re PR c++/11808 (Wrong namespace lookup for template function when induced by a templ...
[gcc.git] / gcc / cp / cp-tree.h
1 /* Definitions for C++ parsing and type checking.
2 Copyright (C) 1987, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
3 2000, 2001, 2002, 2003 Free Software Foundation, Inc.
4 Contributed by Michael Tiemann (tiemann@cygnus.com)
5
6 This file is part of GCC.
7
8 GCC is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2, or (at your option)
11 any later version.
12
13 GCC is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING. If not, write to
20 the Free Software Foundation, 59 Temple Place - Suite 330,
21 Boston, MA 02111-1307, USA. */
22
23 #ifndef GCC_CP_TREE_H
24 #define GCC_CP_TREE_H
25
26 #include "ggc.h"
27 #include "function.h"
28 #include "hashtab.h"
29 #include "splay-tree.h"
30 #include "varray.h"
31
32 #include "c-common.h"
33 #include "name-lookup.h"
34
35 struct diagnostic_context;
36
37 /* Usage of TREE_LANG_FLAG_?:
38 0: BINFO_MARKED (BINFO nodes).
39 IDENTIFIER_MARKED (IDENTIFIER_NODEs)
40 NEW_EXPR_USE_GLOBAL (in NEW_EXPR).
41 DELETE_EXPR_USE_GLOBAL (in DELETE_EXPR).
42 TREE_INDIRECT_USING (in NAMESPACE_DECL).
43 ICS_USER_FLAG (in _CONV)
44 CLEANUP_P (in TRY_BLOCK)
45 AGGR_INIT_VIA_CTOR_P (in AGGR_INIT_EXPR)
46 PTRMEM_OK_P (in ADDR_EXPR, OFFSET_REF)
47 PARMLIST_ELLIPSIS_P (in PARMLIST)
48 DECL_PRETTY_FUNCTION_P (in VAR_DECL)
49 KOENIG_LOOKUP_P (in CALL_EXPR)
50 1: IDENTIFIER_VIRTUAL_P.
51 TI_PENDING_TEMPLATE_FLAG.
52 TEMPLATE_PARMS_FOR_INLINE.
53 DELETE_EXPR_USE_VEC (in DELETE_EXPR).
54 (TREE_CALLS_NEW) (in _EXPR or _REF) (commented-out).
55 TYPE_BASE_CONVS_MAY_REQUIRE_CODE_P (in _TYPE).
56 ICS_ELLIPSIS_FLAG (in _CONV)
57 BINFO_DEPENDENT_BASE_P (in BINFO)
58 DECL_INITIALIZED_P (in VAR_DECL)
59 2: IDENTIFIER_OPNAME_P.
60 TYPE_POLYMORPHIC_P (in _TYPE)
61 ICS_THIS_FLAG (in _CONV)
62 BINFO_LOST_PRIMARY_P (in BINFO)
63 TREE_PARMLIST (in TREE_LIST)
64 DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P (in VAR_DECL)
65 3: TYPE_USES_VIRTUAL_BASECLASSES (in a class TYPE).
66 BINFO_VTABLE_PATH_MARKED.
67 BINFO_PUSHDECLS_MARKED.
68 (TREE_REFERENCE_EXPR) (in NON_LVALUE_EXPR) (commented-out).
69 ICS_BAD_FLAG (in _CONV)
70 FN_TRY_BLOCK_P (in TRY_BLOCK)
71 IDENTIFIER_CTOR_OR_DTOR_P (in IDENTIFIER_NODE)
72 4: BINFO_NEW_VTABLE_MARKED.
73 TREE_HAS_CONSTRUCTOR (in INDIRECT_REF, SAVE_EXPR, CONSTRUCTOR,
74 or FIELD_DECL).
75 NEED_TEMPORARY_P (in REF_BIND, BASE_CONV)
76 IDENTIFIER_TYPENAME_P (in IDENTIFIER_NODE)
77 5: C_IS_RESERVED_WORD (in IDENTIFIER_NODE)
78 DECL_VTABLE_OR_VTT_P (in VAR_DECL)
79 6: For future expansion
80
81 Usage of TYPE_LANG_FLAG_?:
82 0: TYPE_DEPENDENT_P
83 1: TYPE_HAS_CONSTRUCTOR.
84 2: TYPE_HAS_DESTRUCTOR.
85 3: TYPE_FOR_JAVA.
86 4: TYPE_HAS_NONTRIVIAL_DESTRUCTOR
87 5: IS_AGGR_TYPE.
88 6: TYPE_DEPENDENT_P_VALID
89
90 Usage of DECL_LANG_FLAG_?:
91 0: DECL_ERROR_REPORTED (in VAR_DECL).
92 DECL_TEMPLATE_PARM_P (in PARM_DECL, CONST_DECL, TYPE_DECL, or TEMPLATE_DECL)
93 DECL_LOCAL_FUNCTION_P (in FUNCTION_DECL)
94 DECL_MUTABLE_P (in FIELD_DECL)
95 1: C_TYPEDEF_EXPLICITLY_SIGNED (in TYPE_DECL).
96 DECL_TEMPLATE_INSTANTIATED (in a VAR_DECL or a FUNCTION_DECL)
97 2: DECL_THIS_EXTERN (in VAR_DECL or FUNCTION_DECL).
98 DECL_IMPLICIT_TYPEDEF_P (in a TYPE_DECL)
99 3: DECL_IN_AGGR_P.
100 4: DECL_C_BIT_FIELD (in a FIELD_DECL)
101 DECL_VAR_MARKED_P (in a VAR_DECL)
102 DECL_SELF_REFERENCE_P (in a TYPE_DECL)
103 5: DECL_INTERFACE_KNOWN.
104 6: DECL_THIS_STATIC (in VAR_DECL or FUNCTION_DECL).
105 7: DECL_DEAD_FOR_LOCAL (in VAR_DECL).
106 DECL_THUNK_P (in a member FUNCTION_DECL)
107
108 Usage of language-independent fields in a language-dependent manner:
109
110 TREE_USED
111 This field is BINFO_INDIRECT_PRIMARY_P in a BINFO.
112
113 TYPE_ALIAS_SET
114 This field is used by TYPENAME_TYPEs, TEMPLATE_TYPE_PARMs, and so
115 forth as a substitute for the mark bits provided in `lang_type'.
116 At present, only the six low-order bits are used.
117
118 TYPE_BINFO
119 For an ENUMERAL_TYPE, this is ENUM_TEMPLATE_INFO.
120 For a FUNCTION_TYPE or METHOD_TYPE, this is TYPE_RAISES_EXCEPTIONS
121
122 BINFO_VIRTUALS
123 For a binfo, this is a TREE_LIST. There is an entry for each
124 virtual function declared either in BINFO or its direct and
125 indirect primary bases.
126
127 The BV_DELTA of each node gives the amount by which to adjust the
128 `this' pointer when calling the function. If the method is an
129 overridden version of a base class method, then it is assumed
130 that, prior to adjustment, the this pointer points to an object
131 of the base class.
132
133 The BV_VCALL_INDEX of each node, if non-NULL, gives the vtable
134 index of the vcall offset for this entry.
135
136 The BV_FN is the declaration for the virtual function itself.
137
138 BINFO_VTABLE
139 This is an expression with POINTER_TYPE that gives the value
140 to which the vptr should be initialized. Use get_vtbl_decl_for_binfo
141 to extract the VAR_DECL for the complete vtable.
142
143 DECL_ARGUMENTS
144 For a VAR_DECL this is DECL_ANON_UNION_ELEMS.
145
146 DECL_VINDEX
147 This field is NULL for a non-virtual function. For a virtual
148 function, it is eventually set to an INTEGER_CST indicating the
149 index in the vtable at which this function can be found. When
150 a virtual function is declared, but before it is known what
151 function is overridden, this field is the error_mark_node.
152
153 Temporarily, it may be set to a TREE_LIST whose TREE_VALUE is
154 the virtual function this one overrides, and whose TREE_CHAIN is
155 the old DECL_VINDEX. */
156
157 /* Language-specific tree checkers. */
158
159 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
160
161 #define VAR_OR_FUNCTION_DECL_CHECK(NODE) __extension__ \
162 ({ const tree __t = (NODE); \
163 enum tree_code const __c = TREE_CODE(__t); \
164 if (__c != VAR_DECL && __c != FUNCTION_DECL) \
165 tree_check_failed (__t, VAR_DECL, __FILE__, __LINE__, \
166 __FUNCTION__); \
167 __t; })
168
169 #define VAR_FUNCTION_OR_PARM_DECL_CHECK(NODE) __extension__ \
170 ({ const tree __t = (NODE); \
171 enum tree_code const __c = TREE_CODE(__t); \
172 if (__c != VAR_DECL \
173 && __c != FUNCTION_DECL \
174 && __c != PARM_DECL) \
175 tree_check_failed (__t, VAR_DECL, __FILE__, __LINE__, \
176 __FUNCTION__); \
177 __t; })
178
179 #define VAR_TEMPL_TYPE_OR_FUNCTION_DECL_CHECK(NODE) __extension__ \
180 ({ const tree __t = (NODE); \
181 enum tree_code const __c = TREE_CODE(__t); \
182 if (__c != VAR_DECL \
183 && __c != FUNCTION_DECL \
184 && __c != TYPE_DECL \
185 && __c != TEMPLATE_DECL) \
186 tree_check_failed (__t, VAR_DECL, __FILE__, __LINE__, \
187 __FUNCTION__); \
188 __t; })
189
190 #define RECORD_OR_UNION_TYPE_CHECK(NODE) __extension__ \
191 ({ const tree __t = (NODE); \
192 enum tree_code const __c = TREE_CODE(__t); \
193 if (__c != RECORD_TYPE && __c != UNION_TYPE) \
194 tree_check_failed (__t, RECORD_TYPE, __FILE__, __LINE__, \
195 __FUNCTION__); \
196 __t; })
197
198 #define BOUND_TEMPLATE_TEMPLATE_PARM_TYPE_CHECK(NODE) __extension__ \
199 ({ const tree __t = (NODE); \
200 enum tree_code const __c = TREE_CODE(__t); \
201 if (__c != BOUND_TEMPLATE_TEMPLATE_PARM) \
202 tree_check_failed (__t, BOUND_TEMPLATE_TEMPLATE_PARM, \
203 __FILE__, __LINE__, __FUNCTION__); \
204 __t; })
205
206 #else /* not ENABLE_TREE_CHECKING, or not gcc */
207
208 #define VAR_OR_FUNCTION_DECL_CHECK(NODE) (NODE)
209 #define VAR_FUNCTION_OR_PARM_DECL_CHECK(NODE) (NODE)
210 #define VAR_TEMPL_TYPE_OR_FUNCTION_DECL_CHECK(NODE) (NODE)
211 #define RECORD_OR_UNION_TYPE_CHECK(NODE) (NODE)
212 #define BOUND_TEMPLATE_TEMPLATE_PARM_TYPE_CHECK(NODE) (NODE)
213
214 #endif
215
216 /* Returns TRUE if generated code should match ABI version N or
217 greater is in use. */
218
219 #define abi_version_at_least(N) \
220 (flag_abi_version == 0 || flag_abi_version >= (N))
221
222 \f
223 /* Language-dependent contents of an identifier. */
224
225 struct lang_identifier GTY(())
226 {
227 struct c_common_identifier c_common;
228 cxx_binding *namespace_bindings;
229 cxx_binding *bindings;
230 tree class_value;
231 tree class_template_info;
232 tree label_value;
233 tree implicit_decl;
234 tree error_locus;
235 };
236
237 /* In an IDENTIFIER_NODE, nonzero if this identifier is actually a
238 keyword. C_RID_CODE (node) is then the RID_* value of the keyword,
239 and C_RID_YYCODE is the token number wanted by Yacc. */
240
241 #define C_IS_RESERVED_WORD(ID) TREE_LANG_FLAG_5 (ID)
242
243 #define LANG_IDENTIFIER_CAST(NODE) \
244 ((struct lang_identifier*)IDENTIFIER_NODE_CHECK (NODE))
245
246 typedef struct template_parm_index_s GTY(())
247 {
248 struct tree_common common;
249 HOST_WIDE_INT index;
250 HOST_WIDE_INT level;
251 HOST_WIDE_INT orig_level;
252 tree decl;
253 } template_parm_index;
254
255 struct ptrmem_cst GTY(())
256 {
257 struct tree_common common;
258 /* This isn't used, but the middle-end expects all constants to have
259 this field. */
260 rtx rtl;
261 tree member;
262 };
263 typedef struct ptrmem_cst * ptrmem_cst_t;
264
265 #define IDENTIFIER_GLOBAL_VALUE(NODE) \
266 namespace_binding ((NODE), global_namespace)
267 #define SET_IDENTIFIER_GLOBAL_VALUE(NODE, VAL) \
268 set_namespace_binding ((NODE), global_namespace, (VAL))
269 #define IDENTIFIER_NAMESPACE_VALUE(NODE) \
270 namespace_binding ((NODE), current_namespace)
271 #define SET_IDENTIFIER_NAMESPACE_VALUE(NODE, VAL) \
272 set_namespace_binding ((NODE), current_namespace, (VAL))
273
274 #define CLEANUP_P(NODE) TREE_LANG_FLAG_0 (TRY_BLOCK_CHECK (NODE))
275
276 /* Returns nonzero iff TYPE1 and TYPE2 are the same type, in the usual
277 sense of `same'. */
278 #define same_type_p(TYPE1, TYPE2) \
279 comptypes ((TYPE1), (TYPE2), COMPARE_STRICT)
280
281 /* Returns nonzero iff TYPE1 and TYPE2 are the same type, ignoring
282 top-level qualifiers. */
283 #define same_type_ignoring_top_level_qualifiers_p(TYPE1, TYPE2) \
284 same_type_p (TYPE_MAIN_VARIANT (TYPE1), TYPE_MAIN_VARIANT (TYPE2))
285
286 /* Nonzero if we are presently building a statement tree, rather
287 than expanding each statement as we encounter it. */
288 #define building_stmt_tree() (last_tree != NULL_TREE)
289
290 /* Returns nonzero iff NODE is a declaration for the global function
291 `main'. */
292 #define DECL_MAIN_P(NODE) \
293 (DECL_EXTERN_C_FUNCTION_P (NODE) \
294 && DECL_NAME (NODE) != NULL_TREE \
295 && MAIN_NAME_P (DECL_NAME (NODE)))
296
297 /* The overloaded FUNCTION_DECL. */
298 #define OVL_FUNCTION(NODE) \
299 (((struct tree_overload*)OVERLOAD_CHECK (NODE))->function)
300 #define OVL_CHAIN(NODE) TREE_CHAIN (NODE)
301 /* Polymorphic access to FUNCTION and CHAIN. */
302 #define OVL_CURRENT(NODE) \
303 ((TREE_CODE (NODE) == OVERLOAD) ? OVL_FUNCTION (NODE) : (NODE))
304 #define OVL_NEXT(NODE) \
305 ((TREE_CODE (NODE) == OVERLOAD) ? TREE_CHAIN (NODE) : NULL_TREE)
306 /* If set, this was imported in a using declaration.
307 This is not to confuse with being used somewhere, which
308 is not important for this node. */
309 #define OVL_USED(NODE) TREE_USED (NODE)
310
311 struct tree_overload GTY(())
312 {
313 struct tree_common common;
314 tree function;
315 };
316
317 /* Returns true iff NODE is a BASELINK. */
318 #define BASELINK_P(NODE) \
319 (TREE_CODE (NODE) == BASELINK)
320 /* The BINFO indicating the base from which the BASELINK_FUNCTIONS came. */
321 #define BASELINK_BINFO(NODE) \
322 (((struct tree_baselink*) BASELINK_CHECK (NODE))->binfo)
323 /* The functions referred to by the BASELINK; either a FUNCTION_DECL,
324 a TEMPLATE_DECL, an OVERLOAD, or a TEMPLATE_ID_EXPR. */
325 #define BASELINK_FUNCTIONS(NODE) \
326 (((struct tree_baselink*) BASELINK_CHECK (NODE))->functions)
327 /* The BINFO in which the search for the functions indicated by this baselink
328 began. This base is used to determine the accessibility of functions
329 selected by overload resolution. */
330 #define BASELINK_ACCESS_BINFO(NODE) \
331 (((struct tree_baselink*) BASELINK_CHECK (NODE))->access_binfo)
332 /* For a type-conversion operator, the BASELINK_OPTYPE indicates the type
333 to which the conversion should occur. This value is important if
334 the BASELINK_FUNCTIONS include a template conversion operator --
335 the BASELINK_OPTYPE can be used to determine what type the user
336 requested. */
337 #define BASELINK_OPTYPE(NODE) \
338 (TREE_CHAIN (BASELINK_CHECK (NODE)))
339
340 struct tree_baselink GTY(())
341 {
342 struct tree_common common;
343 tree binfo;
344 tree functions;
345 tree access_binfo;
346 };
347
348 #define WRAPPER_ZC(NODE) (((struct tree_wrapper*)WRAPPER_CHECK (NODE))->z_c)
349
350 struct tree_wrapper GTY(())
351 {
352 struct tree_common common;
353 struct z_candidate *z_c;
354 };
355
356 /* The different kinds of ids that we ecounter. */
357
358 typedef enum cp_id_kind
359 {
360 /* Not an id at all. */
361 CP_ID_KIND_NONE,
362 /* An unqualified-id that is not a template-id. */
363 CP_ID_KIND_UNQUALIFIED,
364 /* An uqualified-id that is a dependent name. */
365 CP_ID_KIND_UNQUALIFIED_DEPENDENT,
366 /* An unqualified template-id. */
367 CP_ID_KIND_TEMPLATE_ID,
368 /* A qualified-id. */
369 CP_ID_KIND_QUALIFIED
370 } cp_id_kind;
371
372 /* Macros for access to language-specific slots in an identifier. */
373
374 #define IDENTIFIER_NAMESPACE_BINDINGS(NODE) \
375 (LANG_IDENTIFIER_CAST (NODE)->namespace_bindings)
376 #define IDENTIFIER_TEMPLATE(NODE) \
377 (LANG_IDENTIFIER_CAST (NODE)->class_template_info)
378
379 /* The IDENTIFIER_BINDING is the innermost cxx_binding for the
380 identifier. It's PREVIOUS is the next outermost binding. Each
381 BINDING_VALUE is a DECL for the associated declaration. Thus,
382 name lookup consists simply of pulling off the node at the front
383 of the list (modulo oddities for looking up the names of types,
384 and such.) You can use BINDING_SCOPE to determine the scope
385 that bound the name. */
386 #define IDENTIFIER_BINDING(NODE) \
387 (LANG_IDENTIFIER_CAST (NODE)->bindings)
388
389 /* The IDENTIFIER_VALUE is the value of the IDENTIFIER_BINDING, or
390 NULL_TREE if there is no binding. */
391 #define IDENTIFIER_VALUE(NODE) \
392 (IDENTIFIER_BINDING (NODE) ? IDENTIFIER_BINDING (NODE)->value : NULL)
393
394 /* If IDENTIFIER_CLASS_VALUE is set, then NODE is bound in the current
395 class, and IDENTIFIER_CLASS_VALUE is the value binding. This is
396 just a pointer to the BINDING_VALUE of one of the bindings in the
397 IDENTIFIER_BINDINGs list, so any time that this is non-NULL so is
398 IDENTIFIER_BINDING. */
399 #define IDENTIFIER_CLASS_VALUE(NODE) \
400 (LANG_IDENTIFIER_CAST (NODE)->class_value)
401
402 /* TREE_TYPE only indicates on local and class scope the current
403 type. For namespace scope, the presence of a type in any namespace
404 is indicated with global_type_node, and the real type behind must
405 be found through lookup. */
406 #define IDENTIFIER_TYPE_VALUE(NODE) identifier_type_value (NODE)
407 #define REAL_IDENTIFIER_TYPE_VALUE(NODE) TREE_TYPE (NODE)
408 #define SET_IDENTIFIER_TYPE_VALUE(NODE,TYPE) (TREE_TYPE (NODE) = (TYPE))
409 #define IDENTIFIER_HAS_TYPE_VALUE(NODE) (IDENTIFIER_TYPE_VALUE (NODE) ? 1 : 0)
410
411 #define IDENTIFIER_LABEL_VALUE(NODE) \
412 (LANG_IDENTIFIER_CAST (NODE)->label_value)
413 #define SET_IDENTIFIER_LABEL_VALUE(NODE, VALUE) \
414 IDENTIFIER_LABEL_VALUE (NODE) = (VALUE)
415
416 #define IDENTIFIER_IMPLICIT_DECL(NODE) \
417 (LANG_IDENTIFIER_CAST (NODE)->implicit_decl)
418 #define SET_IDENTIFIER_IMPLICIT_DECL(NODE, VALUE) \
419 IDENTIFIER_IMPLICIT_DECL (NODE) = (VALUE)
420
421 #define IDENTIFIER_ERROR_LOCUS(NODE) \
422 (LANG_IDENTIFIER_CAST (NODE)->error_locus)
423 #define SET_IDENTIFIER_ERROR_LOCUS(NODE, VALUE) \
424 IDENTIFIER_ERROR_LOCUS (NODE) = (VALUE)
425
426 /* Nonzero if this identifier is used as a virtual function name somewhere
427 (optimizes searches). */
428 #define IDENTIFIER_VIRTUAL_P(NODE) TREE_LANG_FLAG_1 (NODE)
429
430 /* Nonzero if this identifier is the prefix for a mangled C++ operator
431 name. */
432 #define IDENTIFIER_OPNAME_P(NODE) TREE_LANG_FLAG_2 (NODE)
433
434 /* Nonzero if this identifier is the name of a type-conversion
435 operator. */
436 #define IDENTIFIER_TYPENAME_P(NODE) \
437 TREE_LANG_FLAG_4 (NODE)
438
439 /* Nonzero if this identifier is the name of a constructor or
440 destructor. */
441 #define IDENTIFIER_CTOR_OR_DTOR_P(NODE) \
442 TREE_LANG_FLAG_3 (NODE)
443
444 /* In a RECORD_TYPE or UNION_TYPE, nonzero if any component is read-only. */
445 #define C_TYPE_FIELDS_READONLY(TYPE) \
446 (LANG_TYPE_CLASS_CHECK (TYPE)->fields_readonly)
447
448 /* Store a value in that field. */
449 #define C_SET_EXP_ORIGINAL_CODE(EXP, CODE) \
450 (TREE_COMPLEXITY (EXP) = (int)(CODE))
451
452 /* The tokens stored in the default argument. */
453
454 #define DEFARG_TOKENS(NODE) \
455 (((struct tree_default_arg *)DEFAULT_ARG_CHECK (NODE))->tokens)
456
457 struct tree_default_arg GTY (())
458 {
459 struct tree_common common;
460 struct cp_token_cache *tokens;
461 };
462
463 enum cp_tree_node_structure_enum {
464 TS_CP_GENERIC,
465 TS_CP_IDENTIFIER,
466 TS_CP_TPI,
467 TS_CP_PTRMEM,
468 TS_CP_BINDING,
469 TS_CP_OVERLOAD,
470 TS_CP_BASELINK,
471 TS_CP_WRAPPER,
472 TS_CP_DEFAULT_ARG,
473 LAST_TS_CP_ENUM
474 };
475
476 /* The resulting tree type. */
477 union lang_tree_node GTY((desc ("cp_tree_node_structure (&%h)"),
478 chain_next ("(union lang_tree_node *)TREE_CHAIN (&%h.generic)")))
479 {
480 union tree_node GTY ((tag ("TS_CP_GENERIC"),
481 desc ("tree_node_structure (&%h)"))) generic;
482 struct template_parm_index_s GTY ((tag ("TS_CP_TPI"))) tpi;
483 struct ptrmem_cst GTY ((tag ("TS_CP_PTRMEM"))) ptrmem;
484 struct tree_overload GTY ((tag ("TS_CP_OVERLOAD"))) overload;
485 struct tree_baselink GTY ((tag ("TS_CP_BASELINK"))) baselink;
486 struct tree_wrapper GTY ((tag ("TS_CP_WRAPPER"))) wrapper;
487 struct tree_default_arg GTY ((tag ("TS_CP_DEFAULT_ARG"))) default_arg;
488 struct lang_identifier GTY ((tag ("TS_CP_IDENTIFIER"))) identifier;
489 };
490
491 \f
492 enum cp_tree_index
493 {
494 CPTI_JAVA_BYTE_TYPE,
495 CPTI_JAVA_SHORT_TYPE,
496 CPTI_JAVA_INT_TYPE,
497 CPTI_JAVA_LONG_TYPE,
498 CPTI_JAVA_FLOAT_TYPE,
499 CPTI_JAVA_DOUBLE_TYPE,
500 CPTI_JAVA_CHAR_TYPE,
501 CPTI_JAVA_BOOLEAN_TYPE,
502
503 CPTI_WCHAR_DECL,
504 CPTI_VTABLE_ENTRY_TYPE,
505 CPTI_DELTA_TYPE,
506 CPTI_VTABLE_INDEX_TYPE,
507 CPTI_CLEANUP_TYPE,
508 CPTI_VTT_PARM_TYPE,
509
510 CPTI_TI_DESC_TYPE,
511 CPTI_BLTN_DESC_TYPE,
512 CPTI_PTR_DESC_TYPE,
513 CPTI_ARY_DESC_TYPE,
514 CPTI_FUNC_DESC_TYPE,
515 CPTI_ENUM_DESC_TYPE,
516 CPTI_CLASS_DESC_TYPE,
517 CPTI_SI_CLASS_DESC_TYPE,
518 CPTI_VMI_CLASS_DESC_TYPE,
519 CPTI_PTM_DESC_TYPE,
520 CPTI_BASE_DESC_TYPE,
521
522 CPTI_CLASS_TYPE,
523 CPTI_RECORD_TYPE,
524 CPTI_UNION_TYPE,
525 CPTI_ENUM_TYPE,
526 CPTI_UNKNOWN_TYPE,
527 CPTI_VTBL_TYPE,
528 CPTI_VTBL_PTR_TYPE,
529 CPTI_STD,
530 CPTI_ABI,
531 CPTI_TYPE_INFO_TYPE,
532 CPTI_TYPE_INFO_PTR_TYPE,
533 CPTI_TYPE_INFO_REF_TYPE,
534 CPTI_ABORT_FNDECL,
535 CPTI_GLOBAL_DELETE_FNDECL,
536 CPTI_AGGR_TAG,
537
538 CPTI_CTOR_IDENTIFIER,
539 CPTI_COMPLETE_CTOR_IDENTIFIER,
540 CPTI_BASE_CTOR_IDENTIFIER,
541 CPTI_DTOR_IDENTIFIER,
542 CPTI_COMPLETE_DTOR_IDENTIFIER,
543 CPTI_BASE_DTOR_IDENTIFIER,
544 CPTI_DELETING_DTOR_IDENTIFIER,
545 CPTI_DELTA_IDENTIFIER,
546 CPTI_IN_CHARGE_IDENTIFIER,
547 CPTI_VTT_PARM_IDENTIFIER,
548 CPTI_NELTS_IDENTIFIER,
549 CPTI_THIS_IDENTIFIER,
550 CPTI_PFN_IDENTIFIER,
551 CPTI_VPTR_IDENTIFIER,
552 CPTI_STD_IDENTIFIER,
553
554 CPTI_LANG_NAME_C,
555 CPTI_LANG_NAME_CPLUSPLUS,
556 CPTI_LANG_NAME_JAVA,
557
558 CPTI_EMPTY_EXCEPT_SPEC,
559 CPTI_NULL,
560 CPTI_JCLASS,
561 CPTI_TERMINATE,
562 CPTI_CALL_UNEXPECTED,
563 CPTI_ATEXIT,
564 CPTI_DSO_HANDLE,
565 CPTI_DCAST,
566
567 CPTI_KEYED_CLASSES,
568
569 CPTI_MAX
570 };
571
572 extern GTY(()) tree cp_global_trees[CPTI_MAX];
573
574 #define java_byte_type_node cp_global_trees[CPTI_JAVA_BYTE_TYPE]
575 #define java_short_type_node cp_global_trees[CPTI_JAVA_SHORT_TYPE]
576 #define java_int_type_node cp_global_trees[CPTI_JAVA_INT_TYPE]
577 #define java_long_type_node cp_global_trees[CPTI_JAVA_LONG_TYPE]
578 #define java_float_type_node cp_global_trees[CPTI_JAVA_FLOAT_TYPE]
579 #define java_double_type_node cp_global_trees[CPTI_JAVA_DOUBLE_TYPE]
580 #define java_char_type_node cp_global_trees[CPTI_JAVA_CHAR_TYPE]
581 #define java_boolean_type_node cp_global_trees[CPTI_JAVA_BOOLEAN_TYPE]
582
583 #define wchar_decl_node cp_global_trees[CPTI_WCHAR_DECL]
584 #define vtable_entry_type cp_global_trees[CPTI_VTABLE_ENTRY_TYPE]
585 /* The type used to represent an offset by which to adjust the `this'
586 pointer in pointer-to-member types. */
587 #define delta_type_node cp_global_trees[CPTI_DELTA_TYPE]
588 /* The type used to represent an index into the vtable. */
589 #define vtable_index_type cp_global_trees[CPTI_VTABLE_INDEX_TYPE]
590
591 #define ti_desc_type_node cp_global_trees[CPTI_TI_DESC_TYPE]
592 #define bltn_desc_type_node cp_global_trees[CPTI_BLTN_DESC_TYPE]
593 #define ptr_desc_type_node cp_global_trees[CPTI_PTR_DESC_TYPE]
594 #define ary_desc_type_node cp_global_trees[CPTI_ARY_DESC_TYPE]
595 #define func_desc_type_node cp_global_trees[CPTI_FUNC_DESC_TYPE]
596 #define enum_desc_type_node cp_global_trees[CPTI_ENUM_DESC_TYPE]
597 #define class_desc_type_node cp_global_trees[CPTI_CLASS_DESC_TYPE]
598 #define si_class_desc_type_node cp_global_trees[CPTI_SI_CLASS_DESC_TYPE]
599 #define vmi_class_desc_type_node cp_global_trees[CPTI_VMI_CLASS_DESC_TYPE]
600 #define ptm_desc_type_node cp_global_trees[CPTI_PTM_DESC_TYPE]
601 #define base_desc_type_node cp_global_trees[CPTI_BASE_DESC_TYPE]
602
603 #define class_type_node cp_global_trees[CPTI_CLASS_TYPE]
604 #define record_type_node cp_global_trees[CPTI_RECORD_TYPE]
605 #define union_type_node cp_global_trees[CPTI_UNION_TYPE]
606 #define enum_type_node cp_global_trees[CPTI_ENUM_TYPE]
607 #define unknown_type_node cp_global_trees[CPTI_UNKNOWN_TYPE]
