decl.c (grokdeclarator): Don't bother checking for CHAR_TYPE.
[gcc.git] / gcc / cp / rtti.c
1 /* RunTime Type Identification
2 Copyright (C) 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, 2004,
3 2005, 2006
4 Free Software Foundation, Inc.
5 Mostly written by Jason Merrill (jason@cygnus.com).
6
7 This file is part of GCC.
8
9 GCC is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2, or (at your option)
12 any later version.
13
14 GCC is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING. If not, write to
21 the Free Software Foundation, 51 Franklin Street, Fifth Floor,
22 Boston, MA 02110-1301, USA. */
23
24 #include "config.h"
25 #include "system.h"
26 #include "coretypes.h"
27 #include "tm.h"
28 #include "tree.h"
29 #include "cp-tree.h"
30 #include "flags.h"
31 #include "output.h"
32 #include "assert.h"
33 #include "toplev.h"
34 #include "convert.h"
35
36 /* C++ returns type information to the user in struct type_info
37 objects. We also use type information to implement dynamic_cast and
38 exception handlers. Type information for a particular type is
39 indicated with an ABI defined structure derived from type_info.
40 This would all be very straight forward, but for the fact that the
41 runtime library provides the definitions of the type_info structure
42 and the ABI defined derived classes. We cannot build declarations
43 of them directly in the compiler, but we need to layout objects of
44 their type. Somewhere we have to lie.
45
46 We define layout compatible POD-structs with compiler-defined names
47 and generate the appropriate initializations for them (complete
48 with explicit mention of their vtable). When we have to provide a
49 type_info to the user we reinterpret_cast the internal compiler
50 type to type_info. A well formed program can only explicitly refer
51 to the type_infos of complete types (& cv void). However, we chain
52 pointer type_infos to the pointed-to-type, and that can be
53 incomplete. We only need the addresses of such incomplete
54 type_info objects for static initialization.
55
56 The type information VAR_DECL of a type is held on the
57 IDENTIFIER_GLOBAL_VALUE of the type's mangled name. That VAR_DECL
58 will be the internal type. It will usually have the correct
59 internal type reflecting the kind of type it represents (pointer,
60 array, function, class, inherited class, etc). When the type it
61 represents is incomplete, it will have the internal type
62 corresponding to type_info. That will only happen at the end of
63 translation, when we are emitting the type info objects. */
64
65 /* Auxiliary data we hold for each type_info derived object we need. */
66 typedef struct tinfo_s GTY (())
67 {
68 tree type; /* The RECORD_TYPE for this type_info object */
69
70 tree vtable; /* The VAR_DECL of the vtable. Only filled at end of
71 translation. */
72
73 tree name; /* IDENTIFIER_NODE for the ABI specified name of
74 the type_info derived type. */
75 } tinfo_s;
76
77 DEF_VEC_O(tinfo_s);
78 DEF_VEC_ALLOC_O(tinfo_s,gc);
79
80 typedef enum tinfo_kind
81 {
82 TK_TYPE_INFO_TYPE, /* std::type_info */
83 TK_BASE_TYPE, /* abi::__base_class_type_info */
84 TK_BUILTIN_TYPE, /* abi::__fundamental_type_info */
85 TK_ARRAY_TYPE, /* abi::__array_type_info */
86 TK_FUNCTION_TYPE, /* abi::__function_type_info */
87 TK_ENUMERAL_TYPE, /* abi::__enum_type_info */
88 TK_POINTER_TYPE, /* abi::__pointer_type_info */
89 TK_POINTER_MEMBER_TYPE, /* abi::__pointer_to_member_type_info */
90 TK_CLASS_TYPE, /* abi::__class_type_info */
91 TK_SI_CLASS_TYPE, /* abi::__si_class_type_info */
92 TK_FIXED /* end of fixed descriptors. */
93 /* ... abi::__vmi_type_info<I> */
94 } tinfo_kind;
95
96 /* A vector of all tinfo decls that haven't yet been emitted. */
97 VEC(tree,gc) *unemitted_tinfo_decls;
98
99 /* A vector of all type_info derived types we need. The first few are
100 fixed and created early. The remainder are for multiple inheritance
101 and are generated as needed. */
102 static GTY (()) VEC(tinfo_s,gc) *tinfo_descs;
103
104 static tree build_headof (tree);
105 static tree ifnonnull (tree, tree);
106 static tree tinfo_name (tree);
107 static tree build_dynamic_cast_1 (tree, tree);
108 static tree throw_bad_cast (void);
109 static tree throw_bad_typeid (void);
110 static tree get_tinfo_decl_dynamic (tree);
111 static tree get_tinfo_ptr (tree);
112 static bool typeid_ok_p (void);
113 static int qualifier_flags (tree);
114 static bool target_incomplete_p (tree);
115 static tree tinfo_base_init (tinfo_s *, tree);
116 static tree generic_initializer (tinfo_s *, tree);
117 static tree ptr_initializer (tinfo_s *, tree);
118 static tree ptm_initializer (tinfo_s *, tree);
119 static tree class_initializer (tinfo_s *, tree, tree);
120 static void create_pseudo_type_info (int, const char *, ...);
121 static tree get_pseudo_ti_init (tree, unsigned);
122 static unsigned get_pseudo_ti_index (tree);
123 static void create_tinfo_types (void);
124 static bool typeinfo_in_lib_p (tree);
125
126 static int doing_runtime = 0;
127 \f
128
129 /* Declare language defined type_info type and a pointer to const
130 type_info. This is incomplete here, and will be completed when
131 the user #includes <typeinfo>. There are language defined
132 restrictions on what can be done until that is included. Create
133 the internal versions of the ABI types. */
134
135 void
136 init_rtti_processing (void)
137 {
138 tree type_info_type;
139
140 push_namespace (std_identifier);
141 type_info_type = xref_tag (class_type, get_identifier ("type_info"),
142 /*tag_scope=*/ts_current, false);
143 pop_namespace ();
144 const_type_info_type_node
145 = build_qualified_type (type_info_type, TYPE_QUAL_CONST);
146 type_info_ptr_type = build_pointer_type (const_type_info_type_node);
147
148 unemitted_tinfo_decls = VEC_alloc (tree, gc, 124);
149
150 create_tinfo_types ();
151 }
152
153 /* Given the expression EXP of type `class *', return the head of the
154 object pointed to by EXP with type cv void*, if the class has any
155 virtual functions (TYPE_POLYMORPHIC_P), else just return the
156 expression. */
157
158 static tree
159 build_headof (tree exp)
160 {
161 tree type = TREE_TYPE (exp);
162 tree offset;
163 tree index;
164
165 gcc_assert (TREE_CODE (type) == POINTER_TYPE);
166 type = TREE_TYPE (type);
167
168 if (!TYPE_POLYMORPHIC_P (type))
169 return exp;
170
171 /* We use this a couple of times below, protect it. */
172 exp = save_expr (exp);
173
174 /* The offset-to-top field is at index -2 from the vptr. */
175 index = build_int_cst (NULL_TREE,
176 -2 * TARGET_VTABLE_DATA_ENTRY_DISTANCE);
177
178 offset = build_vtbl_ref (build_indirect_ref (exp, NULL), index);
179
180 type = build_qualified_type (ptr_type_node,
181 cp_type_quals (TREE_TYPE (exp)));
182 return build2 (PLUS_EXPR, type, exp,
183 convert_to_integer (ptrdiff_type_node, offset));
184 }
185
186 /* Get a bad_cast node for the program to throw...
