841 /* For a C++17 class deduction placeholder, the template it represents. */
5842 #define CLASS_PLACEHOLDER_TEMPLATE(NODE) \
5843 (DECL_INITIAL (TYPE_NAME (TEMPLATE_TYPE_PARM_CHECK (NODE))))
5844
5845 /* Contexts in which auto deduction occurs. These flags are
5846 used to control diagnostics in do_auto_deduction. */
5847
5848 enum auto_deduction_context
5849 {
5850 adc_unspecified, /* Not given */
5851 adc_variable_type, /* Variable initializer deduction */
5852 adc_return_type, /* Return type deduction */
5853 adc_unify, /* Template argument deduction */
5854 adc_requirement, /* Argument deduction constraint */
5855 adc_decomp_type /* Decomposition declaration initializer deduction */
5856 };
5857
5858 /* True if this type-parameter belongs to a class template, used by C++17
5859 class template argument deduction. */
5860 #define TEMPLATE_TYPE_PARM_FOR_CLASS(NODE) \
5861 (TREE_LANG_FLAG_0 (TEMPLATE_TYPE_PARM_CHECK (NODE)))
5862
5863 /* True iff this TEMPLATE_TYPE_PARM represents decltype(auto). */
5864 #define AUTO_IS_DECLTYPE(NODE) \
5865 (TYPE_LANG_FLAG_5 (TEMPLATE_TYPE_PARM_CHECK (NODE)))
5866
5867 /* These constants can used as bit flags in the process of tree formatting.
5868
5869 TFF_PLAIN_IDENTIFIER: unqualified part of a name.
5870 TFF_SCOPE: include the class and namespace scope of the name.
5871 TFF_CHASE_TYPEDEF: print the original type-id instead of the typedef-name.
5872 TFF_DECL_SPECIFIERS: print decl-specifiers.
5873 TFF_CLASS_KEY_OR_ENUM: precede a class-type name (resp. enum name) with
5874 a class-key (resp. `enum').
5875 TFF_RETURN_TYPE: include function return type.
5876 TFF_FUNCTION_DEFAULT_ARGUMENTS: include function default parameter values.
5877 TFF_EXCEPTION_SPECIFICATION: show function exception specification.
5878 TFF_TEMPLATE_HEADER: show the template<...> header in a
5879 template-declaration.
5880 TFF_TEMPLATE_NAME: show only template-name.
5881 TFF_EXPR_IN_PARENS: parenthesize expressions.
5882 TFF_NO_FUNCTION_ARGUMENTS: don't show function arguments.
5883 TFF_UNQUALIFIED_NAME: do not print the qualifying scope of the
5884 top-level entity.
5885 TFF_NO_OMIT_DEFAULT_TEMPLATE_ARGUMENTS: do not omit template arguments
5886 identical to their defaults.
5887 TFF_NO_TEMPLATE_BINDINGS: do not print information about the template
5888 arguments for a function template specialization.
5889 TFF_POINTER: we are printing a pointer type. */
5890
5891 #define TFF_PLAIN_IDENTIFIER (0)
5892 #define TFF_SCOPE (1)
5893 #define TFF_CHASE_TYPEDEF (1 << 1)
5894 #define TFF_DECL_SPECIFIERS (1 << 2)
5895 #define TFF_CLASS_KEY_OR_ENUM (1 << 3)
5896 #define TFF_RETURN_TYPE (1 << 4)
5897 #define TFF_FUNCTION_DEFAULT_ARGUMENTS (1 << 5)
5898 #define TFF_EXCEPTION_SPECIFICATION (1 << 6)
5899 #define TFF_TEMPLATE_HEADER (1 << 7)
5900 #define TFF_TEMPLATE_NAME (1 << 8)
5901 #define TFF_EXPR_IN_PARENS (1 << 9)
5902 #define TFF_NO_FUNCTION_ARGUMENTS (1 << 10)
5903 #define TFF_UNQUALIFIED_NAME (1 << 11)
5904 #define TFF_NO_OMIT_DEFAULT_TEMPLATE_ARGUMENTS (1 << 12)
5905 #define TFF_NO_TEMPLATE_BINDINGS (1 << 13)
5906 #define TFF_POINTER (1 << 14)
5907
5908 /* These constants can be used as bit flags to control strip_typedefs.
5909
5910 STF_USER_VISIBLE: use heuristics to try to avoid stripping user-facing
5911 aliases of internal details. This is intended for diagnostics,
5912 where it should (for example) give more useful "aka" types.
5913
5914 STF_STRIP_DEPENDENT: allow the stripping of aliases with dependent
5915 template parameters, relying on code elsewhere to report any
5916 appropriate diagnostics. */
5917 const unsigned int STF_USER_VISIBLE = 1U;
5918 const unsigned int STF_STRIP_DEPENDENT = 1U << 1;
5919
5920 /* Returns the TEMPLATE_DECL associated to a TEMPLATE_TEMPLATE_PARM
5921 node. */
5922 #define TEMPLATE_TEMPLATE_PARM_TEMPLATE_DECL(NODE) \
5923 ((TREE_CODE (NODE) == BOUND_TEMPLATE_TEMPLATE_PARM) \
5924 ? TYPE_TI_TEMPLATE (NODE) \
5925 : TYPE_NAME (NODE))
5926
5927 /* in lex.c */
5928
5929 extern void init_reswords (void);
5930
5931 /* Various flags for the overloaded operator information. */
5932 enum ovl_op_flags {
5933 OVL_OP_FLAG_NONE = 0, /* Don't care. */
5934 OVL_OP_FLAG_UNARY = 1, /* Is unary. */
5935 OVL_OP_FLAG_BINARY = 2, /* Is binary. */
5936 OVL_OP_FLAG_AMBIARY = 3, /* May be unary or binary. */
5937 OVL_OP_FLAG_ALLOC = 4, /* operator new or delete. */
5938 OVL_OP_FLAG_DELETE = 1, /* operator delete. */
5939 OVL_OP_FLAG_VEC = 2 /* vector new or delete. */
5940 };
5941
5942 /* Compressed operator codes. Order is determined by operators.def
5943 and does not match that of tree_codes. */
5944 enum ovl_op_code {
5945 OVL_OP_ERROR_MARK,
5946 OVL_OP_NOP_EXPR,
5947 #define DEF_OPERATOR(NAME, CODE, MANGLING, FLAGS) OVL_OP_##CODE,
5948 #define DEF_ASSN_OPERATOR(NAME, CODE, MANGLING) /* NOTHING */
5949 #include "operators.def"
5950 OVL_OP_MAX
5951 };
5952
5953 /* Make sure it fits in lang_decl_fn::ovl_op_code. */
5954 STATIC_ASSERT (OVL_OP_MAX < (1 << 6));
5955
5956 struct GTY(()) ovl_op_info_t {
5957 /* The IDENTIFIER_NODE for the operator. */
5958 tree identifier;
5959 /* The name of the operator. */
5960 const char *name;
5961 /* The mangled name of the operator. */
5962 const char *mangled_name;
5963 /* The (regular) tree code. */
5964 enum tree_code tree_code : 16;
5965 /* The (compressed) operator code. */
5966 enum ovl_op_code ovl_op_code : 8;
5967 /* The ovl_op_flags of the operator */
5968 unsigned flags : 8;
5969 };
5970
5971 /* Overloaded operator info indexed by ass_op_p & ovl_op_code. */
5972 extern GTY(()) ovl_op_info_t ovl_op_info[2][OVL_OP_MAX];
5973 /* Mapping from tree_codes to ovl_op_codes. */
5974 extern GTY(()) unsigned char ovl_op_mapping[MAX_TREE_CODES];
5975 /* Mapping for ambi-ary operators from the binary to the unary. */
5976 extern GTY(()) unsigned char ovl_op_alternate[OVL_OP_MAX];
5977
5978 /* Given an ass_op_p boolean and a tree code, return a pointer to its
5979 overloaded operator info. Tree codes for non-overloaded operators
5980 map to the error-operator. */
5981 #define OVL_OP_INFO(IS_ASS_P, TREE_CODE) \
5982 (&ovl_op_info[(IS_ASS_P) != 0][ovl_op_mapping[(TREE_CODE)]])
5983 /* Overloaded operator info for an identifier for which
5984 IDENTIFIER_OVL_OP_P is true. */
5985 #define IDENTIFIER_OVL_OP_INFO(NODE) \
5986 (&ovl_op_info[IDENTIFIER_KIND_BIT_0 (NODE)][IDENTIFIER_CP_INDEX (NODE)])
5987 #define IDENTIFIER_OVL_OP_FLAGS(NODE) \
5988 (IDENTIFIER_OVL_OP_INFO (NODE)->flags)
5989
5990 inline tree ovl_op_identifier (bool isass, tree_code code)
5991 { return OVL_OP_INFO(isass, code)->identifier; }
5992 inline tree ovl_op_identifier (tree_code code) { return ovl_op_identifier (false, code); }
5993 #define assign_op_identifier (ovl_op_info[true][OVL_OP_NOP_EXPR].identifier)
5994 #define call_op_identifier (ovl_op_info[false][OVL_OP_CALL_EXPR].identifier)
5995
5996 /* A type-qualifier, or bitmask therefore, using the TYPE_QUAL
5997 constants. */
5998
5999 typedef int cp_cv_quals;
6000
6001 /* Non-static member functions have an optional virt-specifier-seq.
6002 There is a VIRT_SPEC value for each virt-specifier.
6003 They can be combined by bitwise-or to form the complete set of
6004 virt-specifiers for a member function. */
6005 enum virt_specifier
6006 {
6007 VIRT_SPEC_UNSPECIFIED = 0x0,
6008 VIRT_SPEC_FINAL = 0x1,
6009 VIRT_SPEC_OVERRIDE = 0x2
6010 };
6011
6012 /* A type-qualifier, or bitmask therefore, using the VIRT_SPEC
6013 constants. */
6014
6015 typedef int cp_virt_specifiers;
6016
6017 /* Wherever there is a function-cv-qual, there could also be a ref-qualifier:
6018
6019 [dcl.fct]
6020 The return type, the parameter-type-list, the ref-qualifier, and
6021 the cv-qualifier-seq, but not the default arguments or the exception
6022 specification, are part of the function type.
6023
6024 REF_QUAL_NONE Ordinary member function with no ref-qualifier
6025 REF_QUAL_LVALUE Member function with the &-ref-qualifier
6026 REF_QUAL_RVALUE Member function with the &&-ref-qualifier */
6027
6028 enum cp_ref_qualifier {
6029 REF_QUAL_NONE = 0,
6030 REF_QUAL_LVALUE = 1,
6031 REF_QUAL_RVALUE = 2
6032 };
6033
6034 /* A storage class. */
6035
6036 enum cp_storage_class {
6037 /* sc_none must be zero so that zeroing a cp_decl_specifier_seq
6038 sets the storage_class field to sc_none. */
6039 sc_none = 0,
6040 sc_auto,
6041 sc_register,
6042 sc_static,
6043 sc_extern,
6044 sc_mutable
6045 };
6046
6047 /* An individual decl-specifier. This is used to index the array of
6048 locations for the declspecs in struct cp_decl_specifier_seq
6049 below. */
6050
6051 enum cp_decl_spec {
6052 ds_first,
6053 ds_signed = ds_first,
6054 ds_unsigned,
6055 ds_short,
6056 ds_long,
6057 ds_const,
6058 ds_volatile,
6059 ds_restrict,
6060 ds_inline,
6061 ds_virtual,
6062 ds_explicit,
6063 ds_friend,
6064 ds_typedef,
6065 ds_alias,
6066 ds_constexpr,
6067 ds_complex,
6068 ds_constinit,
6069 ds_consteval,
6070 ds_thread,
6071 ds_type_spec,
6072 ds_redefined_builtin_type_spec,
6073 ds_attribute,
6074 ds_std_attribute,
6075 ds_storage_class,
6076 ds_long_long,
6077 ds_concept,
6078 ds_last /* This enumerator must always be the last one. */
6079 };
6080
6081 /* A decl-specifier-seq. */
6082
6083 struct cp_decl_specifier_seq {
6084 /* An array of locations for the declaration sepecifiers, indexed by
6085 enum cp_decl_spec_word. */
6086 location_t locations[ds_last];
6087 /* The primary type, if any, given by the decl-specifier-seq.
6088 Modifiers, like "short", "const", and "unsigned" are not
6089 reflected here. This field will be a TYPE, unless a typedef-name
6090 was used, in which case it will be a TYPE_DECL. */
6091 tree type;
6092 /* The attributes, if any, provided with the specifier sequence. */
6093 tree attributes;
6094 /* The c++11 attributes that follows the type specifier. */
6095 tree std_attributes;
6096 /* If non-NULL, a built-in type that the user attempted to redefine
6097 to some other type. */
6098 tree redefined_builtin_type;
6099 /* The explicit-specifier, if any. */
6100 tree explicit_specifier;
6101 /* The storage class specified -- or sc_none if no storage class was
6102 explicitly specified. */
6103 cp_storage_class storage_class;
6104 /* For the __intN declspec, this stores the index into the int_n_* arrays. */
6105 int int_n_idx;
6106 /* True iff TYPE_SPEC defines a class or enum. */
6107 BOOL_BITFIELD type_definition_p : 1;
6108 /* True iff multiple types were (erroneously) specified for this
6109 decl-specifier-seq. */
6110 BOOL_BITFIELD multiple_types_p : 1;
6111 /* True iff multiple storage classes were (erroneously) specified
6112 for this decl-specifier-seq or a combination of a storage class
6113 with a typedef specifier. */
6114 BOOL_BITFIELD conflicting_specifiers_p : 1;
6115 /* True iff at least one decl-specifier was found. */
6116 BOOL_BITFIELD any_specifiers_p : 1;
6117 /* True iff at least one type-specifier was found. */
6118 BOOL_BITFIELD any_type_specifiers_p : 1;
6119 /* True iff "int" was explicitly provided. */
6120 BOOL_BITFIELD explicit_int_p : 1;
6121 /* True iff "__intN" was explicitly provided. */
6122 BOOL_BITFIELD explicit_intN_p : 1;
6123 /* True iff "char" was explicitly provided. */
6124 BOOL_BITFIELD explicit_char_p : 1;
6125 /* True iff ds_thread is set for __thread, not thread_local. */
6126 BOOL_BITFIELD gnu_thread_keyword_p : 1;
6127 /* True iff the type is a decltype. */
6128 BOOL_BITFIELD decltype_p : 1;
6129 /* True iff the alternate "__intN__" form of the __intN type has been
6130 used. */
6131 BOOL_BITFIELD int_n_alt: 1;
6132 };
6133
6134 /* The various kinds of declarators. */
6135
6136 enum cp_declarator_kind {
6137 cdk_id,
6138 cdk_function,
6139 cdk_array,
6140 cdk_pointer,
6141 cdk_reference,
6142 cdk_ptrmem,
6143 cdk_decomp,
6144 cdk_error
6145 };
6146
6147 /* A declarator. */
6148
6149 typedef struct cp_declarator cp_declarator;
6150
6151 typedef struct cp_parameter_declarator cp_parameter_declarator;
6152
6153 /* A parameter, before it has been semantically analyzed. */
6154 struct cp_parameter_declarator {
6155 /* The next parameter, or NULL_TREE if none. */
6156 cp_parameter_declarator *next;
6157 /* The decl-specifiers-seq for the parameter. */
6158 cp_decl_specifier_seq decl_specifiers;
6159 /* The declarator for the parameter. */
6160 cp_declarator *declarator;
6161 /* The default-argument expression, or NULL_TREE, if none. */
6162 tree default_argument;
6163 /* True iff this is a template parameter pack. */
6164 bool template_parameter_pack_p;
6165 /* Location within source. */
6166 location_t loc;
6167 };
6168
6169 /* A declarator. */
6170 struct cp_declarator {
6171 /* The kind of declarator. */
6172 ENUM_BITFIELD (cp_declarator_kind) kind : 4;
6173 /* Whether we parsed an ellipsis (`...') just before the declarator,
6174 to indicate this is a parameter pack. */
6175 BOOL_BITFIELD parameter_pack_p : 1;
6176 /* If this declarator is parenthesized, this the open-paren. It is
6177 UNKNOWN_LOCATION when not parenthesized. */
6178 location_t parenthesized;
6179
6180 location_t id_loc; /* Currently only set for cdk_id, cdk_decomp and
6181 cdk_function. */
6182 /* GNU Attributes that apply to this declarator. If the declarator
6183 is a pointer or a reference, these attribute apply to the type
6184 pointed to. */
6185 tree attributes;
6186 /* Standard C++11 attributes that apply to this declarator. If the
6187 declarator is a pointer or a reference, these attributes apply
6188 to the pointer, rather than to the type pointed to. */
6189 tree std_attributes;
6190 /* For all but cdk_id, cdk_decomp and cdk_error, the contained declarator.