608 #define vtbl_type_node cp_global_trees[CPTI_VTBL_TYPE]
609 #define vtbl_ptr_type_node cp_global_trees[CPTI_VTBL_PTR_TYPE]
610 #define std_node cp_global_trees[CPTI_STD]
611 #define abi_node cp_global_trees[CPTI_ABI]
612 #define type_info_type_node cp_global_trees[CPTI_TYPE_INFO_TYPE]
613 #define type_info_ptr_type cp_global_trees[CPTI_TYPE_INFO_PTR_TYPE]
614 #define type_info_ref_type cp_global_trees[CPTI_TYPE_INFO_REF_TYPE]
615 #define abort_fndecl cp_global_trees[CPTI_ABORT_FNDECL]
616 #define global_delete_fndecl cp_global_trees[CPTI_GLOBAL_DELETE_FNDECL]
617 #define current_aggr cp_global_trees[CPTI_AGGR_TAG]
618
619 /* We cache these tree nodes so as to call get_identifier less
620 frequently. */
621
622 /* The name of a constructor that takes an in-charge parameter to
623 decide whether or not to construct virtual base classes. */
624 #define ctor_identifier cp_global_trees[CPTI_CTOR_IDENTIFIER]
625 /* The name of a constructor that constructs virtual base classes. */
626 #define complete_ctor_identifier cp_global_trees[CPTI_COMPLETE_CTOR_IDENTIFIER]
627 /* The name of a constructor that does not construct virtual base classes. */
628 #define base_ctor_identifier cp_global_trees[CPTI_BASE_CTOR_IDENTIFIER]
629 /* The name of a destructor that takes an in-charge parameter to
630 decide whether or not to destroy virtual base classes and whether
631 or not to delete the object. */
632 #define dtor_identifier cp_global_trees[CPTI_DTOR_IDENTIFIER]
633 /* The name of a destructor that destroys virtual base classes. */
634 #define complete_dtor_identifier cp_global_trees[CPTI_COMPLETE_DTOR_IDENTIFIER]
635 /* The name of a destructor that does not destroy virtual base
636 classes. */
637 #define base_dtor_identifier cp_global_trees[CPTI_BASE_DTOR_IDENTIFIER]
638 /* The name of a destructor that destroys virtual base classes, and
639 then deletes the entire object. */
640 #define deleting_dtor_identifier cp_global_trees[CPTI_DELETING_DTOR_IDENTIFIER]
641 #define delta_identifier cp_global_trees[CPTI_DELTA_IDENTIFIER]
642 #define in_charge_identifier cp_global_trees[CPTI_IN_CHARGE_IDENTIFIER]
643 /* The name of the parameter that contains a pointer to the VTT to use
644 for this subobject constructor or destructor. */
645 #define vtt_parm_identifier cp_global_trees[CPTI_VTT_PARM_IDENTIFIER]
646 #define nelts_identifier cp_global_trees[CPTI_NELTS_IDENTIFIER]
647 #define this_identifier cp_global_trees[CPTI_THIS_IDENTIFIER]
648 #define pfn_identifier cp_global_trees[CPTI_PFN_IDENTIFIER]
649 #define vptr_identifier cp_global_trees[CPTI_VPTR_IDENTIFIER]
650 /* The name of the std namespace. */
651 #define std_identifier cp_global_trees[CPTI_STD_IDENTIFIER]
652 #define lang_name_c cp_global_trees[CPTI_LANG_NAME_C]
653 #define lang_name_cplusplus cp_global_trees[CPTI_LANG_NAME_CPLUSPLUS]
654 #define lang_name_java cp_global_trees[CPTI_LANG_NAME_JAVA]
655
656 /* Exception specifier used for throw(). */
657 #define empty_except_spec cp_global_trees[CPTI_EMPTY_EXCEPT_SPEC]
658
659 /* The node for `__null'. */
660 #define null_node cp_global_trees[CPTI_NULL]
661
662 /* If non-NULL, a POINTER_TYPE equivalent to (java::lang::Class*). */
663 #define jclass_node cp_global_trees[CPTI_JCLASS]
664
665 /* The declaration for `std::terminate'. */
666 #define terminate_node cp_global_trees[CPTI_TERMINATE]
667
668 /* The declaration for "__cxa_call_unexpected". */
669 #define call_unexpected_node cp_global_trees[CPTI_CALL_UNEXPECTED]
670
671 /* A pointer to `std::atexit'. */
672 #define atexit_node cp_global_trees[CPTI_ATEXIT]
673
674 /* A pointer to `__dso_handle'. */
675 #define dso_handle_node cp_global_trees[CPTI_DSO_HANDLE]
676
677 /* The declaration of the dynamic_cast runtime. */
678 #define dynamic_cast_node cp_global_trees[CPTI_DCAST]
679
680 /* The type of a destructor. */
681 #define cleanup_type cp_global_trees[CPTI_CLEANUP_TYPE]
682
683 /* The type of the vtt parameter passed to subobject constructors and
684 destructors. */
685 #define vtt_parm_type cp_global_trees[CPTI_VTT_PARM_TYPE]
686
687 /* A TREE_LIST of the dynamic classes whose vtables may have to be
688 emitted in this translation unit. */
689
690 #define keyed_classes cp_global_trees[CPTI_KEYED_CLASSES]
691
692 /* Node to indicate default access. This must be distinct from the
693 access nodes in tree.h. */
694
695 #define access_default_node null_node
696
697 /* Global state. */
698
699 struct saved_scope GTY(())
700 {
701 cxx_saved_binding *old_bindings;
702 tree old_namespace;
703 tree decl_ns_list;
704 tree class_name;
705 tree class_type;
706 tree access_specifier;
707 tree function_decl;
708 varray_type lang_base;
709 tree lang_name;
710 tree template_parms;
711 tree x_previous_class_type;
712 tree x_previous_class_values;
713 tree x_saved_tree;
714 tree last_parms;
715
716 HOST_WIDE_INT x_processing_template_decl;
717 int x_processing_specialization;
718 bool x_processing_explicit_instantiation;
719 int need_pop_function_context;
720
721 struct stmt_tree_s x_stmt_tree;
722
723 struct cp_binding_level *class_bindings;
724 struct cp_binding_level *bindings;
725
726 struct saved_scope *prev;
727 };
728
729 /* The current open namespace. */
730
731 #define current_namespace scope_chain->old_namespace
732
733 /* The stack for namespaces of current declarations. */
734
735 #define decl_namespace_list scope_chain->decl_ns_list
736
737 /* IDENTIFIER_NODE: name of current class */
738
739 #define current_class_name scope_chain->class_name
740
741 /* _TYPE: the type of the current class */
742
743 #define current_class_type scope_chain->class_type
744
745 /* When parsing a class definition, the access specifier most recently
746 given by the user, or, if no access specifier was given, the
747 default value appropriate for the kind of class (i.e., struct,
748 class, or union). */
749
750 #define current_access_specifier scope_chain->access_specifier
751
752 /* Pointer to the top of the language name stack. */
753
754 #define current_lang_base scope_chain->lang_base
755 #define current_lang_name scope_chain->lang_name
756
757 /* Parsing a function declarator leaves a list of parameter names
758 or a chain or parameter decls here. */
759
760 #define current_template_parms scope_chain->template_parms
761
762 #define processing_template_decl scope_chain->x_processing_template_decl
763 #define processing_specialization scope_chain->x_processing_specialization
764 #define processing_explicit_instantiation scope_chain->x_processing_explicit_instantiation
765
766 /* _TYPE: the previous type that was a class */
767
768 #define previous_class_type scope_chain->x_previous_class_type
769
770 /* This is a copy of the class_shadowed list of the previous class
771 binding contour when at global scope. It's used to reset
772 IDENTIFIER_CLASS_VALUEs when entering another class scope (i.e. a
773 cache miss). */
774
775 #define previous_class_values scope_chain->x_previous_class_values
776
777 /* A list of private types mentioned, for deferred access checking. */
778
779 extern GTY(()) struct saved_scope *scope_chain;
780
781 /* Global state pertinent to the current function. */
782
783 struct language_function GTY(())
784 {
785 struct c_language_function base;
786
787 tree x_dtor_label;
788 tree x_current_class_ptr;
789 tree x_current_class_ref;
790 tree x_eh_spec_block;
791 tree x_in_charge_parm;
792 tree x_vtt_parm;
793 tree x_return_value;
794
795 int returns_value;
796 int returns_null;
797 int returns_abnormally;
798 int in_function_try_handler;
799 int in_base_initializer;
800 int x_expanding_p;
801
802 /* True if this function can throw an exception. */
803 bool can_throw : 1;
804
805 struct named_label_use_list *x_named_label_uses;
806 struct named_label_list *x_named_labels;
807 struct cp_binding_level *bindings;
808 varray_type x_local_names;
809
810 const char *cannot_inline;
811 };
812
813 /* The current C++-specific per-function global variables. */
814
815 #define cp_function_chain (cfun->language)
816
817 /* In a destructor, the point at which all derived class destroying
818 has been done, just before any base class destroying will be done. */
819
820 #define dtor_label cp_function_chain->x_dtor_label
821
822 /* When we're processing a member function, current_class_ptr is the
823 PARM_DECL for the `this' pointer. The current_class_ref is an
824 expression for `*this'. */
825
826 #define current_class_ptr \
827 (cfun ? cp_function_chain->x_current_class_ptr : NULL_TREE)
828 #define current_class_ref \
829 (cfun ? cp_function_chain->x_current_class_ref : NULL_TREE)
830
831 /* The EH_SPEC_BLOCK for the exception-specifiers for the current
832 function, if any. */
833
834 #define current_eh_spec_block cp_function_chain->x_eh_spec_block
835
836 /* The `__in_chrg' parameter for the current function. Only used for
837 constructors and destructors. */
838
839 #define current_in_charge_parm cp_function_chain->x_in_charge_parm
840
841 /* The `__vtt_parm' parameter for the current function. Only used for
842 constructors and destructors. */
843
844 #define current_vtt_parm cp_function_chain->x_vtt_parm
845
846 /* Set to 0 at beginning of a function definition, set to 1 if
847 a return statement that specifies a return value is seen. */
848
849 #define current_function_returns_value cp_function_chain->returns_value
850
851 /* Set to 0 at beginning of a function definition, set to 1 if
852 a return statement with no argument is seen. */
853
854 #define current_function_returns_null cp_function_chain->returns_null
855
856 /* Set to 0 at beginning of a function definition, set to 1 if
857 a call to a noreturn function is seen. */
858
859 #define current_function_returns_abnormally \
860 cp_function_chain->returns_abnormally
861
862 /* Nonzero if we should generate RTL for functions that we process.
863 When this is zero, we just accumulate tree structure, without
864 interacting with the back end. */
865
866 #define expanding_p cp_function_chain->x_expanding_p
867
868 /* Nonzero if we are in the semantic analysis phase for the current
869 function. */
870
871 #define doing_semantic_analysis_p() (!expanding_p)
872
873 /* Nonzero if we are processing a base initializer. Zero elsewhere. */
874 #define in_base_initializer cp_function_chain->in_base_initializer
875
876 #define in_function_try_handler cp_function_chain->in_function_try_handler
877
878 /* Expression always returned from function, or error_mark_node
879 otherwise, for use by the automatic named return value optimization. */
880
881 #define current_function_return_value \
882 (cp_function_chain->x_return_value)
883
884 extern GTY(()) tree global_namespace;
885
886 #define ansi_opname(CODE) \
887 (operator_name_info[(int) (CODE)].identifier)
888 #define ansi_assopname(CODE) \
889 (assignment_operator_name_info[(int) (CODE)].identifier)
890
891 /* True if NODE is an erroneous expression. */
892
893 #define error_operand_p(NODE) \
894 ((NODE) == error_mark_node \
895 || ((NODE) && TREE_TYPE ((NODE)) == error_mark_node))
896
897 /* INTERFACE_ONLY nonzero means that we are in an "interface"
898 section of the compiler. INTERFACE_UNKNOWN nonzero means
899 we cannot trust the value of INTERFACE_ONLY. If INTERFACE_UNKNOWN
900 is zero and INTERFACE_ONLY is zero, it means that we are responsible
901 for exporting definitions that others might need. */
902 extern int interface_only, interface_unknown;
903 \f
904 /* C++ language-specific tree codes. */
905 #define DEFTREECODE(SYM, NAME, TYPE, LENGTH) SYM,
906 enum cplus_tree_code {
907 CP_DUMMY_TREE_CODE = LAST_C_TREE_CODE,
908 #include "cp-tree.def"
909 LAST_CPLUS_TREE_CODE
910 };
911 #undef DEFTREECODE
912
913 #define cp_stmt_codes \
914 CTOR_INITIALIZER, TRY_BLOCK, HANDLER, \
915 EH_SPEC_BLOCK, USING_STMT, TAG_DEFN
916
917 enum languages { lang_c, lang_cplusplus, lang_java };
918
919 /* Macros to make error reporting functions' lives easier. */
920 #define TYPE_IDENTIFIER(NODE) (DECL_NAME (TYPE_NAME (NODE)))
921 #define TYPE_LINKAGE_IDENTIFIER(NODE) \
922 (TYPE_IDENTIFIER (TYPE_MAIN_VARIANT (NODE)))
923 #define TYPE_NAME_STRING(NODE) (IDENTIFIER_POINTER (TYPE_IDENTIFIER (NODE)))
924 #define TYPE_NAME_LENGTH(NODE) (IDENTIFIER_LENGTH (TYPE_IDENTIFIER (NODE)))
925
926 #define TYPE_ASSEMBLER_NAME_STRING(NODE) \
927 (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (TYPE_NAME (NODE))))
928 #define TYPE_ASSEMBLER_NAME_LENGTH(NODE) \
929 (IDENTIFIER_LENGTH (DECL_ASSEMBLER_NAME (TYPE_NAME (NODE))))
930
931 /* Nonzero if NODE has no name for linkage purposes. */
932 #define TYPE_ANONYMOUS_P(NODE) \
933 (TAGGED_TYPE_P (NODE) && ANON_AGGRNAME_P (TYPE_LINKAGE_IDENTIFIER (NODE)))
934
935 /* The _DECL for this _TYPE. */
936 #define TYPE_MAIN_DECL(NODE) (TYPE_STUB_DECL (TYPE_MAIN_VARIANT (NODE)))
937
938 /* Nonzero if T is a class (or struct or union) type. Also nonzero
939 for template type parameters, typename types, and instantiated
940 template template parameters. Despite its name,
941 this macro has nothing to do with the definition of aggregate given
942 in the standard. Think of this macro as MAYBE_CLASS_TYPE_P. */
943 #define IS_AGGR_TYPE(T) \
944 (TREE_CODE (T) == TEMPLATE_TYPE_PARM \
945 || TREE_CODE (T) == TYPENAME_TYPE \
946 || TREE_CODE (T) == TYPEOF_TYPE \
947 || TREE_CODE (T) == BOUND_TEMPLATE_TEMPLATE_PARM \
948 || TYPE_LANG_FLAG_5 (T))
949
950 /* Set IS_AGGR_TYPE for T to VAL. T must be a class, struct, or
951 union type. */
952 #define SET_IS_AGGR_TYPE(T, VAL) \
953 (TYPE_LANG_FLAG_5 (T) = (VAL))
954
955 /* Nonzero if T is a class type. Zero for template type parameters,
956 typename types, and so forth. */
957 #define CLASS_TYPE_P(T) \
958 (IS_AGGR_TYPE_CODE (TREE_CODE (T)) && IS_AGGR_TYPE (T))
959
960 #define IS_AGGR_TYPE_CODE(T) ((T) == RECORD_TYPE || (T) == UNION_TYPE)
961 #define TAGGED_TYPE_P(T) \
962 (CLASS_TYPE_P (T) || TREE_CODE (T) == ENUMERAL_TYPE)
963 #define IS_OVERLOAD_TYPE(T) TAGGED_TYPE_P (T)
964
965 /* True if this a "Java" type, defined in 'extern "Java"'. */
966 #define TYPE_FOR_JAVA(NODE) TYPE_LANG_FLAG_3 (NODE)
967
968 /* True if this type is dependent. This predicate is only valid if
969 TYPE_DEPENDENT_P_VALID is true. */
970 #define TYPE_DEPENDENT_P(NODE) TYPE_LANG_FLAG_0 (NODE)
971
972 /* True if dependent_type_p has been called for this type, with the
973 result that TYPE_DEPENDENT_P is valid. */
974 #define TYPE_DEPENDENT_P_VALID(NODE) TYPE_LANG_FLAG_6(NODE)
975
976 /* Nonzero if this type is const-qualified. */
977 #define CP_TYPE_CONST_P(NODE) \
978 ((cp_type_quals (NODE) & TYPE_QUAL_CONST) != 0)
979
980 /* Nonzero if this type is volatile-qualified. */
981 #define CP_TYPE_VOLATILE_P(NODE) \
982 ((cp_type_quals (NODE) & TYPE_QUAL_VOLATILE) != 0)
983
984 /* Nonzero if this type is restrict-qualified. */
985 #define CP_TYPE_RESTRICT_P(NODE) \
986 ((cp_type_quals (NODE) & TYPE_QUAL_RESTRICT) != 0)
987
988 /* Nonzero if this type is const-qualified, but not
989 volatile-qualified. Other qualifiers are ignored. This macro is
990 used to test whether or not it is OK to bind an rvalue to a
991 reference. */
992 #define CP_TYPE_CONST_NON_VOLATILE_P(NODE) \
993 ((cp_type_quals (NODE) & (TYPE_QUAL_CONST | TYPE_QUAL_VOLATILE)) \
994 == TYPE_QUAL_CONST)
995
996 #define FUNCTION_ARG_CHAIN(NODE) \
997 TREE_CHAIN (TYPE_ARG_TYPES (TREE_TYPE (NODE)))
998
999 /* Given a FUNCTION_DECL, returns the first TREE_LIST out of TYPE_ARG_TYPES
1000 which refers to a user-written parameter. */
1001 #define FUNCTION_FIRST_USER_PARMTYPE(NODE) \
1002 skip_artificial_parms_for ((NODE), TYPE_ARG_TYPES (TREE_TYPE (NODE)))
1003
1004 /* Similarly, but for DECL_ARGUMENTS. */
1005 #define FUNCTION_FIRST_USER_PARM(NODE) \
1006 skip_artificial_parms_for ((NODE), DECL_ARGUMENTS (NODE))
1007
1008 #define PROMOTES_TO_AGGR_TYPE(NODE, CODE) \
1009 (((CODE) == TREE_CODE (NODE) \
1010 && IS_AGGR_TYPE (TREE_TYPE (NODE))) \
1011 || IS_AGGR_TYPE (NODE))
1012
1013 /* Nonzero iff TYPE is derived from PARENT. Ignores accessibility and
1014 ambiguity issues. */
1015 #define DERIVED_FROM_P(PARENT, TYPE) \
1016 (lookup_base ((TYPE), PARENT, ba_any, NULL) != NULL_TREE)
1017 /* Nonzero iff TYPE is uniquely derived from PARENT. Ignores
1018 accessibility. */
1019 #define UNIQUELY_DERIVED_FROM_P(PARENT, TYPE) \
1020 (lookup_base ((TYPE), (PARENT), ba_ignore | ba_quiet, NULL) != NULL_TREE)
1021 /* Nonzero iff TYPE is accessible in the current scope and uniquely
1022 derived from PARENT. */
1023 #define ACCESSIBLY_UNIQUELY_DERIVED_P(PARENT, TYPE) \
1024 (lookup_base ((TYPE), (PARENT), ba_check | ba_quiet, NULL) != NULL_TREE)
1025 /* Nonzero iff TYPE is publicly & uniquely derived from PARENT. */
1026 #define PUBLICLY_UNIQUELY_DERIVED_P(PARENT, TYPE) \
1027 (lookup_base ((TYPE), (PARENT), ba_not_special | ba_quiet, NULL) \
1028 != NULL_TREE)
1029 \f
1030 /* This is a few header flags for 'struct lang_type'. Actually,
1031 all but the first are used only for lang_type_class; they
1032 are put in this structure to save space. */
1033 __extension__ struct lang_type_header GTY(())
1034 {
1035 CHAR_BITFIELD is_lang_type_class : 1;
1036
1037 CHAR_BITFIELD has_type_conversion : 1;
1038 CHAR_BITFIELD has_init_ref : 1;
1039 CHAR_BITFIELD has_default_ctor : 1;
1040 CHAR_BITFIELD uses_multiple_inheritance : 1;
1041 CHAR_BITFIELD const_needs_init : 1;
1042 CHAR_BITFIELD ref_needs_init : 1;
1043 CHAR_BITFIELD has_const_assign_ref : 1;
1044 };
1045
1046 /* This structure provides additional information above and beyond
1047 what is provide in the ordinary tree_type. In the past, we used it
1048 for the types of class types, template parameters types, typename
1049 types, and so forth. However, there can be many (tens to hundreds
1050 of thousands) of template parameter types in a compilation, and
1051 there's no need for this additional information in that case.
1052 Therefore, we now use this data structure only for class types.
1053
1054 In the past, it was thought that there would be relatively few
1055 class types. However, in the presence of heavy use of templates,
1056 many (i.e., thousands) of classes can easily be generated.
1057 Therefore, we should endeavor to keep the size of this structure to
1058 a minimum. */
1059 struct lang_type_class GTY(())
1060 {
1061 struct lang_type_header h;
1062
1063 unsigned char align;
1064
1065 unsigned has_mutable : 1;
1066 unsigned com_interface : 1;
1067 unsigned non_pod_class : 1;
1068 unsigned nearly_empty_p : 1;
1069 unsigned user_align : 1;
1070 unsigned has_assign_ref : 1;
1071 unsigned has_new : 1;
1072 unsigned has_array_new : 1;
1073
1074 unsigned gets_delete : 2;
1075 unsigned interface_only : 1;
1076 unsigned interface_unknown : 1;
1077 unsigned contains_empty_class_p : 1;
1078 unsigned anon_aggr : 1;
1079 unsigned non_zero_init : 1;
1080 unsigned empty_p : 1;
1081
1082 unsigned marks: 6;
1083 unsigned vec_new_uses_cookie : 1;
1084 unsigned declared_class : 1;
1085
1086 unsigned being_defined : 1;
1087 unsigned redefined : 1;
1088 unsigned debug_requested : 1;
1089 unsigned use_template : 2;
1090 unsigned fields_readonly : 1;
1091 unsigned ptrmemfunc_flag : 1;
1092 unsigned was_anonymous : 1;
1093
1094 unsigned has_real_assign_ref : 1;
1095 unsigned has_const_init_ref : 1;
1096 unsigned has_complex_init_ref : 1;
1097 unsigned has_complex_assign_ref : 1;
1098 unsigned has_abstract_assign_ref : 1;
1099 unsigned non_aggregate : 1;
1100 unsigned java_interface : 1;
1101
1102 /* When adding a flag here, consider whether or not it ought to
1103 apply to a template instance if it applies to the template. If
1104 so, make sure to copy it in instantiate_class_template! */
1105
1106 /* There are some bits left to fill out a 32-bit word. Keep track
1107 of this by updating the size of this bitfield whenever you add or
1108 remove a flag. */
1109 unsigned dummy : 9;
1110
1111 tree primary_base;
1112 tree vfields;
1113 tree vcall_indices;
1114 tree vtables;
1115 tree typeinfo_var;
1116 tree vbases;
1117 binding_table nested_udts;
1118 tree as_base;
1119 tree pure_virtuals;
1120 tree friend_classes;
1121 tree GTY ((reorder ("resort_type_method_vec"))) methods;
1122 tree key_method;
1123 tree decl_list;
1124 tree template_info;
1125 tree befriending_classes;
1126 };
1127
1128 struct lang_type_ptrmem GTY(())
1129 {
1130 struct lang_type_header h;
1131 tree record;
1132 };
1133
1134 struct lang_type GTY(())
1135 {
1136 union lang_type_u
1137 {
1138 struct lang_type_header GTY((tag ("2"))) h;
1139 struct lang_type_class GTY((tag ("1"))) c;
1140 struct lang_type_ptrmem GTY((tag ("0"))) ptrmem;
1141 } GTY((desc ("%h.h.is_lang_type_class"))) u;
1142 };
1143
1144 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
1145
1146 #define LANG_TYPE_CLASS_CHECK(NODE) __extension__ \
1147 ({ struct lang_type *lt = TYPE_LANG_SPECIFIC (NODE); \
1148 if (! lt->u.h.is_lang_type_class) \
1149 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
1150 &lt->u.c; })
1151
1152 #define LANG_TYPE_PTRMEM_CHECK(NODE) __extension__ \
1153 ({ struct lang_type *lt = TYPE_LANG_SPECIFIC (NODE); \
1154 if (lt->u.h.is_lang_type_class) \
1155 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
1156 &lt->u.ptrmem; })
1157
1158 #else
1159
1160 #define LANG_TYPE_CLASS_CHECK(NODE) (&TYPE_LANG_SPECIFIC (NODE)->u.c)
1161 #define LANG_TYPE_PTRMEM_CHECK(NODE) (&TYPE_LANG_SPECIFIC (NODE)->u.ptrmem)
1162
1163 #endif /* ENABLE_TREE_CHECKING */
1164
1165 /* Indicates whether or not (and how) a template was expanded for this class.
1166 0=no information yet/non-template class
1167 1=implicit template instantiation
1168 2=explicit template specialization
1169 3=explicit template instantiation */
1170 #define CLASSTYPE_USE_TEMPLATE(NODE) \
1171 (LANG_TYPE_CLASS_CHECK (NODE)->use_template)
1172
1173 /* Fields used for storing information before the class is defined.