187
188 See libstdc++/exception.cc for __throw_bad_cast */
189
190 static tree
191 throw_bad_cast (void)
192 {
193 tree fn = get_identifier ("__cxa_bad_cast");
194 if (!get_global_value_if_present (fn, &fn))
195 fn = push_throw_library_fn (fn, build_function_type (ptr_type_node,
196 void_list_node));
197
198 return build_cxx_call (fn, NULL_TREE);
199 }
200
201 /* Return an expression for "__cxa_bad_typeid()". The expression
202 returned is an lvalue of type "const std::type_info". */
203
204 static tree
205 throw_bad_typeid (void)
206 {
207 tree fn = get_identifier ("__cxa_bad_typeid");
208 if (!get_global_value_if_present (fn, &fn))
209 {
210 tree t;
211
212 t = build_reference_type (const_type_info_type_node);
213 t = build_function_type (t, void_list_node);
214 fn = push_throw_library_fn (fn, t);
215 }
216
217 return build_cxx_call (fn, NULL_TREE);
218 }
219 \f
220 /* Return an lvalue expression whose type is "const std::type_info"
221 and whose value indicates the type of the expression EXP. If EXP
222 is a reference to a polymorphic class, return the dynamic type;
223 otherwise return the static type of the expression. */
224
225 static tree
226 get_tinfo_decl_dynamic (tree exp)
227 {
228 tree type;
229 tree t;
230
231 if (exp == error_mark_node)
232 return error_mark_node;
233
234 /* peel back references, so they match. */
235 type = non_reference (TREE_TYPE (exp));
236
237 /* Peel off cv qualifiers. */
238 type = TYPE_MAIN_VARIANT (type);
239
240 if (!VOID_TYPE_P (type))
241 type = complete_type_or_else (type, exp);
242
243 if (!type)
244 return error_mark_node;
245
246 /* If exp is a reference to polymorphic type, get the real type_info. */
247 if (TYPE_POLYMORPHIC_P (type) && ! resolves_to_fixed_type_p (exp, 0))
248 {
249 /* build reference to type_info from vtable. */
250 tree index;
251
252 /* The RTTI information is at index -1. */
253 index = build_int_cst (NULL_TREE,
254 -1 * TARGET_VTABLE_DATA_ENTRY_DISTANCE);
255 t = build_vtbl_ref (exp, index);
256 t = convert (type_info_ptr_type, t);
257 }
258 else
259 /* Otherwise return the type_info for the static type of the expr. */
260 t = get_tinfo_ptr (TYPE_MAIN_VARIANT (type));
261
262 return build_indirect_ref (t, NULL);
263 }
264
265 static bool
266 typeid_ok_p (void)
267 {
268 if (! flag_rtti)
269 {
270 error ("cannot use typeid with -fno-rtti");
271 return false;
272 }
273
274 if (!COMPLETE_TYPE_P (const_type_info_type_node))
275 {
276 error ("must #include <typeinfo> before using typeid");
277 return false;
278 }
279
280 return true;
281 }
282
283 /* Return an expression for "typeid(EXP)". The expression returned is
284 an lvalue of type "const std::type_info". */
285
286 tree
287 build_typeid (tree exp)
288 {
289 tree cond = NULL_TREE;
290 int nonnull = 0;
291
292 if (exp == error_mark_node || !typeid_ok_p ())
293 return error_mark_node;
294
295 if (processing_template_decl)
296 return build_min (TYPEID_EXPR, const_type_info_type_node, exp);
297
298 if (TREE_CODE (exp) == INDIRECT_REF
299 && TREE_CODE (TREE_TYPE (TREE_OPERAND (exp, 0))) == POINTER_TYPE
300 && TYPE_POLYMORPHIC_P (TREE_TYPE (exp))
301 && ! resolves_to_fixed_type_p (exp, &nonnull)
302 && ! nonnull)
303 {
304 exp = stabilize_reference (exp);
305 cond = cp_convert (boolean_type_node, TREE_OPERAND (exp, 0));
306 }
307
308 exp = get_tinfo_decl_dynamic (exp);
309
310 if (exp == error_mark_node)
311 return error_mark_node;
312
313 if (cond)
314 {
315 tree bad = throw_bad_typeid ();
316
317 exp = build3 (COND_EXPR, TREE_TYPE (exp), cond, exp, bad);
318 }
319
320 return exp;
321 }
322
323 /* Generate the NTBS name of a type. */
324 static tree
325 tinfo_name (tree type)
326 {
327 const char *name;
328 tree name_string;
329
330 name = mangle_type_string (type);
331 name_string = fix_string_type (build_string (strlen (name) + 1, name));
332 return name_string;
333 }
334
335 /* Return a VAR_DECL for the internal ABI defined type_info object for
336 TYPE. You must arrange that the decl is mark_used, if actually use
337 it --- decls in vtables are only used if the vtable is output. */
338
339 tree
340 get_tinfo_decl (tree type)
341 {
342 tree name;
343 tree d;
344
345 if (COMPLETE_TYPE_P (type)
346 && TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST)
347 {
348 error ("cannot create type information for type %qT because "
349 "its size is variable",
350 type);
351 return error_mark_node;
352 }
353
354 if (TREE_CODE (type) == METHOD_TYPE)
355 type = build_function_type (TREE_TYPE (type),
356 TREE_CHAIN (TYPE_ARG_TYPES (type)));
357
358 /* For a class type, the variable is cached in the type node
359 itself. */
360 if (CLASS_TYPE_P (type))
361 {
362 d = CLASSTYPE_TYPEINFO_VAR (TYPE_MAIN_VARIANT (type));
363 if (d)
364 return d;
365 }
366
367 name = mangle_typeinfo_for_type (type);
368
369 d = IDENTIFIER_GLOBAL_VALUE (name);
370 if (!d)
371 {
372 int ix = get_pseudo_ti_index (type);
373 tinfo_s *ti = VEC_index (tinfo_s, tinfo_descs, ix);
374
375 d = build_lang_decl (VAR_DECL, name, ti->type);
376 SET_DECL_ASSEMBLER_NAME (d, name);
377 /* Remember the type it is for. */
378 TREE_TYPE (name) = type;
379 DECL_TINFO_P (d) = 1;
380 DECL_ARTIFICIAL (d) = 1;
381 DECL_IGNORED_P (d) = 1;
382 TREE_READONLY (d) = 1;
383 TREE_STATIC (d) = 1;
384 /* Mark the variable as undefined -- but remember that we can
385 define it later if we need to do so. */
386 DECL_EXTERNAL (d) = 1;
387 DECL_NOT_REALLY_EXTERN (d) = 1;
388 if (CLASS_TYPE_P (type))