6191 For cdk_id, cdk_decomp and cdk_error, guaranteed to be NULL. */
6192 cp_declarator *declarator;
6193 union {
6194 /* For identifiers. */
6195 struct {
6196 /* If non-NULL, the qualifying scope (a NAMESPACE_DECL or
6197 *_TYPE) for this identifier. */
6198 tree qualifying_scope;
6199 /* The unqualified name of the entity -- an IDENTIFIER_NODE,
6200 BIT_NOT_EXPR, or TEMPLATE_ID_EXPR. */
6201 tree unqualified_name;
6202 /* If this is the name of a function, what kind of special
6203 function (if any). */
6204 special_function_kind sfk;
6205 } id;
6206 /* For functions. */
6207 struct {
6208 /* The parameters to the function as a TREE_LIST of decl/default. */
6209 tree parameters;
6210 /* The cv-qualifiers for the function. */
6211 cp_cv_quals qualifiers;
6212 /* The virt-specifiers for the function. */
6213 cp_virt_specifiers virt_specifiers;
6214 /* The ref-qualifier for the function. */
6215 cp_ref_qualifier ref_qualifier;
6216 /* The transaction-safety qualifier for the function. */
6217 tree tx_qualifier;
6218 /* The exception-specification for the function. */
6219 tree exception_specification;
6220 /* The late-specified return type, if any. */
6221 tree late_return_type;
6222 /* The trailing requires-clause, if any. */
6223 tree requires_clause;
6224 location_t parens_loc;
6225 } function;
6226 /* For arrays. */
6227 struct {
6228 /* The bounds to the array. */
6229 tree bounds;
6230 } array;
6231 /* For cdk_pointer and cdk_ptrmem. */
6232 struct {
6233 /* The cv-qualifiers for the pointer. */
6234 cp_cv_quals qualifiers;
6235 /* For cdk_ptrmem, the class type containing the member. */
6236 tree class_type;
6237 } pointer;
6238 /* For cdk_reference */
6239 struct {
6240 /* The cv-qualifiers for the reference. These qualifiers are
6241 only used to diagnose ill-formed code. */
6242 cp_cv_quals qualifiers;
6243 /* Whether this is an rvalue reference */
6244 bool rvalue_ref;
6245 } reference;
6246 } u;
6247 };
6248
6249 /* A level of template instantiation. */
6250 struct GTY((chain_next ("%h.next"))) tinst_level {
6251 /* The immediately deeper level in the chain. */
6252 struct tinst_level *next;
6253
6254 /* The original node. TLDCL can be a DECL (for a function or static
6255 data member), a TYPE (for a class), depending on what we were
6256 asked to instantiate, or a TREE_LIST with the template as PURPOSE
6257 and the template args as VALUE, if we are substituting for
6258 overload resolution. In all these cases, TARGS is NULL.
6259 However, to avoid creating TREE_LIST objects for substitutions if
6260 we can help, we store PURPOSE and VALUE in TLDCL and TARGS,
6261 respectively. So TLDCL stands for TREE_LIST or DECL (the
6262 template is a DECL too), whereas TARGS stands for the template
6263 arguments. */
6264 tree tldcl, targs;
6265
6266 /* For modules we need to know (a) the modules on the path of
6267 instantiation and (b) the transitive imports along that path.
6268 Note that these two bitmaps may be inherited from NEXT, if this
6269 decl is in the same module as NEXT (or has no new information). */
6270 bitmap path;
6271 bitmap visible;
6272
6273 private:
6274 /* Return TRUE iff the original node is a split list. */
6275 bool split_list_p () const { return targs; }
6276
6277 /* Return TRUE iff the original node is a TREE_LIST object. */
6278 bool tree_list_p () const
6279 {
6280 return !split_list_p () && TREE_CODE (tldcl) == TREE_LIST;
6281 }
6282
6283 /* Return TRUE iff the original node is not a list, split or not. */
6284 bool not_list_p () const
6285 {
6286 return !split_list_p () && !tree_list_p ();
6287 }
6288
6289 /* Convert (in place) the original node from a split list to a
6290 TREE_LIST. */
6291 tree to_list ();
6292
6293 public:
6294 /* Release storage for OBJ and node, if it's a TREE_LIST. */
6295 static void free (tinst_level *obj);
6296
6297 /* Return TRUE iff the original node is a list, split or not. */
6298 bool list_p () const { return !not_list_p (); }
6299
6300 /* Return the original node; if it's a split list, make it a
6301 TREE_LIST first, so that it can be returned as a single tree
6302 object. */
6303 tree get_node () {
6304 if (!split_list_p ()) return tldcl;
6305 else return to_list ();
6306 }
6307
6308 /* Return the original node if it's a DECL or a TREE_LIST, but do
6309 NOT convert a split list to a TREE_LIST: return NULL instead. */
6310 tree maybe_get_node () const {
6311 if (!split_list_p ()) return tldcl;
6312 else return NULL_TREE;
6313 }
6314
6315 /* The location where the template is instantiated. */
6316 location_t locus;
6317
6318 /* errorcount + sorrycount when we pushed this level. */
6319 unsigned short errors;
6320
6321 /* Count references to this object. If refcount reaches
6322 refcount_infinity value, we don't increment or decrement the
6323 refcount anymore, as the refcount isn't accurate anymore.
6324 The object can be still garbage collected if unreferenced from
6325 anywhere, which might keep referenced objects referenced longer than
6326 otherwise necessary. Hitting the infinity is rare though. */
6327 unsigned short refcount;
6328
6329 /* Infinity value for the above refcount. */
6330 static const unsigned short refcount_infinity = (unsigned short) ~0;
6331 };
6332
6333 /* BUILT_IN_FRONTEND function codes. */
6334 enum cp_built_in_function {
6335 CP_BUILT_IN_IS_CONSTANT_EVALUATED,
6336 CP_BUILT_IN_INTEGER_PACK,
6337 CP_BUILT_IN_SOURCE_LOCATION,
6338 CP_BUILT_IN_LAST
6339 };
6340
6341 bool decl_spec_seq_has_spec_p (const cp_decl_specifier_seq *, cp_decl_spec);
6342
6343 /* Return the type of the `this' parameter of FNTYPE. */
6344
6345 inline tree
6346 type_of_this_parm (const_tree fntype)
6347 {
6348 function_args_iterator iter;
6349 gcc_assert (TREE_CODE (fntype) == METHOD_TYPE);
6350 function_args_iter_init (&iter, fntype);
6351 return function_args_iter_cond (&iter);
6352 }
6353
6354 /* Return the class of the `this' parameter of FNTYPE. */
6355
6356 inline tree
6357 class_of_this_parm (const_tree fntype)
6358 {
6359 return TREE_TYPE (type_of_this_parm (fntype));
6360 }
6361
6362 /* A parameter list indicating for a function with no parameters,
6363 e.g "int f(void)". */
6364 extern cp_parameter_declarator *no_parameters;
6365
6366 /* Various dump ids. */
6367 extern int class_dump_id;
6368 extern int module_dump_id;
6369 extern int raw_dump_id;
6370
6371 /* in call.c */
6372 extern bool check_dtor_name (tree, tree);
6373 int magic_varargs_p (tree);
6374
6375 extern tree build_conditional_expr (const op_location_t &,
6376 tree, tree, tree,
6377 tsubst_flags_t);
6378 extern tree build_addr_func (tree, tsubst_flags_t);
6379 extern void set_flags_from_callee (tree);
6380 extern tree build_call_a (tree, int, tree*);
6381 extern tree build_call_n (tree, int, ...);
6382 extern bool null_ptr_cst_p (tree);
6383 extern bool null_member_pointer_value_p (tree);
6384 extern bool sufficient_parms_p (const_tree);
6385 extern tree type_decays_to (tree);
6386 extern tree extract_call_expr (tree);
6387 extern tree build_trivial_dtor_call (tree, bool = false);
6388 extern bool ref_conv_binds_directly_p (tree, tree);
6389 extern tree build_user_type_conversion (tree, tree, int,
6390 tsubst_flags_t);
6391 extern tree build_new_function_call (tree, vec<tree, va_gc> **,
6392 tsubst_flags_t);
6393 extern tree build_operator_new_call (tree, vec<tree, va_gc> **,
6394 tree *, tree *, tree, tree,
6395 tree *, tsubst_flags_t);
6396 extern tree build_new_method_call (tree, tree,
6397 vec<tree, va_gc> **, tree,
6398 int, tree *, tsubst_flags_t);
6399 extern tree build_special_member_call (tree, tree,
6400 vec<tree, va_gc> **,
6401 tree, int, tsubst_flags_t);
6402 extern tree build_new_op (const op_location_t &,
6403 enum tree_code,
6404 int, tree, tree, tree, tree *,
6405 tsubst_flags_t);
6406 /* Wrapper that leaves out the usually-null op3 and overload parms. */
6407 inline tree build_new_op (const op_location_t &loc, enum tree_code code,
6408 int flags, tree arg1, tree arg2,
6409 tsubst_flags_t complain)
6410 {
6411 return build_new_op (loc, code, flags, arg1, arg2, NULL_TREE, NULL, complain);
6412 }
6413 extern tree build_op_call (tree, vec<tree, va_gc> **,
6414 tsubst_flags_t);
6415 extern bool aligned_allocation_fn_p (tree);
6416 extern tree destroying_delete_p (tree);
6417 extern bool usual_deallocation_fn_p (tree);
6418 extern tree build_op_delete_call (enum tree_code, tree, tree,
6419 bool, tree, tree,
6420 tsubst_flags_t);
6421 extern bool can_convert (tree, tree, tsubst_flags_t);
6422 extern bool can_convert_standard (tree, tree, tsubst_flags_t);
6423 extern bool can_convert_arg (tree, tree, tree, int,
6424 tsubst_flags_t);
6425 extern bool can_convert_arg_bad (tree, tree, tree, int,
6426 tsubst_flags_t);
6427 extern int conv_flags (int, int, tree, tree, int);
6428 extern struct conversion * good_conversion (tree, tree, tree, int, tsubst_flags_t);
6429 extern location_t get_fndecl_argument_location (tree, int);
6430 extern void complain_about_bad_argument (location_t arg_loc,
6431 tree from_type, tree to_type,
6432 tree fndecl, int parmnum);
6433 extern void maybe_inform_about_fndecl_for_bogus_argument_init (tree, int);
6434
6435
6436 /* A class for recording information about access failures (e.g. private
6437 fields), so that we can potentially supply a fix-it hint about
6438 an accessor (from a context in which the constness of the object
6439 is known). */
6440
6441 class access_failure_info
6442 {
6443 public:
6444 access_failure_info () : m_was_inaccessible (false),
6445 m_basetype_path (NULL_TREE),
6446 m_decl (NULL_TREE), m_diag_decl (NULL_TREE) {}
6447
6448 void record_access_failure (tree basetype_path, tree decl, tree diag_decl);
6449
6450 bool was_inaccessible_p () const { return m_was_inaccessible; }
6451 tree get_decl () const { return m_decl; }
6452 tree get_diag_decl () const { return m_diag_decl; }
6453 tree get_any_accessor (bool const_p) const;
6454 void maybe_suggest_accessor (bool const_p) const;
6455 static void add_fixit_hint (rich_location *richloc, tree accessor);
6456
6457 private:
6458 bool m_was_inaccessible;
6459 tree m_basetype_path;
6460 tree m_decl;
6461 tree m_diag_decl;
6462 };
6463
6464 extern void complain_about_access (tree, tree, tree, bool,
6465 access_kind);
6466 extern void push_defarg_context (tree);
6467 extern void pop_defarg_context (void);
6468 extern tree convert_default_arg (tree, tree, tree, int,
6469 tsubst_flags_t);
6470 extern tree convert_arg_to_ellipsis (tree, tsubst_flags_t);
6471 extern tree build_x_va_arg (location_t, tree, tree);
6472 extern tree cxx_type_promotes_to (tree);
6473 extern tree type_passed_as (tree);
6474 extern tree convert_for_arg_passing (tree, tree, tsubst_flags_t);
6475 extern bool is_properly_derived_from (tree, tree);
6476 extern tree initialize_reference (tree, tree, int,
6477 tsubst_flags_t);
6478 extern tree extend_ref_init_temps (tree, tree,
6479 vec<tree, va_gc>**,
6480 tree * = NULL);
6481 extern tree make_temporary_var_for_ref_to_temp (tree, tree);
6482 extern bool type_has_extended_temps (tree);
6483 extern tree strip_top_quals (tree);
6484 extern bool reference_related_p (tree, tree);
6485 extern bool reference_compatible_p (tree, tree);
6486 extern int remaining_arguments (tree);
6487 extern tree perform_implicit_conversion (tree, tree, tsubst_flags_t);
6488 extern tree perform_implicit_conversion_flags (tree, tree, tsubst_flags_t, int);
6489 extern tree build_converted_constant_expr (tree, tree, tsubst_flags_t);
6490 extern tree build_converted_constant_bool_expr (tree, tsubst_flags_t);
6491 extern tree perform_direct_initialization_if_possible (tree, tree, bool,
6492 tsubst_flags_t);
6493 extern vec<tree,va_gc> *resolve_args (vec<tree,va_gc>*, tsubst_flags_t);
6494 extern tree in_charge_arg_for_name (tree);
6495 extern tree build_cxx_call (tree, int, tree *,
6496 tsubst_flags_t,
6497 tree = NULL_TREE);
6498 extern bool is_std_init_list (tree);
6499 extern bool is_list_ctor (tree);
6500 extern void validate_conversion_obstack (void);
6501 extern void mark_versions_used (tree);
6502 extern int unsafe_return_slot_p (tree);
6503 extern bool make_safe_copy_elision (tree, tree);
6504 extern bool cp_warn_deprecated_use (tree, tsubst_flags_t = tf_warning_or_error);
6505 extern void cp_warn_deprecated_use_scopes (tree);
6506 extern tree get_function_version_dispatcher (tree);
6507
6508 /* in class.c */
6509 extern tree build_vfield_ref (tree, tree);
6510 extern tree build_if_in_charge (tree true_stmt, tree false_stmt = void_node);
6511 extern tree build_base_path (enum tree_code, tree,
6512 tree, int, tsubst_flags_t);
6513 extern tree convert_to_base (tree, tree, bool, bool,
6514 tsubst_flags_t);
6515 extern tree convert_to_base_statically (tree, tree);
6516 extern bool is_empty_base_ref (tree);
6517 extern tree build_vtbl_ref (tree, tree);
6518 extern tree build_vfn_ref (tree, tree);
6519 extern tree get_vtable_decl (tree, int);
6520 extern bool add_method (tree, tree, bool);
6521 extern tree declared_access (tree);
6522 extern tree currently_open_class (tree);
6523 extern tree currently_open_derived_class (tree);
6524 extern tree outermost_open_class (void);
6525 extern tree current_nonlambda_class_type (void);
6526 extern tree finish_struct (tree, tree);
6527 extern void finish_struct_1 (tree);
6528 extern int resolves_to_fixed_type_p (tree, int * = NULL);
6529 extern void init_class_processing (void);
6530 extern int is_empty_class (tree);
6531 extern bool is_really_empty_class (tree, bool);
6532 extern void pushclass (tree);
6533 extern void popclass (void);
6534 extern void push_nested_class (tree);
6535 extern void pop_nested_class (void);
6536 extern int current_lang_depth (void);
6537 extern void push_lang_context (tree);
6538 extern void pop_lang_context (void);
6539 extern tree instantiate_type (tree, tree, tsubst_flags_t);
6540 extern void build_self_reference (void);
6541 extern int same_signature_p (const_tree, const_tree);
6542 extern tree lookup_vfn_in_binfo (tree, tree);
6543 extern void maybe_add_class_template_decl_list (tree, tree, int);
6544 extern void unreverse_member_declarations (tree);
6545 extern bool is_empty_field (tree);
6546 extern void invalidate_class_lookup_cache (void);
6547 extern void maybe_note_name_used_in_class (tree, tree);
6548 extern void note_name_declared_in_class (tree, tree);
6549 extern tree get_vtbl_decl_for_binfo (tree);
6550 extern bool vptr_via_virtual_p (tree);
6551 extern void debug_class (tree);
6552 extern void debug_thunks (tree);
6553 extern void set_linkage_according_to_type (tree, tree);
6554 extern void determine_key_method (tree);
6555 extern void check_for_override (tree, tree);
6556 extern void push_class_stack (void);
6557 extern void pop_class_stack (void);
6558 extern bool default_ctor_p (const_tree);
6559 extern bool type_has_user_nondefault_constructor (tree);
6560 extern tree in_class_defaulted_default_constructor (tree);
6561 extern bool user_provided_p (tree);
6562 extern bool type_has_user_provided_constructor (tree);
6563 extern bool type_has_non_user_provided_default_constructor (tree);
6564 extern bool vbase_has_user_provided_move_assign (tree);