1174 After the class is defined, these fields hold other information. */
1175
1176 /* List of friends which were defined inline in this class definition. */
1177 #define CLASSTYPE_INLINE_FRIENDS(NODE) CLASSTYPE_PURE_VIRTUALS (NODE)
1178
1179 /* Nonzero for _CLASSTYPE means that operator delete is defined. */
1180 #define TYPE_GETS_DELETE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->gets_delete)
1181 #define TYPE_GETS_REG_DELETE(NODE) (TYPE_GETS_DELETE (NODE) & 1)
1182
1183 /* Nonzero if `new NODE[x]' should cause the allocation of extra
1184 storage to indicate how many array elements are in use. */
1185 #define TYPE_VEC_NEW_USES_COOKIE(NODE) \
1186 (CLASS_TYPE_P (NODE) \
1187 && LANG_TYPE_CLASS_CHECK (NODE)->vec_new_uses_cookie)
1188
1189 /* Nonzero means that this _CLASSTYPE node defines ways of converting
1190 itself to other types. */
1191 #define TYPE_HAS_CONVERSION(NODE) \
1192 (LANG_TYPE_CLASS_CHECK (NODE)->h.has_type_conversion)
1193
1194 /* Nonzero means that this _CLASSTYPE node overloads operator=(X&). */
1195 #define TYPE_HAS_ASSIGN_REF(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_assign_ref)
1196 #define TYPE_HAS_CONST_ASSIGN_REF(NODE) \
1197 (LANG_TYPE_CLASS_CHECK (NODE)->h.has_const_assign_ref)
1198
1199 /* Nonzero means that this _CLASSTYPE node has an X(X&) constructor. */
1200 #define TYPE_HAS_INIT_REF(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->h.has_init_ref)
1201 #define TYPE_HAS_CONST_INIT_REF(NODE) \
1202 (LANG_TYPE_CLASS_CHECK (NODE)->has_const_init_ref)
1203
1204 /* Nonzero if this class defines an overloaded operator new. (An
1205 operator new [] doesn't count.) */
1206 #define TYPE_HAS_NEW_OPERATOR(NODE) \
1207 (LANG_TYPE_CLASS_CHECK (NODE)->has_new)
1208
1209 /* Nonzero if this class defines an overloaded operator new[]. */
1210 #define TYPE_HAS_ARRAY_NEW_OPERATOR(NODE) \
1211 (LANG_TYPE_CLASS_CHECK (NODE)->has_array_new)
1212
1213 /* Nonzero means that this type is being defined. I.e., the left brace
1214 starting the definition of this type has been seen. */
1215 #define TYPE_BEING_DEFINED(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->being_defined)
1216 /* Nonzero means that this type has been redefined. In this case, if
1217 convenient, don't reprocess any methods that appear in its redefinition. */
1218 #define TYPE_REDEFINED(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->redefined)
1219
1220 /* Nonzero means that this _CLASSTYPE (or one of its ancestors) uses
1221 multiple inheritance. If this is 0 for the root of a type
1222 hierarchy, then we can use more efficient search techniques. */
1223 #define TYPE_USES_MULTIPLE_INHERITANCE(NODE) \
1224 (LANG_TYPE_CLASS_CHECK (NODE)->h.uses_multiple_inheritance)
1225
1226 /* Nonzero means that this _CLASSTYPE (or one of its ancestors) uses
1227 virtual base classes. If this is 0 for the root of a type
1228 hierarchy, then we can use more efficient search techniques. */
1229 #define TYPE_USES_VIRTUAL_BASECLASSES(NODE) (TREE_LANG_FLAG_3 (NODE))
1230
1231 /* The member function with which the vtable will be emitted:
1232 the first noninline non-pure-virtual member function. NULL_TREE
1233 if there is no key function or if this is a class template */
1234 #define CLASSTYPE_KEY_METHOD(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->key_method)
1235
1236 /* Vector member functions defined in this class. Each element is
1237 either a FUNCTION_DECL, a TEMPLATE_DECL, or an OVERLOAD. All
1238 functions with the same name end up in the same slot. The first
1239 two elements are for constructors, and destructors, respectively.
1240 All template conversion operators to innermost template dependent
1241 types are overloaded on the next slot, if they exist. Note, the
1242 names for these functions will not all be the same. The
1243 non-template conversion operators & templated conversions to
1244 non-innermost template types are next, followed by ordinary member
1245 functions. There may be empty entries at the end of the vector.
1246 The conversion operators are unsorted. The ordinary member
1247 functions are sorted, once the class is complete. */
1248 #define CLASSTYPE_METHOD_VEC(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->methods)
1249
1250 /* For class templates, this is a TREE_LIST of all member data,
1251 functions, types, and friends in the order of declaration.
1252 The TREE_PURPOSE of each TREE_LIST is NULL_TREE for a friend,
1253 and the RECORD_TYPE for the class template otherwise. */
1254 #define CLASSTYPE_DECL_LIST(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->decl_list)
1255
1256 /* The slot in the CLASSTYPE_METHOD_VEC where constructors go. */
1257 #define CLASSTYPE_CONSTRUCTOR_SLOT 0
1258
1259 /* The slot in the CLASSTYPE_METHOD_VEC where destructors go. */
1260 #define CLASSTYPE_DESTRUCTOR_SLOT 1
1261
1262 /* The first slot in the CLASSTYPE_METHOD_VEC where conversion
1263 operators can appear. */
1264 #define CLASSTYPE_FIRST_CONVERSION_SLOT 2
1265
1266 /* A FUNCTION_DECL or OVERLOAD for the constructors for NODE. These
1267 are the constructors that take an in-charge parameter. */
1268 #define CLASSTYPE_CONSTRUCTORS(NODE) \
1269 (TREE_VEC_ELT (CLASSTYPE_METHOD_VEC (NODE), CLASSTYPE_CONSTRUCTOR_SLOT))
1270
1271 /* A FUNCTION_DECL for the destructor for NODE. These are the
1272 destructors that take an in-charge parameter. */
1273 #define CLASSTYPE_DESTRUCTORS(NODE) \
1274 (TREE_VEC_ELT (CLASSTYPE_METHOD_VEC (NODE), CLASSTYPE_DESTRUCTOR_SLOT))
1275
1276 /* Mark bits for depth-first and breath-first searches. */
1277
1278 /* Get the value of the Nth mark bit. */
1279 #define CLASSTYPE_MARKED_N(NODE, N) \
1280 (((CLASS_TYPE_P (NODE) ? LANG_TYPE_CLASS_CHECK (NODE)->marks \
1281 : ((unsigned) TYPE_ALIAS_SET (NODE))) & (1 << (N))) != 0)
1282
1283 /* Set the Nth mark bit. */
1284 #define SET_CLASSTYPE_MARKED_N(NODE, N) \
1285 (CLASS_TYPE_P (NODE) \
1286 ? (void) (LANG_TYPE_CLASS_CHECK (NODE)->marks |= (1 << (N))) \
1287 : (void) (TYPE_ALIAS_SET (NODE) |= (1 << (N))))
1288
1289 /* Clear the Nth mark bit. */
1290 #define CLEAR_CLASSTYPE_MARKED_N(NODE, N) \
1291 (CLASS_TYPE_P (NODE) \
1292 ? (void) (LANG_TYPE_CLASS_CHECK (NODE)->marks &= ~(1 << (N))) \
1293 : (void) (TYPE_ALIAS_SET (NODE) &= ~(1 << (N))))
1294
1295 /* Get the value of the mark bits. */
1296 #define CLASSTYPE_MARKED(NODE) CLASSTYPE_MARKED_N (NODE, 0)
1297 #define CLASSTYPE_MARKED2(NODE) CLASSTYPE_MARKED_N (NODE, 1)
1298 #define CLASSTYPE_MARKED3(NODE) CLASSTYPE_MARKED_N (NODE, 2)
1299 #define CLASSTYPE_MARKED4(NODE) CLASSTYPE_MARKED_N (NODE, 3)
1300 #define CLASSTYPE_MARKED5(NODE) CLASSTYPE_MARKED_N (NODE, 4)
1301 #define CLASSTYPE_MARKED6(NODE) CLASSTYPE_MARKED_N (NODE, 5)
1302
1303 /* Macros to modify the above flags */
1304 #define SET_CLASSTYPE_MARKED(NODE) SET_CLASSTYPE_MARKED_N (NODE, 0)
1305 #define CLEAR_CLASSTYPE_MARKED(NODE) CLEAR_CLASSTYPE_MARKED_N (NODE, 0)
1306 #define SET_CLASSTYPE_MARKED2(NODE) SET_CLASSTYPE_MARKED_N (NODE, 1)
1307 #define CLEAR_CLASSTYPE_MARKED2(NODE) CLEAR_CLASSTYPE_MARKED_N (NODE, 1)
1308 #define SET_CLASSTYPE_MARKED3(NODE) SET_CLASSTYPE_MARKED_N (NODE, 2)
1309 #define CLEAR_CLASSTYPE_MARKED3(NODE) CLEAR_CLASSTYPE_MARKED_N (NODE, 2)
1310 #define SET_CLASSTYPE_MARKED4(NODE) SET_CLASSTYPE_MARKED_N (NODE, 3)
1311 #define CLEAR_CLASSTYPE_MARKED4(NODE) CLEAR_CLASSTYPE_MARKED_N (NODE, 3)
1312 #define SET_CLASSTYPE_MARKED5(NODE) SET_CLASSTYPE_MARKED_N (NODE, 4)
1313 #define CLEAR_CLASSTYPE_MARKED5(NODE) CLEAR_CLASSTYPE_MARKED_N (NODE, 4)
1314 #define SET_CLASSTYPE_MARKED6(NODE) SET_CLASSTYPE_MARKED_N (NODE, 5)
1315 #define CLEAR_CLASSTYPE_MARKED6(NODE) CLEAR_CLASSTYPE_MARKED_N (NODE, 5)
1316
1317 /* A dictionary of the nested user-defined-types (class-types, or enums)
1318 found within this class. This table includes nested member class
1319 templates. */
1320 #define CLASSTYPE_NESTED_UTDS(NODE) \
1321 (LANG_TYPE_CLASS_CHECK (NODE)->nested_udts)
1322
1323 /* Nonzero if NODE has a primary base class, i.e., a base class with
1324 which it shares the virtual function table pointer. */
1325 #define CLASSTYPE_HAS_PRIMARY_BASE_P(NODE) \
1326 (CLASSTYPE_PRIMARY_BINFO (NODE) != NULL_TREE)
1327
1328 /* If non-NULL, this is the binfo for the primary base class, i.e.,
1329 the base class which contains the virtual function table pointer
1330 for this class. */
1331 #define CLASSTYPE_PRIMARY_BINFO(NODE) \
1332 (LANG_TYPE_CLASS_CHECK (NODE)->primary_base)
1333
1334 /* A chain of BINFOs for the direct and indirect virtual base classes
1335 that this type uses in a post-order depth-first left-to-right
1336 order. (In other words, these bases appear in the order that they
1337 should be initialized.) */
1338 #define CLASSTYPE_VBASECLASSES(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->vbases)
1339
1340 /* Number of direct baseclasses of NODE. */
1341 #define CLASSTYPE_N_BASECLASSES(NODE) \
1342 (BINFO_N_BASETYPES (TYPE_BINFO (NODE)))
1343
1344 /* The type corresponding to NODE when NODE is used as a base class,
1345 i.e., NODE without virtual base classes. */
1346
1347 #define CLASSTYPE_AS_BASE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->as_base)
1348
1349 /* These are the size and alignment of the type without its virtual
1350 base classes, for when we use this type as a base itself. */
1351 #define CLASSTYPE_SIZE(NODE) TYPE_SIZE (CLASSTYPE_AS_BASE (NODE))
1352 #define CLASSTYPE_SIZE_UNIT(NODE) TYPE_SIZE_UNIT (CLASSTYPE_AS_BASE (NODE))
1353 #define CLASSTYPE_ALIGN(NODE) TYPE_ALIGN (CLASSTYPE_AS_BASE (NODE))
1354 #define CLASSTYPE_USER_ALIGN(NODE) TYPE_USER_ALIGN (CLASSTYPE_AS_BASE (NODE))
1355
1356 /* The alignment of NODE, without its virtual bases, in bytes. */
1357 #define CLASSTYPE_ALIGN_UNIT(NODE) \
1358 (CLASSTYPE_ALIGN (NODE) / BITS_PER_UNIT)
1359
1360 /* True if this a Java interface type, declared with
1361 '__attribute__ ((java_interface))'. */
1362 #define TYPE_JAVA_INTERFACE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->java_interface)
1363
1364 /* A cons list of virtual functions which cannot be inherited by
1365 derived classes. When deriving from this type, the derived
1366 class must provide its own definition for each of these functions. */
1367 #define CLASSTYPE_PURE_VIRTUALS(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->pure_virtuals)
1368
1369 /* Nonzero means that this type has an X() constructor. */
1370 #define TYPE_HAS_DEFAULT_CONSTRUCTOR(NODE) \
1371 (LANG_TYPE_CLASS_CHECK (NODE)->h.has_default_ctor)
1372
1373 /* Nonzero means that this type contains a mutable member */
1374 #define CLASSTYPE_HAS_MUTABLE(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_mutable)
1375 #define TYPE_HAS_MUTABLE_P(NODE) (cp_has_mutable_p (NODE))
1376
1377 /* Nonzero means that this class type is a non-POD class. */
1378 #define CLASSTYPE_NON_POD_P(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->non_pod_class)
1379
1380 /* Nonzero means that this class contains pod types whose default
1381 initialization is not a zero initialization (namely, pointers to
1382 data members). */
1383 #define CLASSTYPE_NON_ZERO_INIT_P(NODE) \
1384 (LANG_TYPE_CLASS_CHECK (NODE)->non_zero_init)
1385
1386 /* Nonzero if this class is "empty" in the sense of the C++ ABI. */
1387 #define CLASSTYPE_EMPTY_P(NODE) \
1388 (LANG_TYPE_CLASS_CHECK (NODE)->empty_p)
1389
1390 /* Nonzero if this class is "nearly empty", i.e., contains only a
1391 virtual function table pointer. */
1392 #define CLASSTYPE_NEARLY_EMPTY_P(NODE) \
1393 (LANG_TYPE_CLASS_CHECK (NODE)->nearly_empty_p)
1394
1395 /* Nonzero if this class contains an empty subobject. */
1396 #define CLASSTYPE_CONTAINS_EMPTY_CLASS_P(NODE) \
1397 (LANG_TYPE_CLASS_CHECK (NODE)->contains_empty_class_p)
1398
1399 /* A list of class types of which this type is a friend. The
1400 TREE_VALUE is normally a TYPE, but will be a TEMPLATE_DECL in the
1401 case of a template friend. */
1402 #define CLASSTYPE_FRIEND_CLASSES(NODE) \
1403 (LANG_TYPE_CLASS_CHECK (NODE)->friend_classes)
1404
1405 /* A list of the classes which grant friendship to this class. */
1406 #define CLASSTYPE_BEFRIENDING_CLASSES(NODE) \
1407 (LANG_TYPE_CLASS_CHECK (NODE)->befriending_classes)
1408
1409 /* Say whether this node was declared as a "class" or a "struct". */
1410 #define CLASSTYPE_DECLARED_CLASS(NODE) \
1411 (LANG_TYPE_CLASS_CHECK (NODE)->declared_class)
1412
1413 /* Nonzero if this class has const members
1414 which have no specified initialization. */
1415 #define CLASSTYPE_READONLY_FIELDS_NEED_INIT(NODE) \
1416 (TYPE_LANG_SPECIFIC (NODE) \
1417 ? LANG_TYPE_CLASS_CHECK (NODE)->h.const_needs_init : 0)
1418 #define SET_CLASSTYPE_READONLY_FIELDS_NEED_INIT(NODE, VALUE) \
1419 (LANG_TYPE_CLASS_CHECK (NODE)->h.const_needs_init = (VALUE))
1420
1421 /* Nonzero if this class has ref members
1422 which have no specified initialization. */
1423 #define CLASSTYPE_REF_FIELDS_NEED_INIT(NODE) \
1424 (TYPE_LANG_SPECIFIC (NODE) \
1425 ? LANG_TYPE_CLASS_CHECK (NODE)->h.ref_needs_init : 0)
1426 #define SET_CLASSTYPE_REF_FIELDS_NEED_INIT(NODE, VALUE) \
1427 (LANG_TYPE_CLASS_CHECK (NODE)->h.ref_needs_init = (VALUE))
1428
1429 /* Nonzero if this class is included from a header file which employs
1430 `#pragma interface', and it is not included in its implementation file. */
1431 #define CLASSTYPE_INTERFACE_ONLY(NODE) \
1432 (LANG_TYPE_CLASS_CHECK (NODE)->interface_only)
1433
1434 /* True if we have already determined whether or not vtables, VTTs,
1435 typeinfo, and other similar per-class data should be emitted in
1436 this translation unit. This flag does not indicate whether or not
1437 these items should be emitted; it only indicates that we know one
1438 way or the other. */
1439 #define CLASSTYPE_INTERFACE_KNOWN(NODE) \
1440 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown == 0)
1441 /* The opposite of CLASSTYPE_INTERFANCE_KNOWN. */
1442 #define CLASSTYPE_INTERFACE_UNKNOWN(NODE) \
1443 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown)
1444
1445 #define SET_CLASSTYPE_INTERFACE_UNKNOWN_X(NODE,X) \
1446 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown = !!(X))
1447 #define SET_CLASSTYPE_INTERFACE_UNKNOWN(NODE) \
1448 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown = 1)
1449 #define SET_CLASSTYPE_INTERFACE_KNOWN(NODE) \
1450 (LANG_TYPE_CLASS_CHECK (NODE)->interface_unknown = 0)
1451
1452 /* Nonzero if a _DECL node requires us to output debug info for this class. */
1453 #define CLASSTYPE_DEBUG_REQUESTED(NODE) \
1454 (LANG_TYPE_CLASS_CHECK (NODE)->debug_requested)
1455 \f
1456 /* Additional macros for inheritance information. */
1457
1458 /* The BINFO_INHERITANCE_CHAIN is used opposite to the description in
1459 gcc/tree.h. In particular if D is non-virtually derived from B
1460 then the BINFO for B (in D) will have a BINFO_INHERITANCE_CHAIN
1461 pointing to D. If D is virtually derived, its
1462 BINFO_INHERITANCE_CHAIN will point to the most derived binfo. In
1463 tree.h, this pointer is described as pointing in other
1464 direction. The binfos of virtual bases are shared. */
1465
1466 /* Nonzero means marked by DFS or BFS search. */
1467 #define BINFO_MARKED(NODE) TREE_LANG_FLAG_0 (NODE)
1468
1469 /* Nonzero means that this class is on a path leading to a new vtable. */
1470 #define BINFO_VTABLE_PATH_MARKED(NODE) TREE_LANG_FLAG_3 (NODE)
1471
1472 /* Nonzero means B (a BINFO) has its own vtable. Any copies will not
1473 have this flag set. */
1474 #define BINFO_NEW_VTABLE_MARKED(B) (TREE_LANG_FLAG_4 (B))
1475
1476 /* Any subobject that needs a new vtable must have a vptr and must not
1477 be a non-virtual primary base (since it would then use the vtable from a
1478 derived class and never become non-primary.) */
1479 #define SET_BINFO_NEW_VTABLE_MARKED(B) \
1480 (BINFO_NEW_VTABLE_MARKED (B) = 1, \
1481 my_friendly_assert (!BINFO_PRIMARY_P (B) \
1482 || TREE_VIA_VIRTUAL (B), 20000517), \
1483 my_friendly_assert (CLASSTYPE_VFIELDS (BINFO_TYPE (B)) != NULL_TREE, \
1484 20000517))
1485
1486 /* Nonzero means this class has done dfs_pushdecls. */
1487 #define BINFO_PUSHDECLS_MARKED(NODE) BINFO_VTABLE_PATH_MARKED (NODE)
1488
1489 /* Nonzero if this BINFO is a primary base class. Note, this can be
1490 set for non-canononical virtual bases. For a virtual primary base
1491 you might also need to check whether it is canonical. */
1492
1493 #define BINFO_PRIMARY_P(NODE) \
1494 (BINFO_PRIMARY_BASE_OF (NODE) != NULL_TREE)
1495
1496 /* The index in the VTT where this subobject's sub-VTT can be found.
1497 NULL_TREE if there is no sub-VTT. */
1498 #define BINFO_SUBVTT_INDEX(NODE) TREE_VEC_ELT (NODE, BINFO_ELTS + 0)
1499
1500 /* The index in the VTT where the vptr for this subobject can be
1501 found. NULL_TREE if there is no secondary vptr in the VTT. */
1502 #define BINFO_VPTR_INDEX(NODE) TREE_VEC_ELT (NODE, BINFO_ELTS + 1)
1503
1504 /* The binfo of which NODE is a primary base. (This is different from
1505 BINFO_INHERITANCE_CHAIN for virtual base because a virtual base is
1506 sometimes a primary base for a class for which it is not an
1507 immediate base.) */
1508 #define BINFO_PRIMARY_BASE_OF(NODE) TREE_VEC_ELT (NODE, BINFO_ELTS + 2)
1509
1510 /* C++ binfos have 3 additional entries. */
1511
1512 #define BINFO_LANG_ELTS (BINFO_ELTS + 3)
1513
1514 /* Nonzero if this binfo is for a dependent base - one that should not
1515 be searched. */
1516 #define BINFO_DEPENDENT_BASE_P(NODE) TREE_LANG_FLAG_1(NODE)
1517
1518 /* Nonzero if this binfo has lost its primary base binfo (because that
1519 is a nearly-empty virtual base that has been taken by some other
1520 base in the complete hierarchy. */
1521 #define BINFO_LOST_PRIMARY_P(NODE) TREE_LANG_FLAG_2 (NODE)
1522
1523 /* Nonzero if this binfo is an indirect primary base, i.e. a virtual
1524 base that is a primary base of some of other class in the
1525 hierarchy. */
1526 #define BINFO_INDIRECT_PRIMARY_P(NODE) TREE_USED (NODE)
1527
1528 /* Used by various search routines. */
1529 #define IDENTIFIER_MARKED(NODE) TREE_LANG_FLAG_0 (NODE)
1530 \f
1531 /* A TREE_LIST of the vcall indices associated with the class NODE.
1532 The TREE_PURPOSE of each node is a FUNCTION_DECL for a virtual
1533 function. The TREE_VALUE is the index into the virtual table where
1534 the vcall offset for that function is stored, when NODE is a
1535 virtual base. */
1536 #define CLASSTYPE_VCALL_INDICES(NODE) \
1537 (LANG_TYPE_CLASS_CHECK (NODE)->vcall_indices)
1538
1539 /* The various vtables for the class NODE. The primary vtable will be
1540 first, followed by the construction vtables and VTT, if any. */
1541 #define CLASSTYPE_VTABLES(NODE) \
1542 (LANG_TYPE_CLASS_CHECK (NODE)->vtables)
1543
1544 /* The std::type_info variable representing this class, or NULL if no
1545 such variable has been created. This field is only set for the
1546 TYPE_MAIN_VARIANT of the class. */
1547 #define CLASSTYPE_TYPEINFO_VAR(NODE) \
1548 (LANG_TYPE_CLASS_CHECK (NODE)->typeinfo_var)
1549
1550 /* Accessor macros for the vfield slots in structures. */
1551
1552 /* List of virtual table fields that this type contains (both the primary
1553 and secondaries). The TREE_VALUE is the class type where the vtable
1554 field was introduced. For a vtable field inherited from the primary
1555 base, or introduced by this class, the TREE_PURPOSE is NULL. For
1556 other vtable fields (those from non-primary bases), the
1557 TREE_PURPOSE is the BINFO of the base through which the vtable was
1558 inherited. */
1559 #define CLASSTYPE_VFIELDS(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->vfields)
1560
1561 /* Get the BINFO that introduced this vtable into the hierarchy (will
1562 be NULL for those created at this level, or from a primary
1563 hierarchy). */
1564 #define VF_BINFO_VALUE(NODE) TREE_PURPOSE (NODE)
1565
1566 /* Get the TYPE that introduced this vtable into the hierarchy (always
1567 non-NULL). */
1568 #define VF_BASETYPE_VALUE(NODE) TREE_VALUE (NODE)
1569
1570 /* Accessor macros for the BINFO_VIRTUALS list. */
1571
1572 /* The number of bytes by which to adjust the `this' pointer when
1573 calling this virtual function. Subtract this value from the this
1574 pointer. Always non-NULL, might be constant zero though. */
1575 #define BV_DELTA(NODE) (TREE_PURPOSE (NODE))
1576
1577 /* If non-NULL, the vtable index at which to find the vcall offset
1578 when calling this virtual function. Add the value at that vtable
1579 index to the this pointer. */
1580 #define BV_VCALL_INDEX(NODE) (TREE_TYPE (NODE))
1581
1582 /* The function to call. */
1583 #define BV_FN(NODE) (TREE_VALUE (NODE))
1584
1585 \f
1586 /* Nonzero for TREE_LIST node means that this list of things
1587 is a list of parameters, as opposed to a list of expressions. */
1588 #define TREE_PARMLIST(NODE) (TREE_LANG_FLAG_2 (NODE))
1589
1590 /* Nonzero for a parmlist means that this parmlist ended in ... */
1591 #define PARMLIST_ELLIPSIS_P(NODE) TREE_LANG_FLAG_0 (NODE)
1592
1593 /* For FUNCTION_TYPE or METHOD_TYPE, a list of the exceptions that
1594 this type can raise. Each TREE_VALUE is a _TYPE. The TREE_VALUE
1595 will be NULL_TREE to indicate a throw specification of `()', or
1596 no exceptions allowed. */
1597 #define TYPE_RAISES_EXCEPTIONS(NODE) TYPE_BINFO (NODE)
1598
1599 /* For FUNCTION_TYPE or METHOD_TYPE, return 1 iff it is declared `throw()'. */
1600 #define TYPE_NOTHROW_P(NODE) \
1601 (TYPE_RAISES_EXCEPTIONS (NODE) \
1602 && TREE_VALUE (TYPE_RAISES_EXCEPTIONS (NODE)) == NULL_TREE)
1603
1604 /* The binding level associated with the namespace. */
1605 #define NAMESPACE_LEVEL(NODE) \
1606 (DECL_LANG_SPECIFIC (NODE)->decl_flags.u.level)
1607 \f
1608
1609 /* If a DECL has DECL_LANG_SPECIFIC, it is either a lang_decl_flags or
1610 a lang_decl (which has lang_decl_flags as its initial prefix).
1611 This macro is nonzero for tree nodes whose DECL_LANG_SPECIFIC is
1612 the full lang_decl, and not just lang_decl_flags. */
1613 #define CAN_HAVE_FULL_LANG_DECL_P(NODE) \
1614 (!(TREE_CODE (NODE) == VAR_DECL \
1615 || TREE_CODE (NODE) == CONST_DECL \
1616 || TREE_CODE (NODE) == FIELD_DECL \
1617 || TREE_CODE (NODE) == USING_DECL))
1618
1619 struct lang_decl_flags GTY(())
1620 {
1621 ENUM_BITFIELD(languages) language : 8;
1622
1623 unsigned operator_attr : 1;
1624 unsigned constructor_attr : 1;
1625 unsigned destructor_attr : 1;
1626 unsigned friend_attr : 1;
1627 unsigned static_function : 1;
1628 unsigned pure_virtual : 1;
1629 unsigned has_in_charge_parm_p : 1;
1630 unsigned has_vtt_parm_p : 1;
1631
1632 unsigned deferred : 1;
1633 unsigned use_template : 2;
1634 unsigned nonconverting : 1;
1635 unsigned not_really_extern : 1;
1636 unsigned needs_final_overrider : 1;
1637 unsigned initialized_in_class : 1;
1638 unsigned assignment_operator_p : 1;
1639
1640 unsigned global_ctor_p : 1;
1641 unsigned global_dtor_p : 1;
1642 unsigned anticipated_p : 1;
1643 unsigned template_conv_p : 1;
1644 unsigned u1sel : 1;
1645 unsigned u2sel : 1;
1646 unsigned can_be_full : 1;
1647 unsigned this_thunk_p : 1;
1648
1649 union lang_decl_u {
1650 /* In a FUNCTION_DECL, VAR_DECL, TYPE_DECL, or TEMPLATE_DECL, this
1651 is DECL_TEMPLATE_INFO. */
1652 tree GTY ((tag ("0"))) template_info;
1653
1654 /* In a NAMESPACE_DECL, this is NAMESPACE_LEVEL. */
1655 struct cp_binding_level * GTY ((tag ("1"))) level;
1656 } GTY ((desc ("%1.u1sel"))) u;
1657
1658 union lang_decl_u2 {
1659 /* This is DECL_ACCESS. */
1660 tree GTY ((tag ("0"))) access;
1661
1662 /* For VAR_DECL in function, this is DECL_DISCRIMINATOR. */
1663 int GTY ((tag ("1"))) discriminator;
1664
1665 /* In a FUNCTION_DECL for which DECL_THUNK_P holds, this is
1666 THUNK_VIRTUAL_OFFSET. */
1667 tree GTY((tag ("2"))) virtual_offset;
1668 } GTY ((desc ("%1.u2sel"))) u2;
1669 };
1670
1671 /* sorted_fields is sorted based on a pointer, so we need to be able
1672 to resort it if pointers get rearranged. */
1673
1674 struct lang_decl GTY(())
1675 {
1676 struct lang_decl_flags decl_flags;
1677
1678 union lang_decl_u4
1679 {
1680 struct full_lang_decl
1681 {
1682 /* For a non-thunk function decl, this is a tree list of
1683 friendly classes. For a thunk function decl, it is the
1684 thunked to function decl. */
1685 tree befriending_classes;
1686
1687 /* For a non-virtual FUNCTION_DECL, this is
1688 DECL_FRIEND_CONTEXT. For a virtual FUNCTION_DECL for which
1689 DECL_THIS_THUNK_P does not hold, this is DECL_THUNKS. Both
1690 this pointer and result pointer adjusting thunks are
1691 chained here. This pointer thunks to return pointer thunks
1692 will be chained on the return pointer thunk. */
1693 tree context;
1694
1695 /* In a FUNCTION_DECL, this is DECL_CLONED_FUNCTION. */
1696 tree cloned_function;
1697
1698 /* In a FUNCTION_DECL for which THUNK_P holds, this is
1699 THUNK_FIXED_OFFSET. */
1700 HOST_WIDE_INT fixed_offset;
1701
1702 /* In an overloaded operator, this is the value of
1703 DECL_OVERLOADED_OPERATOR_P. */
1704 enum tree_code operator_code;
1705
1706 unsigned u3sel : 1;
1707 unsigned pending_inline_p : 1;
1708
1709 union lang_decl_u3
1710 {
1711 struct sorted_fields_type * GTY ((tag ("0"), reorder ("resort_sorted_fields")))
1712 sorted_fields;
1713 struct cp_token_cache * GTY ((tag ("2"))) pending_inline_info;
1714 struct language_function * GTY ((tag ("1")))
1715 saved_language_function;
1716 } GTY ((desc ("%1.u3sel + %1.pending_inline_p"))) u;
1717 } GTY ((tag ("1"))) f;
1718 } GTY ((desc ("%1.decl_flags.can_be_full"))) u;
1719 };
1720
1721 #if defined ENABLE_TREE_CHECKING && (GCC_VERSION >= 2007)
1722
1723 #define LANG_DECL_U2_CHECK(NODE, TF) __extension__ \
1724 ({ struct lang_decl *lt = DECL_LANG_SPECIFIC (NODE); \
1725 if (lt->decl_flags.u2sel != TF) \
1726 lang_check_failed (__FILE__, __LINE__, __FUNCTION__); \
1727 &lt->decl_flags.u2; })
1728
1729 #else
1730
1731 #define LANG_DECL_U2_CHECK(NODE, TF) \
1732 (&DECL_LANG_SPECIFIC (NODE)->decl_flags.u2)
1733
1734 #endif /* ENABLE_TREE_CHECKING */
1735
1736 /* DECL_NEEDED_P holds of a declaration when we need to emit its
1737 definition. This is true when the back-end tells us that
1738 the symbol has been referenced in the generated code. If, however,
1739 we are not generating code, then it is also true when a symbol has
1740 just been used somewhere, even if it's not really needed. We need
1741 anything that isn't comdat, but we don't know for sure whether or
1742 not something is comdat until end-of-file. */
1743 #define DECL_NEEDED_P(DECL) \
1744 ((at_eof && TREE_PUBLIC (DECL) && !DECL_COMDAT (DECL)) \
1745 || (DECL_ASSEMBLER_NAME_SET_P (DECL) \
1746 && TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (DECL))) \
1747 || (((flag_syntax_only || flag_unit_at_a_time) && TREE_USED (DECL))))
1748
1749 /* For a FUNCTION_DECL or a VAR_DECL, the language linkage for the
1750 declaration. Some entities (like a member function in a local
1751 class, or a local variable) do not have linkage at all, and this
1752 macro should not be used in those cases.