389 CLASSTYPE_TYPEINFO_VAR (TYPE_MAIN_VARIANT (type)) = d;
390 set_linkage_according_to_type (type, d);
391 pushdecl_top_level_and_finish (d, NULL_TREE);
392
393 /* Add decl to the global array of tinfo decls. */
394 VEC_safe_push (tree, gc, unemitted_tinfo_decls, d);
395 }
396
397 return d;
398 }
399
400 /* Return a pointer to a type_info object describing TYPE, suitably
401 cast to the language defined type. */
402
403 static tree
404 get_tinfo_ptr (tree type)
405 {
406 tree decl = get_tinfo_decl (type);
407
408 mark_used (decl);
409 return build_nop (type_info_ptr_type,
410 build_address (decl));
411 }
412
413 /* Return the type_info object for TYPE. */
414
415 tree
416 get_typeid (tree type)
417 {
418 if (type == error_mark_node || !typeid_ok_p ())
419 return error_mark_node;
420
421 if (processing_template_decl)
422 return build_min (TYPEID_EXPR, const_type_info_type_node, type);
423
424 /* If the type of the type-id is a reference type, the result of the
425 typeid expression refers to a type_info object representing the
426 referenced type. */
427 type = non_reference (type);
428
429 /* The top-level cv-qualifiers of the lvalue expression or the type-id
430 that is the operand of typeid are always ignored. */
431 type = TYPE_MAIN_VARIANT (type);
432
433 if (!VOID_TYPE_P (type))
434 type = complete_type_or_else (type, NULL_TREE);
435
436 if (!type)
437 return error_mark_node;
438
439 return build_indirect_ref (get_tinfo_ptr (type), NULL);
440 }
441
442 /* Check whether TEST is null before returning RESULT. If TEST is used in
443 RESULT, it must have previously had a save_expr applied to it. */
444
445 static tree
446 ifnonnull (tree test, tree result)
447 {
448 return build3 (COND_EXPR, TREE_TYPE (result),
449 build2 (EQ_EXPR, boolean_type_node, test,
450 cp_convert (TREE_TYPE (test), integer_zero_node)),
451 cp_convert (TREE_TYPE (result), integer_zero_node),
452 result);
453 }
454
455 /* Execute a dynamic cast, as described in section 5.2.6 of the 9/93 working
456 paper. */
457
458 static tree
459 build_dynamic_cast_1 (tree type, tree expr)
460 {
461 enum tree_code tc = TREE_CODE (type);
462 tree exprtype = TREE_TYPE (expr);
463 tree dcast_fn;
464 tree old_expr = expr;
465 const char *errstr = NULL;
466
467 /* T shall be a pointer or reference to a complete class type, or
468 `pointer to cv void''. */
469 switch (tc)
470 {
471 case POINTER_TYPE:
472 if (TREE_CODE (TREE_TYPE (type)) == VOID_TYPE)
473 break;
474 /* Fall through. */
475 case REFERENCE_TYPE:
476 if (! IS_AGGR_TYPE (TREE_TYPE (type)))
477 {
478 errstr = "target is not pointer or reference to class";
479 goto fail;
480 }
481 if (!COMPLETE_TYPE_P (complete_type (TREE_TYPE (type))))
482 {
483 errstr = "target is not pointer or reference to complete type";
484 goto fail;
485 }
486 break;
487
488 default:
489 errstr = "target is not pointer or reference";
490 goto fail;
491 }
492
493 if (tc == POINTER_TYPE)
494 {
495 /* If T is a pointer type, v shall be an rvalue of a pointer to
496 complete class type, and the result is an rvalue of type T. */
497
498 if (TREE_CODE (exprtype) != POINTER_TYPE)
499 {
500 errstr = "source is not a pointer";
501 goto fail;
502 }
503 if (! IS_AGGR_TYPE (TREE_TYPE (exprtype)))
504 {
505 errstr = "source is not a pointer to class";
506 goto fail;
507 }
508 if (!COMPLETE_TYPE_P (complete_type (TREE_TYPE (exprtype))))
509 {
510 errstr = "source is a pointer to incomplete type";
511 goto fail;
512 }
513 }
514 else
515 {
516 /* Apply trivial conversion T -> T& for dereferenced ptrs. */
517 exprtype = build_reference_type (exprtype);
518 expr = convert_to_reference (exprtype, expr, CONV_IMPLICIT,
519 LOOKUP_NORMAL, NULL_TREE);
520
521 /* T is a reference type, v shall be an lvalue of a complete class
522 type, and the result is an lvalue of the type referred to by T. */
523
524 if (! IS_AGGR_TYPE (TREE_TYPE (exprtype)))
525 {
526 errstr = "source is not of class type";
527 goto fail;
528 }
529 if (!COMPLETE_TYPE_P (complete_type (TREE_TYPE (exprtype))))
530 {
531 errstr = "source is of incomplete class type";
532 goto fail;
533 }
534
535 }
536
537 /* The dynamic_cast operator shall not cast away constness. */
538 if (!at_least_as_qualified_p (TREE_TYPE (type),
539 TREE_TYPE (exprtype)))
540 {
541 errstr = "conversion casts away constness";
542 goto fail;
543 }
544
545 /* If *type is an unambiguous accessible base class of *exprtype,
546 convert statically. */
547 {
548 tree binfo;
549
550 binfo = lookup_base (TREE_TYPE (exprtype), TREE_TYPE (type),
551 ba_check, NULL);
552
553 if (binfo)
554 {
555 expr = build_base_path (PLUS_EXPR, convert_from_reference (expr),
556 binfo, 0);
557 if (TREE_CODE (exprtype) == POINTER_TYPE)
558 expr = rvalue (expr);
559 return expr;
560 }
561 }
562
563 /* Otherwise *exprtype must be a polymorphic class (have a vtbl). */
564 if (TYPE_POLYMORPHIC_P (TREE_TYPE (exprtype)))
565 {
566 tree expr1;
567 /* if TYPE is `void *', return pointer to complete object. */
568 if (tc == POINTER_TYPE && VOID_TYPE_P (TREE_TYPE (type)))
569 {
570 /* if b is an object, dynamic_cast<void *>(&b) == (void *)&b. */
571 if (TREE_CODE (expr) == ADDR_EXPR
572 && TREE_CODE (TREE_OPERAND (expr, 0)) == VAR_DECL
573 && TREE_CODE (TREE_TYPE (TREE_OPERAND (expr, 0))) == RECORD_TYPE)
574 return build1 (NOP_EXPR, type, expr);
575
576 /* Since expr is used twice below, save it. */
577 expr = save_expr (expr);
578
579 expr1 = build_headof (expr);
580 if (TREE_TYPE (expr1) != type)
581 expr1 = build1 (NOP_EXPR, type, expr1);