6565 extern tree default_init_uninitialized_part (tree);
6566 extern bool trivial_default_constructor_is_constexpr (tree);
6567 extern bool type_has_constexpr_default_constructor (tree);
6568 extern bool type_has_constexpr_destructor (tree);
6569 extern bool type_has_virtual_destructor (tree);
6570 extern bool classtype_has_move_assign_or_move_ctor_p (tree, bool user_declared);
6571 extern bool classtype_has_non_deleted_move_ctor (tree);
6572 extern tree classtype_has_depr_implicit_copy (tree);
6573 extern bool classtype_has_op (tree, tree_code);
6574 extern tree classtype_has_defaulted_op (tree, tree_code);
6575 extern bool type_build_ctor_call (tree);
6576 extern bool type_build_dtor_call (tree);
6577 extern void explain_non_literal_class (tree);
6578 extern void inherit_targ_abi_tags (tree);
6579 extern void defaulted_late_check (tree);
6580 extern bool defaultable_fn_check (tree);
6581 extern void check_abi_tags (tree);
6582 extern tree missing_abi_tags (tree);
6583 extern void fixup_type_variants (tree);
6584 extern void fixup_attribute_variants (tree);
6585 extern void build_cdtor_clones (tree, bool, bool, bool);
6586 extern void clone_cdtor (tree, bool);
6587 extern tree copy_operator_fn (tree, tree_code code);
6588 extern void adjust_clone_args (tree);
6589 extern void deduce_noexcept_on_destructor (tree);
6590 extern bool uniquely_derived_from_p (tree, tree);
6591 extern bool publicly_uniquely_derived_p (tree, tree);
6592 extern tree common_enclosing_class (tree, tree);
6593
6594 /* in cvt.c */
6595 extern tree convert_to_reference (tree, tree, int, int, tree,
6596 tsubst_flags_t);
6597 extern tree convert_from_reference (tree);
6598 extern tree force_rvalue (tree, tsubst_flags_t);
6599 extern tree ocp_convert (tree, tree, int, int,
6600 tsubst_flags_t);
6601 extern tree cp_convert (tree, tree, tsubst_flags_t);
6602 extern tree cp_convert_and_check (tree, tree, tsubst_flags_t);
6603 extern tree cp_fold_convert (tree, tree);
6604 extern tree cp_get_callee (tree);
6605 extern tree cp_get_callee_fndecl (tree);
6606 extern tree cp_get_callee_fndecl_nofold (tree);
6607 extern tree cp_get_fndecl_from_callee (tree, bool fold = true);
6608 extern tree convert_to_void (tree, impl_conv_void,
6609 tsubst_flags_t);
6610 extern tree convert_force (tree, tree, int,
6611 tsubst_flags_t);
6612 extern tree build_expr_type_conversion (int, tree, bool);
6613 extern tree type_promotes_to (tree);
6614 extern bool can_convert_qual (tree, tree);
6615 extern tree perform_qualification_conversions (tree, tree);
6616 extern bool tx_safe_fn_type_p (tree);
6617 extern tree tx_unsafe_fn_variant (tree);
6618 extern bool fnptr_conv_p (tree, tree);
6619 extern tree strip_fnptr_conv (tree);
6620
6621 /* in name-lookup.c */
6622 extern void maybe_push_cleanup_level (tree);
6623 extern tree maybe_push_decl (tree);
6624 extern tree current_decl_namespace (void);
6625
6626 /* decl.c */
6627 extern tree poplevel (int, int, int);
6628 extern void cxx_init_decl_processing (void);
6629 enum cp_tree_node_structure_enum cp_tree_node_structure
6630 (union lang_tree_node *);
6631 extern void finish_scope (void);
6632 extern void push_switch (tree);
6633 extern void pop_switch (void);
6634 extern void note_break_stmt (void);
6635 extern bool note_iteration_stmt_body_start (void);
6636 extern void note_iteration_stmt_body_end (bool);
6637 extern void determine_local_discriminator (tree);
6638 extern int decls_match (tree, tree, bool = true);
6639 extern bool maybe_version_functions (tree, tree, bool);
6640 extern tree duplicate_decls (tree, tree,
6641 bool hiding = false,
6642 bool was_hidden = false);
6643 extern tree declare_local_label (tree);
6644 extern tree define_label (location_t, tree);
6645 extern void check_goto (tree);
6646 extern bool check_omp_return (void);
6647 extern tree make_typename_type (tree, tree, enum tag_types, tsubst_flags_t);
6648 extern tree build_typename_type (tree, tree, tree, tag_types);
6649 extern tree make_unbound_class_template (tree, tree, tree, tsubst_flags_t);
6650 extern tree make_unbound_class_template_raw (tree, tree, tree);
6651 extern unsigned push_abi_namespace (tree node = abi_node);
6652 extern void pop_abi_namespace (unsigned flags,
6653 tree node = abi_node);
6654 extern tree build_library_fn_ptr (const char *, tree, int);
6655 extern tree build_cp_library_fn_ptr (const char *, tree, int);
6656 extern tree push_library_fn (tree, tree, tree, int);
6657 extern tree push_throw_library_fn (tree, tree);
6658 extern void warn_misplaced_attr_for_class_type (location_t location,
6659 tree class_type);
6660 extern tree check_tag_decl (cp_decl_specifier_seq *, bool);
6661 extern tree shadow_tag (cp_decl_specifier_seq *);
6662 extern tree groktypename (cp_decl_specifier_seq *, const cp_declarator *, bool);
6663 extern tree start_decl (const cp_declarator *, cp_decl_specifier_seq *, int, tree, tree, tree *);
6664 extern void start_decl_1 (tree, bool);
6665 extern bool check_array_initializer (tree, tree, tree);
6666 extern void omp_declare_variant_finalize (tree, tree);
6667 extern void cp_finish_decl (tree, tree, bool, tree, int);
6668 extern tree lookup_decomp_type (tree);
6669 extern void cp_maybe_mangle_decomp (tree, tree, unsigned int);
6670 extern void cp_finish_decomp (tree, tree, unsigned int);
6671 extern int cp_complete_array_type (tree *, tree, bool);
6672 extern int cp_complete_array_type_or_error (tree *, tree, bool, tsubst_flags_t);
6673 extern tree build_ptrmemfunc_type (tree);
6674 extern tree build_ptrmem_type (tree, tree);
6675 /* the grokdeclarator prototype is in decl.h */
6676 extern tree build_this_parm (tree, tree, cp_cv_quals);
6677 extern tree grokparms (tree, tree *);
6678 extern int copy_fn_p (const_tree);
6679 extern bool move_fn_p (const_tree);
6680 extern bool move_signature_fn_p (const_tree);
6681 extern tree get_scope_of_declarator (const cp_declarator *);
6682 extern void grok_special_member_properties (tree);
6683 extern bool grok_ctor_properties (const_tree, const_tree);
6684 extern bool grok_op_properties (tree, bool);
6685 extern tree xref_tag (tag_types, tree,
6686 TAG_how = TAG_how::CURRENT_ONLY,
6687 bool tpl_header_p = false);
6688 extern void xref_basetypes (tree, tree);
6689 extern tree start_enum (tree, tree, tree, tree, bool, bool *);
6690 extern void finish_enum_value_list (tree);
6691 extern void finish_enum (tree);
6692 extern void build_enumerator (tree, tree, tree, tree, location_t);
6693 extern tree lookup_enumerator (tree, tree);
6694 extern bool start_preparsed_function (tree, tree, int);
6695 extern bool start_function (cp_decl_specifier_seq *,
6696 const cp_declarator *, tree);
6697 extern tree begin_function_body (void);
6698 extern void finish_function_body (tree);
6699 extern tree outer_curly_brace_block (tree);
6700 extern tree finish_function (bool);
6701 extern tree grokmethod (cp_decl_specifier_seq *, const cp_declarator *, tree);
6702 extern void maybe_register_incomplete_var (tree);
6703 extern void maybe_commonize_var (tree);
6704 extern void complete_vars (tree);
6705 extern tree static_fn_type (tree);
6706 extern void revert_static_member_fn (tree);
6707 extern void fixup_anonymous_aggr (tree);
6708 extern tree compute_array_index_type (tree, tree, tsubst_flags_t);
6709 extern tree check_default_argument (tree, tree, tsubst_flags_t);
6710 extern int wrapup_namespace_globals ();
6711 extern tree create_implicit_typedef (tree, tree);
6712 extern int local_variable_p (const_tree);
6713 extern tree register_dtor_fn (tree);
6714 extern tmpl_spec_kind current_tmpl_spec_kind (int);
6715 extern tree cxx_builtin_function (tree decl);
6716 extern tree cxx_builtin_function_ext_scope (tree decl);
6717 extern tree cxx_simulate_builtin_function_decl (tree);
6718 extern tree check_elaborated_type_specifier (enum tag_types, tree, bool);
6719 extern void warn_extern_redeclared_static (tree, tree);
6720 extern tree cxx_comdat_group (tree);
6721 extern bool cp_missing_noreturn_ok_p (tree);
6722 extern bool is_direct_enum_init (tree, tree);
6723 extern void initialize_artificial_var (tree, vec<constructor_elt, va_gc> *);
6724 extern tree check_var_type (tree, tree, location_t);
6725 extern tree reshape_init (tree, tree, tsubst_flags_t);
6726 extern tree next_initializable_field (tree);
6727 extern tree first_field (const_tree);
6728 extern tree fndecl_declared_return_type (tree);
6729 extern bool undeduced_auto_decl (tree);
6730 extern bool require_deduced_type (tree, tsubst_flags_t = tf_warning_or_error);
6731
6732 extern tree finish_case_label (location_t, tree, tree);
6733 extern tree cxx_maybe_build_cleanup (tree, tsubst_flags_t);
6734 extern bool check_array_designated_initializer (constructor_elt *,
6735 unsigned HOST_WIDE_INT);
6736 extern bool check_for_uninitialized_const_var (tree, bool, tsubst_flags_t);
6737 extern tree build_explicit_specifier (tree, tsubst_flags_t);
6738 extern void do_push_parm_decls (tree, tree, tree *);
6739 extern tree do_aggregate_paren_init (tree, tree);
6740
6741 /* in decl2.c */
6742 extern void record_mangling (tree, bool);
6743 extern void overwrite_mangling (tree, tree);
6744 extern void note_mangling_alias (tree, tree);
6745 extern void generate_mangling_aliases (void);
6746 extern tree build_memfn_type (tree, tree, cp_cv_quals, cp_ref_qualifier);
6747 extern tree build_pointer_ptrmemfn_type (tree);
6748 extern tree change_return_type (tree, tree);
6749 extern void maybe_retrofit_in_chrg (tree);
6750 extern void maybe_make_one_only (tree);
6751 extern bool vague_linkage_p (tree);
6752 extern void grokclassfn (tree, tree,
6753 enum overload_flags);
6754 extern tree grok_array_decl (location_t, tree, tree, bool);
6755 extern tree delete_sanity (location_t, tree, tree, bool,
6756 int, tsubst_flags_t);
6757 extern tree check_classfn (tree, tree, tree);
6758 extern void check_member_template (tree);
6759 extern tree grokfield (const cp_declarator *, cp_decl_specifier_seq *,
6760 tree, bool, tree, tree);
6761 extern tree grokbitfield (const cp_declarator *, cp_decl_specifier_seq *,
6762 tree, tree, tree);
6763 extern tree splice_template_attributes (tree *, tree);
6764 extern bool any_dependent_type_attributes_p (tree);
6765 extern tree cp_reconstruct_complex_type (tree, tree);
6766 extern bool attributes_naming_typedef_ok (tree);
6767 extern void cplus_decl_attributes (tree *, tree, int);
6768 extern void finish_anon_union (tree);
6769 extern void cxx_post_compilation_parsing_cleanups (void);
6770 extern tree coerce_new_type (tree, location_t);
6771 extern void coerce_delete_type (tree, location_t);
6772 extern void comdat_linkage (tree);
6773 extern void determine_visibility (tree);
6774 extern void constrain_class_visibility (tree);
6775 extern void reset_type_linkage (tree);
6776 extern void tentative_decl_linkage (tree);
6777 extern void import_export_decl (tree);
6778 extern tree build_cleanup (tree);
6779 extern tree build_offset_ref_call_from_tree (tree, vec<tree, va_gc> **,
6780 tsubst_flags_t);
6781 extern bool decl_defined_p (tree);
6782 extern bool decl_constant_var_p (tree);
6783 extern bool decl_maybe_constant_var_p (tree);
6784 extern void no_linkage_error (tree);
6785 extern void check_default_args (tree);
6786 extern bool mark_used (tree);
6787 extern bool mark_used (tree, tsubst_flags_t);
6788 extern void finish_static_data_member_decl (tree, tree, bool, tree, int);
6789 extern tree cp_build_parm_decl (tree, tree, tree);
6790 extern void copy_linkage (tree, tree);
6791 extern tree get_guard (tree);
6792 extern tree get_guard_cond (tree, bool);
6793 extern tree set_guard (tree);
6794 extern tree maybe_get_tls_wrapper_call (tree);
6795 extern void mark_needed (tree);
6796 extern bool decl_needed_p (tree);
6797 extern void note_vague_linkage_fn (tree);
6798 extern void note_variable_template_instantiation (tree);
6799 extern tree build_artificial_parm (tree, tree, tree);
6800 extern bool possibly_inlined_p (tree);
6801 extern int parm_index (tree);
6802 extern tree vtv_start_verification_constructor_init_function (void);
6803 extern tree vtv_finish_verification_constructor_init_function (tree);
6804 extern bool cp_omp_mappable_type (tree);
6805 extern bool cp_omp_emit_unmappable_type_notes (tree);
6806 extern void cp_check_const_attributes (tree);
6807
6808 /* in error.c */
6809 extern const char *type_as_string (tree, int);
6810 extern const char *type_as_string_translate (tree, int);
6811 extern const char *decl_as_string (tree, int);
6812 extern const char *decl_as_string_translate (tree, int);
6813 extern const char *decl_as_dwarf_string (tree, int);
6814 extern const char *expr_as_string (tree, int);
6815 extern const char *expr_to_string (tree);
6816 extern const char *lang_decl_name (tree, int, bool);
6817 extern const char *lang_decl_dwarf_name (tree, int, bool);
6818 extern const char *language_to_string (enum languages);
6819 extern const char *class_key_or_enum_as_string (tree);
6820 extern void maybe_warn_variadic_templates (void);
6821 extern void maybe_warn_cpp0x (cpp0x_warn_str str);
6822 extern bool pedwarn_cxx98 (location_t, int, const char *, ...) ATTRIBUTE_GCC_DIAG(3,4);
6823 extern location_t location_of (tree);
6824 extern void qualified_name_lookup_error (tree, tree, tree,
6825 location_t);
6826
6827 /* in except.c */
6828 extern void init_exception_processing (void);
6829 extern tree expand_start_catch_block (tree);
6830 extern void expand_end_catch_block (void);
6831 extern tree build_exc_ptr (void);
6832 extern tree build_throw (location_t, tree);
6833 extern int nothrow_libfn_p (const_tree);
6834 extern void check_handlers (tree);
6835 extern tree finish_noexcept_expr (tree, tsubst_flags_t);
6836 extern bool expr_noexcept_p (tree, tsubst_flags_t);
6837 extern void perform_deferred_noexcept_checks (void);
6838 extern bool nothrow_spec_p (const_tree);
6839 extern bool type_noexcept_p (const_tree);
6840 extern bool type_throw_all_p (const_tree);
6841 extern tree build_noexcept_spec (tree, tsubst_flags_t);
6842 extern void choose_personality_routine (enum languages);
6843 extern tree build_must_not_throw_expr (tree,tree);
6844 extern tree eh_type_info (tree);
6845 extern tree begin_eh_spec_block (void);
6846 extern void finish_eh_spec_block (tree, tree);
6847 extern tree build_eh_type_type (tree);
6848 extern tree cp_protect_cleanup_actions (void);
6849 extern void maybe_splice_retval_cleanup (tree);
6850 extern tree maybe_set_retval_sentinel (void);
6851
6852 extern tree template_parms_to_args (tree);
6853 extern tree template_parms_level_to_args (tree);
6854 extern tree generic_targs_for (tree);
6855
6856 /* in expr.c */
6857 extern tree cplus_expand_constant (tree);
6858 extern tree mark_use (tree expr, bool rvalue_p, bool read_p,
6859 location_t = UNKNOWN_LOCATION,
6860 bool reject_builtin = true);
6861 extern tree mark_rvalue_use (tree,
6862 location_t = UNKNOWN_LOCATION,
6863 bool reject_builtin = true);
6864 extern tree mark_lvalue_use (tree);
6865 extern tree mark_lvalue_use_nonread (tree);
6866 extern tree mark_type_use (tree);
6867 extern tree mark_discarded_use (tree);
6868 extern void mark_exp_read (tree);
6869
6870 /* friend.c */