1753
1754 Implementation note: A FUNCTION_DECL without DECL_LANG_SPECIFIC was
1755 created by language-independent code, and has C linkage. Most
1756 VAR_DECLs have C++ linkage, and do not have DECL_LANG_SPECIFIC, but
1757 we do create DECL_LANG_SPECIFIC for variables with non-C++ linkage. */
1758 #define DECL_LANGUAGE(NODE) \
1759 (DECL_LANG_SPECIFIC (NODE) \
1760 ? DECL_LANG_SPECIFIC (NODE)->decl_flags.language \
1761 : (TREE_CODE (NODE) == FUNCTION_DECL \
1762 ? lang_c : lang_cplusplus))
1763
1764 /* Set the language linkage for NODE to LANGUAGE. */
1765 #define SET_DECL_LANGUAGE(NODE, LANGUAGE) \
1766 (DECL_LANG_SPECIFIC (NODE)->decl_flags.language = (LANGUAGE))
1767
1768 /* For FUNCTION_DECLs: nonzero means that this function is a constructor. */
1769 #define DECL_CONSTRUCTOR_P(NODE) \
1770 (DECL_LANG_SPECIFIC (NODE)->decl_flags.constructor_attr)
1771
1772 /* Nonzero if NODE (a FUNCTION_DECL) is a constructor for a complete
1773 object. */
1774 #define DECL_COMPLETE_CONSTRUCTOR_P(NODE) \
1775 (DECL_CONSTRUCTOR_P (NODE) \
1776 && DECL_NAME (NODE) == complete_ctor_identifier)
1777
1778 /* Nonzero if NODE (a FUNCTION_DECL) is a constructor for a base
1779 object. */
1780 #define DECL_BASE_CONSTRUCTOR_P(NODE) \
1781 (DECL_CONSTRUCTOR_P (NODE) \
1782 && DECL_NAME (NODE) == base_ctor_identifier)
1783
1784 /* Nonzero if NODE (a FUNCTION_DECL) is a constructor, but not either the
1785 specialized in-charge constructor or the specialized not-in-charge
1786 constructor. */
1787 #define DECL_MAYBE_IN_CHARGE_CONSTRUCTOR_P(NODE) \
1788 (DECL_CONSTRUCTOR_P (NODE) && !DECL_CLONED_FUNCTION_P (NODE))
1789
1790 /* Nonzero if NODE (a FUNCTION_DECL) is a copy constructor. */
1791 #define DECL_COPY_CONSTRUCTOR_P(NODE) \
1792 (DECL_CONSTRUCTOR_P (NODE) && copy_fn_p (NODE) > 0)
1793
1794 /* Nonzero if NODE is a destructor. */
1795 #define DECL_DESTRUCTOR_P(NODE) \
1796 (DECL_LANG_SPECIFIC (NODE)->decl_flags.destructor_attr)
1797
1798 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor, but not the
1799 specialized in-charge constructor, in-charge deleting constructor,
1800 or the the base destructor. */
1801 #define DECL_MAYBE_IN_CHARGE_DESTRUCTOR_P(NODE) \
1802 (DECL_DESTRUCTOR_P (NODE) && !DECL_CLONED_FUNCTION_P (NODE))
1803
1804 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor for a complete
1805 object. */
1806 #define DECL_COMPLETE_DESTRUCTOR_P(NODE) \
1807 (DECL_DESTRUCTOR_P (NODE) \
1808 && DECL_NAME (NODE) == complete_dtor_identifier)
1809
1810 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor for a base
1811 object. */
1812 #define DECL_BASE_DESTRUCTOR_P(NODE) \
1813 (DECL_DESTRUCTOR_P (NODE) \
1814 && DECL_NAME (NODE) == base_dtor_identifier)
1815
1816 /* Nonzero if NODE (a FUNCTION_DECL) is a destructor for a complete
1817 object that deletes the object after it has been destroyed. */
1818 #define DECL_DELETING_DESTRUCTOR_P(NODE) \
1819 (DECL_DESTRUCTOR_P (NODE) \
1820 && DECL_NAME (NODE) == deleting_dtor_identifier)
1821
1822 /* Nonzero if NODE (a FUNCTION_DECL) is a cloned constructor or
1823 destructor. */
1824 #define DECL_CLONED_FUNCTION_P(NODE) \
1825 ((TREE_CODE (NODE) == FUNCTION_DECL \
1826 || TREE_CODE (NODE) == TEMPLATE_DECL) \
1827 && DECL_LANG_SPECIFIC (NODE) \
1828 && DECL_CLONED_FUNCTION (NODE) != NULL_TREE)
1829
1830 /* If DECL_CLONED_FUNCTION_P holds, this is the function that was
1831 cloned. */
1832 #define DECL_CLONED_FUNCTION(NODE) \
1833 (DECL_LANG_SPECIFIC (NODE)->u.f.cloned_function)
1834
1835 /* Nonzero if NODE has DECL_DISCRIMINATOR and not DECL_ACCESS. */
1836 #define DECL_DISCRIMINATOR_P(NODE) \
1837 (TREE_CODE (NODE) == VAR_DECL \
1838 && DECL_FUNCTION_SCOPE_P (NODE))
1839
1840 /* Discriminator for name mangling. */
1841 #define DECL_DISCRIMINATOR(NODE) (LANG_DECL_U2_CHECK (NODE, 1)->discriminator)
1842
1843 /* Nonzero if the VTT parm has been added to NODE. */
1844 #define DECL_HAS_VTT_PARM_P(NODE) \
1845 (DECL_LANG_SPECIFIC (NODE)->decl_flags.has_vtt_parm_p)
1846
1847 /* Nonzero if NODE is a FUNCTION_DECL for which a VTT parameter is
1848 required. */
1849 #define DECL_NEEDS_VTT_PARM_P(NODE) \
1850 (TYPE_USES_VIRTUAL_BASECLASSES (DECL_CONTEXT (NODE)) \
1851 && (DECL_BASE_CONSTRUCTOR_P (NODE) \
1852 || DECL_BASE_DESTRUCTOR_P (NODE)))
1853
1854 /* Nonzero if NODE is a user-defined conversion operator. */
1855 #define DECL_CONV_FN_P(NODE) \
1856 (IDENTIFIER_TYPENAME_P (DECL_NAME (NODE)))
1857
1858 /* If FN is a conversion operator, the type to which it converts.
1859 Otherwise, NULL_TREE. */
1860 #define DECL_CONV_FN_TYPE(FN) \
1861 (DECL_CONV_FN_P (FN) ? TREE_TYPE (DECL_NAME (FN)) : NULL_TREE)
1862
1863 /* Nonzero if NODE, which is a TEMPLATE_DECL, is a template
1864 conversion operator to a type dependent on the innermost template
1865 args. */
1866 #define DECL_TEMPLATE_CONV_FN_P(NODE) \
1867 (DECL_LANG_SPECIFIC (NODE)->decl_flags.template_conv_p)
1868
1869 /* Set the overloaded operator code for NODE to CODE. */
1870 #define SET_OVERLOADED_OPERATOR_CODE(NODE, CODE) \
1871 (DECL_LANG_SPECIFIC (NODE)->u.f.operator_code = (CODE))
1872
1873 /* If NODE is an overloaded operator, then this returns the TREE_CODE
1874 associated with the overloaded operator.
1875 DECL_ASSIGNMENT_OPERATOR_P must also be checked to determine
1876 whether or not NODE is an assignment operator. If NODE is not an
1877 overloaded operator, ERROR_MARK is returned. Since the numerical
1878 value of ERROR_MARK is zero, this macro can be used as a predicate
1879 to test whether or not NODE is an overloaded operator. */
1880 #define DECL_OVERLOADED_OPERATOR_P(NODE) \
1881 (IDENTIFIER_OPNAME_P (DECL_NAME (NODE)) \
1882 ? DECL_LANG_SPECIFIC (NODE)->u.f.operator_code : ERROR_MARK)
1883
1884 /* Nonzero if NODE is an assignment operator. */
1885 #define DECL_ASSIGNMENT_OPERATOR_P(NODE) \
1886 (DECL_LANG_SPECIFIC (NODE)->decl_flags.assignment_operator_p)
1887
1888 /* For FUNCTION_DECLs: nonzero means that this function is a
1889 constructor or a destructor with an extra in-charge parameter to
1890 control whether or not virtual bases are constructed. */
1891 #define DECL_HAS_IN_CHARGE_PARM_P(NODE) \
1892 (DECL_LANG_SPECIFIC (NODE)->decl_flags.has_in_charge_parm_p)
1893
1894 /* Nonzero if NODE is an overloaded `operator delete[]' function. */
1895 #define DECL_ARRAY_DELETE_OPERATOR_P(NODE) \
1896 (DECL_OVERLOADED_OPERATOR_P (NODE) == VEC_DELETE_EXPR)
1897
1898 /* Nonzero for _DECL means that this decl appears in (or will appear
1899 in) as a member in a RECORD_TYPE or UNION_TYPE node. It is also for
1900 detecting circularity in case members are multiply defined. In the
1901 case of a VAR_DECL, it is also used to determine how program storage
1902 should be allocated. */
1903 #define DECL_IN_AGGR_P(NODE) (DECL_LANG_FLAG_3 (NODE))
1904
1905 /* Nonzero for a VAR_DECL means that the variable's initialization has
1906 been processed. */
1907 #define DECL_INITIALIZED_P(NODE) \
1908 (TREE_LANG_FLAG_1 (VAR_DECL_CHECK (NODE)))
1909
1910 /* Nonzero for a VAR_DECL that was initialized with a
1911 constant-expression. */
1912 #define DECL_INITIALIZED_BY_CONSTANT_EXPRESSION_P(NODE) \
1913 (TREE_LANG_FLAG_2 (VAR_DECL_CHECK (NODE)))
1914
1915 /* Nonzero if the DECL was initialized in the class definition itself,
1916 rather than outside the class. This is used for both static member
1917 VAR_DECLS, and FUNTION_DECLS that are defined in the class. */
1918 #define DECL_INITIALIZED_IN_CLASS_P(DECL) \
1919 (DECL_LANG_SPECIFIC (DECL)->decl_flags.initialized_in_class)
1920
1921 /* Nonzero for FUNCTION_DECL means that this decl is just a
1922 friend declaration, and should not be added to the list of
1923 member functions for this class. */
1924 #define DECL_FRIEND_P(NODE) (DECL_LANG_SPECIFIC (NODE)->decl_flags.friend_attr)
1925
1926 /* A TREE_LIST of the types which have befriended this FUNCTION_DECL. */
1927 #define DECL_BEFRIENDING_CLASSES(NODE) \
1928 (DECL_LANG_SPECIFIC (NODE)->u.f.befriending_classes)
1929
1930 /* Nonzero for FUNCTION_DECL means that this decl is a static
1931 member function. */
1932 #define DECL_STATIC_FUNCTION_P(NODE) \
1933 (DECL_LANG_SPECIFIC (NODE)->decl_flags.static_function)
1934
1935 /* Nonzero for FUNCTION_DECL means that this decl is a non-static
1936 member function. */
1937 #define DECL_NONSTATIC_MEMBER_FUNCTION_P(NODE) \
1938 (TREE_CODE (TREE_TYPE (NODE)) == METHOD_TYPE)
1939
1940 /* Nonzero for FUNCTION_DECL means that this decl is a member function
1941 (static or non-static). */
1942 #define DECL_FUNCTION_MEMBER_P(NODE) \
1943 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) || DECL_STATIC_FUNCTION_P (NODE))
1944
1945 /* Nonzero for FUNCTION_DECL means that this member function
1946 has `this' as const X *const. */
1947 #define DECL_CONST_MEMFUNC_P(NODE) \
1948 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) \
1949 && CP_TYPE_CONST_P (TREE_TYPE (TREE_VALUE \
1950 (TYPE_ARG_TYPES (TREE_TYPE (NODE))))))
1951
1952 /* Nonzero for FUNCTION_DECL means that this member function
1953 has `this' as volatile X *const. */
1954 #define DECL_VOLATILE_MEMFUNC_P(NODE) \
1955 (DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE) \
1956 && CP_TYPE_VOLATILE_P (TREE_TYPE (TREE_VALUE \
1957 (TYPE_ARG_TYPES (TREE_TYPE (NODE))))))
1958
1959 /* Nonzero for a DECL means that this member is a non-static member. */
1960 #define DECL_NONSTATIC_MEMBER_P(NODE) \
1961 ((TREE_CODE (NODE) == FUNCTION_DECL \
1962 && DECL_NONSTATIC_MEMBER_FUNCTION_P (NODE)) \
1963 || TREE_CODE (NODE) == FIELD_DECL)
1964
1965 /* Nonzero for _DECL means that this member object type
1966 is mutable. */
1967 #define DECL_MUTABLE_P(NODE) (DECL_LANG_FLAG_0 (NODE))
1968
1969 /* Nonzero for _DECL means that this constructor is a non-converting
1970 constructor. */
1971 #define DECL_NONCONVERTING_P(NODE) \
1972 (DECL_LANG_SPECIFIC (NODE)->decl_flags.nonconverting)
1973
1974 /* Nonzero for FUNCTION_DECL means that this member function is a pure
1975 virtual function. */
1976 #define DECL_PURE_VIRTUAL_P(NODE) \
1977 (DECL_LANG_SPECIFIC (NODE)->decl_flags.pure_virtual)
1978
1979 /* Nonzero for FUNCTION_DECL means that this member function
1980 must be overridden by derived classes. */
1981 #define DECL_NEEDS_FINAL_OVERRIDER_P(NODE) \
1982 (DECL_LANG_SPECIFIC (NODE)->decl_flags.needs_final_overrider)
1983
1984 /* The thunks associated with NODE, a FUNCTION_DECL. */
1985 #define DECL_THUNKS(NODE) \
1986 (DECL_LANG_SPECIFIC (NODE)->u.f.context)
1987
1988 /* Nonzero if NODE is a thunk, rather than an ordinary function. */
1989 #define DECL_THUNK_P(NODE) \
1990 (TREE_CODE (NODE) == FUNCTION_DECL \
1991 && DECL_LANG_FLAG_7 (NODE))
1992
1993 /* Nonzero if NODE is a this pointer adjusting thunk. */
1994 #define DECL_THIS_THUNK_P(NODE) \
1995 (DECL_THUNK_P (NODE) && DECL_LANG_SPECIFIC (NODE)->decl_flags.this_thunk_p)
1996
1997 /* Nonzero if NODE is a result pointer adjusting thunk. */
1998 #define DECL_RESULT_THUNK_P(NODE) \
1999 (DECL_THUNK_P (NODE) && !DECL_LANG_SPECIFIC (NODE)->decl_flags.this_thunk_p)
2000
2001 /* Nonzero if NODE is a FUNCTION_DECL, but not a thunk. */
2002 #define DECL_NON_THUNK_FUNCTION_P(NODE) \
2003 (TREE_CODE (NODE) == FUNCTION_DECL && !DECL_THUNK_P (NODE))
2004
2005 /* Nonzero if NODE is `extern "C"'. */
2006 #define DECL_EXTERN_C_P(NODE) \
2007 (DECL_LANGUAGE (NODE) == lang_c)
2008
2009 /* Nonzero if NODE is an `extern "C"' function. */
2010 #define DECL_EXTERN_C_FUNCTION_P(NODE) \
2011 (DECL_NON_THUNK_FUNCTION_P (NODE) && DECL_EXTERN_C_P (NODE))
2012
2013 /* Set DECL_THUNK_P for node. */
2014 #define SET_DECL_THUNK_P(NODE, THIS_ADJUSTING) \
2015 (DECL_LANG_FLAG_7 (NODE) = 1, \
2016 DECL_LANG_SPECIFIC (NODE)->u.f.u3sel = 1, \
2017 DECL_LANG_SPECIFIC (NODE)->decl_flags.this_thunk_p = (THIS_ADJUSTING))
2018
2019 /* Nonzero if this DECL is the __PRETTY_FUNCTION__ variable in a
2020 template function. */
2021 #define DECL_PRETTY_FUNCTION_P(NODE) \
2022 (TREE_LANG_FLAG_0 (VAR_DECL_CHECK (NODE)))
2023
2024 /* The _TYPE context in which this _DECL appears. This field holds the
2025 class where a virtual function instance is actually defined. */
2026 #define DECL_CLASS_CONTEXT(NODE) \
2027 (DECL_CLASS_SCOPE_P (NODE) ? DECL_CONTEXT (NODE) : NULL_TREE)
2028
2029 /* For a non-member friend function, the class (if any) in which this
2030 friend was defined. For example, given:
2031
2032 struct S { friend void f (); };
2033
2034 the DECL_FRIEND_CONTEXT for `f' will be `S'. */
2035 #define DECL_FRIEND_CONTEXT(NODE) \
2036 ((DECL_FRIEND_P (NODE) && !DECL_FUNCTION_MEMBER_P (NODE)) \
2037 ? DECL_LANG_SPECIFIC (NODE)->u.f.context \
2038 : NULL_TREE)
2039
2040 /* Set the DECL_FRIEND_CONTEXT for NODE to CONTEXT. */
2041 #define SET_DECL_FRIEND_CONTEXT(NODE, CONTEXT) \
2042 (DECL_LANG_SPECIFIC (NODE)->u.f.context = (CONTEXT))
2043
2044 /* NULL_TREE in DECL_CONTEXT represents the global namespace. */
2045 #define CP_DECL_CONTEXT(NODE) \
2046 (DECL_CONTEXT (NODE) ? DECL_CONTEXT (NODE) : global_namespace)
2047 #define FROB_CONTEXT(NODE) ((NODE) == global_namespace ? NULL_TREE : (NODE))
2048
2049 /* 1 iff NODE has namespace scope, including the global namespace. */
2050 #define DECL_NAMESPACE_SCOPE_P(NODE) \
2051 (!DECL_TEMPLATE_PARM_P (NODE) \
2052 && TREE_CODE (CP_DECL_CONTEXT (NODE)) == NAMESPACE_DECL)
2053
2054 /* 1 iff NODE is a class member. */
2055 #define DECL_CLASS_SCOPE_P(NODE) \
2056 (DECL_CONTEXT (NODE) && TYPE_P (DECL_CONTEXT (NODE)))
2057
2058 /* 1 iff NODE is function-local. */
2059 #define DECL_FUNCTION_SCOPE_P(NODE) \
2060 (DECL_CONTEXT (NODE) \
2061 && TREE_CODE (DECL_CONTEXT (NODE)) == FUNCTION_DECL)
2062
2063 /* 1 iff VAR_DECL node NODE is virtual table or VTT. */
2064 #define DECL_VTABLE_OR_VTT_P(NODE) TREE_LANG_FLAG_5 (VAR_DECL_CHECK (NODE))
2065
2066 /* 1 iff NODE is function-local, but for types. */
2067 #define LOCAL_CLASS_P(NODE) \
2068 (decl_function_context (TYPE_MAIN_DECL (NODE)) != NULL_TREE)
2069
2070 /* For a NAMESPACE_DECL: the list of using namespace directives
2071 The PURPOSE is the used namespace, the value is the namespace
2072 that is the common ancestor. */
2073 #define DECL_NAMESPACE_USING(NODE) DECL_VINDEX (NAMESPACE_DECL_CHECK (NODE))
2074
2075 /* In a NAMESPACE_DECL, the DECL_INITIAL is used to record all users
2076 of a namespace, to record the transitive closure of using namespace. */
2077 #define DECL_NAMESPACE_USERS(NODE) DECL_INITIAL (NAMESPACE_DECL_CHECK (NODE))
2078
2079 /* In a NAMESPACE_DECL, points to the original namespace if this is
2080 a namespace alias. */
2081 #define DECL_NAMESPACE_ALIAS(NODE) \
2082 DECL_ABSTRACT_ORIGIN (NAMESPACE_DECL_CHECK (NODE))
2083 #define ORIGINAL_NAMESPACE(NODE) \
2084 (DECL_NAMESPACE_ALIAS (NODE) ? DECL_NAMESPACE_ALIAS (NODE) : (NODE))
2085
2086 /* Nonzero if NODE is the std namespace. */
2087 #define DECL_NAMESPACE_STD_P(NODE) \
2088 (TREE_CODE (NODE) == NAMESPACE_DECL \
2089 && CP_DECL_CONTEXT (NODE) == global_namespace \
2090 && DECL_NAME (NODE) == std_identifier)
2091
2092 /* In a non-local VAR_DECL with static storage duration, this is the
2093 initialization priority. If this value is zero, the NODE will be
2094 initialized at the DEFAULT_INIT_PRIORITY. */
2095 #define DECL_INIT_PRIORITY(NODE) (VAR_DECL_CHECK (NODE)->decl.u2.i)
2096
2097 /* In a TREE_LIST concatenating using directives, indicate indirect
2098 directives */
2099 #define TREE_INDIRECT_USING(NODE) (TREE_LIST_CHECK (NODE)->common.lang_flag_0)
2100
2101 /* In a VAR_DECL for a variable declared in a for statement,
2102 this is the shadowed (local) variable. */
2103 #define DECL_SHADOWED_FOR_VAR(NODE) DECL_RESULT_FLD(VAR_DECL_CHECK (NODE))
2104
2105 /* In a FUNCTION_DECL, this is nonzero if this function was defined in
2106 the class definition. We have saved away the text of the function,
2107 but have not yet processed it. */
2108 #define DECL_PENDING_INLINE_P(NODE) \
2109 (DECL_LANG_SPECIFIC (NODE)->u.f.pending_inline_p)
2110
2111 /* If DECL_PENDING_INLINE_P holds, this is the saved text of the
2112 function. */
2113 #define DECL_PENDING_INLINE_INFO(NODE) \
2114 (DECL_LANG_SPECIFIC (NODE)->u.f.u.pending_inline_info)
2115
2116 /* For a TYPE_DECL: if this structure has many fields, we'll sort them
2117 and put them into a TREE_VEC. */
2118 #define DECL_SORTED_FIELDS(NODE) \
2119 (DECL_LANG_SPECIFIC (TYPE_DECL_CHECK (NODE))->u.f.u.sorted_fields)
2120
2121 /* True if on the deferred_fns (see decl2.c) list. */
2122 #define DECL_DEFERRED_FN(DECL) \
2123 (DECL_LANG_SPECIFIC (DECL)->decl_flags.deferred)
2124
2125 /* For a VAR_DECL, FUNCTION_DECL, TYPE_DECL or TEMPLATE_DECL:
2126 template-specific information. */
2127 #define DECL_TEMPLATE_INFO(NODE) \
2128 (DECL_LANG_SPECIFIC (VAR_TEMPL_TYPE_OR_FUNCTION_DECL_CHECK (NODE)) \
2129 ->decl_flags.u.template_info)
2130
2131 /* For a VAR_DECL, indicates that the variable has been processed.
2132 This flag is set and unset throughout the code; it is always
2133 used for a temporary purpose. */
2134 #define DECL_VAR_MARKED_P(NODE) \
2135 (DECL_LANG_FLAG_4 (VAR_DECL_CHECK (NODE)))
2136
2137 /* Template information for a RECORD_TYPE or UNION_TYPE. */
2138 #define CLASSTYPE_TEMPLATE_INFO(NODE) \
2139 (LANG_TYPE_CLASS_CHECK (RECORD_OR_UNION_TYPE_CHECK (NODE))->template_info)
2140
2141 /* Template information for an ENUMERAL_TYPE. Although an enumeration may
2142 not be a primary template, it may be declared within the scope of a
2143 primary template and the enumeration constants may depend on
2144 non-type template parameters. */
2145 #define ENUM_TEMPLATE_INFO(NODE) (TYPE_BINFO (ENUMERAL_TYPE_CHECK (NODE)))
2146
2147 /* Template information for a template template parameter. */
2148 #define TEMPLATE_TEMPLATE_PARM_TEMPLATE_INFO(NODE) \
2149 (LANG_TYPE_CLASS_CHECK (BOUND_TEMPLATE_TEMPLATE_PARM_TYPE_CHECK (NODE)) \
2150 ->template_info)
2151
2152 /* Template information for an ENUMERAL_, RECORD_, or UNION_TYPE. */
2153 #define TYPE_TEMPLATE_INFO(NODE) \
2154 (TREE_CODE (NODE) == ENUMERAL_TYPE \
2155 ? ENUM_TEMPLATE_INFO (NODE) : \
2156 (TREE_CODE (NODE) == BOUND_TEMPLATE_TEMPLATE_PARM \
2157 ? TEMPLATE_TEMPLATE_PARM_TEMPLATE_INFO (NODE) : \
2158 (TYPE_LANG_SPECIFIC (NODE) \
2159 ? CLASSTYPE_TEMPLATE_INFO (NODE) \
2160 : NULL_TREE)))
2161
2162 /* Set the template information for an ENUMERAL_, RECORD_, or
2163 UNION_TYPE to VAL. */
2164 #define SET_TYPE_TEMPLATE_INFO(NODE, VAL) \
2165 (TREE_CODE (NODE) == ENUMERAL_TYPE \
2166 ? (ENUM_TEMPLATE_INFO (NODE) = (VAL)) \
2167 : (CLASSTYPE_TEMPLATE_INFO (NODE) = (VAL)))
2168
2169 #define TI_TEMPLATE(NODE) (TREE_PURPOSE (NODE))
2170 #define TI_ARGS(NODE) (TREE_VALUE (NODE))
2171 #define TI_PENDING_TEMPLATE_FLAG(NODE) TREE_LANG_FLAG_1 (NODE)
2172
2173 /* We use TREE_VECs to hold template arguments. If there is only one
2174 level of template arguments, then the TREE_VEC contains the
2175 arguments directly. If there is more than one level of template
2176 arguments, then each entry in the TREE_VEC is itself a TREE_VEC,
2177 containing the template arguments for a single level. The first
2178 entry in the outer TREE_VEC is the outermost level of template
2179 parameters; the last is the innermost.