582 return ifnonnull (expr, expr1);
583 }
584 else
585 {
586 tree retval;
587 tree result, td2, td3, elems;
588 tree static_type, target_type, boff;
589
590 /* If we got here, we can't convert statically. Therefore,
591 dynamic_cast<D&>(b) (b an object) cannot succeed. */
592 if (tc == REFERENCE_TYPE)
593 {
594 if (TREE_CODE (old_expr) == VAR_DECL
595 && TREE_CODE (TREE_TYPE (old_expr)) == RECORD_TYPE)
596 {
597 tree expr = throw_bad_cast ();
598 warning (0, "dynamic_cast of %q#D to %q#T can never succeed",
599 old_expr, type);
600 /* Bash it to the expected type. */
601 TREE_TYPE (expr) = type;
602 return expr;
603 }
604 }
605 /* Ditto for dynamic_cast<D*>(&b). */
606 else if (TREE_CODE (expr) == ADDR_EXPR)
607 {
608 tree op = TREE_OPERAND (expr, 0);
609 if (TREE_CODE (op) == VAR_DECL
610 && TREE_CODE (TREE_TYPE (op)) == RECORD_TYPE)
611 {
612 warning (0, "dynamic_cast of %q#D to %q#T can never succeed",
613 op, type);
614 retval = build_int_cst (type, 0);
615 return retval;
616 }
617 }
618
619 target_type = TYPE_MAIN_VARIANT (TREE_TYPE (type));
620 static_type = TYPE_MAIN_VARIANT (TREE_TYPE (exprtype));
621 td2 = get_tinfo_decl (target_type);
622 mark_used (td2);
623 td2 = build_unary_op (ADDR_EXPR, td2, 0);
624 td3 = get_tinfo_decl (static_type);
625 mark_used (td3);
626 td3 = build_unary_op (ADDR_EXPR, td3, 0);
627
628 /* Determine how T and V are related. */
629 boff = dcast_base_hint (static_type, target_type);
630
631 /* Since expr is used twice below, save it. */
632 expr = save_expr (expr);
633
634 expr1 = expr;
635 if (tc == REFERENCE_TYPE)
636 expr1 = build_unary_op (ADDR_EXPR, expr1, 0);
637
638 elems = tree_cons
639 (NULL_TREE, expr1, tree_cons
640 (NULL_TREE, td3, tree_cons
641 (NULL_TREE, td2, tree_cons
642 (NULL_TREE, boff, NULL_TREE))));
643
644 dcast_fn = dynamic_cast_node;
645 if (!dcast_fn)
646 {
647 tree tmp;
648 tree tinfo_ptr;
649 tree ns = abi_node;
650 const char *name;
651
652 push_nested_namespace (ns);
653 tinfo_ptr = xref_tag (class_type,
654 get_identifier ("__class_type_info"),
655 /*tag_scope=*/ts_current, false);
656
657 tinfo_ptr = build_pointer_type
658 (build_qualified_type
659 (tinfo_ptr, TYPE_QUAL_CONST));
660 name = "__dynamic_cast";
661 tmp = tree_cons
662 (NULL_TREE, const_ptr_type_node, tree_cons
663 (NULL_TREE, tinfo_ptr, tree_cons
664 (NULL_TREE, tinfo_ptr, tree_cons
665 (NULL_TREE, ptrdiff_type_node, void_list_node))));
666 tmp = build_function_type (ptr_type_node, tmp);
667 dcast_fn = build_library_fn_ptr (name, tmp);
668 DECL_IS_PURE (dcast_fn) = 1;
669 pop_nested_namespace (ns);
670 dynamic_cast_node = dcast_fn;
671 }
672 result = build_cxx_call (dcast_fn, elems);
673
674 if (tc == REFERENCE_TYPE)
675 {
676 tree bad = throw_bad_cast ();
677
678 result = save_expr (result);
679 return build3 (COND_EXPR, type, result, result, bad);
680 }
681
682 /* Now back to the type we want from a void*. */
683 result = cp_convert (type, result);
684 return ifnonnull (expr, result);
685 }
686 }
687 else
688 errstr = "source type is not polymorphic";
689
690 fail:
691 error ("cannot dynamic_cast %qE (of type %q#T) to type %q#T (%s)",
692 expr, exprtype, type, errstr);
693 return error_mark_node;
694 }
695
696 tree
697 build_dynamic_cast (tree type, tree expr)
698 {
699 if (type == error_mark_node || expr == error_mark_node)
700 return error_mark_node;
701
702 /* Use of dynamic_cast when -fno-rtti is prohibited. */
703 if (!flag_rtti)
704 {
705 error ("%<dynamic_cast%> not permitted with -fno-rtti");
706 return error_mark_node;
707 }
708
709 if (processing_template_decl)
710 {
711 expr = build_min (DYNAMIC_CAST_EXPR, type, expr);
712 TREE_SIDE_EFFECTS (expr) = 1;
713
714 return expr;
715 }
716
717 return convert_from_reference (build_dynamic_cast_1 (type, expr));
718 }
719 \f
720 /* Return the runtime bit mask encoding the qualifiers of TYPE. */
721
722 static int
723 qualifier_flags (tree type)
724 {
725 int flags = 0;
726 int quals = cp_type_quals (type);
727
728 if (quals & TYPE_QUAL_CONST)
729 flags |= 1;
730 if (quals & TYPE_QUAL_VOLATILE)
731 flags |= 2;
732 if (quals & TYPE_QUAL_RESTRICT)
733 flags |= 4;
734 return flags;
735 }
736
737 /* Return true, if the pointer chain TYPE ends at an incomplete type, or
738 contains a pointer to member of an incomplete class. */
739
740 static bool
741 target_incomplete_p (tree type)
742 {
743 while (true)
744 if (TYPE_PTRMEM_P (type))
745 {
746 if (!COMPLETE_TYPE_P (TYPE_PTRMEM_CLASS_TYPE (type)))
747 return true;
748 type = TYPE_PTRMEM_POINTED_TO_TYPE (type);
749 }
750 else if (TREE_CODE (type) == POINTER_TYPE)
751 type = TREE_TYPE (type);
752 else
753 return !COMPLETE_OR_VOID_TYPE_P (type);
754 }
755
756 /* Returns true if TYPE involves an incomplete class type; in that
757 case, typeinfo variables for TYPE should be emitted with internal
758 linkage. */
759
760 static bool
761 involves_incomplete_p (tree type)
762 {
763 switch (TREE_CODE (type))
764 {
765 case POINTER_TYPE:
766 return target_incomplete_p (TREE_TYPE (type));
767
768 case OFFSET_TYPE:
769 ptrmem:
770 return
771 (target_incomplete_p (TYPE_PTRMEM_POINTED_TO_TYPE (type))
772 || !COMPLETE_TYPE_P (TYPE_PTRMEM_CLASS_TYPE (type)));
773
774 case RECORD_TYPE:
775 if (TYPE_PTRMEMFUNC_P (type))
776 goto ptrmem;
777 /* Fall through. */
778 case UNION_TYPE:
779 if (!COMPLETE_TYPE_P (type))
780 return true;
781
782 default:
783 /* All other types do not involve incomplete class types. */
784 return false;
785 }
786 }
787