6871 extern int is_friend (tree, tree);
6872 extern void make_friend_class (tree, tree, bool);
6873 extern void add_friend (tree, tree, bool);
6874 extern tree do_friend (tree, tree, tree,
6875 enum overload_flags, bool);
6876
6877 extern void set_global_friend (tree);
6878 extern bool is_global_friend (tree);
6879
6880 /* in init.c */
6881 extern tree expand_member_init (tree);
6882 extern void emit_mem_initializers (tree);
6883 extern tree build_aggr_init (tree, tree, int,
6884 tsubst_flags_t);
6885 extern int is_class_type (tree, int);
6886 extern tree build_zero_init (tree, tree, bool);
6887 extern tree build_value_init (tree, tsubst_flags_t);
6888 extern tree build_value_init_noctor (tree, tsubst_flags_t);
6889 extern tree get_nsdmi (tree, bool, tsubst_flags_t);
6890 extern tree build_offset_ref (tree, tree, bool,
6891 tsubst_flags_t);
6892 extern tree throw_bad_array_new_length (void);
6893 extern bool type_has_new_extended_alignment (tree);
6894 extern unsigned malloc_alignment (void);
6895 extern tree build_new_constexpr_heap_type (tree, tree, tree);
6896 extern tree build_new (location_t,
6897 vec<tree, va_gc> **, tree,
6898 tree, vec<tree, va_gc> **,
6899 int, tsubst_flags_t);
6900 extern tree get_temp_regvar (tree, tree);
6901 extern tree build_vec_init (tree, tree, tree, bool, int,
6902 tsubst_flags_t);
6903 extern tree build_delete (location_t, tree, tree,
6904 special_function_kind,
6905 int, int, tsubst_flags_t);
6906 extern void push_base_cleanups (void);
6907 extern tree build_vec_delete (location_t, tree, tree,
6908 special_function_kind, int,
6909 tsubst_flags_t);
6910 extern tree create_temporary_var (tree);
6911 extern void initialize_vtbl_ptrs (tree);
6912 extern tree scalar_constant_value (tree);
6913 extern tree decl_constant_value (tree, bool);
6914 extern tree decl_really_constant_value (tree, bool = true);
6915 extern int diagnose_uninitialized_cst_or_ref_member (tree, bool, bool);
6916 extern tree build_vtbl_address (tree);
6917 extern bool maybe_reject_flexarray_init (tree, tree);
6918
6919 /* in lex.c */
6920 extern void cxx_dup_lang_specific_decl (tree);
6921 extern tree unqualified_name_lookup_error (tree,
6922 location_t = UNKNOWN_LOCATION);
6923 extern tree unqualified_fn_lookup_error (cp_expr);
6924 extern tree make_conv_op_name (tree);
6925 extern tree build_lang_decl (enum tree_code, tree, tree);
6926 extern tree build_lang_decl_loc (location_t, enum tree_code, tree, tree);
6927 extern bool maybe_add_lang_decl_raw (tree, bool decomp_p);
6928 extern bool maybe_add_lang_type_raw (tree);
6929 extern void retrofit_lang_decl (tree);
6930 extern void fit_decomposition_lang_decl (tree, tree);
6931 extern tree copy_decl (tree CXX_MEM_STAT_INFO);
6932 extern tree copy_type (tree CXX_MEM_STAT_INFO);
6933 extern tree cxx_make_type (enum tree_code CXX_MEM_STAT_INFO);
6934 extern tree make_class_type (enum tree_code CXX_MEM_STAT_INFO);
6935 extern const char *get_identifier_kind_name (tree);
6936 extern void set_identifier_kind (tree, cp_identifier_kind);
6937 extern bool cxx_init (void);
6938 extern void cxx_finish (void);
6939 extern bool in_main_input_context (void);
6940 extern uintptr_t module_token_pre (cpp_reader *, const cpp_token *, uintptr_t);
6941 extern uintptr_t module_token_cdtor (cpp_reader *, uintptr_t);
6942 extern uintptr_t module_token_lang (int type, int keyword, tree value,
6943 location_t, uintptr_t);
6944
6945 /* in method.c */
6946 extern void init_method (void);
6947 extern tree make_thunk (tree, bool, tree, tree);
6948 extern void finish_thunk (tree);
6949 extern void use_thunk (tree, bool);
6950 extern bool trivial_fn_p (tree);
6951 extern tree forward_parm (tree);
6952 extern bool is_trivially_xible (enum tree_code, tree, tree);
6953 extern bool is_nothrow_xible (enum tree_code, tree, tree);
6954 extern bool is_xible (enum tree_code, tree, tree);
6955 extern tree get_defaulted_eh_spec (tree, tsubst_flags_t = tf_warning_or_error);
6956 extern bool maybe_explain_implicit_delete (tree);
6957 extern void explain_implicit_non_constexpr (tree);
6958 extern bool deduce_inheriting_ctor (tree);
6959 extern bool decl_remember_implicit_trigger_p (tree);
6960 extern void synthesize_method (tree);
6961 extern tree lazily_declare_fn (special_function_kind,
6962 tree);
6963 extern tree skip_artificial_parms_for (const_tree, tree);
6964 extern int num_artificial_parms_for (const_tree);
6965 extern tree make_alias_for (tree, tree);
6966 extern tree get_copy_ctor (tree, tsubst_flags_t);
6967 extern tree get_copy_assign (tree);
6968 extern tree get_default_ctor (tree);
6969 extern tree get_dtor (tree, tsubst_flags_t);
6970 extern tree build_stub_object (tree);
6971 extern tree strip_inheriting_ctors (tree);
6972 extern tree inherited_ctor_binfo (tree);
6973 extern bool base_ctor_omit_inherited_parms (tree);
6974 extern bool ctor_omit_inherited_parms (tree);
6975 extern tree locate_ctor (tree);
6976 extern tree implicitly_declare_fn (special_function_kind, tree,
6977 bool, tree, tree);
6978 /* In module.cc */
6979 class module_state; /* Forward declare. */
6980 inline bool modules_p () { return flag_modules != 0; }
6981
6982 /* The kind of module or part thereof that we're in. */
6983 enum module_kind_bits
6984 {
6985 MK_MODULE = 1 << 0, /* This TU is a module. */
6986 MK_GLOBAL = 1 << 1, /* Entities are in the global module. */
6987 MK_INTERFACE = 1 << 2, /* This TU is an interface. */
6988 MK_PARTITION = 1 << 3, /* This TU is a partition. */
6989 MK_EXPORTING = 1 << 4, /* We are in an export region. */
6990 };
6991
6992 /* We do lots of bit-manipulation, so an unsigned is easier. */
6993 extern unsigned module_kind;
6994
6995 /* MK_MODULE & MK_GLOBAL have the following combined meanings:
6996 MODULE GLOBAL
6997 0 0 not a module
6998 0 1 GMF of named module (we've not yet seen module-decl)
6999 1 0 purview of named module
7000 1 1 header unit. */
7001
7002 inline bool module_purview_p ()
7003 { return module_kind & MK_MODULE; }
7004 inline bool global_purview_p ()
7005 { return module_kind & MK_GLOBAL; }
7006
7007 inline bool not_module_p ()
7008 { return (module_kind & (MK_MODULE | MK_GLOBAL)) == 0; }
7009 inline bool named_module_p ()
7010 { /* This is a named module if exactly one of MODULE and GLOBAL is
7011 set. */
7012 /* The divides are constant shifts! */
7013 return ((module_kind / MK_MODULE) ^ (module_kind / MK_GLOBAL)) & 1;
7014 }
7015 inline bool header_module_p ()
7016 { return (module_kind & (MK_MODULE | MK_GLOBAL)) == (MK_MODULE | MK_GLOBAL); }
7017 inline bool named_module_purview_p ()
7018 { return (module_kind & (MK_MODULE | MK_GLOBAL)) == MK_MODULE; }
7019 inline bool module_interface_p ()
7020 { return module_kind & MK_INTERFACE; }
7021 inline bool module_partition_p ()
7022 { return module_kind & MK_PARTITION; }
7023 inline bool module_has_cmi_p ()
7024 { return module_kind & (MK_INTERFACE | MK_PARTITION); }
7025
7026 /* We're currently exporting declarations. */
7027 inline bool module_exporting_p ()
7028 { return module_kind & MK_EXPORTING; }
7029
7030 extern module_state *get_module (tree name, module_state *parent = NULL,
7031 bool partition = false);
7032 extern bool module_may_redeclare (tree decl);
7033
7034 extern int module_initializer_kind ();
7035 extern void module_add_import_initializers ();
7036
7037 /* Where the namespace-scope decl was originally declared. */
7038 extern void set_originating_module (tree, bool friend_p = false);
7039 extern tree get_originating_module_decl (tree) ATTRIBUTE_PURE;
7040 extern int get_originating_module (tree, bool for_mangle = false) ATTRIBUTE_PURE;
7041 extern unsigned get_importing_module (tree, bool = false) ATTRIBUTE_PURE;
7042
7043 /* Where current instance of the decl got declared/defined/instantiated. */
7044 extern void set_instantiating_module (tree);
7045 extern void set_defining_module (tree);
7046 extern void maybe_attach_decl (tree ctx, tree decl);
7047
7048 extern void mangle_module (int m, bool include_partition);
7049 extern void mangle_module_fini ();
7050 extern void lazy_load_binding (unsigned mod, tree ns, tree id,
7051 binding_slot *bslot);
7052 extern void lazy_load_pendings (tree decl);
7053 extern module_state *preprocess_module (module_state *, location_t,
7054 bool in_purview,
7055 bool is_import, bool export_p,
7056 cpp_reader *reader);
7057 extern void preprocessed_module (cpp_reader *reader);
7058 extern void import_module (module_state *, location_t, bool export_p,
7059 tree attr, cpp_reader *);
7060 extern void declare_module (module_state *, location_t, bool export_p,
7061 tree attr, cpp_reader *);
7062 extern void init_modules (cpp_reader *);
7063 extern void fini_modules ();
7064 extern void maybe_check_all_macros (cpp_reader *);
7065 extern void finish_module_processing (cpp_reader *);
7066 extern char const *module_name (unsigned, bool header_ok);
7067 extern bitmap get_import_bitmap ();
7068 extern bitmap visible_instantiation_path (bitmap *);
7069 extern void module_begin_main_file (cpp_reader *, line_maps *,
7070 const line_map_ordinary *);
7071 extern void module_preprocess_options (cpp_reader *);
7072 extern bool handle_module_option (unsigned opt, const char *arg, int value);
7073
7074 /* In optimize.c */
7075 extern bool maybe_clone_body (tree);
7076
7077 /* In parser.c */
7078 extern tree cp_convert_range_for (tree, tree, tree, tree, unsigned int, bool,
7079 unsigned short);
7080 extern void cp_convert_omp_range_for (tree &, vec<tree, va_gc> *, tree &,
7081 tree &, tree &, tree &, tree &, tree &);
7082 extern void cp_finish_omp_range_for (tree, tree);
7083 extern bool parsing_nsdmi (void);
7084 extern bool parsing_default_capturing_generic_lambda_in_template (void);
7085 extern void inject_this_parameter (tree, cp_cv_quals);
7086 extern location_t defparse_location (tree);
7087 extern void maybe_show_extern_c_location (void);
7088 extern bool literal_integer_zerop (const_tree);
7089
7090 /* in pt.c */
7091 extern tree canonical_type_parameter (tree);
7092 extern void push_access_scope (tree);
7093 extern void pop_access_scope (tree);
7094 extern bool check_template_shadow (tree);
7095 extern bool check_auto_in_tmpl_args (tree, tree);
7096 extern tree get_innermost_template_args (tree, int);
7097 extern void maybe_begin_member_template_processing (tree);
7098 extern void maybe_end_member_template_processing (void);
7099 extern tree finish_member_template_decl (tree);
7100 extern void begin_template_parm_list (void);
7101 extern bool begin_specialization (void);
7102 extern void reset_specialization (void);
7103 extern void end_specialization (void);
7104 extern void begin_explicit_instantiation (void);
7105 extern void end_explicit_instantiation (void);
7106 extern void check_unqualified_spec_or_inst (tree, location_t);
7107 extern tree check_explicit_specialization (tree, tree, int, int,
7108 tree = NULL_TREE);
7109 extern int num_template_headers_for_class (tree);
7110 extern void check_template_variable (tree);
7111 extern tree make_auto (void);
7112 extern tree make_decltype_auto (void);
7113 extern tree make_constrained_auto (tree, tree);
7114 extern tree make_constrained_decltype_auto (tree, tree);
7115 extern tree make_template_placeholder (tree);
7116 extern bool template_placeholder_p (tree);
7117 extern bool ctad_template_p (tree);
7118 extern tree do_auto_deduction (tree, tree, tree,
7119 tsubst_flags_t
7120 = tf_warning_or_error,
7121 auto_deduction_context
7122 = adc_unspecified,
7123 tree = NULL_TREE,
7124 int = LOOKUP_NORMAL);
7125 extern tree type_uses_auto (tree);
7126 extern tree type_uses_auto_or_concept (tree);
7127 extern void append_type_to_template_for_access_check (tree, tree, tree,
7128 location_t);
7129 extern tree convert_generic_types_to_packs (tree, int, int);
7130 extern tree splice_late_return_type (tree, tree);
7131 extern bool is_auto (const_tree);
7132 extern tree process_template_parm (tree, location_t, tree,
7133 bool, bool);
7134 extern tree end_template_parm_list (tree);
7135 extern void end_template_parm_list (void);
7136 extern void end_template_decl (void);
7137 extern tree maybe_update_decl_type (tree, tree);
7138 extern bool check_default_tmpl_args (tree, tree, bool, bool, int);
7139 extern tree push_template_decl (tree, bool is_friend = false);
7140 extern tree add_inherited_template_parms (tree, tree);
7141 extern void template_parm_level_and_index (tree, int*, int*);
7142 extern bool redeclare_class_template (tree, tree, tree);
7143 extern tree lookup_template_class (tree, tree, tree, tree,
7144 int, tsubst_flags_t);
7145 extern tree lookup_template_function (tree, tree);
7146 extern tree lookup_template_variable (tree, tree);
7147 extern int uses_template_parms (tree);
7148 extern bool uses_template_parms_level (tree, int);
7149 extern bool in_template_function (void);
7150 extern bool need_generic_capture (void);
7151 extern tree instantiate_class_template (tree);
7152 extern tree instantiate_template (tree, tree, tsubst_flags_t);
7153 extern tree fn_type_unification (tree, tree, tree,
7154 const tree *, unsigned int,
7155 tree, unification_kind_t, int,
7156 struct conversion **,
7157 bool, bool);
7158 extern void mark_decl_instantiated (tree, int);
7159 extern int more_specialized_fn (tree, tree, int);
7160 extern void do_decl_instantiation (tree, tree);
7161 extern void do_type_instantiation (tree, tree, tsubst_flags_t);
7162 extern bool always_instantiate_p (tree);
7163 extern bool maybe_instantiate_noexcept (tree, tsubst_flags_t = tf_warning_or_error);
7164 extern tree instantiate_decl (tree, bool, bool);
7165 extern void maybe_instantiate_decl (tree);
7166 extern int comp_template_parms (const_tree, const_tree);
7167 extern bool template_heads_equivalent_p (const_tree, const_tree);
7168 extern bool builtin_pack_fn_p (tree);
7169 extern tree uses_parameter_packs (tree);
7170 extern bool template_parameter_pack_p (const_tree);
7171 extern bool function_parameter_pack_p (const_tree);
7172 extern bool function_parameter_expanded_from_pack_p (tree, tree);
7173 extern tree make_pack_expansion (tree, tsubst_flags_t = tf_warning_or_error);
7174 extern bool check_for_bare_parameter_packs (tree, location_t = UNKNOWN_LOCATION);
7175 extern tree build_template_info (tree, tree);
7176 extern tree get_template_info (const_tree);
7177 extern int template_class_depth (tree);
7178 extern int is_specialization_of (tree, tree);
7179 extern bool is_specialization_of_friend (tree, tree);
7180 extern int comp_template_args (tree, tree, tree * = NULL,
7181 tree * = NULL, bool = false);
7182 extern int template_args_equal (tree, tree, bool = false);
7183 extern tree maybe_process_partial_specialization (tree);
7184 extern tree most_specialized_instantiation (tree);
7185 extern tree most_specialized_partial_spec (tree, tsubst_flags_t);
7186 extern void print_candidates (tree);
7187 extern void instantiate_pending_templates (int);
7188 extern tree tsubst_default_argument (tree, int, tree, tree,
7189 tsubst_flags_t);
7190 extern tree tsubst (tree, tree, tsubst_flags_t, tree);
7191 extern tree tsubst_copy_and_build (tree, tree, tsubst_flags_t,
7192 tree, bool = false, bool = false);