2180
2181 It is incorrect to ever form a template argument vector containing
2182 only one level of arguments, but which is a TREE_VEC containing as
2183 its only entry the TREE_VEC for that level. */
2184
2185 /* Nonzero if the template arguments is actually a vector of vectors,
2186 rather than just a vector. */
2187 #define TMPL_ARGS_HAVE_MULTIPLE_LEVELS(NODE) \
2188 (NODE && TREE_VEC_ELT (NODE, 0) \
2189 && TREE_CODE (TREE_VEC_ELT (NODE, 0)) == TREE_VEC)
2190
2191 /* The depth of a template argument vector. When called directly by
2192 the parser, we use a TREE_LIST rather than a TREE_VEC to represent
2193 template arguments. In fact, we may even see NULL_TREE if there
2194 are no template arguments. In both of those cases, there is only
2195 one level of template arguments. */
2196 #define TMPL_ARGS_DEPTH(NODE) \
2197 (TMPL_ARGS_HAVE_MULTIPLE_LEVELS (NODE) ? TREE_VEC_LENGTH (NODE) : 1)
2198
2199 /* The LEVELth level of the template ARGS. The outermost level of
2200 args is level 1, not level 0. */
2201 #define TMPL_ARGS_LEVEL(ARGS, LEVEL) \
2202 (TMPL_ARGS_HAVE_MULTIPLE_LEVELS (ARGS) \
2203 ? TREE_VEC_ELT (ARGS, (LEVEL) - 1) : (ARGS))
2204
2205 /* Set the LEVELth level of the template ARGS to VAL. This macro does
2206 not work with single-level argument vectors. */
2207 #define SET_TMPL_ARGS_LEVEL(ARGS, LEVEL, VAL) \
2208 (TREE_VEC_ELT (ARGS, (LEVEL) - 1) = (VAL))
2209
2210 /* Accesses the IDXth parameter in the LEVELth level of the ARGS. */
2211 #define TMPL_ARG(ARGS, LEVEL, IDX) \
2212 (TREE_VEC_ELT (TMPL_ARGS_LEVEL (ARGS, LEVEL), IDX))
2213
2214 /* Set the IDXth element in the LEVELth level of ARGS to VAL. This
2215 macro does not work with single-level argument vectors. */
2216 #define SET_TMPL_ARG(ARGS, LEVEL, IDX, VAL) \
2217 (TREE_VEC_ELT (TREE_VEC_ELT ((ARGS), (LEVEL) - 1), (IDX)) = (VAL))
2218
2219 /* Given a single level of template arguments in NODE, return the
2220 number of arguments. */
2221 #define NUM_TMPL_ARGS(NODE) \
2222 (TREE_VEC_LENGTH (NODE))
2223
2224 /* Returns the innermost level of template arguments in ARGS. */
2225 #define INNERMOST_TEMPLATE_ARGS(NODE) \
2226 (get_innermost_template_args ((NODE), 1))
2227
2228 /* The number of levels of template parameters given by NODE. */
2229 #define TMPL_PARMS_DEPTH(NODE) \
2230 ((HOST_WIDE_INT) TREE_INT_CST_LOW (TREE_PURPOSE (NODE)))
2231
2232 /* The TEMPLATE_DECL instantiated or specialized by NODE. This
2233 TEMPLATE_DECL will be the immediate parent, not the most general
2234 template. For example, in:
2235
2236 template <class T> struct S { template <class U> void f(U); }
2237
2238 the FUNCTION_DECL for S<int>::f<double> will have, as its
2239 DECL_TI_TEMPLATE, `template <class U> S<int>::f<U>'.
2240
2241 As a special case, for a member friend template of a template
2242 class, this value will not be a TEMPLATE_DECL, but rather an
2243 IDENTIFIER_NODE or OVERLOAD indicating the name of the template and
2244 any explicit template arguments provided. For example, in:
2245
2246 template <class T> struct S { friend void f<int>(int, double); }
2247
2248 the DECL_TI_TEMPLATE will be an IDENTIFIER_NODE for `f' and the
2249 DECL_TI_ARGS will be {int}. */
2250 #define DECL_TI_TEMPLATE(NODE) TI_TEMPLATE (DECL_TEMPLATE_INFO (NODE))
2251
2252 /* The template arguments used to obtain this decl from the most
2253 general form of DECL_TI_TEMPLATE. For the example given for
2254 DECL_TI_TEMPLATE, the DECL_TI_ARGS will be {int, double}. These
2255 are always the full set of arguments required to instantiate this
2256 declaration from the most general template specialized here. */
2257 #define DECL_TI_ARGS(NODE) TI_ARGS (DECL_TEMPLATE_INFO (NODE))
2258 #define CLASSTYPE_TI_TEMPLATE(NODE) TI_TEMPLATE (CLASSTYPE_TEMPLATE_INFO (NODE))
2259 #define CLASSTYPE_TI_ARGS(NODE) TI_ARGS (CLASSTYPE_TEMPLATE_INFO (NODE))
2260 #define ENUM_TI_TEMPLATE(NODE) \
2261 TI_TEMPLATE (ENUM_TEMPLATE_INFO (NODE))
2262 #define ENUM_TI_ARGS(NODE) \
2263 TI_ARGS (ENUM_TEMPLATE_INFO (NODE))
2264
2265 /* For a template instantiation TYPE, returns the TYPE corresponding
2266 to the primary template. Otherwise returns TYPE itself. */
2267 #define CLASSTYPE_PRIMARY_TEMPLATE_TYPE(TYPE) \
2268 ((CLASSTYPE_USE_TEMPLATE ((TYPE)) && !CLASSTYPE_TEMPLATE_SPECIALIZATION ((TYPE))) \
2269 ? TREE_TYPE (DECL_TEMPLATE_RESULT (DECL_PRIMARY_TEMPLATE \
2270 (CLASSTYPE_TI_TEMPLATE ((TYPE))))) \
2271 : (TYPE))
2272
2273 /* Like DECL_TI_TEMPLATE, but for an ENUMERAL_, RECORD_, or UNION_TYPE. */
2274 #define TYPE_TI_TEMPLATE(NODE) \
2275 (TI_TEMPLATE (TYPE_TEMPLATE_INFO (NODE)))
2276
2277 /* Like DECL_TI_ARGS, but for an ENUMERAL_, RECORD_, or UNION_TYPE. */
2278 #define TYPE_TI_ARGS(NODE) \
2279 (TI_ARGS (TYPE_TEMPLATE_INFO (NODE)))
2280
2281 #define INNERMOST_TEMPLATE_PARMS(NODE) TREE_VALUE (NODE)
2282
2283 /* Nonzero if the NODE corresponds to the template parameters for a
2284 member template, whose inline definition is being processed after
2285 the class definition is complete. */
2286 #define TEMPLATE_PARMS_FOR_INLINE(NODE) TREE_LANG_FLAG_1 (NODE)
2287
2288 /* In a FUNCTION_DECL, the saved language-specific per-function data. */
2289 #define DECL_SAVED_FUNCTION_DATA(NODE) \
2290 (DECL_LANG_SPECIFIC (FUNCTION_DECL_CHECK (NODE)) \
2291 ->u.f.u.saved_language_function)
2292
2293 #define NEW_EXPR_USE_GLOBAL(NODE) TREE_LANG_FLAG_0 (NODE)
2294 #define DELETE_EXPR_USE_GLOBAL(NODE) TREE_LANG_FLAG_0 (NODE)
2295 #define DELETE_EXPR_USE_VEC(NODE) TREE_LANG_FLAG_1 (NODE)
2296
2297 /* In a CALL_EXPR appearing in a template, true if Koenig lookup
2298 should be performed at instantiation time. */
2299 #define KOENIG_LOOKUP_P(NODE) TREE_LANG_FLAG_0(NODE)
2300
2301 /* Nonzero if this AGGR_INIT_EXPR provides for initialization via a
2302 constructor call, rather than an ordinary function call. */
2303 #define AGGR_INIT_VIA_CTOR_P(NODE) \
2304 TREE_LANG_FLAG_0 (AGGR_INIT_EXPR_CHECK (NODE))
2305
2306 /* The TYPE_MAIN_DECL for a class template type is a TYPE_DECL, not a
2307 TEMPLATE_DECL. This macro determines whether or not a given class
2308 type is really a template type, as opposed to an instantiation or
2309 specialization of one. */
2310 #define CLASSTYPE_IS_TEMPLATE(NODE) \
2311 (CLASSTYPE_TEMPLATE_INFO (NODE) \
2312 && !CLASSTYPE_USE_TEMPLATE (NODE) \
2313 && PRIMARY_TEMPLATE_P (CLASSTYPE_TI_TEMPLATE (NODE)))
2314
2315 /* The name used by the user to name the typename type. Typically,
2316 this is an IDENTIFIER_NODE, and the same as the DECL_NAME on the
2317 corresponding TYPE_DECL. However, this may also be a
2318 TEMPLATE_ID_EXPR if we had something like `typename X::Y<T>'. */
2319 #define TYPENAME_TYPE_FULLNAME(NODE) (TYPE_FIELDS (NODE))
2320
2321 /* Nonzero in INTEGER_CST means that this int is negative by dint of
2322 using a twos-complement negated operand. */
2323 #define TREE_NEGATED_INT(NODE) TREE_LANG_FLAG_0 (INTEGER_CST_CHECK (NODE))
2324
2325 /* Nonzero in any kind of _TYPE where conversions to base-classes may
2326 involve pointer arithmetic. If this is zero, then converting to
2327 a base-class never requires changing the value of the pointer. */
2328 #define TYPE_BASE_CONVS_MAY_REQUIRE_CODE_P(NODE) (TREE_LANG_FLAG_1 (NODE))
2329
2330 /* [class.virtual]
2331
2332 A class that declares or inherits a virtual function is called a
2333 polymorphic class. */
2334 #define TYPE_POLYMORPHIC_P(NODE) (TREE_LANG_FLAG_2 (NODE))
2335
2336 /* Nonzero if this class has a virtual function table pointer. */
2337 #define TYPE_CONTAINS_VPTR_P(NODE) \
2338 (TYPE_POLYMORPHIC_P (NODE) \
2339 || TYPE_USES_VIRTUAL_BASECLASSES (NODE))
2340
2341 /* This flag is true of a local VAR_DECL if it was declared in a for
2342 statement, but we are no longer in the scope of the for. */
2343 #define DECL_DEAD_FOR_LOCAL(NODE) DECL_LANG_FLAG_7 (VAR_DECL_CHECK (NODE))
2344
2345 /* This flag is set on a VAR_DECL that is a DECL_DEAD_FOR_LOCAL
2346 if we already emitted a warning about using it. */
2347 #define DECL_ERROR_REPORTED(NODE) DECL_LANG_FLAG_0 (VAR_DECL_CHECK (NODE))
2348
2349 /* Nonzero if NODE is a FUNCTION_DECL (for a function with global
2350 scope) declared in a local scope. */
2351 #define DECL_LOCAL_FUNCTION_P(NODE) \
2352 DECL_LANG_FLAG_0 (FUNCTION_DECL_CHECK (NODE))
2353
2354 /* Nonzero if NODE is a FUNCTION_DECL for a built-in function, and we have
2355 not yet seen a prototype for that function. */
2356 #define DECL_ANTICIPATED(NODE) \
2357 (DECL_LANG_SPECIFIC (DECL_CHECK (NODE))->decl_flags.anticipated_p)
2358
2359 /* Record whether a typedef for type `int' was actually `signed int'. */
2360 #define C_TYPEDEF_EXPLICITLY_SIGNED(EXP) DECL_LANG_FLAG_1 (EXP)
2361
2362 /* Returns nonzero if DECL has external linkage, as specified by the
2363 language standard. (This predicate may hold even when the
2364 corresponding entity is not actually given external linkage in the
2365 object file; see decl_linkage for details.) */
2366 #define DECL_EXTERNAL_LINKAGE_P(DECL) \
2367 (decl_linkage (DECL) == lk_external)
2368
2369 #define INTEGRAL_CODE_P(CODE) \
2370 ((CODE) == INTEGER_TYPE || (CODE) == ENUMERAL_TYPE || (CODE) == BOOLEAN_TYPE)
2371
2372 /* [basic.fundamental]
2373
2374 Types bool, char, wchar_t, and the signed and unsigned integer types
2375 are collectively called integral types.
2376
2377 Note that INTEGRAL_TYPE_P, as defined in tree.h, allows enumeration
2378 types as well, which is incorrect in C++. */
2379 #define CP_INTEGRAL_TYPE_P(TYPE) \
2380 (TREE_CODE (TYPE) == BOOLEAN_TYPE \
2381 || TREE_CODE (TYPE) == INTEGER_TYPE)
2382
2383 /* Returns true if TYPE is an integral or enumeration name. */
2384 #define INTEGRAL_OR_ENUMERATION_TYPE_P(TYPE) \
2385 (CP_INTEGRAL_TYPE_P (TYPE) || TREE_CODE (TYPE) == ENUMERAL_TYPE)
2386
2387 /* [basic.fundamental]
2388
2389 Integral and floating types are collectively called arithmetic
2390 types. */
2391 #define ARITHMETIC_TYPE_P(TYPE) \
2392 (CP_INTEGRAL_TYPE_P (TYPE) || TREE_CODE (TYPE) == REAL_TYPE)
2393
2394 /* [basic.types]
2395
2396 Arithmetic types, enumeration types, pointer types, and
2397 pointer-to-member types, are collectively called scalar types. */
2398 #define SCALAR_TYPE_P(TYPE) \
2399 (ARITHMETIC_TYPE_P (TYPE) \
2400 || TREE_CODE (TYPE) == ENUMERAL_TYPE \
2401 || TYPE_PTR_P (TYPE) \
2402 || TYPE_PTR_TO_MEMBER_P (TYPE))
2403
2404 /* [dcl.init.aggr]
2405
2406 An aggregate is an array or a class with no user-declared
2407 constructors, no private or protected non-static data members, no
2408 base classes, and no virtual functions.
2409
2410 As an extension, we also treat vectors as aggregates. */
2411 #define CP_AGGREGATE_TYPE_P(TYPE) \
2412 (TREE_CODE (TYPE) == ARRAY_TYPE \
2413 || TREE_CODE (TYPE) == VECTOR_TYPE \
2414 || (CLASS_TYPE_P (TYPE) \
2415 && !CLASSTYPE_NON_AGGREGATE (TYPE)))
2416
2417 /* Nonzero for a class type means that the class type has a
2418 user-declared constructor. */
2419 #define TYPE_HAS_CONSTRUCTOR(NODE) (TYPE_LANG_FLAG_1 (NODE))
2420
2421 /* When appearing in an INDIRECT_REF, it means that the tree structure
2422 underneath is actually a call to a constructor. This is needed
2423 when the constructor must initialize local storage (which can
2424 be automatically destroyed), rather than allowing it to allocate
2425 space from the heap.
2426
2427 When appearing in a SAVE_EXPR, it means that underneath
2428 is a call to a constructor.
2429
2430 When appearing in a CONSTRUCTOR, it means that it was
2431 a GNU C constructor expression.
2432
2433 When appearing in a FIELD_DECL, it means that this field
2434 has been duly initialized in its constructor. */
2435 #define TREE_HAS_CONSTRUCTOR(NODE) (TREE_LANG_FLAG_4 (NODE))
2436
2437 #define EMPTY_CONSTRUCTOR_P(NODE) (TREE_CODE (NODE) == CONSTRUCTOR \
2438 && CONSTRUCTOR_ELTS (NODE) == NULL_TREE \
2439 && ! TREE_HAS_CONSTRUCTOR (NODE))
2440
2441 /* Nonzero for _TYPE means that the _TYPE defines a destructor. */
2442 #define TYPE_HAS_DESTRUCTOR(NODE) (TYPE_LANG_FLAG_2 (NODE))
2443
2444 /* Nonzero means that an object of this type can not be initialized using
2445 an initializer list. */
2446 #define CLASSTYPE_NON_AGGREGATE(NODE) \
2447 (LANG_TYPE_CLASS_CHECK (NODE)->non_aggregate)
2448 #define TYPE_NON_AGGREGATE_CLASS(NODE) \
2449 (IS_AGGR_TYPE (NODE) && CLASSTYPE_NON_AGGREGATE (NODE))
2450
2451 /* Nonzero if there is a user-defined X::op=(x&) for this class. */
2452 #define TYPE_HAS_REAL_ASSIGN_REF(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_real_assign_ref)
2453 #define TYPE_HAS_COMPLEX_ASSIGN_REF(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_assign_ref)
2454 #define TYPE_HAS_ABSTRACT_ASSIGN_REF(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_abstract_assign_ref)
2455 #define TYPE_HAS_COMPLEX_INIT_REF(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->has_complex_init_ref)
2456
2457 /* Nonzero if TYPE has a trivial destructor. From [class.dtor]:
2458
2459 A destructor is trivial if it is an implicitly declared
2460 destructor and if:
2461
2462 - all of the direct base classes of its class have trivial
2463 destructors,
2464
2465 - for all of the non-static data members of its class that are
2466 of class type (or array thereof), each such class has a
2467 trivial destructor. */
2468 #define TYPE_HAS_TRIVIAL_DESTRUCTOR(NODE) \
2469 (!TYPE_HAS_NONTRIVIAL_DESTRUCTOR (NODE))
2470
2471 /* Nonzero for _TYPE node means that this type does not have a trivial
2472 destructor. Therefore, destroying an object of this type will
2473 involve a call to a destructor. This can apply to objects of
2474 ARRAY_TYPE is the type of the elements needs a destructor. */
2475 #define TYPE_HAS_NONTRIVIAL_DESTRUCTOR(NODE) \
2476 (TYPE_LANG_FLAG_4 (NODE))
2477
2478 /* Nonzero for class type means that copy initialization of this type can use
2479 a bitwise copy. */
2480 #define TYPE_HAS_TRIVIAL_INIT_REF(NODE) \
2481 (TYPE_HAS_INIT_REF (NODE) && ! TYPE_HAS_COMPLEX_INIT_REF (NODE))
2482
2483 /* Nonzero for class type means that assignment of this type can use
2484 a bitwise copy. */
2485 #define TYPE_HAS_TRIVIAL_ASSIGN_REF(NODE) \
2486 (TYPE_HAS_ASSIGN_REF (NODE) && ! TYPE_HAS_COMPLEX_ASSIGN_REF (NODE))
2487
2488 /* Returns true if NODE is a pointer-to-data-member. */
2489 #define TYPE_PTRMEM_P(NODE) \
2490 (TREE_CODE (NODE) == OFFSET_TYPE)
2491 #define TYPE_PTR_P(NODE) \
2492 (TREE_CODE (NODE) == POINTER_TYPE)
2493 #define TYPE_PTROB_P(NODE) \
2494 (TYPE_PTR_P (NODE) \
2495 && TREE_CODE (TREE_TYPE (NODE)) != FUNCTION_TYPE \
2496 && TREE_CODE (TREE_TYPE (NODE)) != METHOD_TYPE \
2497 && TREE_CODE (TREE_TYPE (NODE)) != VOID_TYPE)
2498 #define TYPE_PTROBV_P(NODE) \
2499 (TYPE_PTR_P (NODE) && TREE_CODE (TREE_TYPE (NODE)) != FUNCTION_TYPE)
2500 #define TYPE_PTRFN_P(NODE) \
2501 (TREE_CODE (NODE) == POINTER_TYPE \
2502 && TREE_CODE (TREE_TYPE (NODE)) == FUNCTION_TYPE)
2503 #define TYPE_REFFN_P(NODE) \
2504 (TREE_CODE (NODE) == REFERENCE_TYPE \
2505 && TREE_CODE (TREE_TYPE (NODE)) == FUNCTION_TYPE)
2506
2507 /* Nonzero for _TYPE node means that this type is a pointer to member
2508 function type. */
2509 #define TYPE_PTRMEMFUNC_P(NODE) \
2510 (TREE_CODE (NODE) == RECORD_TYPE \
2511 && TYPE_LANG_SPECIFIC (NODE) \
2512 && TYPE_PTRMEMFUNC_FLAG (NODE))
2513
2514 #define TYPE_PTRMEMFUNC_FLAG(NODE) \
2515 (LANG_TYPE_CLASS_CHECK (NODE)->ptrmemfunc_flag)
2516
2517 /* Returns true if NODE is a pointer-to-member. */
2518 #define TYPE_PTR_TO_MEMBER_P(NODE) \
2519 (TYPE_PTRMEM_P (NODE) || TYPE_PTRMEMFUNC_P (NODE))
2520
2521 /* Indicates when overload resolution may resolve to a pointer to
2522 member function. [expr.unary.op]/3 */
2523 #define PTRMEM_OK_P(NODE) TREE_LANG_FLAG_0 (NODE)
2524
2525 /* Get the POINTER_TYPE to the METHOD_TYPE associated with this
2526 pointer to member function. TYPE_PTRMEMFUNC_P _must_ be true,
2527 before using this macro. */
2528 #define TYPE_PTRMEMFUNC_FN_TYPE(NODE) \
2529 (TREE_TYPE (TYPE_FIELDS (NODE)))
2530
2531 /* Returns `A' for a type like `int (A::*)(double)' */
2532 #define TYPE_PTRMEMFUNC_OBJECT_TYPE(NODE) \
2533 TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (NODE)))
2534
2535 /* These are use to manipulate the canonical RECORD_TYPE from the
2536 hashed POINTER_TYPE, and can only be used on the POINTER_TYPE. */
2537 #define TYPE_GET_PTRMEMFUNC_TYPE(NODE) \
2538 (TYPE_LANG_SPECIFIC (NODE) ? LANG_TYPE_PTRMEM_CHECK (NODE)->record : NULL)
2539 #define TYPE_SET_PTRMEMFUNC_TYPE(NODE, VALUE) \
2540 do { \
2541 if (TYPE_LANG_SPECIFIC (NODE) == NULL) \
2542 { \
2543 TYPE_LANG_SPECIFIC (NODE) = \
2544 ggc_alloc_cleared (sizeof (struct lang_type_ptrmem)); \
2545 TYPE_LANG_SPECIFIC (NODE)->u.ptrmem.h.is_lang_type_class = 0; \
2546 } \
2547 TYPE_LANG_SPECIFIC (NODE)->u.ptrmem.record = (VALUE); \
2548 } while (0)
2549 /* Returns the pfn field from a TYPE_PTRMEMFUNC_P. */
2550 #define PFN_FROM_PTRMEMFUNC(NODE) pfn_from_ptrmemfunc ((NODE))
2551
2552 /* For a pointer-to-member type of the form `T X::*', this is `X'.
2553 For a type like `void (X::*)() const', this type is `X', not `const
2554 X'. To get at the `const X' you have to look at the
2555 TYPE_PTRMEM_POINTED_TO_TYPE; there, the first parameter will have
2556 type `const X*'. */
2557 #define TYPE_PTRMEM_CLASS_TYPE(NODE) \
2558 (TYPE_PTRMEM_P (NODE) \
2559 ? TYPE_OFFSET_BASETYPE (NODE) \
2560 : TYPE_PTRMEMFUNC_OBJECT_TYPE (NODE))
2561
2562 /* For a pointer-to-member type of the form `T X::*', this is `T'. */
2563 #define TYPE_PTRMEM_POINTED_TO_TYPE(NODE) \
2564 (TYPE_PTRMEM_P (NODE) \
2565 ? TREE_TYPE (NODE) \
2566 : TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (NODE)))
2567
2568 /* For a pointer-to-member constant `X::Y' this is the RECORD_TYPE for
2569 `X'. */
2570 #define PTRMEM_CST_CLASS(NODE) \
2571 TYPE_PTRMEM_CLASS_TYPE (TREE_TYPE (PTRMEM_CST_CHECK (NODE)))
2572
2573 /* For a pointer-to-member constant `X::Y' this is the _DECL for
2574 `Y'. */
2575 #define PTRMEM_CST_MEMBER(NODE) (((ptrmem_cst_t)PTRMEM_CST_CHECK (NODE))->member)
2576
2577 /* Nonzero for VAR_DECL and FUNCTION_DECL node means that `extern' was
2578 specified in its declaration. This can also be set for an
2579 erroneously declared PARM_DECL. */
2580 #define DECL_THIS_EXTERN(NODE) \
2581 DECL_LANG_FLAG_2 (VAR_FUNCTION_OR_PARM_DECL_CHECK (NODE))
2582
2583 /* Nonzero for VAR_DECL and FUNCTION_DECL node means that `static' was
2584 specified in its declaration. This can also be set for an
2585 erroneously declared PARM_DECL. */
2586 #define DECL_THIS_STATIC(NODE) \
2587 DECL_LANG_FLAG_6 (VAR_FUNCTION_OR_PARM_DECL_CHECK (NODE))
2588
2589 /* Nonzero if TYPE is an anonymous union or struct type. We have to use a
2590 flag for this because "A union for which objects or pointers are
2591 declared is not an anonymous union" [class.union]. */
2592 #define ANON_AGGR_TYPE_P(NODE) \
2593 (CLASS_TYPE_P (NODE) && LANG_TYPE_CLASS_CHECK (NODE)->anon_aggr)
2594 #define SET_ANON_AGGR_TYPE_P(NODE) \
2595 (LANG_TYPE_CLASS_CHECK (NODE)->anon_aggr = 1)
2596
2597 /* Nonzero if TYPE is an anonymous union type. */
2598 #define ANON_UNION_TYPE_P(NODE) \
2599 (TREE_CODE (NODE) == UNION_TYPE && ANON_AGGR_TYPE_P (NODE))
2600
2601 #define UNKNOWN_TYPE LANG_TYPE
2602
2603 /* Define fields and accessors for nodes representing declared names. */
2604
2605 #define TYPE_WAS_ANONYMOUS(NODE) (LANG_TYPE_CLASS_CHECK (NODE)->was_anonymous)
2606
2607 /* C++: all of these are overloaded! These apply only to TYPE_DECLs. */
2608
2609 /* The format of each node in the DECL_FRIENDLIST is as follows:
2610
2611 The TREE_PURPOSE will be the name of a function, i.e., an
2612 IDENTIFIER_NODE. The TREE_VALUE will be itself a TREE_LIST, whose
2613 TREE_VALUEs are friends with the given name. */
2614 #define DECL_FRIENDLIST(NODE) (DECL_INITIAL (NODE))
2615 #define FRIEND_NAME(LIST) (TREE_PURPOSE (LIST))
2616 #define FRIEND_DECLS(LIST) (TREE_VALUE (LIST))
2617
2618 /* The DECL_ACCESS, if non-NULL, is a TREE_LIST. The TREE_PURPOSE of
2619 each node is a type; the TREE_VALUE is the access granted for this
2620 DECL in that type. The DECL_ACCESS is set by access declarations.
2621 For example, if a member that would normally be public in a
2622 derived class is made protected, then the derived class and the
2623 protected_access_node will appear in the DECL_ACCESS for the node. */
2624 #define DECL_ACCESS(NODE) (LANG_DECL_U2_CHECK (NODE, 0)->access)
2625
2626 /* Nonzero if the FUNCTION_DECL is a global constructor. */
2627 #define DECL_GLOBAL_CTOR_P(NODE) \
2628 (DECL_LANG_SPECIFIC (NODE)->decl_flags.global_ctor_p)
2629
2630 /* Nonzero if the FUNCTION_DECL is a global destructor. */
2631 #define DECL_GLOBAL_DTOR_P(NODE) \
2632 (DECL_LANG_SPECIFIC (NODE)->decl_flags.global_dtor_p)
2633
2634 /* Accessor macros for C++ template decl nodes. */
2635
2636 /* The DECL_TEMPLATE_PARMS are a list. The TREE_PURPOSE of each node
2637 is a INT_CST whose TREE_INT_CST_LOW indicates the level of the
2638 template parameters, with 1 being the outermost set of template
2639 parameters. The TREE_VALUE is a vector, whose elements are the
2640 template parameters at each level. Each element in the vector is a
2641 TREE_LIST, whose TREE_VALUE is a PARM_DECL (if the parameter is a
2642 non-type parameter), or a TYPE_DECL (if the parameter is a type
2643 parameter). The TREE_PURPOSE is the default value, if any. The
2644 TEMPLATE_PARM_INDEX for the parameter is available as the
2645 DECL_INITIAL (for a PARM_DECL) or as the TREE_TYPE (for a
2646 TYPE_DECL). */
2647 #define DECL_TEMPLATE_PARMS(NODE) DECL_ARGUMENTS (NODE)
2648 #define DECL_INNERMOST_TEMPLATE_PARMS(NODE) \
2649 INNERMOST_TEMPLATE_PARMS (DECL_TEMPLATE_PARMS (NODE))
2650 #define DECL_NTPARMS(NODE) \
2651 TREE_VEC_LENGTH (DECL_INNERMOST_TEMPLATE_PARMS (NODE))
2652 /* For function, method, class-data templates. */
2653 #define DECL_TEMPLATE_RESULT(NODE) DECL_RESULT_FLD (NODE)
2654 /* For a static member variable template, the
2655 DECL_TEMPLATE_INSTANTIATIONS list contains the explicitly and
2656 implicitly generated instantiations of the variable. There are no
2657 partial instantiations of static member variables, so all of these
2658 will be full instantiations.
2659
2660 For a class template the DECL_TEMPLATE_INSTANTIATIONS lists holds
2661 all instantiations and specializations of the class type, including
2662 partial instantiations and partial specializations.
2663
2664 In both cases, the TREE_PURPOSE of each node contains the arguments
2665 used; the TREE_VALUE contains the generated variable. The template
2666 arguments are always complete. For example, given:
2667
2668 template <class T> struct S1 {
2669 template <class U> struct S2 {};
2670 template <class U> struct S2<U*> {};
2671 };
2672
2673 the record for the partial specialization will contain, as its
2674 argument list, { {T}, {U*} }, and will be on the
2675 DECL_TEMPLATE_INSTANTIATIONS list for `template <class T> template
2676 <class U> struct S1<T>::S2'.