788 /* Return a CONSTRUCTOR for the common part of the type_info objects. This
789 is the vtable pointer and NTBS name. The NTBS name is emitted as a
790 comdat const char array, so it becomes a unique key for the type. Generate
791 and emit that VAR_DECL here. (We can't always emit the type_info itself
792 as comdat, because of pointers to incomplete.) */
793
794 static tree
795 tinfo_base_init (tinfo_s *ti, tree target)
796 {
797 tree init = NULL_TREE;
798 tree name_decl;
799 tree vtable_ptr;
800
801 {
802 tree name_name;
803
804 /* Generate the NTBS array variable. */
805 tree name_type = build_cplus_array_type
806 (build_qualified_type (char_type_node, TYPE_QUAL_CONST),
807 NULL_TREE);
808 tree name_string = tinfo_name (target);
809
810 /* Determine the name of the variable -- and remember with which
811 type it is associated. */
812 name_name = mangle_typeinfo_string_for_type (target);
813 TREE_TYPE (name_name) = target;
814
815 name_decl = build_lang_decl (VAR_DECL, name_name, name_type);
816 SET_DECL_ASSEMBLER_NAME (name_decl, name_name);
817 DECL_ARTIFICIAL (name_decl) = 1;
818 DECL_IGNORED_P (name_decl) = 1;
819 TREE_READONLY (name_decl) = 1;
820 TREE_STATIC (name_decl) = 1;
821 DECL_EXTERNAL (name_decl) = 0;
822 DECL_TINFO_P (name_decl) = 1;
823 if (involves_incomplete_p (target))
824 {
825 TREE_PUBLIC (name_decl) = 0;
826 DECL_INTERFACE_KNOWN (name_decl) = 1;
827 }
828 else
829 set_linkage_according_to_type (target, name_decl);
830 import_export_decl (name_decl);
831 DECL_INITIAL (name_decl) = name_string;
832 mark_used (name_decl);
833 pushdecl_top_level_and_finish (name_decl, name_string);
834 }
835
836 vtable_ptr = ti->vtable;
837 if (!vtable_ptr)
838 {
839 tree real_type;
840 push_nested_namespace (abi_node);
841 real_type = xref_tag (class_type, ti->name,
842 /*tag_scope=*/ts_current, false);
843 pop_nested_namespace (abi_node);
844
845 if (!COMPLETE_TYPE_P (real_type))
846 {
847 /* We never saw a definition of this type, so we need to
848 tell the compiler that this is an exported class, as
849 indeed all of the __*_type_info classes are. */
850 SET_CLASSTYPE_INTERFACE_KNOWN (real_type);
851 CLASSTYPE_INTERFACE_ONLY (real_type) = 1;
852 }
853
854 vtable_ptr = get_vtable_decl (real_type, /*complete=*/1);
855 vtable_ptr = build_unary_op (ADDR_EXPR, vtable_ptr, 0);
856
857 /* We need to point into the middle of the vtable. */
858 vtable_ptr = build2
859 (PLUS_EXPR, TREE_TYPE (vtable_ptr), vtable_ptr,
860 size_binop (MULT_EXPR,
861 size_int (2 * TARGET_VTABLE_DATA_ENTRY_DISTANCE),
862 TYPE_SIZE_UNIT (vtable_entry_type)));
863
864 ti->vtable = vtable_ptr;
865 }
866
867 init = tree_cons (NULL_TREE, vtable_ptr, init);
868
869 init = tree_cons (NULL_TREE, decay_conversion (name_decl), init);
870
871 init = build_constructor_from_list (NULL_TREE, nreverse (init));
872 TREE_CONSTANT (init) = 1;
873 TREE_INVARIANT (init) = 1;
874 TREE_STATIC (init) = 1;
875 init = tree_cons (NULL_TREE, init, NULL_TREE);
876
877 return init;
878 }
879
880 /* Return the CONSTRUCTOR expr for a type_info of TYPE. TI provides the
881 information about the particular type_info derivation, which adds no
882 additional fields to the type_info base. */
883
884 static tree
885 generic_initializer (tinfo_s *ti, tree target)
886 {
887 tree init = tinfo_base_init (ti, target);
888
889 init = build_constructor_from_list (NULL_TREE, init);
890 TREE_CONSTANT (init) = 1;
891 TREE_INVARIANT (init) = 1;
892 TREE_STATIC (init) = 1;
893 return init;
894 }
895
896 /* Return the CONSTRUCTOR expr for a type_info of pointer TYPE.
897 TI provides information about the particular type_info derivation,
898 which adds target type and qualifier flags members to the type_info base. */
899
900 static tree
901 ptr_initializer (tinfo_s *ti, tree target)
902 {
903 tree init = tinfo_base_init (ti, target);
904 tree to = TREE_TYPE (target);
905 int flags = qualifier_flags (to);
906 bool incomplete = target_incomplete_p (to);
907
908 if (incomplete)
909 flags |= 8;
910 init = tree_cons (NULL_TREE, build_int_cst (NULL_TREE, flags), init);
911 init = tree_cons (NULL_TREE,
912 get_tinfo_ptr (TYPE_MAIN_VARIANT (to)),
913 init);
914
915 init = build_constructor_from_list (NULL_TREE, nreverse (init));
916 TREE_CONSTANT (init) = 1;
917 TREE_INVARIANT (init) = 1;
918 TREE_STATIC (init) = 1;
919 return init;
920 }
921
922 /* Return the CONSTRUCTOR expr for a type_info of pointer to member data TYPE.
923 TI provides information about the particular type_info derivation,
924 which adds class, target type and qualifier flags members to the type_info
925 base. */
926
927 static tree
928 ptm_initializer (tinfo_s *ti, tree target)
929 {
930 tree init = tinfo_base_init (ti, target);
931 tree to = TYPE_PTRMEM_POINTED_TO_TYPE (target);
932 tree klass = TYPE_PTRMEM_CLASS_TYPE (target);
933 int flags = qualifier_flags (to);
934 bool incomplete = target_incomplete_p (to);
935
936 if (incomplete)
937 flags |= 0x8;
938 if (!COMPLETE_TYPE_P (klass))
939 flags |= 0x10;
940 init = tree_cons (NULL_TREE, build_int_cst (NULL_TREE, flags), init);
941 init = tree_cons (NULL_TREE,
942 get_tinfo_ptr (TYPE_MAIN_VARIANT (to)),
943 init);
944 init = tree_cons (NULL_TREE,
945 get_tinfo_ptr (klass),
946 init);
947
948 init = build_constructor_from_list (NULL_TREE, nreverse (init));
949 TREE_CONSTANT (init) = 1;
950 TREE_INVARIANT (init) = 1;
951 TREE_STATIC (init) = 1;
952 return init;
953 }
954
955 /* Return the CONSTRUCTOR expr for a type_info of class TYPE.