7193 extern tree tsubst_expr (tree, tree, tsubst_flags_t,
7194 tree, bool);
7195 extern tree tsubst_pack_expansion (tree, tree, tsubst_flags_t, tree);
7196 extern tree tsubst_argument_pack (tree, tree, tsubst_flags_t, tree);
7197 extern tree tsubst_template_args (tree, tree, tsubst_flags_t, tree);
7198 extern tree tsubst_template_arg (tree, tree, tsubst_flags_t, tree);
7199 extern tree tsubst_function_parms (tree, tree, tsubst_flags_t, tree);
7200 extern tree most_general_template (tree);
7201 extern tree get_mostly_instantiated_function_type (tree);
7202 extern bool problematic_instantiation_changed (void);
7203 extern void record_last_problematic_instantiation (void);
7204 extern struct tinst_level *current_instantiation(void);
7205 extern bool instantiating_current_function_p (void);
7206 extern tree maybe_get_template_decl_from_type_decl (tree);
7207 extern int processing_template_parmlist;
7208 extern bool dependent_type_p (tree);
7209 extern bool dependent_scope_p (tree);
7210 extern bool any_dependent_template_arguments_p (const_tree);
7211 extern bool any_erroneous_template_args_p (const_tree);
7212 extern bool dependent_template_p (tree);
7213 extern bool dependent_template_id_p (tree, tree);
7214 extern bool type_dependent_expression_p (tree);
7215 extern bool type_dependent_object_expression_p (tree);
7216 extern bool any_type_dependent_arguments_p (const vec<tree, va_gc> *);
7217 extern bool any_type_dependent_elements_p (const_tree);
7218 extern bool type_dependent_expression_p_push (tree);
7219 extern bool value_dependent_expression_p (tree);
7220 extern bool instantiation_dependent_expression_p (tree);
7221 extern bool instantiation_dependent_uneval_expression_p (tree);
7222 extern bool any_value_dependent_elements_p (const_tree);
7223 extern bool dependent_omp_for_p (tree, tree, tree, tree);
7224 extern tree resolve_typename_type (tree, bool);
7225 extern tree template_for_substitution (tree);
7226 extern tree build_non_dependent_expr (tree);
7227 extern void make_args_non_dependent (vec<tree, va_gc> *);
7228 extern bool reregister_specialization (tree, tree, tree);
7229 extern tree instantiate_non_dependent_expr (tree);
7230 extern tree instantiate_non_dependent_expr_sfinae (tree, tsubst_flags_t);
7231 extern tree instantiate_non_dependent_expr_internal (tree, tsubst_flags_t);
7232 extern tree instantiate_non_dependent_or_null (tree);
7233 extern bool variable_template_specialization_p (tree);
7234 extern bool alias_type_or_template_p (tree);
7235 enum { nt_opaque = false, nt_transparent = true };
7236 extern tree alias_template_specialization_p (const_tree, bool);
7237 extern tree dependent_alias_template_spec_p (const_tree, bool);
7238 extern bool template_parm_object_p (const_tree);
7239 extern tree tparm_object_argument (tree);
7240 extern bool explicit_class_specialization_p (tree);
7241 extern bool push_tinst_level (tree);
7242 extern bool push_tinst_level (tree, tree);
7243 extern bool push_tinst_level_loc (tree, location_t);
7244 extern bool push_tinst_level_loc (tree, tree, location_t);
7245 extern void pop_tinst_level (void);
7246 extern struct tinst_level *outermost_tinst_level(void);
7247 extern void init_template_processing (void);
7248 extern void print_template_statistics (void);
7249 bool template_template_parameter_p (const_tree);
7250 bool template_type_parameter_p (const_tree);
7251 extern bool primary_template_specialization_p (const_tree);
7252 extern tree get_primary_template_innermost_parameters (const_tree);
7253 extern tree get_template_innermost_arguments (const_tree);
7254 extern tree get_template_argument_pack_elems (const_tree);
7255 extern tree get_function_template_decl (const_tree);
7256 extern tree resolve_nondeduced_context (tree, tsubst_flags_t);
7257 extern tree resolve_nondeduced_context_or_error (tree, tsubst_flags_t);
7258 extern hashval_t iterative_hash_template_arg (tree arg, hashval_t val);
7259 extern tree coerce_template_parms (tree, tree, tree);
7260 extern tree coerce_template_parms (tree, tree, tree, tsubst_flags_t);
7261 extern tree canonicalize_type_argument (tree, tsubst_flags_t);
7262 extern void register_local_specialization (tree, tree);
7263 extern tree retrieve_local_specialization (tree);
7264 extern tree extract_fnparm_pack (tree, tree *);
7265 extern tree template_parm_to_arg (tree);
7266 extern tree dguide_name (tree);
7267 extern bool dguide_name_p (tree);
7268 extern bool deduction_guide_p (const_tree);
7269 extern bool copy_guide_p (const_tree);
7270 extern bool template_guide_p (const_tree);
7271 extern bool builtin_guide_p (const_tree);
7272 extern void store_explicit_specifier (tree, tree);
7273 extern void walk_specializations (bool,
7274 void (*)(bool, spec_entry *,
7275 void *),
7276 void *);
7277 extern tree match_mergeable_specialization (bool is_decl, spec_entry *);
7278 extern unsigned get_mergeable_specialization_flags (tree tmpl, tree spec);
7279 extern void add_mergeable_specialization (bool is_decl, bool is_alias,
7280 spec_entry *,
7281 tree outer, unsigned);
7282 extern tree add_to_template_args (tree, tree);
7283 extern tree add_outermost_template_args (tree, tree);
7284 extern tree add_extra_args (tree, tree);
7285 extern tree build_extra_args (tree, tree, tsubst_flags_t);
7286
7287 /* in rtti.c */
7288 /* A vector of all tinfo decls that haven't been emitted yet. */
7289 extern GTY(()) vec<tree, va_gc> *unemitted_tinfo_decls;
7290
7291 extern void init_rtti_processing (void);
7292 extern tree build_typeid (tree, tsubst_flags_t);
7293 extern tree get_tinfo_decl_direct (tree, tree, int);
7294 extern tree get_tinfo_decl (tree);
7295 extern tree get_typeid (tree, tsubst_flags_t);
7296 extern tree build_headof (tree);
7297 extern tree build_dynamic_cast (location_t, tree, tree,
7298 tsubst_flags_t);
7299 extern void emit_support_tinfos (void);
7300 extern bool emit_tinfo_decl (tree);
7301 extern unsigned get_pseudo_tinfo_index (tree);
7302 extern tree get_pseudo_tinfo_type (unsigned);
7303 extern tree build_if_nonnull (tree, tree, tsubst_flags_t);
7304
7305 /* in search.c */
7306 extern tree get_parent_with_private_access (tree decl, tree binfo);
7307 extern bool accessible_base_p (tree, tree, bool);
7308 extern tree lookup_base (tree, tree, base_access,
7309 base_kind *, tsubst_flags_t);
7310 extern tree dcast_base_hint (tree, tree);
7311 extern int accessible_p (tree, tree, bool);
7312 extern int accessible_in_template_p (tree, tree);
7313 extern tree lookup_field (tree, tree, int, bool);
7314 extern tree lookup_fnfields (tree, tree, int, tsubst_flags_t);
7315 extern tree lookup_member (tree, tree, int, bool,
7316 tsubst_flags_t,
7317 access_failure_info *afi = NULL);
7318 extern tree lookup_member_fuzzy (tree, tree, bool);
7319 extern tree locate_field_accessor (tree, tree, bool);
7320 extern int look_for_overrides (tree, tree);
7321 extern void get_pure_virtuals (tree);
7322 extern void maybe_suppress_debug_info (tree);
7323 extern void note_debug_info_needed (tree);
7324 extern tree current_scope (void);
7325 extern int at_function_scope_p (void);
7326 extern bool at_class_scope_p (void);
7327 extern bool at_namespace_scope_p (void);
7328 extern tree context_for_name_lookup (tree);
7329 extern tree lookup_conversions (tree);
7330 extern tree binfo_from_vbase (tree);
7331 extern tree binfo_for_vbase (tree, tree);
7332 extern tree look_for_overrides_here (tree, tree);
7333 #define dfs_skip_bases ((tree)1)
7334 extern tree dfs_walk_all (tree, tree (*) (tree, void *),
7335 tree (*) (tree, void *), void *);
7336 extern tree dfs_walk_once (tree, tree (*) (tree, void *),
7337 tree (*) (tree, void *), void *);
7338 extern tree binfo_via_virtual (tree, tree);
7339 extern bool binfo_direct_p (tree);
7340 extern tree build_baselink (tree, tree, tree, tree);
7341 extern tree adjust_result_of_qualified_name_lookup
7342 (tree, tree, tree);
7343 extern tree copied_binfo (tree, tree);
7344 extern tree original_binfo (tree, tree);
7345 extern bool shared_member_p (tree);
7346 extern bool any_dependent_bases_p (tree = current_nonlambda_class_type ());
7347 extern bool maybe_check_overriding_exception_spec (tree, tree);
7348
7349 /* in semantics.c */
7350 extern void push_deferring_access_checks (deferring_kind);
7351 extern void resume_deferring_access_checks (void);
7352 extern void stop_deferring_access_checks (void);
7353 extern void pop_deferring_access_checks (void);
7354 extern vec<deferred_access_check, va_gc> *get_deferred_access_checks (void);
7355 extern void reopen_deferring_access_checks (vec<deferred_access_check, va_gc> *);
7356 extern void pop_to_parent_deferring_access_checks (void);
7357 extern bool perform_access_checks (vec<deferred_access_check, va_gc> *,
7358 tsubst_flags_t);
7359 extern bool perform_deferred_access_checks (tsubst_flags_t);
7360 extern bool perform_or_defer_access_check (tree, tree, tree,
7361 tsubst_flags_t,
7362 access_failure_info *afi = NULL);
7363
7364 /* RAII sentinel to ensures that deferred access checks are popped before
7365 a function returns. */
7366
7367 class deferring_access_check_sentinel
7368 {
7369 public:
7370 deferring_access_check_sentinel (enum deferring_kind kind = dk_deferred)
7371 {
7372 push_deferring_access_checks (kind);
7373 }
7374 ~deferring_access_check_sentinel ()
7375 {
7376 pop_deferring_access_checks ();
7377 }
7378 };
7379
7380 extern int stmts_are_full_exprs_p (void);
7381 extern void init_cp_semantics (void);
7382 extern tree do_poplevel (tree);
7383 extern void break_maybe_infinite_loop (void);
7384 extern void add_decl_expr (tree);
7385 extern tree maybe_cleanup_point_expr_void (tree);
7386 extern tree finish_expr_stmt (tree);
7387 extern tree begin_if_stmt (void);
7388 extern tree finish_if_stmt_cond (tree, tree);
7389 extern tree finish_then_clause (tree);
7390 extern void begin_else_clause (tree);
7391 extern void finish_else_clause (tree);
7392 extern void finish_if_stmt (tree);
7393 extern tree begin_while_stmt (void);
7394 extern void finish_while_stmt_cond (tree, tree, bool, unsigned short);
7395 extern void finish_while_stmt (tree);
7396 extern tree begin_do_stmt (void);
7397 extern void finish_do_body (tree);
7398 extern void finish_do_stmt (tree, tree, bool, unsigned short);
7399 extern tree finish_return_stmt (tree);
7400 extern tree begin_for_scope (tree *);
7401 extern tree begin_for_stmt (tree, tree);
7402 extern void finish_init_stmt (tree);
7403 extern void finish_for_cond (tree, tree, bool, unsigned short);
7404 extern void finish_for_expr (tree, tree);
7405 extern void finish_for_stmt (tree);
7406 extern tree begin_range_for_stmt (tree, tree);
7407 extern void finish_range_for_decl (tree, tree, tree);
7408 extern void finish_range_for_stmt (tree);
7409 extern tree finish_break_stmt (void);
7410 extern tree finish_continue_stmt (void);
7411 extern tree begin_switch_stmt (void);
7412 extern void finish_switch_cond (tree, tree);
7413 extern void finish_switch_stmt (tree);
7414 extern tree finish_goto_stmt (tree);
7415 extern tree begin_try_block (void);
7416 extern void finish_try_block (tree);
7417 extern void finish_handler_sequence (tree);
7418 extern tree begin_function_try_block (tree *);
7419 extern void finish_function_try_block (tree);
7420 extern void finish_function_handler_sequence (tree, tree);
7421 extern void finish_cleanup_try_block (tree);
7422 extern tree begin_handler (void);
7423 extern void finish_handler_parms (tree, tree);
7424 extern void finish_handler (tree);
7425 extern void finish_cleanup (tree, tree);
7426 extern bool is_this_parameter (tree);
7427
7428 enum {
7429 BCS_NORMAL = 0,
7430 BCS_NO_SCOPE = 1,
7431 BCS_TRY_BLOCK = 2,
7432 BCS_FN_BODY = 4,
7433 BCS_TRANSACTION = 8
7434 };
7435 extern tree begin_compound_stmt (unsigned int);
7436
7437 extern void finish_compound_stmt (tree);
7438 extern tree finish_asm_stmt (location_t, int, tree, tree,
7439 tree, tree, tree, bool);
7440 extern tree finish_label_stmt (tree);
7441 extern void finish_label_decl (tree);
7442 extern cp_expr finish_parenthesized_expr (cp_expr);
7443 extern tree force_paren_expr (tree, bool = false);
7444 inline tree force_paren_expr_uneval (tree t)
7445 { return force_paren_expr (t, true); }
7446 extern tree maybe_undo_parenthesized_ref (tree);
7447 extern tree maybe_strip_ref_conversion (tree);
7448 extern tree finish_non_static_data_member (tree, tree, tree);
7449 extern tree begin_stmt_expr (void);
7450 extern tree finish_stmt_expr_expr (tree, tree);
7451 extern tree finish_stmt_expr (tree, bool);
7452 extern tree stmt_expr_value_expr (tree);
7453 bool empty_expr_stmt_p (tree);
7454 extern cp_expr perform_koenig_lookup (cp_expr, vec<tree, va_gc> *,
7455 tsubst_flags_t);
7456 extern tree finish_call_expr (tree, vec<tree, va_gc> **, bool,
7457 bool, tsubst_flags_t);
7458 extern tree lookup_and_finish_template_variable (tree, tree, tsubst_flags_t = tf_warning_or_error);
7459 extern tree finish_template_variable (tree, tsubst_flags_t = tf_warning_or_error);
7460 extern cp_expr finish_increment_expr (cp_expr, enum tree_code);
7461 extern tree finish_this_expr (void);
7462 extern tree finish_pseudo_destructor_expr (tree, tree, tree, location_t);
7463 extern cp_expr finish_unary_op_expr (location_t, enum tree_code, cp_expr,
7464 tsubst_flags_t);
7465 /* Whether this call to finish_compound_literal represents a C++11 functional
7466 cast or a C99 compound literal. */
7467 enum fcl_t { fcl_functional, fcl_c99 };
7468 extern tree finish_compound_literal (tree, tree, tsubst_flags_t, fcl_t = fcl_functional);
7469 extern tree finish_fname (tree);
7470 extern void finish_translation_unit (void);
7471 extern tree finish_template_type_parm (tree, tree);
7472 extern tree finish_template_template_parm (tree, tree);
7473 extern tree begin_class_definition (tree);
7474 extern void finish_template_decl (tree);
7475 extern tree finish_template_type (tree, tree, int);
7476 extern tree finish_base_specifier (tree, tree, bool);
7477 extern void finish_member_declaration (tree);
7478 extern bool outer_automatic_var_p (tree);
7479 extern tree process_outer_var_ref (tree, tsubst_flags_t, bool force_use = false);
7480 extern cp_expr finish_id_expression (tree, tree, tree,
7481 cp_id_kind *,
7482 bool, bool, bool *,
7483 bool, bool, bool, bool,
7484 const char **,
7485 location_t);
7486 extern tree finish_typeof (tree);
7487 extern tree finish_underlying_type (tree);
7488 extern tree calculate_bases (tree, tsubst_flags_t);
7489 extern tree finish_bases (tree, bool);
7490 extern tree calculate_direct_bases (tree, tsubst_flags_t);
7491 extern tree finish_offsetof (tree, tree, location_t);
7492 extern void finish_decl_cleanup (tree, tree);
7493 extern void finish_eh_cleanup (tree);
7494 extern void emit_associated_thunks (tree);
7495 extern void finish_mem_initializers (tree);
7496 extern tree check_template_template_default_arg (tree);
7497 extern bool expand_or_defer_fn_1 (tree);
7498 extern void expand_or_defer_fn (tree);
7499 extern bool check_accessibility_of_qualified_id (tree, tree, tree, tsubst_flags_t);
7500 extern tree finish_qualified_id_expr (tree, tree, bool, bool,
7501 bool, bool, tsubst_flags_t);