2677
2678 This list is not used for function templates. */
2679 #define DECL_TEMPLATE_INSTANTIATIONS(NODE) DECL_VINDEX (NODE)
2680 /* For a function template, the DECL_TEMPLATE_SPECIALIZATIONS lists
2681 contains all instantiations and specializations of the function,
2682 including partial instantiations. For a partial instantiation
2683 which is a specialization, this list holds only full
2684 specializations of the template that are instantiations of the
2685 partial instantiation. For example, given:
2686
2687 template <class T> struct S {
2688 template <class U> void f(U);
2689 template <> void f(T);
2690 };
2691
2692 the `S<int>::f<int>(int)' function will appear on the
2693 DECL_TEMPLATE_SPECIALIZATIONS list for both `template <class T>
2694 template <class U> void S<T>::f(U)' and `template <class T> void
2695 S<int>::f(T)'. In the latter case, however, it will have only the
2696 innermost set of arguments (T, in this case). The DECL_TI_TEMPLATE
2697 for the function declaration will point at the specialization, not
2698 the fully general template.
2699
2700 For a class template, this list contains the partial
2701 specializations of this template. (Full specializations are not
2702 recorded on this list.) The TREE_PURPOSE holds the innermost
2703 arguments used in the partial specialization (e.g., for `template
2704 <class T> struct S<T*, int>' this will be `T*'.) The TREE_VALUE
2705 holds the innermost template parameters for the specialization
2706 (e.g., `T' in the example above.) The TREE_TYPE is the _TYPE node
2707 for the partial specialization.
2708
2709 This list is not used for static variable templates. */
2710 #define DECL_TEMPLATE_SPECIALIZATIONS(NODE) DECL_SIZE (NODE)
2711
2712 /* Nonzero for a DECL which is actually a template parameter. */
2713 #define DECL_TEMPLATE_PARM_P(NODE) \
2714 (DECL_LANG_FLAG_0 (NODE) \
2715 && (TREE_CODE (NODE) == CONST_DECL \
2716 || TREE_CODE (NODE) == PARM_DECL \
2717 || TREE_CODE (NODE) == TYPE_DECL \
2718 || TREE_CODE (NODE) == TEMPLATE_DECL))
2719
2720 /* Mark NODE as a template parameter. */
2721 #define SET_DECL_TEMPLATE_PARM_P(NODE) \
2722 (DECL_LANG_FLAG_0 (NODE) = 1)
2723
2724 /* Nonzero if NODE is a template template parameter. */
2725 #define DECL_TEMPLATE_TEMPLATE_PARM_P(NODE) \
2726 (TREE_CODE (NODE) == TEMPLATE_DECL && DECL_TEMPLATE_PARM_P (NODE))
2727
2728 #define DECL_FUNCTION_TEMPLATE_P(NODE) \
2729 (TREE_CODE (NODE) == TEMPLATE_DECL \
2730 && TREE_CODE (DECL_TEMPLATE_RESULT (NODE)) == FUNCTION_DECL)
2731
2732 /* Nonzero for a DECL that represents a template class. */
2733 #define DECL_CLASS_TEMPLATE_P(NODE) \
2734 (TREE_CODE (NODE) == TEMPLATE_DECL \
2735 && TREE_CODE (DECL_TEMPLATE_RESULT (NODE)) == TYPE_DECL \
2736 && !DECL_TEMPLATE_TEMPLATE_PARM_P (NODE))
2737
2738 /* Nonzero if NODE which declares a type. */
2739 #define DECL_DECLARES_TYPE_P(NODE) \
2740 (TREE_CODE (NODE) == TYPE_DECL || DECL_CLASS_TEMPLATE_P (NODE))
2741
2742 /* Nonzero if NODE is the typedef implicitly generated for a type when
2743 the type is declared. In C++, `struct S {};' is roughly
2744 equivalent to `struct S {}; typedef struct S S;' in C.
2745 DECL_IMPLICIT_TYPEDEF_P will hold for the typedef indicated in this
2746 example. In C++, there is a second implicit typedef for each
2747 class, in the scope of `S' itself, so that you can say `S::S'.
2748 DECL_SELF_REFERENCE_P will hold for that second typedef. */
2749 #define DECL_IMPLICIT_TYPEDEF_P(NODE) \
2750 (TREE_CODE (NODE) == TYPE_DECL && DECL_LANG_FLAG_2 (NODE))
2751 #define SET_DECL_IMPLICIT_TYPEDEF_P(NODE) \
2752 (DECL_LANG_FLAG_2 (NODE) = 1)
2753 #define DECL_SELF_REFERENCE_P(NODE) \
2754 (TREE_CODE (NODE) == TYPE_DECL && DECL_LANG_FLAG_4 (NODE))
2755 #define SET_DECL_SELF_REFERENCE_P(NODE) \
2756 (DECL_LANG_FLAG_4 (NODE) = 1)
2757
2758 /* A `primary' template is one that has its own template header. A
2759 member function of a class template is a template, but not primary.
2760 A member template is primary. Friend templates are primary, too. */
2761
2762 /* Returns the primary template corresponding to these parameters. */
2763 #define DECL_PRIMARY_TEMPLATE(NODE) \
2764 (TREE_TYPE (DECL_INNERMOST_TEMPLATE_PARMS (NODE)))
2765
2766 /* Returns nonzero if NODE is a primary template. */
2767 #define PRIMARY_TEMPLATE_P(NODE) (DECL_PRIMARY_TEMPLATE (NODE) == (NODE))
2768
2769 #define CLASSTYPE_TEMPLATE_LEVEL(NODE) \
2770 (TREE_INT_CST_LOW (TREE_PURPOSE (CLASSTYPE_TI_TEMPLATE (NODE))))
2771
2772 /* Indicates whether or not (and how) a template was expanded for this
2773 FUNCTION_DECL or VAR_DECL.
2774 0=normal declaration, e.g. int min (int, int);
2775 1=implicit template instantiation
2776 2=explicit template specialization, e.g. int min<int> (int, int);
2777 3=explicit template instantiation, e.g. template int min<int> (int, int); */
2778 #define DECL_USE_TEMPLATE(NODE) (DECL_LANG_SPECIFIC (NODE)->decl_flags.use_template)
2779
2780 #define DECL_TEMPLATE_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) & 1)
2781 #define CLASSTYPE_TEMPLATE_INSTANTIATION(NODE) \
2782 (CLASSTYPE_USE_TEMPLATE (NODE) & 1)
2783
2784 #define DECL_TEMPLATE_SPECIALIZATION(NODE) (DECL_USE_TEMPLATE (NODE) == 2)
2785 #define SET_DECL_TEMPLATE_SPECIALIZATION(NODE) (DECL_USE_TEMPLATE (NODE) = 2)
2786 #define CLASSTYPE_TEMPLATE_SPECIALIZATION(NODE) \
2787 (CLASSTYPE_USE_TEMPLATE (NODE) == 2)
2788 #define SET_CLASSTYPE_TEMPLATE_SPECIALIZATION(NODE) \
2789 (CLASSTYPE_USE_TEMPLATE (NODE) = 2)
2790
2791 #define DECL_IMPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) == 1)
2792 #define SET_DECL_IMPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) = 1)
2793 #define CLASSTYPE_IMPLICIT_INSTANTIATION(NODE) \
2794 (CLASSTYPE_USE_TEMPLATE (NODE) == 1)
2795 #define SET_CLASSTYPE_IMPLICIT_INSTANTIATION(NODE) \
2796 (CLASSTYPE_USE_TEMPLATE (NODE) = 1)
2797
2798 #define DECL_EXPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) == 3)
2799 #define SET_DECL_EXPLICIT_INSTANTIATION(NODE) (DECL_USE_TEMPLATE (NODE) = 3)
2800 #define CLASSTYPE_EXPLICIT_INSTANTIATION(NODE) \
2801 (CLASSTYPE_USE_TEMPLATE (NODE) == 3)
2802 #define SET_CLASSTYPE_EXPLICIT_INSTANTIATION(NODE) \
2803 (CLASSTYPE_USE_TEMPLATE (NODE) = 3)
2804
2805 /* Nonzero if DECL is a friend function which is an instantiation
2806 from the point of view of the compiler, but not from the point of
2807 view of the language. For example given:
2808 template <class T> struct S { friend void f(T) {}; };
2809 the declaration of `void f(int)' generated when S<int> is
2810 instantiated will not be a DECL_TEMPLATE_INSTANTIATION, but will be
2811 a DECL_FRIEND_PSUEDO_TEMPLATE_INSTANTIATION. */
2812 #define DECL_FRIEND_PSEUDO_TEMPLATE_INSTANTIATION(DECL) \
2813 (DECL_TEMPLATE_INFO (DECL) && !DECL_USE_TEMPLATE (DECL))
2814
2815 /* Nonzero iff we are currently processing a declaration for an
2816 entity with its own template parameter list, and which is not a
2817 full specialization. */
2818 #define PROCESSING_REAL_TEMPLATE_DECL_P() \
2819 (processing_template_decl > template_class_depth (current_scope ()))
2820
2821 /* Nonzero if this VAR_DECL or FUNCTION_DECL has already been
2822 instantiated, i.e. its definition has been generated from the
2823 pattern given in the the template. */
2824 #define DECL_TEMPLATE_INSTANTIATED(NODE) \
2825 DECL_LANG_FLAG_1 (VAR_OR_FUNCTION_DECL_CHECK (NODE))
2826
2827 /* We know what we're doing with this decl now. */
2828 #define DECL_INTERFACE_KNOWN(NODE) DECL_LANG_FLAG_5 (NODE)
2829
2830 /* DECL_EXTERNAL must be set on a decl until the decl is actually emitted,
2831 so that assemble_external will work properly. So we have this flag to
2832 tell us whether the decl is really not external. */
2833 #define DECL_NOT_REALLY_EXTERN(NODE) \
2834 (DECL_LANG_SPECIFIC (NODE)->decl_flags.not_really_extern)
2835
2836 #define DECL_REALLY_EXTERN(NODE) \
2837 (DECL_EXTERNAL (NODE) && ! DECL_NOT_REALLY_EXTERN (NODE))
2838
2839 /* A thunk is a stub function.
2840
2841 A thunk is an alternate entry point for an ordinary FUNCTION_DECL.
2842 The address of the ordinary FUNCTION_DECL is given by the
2843 DECL_INITIAL, which is always an ADDR_EXPR whose operand is a
2844 FUNCTION_DECL. The job of the thunk is to either adjust the this
2845 pointer before transferring control to the FUNCTION_DECL, or call
2846 FUNCTION_DECL and then adjust the result value. Note, the result
2847 pointer adjusting thunk must perform a call to the thunked
2848 function, (or be implemented via passing some invisible parameter
2849 to the thunked function, which is modified to perform the
2850 adjustment just before returning).
2851
2852 A thunk may perform either, or both, of the following operations:
2853
2854 o Adjust the this or result pointer by a constant offset.
2855 o Adjust the this or result pointer by looking up a vcall or vbase offset
2856 in the vtable.
2857
2858 A this pointer adjusting thunk converts from a base to a derived
2859 class, and hence adds the offsets. A result pointer adjusting thunk
2860 converts from a derived class to a base, and hence subtracts the
2861 offsets. If both operations are performed, then the constant
2862 adjustment is performed first for this pointer adjustment and last
2863 for the result pointer adjustment.
2864
2865 The constant adjustment is given by THUNK_FIXED_OFFSET. If the
2866 vcall or vbase offset is required, the index into the vtable is given by
2867 THUNK_VIRTUAL_OFFSET. */
2868
2869 /* An integer indicating how many bytes should be subtracted from the
2870 this or result pointer when this function is called. */
2871 #define THUNK_FIXED_OFFSET(DECL) \
2872 (DECL_LANG_SPECIFIC (VAR_OR_FUNCTION_DECL_CHECK (DECL))->u.f.fixed_offset)
2873
2874 /* A tree indicating how to perform the virtual adjustment. For a this
2875 adjusting thunk it is the number of bytes to be added to the vtable
2876 to find the vcall offset. For a result adjusting thunk, it is the
2877 binfo of the relevant virtual base. If NULL, then there is no
2878 virtual adjust. (The vptr is always located at offset zero from
2879 the this or result pointer.) (If the covariant type is within the
2880 class hierarchy being layed out, the vbase index is not yet known
2881 at the point we need to create the thunks, hence the need to use
2882 binfos.) */
2883
2884 #define THUNK_VIRTUAL_OFFSET(DECL) \
2885 (LANG_DECL_U2_CHECK (VAR_OR_FUNCTION_DECL_CHECK (DECL), 0)->virtual_offset)
2886
2887 /* For thunk NODE, this is the FUNCTION_DECL thunked to. */
2888 #define THUNK_TARGET(NODE) \
2889 (DECL_LANG_SPECIFIC (NODE)->u.f.befriending_classes)
2890
2891 /* These macros provide convenient access to the various _STMT nodes
2892 created when parsing template declarations. */
2893 #define TRY_STMTS(NODE) TREE_OPERAND (TRY_BLOCK_CHECK (NODE), 0)
2894 #define TRY_HANDLERS(NODE) TREE_OPERAND (TRY_BLOCK_CHECK (NODE), 1)
2895
2896 #define EH_SPEC_STMTS(NODE) TREE_OPERAND (EH_SPEC_BLOCK_CHECK (NODE), 0)
2897 #define EH_SPEC_RAISES(NODE) TREE_OPERAND (EH_SPEC_BLOCK_CHECK (NODE), 1)
2898
2899 #define USING_STMT_NAMESPACE(NODE) TREE_OPERAND (USING_STMT_CHECK (NODE), 0)
2900
2901 /* Nonzero if this try block is a function try block. */
2902 #define FN_TRY_BLOCK_P(NODE) TREE_LANG_FLAG_3 (TRY_BLOCK_CHECK (NODE))
2903 #define HANDLER_PARMS(NODE) TREE_OPERAND (HANDLER_CHECK (NODE), 0)
2904 #define HANDLER_BODY(NODE) TREE_OPERAND (HANDLER_CHECK (NODE), 1)
2905 #define HANDLER_TYPE(NODE) TREE_TYPE (HANDLER_CHECK (NODE))
2906
2907 /* The parameters for a call-declarator. */
2908 #define CALL_DECLARATOR_PARMS(NODE) \
2909 (TREE_PURPOSE (TREE_OPERAND (NODE, 1)))
2910
2911 /* The cv-qualifiers for a call-declarator. */
2912 #define CALL_DECLARATOR_QUALS(NODE) \
2913 (TREE_VALUE (TREE_OPERAND (NODE, 1)))
2914
2915 /* The exception-specification for a call-declarator. */
2916 #define CALL_DECLARATOR_EXCEPTION_SPEC(NODE) \
2917 (TREE_TYPE (NODE))
2918
2919 /* An enumeration of the kind of tags that C++ accepts. */
2920 enum tag_types {
2921 none_type = 0, /* Not a tag type. */
2922 record_type, /* "struct" types. */
2923 class_type, /* "class" types. */
2924 union_type, /* "union" types. */
2925 enum_type, /* "enum" types. */
2926 typename_type /* "typename" types. */
2927 };
2928
2929 /* The various kinds of lvalues we distinguish. */
2930 typedef enum cp_lvalue_kind {
2931 clk_none = 0, /* Things that are not an lvalue. */
2932 clk_ordinary = 1, /* An ordinary lvalue. */
2933 clk_class = 2, /* An rvalue of class-type. */
2934 clk_bitfield = 4, /* An lvalue for a bit-field. */
2935 clk_packed = 8 /* An lvalue for a packed field. */
2936 } cp_lvalue_kind;
2937
2938 /* The kinds of scopes we recognize. */
2939 typedef enum scope_kind {
2940 sk_block, /* An ordinary block scope. */
2941 sk_try, /* A try-block. */
2942 sk_catch, /* A catch-block. */
2943 sk_for, /* The scope of the variable declared in a
2944 for-init-statement. */
2945 sk_template_parms, /* A scope for template parameters. */
2946 sk_template_spec /* A scope corresponding to a template
2947 specialization. There is never anything in
2948 this scope. */
2949 } scope_kind;
2950
2951 /* Various kinds of template specialization, instantiation, etc. */
2952 typedef enum tmpl_spec_kind {
2953 tsk_none, /* Not a template at all. */
2954 tsk_invalid_member_spec, /* An explicit member template
2955 specialization, but the enclosing
2956 classes have not all been explicitly
2957 specialized. */
2958 tsk_invalid_expl_inst, /* An explicit instantiation containing
2959 template parameter lists. */
2960 tsk_excessive_parms, /* A template declaration with too many
2961 template parameter lists. */
2962 tsk_insufficient_parms, /* A template declaration with too few
2963 parameter lists. */
2964 tsk_template, /* A template declaration. */
2965 tsk_expl_spec, /* An explicit specialization. */
2966 tsk_expl_inst /* An explicit instantiation. */
2967 } tmpl_spec_kind;
2968
2969 /* The various kinds of access. BINFO_ACCESS depends on these being
2970 two bit quantities. The numerical values are important; they are
2971 used to initialize RTTI data structures, so changing them changes
2972 the ABI. */
2973 typedef enum access_kind {
2974 ak_none = 0, /* Inaccessible. */
2975 ak_public = 1, /* Accessible, as a `public' thing. */
2976 ak_protected = 2, /* Accessible, as a `protected' thing. */
2977 ak_private = 3 /* Accessible, as a `private' thing. */
2978 } access_kind;
2979
2980 /* The various kinds of special functions. If you add to this list,
2981 you should update special_function_p as well. */
2982 typedef enum special_function_kind {
2983 sfk_none = 0, /* Not a special function. This enumeral
2984 must have value zero; see
2985 special_function_p. */
2986 sfk_constructor, /* A constructor. */
2987 sfk_copy_constructor, /* A copy constructor. */
2988 sfk_assignment_operator, /* An assignment operator. */
2989 sfk_destructor, /* A destructor. */
2990 sfk_complete_destructor, /* A destructor for complete objects. */
2991 sfk_base_destructor, /* A destructor for base subobjects. */
2992 sfk_deleting_destructor, /* A destructor for complete objects that
2993 deletes the object after it has been
2994 destroyed. */
2995 sfk_conversion /* A conversion operator. */
2996 } special_function_kind;
2997
2998 /* The various kinds of linkage. From [basic.link],
2999
3000 A name is said to have linkage when it might denote the same
3001 object, reference, function, type, template, namespace or value
3002 as a name introduced in another scope:
3003
3004 -- When a name has external linkage, the entity it denotes can
3005 be referred to from scopes of other translation units or from
3006 other scopes of the same translation unit.
3007
3008 -- When a name has internal linkage, the entity it denotes can
3009 be referred to by names from other scopes in the same
3010 translation unit.
3011
3012 -- When a name has no linkage, the entity it denotes cannot be
3013 referred to by names from other scopes. */
3014
3015 typedef enum linkage_kind {
3016 lk_none, /* No linkage. */
3017 lk_internal, /* Internal linkage. */
3018 lk_external /* External linkage. */
3019 } linkage_kind;
3020
3021 /* Bitmask flags to control type substitution. */
3022 typedef enum tsubst_flags_t {
3023 tf_none = 0, /* nothing special */
3024 tf_error = 1 << 0, /* give error messages */
3025 tf_warning = 1 << 1, /* give warnings too */
3026 tf_ignore_bad_quals = 1 << 2, /* ignore bad cvr qualifiers */
3027 tf_keep_type_decl = 1 << 3, /* retain typedef type decls
3028 (make_typename_type use) */
3029 tf_ptrmem_ok = 1 << 4, /* pointers to member ok (internal
3030 instantiate_type use) */
3031 tf_user = 1 << 5, /* found template must be a user template
3032 (lookup_template_class use) */
3033 tf_stmt_expr_cmpd = 1 << 6, /* tsubsting the compound statement of
3034 a statement expr. */
3035 tf_stmt_expr_body = 1 << 7 /* tsubsting the statements in the
3036 body of the compound statement of a
3037 statement expr. */
3038 } tsubst_flags_t;
3039
3040 /* The kind of checking we can do looking in a class hierarchy. */
3041 typedef enum base_access {
3042 ba_any = 0, /* Do not check access, allow an ambiguous base,
3043 prefer a non-virtual base */
3044 ba_ignore = 1, /* Do not check access */
3045 ba_check = 2, /* Check access */
3046 ba_not_special = 3, /* Do not consider special privilege
3047 current_class_type might give. */
3048 ba_quiet = 4 /* Do not issue error messages (bit mask). */
3049 } base_access;
3050
3051 /* The various kinds of access check during parsing. */
3052 typedef enum deferring_kind {
3053 dk_no_deferred = 0, /* Check access immediately */
3054 dk_deferred = 1, /* Deferred check */
3055 dk_no_check = 2 /* No access check */
3056 } deferring_kind;
3057
3058 /* The kind of base we can find, looking in a class hierarchy.
3059 Values <0 indicate we failed. */
3060 typedef enum base_kind {
3061 bk_inaccessible = -3, /* The base is inaccessible */
3062 bk_ambig = -2, /* The base is ambiguous */
3063 bk_not_base = -1, /* It is not a base */
3064 bk_same_type = 0, /* It is the same type */
3065 bk_proper_base = 1, /* It is a proper base */
3066 bk_via_virtual = 2 /* It is a proper base, but via a virtual
3067 path. This might not be the canonical
3068 binfo. */
3069 } base_kind;
3070
3071 /* Set by add_implicitly_declared_members() to keep those members from
3072 being flagged as deprecated or reported as using deprecated
3073 types. */
3074 extern int adding_implicit_members;
3075
3076 /* in decl{2}.c */
3077 /* A node that is a list (length 1) of error_mark_nodes. */
3078 extern GTY(()) tree error_mark_list;
3079
3080 /* Node for "pointer to (virtual) function".
3081 This may be distinct from ptr_type_node so gdb can distinguish them. */
3082 #define vfunc_ptr_type_node vtable_entry_type
3083
3084
3085 /* For building calls to `delete'. */
3086 extern GTY(()) tree integer_two_node;
3087 extern GTY(()) tree integer_three_node;
3088
3089 extern GTY(()) tree anonymous_namespace_name;
3090
3091 /* The number of function bodies which we are currently processing.
3092 (Zero if we are at namespace scope, one inside the body of a
3093 function, two inside the body of a function in a local class, etc.) */
3094 extern int function_depth;
3095
3096 typedef struct deferred_access GTY(())
3097 {
3098 /* A TREE_LIST representing name-lookups for which we have deferred
3099 checking access controls. We cannot check the accessibility of
3100 names used in a decl-specifier-seq until we know what is being
3101 declared because code like:
3102
3103 class A {
3104 class B {};
3105 B* f();
3106 }
3107
3108 A::B* A::f() { return 0; }
3109
3110 is valid, even though `A::B' is not generally accessible.
3111
3112 The TREE_PURPOSE of each node is the scope used to qualify the
3113 name being looked up; the TREE_VALUE is the DECL to which the
3114 name was resolved. */
3115 tree deferred_access_checks;
3116 /* The current mode of access checks. */
3117 enum deferring_kind deferring_access_checks_kind;
3118 /* The next deferred access data in stack or linked-list. */
3119 struct deferred_access *next;
3120 } deferred_access;
3121
3122 /* in pt.c */
3123
3124 /* These values are used for the `STRICT' parameter to type_unification and
3125 fn_type_unification. Their meanings are described with the
3126 documentation for fn_type_unification. */
3127
3128 typedef enum unification_kind_t {
3129 DEDUCE_CALL,
3130 DEDUCE_CONV,
3131 DEDUCE_EXACT,
3132 DEDUCE_ORDER
3133 } unification_kind_t;
3134
3135 /* Macros for operating on a template instantiation level node, represented
3136 by an EXPR_WITH_FILE_LOCATION. */
3137
3138 #define TINST_DECL(NODE) EXPR_WFL_NODE (NODE)
3139 #define TINST_LINE(NODE) EXPR_WFL_LINENO (NODE)
3140 #define TINST_FILE(NODE) EXPR_WFL_FILENAME (NODE)
3141
3142 /* in class.c */
3143
3144 extern int current_class_depth;
3145
3146 /* An array of all local classes present in this translation unit, in
3147 declaration order. */
3148 extern GTY(()) varray_type local_classes;
3149 \f
3150 /* Here's where we control how name mangling takes place. */
3151
3152 /* Cannot use '$' up front, because this confuses gdb
3153 (names beginning with '$' are gdb-local identifiers).
3154
3155 Note that all forms in which the '$' is significant are long enough
3156 for direct indexing (meaning that if we know there is a '$'
3157 at a particular location, we can index into the string at
3158 any other location that provides distinguishing characters). */
3159
3160 /* Define NO_DOLLAR_IN_LABEL in your favorite tm file if your assembler
3161 doesn't allow '$' in symbol names. */
3162 #ifndef NO_DOLLAR_IN_LABEL
3163
3164 #define JOINER '$'
3165
3166 #define VPTR_NAME "$v"
3167 #define THROW_NAME "$eh_throw"
3168 #define AUTO_VTABLE_NAME "__vtbl$me__"
3169 #define AUTO_TEMP_NAME "_$tmp_"
3170 #define AUTO_TEMP_FORMAT "_$tmp_%d"
3171 #define VTABLE_BASE "$vb"
3172 #define VTABLE_NAME_PREFIX "__vt_"
3173 #define VFIELD_BASE "$vf"
3174 #define VFIELD_NAME "_vptr$"
3175 #define VFIELD_NAME_FORMAT "_vptr$%s"
3176 #define STATIC_NAME_FORMAT "_%s$%s"
3177 #define ANON_AGGRNAME_FORMAT "$_%d"
3178
3179 #else /* NO_DOLLAR_IN_LABEL */
3180
3181 #ifndef NO_DOT_IN_LABEL
3182
3183 #define JOINER '.'
3184
3185 #define VPTR_NAME ".v"
3186 #define THROW_NAME ".eh_throw"
3187 #define AUTO_VTABLE_NAME "__vtbl.me__"
3188 #define AUTO_TEMP_NAME "_.tmp_"
3189 #define AUTO_TEMP_FORMAT "_.tmp_%d"
3190 #define VTABLE_BASE ".vb"
3191 #define VTABLE_NAME_PREFIX "__vt_"
3192 #define VFIELD_BASE ".vf"
3193 #define VFIELD_NAME "_vptr."
3194 #define VFIELD_NAME_FORMAT "_vptr.%s"
3195 #define STATIC_NAME_FORMAT "_%s.%s"
3196
3197 #define ANON_AGGRNAME_FORMAT "._%d"
3198
3199 #else /* NO_DOT_IN_LABEL */
3200
3201 #define VPTR_NAME "__vptr"
3202 #define VPTR_NAME_P(ID_NODE) \
3203 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VPTR_NAME, sizeof (VPTR_NAME) - 1))
3204 #define THROW_NAME "__eh_throw"
3205 #define IN_CHARGE_NAME "__in_chrg"
3206 #define AUTO_VTABLE_NAME "__vtbl_me__"
3207 #define AUTO_TEMP_NAME "__tmp_"
3208 #define TEMP_NAME_P(ID_NODE) \
3209 (!strncmp (IDENTIFIER_POINTER (ID_NODE), AUTO_TEMP_NAME, \
3210 sizeof (AUTO_TEMP_NAME) - 1))
3211 #define AUTO_TEMP_FORMAT "__tmp_%d"
3212 #define VTABLE_BASE "__vtb"
3213 #define VTABLE_NAME "__vt_"
3214 #define VTABLE_NAME_PREFIX "__vt_"
3215 #define VTABLE_NAME_P(ID_NODE) \
3216 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VTABLE_NAME, \
3217 sizeof (VTABLE_NAME) - 1))
3218 #define VFIELD_BASE "__vfb"
3219 #define VFIELD_NAME "__vptr_"
3220 #define VFIELD_NAME_P(ID_NODE) \
3221 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VFIELD_NAME, \
3222 sizeof (VFIELD_NAME) - 1))
3223 #define VFIELD_NAME_FORMAT "__vptr_%s"
3224 #define STATIC_NAME_FORMAT "__static_%s_%s"
3225
3226 #define ANON_AGGRNAME_PREFIX "__anon_"
3227 #define ANON_AGGRNAME_P(ID_NODE) \
3228 (!strncmp (IDENTIFIER_POINTER (ID_NODE), ANON_AGGRNAME_PREFIX, \
3229 sizeof (ANON_AGGRNAME_PREFIX) - 1))
3230 #define ANON_AGGRNAME_FORMAT "__anon_%d"
3231
3232 #endif /* NO_DOT_IN_LABEL */
3233 #endif /* NO_DOLLAR_IN_LABEL */
3234
3235 #define THIS_NAME "this"
3236 #define CTOR_NAME "__ct"
3237 #define DTOR_NAME "__dt"
3238
3239 #define IN_CHARGE_NAME "__in_chrg"
3240
3241 #define VTBL_PTR_TYPE "__vtbl_ptr_type"
3242 #define VTABLE_DELTA_NAME "__delta"
3243 #define VTABLE_PFN_NAME "__pfn"
3244
3245 #define EXCEPTION_CLEANUP_NAME "exception cleanup"
3246
3247 #if !defined(NO_DOLLAR_IN_LABEL) || !defined(NO_DOT_IN_LABEL)
3248
3249 #define VPTR_NAME_P(ID_NODE) (IDENTIFIER_POINTER (ID_NODE)[0] == JOINER \
3250 && IDENTIFIER_POINTER (ID_NODE)[1] == 'v')
3251
3252 #define VTABLE_NAME_P(ID_NODE) (IDENTIFIER_POINTER (ID_NODE)[1] == 'v' \
3253 && IDENTIFIER_POINTER (ID_NODE)[2] == 't' \
3254 && IDENTIFIER_POINTER (ID_NODE)[3] == JOINER)
3255
3256 #define TEMP_NAME_P(ID_NODE) \
3257 (!strncmp (IDENTIFIER_POINTER (ID_NODE), AUTO_TEMP_NAME, sizeof (AUTO_TEMP_NAME)-1))
3258 #define VFIELD_NAME_P(ID_NODE) \
3259 (!strncmp (IDENTIFIER_POINTER (ID_NODE), VFIELD_NAME, sizeof(VFIELD_NAME)-1))
3260
3261 /* For anonymous aggregate types, we need some sort of name to
3262 hold on to. In practice, this should not appear, but it should
3263 not be harmful if it does. */
3264 #define ANON_AGGRNAME_P(ID_NODE) (IDENTIFIER_POINTER (ID_NODE)[0] == JOINER \
3265 && IDENTIFIER_POINTER (ID_NODE)[1] == '_')
3266 #endif /* !defined(NO_DOLLAR_IN_LABEL) || !defined(NO_DOT_IN_LABEL) */
3267
3268 /* Returns nonzero iff NODE is a declaration for the global function
3269 `main'. */
3270 #define DECL_MAIN_P(NODE) \
3271 (DECL_EXTERN_C_FUNCTION_P (NODE) \
3272 && DECL_NAME (NODE) != NULL_TREE \
3273 && MAIN_NAME_P (DECL_NAME (NODE)))
3274
3275 \f
3276 /* Nonzero if we're done parsing and into end-of-file activities. */
3277
3278 extern int at_eof;
3279
3280 /* A list of namespace-scope objects which have constructors or
3281 destructors which reside in the global scope. The decl is stored
3282 in the TREE_VALUE slot and the initializer is stored in the
3283 TREE_PURPOSE slot. */
3284 extern GTY(()) tree static_aggregates;
3285
3286 /* Functions called along with real static constructors and destructors. */
3287
3288 extern GTY(()) tree static_ctors;
3289 extern GTY(()) tree static_dtors;
3290
3291 enum overload_flags { NO_SPECIAL = 0, DTOR_FLAG, OP_FLAG, TYPENAME_FLAG };
3292
3293 /* Some macros for char-based bitfields. */
3294 #define B_SET(A,X) ((A)[(X)>>3] |= (1 << ((X)&7)))
3295 #define B_CLR(A,X) ((A)[(X)>>3] &= ~(1 << ((X)&7)))
3296 #define B_TST(A,X) ((A)[(X)>>3] & (1 << ((X)&7)))
3297
3298 /* These are uses as bits in flags passed to build_method_call
3299 to control its error reporting behavior.