956 TI provides information about the particular __class_type_info derivation,
957 which adds hint flags and TRAIL initializers to the type_info base. */
958
959 static tree
960 class_initializer (tinfo_s *ti, tree target, tree trail)
961 {
962 tree init = tinfo_base_init (ti, target);
963
964 TREE_CHAIN (init) = trail;
965 init = build_constructor_from_list (NULL_TREE, init);
966 TREE_CONSTANT (init) = 1;
967 TREE_INVARIANT (init) = 1;
968 TREE_STATIC (init) = 1;
969 return init;
970 }
971
972 /* Returns true if the typeinfo for type should be placed in
973 the runtime library. */
974
975 static bool
976 typeinfo_in_lib_p (tree type)
977 {
978 /* The typeinfo objects for `T*' and `const T*' are in the runtime
979 library for simple types T. */
980 if (TREE_CODE (type) == POINTER_TYPE
981 && (cp_type_quals (TREE_TYPE (type)) == TYPE_QUAL_CONST
982 || cp_type_quals (TREE_TYPE (type)) == TYPE_UNQUALIFIED))
983 type = TREE_TYPE (type);
984
985 switch (TREE_CODE (type))
986 {
987 case INTEGER_TYPE:
988 case BOOLEAN_TYPE:
989 case REAL_TYPE:
990 case VOID_TYPE:
991 return true;
992
993 default:
994 return false;
995 }
996 }
997
998 /* Generate the initializer for the type info describing TYPE. TK_INDEX is
999 the index of the descriptor in the tinfo_desc vector. */
1000
1001 static tree
1002 get_pseudo_ti_init (tree type, unsigned tk_index)
1003 {
1004 tinfo_s *ti = VEC_index (tinfo_s, tinfo_descs, tk_index);
1005
1006 gcc_assert (at_eof);
1007 switch (tk_index)
1008 {
1009 case TK_POINTER_MEMBER_TYPE:
1010 return ptm_initializer (ti, type);
1011
1012 case TK_POINTER_TYPE:
1013 return ptr_initializer (ti, type);
1014
1015 case TK_BUILTIN_TYPE:
1016 case TK_ENUMERAL_TYPE:
1017 case TK_FUNCTION_TYPE:
1018 case TK_ARRAY_TYPE:
1019 return generic_initializer (ti, type);
1020
1021 case TK_CLASS_TYPE:
1022 return class_initializer (ti, type, NULL_TREE);
1023
1024 case TK_SI_CLASS_TYPE:
1025 {
1026 tree base_binfo = BINFO_BASE_BINFO (TYPE_BINFO (type), 0);
1027 tree tinfo = get_tinfo_ptr (BINFO_TYPE (base_binfo));
1028 tree base_inits = tree_cons (NULL_TREE, tinfo, NULL_TREE);
1029
1030 /* get_tinfo_ptr might have reallocated the tinfo_descs vector. */
1031 ti = VEC_index (tinfo_s, tinfo_descs, tk_index);
1032 return class_initializer (ti, type, base_inits);
1033 }
1034
1035 default:
1036 {
1037 int hint = ((CLASSTYPE_REPEATED_BASE_P (type) << 0)
1038 | (CLASSTYPE_DIAMOND_SHAPED_P (type) << 1));
1039 tree binfo = TYPE_BINFO (type);
1040 int nbases = BINFO_N_BASE_BINFOS (binfo);
1041 VEC(tree,gc) *base_accesses = BINFO_BASE_ACCESSES (binfo);
1042 tree base_inits = NULL_TREE;
1043 int ix;
1044
1045 gcc_assert (tk_index >= TK_FIXED);
1046
1047 /* Generate the base information initializer. */
1048 for (ix = nbases; ix--;)
1049 {
1050 tree base_binfo = BINFO_BASE_BINFO (binfo, ix);
1051 tree base_init = NULL_TREE;
1052 int flags = 0;
1053 tree tinfo;
1054 tree offset;
1055
1056 if (VEC_index (tree, base_accesses, ix) == access_public_node)
1057 flags |= 2;
1058 tinfo = get_tinfo_ptr (BINFO_TYPE (base_binfo));
1059 if (BINFO_VIRTUAL_P (base_binfo))
1060 {
1061 /* We store the vtable offset at which the virtual
1062 base offset can be found. */
1063 offset = BINFO_VPTR_FIELD (base_binfo);
1064 offset = convert (sizetype, offset);
1065 flags |= 1;
1066 }
1067 else
1068 offset = BINFO_OFFSET (base_binfo);
1069
1070 /* Combine offset and flags into one field. */
1071 offset = cp_build_binary_op (LSHIFT_EXPR, offset,
1072 build_int_cst (NULL_TREE, 8));
1073 offset = cp_build_binary_op (BIT_IOR_EXPR, offset,
1074 build_int_cst (NULL_TREE, flags));
1075 base_init = tree_cons (NULL_TREE, offset, base_init);
1076 base_init = tree_cons (NULL_TREE, tinfo, base_init);
1077 base_init = build_constructor_from_list (NULL_TREE, base_init);
1078 base_inits = tree_cons (NULL_TREE, base_init, base_inits);
1079 }
1080 base_inits = build_constructor_from_list (NULL_TREE, base_inits);
1081 base_inits = tree_cons (NULL_TREE, base_inits, NULL_TREE);
1082 /* Prepend the number of bases. */
1083 base_inits = tree_cons (NULL_TREE,
1084 build_int_cst (NULL_TREE, nbases),
1085 base_inits);
1086 /* Prepend the hint flags. */
1087 base_inits = tree_cons (NULL_TREE,
1088 build_int_cst (NULL_TREE, hint),
1089 base_inits);
1090
1091 /* get_tinfo_ptr might have reallocated the tinfo_descs vector. */
1092 ti = VEC_index (tinfo_s, tinfo_descs, tk_index);
1093 return class_initializer (ti, type, base_inits);
1094 }
1095 }
1096 }
1097
1098 /* Generate the RECORD_TYPE containing the data layout of a type_info
1099 derivative as used by the runtime. This layout must be consistent with
1100 that defined in the runtime support. Also generate the VAR_DECL for the
1101 type's vtable. We explicitly manage the vtable member, and name it for
1102 real type as used in the runtime. The RECORD type has a different name,
1103 to avoid collisions. Return a TREE_LIST who's TINFO_PSEUDO_TYPE
1104 is the generated type and TINFO_VTABLE_NAME is the name of the
1105 vtable. We have to delay generating the VAR_DECL of the vtable
1106 until the end of the translation, when we'll have seen the library
1107 definition, if there was one.