7502 extern void simplify_aggr_init_expr (tree *);
7503 extern void finalize_nrv (tree *, tree, tree);
7504 extern tree omp_reduction_id (enum tree_code, tree, tree);
7505 extern tree cp_remove_omp_priv_cleanup_stmt (tree *, int *, void *);
7506 extern bool cp_check_omp_declare_reduction (tree);
7507 extern void finish_omp_declare_simd_methods (tree);
7508 extern tree finish_omp_clauses (tree, enum c_omp_region_type);
7509 extern tree push_omp_privatization_clauses (bool);
7510 extern void pop_omp_privatization_clauses (tree);
7511 extern void save_omp_privatization_clauses (vec<tree> &);
7512 extern void restore_omp_privatization_clauses (vec<tree> &);
7513 extern void finish_omp_threadprivate (tree);
7514 extern tree begin_omp_structured_block (void);
7515 extern tree finish_omp_structured_block (tree);
7516 extern tree finish_oacc_data (tree, tree);
7517 extern tree finish_oacc_host_data (tree, tree);
7518 extern tree finish_omp_construct (enum tree_code, tree, tree);
7519 extern tree begin_omp_parallel (void);
7520 extern tree finish_omp_parallel (tree, tree);
7521 extern tree begin_omp_task (void);
7522 extern tree finish_omp_task (tree, tree);
7523 extern tree finish_omp_for (location_t, enum tree_code,
7524 tree, tree, tree, tree, tree,
7525 tree, tree, vec<tree> *, tree);
7526 extern tree finish_omp_for_block (tree, tree);
7527 extern void finish_omp_atomic (location_t, enum tree_code,
7528 enum tree_code, tree, tree,
7529 tree, tree, tree, tree,
7530 enum omp_memory_order);
7531 extern void finish_omp_barrier (void);
7532 extern void finish_omp_depobj (location_t, tree,
7533 enum omp_clause_depend_kind,
7534 tree);
7535 extern void finish_omp_flush (int);
7536 extern void finish_omp_taskwait (void);
7537 extern void finish_omp_taskyield (void);
7538 extern void finish_omp_cancel (tree);
7539 extern void finish_omp_cancellation_point (tree);
7540 extern tree omp_privatize_field (tree, bool);
7541 extern tree begin_transaction_stmt (location_t, tree *, int);
7542 extern void finish_transaction_stmt (tree, tree, int, tree);
7543 extern tree build_transaction_expr (location_t, tree, int, tree);
7544 extern bool cxx_omp_create_clause_info (tree, tree, bool, bool,
7545 bool, bool);
7546 extern tree baselink_for_fns (tree);
7547 extern void finish_static_assert (tree, tree, location_t,
7548 bool, bool);
7549 extern tree finish_decltype_type (tree, bool, tsubst_flags_t);
7550 extern tree finish_trait_expr (location_t, enum cp_trait_kind, tree, tree);
7551 extern tree build_lambda_expr (void);
7552 extern tree build_lambda_object (tree);
7553 extern tree begin_lambda_type (tree);
7554 extern tree lambda_capture_field_type (tree, bool, bool);
7555 extern tree lambda_proxy_type (tree);
7556 extern tree lambda_function (tree);
7557 extern void apply_deduced_return_type (tree, tree);
7558 extern tree add_capture (tree, tree, tree, bool, bool);
7559 extern tree add_default_capture (tree, tree, tree);
7560 extern void insert_capture_proxy (tree);
7561 extern void insert_pending_capture_proxies (void);
7562 extern bool is_capture_proxy (tree);
7563 extern bool is_normal_capture_proxy (tree);
7564 extern bool is_constant_capture_proxy (tree);
7565 extern void register_capture_members (tree);
7566 extern tree lambda_expr_this_capture (tree, int);
7567 extern void maybe_generic_this_capture (tree, tree);
7568 extern tree maybe_resolve_dummy (tree, bool);
7569 extern tree current_nonlambda_function (void);
7570 extern tree nonlambda_method_basetype (void);
7571 extern tree current_nonlambda_scope (void);
7572 extern tree current_lambda_expr (void);
7573 extern bool generic_lambda_fn_p (tree);
7574 extern tree do_dependent_capture (tree, bool = false);
7575 extern bool lambda_fn_in_template_p (tree);
7576 extern void maybe_add_lambda_conv_op (tree);
7577 extern bool is_lambda_ignored_entity (tree);
7578 extern bool lambda_static_thunk_p (tree);
7579 extern bool call_from_lambda_thunk_p (tree);
7580 extern tree finish_builtin_launder (location_t, tree,
7581 tsubst_flags_t);
7582 extern tree cp_build_vec_convert (tree, location_t, tree,
7583 tsubst_flags_t);
7584 extern tree cp_build_bit_cast (location_t, tree, tree,
7585 tsubst_flags_t);
7586 extern void start_lambda_scope (tree);
7587 extern void record_lambda_scope (tree);
7588 extern void record_null_lambda_scope (tree);
7589 extern void finish_lambda_scope (void);
7590 extern tree start_lambda_function (tree fn, tree lambda_expr);
7591 extern void finish_lambda_function (tree body);
7592 extern bool regenerated_lambda_fn_p (tree);
7593 extern tree most_general_lambda (tree);
7594
7595 /* in tree.c */
7596 extern int cp_tree_operand_length (const_tree);
7597 extern int cp_tree_code_length (enum tree_code);
7598 extern void cp_free_lang_data (tree t);
7599 extern tree force_target_expr (tree, tree, tsubst_flags_t);
7600 extern tree build_target_expr_with_type (tree, tree, tsubst_flags_t);
7601 extern void lang_check_failed (const char *, int,
7602 const char *) ATTRIBUTE_NORETURN
7603 ATTRIBUTE_COLD;
7604 extern tree stabilize_expr (tree, tree *);
7605 extern void stabilize_call (tree, tree *);
7606 extern bool stabilize_init (tree, tree *);
7607 extern tree add_stmt_to_compound (tree, tree);
7608 extern void init_tree (void);
7609 extern bool pod_type_p (const_tree);
7610 extern bool layout_pod_type_p (const_tree);
7611 extern bool std_layout_type_p (const_tree);
7612 extern bool trivial_type_p (const_tree);
7613 extern bool trivially_copyable_p (const_tree);
7614 extern bool type_has_unique_obj_representations (const_tree);
7615 extern bool scalarish_type_p (const_tree);
7616 extern bool structural_type_p (tree, bool = false);
7617 extern bool type_has_nontrivial_default_init (const_tree);
7618 extern bool type_has_nontrivial_copy_init (const_tree);
7619 extern void maybe_warn_parm_abi (tree, location_t);
7620 extern bool class_tmpl_impl_spec_p (const_tree);
7621 extern int zero_init_p (const_tree);
7622 extern bool zero_init_expr_p (tree);
7623 extern bool check_abi_tag_redeclaration (const_tree, const_tree,
7624 const_tree);
7625 extern bool check_abi_tag_args (tree, tree);
7626 extern tree strip_typedefs (tree, bool * = NULL,
7627 unsigned int = 0);
7628 extern tree strip_typedefs_expr (tree, bool * = NULL,
7629 unsigned int = 0);
7630 extern tree copy_binfo (tree, tree, tree,
7631 tree *, int);
7632 extern int member_p (const_tree);
7633 extern cp_lvalue_kind real_lvalue_p (const_tree);
7634 extern cp_lvalue_kind lvalue_kind (const_tree);
7635 extern bool glvalue_p (const_tree);
7636 extern bool obvalue_p (const_tree);
7637 extern bool xvalue_p (const_tree);
7638 extern bool bitfield_p (const_tree);
7639 extern tree cp_stabilize_reference (tree);
7640 extern bool builtin_valid_in_constant_expr_p (const_tree);
7641 extern tree build_min (enum tree_code, tree, ...);
7642 extern tree build_min_nt_loc (location_t, enum tree_code,
7643 ...);
7644 extern tree build_min_non_dep (enum tree_code, tree, ...);
7645 extern tree build_min_non_dep_op_overload (enum tree_code, tree, tree, ...);
7646 extern tree build_min_nt_call_vec (tree, vec<tree, va_gc> *);
7647 extern tree build_min_non_dep_call_vec (tree, tree, vec<tree, va_gc> *);
7648 extern vec<tree, va_gc>* vec_copy_and_insert (vec<tree, va_gc>*, tree, unsigned);
7649 extern tree build_cplus_new (tree, tree, tsubst_flags_t);
7650 extern tree build_local_temp (tree);
7651 extern bool is_local_temp (tree);
7652 extern tree build_aggr_init_expr (tree, tree);
7653 extern tree get_target_expr (tree);
7654 extern tree get_target_expr_sfinae (tree, tsubst_flags_t);
7655 extern tree build_cplus_array_type (tree, tree, int is_dep = -1);
7656 extern tree build_array_of_n_type (tree, int);
7657 extern bool array_of_runtime_bound_p (tree);
7658 extern bool vla_type_p (tree);
7659 extern tree build_array_copy (tree);
7660 extern tree build_vec_init_expr (tree, tree, tsubst_flags_t);
7661 extern void diagnose_non_constexpr_vec_init (tree);
7662 extern tree hash_tree_cons (tree, tree, tree);
7663 extern tree hash_tree_chain (tree, tree);
7664 extern tree build_qualified_name (tree, tree, tree, bool);
7665 extern tree build_ref_qualified_type (tree, cp_ref_qualifier);
7666 extern tree make_binding_vec (tree, unsigned clusters CXX_MEM_STAT_INFO);
7667 inline tree ovl_first (tree) ATTRIBUTE_PURE;
7668 extern tree ovl_make (tree fn,
7669 tree next = NULL_TREE);
7670 extern tree ovl_insert (tree fn, tree maybe_ovl,
7671 int using_or_hidden = 0);
7672 extern tree ovl_skip_hidden (tree) ATTRIBUTE_PURE;
7673 extern void lookup_mark (tree lookup, bool val);
7674 extern tree lookup_add (tree fns, tree lookup);
7675 extern tree lookup_maybe_add (tree fns, tree lookup,
7676 bool deduping);
7677 extern int is_overloaded_fn (tree) ATTRIBUTE_PURE;
7678 extern bool really_overloaded_fn (tree) ATTRIBUTE_PURE;
7679 extern tree dependent_name (tree);
7680 extern tree maybe_get_fns (tree) ATTRIBUTE_PURE;
7681 extern tree get_fns (tree) ATTRIBUTE_PURE;
7682 extern tree get_first_fn (tree) ATTRIBUTE_PURE;
7683 extern tree ovl_scope (tree);
7684 extern const char *cxx_printable_name (tree, int);
7685 extern const char *cxx_printable_name_translate (tree, int);
7686 extern tree canonical_eh_spec (tree);
7687 extern tree build_cp_fntype_variant (tree, cp_ref_qualifier, tree, bool);
7688 extern tree build_exception_variant (tree, tree);
7689 extern void fixup_deferred_exception_variants (tree, tree);
7690 extern tree bind_template_template_parm (tree, tree);
7691 extern tree array_type_nelts_total (tree);
7692 extern tree array_type_nelts_top (tree);
7693 extern bool array_of_unknown_bound_p (const_tree);
7694 extern bool source_location_current_p (tree);
7695 extern tree break_out_target_exprs (tree, bool = false);
7696 extern tree build_ctor_subob_ref (tree, tree, tree);
7697 extern tree replace_placeholders (tree, tree, bool * = NULL);
7698 extern bool find_placeholders (tree);
7699 extern tree get_type_decl (tree);
7700 extern tree decl_namespace_context (tree);
7701 extern bool decl_anon_ns_mem_p (const_tree);
7702 extern tree lvalue_type (tree);
7703 extern tree error_type (tree);
7704 extern int varargs_function_p (const_tree);
7705 extern bool cp_tree_equal (tree, tree);
7706 extern tree no_linkage_check (tree, bool);
7707 extern void debug_binfo (tree);
7708 extern tree build_dummy_object (tree);
7709 extern tree maybe_dummy_object (tree, tree *);
7710 extern bool is_dummy_object (const_tree);
7711 extern bool is_byte_access_type (tree);
7712 extern const struct attribute_spec cxx_attribute_table[];
7713 extern tree make_ptrmem_cst (tree, tree);
7714 extern tree cp_build_type_attribute_variant (tree, tree);
7715 extern tree cp_build_reference_type (tree, bool);
7716 extern tree move (tree);
7717 extern tree cp_build_qualified_type_real (tree, int, tsubst_flags_t);
7718 #define cp_build_qualified_type(TYPE, QUALS) \
7719 cp_build_qualified_type_real ((TYPE), (QUALS), tf_warning_or_error)
7720 extern bool cv_qualified_p (const_tree);
7721 extern tree cv_unqualified (tree);
7722 extern special_function_kind special_function_p (const_tree);
7723 extern special_function_kind special_memfn_p (const_tree);
7724 extern int count_trees (tree);
7725 extern int char_type_p (tree);
7726 extern void verify_stmt_tree (tree);
7727 extern linkage_kind decl_linkage (tree);
7728 extern duration_kind decl_storage_duration (tree);
7729 extern tree cp_walk_subtrees (tree*, int*, walk_tree_fn,
7730 void*, hash_set<tree> *);
7731 #define cp_walk_tree(tp,func,data,pset) \
7732 walk_tree_1 (tp, func, data, pset, cp_walk_subtrees)
7733 #define cp_walk_tree_without_duplicates(tp,func,data) \
7734 walk_tree_without_duplicates_1 (tp, func, data, cp_walk_subtrees)
7735 extern tree rvalue (tree);
7736 extern tree convert_bitfield_to_declared_type (tree);
7737 extern tree cp_save_expr (tree);
7738 extern bool cast_valid_in_integral_constant_expression_p (tree);
7739 extern bool cxx_type_hash_eq (const_tree, const_tree);
7740 extern tree cxx_copy_lang_qualifiers (const_tree, const_tree);
7741
7742 extern void cxx_print_statistics (void);
7743 extern bool maybe_warn_zero_as_null_pointer_constant (tree, location_t);
7744
7745 /* in ptree.c */
7746 extern void cxx_print_xnode (FILE *, tree, int);
7747 extern void cxx_print_decl (FILE *, tree, int);
7748 extern void cxx_print_type (FILE *, tree, int);
7749 extern void cxx_print_identifier (FILE *, tree, int);
7750 extern void cxx_print_error_function (diagnostic_context *,
7751 const char *,
7752 struct diagnostic_info *);
7753
7754 /* in typeck.c */
7755 /* Says how we should behave when comparing two arrays one of which
7756 has unknown bounds. */
7757 enum compare_bounds_t { bounds_none, bounds_either, bounds_first };
7758
7759 extern bool cxx_mark_addressable (tree, bool = false);
7760 extern int string_conv_p (const_tree, const_tree, int);
7761 extern tree cp_truthvalue_conversion (tree, tsubst_flags_t);
7762 extern tree contextual_conv_bool (tree, tsubst_flags_t);
7763 extern tree condition_conversion (tree);
7764 extern tree require_complete_type (tree);
7765 extern tree require_complete_type_sfinae (tree, tsubst_flags_t);
7766 extern tree complete_type (tree);
7767 extern tree complete_type_or_else (tree, tree);
7768 extern tree complete_type_or_maybe_complain (tree, tree, tsubst_flags_t);
7769 inline bool type_unknown_p (const_tree);
7770 enum { ce_derived, ce_type, ce_normal, ce_exact };
7771 extern bool comp_except_specs (const_tree, const_tree, int);
7772 extern bool comptypes (tree, tree, int);
7773 extern bool same_type_ignoring_top_level_qualifiers_p (tree, tree);
7774 extern bool similar_type_p (tree, tree);
7775 extern bool compparms (const_tree, const_tree);
7776 extern int comp_cv_qualification (const_tree, const_tree);
7777 extern int comp_cv_qualification (int, int);
7778 extern int comp_cv_qual_signature (tree, tree);
7779 extern tree cxx_sizeof_or_alignof_expr (location_t, tree,
7780 enum tree_code, bool, bool);
7781 extern tree cxx_sizeof_or_alignof_type (location_t, tree,
7782 enum tree_code, bool, bool);
7783 extern tree cxx_alignas_expr (tree);
7784 extern tree cxx_sizeof_nowarn (tree);
7785 extern tree is_bitfield_expr_with_lowered_type (const_tree);
7786 extern tree unlowered_expr_type (const_tree);
7787 extern tree decay_conversion (tree,
7788 tsubst_flags_t,
7789 bool = true);
7790 extern tree build_class_member_access_expr (cp_expr, tree, tree, bool,
7791 tsubst_flags_t);
7792 extern tree finish_class_member_access_expr (cp_expr, tree, bool,
7793 tsubst_flags_t);
7794 extern tree lookup_destructor (tree, tree, tree, tsubst_flags_t);
7795 extern tree build_x_indirect_ref (location_t, tree,
7796 ref_operator,
7797 tsubst_flags_t);
7798 extern tree cp_build_indirect_ref (location_t, tree,
7799 ref_operator,
7800 tsubst_flags_t);
7801 extern tree cp_build_fold_indirect_ref (tree);
7802 extern tree build_array_ref (location_t, tree, tree);
7803 extern tree cp_build_array_ref (location_t, tree, tree,
7804 tsubst_flags_t);
7805 extern tree get_member_function_from_ptrfunc (tree *, tree, tsubst_flags_t);
7806 extern tree cp_build_function_call_nary (tree, tsubst_flags_t, ...)