3300
3301 LOOKUP_PROTECT means flag access violations.
3302 LOOKUP_COMPLAIN mean complain if no suitable member function
3303 matching the arguments is found.
3304 LOOKUP_NORMAL is just a combination of these two.
3305 LOOKUP_NONVIRTUAL means make a direct call to the member function found
3306 LOOKUP_GLOBAL means search through the space of overloaded functions,
3307 as well as the space of member functions.
3308 LOOKUP_ONLYCONVERTING means that non-conversion constructors are not tried.
3309 DIRECT_BIND means that if a temporary is created, it should be created so
3310 that it lives as long as the current variable bindings; otherwise it
3311 only lives until the end of the complete-expression. It also forces
3312 direct-initialization in cases where other parts of the compiler have
3313 already generated a temporary, such as reference initialization and the
3314 catch parameter.
3315 LOOKUP_SPECULATIVELY means return NULL_TREE if we cannot find what we are
3316 after. Note, LOOKUP_COMPLAIN is checked and error messages printed
3317 before LOOKUP_SPECULATIVELY is checked.
3318 LOOKUP_NO_CONVERSION means that user-defined conversions are not
3319 permitted. Built-in conversions are permitted.
3320 LOOKUP_DESTRUCTOR means explicit call to destructor.
3321 LOOKUP_NO_TEMP_BIND means temporaries will not be bound to references.
3322
3323 These are used in global lookup to support elaborated types and
3324 qualifiers.
3325
3326 LOOKUP_PREFER_TYPES means not to accept objects, and possibly namespaces.
3327 LOOKUP_PREFER_NAMESPACES means not to accept objects, and possibly types.
3328 LOOKUP_PREFER_BOTH means class-or-namespace-name. */
3329
3330 #define LOOKUP_PROTECT (1)
3331 #define LOOKUP_COMPLAIN (2)
3332 #define LOOKUP_NORMAL (3)
3333 #define LOOKUP_NONVIRTUAL (8)
3334 #define LOOKUP_GLOBAL (16)
3335 #define LOOKUP_SPECULATIVELY (64)
3336 #define LOOKUP_ONLYCONVERTING (128)
3337 #define DIRECT_BIND (256)
3338 #define LOOKUP_NO_CONVERSION (512)
3339 #define LOOKUP_DESTRUCTOR (512)
3340 #define LOOKUP_NO_TEMP_BIND (1024)
3341 #define LOOKUP_PREFER_TYPES (2048)
3342 #define LOOKUP_PREFER_NAMESPACES (4096)
3343 #define LOOKUP_PREFER_BOTH (6144)
3344
3345 #define LOOKUP_NAMESPACES_ONLY(F) \
3346 (((F) & LOOKUP_PREFER_NAMESPACES) && !((F) & LOOKUP_PREFER_TYPES))
3347 #define LOOKUP_TYPES_ONLY(F) \
3348 (!((F) & LOOKUP_PREFER_NAMESPACES) && ((F) & LOOKUP_PREFER_TYPES))
3349 #define LOOKUP_QUALIFIERS_ONLY(F) ((F) & LOOKUP_PREFER_BOTH)
3350
3351
3352 /* These flags are used by the conversion code.
3353 CONV_IMPLICIT : Perform implicit conversions (standard and user-defined).
3354 CONV_STATIC : Perform the explicit conversions for static_cast.
3355 CONV_CONST : Perform the explicit conversions for const_cast.
3356 CONV_REINTERPRET: Perform the explicit conversions for reinterpret_cast.
3357 CONV_PRIVATE : Perform upcasts to private bases.
3358 CONV_FORCE_TEMP : Require a new temporary when converting to the same
3359 aggregate type. */
3360
3361 #define CONV_IMPLICIT 1
3362 #define CONV_STATIC 2
3363 #define CONV_CONST 4
3364 #define CONV_REINTERPRET 8
3365 #define CONV_PRIVATE 16
3366 /* #define CONV_NONCONVERTING 32 */
3367 #define CONV_FORCE_TEMP 64
3368 #define CONV_STATIC_CAST (CONV_IMPLICIT | CONV_STATIC | CONV_FORCE_TEMP)
3369 #define CONV_OLD_CONVERT (CONV_IMPLICIT | CONV_STATIC | CONV_CONST \
3370 | CONV_REINTERPRET)
3371 #define CONV_C_CAST (CONV_IMPLICIT | CONV_STATIC | CONV_CONST \
3372 | CONV_REINTERPRET | CONV_PRIVATE | CONV_FORCE_TEMP)
3373
3374 /* Used by build_expr_type_conversion to indicate which types are
3375 acceptable as arguments to the expression under consideration. */
3376
3377 #define WANT_INT 1 /* integer types, including bool */
3378 #define WANT_FLOAT 2 /* floating point types */
3379 #define WANT_ENUM 4 /* enumerated types */
3380 #define WANT_POINTER 8 /* pointer types */
3381 #define WANT_NULL 16 /* null pointer constant */
3382 #define WANT_ARITH (WANT_INT | WANT_FLOAT)
3383
3384 /* Used with comptypes, and related functions, to guide type
3385 comparison. */
3386
3387 #define COMPARE_STRICT 0 /* Just check if the types are the
3388 same. */
3389 #define COMPARE_BASE 1 /* Check to see if the second type is
3390 derived from the first. */
3391 #define COMPARE_DERIVED 2 /* Like COMPARE_BASE, but in
3392 reverse. */
3393 #define COMPARE_REDECLARATION 4 /* The comparison is being done when
3394 another declaration of an existing
3395 entity is seen. */
3396
3397 /* Used with push_overloaded_decl. */
3398 #define PUSH_GLOBAL 0 /* Push the DECL into namespace scope,
3399 regardless of the current scope. */
3400 #define PUSH_LOCAL 1 /* Push the DECL into the current
3401 scope. */
3402 #define PUSH_USING 2 /* We are pushing this DECL as the
3403 result of a using declaration. */
3404
3405 /* Used with start function. */
3406 #define SF_DEFAULT 0 /* No flags. */
3407 #define SF_PRE_PARSED 1 /* The function declaration has
3408 already been parsed. */
3409 #define SF_INCLASS_INLINE 2 /* The function is an inline, defined
3410 in the class body. */
3411
3412 /* Returns nonzero iff TYPE1 and TYPE2 are the same type, or if TYPE2
3413 is derived from TYPE1, or if TYPE2 is a pointer (reference) to a
3414 class derived from the type pointed to (referred to) by TYPE1. */
3415 #define same_or_base_type_p(TYPE1, TYPE2) \
3416 comptypes ((TYPE1), (TYPE2), COMPARE_BASE)
3417
3418 /* These macros are used to access a TEMPLATE_PARM_INDEX. */
3419 #define TEMPLATE_PARM_INDEX_CAST(NODE) \
3420 ((template_parm_index*)TEMPLATE_PARM_INDEX_CHECK (NODE))
3421 #define TEMPLATE_PARM_IDX(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->index)
3422 #define TEMPLATE_PARM_LEVEL(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->level)
3423 #define TEMPLATE_PARM_DESCENDANTS(NODE) (TREE_CHAIN (NODE))
3424 #define TEMPLATE_PARM_ORIG_LEVEL(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->orig_level)
3425 #define TEMPLATE_PARM_DECL(NODE) (TEMPLATE_PARM_INDEX_CAST (NODE)->decl)
3426
3427 /* These macros are for accessing the fields of TEMPLATE_TYPE_PARM,
3428 TEMPLATE_TEMPLATE_PARM and BOUND_TEMPLATE_TEMPLATE_PARM nodes. */
3429 #define TEMPLATE_TYPE_PARM_INDEX(NODE) (TYPE_FIELDS (NODE))
3430 #define TEMPLATE_TYPE_IDX(NODE) \
3431 (TEMPLATE_PARM_IDX (TEMPLATE_TYPE_PARM_INDEX (NODE)))
3432 #define TEMPLATE_TYPE_LEVEL(NODE) \
3433 (TEMPLATE_PARM_LEVEL (TEMPLATE_TYPE_PARM_INDEX (NODE)))
3434 #define TEMPLATE_TYPE_ORIG_LEVEL(NODE) \
3435 (TEMPLATE_PARM_ORIG_LEVEL (TEMPLATE_TYPE_PARM_INDEX (NODE)))
3436 #define TEMPLATE_TYPE_DECL(NODE) \
3437 (TEMPLATE_PARM_DECL (TEMPLATE_TYPE_PARM_INDEX (NODE)))
3438
3439 /* These constants can used as bit flags in the process of tree formatting.
3440
3441 TFF_PLAIN_IDENTIFIER: unqualified part of a name.
3442 TFF_SCOPE: include the class and namespace scope of the name.
3443 TFF_CHASE_TYPEDEF: print the original type-id instead of the typedef-name.
3444 TFF_DECL_SPECIFIERS: print decl-specifiers.
3445 TFF_CLASS_KEY_OR_ENUM: precede a class-type name (resp. enum name) with
3446 a class-key (resp. `enum').
3447 TFF_RETURN_TYPE: include function return type.
3448 TFF_FUNCTION_DEFAULT_ARGUMENTS: include function default parameter values.
3449 TFF_EXCEPTION_SPECIFICATION: show function exception specification.
3450 TFF_TEMPLATE_HEADER: show the template<...> header in a
3451 template-declaration.
3452 TFF_TEMPLATE_NAME: show only template-name.
3453 TFF_EXPR_IN_PARENS: Parenthesize expressions. */
3454
3455 #define TFF_PLAIN_IDENTIFIER (0)
3456 #define TFF_SCOPE (1)
3457 #define TFF_CHASE_TYPEDEF (1 << 1)
3458 #define TFF_DECL_SPECIFIERS (1 << 2)
3459 #define TFF_CLASS_KEY_OR_ENUM (1 << 3)
3460 #define TFF_RETURN_TYPE (1 << 4)
3461 #define TFF_FUNCTION_DEFAULT_ARGUMENTS (1 << 5)
3462 #define TFF_EXCEPTION_SPECIFICATION (1 << 6)
3463 #define TFF_TEMPLATE_HEADER (1 << 7)
3464 #define TFF_TEMPLATE_NAME (1 << 8)
3465 #define TFF_EXPR_IN_PARENS (1 << 9)
3466
3467 /* Returns the TEMPLATE_DECL associated to a TEMPLATE_TEMPLATE_PARM
3468 node. */
3469 #define TEMPLATE_TEMPLATE_PARM_TEMPLATE_DECL(NODE) \
3470 ((TREE_CODE (NODE) == BOUND_TEMPLATE_TEMPLATE_PARM) \
3471 ? TYPE_TI_TEMPLATE (NODE) \
3472 : TYPE_NAME (NODE))
3473
3474 /* in lex.c */
3475
3476 extern void init_reswords (void);
3477
3478 /* Indexed by TREE_CODE, these tables give C-looking names to
3479 operators represented by TREE_CODES. For example,
3480 opname_tab[(int) MINUS_EXPR] == "-". */
3481 extern const char **opname_tab, **assignop_tab;
3482
3483 typedef struct operator_name_info_t GTY(())
3484 {
3485 /* The IDENTIFIER_NODE for the operator. */
3486 tree identifier;
3487 /* The name of the operator. */
3488 const char *name;
3489 /* The mangled name of the operator. */
3490 const char *mangled_name;
3491 /* The arity of the operator. */
3492 int arity;
3493 } operator_name_info_t;
3494
3495 /* A mapping from tree codes to operator name information. */
3496 extern GTY(()) operator_name_info_t operator_name_info
3497 [(int) LAST_CPLUS_TREE_CODE];
3498 /* Similar, but for assignment operators. */
3499 extern GTY(()) operator_name_info_t assignment_operator_name_info
3500 [(int) LAST_CPLUS_TREE_CODE];
3501
3502 /* in call.c */
3503 extern bool check_dtor_name (tree, tree);
3504
3505 extern tree build_vfield_ref (tree, tree);
3506 extern tree build_conditional_expr (tree, tree, tree);
3507 extern tree build_addr_func (tree);
3508 extern tree build_call (tree, tree);
3509 extern tree build_method_call (tree, tree, tree, tree, int);
3510 extern bool null_ptr_cst_p (tree);
3511 extern bool sufficient_parms_p (tree);
3512 extern tree type_decays_to (tree);
3513 extern tree build_user_type_conversion (tree, tree, int);
3514 extern tree build_new_function_call (tree, tree);
3515 extern tree build_operator_new_call (tree, tree, tree *, tree *);
3516 extern tree build_new_method_call (tree, tree, tree, tree, int);
3517 extern tree build_special_member_call (tree, tree, tree, tree, int);
3518 extern tree build_new_op (enum tree_code, int, tree, tree, tree);
3519 extern tree build_op_delete_call (enum tree_code, tree, tree, int, tree);
3520 extern bool can_convert (tree, tree);
3521 extern bool can_convert_arg (tree, tree, tree);
3522 extern bool can_convert_arg_bad (tree, tree, tree);
3523 extern bool enforce_access (tree, tree);
3524 extern tree convert_default_arg (tree, tree, tree, int);
3525 extern tree convert_arg_to_ellipsis (tree);
3526 extern tree build_x_va_arg (tree, tree);
3527 extern tree cxx_type_promotes_to (tree);
3528 extern tree type_passed_as (tree);
3529 extern tree convert_for_arg_passing (tree, tree);
3530 extern tree cp_convert_parm_for_inlining (tree, tree, tree);
3531 extern bool is_properly_derived_from (tree, tree);
3532 extern tree initialize_reference (tree, tree, tree, tree *);
3533 extern tree make_temporary_var_for_ref_to_temp (tree, tree);
3534 extern tree strip_top_quals (tree);
3535 extern tree perform_implicit_conversion (tree, tree);
3536 extern tree perform_direct_initialization_if_possible (tree, tree);
3537 extern tree in_charge_arg_for_name (tree);
3538 extern tree build_cxx_call (tree, tree, tree);
3539
3540 /* in class.c */
3541 extern tree build_base_path (enum tree_code, tree, tree, int);
3542 extern tree convert_to_base (tree, tree, bool);
3543 extern tree convert_to_base_statically (tree, tree);
3544 extern tree build_vtbl_ref (tree, tree);
3545 extern tree build_vfn_ref (tree, tree);
3546 extern tree get_vtable_decl (tree, int);
3547 extern void resort_type_method_vec
3548 (void *, void *, gt_pointer_operator, void *);
3549 extern void add_method (tree, tree, int);
3550 extern int currently_open_class (tree);
3551 extern tree currently_open_derived_class (tree);
3552 extern tree finish_struct (tree, tree);
3553 extern void finish_struct_1 (tree);
3554 extern int resolves_to_fixed_type_p (tree, int *);
3555 extern void init_class_processing (void);
3556 extern int is_empty_class (tree);
3557 extern void pushclass (tree);
3558 extern void popclass (void);
3559 extern void push_nested_class (tree);
3560 extern void pop_nested_class (void);
3561 extern int current_lang_depth (void);
3562 extern void push_lang_context (tree);
3563 extern void pop_lang_context (void);
3564 extern tree instantiate_type (tree, tree, tsubst_flags_t);
3565 extern void print_class_statistics (void);
3566 extern void cxx_print_statistics (void);
3567 extern void cxx_print_xnode (FILE *, tree, int);
3568 extern void cxx_print_decl (FILE *, tree, int);
3569 extern void cxx_print_type (FILE *, tree, int);
3570 extern void cxx_print_identifier (FILE *, tree, int);
3571 extern void cxx_print_error_function (struct diagnostic_context *,
3572 const char *);
3573 extern void build_self_reference (void);
3574 extern int same_signature_p (tree, tree);
3575 extern void warn_hidden (tree);
3576 extern void maybe_add_class_template_decl_list (tree, tree, int);
3577 extern tree get_enclosing_class (tree);
3578 extern void unreverse_member_declarations (tree);
3579 extern void invalidate_class_lookup_cache (void);
3580 extern void maybe_note_name_used_in_class (tree, tree);
3581 extern void note_name_declared_in_class (tree, tree);
3582 extern tree get_vtbl_decl_for_binfo (tree);
3583 extern tree get_vtt_name (tree);
3584 extern tree get_primary_binfo (tree);
3585
3586 /* in cvt.c */
3587 extern tree convert_to_reference (tree, tree, int, int, tree);
3588 extern tree convert_from_reference (tree);
3589 extern tree convert_lvalue (tree, tree);
3590 extern tree force_rvalue (tree);
3591 extern tree ocp_convert (tree, tree, int, int);
3592 extern tree cp_convert (tree, tree);
3593 extern tree convert_to_void (tree, const char */*implicit context*/);
3594 extern tree convert_force (tree, tree, int);
3595 extern tree build_type_conversion (tree, tree);
3596 extern tree build_expr_type_conversion (int, tree, bool);
3597 extern tree type_promotes_to (tree);
3598 extern tree perform_qualification_conversions (tree, tree);
3599 extern void clone_function_decl (tree, int);
3600 extern void adjust_clone_args (tree);
3601
3602 /* decl.c */
3603 extern int global_bindings_p (void);
3604 extern int kept_level_p (void);
3605 extern tree getdecls (void);
3606 extern void pushlevel (int);
3607 extern void insert_block (tree);
3608 extern void set_block (tree);
3609 extern tree pushdecl (tree);
3610 extern void cxx_init_decl_processing (void);
3611 enum cp_tree_node_structure_enum cp_tree_node_structure
3612 (union lang_tree_node *);
3613 extern bool cxx_mark_addressable (tree);
3614 extern void cxx_push_function_context (struct function *);
3615 extern void cxx_pop_function_context (struct function *);
3616 extern void cxx_mark_function_context (struct function *);
3617 extern int toplevel_bindings_p (void);
3618 extern int namespace_bindings_p (void);
3619 extern void keep_next_level (int);
3620 extern int template_parm_scope_p (void);
3621 extern void set_class_shadows (tree);
3622 extern void maybe_push_cleanup_level (tree);
3623 extern void begin_scope (scope_kind);
3624 extern void finish_scope (void);
3625 extern void resume_level (struct cp_binding_level *);
3626 extern void delete_block (tree);
3627 extern void add_block_current_level (tree);
3628 extern void pushlevel_class (void);
3629 extern void poplevel_class (void);
3630 extern void print_binding_stack (void);
3631 extern void print_binding_level (struct cp_binding_level *);
3632 extern void push_namespace (tree);
3633 extern void pop_namespace (void);
3634 extern void push_nested_namespace (tree);
3635 extern void pop_nested_namespace (tree);
3636 extern void maybe_push_to_top_level (int);
3637 extern void push_to_top_level (void);
3638 extern void pop_from_top_level (void);
3639 extern void push_switch (tree);
3640 extern void pop_switch (void);
3641 extern tree identifier_type_value (tree);
3642 extern void set_identifier_type_value (tree, tree);
3643 extern void pop_everything (void);
3644 extern void pushtag (tree, tree, int);
3645 extern tree make_anon_name (void);
3646 extern void clear_anon_tags (void);
3647 extern int decls_match (tree, tree);
3648 extern int duplicate_decls (tree, tree);
3649 extern tree pushdecl_top_level (tree);
3650 extern tree pushdecl_top_level_and_finish (tree, tree);
3651 extern bool pushdecl_class_level (tree);
3652 extern tree pushdecl_namespace_level (tree);
3653 extern tree push_using_decl (tree, tree);
3654 extern tree push_using_directive (tree);
3655 extern bool push_class_level_binding (tree, tree);
3656 extern tree implicitly_declare (tree);
3657 extern tree declare_local_label (tree);
3658 extern tree define_label (location_t, tree);
3659 extern void check_goto (tree);
3660 extern void define_case_label (void);
3661 extern tree namespace_binding (tree, tree);
3662 extern void set_namespace_binding (tree, tree, tree);
3663 extern tree lookup_namespace_name (tree, tree);
3664 extern tree make_typename_type (tree, tree, tsubst_flags_t);
3665 extern tree make_unbound_class_template (tree, tree, tsubst_flags_t);
3666 extern tree lookup_name_nonclass (tree);
3667 extern tree lookup_function_nonclass (tree, tree);
3668 extern tree lookup_qualified_name (tree, tree, bool, bool);
3669 extern tree lookup_name (tree, int);
3670 extern tree lookup_name_current_level (tree);
3671 extern tree lookup_type_current_level (tree);
3672 extern tree lookup_name_real (tree, int, int, int, int);
3673 extern tree namespace_ancestor (tree, tree);
3674 extern bool is_ancestor (tree, tree);
3675 extern tree unqualified_namespace_lookup (tree, int, tree *);
3676 extern tree check_for_out_of_scope_variable (tree);
3677 extern bool lookup_using_namespace (tree, cxx_binding *, tree, tree, int, tree *);
3678 extern bool qualified_lookup_using_namespace (tree, tree, cxx_binding *, int);
3679 extern tree build_library_fn (tree, tree);
3680 extern tree build_library_fn_ptr (const char *, tree);
3681 extern tree build_cp_library_fn_ptr (const char *, tree);
3682 extern tree push_library_fn (tree, tree);
3683 extern tree push_void_library_fn (tree, tree);
3684 extern tree push_throw_library_fn (tree, tree);
3685 extern int init_type_desc (void);
3686 extern tree check_tag_decl (tree);
3687 extern tree shadow_tag (tree);
3688 extern tree groktypename (tree);
3689 extern tree start_decl (tree, tree, int, tree, tree);
3690 extern void start_decl_1 (tree);
3691 extern void cp_finish_decl (tree, tree, tree, int);
3692 extern void finish_decl (tree, tree, tree);
3693 extern void maybe_inject_for_scope_var (tree);
3694 extern tree start_handler_parms (tree, tree);
3695 extern int complete_array_type (tree, tree, int);
3696 extern tree build_ptrmemfunc_type (tree);
3697 extern tree build_ptrmem_type (tree, tree);
3698 /* the grokdeclarator prototype is in decl.h */
3699 extern int copy_fn_p (tree);
3700 extern tree get_scope_of_declarator (tree);
3701 extern void grok_special_member_properties (tree);
3702 extern int grok_ctor_properties (tree, tree);
3703 extern bool grok_op_properties (tree, int, bool);
3704 extern tree xref_tag (enum tag_types, tree, tree, bool, bool);
3705 extern tree xref_tag_from_type (tree, tree, int);
3706 extern void xref_basetypes (tree, tree);
3707 extern tree start_enum (tree);
3708 extern void finish_enum (tree);
3709 extern void build_enumerator (tree, tree, tree);
3710 extern int start_function (tree, tree, tree, int);
3711 extern tree begin_function_body (void);
3712 extern void finish_function_body (tree);
3713 extern tree finish_function (int);
3714 extern tree start_method (tree, tree, tree);
3715 extern tree finish_method (tree);
3716 extern void maybe_register_incomplete_var (tree);
3717 extern void complete_vars (tree);
3718 extern void finish_stmt (void);
3719 extern void print_other_binding_stack (struct cp_binding_level *);
3720 extern void revert_static_member_fn (tree);
3721 extern void fixup_anonymous_aggr (tree);
3722 extern int check_static_variable_definition (tree, tree);
3723 extern tree compute_array_index_type (tree, tree);
3724 extern void push_local_binding (tree, tree, int);
3725 extern int push_class_binding (tree, tree);
3726 extern tree check_default_argument (tree, tree);
3727 extern tree push_overloaded_decl (tree, int);
3728 extern void clear_identifier_class_values (void);
3729 extern void storetags (tree);
3730 extern int vtable_decl_p (tree, void *);
3731 extern int vtype_decl_p (tree, void *);
3732 extern int sigtable_decl_p (tree, void *);
3733 typedef bool (*walk_globals_pred) (tree, void *);
3734 typedef bool (*walk_globals_fn) (tree *, void *);
3735 extern bool walk_globals (walk_globals_pred, walk_globals_fn, void *);
3736 extern bool walk_vtables (walk_globals_pred, walk_globals_fn, void *);
3737 typedef int (*walk_namespaces_fn) (tree, void *);
3738 extern int walk_namespaces (walk_namespaces_fn,
3739 void *);
3740 extern int wrapup_globals_for_namespace (tree, void *);
3741 extern tree cp_namespace_decls (tree);
3742 extern tree create_implicit_typedef (tree, tree);
3743 extern tree maybe_push_decl (tree);
3744 extern tree build_target_expr_with_type (tree, tree);
3745 extern int local_variable_p (tree);
3746 extern int nonstatic_local_decl_p (tree);
3747 extern tree declare_global_var (tree, tree);
3748 extern void register_dtor_fn (tree);
3749 extern tmpl_spec_kind current_tmpl_spec_kind (int);
3750 extern tree cp_fname_init (const char *);
3751 extern tree check_elaborated_type_specifier (enum tag_types, tree, bool);
3752 extern int add_binding (cxx_binding *, tree);
3753 extern bool have_extern_spec;
3754
3755 /* in decl2.c */
3756 extern bool check_java_method (tree);
3757 extern int grok_method_quals (tree, tree, tree);
3758 extern void warn_if_unknown_interface (tree);
3759 extern void grok_x_components (tree);
3760 extern void maybe_retrofit_in_chrg (tree);
3761 extern void maybe_make_one_only (tree);
3762 extern void grokclassfn (tree, tree, enum overload_flags, tree);
3763 extern tree grok_array_decl (tree, tree);
3764 extern tree delete_sanity (tree, tree, int, int);
3765 extern tree check_classfn (tree, tree);
3766 extern void check_member_template (tree);
3767 extern tree grokfield (tree, tree, tree, tree, tree);
3768 extern tree grokbitfield (tree, tree, tree);
3769 extern tree groktypefield (tree, tree);
3770 extern void cplus_decl_attributes (tree *, tree, int);
3771 extern tree constructor_name_full (tree);
3772 extern tree constructor_name (tree);
3773 extern bool constructor_name_p (tree, tree);
3774 extern void defer_fn (tree);
3775 extern void finish_anon_union (tree);
3776 extern tree finish_table (tree, tree, tree, int);
3777 extern tree coerce_new_type (tree);
3778 extern tree coerce_delete_type (tree);
3779 extern void comdat_linkage (tree);
3780 extern void import_export_vtable (tree, tree, int);
3781 extern void import_export_decl (tree);
3782 extern void import_export_tinfo (tree, tree, bool);
3783 extern tree build_cleanup (tree);
3784 extern tree build_offset_ref_call_from_tree (tree, tree);
3785 extern void set_decl_namespace (tree, tree, bool);
3786 extern tree current_decl_namespace (void);
3787 extern void push_decl_namespace (tree);
3788 extern void pop_decl_namespace (void);
3789 extern void push_scope (tree);
3790 extern void pop_scope (tree);
3791 extern void do_namespace_alias (tree, tree);
3792 extern void do_toplevel_using_decl (tree);
3793 extern void do_local_using_decl (tree);
3794 extern tree do_class_using_decl (tree);
3795 extern void do_using_directive (tree);
3796 extern void check_default_args (tree);
3797 extern void mark_used (tree);
3798 extern tree lookup_arg_dependent (tree, tree, tree);
3799 extern void finish_static_data_member_decl (tree, tree, tree, int);
3800 extern tree cp_build_parm_decl (tree, tree);
3801 extern tree build_artificial_parm (tree, tree);
3802 extern tree get_guard (tree);
3803 extern tree get_guard_cond (tree);
3804 extern tree set_guard (tree);
3805 extern void lower_function (tree);
3806
3807 /* XXX Not i18n clean. */
3808 #define cp_deprecated(STR) \
3809 do { \
3810 if (warn_deprecated) \
3811 warning ("%s is deprecated, please see the documentation for details", \
3812 (STR)); \
3813 } while (0)
3814
3815 /* in error.c */
3816 extern void init_error (void);
3817 extern const char *type_as_string (tree, int);
3818 extern const char *decl_as_string (tree, int);
3819 extern const char *expr_as_string (tree, int);
3820 extern const char *context_as_string (tree, int);
3821 extern const char *lang_decl_name (tree, int);
3822 extern const char *language_to_string (enum languages);
3823 extern void print_instantiation_context (void);
3824
3825 /* in except.c */
3826 extern void init_exception_processing (void);
3827 extern tree expand_start_catch_block (tree);
3828 extern void expand_end_catch_block (void);