1108
1109 REAL_NAME is the runtime's name of the type. Trailing arguments are
1110 additional FIELD_DECL's for the structure. The final argument must be
1111 NULL. */
1112
1113 static void
1114 create_pseudo_type_info (int tk, const char *real_name, ...)
1115 {
1116 tinfo_s *ti;
1117 tree pseudo_type;
1118 char *pseudo_name;
1119 tree fields;
1120 tree field_decl;
1121 va_list ap;
1122
1123 va_start (ap, real_name);
1124
1125 /* Generate the pseudo type name. */
1126 pseudo_name = (char *) alloca (strlen (real_name) + 30);
1127 strcpy (pseudo_name, real_name);
1128 strcat (pseudo_name, "_pseudo");
1129 if (tk >= TK_FIXED)
1130 sprintf (pseudo_name + strlen (pseudo_name), "%d", tk - TK_FIXED);
1131
1132 /* First field is the pseudo type_info base class. */
1133 fields = build_decl (FIELD_DECL, NULL_TREE,
1134 VEC_index (tinfo_s, tinfo_descs,
1135 TK_TYPE_INFO_TYPE)->type);
1136
1137 /* Now add the derived fields. */
1138 while ((field_decl = va_arg (ap, tree)))
1139 {
1140 TREE_CHAIN (field_decl) = fields;
1141 fields = field_decl;
1142 }
1143
1144 /* Create the pseudo type. */
1145 pseudo_type = make_aggr_type (RECORD_TYPE);
1146 finish_builtin_struct (pseudo_type, pseudo_name, fields, NULL_TREE);
1147 CLASSTYPE_AS_BASE (pseudo_type) = pseudo_type;
1148
1149 ti = VEC_index (tinfo_s, tinfo_descs, tk);
1150 ti->type = cp_build_qualified_type (pseudo_type, TYPE_QUAL_CONST);
1151 ti->name = get_identifier (real_name);
1152 ti->vtable = NULL_TREE;
1153
1154 va_end (ap);
1155 }
1156
1157 /* Return the index of a pseudo type info type node used to describe
1158 TYPE. TYPE must be a complete type (or cv void), except at the end
1159 of the translation unit. */
1160
1161 static unsigned
1162 get_pseudo_ti_index (tree type)
1163 {
1164 unsigned ix;
1165
1166 switch (TREE_CODE (type))
1167 {
1168 case OFFSET_TYPE:
1169 ix = TK_POINTER_MEMBER_TYPE;
1170 break;
1171
1172 case POINTER_TYPE:
1173 ix = TK_POINTER_TYPE;
1174 break;
1175
1176 case ENUMERAL_TYPE:
1177 ix = TK_ENUMERAL_TYPE;
1178 break;
1179
1180 case FUNCTION_TYPE:
1181 ix = TK_FUNCTION_TYPE;
1182 break;
1183
1184 case ARRAY_TYPE:
1185 ix = TK_ARRAY_TYPE;
1186 break;
1187
1188 case UNION_TYPE:
1189 case RECORD_TYPE:
1190 if (TYPE_PTRMEMFUNC_P (type))
1191 {
1192 ix = TK_POINTER_MEMBER_TYPE;
1193 break;
1194 }
1195 else if (!COMPLETE_TYPE_P (type))
1196 {
1197 if (!at_eof)
1198 cxx_incomplete_type_error (NULL_TREE, type);
1199 ix = TK_CLASS_TYPE;
1200 break;
1201 }
1202 else if (!BINFO_N_BASE_BINFOS (TYPE_BINFO (type)))
1203 {
1204 ix = TK_CLASS_TYPE;
1205 break;
1206 }
1207 else
1208 {
1209 tree binfo = TYPE_BINFO (type);
1210 VEC(tree,gc) *base_accesses = BINFO_BASE_ACCESSES (binfo);
1211 tree base_binfo = BINFO_BASE_BINFO (binfo, 0);
1212 int num_bases = BINFO_N_BASE_BINFOS (binfo);
1213
1214 if (num_bases == 1
1215 && VEC_index (tree, base_accesses, 0) == access_public_node
1216 && !BINFO_VIRTUAL_P (base_binfo)
1217 && integer_zerop (BINFO_OFFSET (base_binfo)))
1218 {
1219 /* single non-virtual public. */
1220 ix = TK_SI_CLASS_TYPE;
1221 break;
1222 }
1223 else
1224 {
1225 tinfo_s *ti;
1226 tree array_domain, base_array;
1227
1228 ix = TK_FIXED + num_bases;
1229 if (VEC_length (tinfo_s, tinfo_descs) <= ix)
1230 {
1231 /* too short, extend. */
1232 unsigned len = VEC_length (tinfo_s, tinfo_descs);
1233
1234 VEC_safe_grow (tinfo_s, gc, tinfo_descs, ix + 1);
1235 while (VEC_iterate (tinfo_s, tinfo_descs, len++, ti))
1236 ti->type = ti->vtable = ti->name = NULL_TREE;
1237 }
1238 else if (VEC_index (tinfo_s, tinfo_descs, ix)->type)
1239 /* already created. */
1240 break;
1241
1242 /* Create the array of __base_class_type_info entries.
1243 G++ 3.2 allocated an array that had one too many
1244 entries, and then filled that extra entries with
1245 zeros. */
1246 if (abi_version_at_least (2))
1247 array_domain = build_index_type (size_int (num_bases - 1));
1248 else
1249 array_domain = build_index_type (size_int (num_bases));
1250 base_array =
1251 build_array_type (VEC_index (tinfo_s, tinfo_descs,
1252 TK_BASE_TYPE)->type,
1253 array_domain);
1254
1255 push_nested_namespace (abi_node);
1256 create_pseudo_type_info
1257 (ix, "__vmi_class_type_info",
1258 build_decl (FIELD_DECL, NULL_TREE, integer_type_node),
1259 build_decl (FIELD_DECL, NULL_TREE, integer_type_node),
1260 build_decl (FIELD_DECL, NULL_TREE, base_array),
1261 NULL);
1262 pop_nested_namespace (abi_node);
1263 break;
1264 }
1265 }
1266 default:
1267 ix = TK_BUILTIN_TYPE;
1268 break;
1269 }
1270 return ix;
1271 }
1272
1273 /* Make sure the required builtin types exist for generating the type_info
1274 variable definitions. */
1275
1276 static void
1277 create_tinfo_types (void)
1278 {
1279 tinfo_s *ti;
1280
1281 gcc_assert (!tinfo_descs);
1282
1283 VEC_safe_grow (tinfo_s, gc, tinfo_descs, TK_FIXED);
1284
1285 push_nested_namespace (abi_node);
1286
1287 /* Create the internal type_info structure. This is used as a base for
1288 the other structures. */
1289 {
1290 tree field, fields;
1291
1292 field = build_decl (FIELD_DECL, NULL_TREE, const_ptr_type_node);
1293 fields = field;
1294
1295 field = build_decl (FIELD_DECL, NULL_TREE, const_string_type_node);
1296 TREE_CHAIN (field) = fields;
1297 fields = field;
1298
1299 ti = VEC_index (tinfo_s, tinfo_descs, TK_TYPE_INFO_TYPE);
1300 ti->type = make_aggr_type (RECORD_TYPE);
1301 ti->vtable = NULL_TREE;
1302 ti->name = NULL_TREE;
1303 finish_builtin_struct (ti->type, "__type_info_pseudo",
1304 fields, NULL_TREE);
1305 TYPE_HAS_CONSTRUCTOR (ti->type) = 1;
1306 }
1307
1308 /* Fundamental type_info */
1309 create_pseudo_type_info (TK_BUILTIN_TYPE, "__fundamental_type_info", NULL);
1310
1311 /* Array, function and enum type_info. No additional fields. */
1312 create_pseudo_type_info (TK_ARRAY_TYPE, "__array_type_info", NULL);
1313 create_pseudo_type_info (TK_FUNCTION_TYPE, "__function_type_info", NULL);
1314 create_pseudo_type_info (TK_ENUMERAL_TYPE, "__enum_type_info", NULL);
1315
1316 /* Class type_info. No additional fields. */
1317 create_pseudo_type_info (TK_CLASS_TYPE, "__class_type_info", NULL);
1318
1319 /* Single public non-virtual base class. Add pointer to base class.