7807 ATTRIBUTE_SENTINEL;
7808 extern tree cp_build_function_call_vec (tree, vec<tree, va_gc> **,
7809 tsubst_flags_t,
7810 tree = NULL_TREE);
7811 extern tree build_x_binary_op (const op_location_t &,
7812 enum tree_code, tree,
7813 enum tree_code, tree,
7814 enum tree_code, tree *,
7815 tsubst_flags_t);
7816 inline tree build_x_binary_op (const op_location_t &loc,
7817 enum tree_code code, tree arg1, tree arg2,
7818 tsubst_flags_t complain)
7819 {
7820 return build_x_binary_op (loc, code, arg1, TREE_CODE (arg1), arg2,
7821 TREE_CODE (arg2), NULL, complain);
7822 }
7823 extern tree build_x_array_ref (location_t, tree, tree,
7824 tsubst_flags_t);
7825 extern tree build_x_unary_op (location_t,
7826 enum tree_code, cp_expr,
7827 tsubst_flags_t);
7828 extern tree cp_build_addressof (location_t, tree,
7829 tsubst_flags_t);
7830 extern tree cp_build_addr_expr (tree, tsubst_flags_t);
7831 extern tree cp_build_unary_op (enum tree_code, tree, bool,
7832 tsubst_flags_t);
7833 extern tree genericize_compound_lvalue (tree);
7834 extern tree unary_complex_lvalue (enum tree_code, tree);
7835 extern tree build_x_conditional_expr (location_t, tree, tree, tree,
7836 tsubst_flags_t);
7837 extern tree build_x_compound_expr_from_list (tree, expr_list_kind,
7838 tsubst_flags_t);
7839 extern tree build_x_compound_expr_from_vec (vec<tree, va_gc> *,
7840 const char *, tsubst_flags_t);
7841 extern tree build_x_compound_expr (location_t, tree, tree,
7842 tsubst_flags_t);
7843 extern tree build_compound_expr (location_t, tree, tree);
7844 extern tree cp_build_compound_expr (tree, tree, tsubst_flags_t);
7845 extern tree build_static_cast (location_t, tree, tree,
7846 tsubst_flags_t);
7847 extern tree build_reinterpret_cast (location_t, tree, tree,
7848 tsubst_flags_t);
7849 extern tree build_const_cast (location_t, tree, tree,
7850 tsubst_flags_t);
7851 extern tree build_c_cast (location_t, tree, tree);
7852 extern cp_expr build_c_cast (location_t loc, tree type,
7853 cp_expr expr);
7854 extern tree cp_build_c_cast (location_t, tree, tree,
7855 tsubst_flags_t);
7856 extern cp_expr build_x_modify_expr (location_t, tree,
7857 enum tree_code, tree,
7858 tsubst_flags_t);
7859 extern tree cp_build_modify_expr (location_t, tree,
7860 enum tree_code, tree,
7861 tsubst_flags_t);
7862 extern tree convert_for_initialization (tree, tree, tree, int,
7863 impl_conv_rhs, tree, int,
7864 tsubst_flags_t);
7865 extern int comp_ptr_ttypes (tree, tree);
7866 extern bool comp_ptr_ttypes_const (tree, tree, compare_bounds_t);
7867 extern bool error_type_p (const_tree);
7868 extern bool ptr_reasonably_similar (const_tree, const_tree);
7869 extern tree build_ptrmemfunc (tree, tree, int, bool,
7870 tsubst_flags_t);
7871 extern int cp_type_quals (const_tree);
7872 extern int type_memfn_quals (const_tree);
7873 extern cp_ref_qualifier type_memfn_rqual (const_tree);
7874 extern tree apply_memfn_quals (tree, cp_cv_quals,
7875 cp_ref_qualifier = REF_QUAL_NONE);
7876 extern bool cp_has_mutable_p (const_tree);
7877 extern bool at_least_as_qualified_p (const_tree, const_tree);
7878 extern void cp_apply_type_quals_to_decl (int, tree);
7879 extern tree build_ptrmemfunc1 (tree, tree, tree);
7880 extern void expand_ptrmemfunc_cst (tree, tree *, tree *);
7881 extern tree type_after_usual_arithmetic_conversions (tree, tree);
7882 extern tree common_pointer_type (tree, tree);
7883 extern tree composite_pointer_type (const op_location_t &,
7884 tree, tree, tree, tree,
7885 composite_pointer_operation,
7886 tsubst_flags_t);
7887 extern tree merge_types (tree, tree);
7888 extern tree strip_array_domain (tree);
7889 extern tree check_return_expr (tree, bool *);
7890 extern tree spaceship_type (tree, tsubst_flags_t = tf_warning_or_error);
7891 extern tree genericize_spaceship (location_t, tree, tree, tree);
7892 extern tree cp_build_binary_op (const op_location_t &,
7893 enum tree_code, tree, tree,
7894 tsubst_flags_t);
7895 extern tree build_x_vec_perm_expr (location_t,
7896 tree, tree, tree,
7897 tsubst_flags_t);
7898 #define cxx_sizeof(T) cxx_sizeof_or_alignof_type (input_location, T, SIZEOF_EXPR, false, true)
7899 extern tree build_simple_component_ref (tree, tree);
7900 extern tree build_ptrmemfunc_access_expr (tree, tree);
7901 extern tree build_address (tree);
7902 extern tree build_nop (tree, tree);
7903 extern tree non_reference (tree);
7904 extern tree lookup_anon_field (tree, tree);
7905 extern bool invalid_nonstatic_memfn_p (location_t, tree,
7906 tsubst_flags_t);
7907 extern tree convert_member_func_to_ptr (tree, tree, tsubst_flags_t);
7908 extern tree convert_ptrmem (tree, tree, bool, bool,
7909 tsubst_flags_t);
7910 extern int lvalue_or_else (tree, enum lvalue_use,
7911 tsubst_flags_t);
7912 extern void check_template_keyword (tree);
7913 extern bool check_raw_literal_operator (const_tree decl);
7914 extern bool check_literal_operator_args (const_tree, bool *, bool *);
7915 extern void maybe_warn_about_useless_cast (location_t, tree, tree,
7916 tsubst_flags_t);
7917 extern tree cp_perform_integral_promotions (tree, tsubst_flags_t);
7918
7919 extern tree finish_left_unary_fold_expr (tree, int);
7920 extern tree finish_right_unary_fold_expr (tree, int);
7921 extern tree finish_binary_fold_expr (tree, tree, int);
7922 extern tree treat_lvalue_as_rvalue_p (tree, bool);
7923 extern bool decl_in_std_namespace_p (tree);
7924
7925 /* in typeck2.c */
7926 extern void require_complete_eh_spec_types (tree, tree);
7927 extern void cxx_incomplete_type_diagnostic (location_t, const_tree,
7928 const_tree, diagnostic_t);
7929
7930 inline location_t
7931 cp_expr_loc_or_loc (const_tree t, location_t or_loc)
7932 {
7933 location_t loc = cp_expr_location (t);
7934 if (loc == UNKNOWN_LOCATION)
7935 loc = or_loc;
7936 return loc;
7937 }
7938
7939 inline location_t
7940 cp_expr_loc_or_input_loc (const_tree t)
7941 {
7942 return cp_expr_loc_or_loc (t, input_location);
7943 }
7944
7945 inline void
7946 cxx_incomplete_type_diagnostic (const_tree value, const_tree type,
7947 diagnostic_t diag_kind)
7948 {
7949 cxx_incomplete_type_diagnostic (cp_expr_loc_or_input_loc (value),
7950 value, type, diag_kind);
7951 }
7952
7953 extern void cxx_incomplete_type_error (location_t, const_tree,
7954 const_tree);
7955 inline void
7956 cxx_incomplete_type_error (const_tree value, const_tree type)
7957 {
7958 cxx_incomplete_type_diagnostic (value, type, DK_ERROR);
7959 }
7960
7961 extern void cxx_incomplete_type_inform (const_tree);
7962 extern tree error_not_base_type (tree, tree);
7963 extern tree binfo_or_else (tree, tree);
7964 extern void cxx_readonly_error (location_t, tree,
7965 enum lvalue_use);
7966 extern void complete_type_check_abstract (tree);
7967 extern int abstract_virtuals_error (tree, tree);
7968 extern int abstract_virtuals_error (abstract_class_use, tree);
7969 extern int abstract_virtuals_error_sfinae (tree, tree, tsubst_flags_t);
7970 extern int abstract_virtuals_error_sfinae (abstract_class_use, tree, tsubst_flags_t);
7971
7972 extern tree store_init_value (tree, tree, vec<tree, va_gc>**, int);
7973 extern tree split_nonconstant_init (tree, tree);
7974 extern bool check_narrowing (tree, tree, tsubst_flags_t,
7975 bool = false);
7976 extern bool ordinary_char_type_p (tree);
7977 extern bool array_string_literal_compatible_p (tree, tree);
7978 extern tree digest_init (tree, tree, tsubst_flags_t);
7979 extern tree digest_init_flags (tree, tree, int, tsubst_flags_t);
7980 extern tree digest_nsdmi_init (tree, tree, tsubst_flags_t);
7981 extern tree build_scoped_ref (tree, tree, tree *);
7982 extern tree build_x_arrow (location_t, tree,
7983 tsubst_flags_t);
7984 extern tree build_m_component_ref (tree, tree, tsubst_flags_t);
7985 extern tree build_functional_cast (location_t, tree, tree,
7986 tsubst_flags_t);
7987 extern tree add_exception_specifier (tree, tree, tsubst_flags_t);
7988 extern tree merge_exception_specifiers (tree, tree);
7989
7990 /* in mangle.c */
7991 extern void init_mangle (void);
7992 extern void mangle_decl (tree);
7993 extern const char *mangle_type_string (tree);
7994 extern tree mangle_typeinfo_for_type (tree);
7995 extern tree mangle_typeinfo_string_for_type (tree);
7996 extern tree mangle_vtbl_for_type (tree);
7997 extern tree mangle_vtt_for_type (tree);
7998 extern tree mangle_ctor_vtbl_for_type (tree, tree);
7999 extern tree mangle_thunk (tree, int, tree, tree, tree);
8000 extern tree mangle_guard_variable (tree);
8001 extern tree mangle_tls_init_fn (tree);
8002 extern tree mangle_tls_wrapper_fn (tree);
8003 extern bool decl_tls_wrapper_p (tree);
8004 extern tree mangle_ref_init_variable (tree);
8005 extern tree mangle_template_parm_object (tree);
8006 extern char *get_mangled_vtable_map_var_name (tree);
8007 extern bool mangle_return_type_p (tree);
8008 extern tree mangle_decomp (tree, vec<tree> &);
8009 extern void mangle_module_substitution (int);
8010 extern void mangle_identifier (char, tree);
8011 extern tree mangle_module_global_init (int);
8012
8013 /* in dump.c */
8014 extern bool cp_dump_tree (void *, tree);
8015
8016 /* In cp/cp-objcp-common.c. */
8017
8018 extern alias_set_type cxx_get_alias_set (tree);
8019 extern bool cxx_warn_unused_global_decl (const_tree);
8020 extern size_t cp_tree_size (enum tree_code);
8021 extern bool cp_var_mod_type_p (tree, tree);
8022 extern void cxx_initialize_diagnostics (diagnostic_context *);
8023 extern int cxx_types_compatible_p (tree, tree);
8024 extern bool cxx_block_may_fallthru (const_tree);
8025
8026 /* in cp-gimplify.c */
8027 extern int cp_gimplify_expr (tree *, gimple_seq *,
8028 gimple_seq *);
8029 extern void cp_genericize (tree);
8030 extern bool cxx_omp_const_qual_no_mutable (tree);
8031 extern enum omp_clause_default_kind cxx_omp_predetermined_sharing_1 (tree);
8032 extern enum omp_clause_default_kind cxx_omp_predetermined_sharing (tree);
8033 extern enum omp_clause_defaultmap_kind cxx_omp_predetermined_mapping (tree);
8034 extern tree cxx_omp_clause_default_ctor (tree, tree, tree);
8035 extern tree cxx_omp_clause_copy_ctor (tree, tree, tree);
8036 extern tree cxx_omp_clause_assign_op (tree, tree, tree);
8037 extern tree cxx_omp_clause_dtor (tree, tree);
8038 extern void cxx_omp_finish_clause (tree, gimple_seq *, bool);
8039 extern bool cxx_omp_privatize_by_reference (const_tree);
8040 extern bool cxx_omp_disregard_value_expr (tree, bool);
8041 extern void cp_fold_function (tree);
8042 extern tree cp_fold_maybe_rvalue (tree, bool);
8043 extern tree cp_fold_rvalue (tree);
8044 extern tree cp_fully_fold (tree);
8045 extern tree cp_fully_fold_init (tree);
8046 extern tree predeclare_vla (tree);
8047 extern void clear_fold_cache (void);
8048 extern tree lookup_hotness_attribute (tree);
8049 extern tree process_stmt_hotness_attribute (tree, location_t);
8050 extern bool simple_empty_class_p (tree, tree, tree_code);
8051 extern tree fold_builtin_source_location (location_t);
8052
8053 /* in name-lookup.c */
8054 extern tree strip_using_decl (tree);
8055
8056 /* Tell the binding oracle what kind of binding we are looking for. */
8057
8058 enum cp_oracle_request
8059 {
8060 CP_ORACLE_IDENTIFIER
8061 };
8062
8063 /* If this is non-NULL, then it is a "binding oracle" which can lazily
8064 create bindings when needed by the C compiler. The oracle is told
8065 the name and type of the binding to create. It can call pushdecl
8066 or the like to ensure the binding is visible; or do nothing,
8067 leaving the binding untouched. c-decl.c takes note of when the
8068 oracle has been called and will not call it again if it fails to
8069 create a given binding. */
8070
8071 typedef void cp_binding_oracle_function (enum cp_oracle_request, tree identifier);
8072
8073 extern cp_binding_oracle_function *cp_binding_oracle;
8074
8075 /* Set during diagnostics to record the failed constraint. This is a
8076 TREE_LIST whose VALUE is the constraint and whose PURPOSE are the
8077 instantiation arguments Defined in pt.c. */
8078
8079 extern tree current_failed_constraint;
8080
8081 /* An RAII class to manage the failed constraint. */
8082
8083 struct diagnosing_failed_constraint
8084 {
8085 diagnosing_failed_constraint (tree, tree, bool);
8086 ~diagnosing_failed_constraint ();
8087 static bool replay_errors_p ();
8088
8089 bool diagnosing_error;
8090 };
8091
8092 /* in constraint.cc */
8093
8094 extern cp_expr finish_constraint_or_expr (location_t, cp_expr, cp_expr);
8095 extern cp_expr finish_constraint_and_expr (location_t, cp_expr, cp_expr);
8096 extern cp_expr finish_constraint_primary_expr (cp_expr);
8097 extern tree finish_concept_definition (cp_expr, tree);
8098 extern tree combine_constraint_expressions (tree, tree);
8099 extern tree append_constraint (tree, tree);
8100 extern tree get_constraints (const_tree);
8101 extern void set_constraints (tree, tree);
8102 extern void remove_constraints (tree);
8103 extern tree current_template_constraints (void);
8104 extern tree associate_classtype_constraints (tree);
8105 extern tree build_constraints (tree, tree);
8106 extern tree maybe_substitute_reqs_for (tree, const_tree);
8107 extern tree get_trailing_function_requirements (tree);
8108 extern tree get_shorthand_constraints (tree);
8109