3829 extern void expand_builtin_throw (void);
3830 extern void expand_eh_spec_block (tree);
3831 extern void expand_exception_blocks (void);
3832 extern tree build_exc_ptr (void);
3833 extern tree build_throw (tree);
3834 extern void mark_all_runtime_matches (void);
3835 extern int nothrow_libfn_p (tree);
3836 extern void check_handlers (tree);
3837 extern void choose_personality_routine (enum languages);
3838 extern tree eh_type_info (tree);
3839
3840 /* in expr.c */
3841 extern rtx cxx_expand_expr (tree, rtx,
3842 enum machine_mode,
3843 int);
3844 extern tree cplus_expand_constant (tree);
3845
3846 /* friend.c */
3847 extern int is_friend (tree, tree);
3848 extern void make_friend_class (tree, tree, bool);
3849 extern void add_friend (tree, tree, bool);
3850 extern tree do_friend (tree, tree, tree, tree, tree, enum overload_flags, tree, int);
3851
3852 /* in init.c */
3853 extern tree expand_member_init (tree);
3854 extern void emit_mem_initializers (tree);
3855 extern tree build_aggr_init (tree, tree, int);
3856 extern tree build_init (tree, tree, int);
3857 extern int is_aggr_type (tree, int);
3858 extern tree get_aggr_from_typedef (tree, int);
3859 extern tree get_type_value (tree);
3860 extern tree build_zero_init (tree, tree, bool);
3861 extern tree build_offset_ref (tree, tree, bool);
3862 extern tree build_new (tree, tree, tree, int);
3863 extern tree build_vec_init (tree, tree, tree, int);
3864 extern tree build_x_delete (tree, int, tree);
3865 extern tree build_delete (tree, tree, special_function_kind, int, int);
3866 extern void push_base_cleanups (void);
3867 extern tree build_vbase_delete (tree, tree);
3868 extern tree build_vec_delete (tree, tree, special_function_kind, int);
3869 extern tree create_temporary_var (tree);
3870 extern void initialize_vtbl_ptrs (tree);
3871 extern tree build_java_class_ref (tree);
3872
3873 /* in input.c */
3874
3875 /* in lex.c */
3876 extern void cxx_dup_lang_specific_decl (tree);
3877 extern tree make_pointer_declarator (tree, tree);
3878 extern tree make_reference_declarator (tree, tree);
3879 extern tree make_call_declarator (tree, tree, tree, tree);
3880 extern void set_quals_and_spec (tree, tree, tree);
3881 extern void print_parse_statistics (void);
3882 extern void do_pending_inlines (void);
3883 extern void yyungetc (int, int);
3884 extern void snarf_method (tree);
3885
3886 extern void see_typename (void);
3887 extern tree unqualified_name_lookup_error (tree);
3888 extern tree unqualified_fn_lookup_error (tree);
3889 extern tree build_lang_decl (enum tree_code, tree, tree);
3890 extern void retrofit_lang_decl (tree);
3891 extern tree copy_decl (tree);
3892 extern tree copy_type (tree);
3893 extern tree cxx_make_type (enum tree_code);
3894 extern tree make_aggr_type (enum tree_code);
3895 extern void yyerror (const char *);
3896 extern void yyhook (int);
3897 extern int cp_type_qual_from_rid (tree);
3898 extern bool cxx_init (void);
3899 extern void cxx_finish (void);
3900
3901 /* in method.c */
3902 extern void init_method (void);
3903 extern void set_mangled_name_for_decl (tree);
3904 extern tree make_thunk (tree, bool, tree, tree);
3905 extern void finish_thunk (tree);
3906 extern void use_thunk (tree, bool);
3907 extern void synthesize_method (tree);
3908 extern tree implicitly_declare_fn (special_function_kind, tree, bool);
3909 extern tree skip_artificial_parms_for (tree, tree);
3910
3911 /* In optimize.c */
3912 extern void optimize_function (tree);
3913 extern bool calls_setjmp_p (tree);
3914 extern bool maybe_clone_body (tree);
3915
3916 /* in pt.c */
3917 extern void check_template_shadow (tree);
3918 extern tree get_innermost_template_args (tree, int);
3919 extern void maybe_begin_member_template_processing (tree);
3920 extern void maybe_end_member_template_processing (void);
3921 extern tree finish_member_template_decl (tree);
3922 extern void begin_template_parm_list (void);
3923 extern void begin_specialization (void);
3924 extern void reset_specialization (void);
3925 extern void end_specialization (void);
3926 extern void begin_explicit_instantiation (void);
3927 extern void end_explicit_instantiation (void);
3928 extern tree check_explicit_specialization (tree, tree, int, int);
3929 extern tree process_template_parm (tree, tree);
3930 extern tree end_template_parm_list (tree);
3931 extern void end_template_decl (void);
3932 extern tree current_template_args (void);
3933 extern tree push_template_decl (tree);
3934 extern tree push_template_decl_real (tree, int);
3935 extern void redeclare_class_template (tree, tree);
3936 extern tree lookup_template_class (tree, tree, tree, tree, int, tsubst_flags_t);
3937 extern tree lookup_template_function (tree, tree);
3938 extern int uses_template_parms (tree);
3939 extern tree instantiate_class_template (tree);
3940 extern tree instantiate_template (tree, tree, tsubst_flags_t);
3941 extern int fn_type_unification (tree, tree, tree, tree, tree, unification_kind_t, int);
3942 extern tree tinst_for_decl (void);
3943 extern void mark_decl_instantiated (tree, int);
3944 extern int more_specialized (tree, tree, int, int);
3945 extern void mark_class_instantiated (tree, int);
3946 extern void do_decl_instantiation (tree, tree);
3947 extern void do_type_instantiation (tree, tree, tsubst_flags_t);
3948 extern tree instantiate_decl (tree, int);
3949 extern int push_tinst_level (tree);
3950 extern void pop_tinst_level (void);
3951 extern int more_specialized_class (tree, tree, tree);
3952 extern int is_member_template (tree);
3953 extern int comp_template_parms (tree, tree);
3954 extern int template_class_depth (tree);
3955 extern int is_specialization_of (tree, tree);
3956 extern int comp_template_args (tree, tree);
3957 extern void maybe_process_partial_specialization (tree);
3958 extern void maybe_check_template_type (tree);
3959 extern tree most_specialized_instantiation (tree);
3960 extern void print_candidates (tree);
3961 extern int instantiate_pending_templates (void);
3962 extern tree tsubst_default_argument (tree, tree, tree);
3963 extern tree tsubst_copy_and_build (tree, tree, tsubst_flags_t, tree, bool);
3964 extern tree most_general_template (tree);
3965 extern tree get_mostly_instantiated_function_type (tree);
3966 extern int problematic_instantiation_changed (void);
3967 extern void record_last_problematic_instantiation (void);
3968 extern tree current_instantiation (void);
3969 extern tree maybe_get_template_decl_from_type_decl (tree);
3970 extern int processing_template_parmlist;
3971 extern bool dependent_type_p (tree);
3972 extern bool any_dependent_template_arguments_p (tree);
3973 extern bool dependent_template_p (tree);
3974 extern bool dependent_template_id_p (tree, tree);
3975 extern bool type_dependent_expression_p (tree);
3976 extern bool any_type_dependent_arguments_p (tree);
3977 extern bool value_dependent_expression_p (tree);
3978 extern tree resolve_typename_type (tree, bool);
3979 extern tree template_for_substitution (tree);
3980 extern tree build_non_dependent_expr (tree);
3981 extern tree build_non_dependent_args (tree);
3982 extern bool reregister_specialization (tree, tree, tree);
3983
3984 /* in repo.c */
3985 extern void repo_template_used (tree);
3986 extern void repo_template_instantiated (tree, bool);
3987 extern void init_repo (const char *);
3988 extern void finish_repo (void);
3989
3990 /* in rtti.c */
3991 /* A varray of all tinfo decls that haven't been emitted yet. */
3992 extern GTY(()) varray_type unemitted_tinfo_decls;
3993
3994 extern void init_rtti_processing (void);
3995 extern tree build_typeid (tree);
3996 extern tree get_tinfo_decl (tree);
3997 extern tree get_typeid (tree);
3998 extern tree build_dynamic_cast (tree, tree);
3999 extern void emit_support_tinfos (void);
4000 extern bool emit_tinfo_decl (tree);
4001
4002 /* in search.c */
4003 extern bool accessible_base_p (tree, tree);
4004 extern tree lookup_base (tree, tree, base_access, base_kind *);
4005 extern int types_overlap_p (tree, tree);
4006 extern tree get_dynamic_cast_base_type (tree, tree);
4007 extern int accessible_p (tree, tree);
4008 extern tree lookup_field_1 (tree, tree, bool);
4009 extern tree lookup_field (tree, tree, int, bool);
4010 extern int lookup_fnfields_1 (tree, tree);
4011 extern tree lookup_fnfields (tree, tree, int);
4012 extern tree lookup_member (tree, tree, int, bool);
4013 extern int look_for_overrides (tree, tree);
4014 extern void get_pure_virtuals (tree);
4015 extern void maybe_suppress_debug_info (tree);
4016 extern void note_debug_info_needed (tree);
4017 extern void push_class_decls (tree);
4018 extern void pop_class_decls (void);
4019 extern void unuse_fields (tree);
4020 extern void print_search_statistics (void);
4021 extern void init_search_processing (void);
4022 extern void reinit_search_statistics (void);
4023 extern tree current_scope (void);
4024 extern int at_function_scope_p (void);
4025 extern bool at_class_scope_p (void);
4026 extern tree context_for_name_lookup (tree);
4027 extern tree lookup_conversions (tree);
4028 extern tree binfo_for_vtable (tree);
4029 extern tree binfo_from_vbase (tree);
4030 extern tree look_for_overrides_here (tree, tree);
4031 extern int check_final_overrider (tree, tree);
4032 extern tree dfs_walk (tree,
4033 tree (*) (tree, void *),
4034 tree (*) (tree, int, void *),
4035 void *);
4036 extern tree dfs_walk_real (tree,
4037 tree (*) (tree, void *),
4038 tree (*) (tree, void *),
4039 tree (*) (tree, int, void *),
4040 void *);
4041 extern tree dfs_unmark (tree, void *);
4042 extern tree markedp (tree, int, void *);
4043 extern tree unmarkedp (tree, int, void *);
4044 extern tree binfo_via_virtual (tree, tree);
4045 extern tree build_baselink (tree, tree, tree, tree);
4046 extern tree adjust_result_of_qualified_name_lookup
4047 (tree, tree, tree);
4048 extern tree copied_binfo (tree, tree);
4049 extern tree original_binfo (tree, tree);
4050
4051 /* in semantics.c */
4052 extern void push_deferring_access_checks (deferring_kind);
4053 extern void resume_deferring_access_checks (void);
4054 extern void stop_deferring_access_checks (void);
4055 extern void pop_deferring_access_checks (void);
4056 extern tree get_deferred_access_checks (void);
4057 extern void pop_to_parent_deferring_access_checks (void);
4058 extern void perform_deferred_access_checks (void);
4059 extern void perform_or_defer_access_check (tree, tree);
4060 extern void init_cp_semantics (void);
4061 extern tree finish_expr_stmt (tree);
4062 extern tree begin_if_stmt (void);
4063 extern void finish_if_stmt_cond (tree, tree);
4064 extern tree finish_then_clause (tree);
4065 extern void begin_else_clause (void);
4066 extern void finish_else_clause (tree);
4067 extern void finish_if_stmt (void);
4068 extern tree begin_while_stmt (void);
4069 extern void finish_while_stmt_cond (tree, tree);
4070 extern void finish_while_stmt (tree);
4071 extern tree begin_do_stmt (void);
4072 extern void finish_do_body (tree);
4073 extern void finish_do_stmt (tree, tree);
4074 extern tree finish_return_stmt (tree);
4075 extern tree begin_for_stmt (void);
4076 extern void finish_for_init_stmt (tree);
4077 extern void finish_for_cond (tree, tree);
4078 extern void finish_for_expr (tree, tree);
4079 extern void finish_for_stmt (tree);
4080 extern tree finish_break_stmt (void);
4081 extern tree finish_continue_stmt (void);
4082 extern tree begin_switch_stmt (void);
4083 extern void finish_switch_cond (tree, tree);
4084 extern void finish_switch_stmt (tree);
4085 extern tree finish_case_label (tree, tree);
4086 extern tree finish_goto_stmt (tree);
4087 extern tree begin_try_block (void);
4088 extern void finish_try_block (tree);
4089 extern tree begin_eh_spec_block (void);
4090 extern void finish_eh_spec_block (tree, tree);
4091 extern void finish_handler_sequence (tree);
4092 extern tree begin_function_try_block (void);
4093 extern void finish_function_try_block (tree);
4094 extern void finish_function_handler_sequence (tree);
4095 extern void finish_cleanup_try_block (tree);
4096 extern tree begin_handler (void);
4097 extern void finish_handler_parms (tree, tree);
4098 extern void begin_catch_block (tree);
4099 extern void finish_handler (tree);
4100 extern void finish_cleanup (tree, tree);
4101 extern tree begin_compound_stmt (bool);
4102 extern tree finish_compound_stmt (tree);
4103 extern tree finish_asm_stmt (tree, tree, tree, tree, tree);
4104 extern tree finish_label_stmt (tree);
4105 extern void finish_label_decl (tree);
4106 extern void finish_subobject (tree);
4107 extern tree finish_parenthesized_expr (tree);
4108 extern tree finish_non_static_data_member (tree, tree, tree);
4109 extern tree begin_stmt_expr (void);
4110 extern tree finish_stmt_expr_expr (tree);
4111 extern tree finish_stmt_expr (tree, bool);
4112 extern tree perform_koenig_lookup (tree, tree);
4113 extern tree finish_call_expr (tree, tree, bool, bool);
4114 extern tree finish_increment_expr (tree, enum tree_code);
4115 extern tree finish_this_expr (void);
4116 extern tree finish_object_call_expr (tree, tree, tree);
4117 extern tree finish_pseudo_destructor_expr (tree, tree, tree);
4118 extern tree finish_unary_op_expr (enum tree_code, tree);
4119 extern tree finish_compound_literal (tree, tree);
4120 extern tree finish_fname (tree);
4121 extern int begin_function_definition (tree, tree, tree);
4122 extern void finish_translation_unit (void);
4123 extern tree finish_template_type_parm (tree, tree);
4124 extern tree finish_template_template_parm (tree, tree);
4125 extern tree finish_parmlist (tree, int);
4126 extern tree begin_class_definition (tree);
4127 extern void finish_default_args (void);
4128 extern tree finish_member_class_template (tree);
4129 extern void finish_template_decl (tree);
4130 extern tree finish_template_type (tree, tree, int);
4131 extern tree finish_base_specifier (tree, tree, bool);
4132 extern void finish_member_declaration (tree);
4133 extern void check_multiple_declarators (void);
4134 extern void qualified_name_lookup_error (tree, tree);
4135 extern tree finish_id_expression (tree, tree, tree,
4136 cp_id_kind *, tree *,
4137 bool, bool, bool *,
4138 const char **);
4139 extern tree finish_typeof (tree);
4140 extern tree finish_sizeof (tree);
4141 extern tree finish_alignof (tree);
4142 extern void finish_decl_cleanup (tree, tree);
4143 extern void finish_eh_cleanup (tree);
4144 extern void expand_body (tree);
4145 extern void cxx_expand_function_start (void);
4146 extern tree nullify_returns_r (tree *, int *, void *);
4147 extern void do_pushlevel (scope_kind);
4148 extern tree do_poplevel (void);
4149 extern void finish_mem_initializers (tree);
4150 extern void setup_vtbl_ptr (tree, tree);
4151 extern void clear_out_block (void);
4152 extern tree check_template_template_default_arg (tree);
4153 extern void expand_or_defer_fn (tree);
4154 extern void check_accessibility_of_qualified_id (tree, tree, tree);
4155 extern tree finish_qualified_id_expr (tree, tree, bool, bool);
4156 extern void simplify_aggr_init_expr (tree *);
4157
4158 /* in tree.c */
4159 extern void lang_check_failed (const char *, int,
4160 const char *);
4161 extern tree stabilize_expr (tree, tree *);
4162 extern tree cxx_unsave_expr_now (tree);
4163 extern tree cxx_maybe_build_cleanup (tree);
4164 extern void init_tree (void);
4165 extern int pod_type_p (tree);
4166 extern int zero_init_p (tree);
4167 extern tree canonical_type_variant (tree);
4168 extern tree copy_base_binfos (tree, tree, tree);
4169 extern int member_p (tree);
4170 extern cp_lvalue_kind real_lvalue_p (tree);
4171 extern int non_cast_lvalue_p (tree);
4172 extern cp_lvalue_kind real_non_cast_lvalue_p (tree);
4173 extern int non_cast_lvalue_or_else (tree, const char *);
4174 extern tree build_min (enum tree_code, tree,
4175 ...);
4176 extern tree build_min_nt (enum tree_code, ...);
4177 extern tree build_cplus_new (tree, tree);
4178 extern tree get_target_expr (tree);
4179 extern tree build_cplus_staticfn_type (tree, tree, tree);
4180 extern tree build_cplus_array_type (tree, tree);
4181 extern tree hash_tree_cons (tree, tree, tree);
4182 extern tree hash_tree_chain (tree, tree);
4183 extern tree hash_chainon (tree, tree);
4184 extern tree make_binfo (tree, tree, tree, tree);
4185 extern int count_functions (tree);
4186 extern int is_overloaded_fn (tree);
4187 extern tree get_first_fn (tree);
4188 extern int bound_pmf_p (tree);
4189 extern tree ovl_cons (tree, tree);
4190 extern tree build_overload (tree, tree);
4191 extern tree function_arg_chain (tree);
4192 extern int promotes_to_aggr_type (tree, enum tree_code);
4193 extern const char *cxx_printable_name (tree, int);
4194 extern tree build_exception_variant (tree, tree);
4195 extern tree bind_template_template_parm (tree, tree);
4196 extern tree array_type_nelts_total (tree);
4197 extern tree array_type_nelts_top (tree);
4198 extern tree break_out_target_exprs (tree);
4199 extern tree get_type_decl (tree);
4200 extern tree vec_binfo_member (tree, tree);
4201 extern tree decl_namespace_context (tree);
4202 extern tree lvalue_type (tree);
4203 extern tree error_type (tree);
4204 extern tree build_zc_wrapper (struct z_candidate *);
4205 extern int varargs_function_p (tree);
4206 extern int really_overloaded_fn (tree);
4207 extern bool cp_tree_equal (tree, tree);
4208 extern tree no_linkage_check (tree);
4209 extern void debug_binfo (tree);
4210 extern tree build_dummy_object (tree);
4211 extern tree maybe_dummy_object (tree, tree *);
4212 extern int is_dummy_object (tree);
4213 extern const struct attribute_spec cxx_attribute_table[];
4214 extern tree make_ptrmem_cst (tree, tree);
4215 extern tree cp_build_qualified_type_real (tree, int, tsubst_flags_t);
4216 #define cp_build_qualified_type(TYPE, QUALS) \
4217 cp_build_qualified_type_real ((TYPE), (QUALS), tf_error | tf_warning)
4218 extern tree build_shared_int_cst (int);
4219 extern special_function_kind special_function_p (tree);
4220 extern bool name_p (tree);
4221 extern int count_trees (tree);
4222 extern int char_type_p (tree);
4223 extern void verify_stmt_tree (tree);
4224 extern tree find_tree (tree, tree);
4225 extern linkage_kind decl_linkage (tree);
4226 extern tree cp_walk_subtrees (tree*, int*, walk_tree_fn,
4227 void*, void*);
4228 extern int cp_cannot_inline_tree_fn (tree*);
4229 extern tree cp_add_pending_fn_decls (void*,tree);
4230 extern int cp_is_overload_p (tree);
4231 extern int cp_auto_var_in_fn_p (tree,tree);
4232 extern tree cp_copy_res_decl_for_inlining (tree, tree, tree, void*,
4233 int*, tree);
4234 extern int cp_start_inlining (tree);
4235 extern void cp_end_inlining (tree);
4236
4237 /* in typeck.c */
4238 extern int string_conv_p (tree, tree, int);
4239 extern tree cp_truthvalue_conversion (tree);
4240 extern tree condition_conversion (tree);
4241 extern tree target_type (tree);
4242 extern tree require_complete_type (tree);
4243 extern tree complete_type (tree);
4244 extern tree complete_type_or_diagnostic (tree, tree, int);
4245 #define complete_type_or_else(T,V) (complete_type_or_diagnostic ((T), (V), 0))
4246 extern int type_unknown_p (tree);
4247 extern tree commonparms (tree, tree);
4248 extern tree original_type (tree);
4249 extern bool comp_except_specs (tree, tree, bool);
4250 extern bool comptypes (tree, tree, int);
4251 extern bool compparms (tree, tree);
4252 extern int comp_cv_qualification (tree, tree);
4253 extern int comp_cv_qual_signature (tree, tree);
4254 extern tree expr_sizeof (tree);
4255 extern tree cxx_sizeof_or_alignof_type (tree, enum tree_code, int);
4256 #define cxx_sizeof_nowarn(T) cxx_sizeof_or_alignof_type (T, SIZEOF_EXPR, false)
4257 extern tree inline_conversion (tree);
4258 extern tree decay_conversion (tree);
4259 extern tree perform_integral_promotions (tree);
4260 extern tree build_class_member_access_expr (tree, tree, tree, bool);
4261 extern tree finish_class_member_access_expr (tree, tree);
4262 extern tree build_x_indirect_ref (tree, const char *);
4263 extern tree build_indirect_ref (tree, const char *);
4264 extern tree build_array_ref (tree, tree);
4265 extern tree get_member_function_from_ptrfunc (tree *, tree);
4266 extern tree convert_arguments (tree, tree, tree, int);
4267 extern tree build_x_binary_op (enum tree_code, tree, tree);
4268 extern tree build_x_unary_op (enum tree_code, tree);
4269 extern tree unary_complex_lvalue (enum tree_code, tree);
4270 extern tree build_x_conditional_expr (tree, tree, tree);
4271 extern tree build_x_compound_expr_from_list (tree, const char *);
4272 extern tree build_x_compound_expr (tree, tree);
4273 extern tree build_compound_expr (tree, tree);
4274 extern tree build_static_cast (tree, tree);
4275 extern tree build_reinterpret_cast (tree, tree);
4276 extern tree build_const_cast (tree, tree);
4277 extern tree build_c_cast (tree, tree);
4278 extern tree build_x_modify_expr (tree, enum tree_code, tree);
4279 extern tree build_modify_expr (tree, enum tree_code, tree);
4280 extern tree dubious_conversion_warnings (tree, tree, const char *, tree, int);
4281 extern tree convert_for_initialization (tree, tree, tree, int, const char *, tree, int);
4282 extern int comp_ptr_ttypes (tree, tree);
4283 extern int ptr_reasonably_similar (tree, tree);
4284 extern tree build_ptrmemfunc (tree, tree, int);
4285 extern int cp_type_quals (tree);
4286 extern bool cp_has_mutable_p (tree);
4287 extern bool at_least_as_qualified_p (tree, tree);
4288 extern bool more_qualified_p (tree, tree);
4289 extern tree build_ptrmemfunc1 (tree, tree, tree);
4290 extern void expand_ptrmemfunc_cst (tree, tree *, tree *);
4291 extern tree pfn_from_ptrmemfunc (tree);
4292 extern tree type_after_usual_arithmetic_conversions (tree, tree);
4293 extern tree composite_pointer_type (tree, tree, tree, tree,
4294 const char*);
4295 extern tree merge_types (tree, tree);
4296 extern tree check_return_expr (tree);
4297 #define cp_build_binary_op(code, arg1, arg2) \
4298 build_binary_op(code, arg1, arg2, 1)
4299 #define cxx_sizeof(T) cxx_sizeof_or_alignof_type (T, SIZEOF_EXPR, true)
4300 #define cxx_alignof(T) cxx_sizeof_or_alignof_type (T, ALIGNOF_EXPR, true)
4301 extern tree build_ptrmemfunc_access_expr (tree, tree);
4302 extern tree build_address (tree);
4303 extern tree build_nop (tree, tree);
4304 extern tree non_reference (tree);
4305
4306 /* in typeck2.c */
4307 extern void require_complete_eh_spec_types (tree, tree);
4308 extern void cxx_incomplete_type_diagnostic (tree, tree, int);
4309 #undef cxx_incomplete_type_error
4310 extern void cxx_incomplete_type_error (tree, tree);
4311 #define cxx_incomplete_type_error(V,T) \
4312 (cxx_incomplete_type_diagnostic ((V), (T), 0))
4313 extern tree error_not_base_type (tree, tree);
4314 extern tree binfo_or_else (tree, tree);
4315 extern void readonly_error (tree, const char *, int);
4316 extern int abstract_virtuals_error (tree, tree);
4317
4318 extern tree store_init_value (tree, tree);
4319 extern tree digest_init (tree, tree, tree *);
4320 extern tree build_scoped_ref (tree, tree, tree *);
4321 extern tree build_x_arrow (tree);
4322 extern tree build_m_component_ref (tree, tree);
4323 extern tree build_functional_cast (tree, tree);
4324 extern tree add_exception_specifier (tree, tree, int);
4325 extern tree merge_exception_specifiers (tree, tree);
4326
4327 /* in mangle.c */
4328 extern void init_mangle (void);
4329 extern void mangle_decl (tree);
4330 extern const char *mangle_type_string (tree);
4331 extern tree mangle_type (tree);
4332 extern tree mangle_typeinfo_for_type (tree);
4333 extern tree mangle_typeinfo_string_for_type (tree);
4334 extern tree mangle_vtbl_for_type (tree);
4335 extern tree mangle_vtt_for_type (tree);
4336 extern tree mangle_ctor_vtbl_for_type (tree, tree);
4337 extern tree mangle_thunk (tree, int, tree, tree);
4338 extern tree mangle_conv_op_name_for_type (tree);
4339 extern tree mangle_guard_variable (tree);
4340 extern tree mangle_ref_init_variable (tree);
4341
4342 /* in dump.c */
4343 extern bool cp_dump_tree (void *, tree);
4344
4345 /* -- end of C++ */
4346
4347 /* In order for the format checking to accept the C++ frontend
4348 diagnostic framework extensions, you must include this file before
4349 toplev.h, not after. */
4350 #define GCC_DIAG_STYLE __gcc_cxxdiag__
4351 #if GCC_VERSION >= 3004
4352 #define ATTRIBUTE_GCC_CXXDIAG(m, n) __attribute__ ((__format__ (GCC_DIAG_STYLE, m, n))) ATTRIBUTE_NONNULL(m)
4353 #else
4354 #define ATTRIBUTE_GCC_CXXDIAG(m, n) ATTRIBUTE_NONNULL(m)
4355 #endif
4356
4357 extern void cp_error_at (const char *, ...) ATTRIBUTE_GCC_CXXDIAG(1, 2);
4358 extern void cp_warning_at (const char *, ...) ATTRIBUTE_GCC_CXXDIAG(1, 2);
4359 extern void cp_pedwarn_at (const char *, ...) ATTRIBUTE_GCC_CXXDIAG(1, 2);
4360
4361 #endif /* ! GCC_CP_TREE_H */