8110 extern tree build_concept_id (tree);
8111 extern tree build_type_constraint (tree, tree, tsubst_flags_t);
8112 extern tree build_concept_check (tree, tree, tsubst_flags_t);
8113 extern tree build_concept_check (tree, tree, tree, tsubst_flags_t);
8114
8115 extern tree_pair finish_type_constraints (tree, tree, tsubst_flags_t);
8116 extern tree build_constrained_parameter (tree, tree, tree = NULL_TREE);
8117 extern void placeholder_extract_concept_and_args (tree, tree&, tree&);
8118 extern bool equivalent_placeholder_constraints (tree, tree);
8119 extern hashval_t hash_placeholder_constraint (tree);
8120 extern bool deduce_constrained_parameter (tree, tree&, tree&);
8121 extern tree resolve_constraint_check (tree);
8122 extern tree check_function_concept (tree);
8123 extern tree finish_template_introduction (tree, tree, location_t loc);
8124 extern bool valid_requirements_p (tree);
8125 extern tree finish_concept_name (tree);
8126 extern tree finish_shorthand_constraint (tree, tree);
8127 extern tree finish_requires_expr (location_t, tree, tree);
8128 extern tree finish_simple_requirement (location_t, tree);
8129 extern tree finish_type_requirement (location_t, tree);
8130 extern tree finish_compound_requirement (location_t, tree, tree, bool);
8131 extern tree finish_nested_requirement (location_t, tree);
8132 extern tree tsubst_requires_expr (tree, tree, tsubst_flags_t, tree);
8133 extern tree evaluate_requires_expr (tree);
8134 extern tree tsubst_constraint (tree, tree, tsubst_flags_t, tree);
8135 extern tree tsubst_constraint_info (tree, tree, tsubst_flags_t, tree);
8136 extern tree tsubst_parameter_mapping (tree, tree, tsubst_flags_t, tree);
8137 extern tree get_mapped_args (tree);
8138
8139 struct processing_constraint_expression_sentinel
8140 {
8141 processing_constraint_expression_sentinel ();
8142 ~processing_constraint_expression_sentinel ();
8143 };
8144
8145 extern bool processing_constraint_expression_p ();
8146
8147 extern tree unpack_concept_check (tree);
8148 extern tree evaluate_concept_check (tree);
8149 extern bool constraints_satisfied_p (tree, tree = NULL_TREE);
8150 extern bool* lookup_subsumption_result (tree, tree);
8151 extern bool save_subsumption_result (tree, tree, bool);
8152 extern tree find_template_parameters (tree, tree);
8153 extern bool equivalent_constraints (tree, tree);
8154 extern bool equivalently_constrained (tree, tree);
8155 extern bool strictly_subsumes (tree, tree);
8156 extern bool weakly_subsumes (tree, tree);
8157 extern int more_constrained (tree, tree);
8158 extern bool at_least_as_constrained (tree, tree);
8159 extern bool constraints_equivalent_p (tree, tree);
8160 extern bool atomic_constraints_identical_p (tree, tree);
8161 extern hashval_t iterative_hash_constraint (tree, hashval_t);
8162 extern hashval_t hash_atomic_constraint (tree);
8163 extern void diagnose_constraints (location_t, tree, tree);
8164
8165 extern void note_failed_type_completion_for_satisfaction (tree);
8166
8167 /* A structural hasher for ATOMIC_CONSTRs. */
8168
8169 struct atom_hasher : default_hash_traits<tree>
8170 {
8171 static hashval_t hash (tree t)
8172 {
8173 return hash_atomic_constraint (t);
8174 }
8175
8176 static bool equal (tree t1, tree t2)
8177 {
8178 return atomic_constraints_identical_p (t1, t2);
8179 }
8180 };
8181
8182 /* in logic.cc */
8183 extern bool subsumes (tree, tree);
8184
8185 /* In class.c */
8186 extern void cp_finish_injected_record_type (tree);
8187
8188 /* in vtable-class-hierarchy.c */
8189 extern void vtv_compute_class_hierarchy_transitive_closure (void);
8190 extern void vtv_generate_init_routine (void);
8191 extern void vtv_save_class_info (tree);
8192 extern void vtv_recover_class_info (void);
8193 extern void vtv_build_vtable_verify_fndecl (void);
8194
8195 /* In constexpr.c */
8196 /* Representation of entries in the constexpr function definition table. */
8197
8198 struct GTY((for_user)) constexpr_fundef {
8199 tree decl;
8200 tree body;
8201 tree parms;
8202 tree result;
8203 };
8204
8205 extern void fini_constexpr (void);
8206 extern bool literal_type_p (tree);
8207 extern void maybe_save_constexpr_fundef (tree);
8208 extern void register_constexpr_fundef (const constexpr_fundef &);
8209 extern constexpr_fundef *retrieve_constexpr_fundef (tree);
8210 extern bool is_valid_constexpr_fn (tree, bool);
8211 extern bool check_constexpr_ctor_body (tree, tree, bool);
8212 extern tree constexpr_fn_retval (tree);
8213 extern tree ensure_literal_type_for_constexpr_object (tree);
8214 extern bool potential_constant_expression (tree);
8215 extern bool is_constant_expression (tree);
8216 extern bool is_rvalue_constant_expression (tree);
8217 extern bool is_nondependent_constant_expression (tree);
8218 extern bool is_nondependent_static_init_expression (tree);
8219 extern bool is_static_init_expression (tree);
8220 extern bool potential_rvalue_constant_expression (tree);
8221 extern bool require_potential_constant_expression (tree);
8222 extern bool require_constant_expression (tree);
8223 extern bool require_rvalue_constant_expression (tree);
8224 extern bool require_potential_rvalue_constant_expression (tree);
8225 extern tree cxx_constant_value (tree, tree = NULL_TREE);
8226 extern void cxx_constant_dtor (tree, tree);
8227 extern tree cxx_constant_init (tree, tree = NULL_TREE);
8228 extern tree maybe_constant_value (tree, tree = NULL_TREE, bool = false);
8229 extern tree maybe_constant_init (tree, tree = NULL_TREE, bool = false);
8230 extern tree fold_non_dependent_expr (tree,
8231 tsubst_flags_t = tf_warning_or_error,
8232 bool = false, tree = NULL_TREE);
8233 extern tree maybe_fold_non_dependent_expr (tree,
8234 tsubst_flags_t = tf_warning_or_error);
8235 extern tree fold_non_dependent_init (tree,
8236 tsubst_flags_t = tf_warning_or_error,
8237 bool = false, tree = NULL_TREE);
8238 extern tree fold_simple (tree);
8239 extern bool reduced_constant_expression_p (tree);
8240 extern bool is_instantiation_of_constexpr (tree);
8241 extern bool var_in_constexpr_fn (tree);
8242 extern bool var_in_maybe_constexpr_fn (tree);
8243 extern void explain_invalid_constexpr_fn (tree);
8244 extern vec<tree> cx_error_context (void);
8245 extern tree fold_sizeof_expr (tree);
8246 extern void clear_cv_and_fold_caches (void);
8247 extern tree unshare_constructor (tree CXX_MEM_STAT_INFO);
8248
8249 /* An RAII sentinel used to restrict constexpr evaluation so that it
8250 doesn't do anything that causes extra DECL_UID generation. */
8251
8252 struct uid_sensitive_constexpr_evaluation_sentinel
8253 {
8254 temp_override<bool> ovr;
8255 uid_sensitive_constexpr_evaluation_sentinel ();
8256 };
8257
8258 /* Used to determine whether uid_sensitive_constexpr_evaluation_p was
8259 called and returned true, indicating that we've restricted constexpr
8260 evaluation in order to avoid UID generation. We use this to control
8261 updates to the fold_cache and cv_cache. */
8262
8263 struct uid_sensitive_constexpr_evaluation_checker
8264 {
8265 const unsigned saved_counter;
8266 uid_sensitive_constexpr_evaluation_checker ();
8267 bool evaluation_restricted_p () const;
8268 };
8269
8270 void cp_tree_c_finish_parsing ();
8271
8272 /* In cp-ubsan.c */
8273 extern void cp_ubsan_maybe_instrument_member_call (tree);
8274 extern void cp_ubsan_instrument_member_accesses (tree *);
8275 extern tree cp_ubsan_maybe_instrument_downcast (location_t, tree, tree, tree);
8276 extern tree cp_ubsan_maybe_instrument_cast_to_vbase (location_t, tree, tree);
8277 extern void cp_ubsan_maybe_initialize_vtbl_ptrs (tree);
8278
8279 /* In coroutines.cc */
8280 extern tree finish_co_return_stmt (location_t, tree);
8281 extern tree finish_co_await_expr (location_t, tree);
8282 extern tree finish_co_yield_expr (location_t, tree);
8283 extern tree coro_validate_builtin_call (tree,
8284 tsubst_flags_t = tf_warning_or_error);
8285 extern bool morph_fn_to_coro (tree, tree *, tree *);
8286
8287 /* Inline bodies. */
8288
8289 inline tree
8290 ovl_first (tree node)
8291 {
8292 while (TREE_CODE (node) == OVERLOAD)
8293 node = OVL_FUNCTION (node);
8294 return node;
8295 }
8296
8297 inline bool
8298 type_unknown_p (const_tree expr)
8299 {
8300 return TREE_TYPE (expr) == unknown_type_node;
8301 }
8302
8303 inline hashval_t
8304 named_decl_hash::hash (const value_type decl)
8305 {
8306 tree name = (TREE_CODE (decl) == BINDING_VECTOR
8307 ? BINDING_VECTOR_NAME (decl) : OVL_NAME (decl));
8308 return name ? IDENTIFIER_HASH_VALUE (name) : 0;
8309 }
8310
8311 inline bool
8312 named_decl_hash::equal (const value_type existing, compare_type candidate)
8313 {
8314 tree name = (TREE_CODE (existing) == BINDING_VECTOR
8315 ? BINDING_VECTOR_NAME (existing) : OVL_NAME (existing));
8316 return candidate == name;
8317 }
8318
8319 inline bool
8320 null_node_p (const_tree expr)
8321 {
8322 STRIP_ANY_LOCATION_WRAPPER (expr);
8323 return expr == null_node;
8324 }
8325
8326 /* True iff T is a variable template declaration. */
8327 inline bool
8328 variable_template_p (tree t)
8329 {
8330 if (TREE_CODE (t) != TEMPLATE_DECL)
8331 return false;
8332 if (!PRIMARY_TEMPLATE_P (t))
8333 return false;
8334 if (tree r = DECL_TEMPLATE_RESULT (t))
8335 return VAR_P (r);
8336 return false;
8337 }
8338
8339 /* True iff T is a standard concept definition. This will return
8340 true for both the template and underlying declaration. */
8341
8342 inline bool
8343 standard_concept_p (tree t)
8344 {
8345 if (TREE_CODE (t) == TEMPLATE_DECL)
8346 t = DECL_TEMPLATE_RESULT (t);
8347 return TREE_CODE (t) == CONCEPT_DECL;
8348 }
8349
8350 /* True iff T is a variable concept definition. This will return
8351 true for both the template and the underlying declaration. */
8352
8353 inline bool
8354 variable_concept_p (tree t)
8355 {
8356 if (TREE_CODE (t) == TEMPLATE_DECL)
8357 t = DECL_TEMPLATE_RESULT (t);
8358 return VAR_P (t) && DECL_DECLARED_CONCEPT_P (t);
8359 }
8360
8361 /* True iff T is a function concept definition or an overload set
8362 containing multiple function concepts. This will return true for
8363 both the template and the underlying declaration. */
8364
8365 inline bool
8366 function_concept_p (tree t)
8367 {
8368 if (TREE_CODE (t) == OVERLOAD)
8369 t = OVL_FIRST (t);
8370 if (TREE_CODE (t) == TEMPLATE_DECL)
8371 t = DECL_TEMPLATE_RESULT (t);
8372 return TREE_CODE (t) == FUNCTION_DECL && DECL_DECLARED_CONCEPT_P (t);
8373 }
8374
8375 /* True iff T is a standard, variable, or function concept. */
8376
8377 inline bool
8378 concept_definition_p (tree t)
8379 {
8380 if (t == error_mark_node)
8381 return false;
8382
8383 /* Adjust for function concept overloads. */
8384 if (TREE_CODE (t) == OVERLOAD)
8385 t = OVL_FIRST (t);
8386
8387 /* See through templates. */
8388 if (TREE_CODE (t) == TEMPLATE_DECL)
8389 t = DECL_TEMPLATE_RESULT (t);
8390
8391 /* The obvious and easy case. */
8392 if (TREE_CODE (t) == CONCEPT_DECL)
8393 return true;
8394
8395 /* Definitely not a concept. */
8396 if (!VAR_OR_FUNCTION_DECL_P (t))
8397 return false;
8398 if (!DECL_LANG_SPECIFIC (t))
8399 return false;
8400
8401 return DECL_DECLARED_CONCEPT_P (t);
8402 }
8403
8404 /* Same as above, but for const trees. */
8405
8406 inline bool
8407 concept_definition_p (const_tree t)
8408 {
8409 return concept_definition_p (const_cast<tree> (t));
8410 }
8411
8412 /* True if t is an expression that checks a concept. */
8413
8414 inline bool
8415 concept_check_p (const_tree t)
8416 {
8417 if (TREE_CODE (t) == CALL_EXPR)
8418 t = CALL_EXPR_FN (t);
8419 if (t && TREE_CODE (t) == TEMPLATE_ID_EXPR)
8420 return concept_definition_p (TREE_OPERAND (t, 0));
8421 return false;
8422 }
8423
8424 /* Helpers for IMPLICIT_RVALUE_P to look through automatic dereference. */
8425
8426 inline bool
8427 implicit_rvalue_p (const_tree t)
8428 {
8429 if (REFERENCE_REF_P (t))
8430 t = TREE_OPERAND (t, 0);
8431 return ((TREE_CODE (t) == NON_LVALUE_EXPR
8432 || TREE_CODE (t) == STATIC_CAST_EXPR)
8433 && IMPLICIT_RVALUE_P (t));
8434 }
8435 inline tree
8436 set_implicit_rvalue_p (tree ot)
8437 {
8438 tree t = ot;
8439 if (REFERENCE_REF_P (t))
8440 t = TREE_OPERAND (t, 0);
8441 IMPLICIT_RVALUE_P (t) = 1;
8442 return ot;
8443 }
8444
8445 /* True if t is a "constrained auto" type-specifier. */
8446
8447 inline bool
8448 is_constrained_auto (const_tree t)
8449 {
8450 return is_auto (t) && PLACEHOLDER_TYPE_CONSTRAINTS_INFO (t);
8451 }
8452
8453 /* RAII class to push/pop class scope T; if T is not a class, do nothing. */
8454
8455 struct push_nested_class_guard
8456 {
8457 bool push;
8458 push_nested_class_guard (tree t)
8459 : push (t && CLASS_TYPE_P (t))
8460 {
8461 if (push)
8462 push_nested_class (t);
8463 }
8464 ~push_nested_class_guard ()
8465 {
8466 if (push)
8467 pop_nested_class ();
8468 }
8469 };
8470
8471 #if CHECKING_P
8472 namespace selftest {
8473 extern void run_cp_tests (void);
8474
8475 /* Declarations for specific families of tests within cp,
8476 by source file, in alphabetical order. */
8477 extern void cp_pt_c_tests ();
8478 extern void cp_tree_c_tests (void);
8479 } // namespace selftest
8480 #endif /* #if CHECKING_P */
8481
8482 /* -- end of C++ */
8483
8484 #endif /* ! GCC_CP_TREE_H */
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