1320 This is really a descendant of __class_type_info. */
1321 create_pseudo_type_info (TK_SI_CLASS_TYPE, "__si_class_type_info",
1322 build_decl (FIELD_DECL, NULL_TREE, type_info_ptr_type),
1323 NULL);
1324
1325 /* Base class internal helper. Pointer to base type, offset to base,
1326 flags. */
1327 {
1328 tree field, fields;
1329
1330 field = build_decl (FIELD_DECL, NULL_TREE, type_info_ptr_type);
1331 fields = field;
1332
1333 field = build_decl (FIELD_DECL, NULL_TREE, integer_types[itk_long]);
1334 TREE_CHAIN (field) = fields;
1335 fields = field;
1336
1337 ti = VEC_index (tinfo_s, tinfo_descs, TK_BASE_TYPE);
1338
1339 ti->type = make_aggr_type (RECORD_TYPE);
1340 ti->vtable = NULL_TREE;
1341 ti->name = NULL_TREE;
1342 finish_builtin_struct (ti->type, "__base_class_type_info_pseudo",
1343 fields, NULL_TREE);
1344 TYPE_HAS_CONSTRUCTOR (ti->type) = 1;
1345 }
1346
1347 /* Pointer type_info. Adds two fields, qualification mask
1348 and pointer to the pointed to type. This is really a descendant of
1349 __pbase_type_info. */
1350 create_pseudo_type_info (TK_POINTER_TYPE, "__pointer_type_info",
1351 build_decl (FIELD_DECL, NULL_TREE, integer_type_node),
1352 build_decl (FIELD_DECL, NULL_TREE, type_info_ptr_type),
1353 NULL);
1354
1355 /* Pointer to member data type_info. Add qualifications flags,
1356 pointer to the member's type info and pointer to the class.
1357 This is really a descendant of __pbase_type_info. */
1358 create_pseudo_type_info (TK_POINTER_MEMBER_TYPE,
1359 "__pointer_to_member_type_info",
1360 build_decl (FIELD_DECL, NULL_TREE, integer_type_node),
1361 build_decl (FIELD_DECL, NULL_TREE, type_info_ptr_type),
1362 build_decl (FIELD_DECL, NULL_TREE, type_info_ptr_type),
1363 NULL);
1364
1365 pop_nested_namespace (abi_node);
1366 }
1367
1368 /* Emit the type_info descriptors which are guaranteed to be in the runtime
1369 support. Generating them here guarantees consistency with the other
1370 structures. We use the following heuristic to determine when the runtime
1371 is being generated. If std::__fundamental_type_info is defined, and its
1372 destructor is defined, then the runtime is being built. */
1373
1374 void
1375 emit_support_tinfos (void)
1376 {
1377 static tree *const fundamentals[] =
1378 {
1379 &void_type_node,
1380 &boolean_type_node,
1381 &wchar_type_node,
1382 &char_type_node, &signed_char_type_node, &unsigned_char_type_node,
1383 &short_integer_type_node, &short_unsigned_type_node,
1384 &integer_type_node, &unsigned_type_node,
1385 &long_integer_type_node, &long_unsigned_type_node,
1386 &long_long_integer_type_node, &long_long_unsigned_type_node,
1387 &float_type_node, &double_type_node, &long_double_type_node,
1388 0
1389 };
1390 int ix;
1391 tree bltn_type, dtor;
1392
1393 push_nested_namespace (abi_node);
1394 bltn_type = xref_tag (class_type,
1395 get_identifier ("__fundamental_type_info"),
1396 /*tag_scope=*/ts_current, false);
1397 pop_nested_namespace (abi_node);
1398 if (!COMPLETE_TYPE_P (bltn_type))
1399 return;
1400 dtor = CLASSTYPE_DESTRUCTORS (bltn_type);
1401 if (!dtor || DECL_EXTERNAL (dtor))
1402 return;
1403 doing_runtime = 1;
1404 for (ix = 0; fundamentals[ix]; ix++)
1405 {
1406 tree bltn = *fundamentals[ix];
1407 tree types[3];
1408 int i;
1409
1410 types[0] = bltn;
1411 types[1] = build_pointer_type (bltn);
1412 types[2] = build_pointer_type (build_qualified_type (bltn,
1413 TYPE_QUAL_CONST));
1414
1415 for (i = 0; i < 3; ++i)
1416 {
1417 tree tinfo;
1418
1419 tinfo = get_tinfo_decl (types[i]);
1420 TREE_USED (tinfo) = 1;
1421 mark_needed (tinfo);
1422 /* The C++ ABI requires that these objects be COMDAT. But,
1423 On systems without weak symbols, initialized COMDAT
1424 objects are emitted with internal linkage. (See
1425 comdat_linkage for details.) Since we want these objects
1426 to have external linkage so that copies do not have to be
1427 emitted in code outside the runtime library, we make them
1428 non-COMDAT here. */
1429 if (!flag_weak)
1430 {
1431 gcc_assert (TREE_PUBLIC (tinfo) && !DECL_COMDAT (tinfo));
1432 DECL_INTERFACE_KNOWN (tinfo) = 1;
1433 }
1434 }
1435 }
1436 }
1437
1438 /* Finish a type info decl. DECL_PTR is a pointer to an unemitted
1439 tinfo decl. Determine whether it needs emitting, and if so
1440 generate the initializer. */
1441
1442 bool
1443 emit_tinfo_decl (tree decl)
1444 {
1445 tree type = TREE_TYPE (DECL_NAME (decl));
1446 int in_library = typeinfo_in_lib_p (type);
1447
1448 gcc_assert (DECL_TINFO_P (decl));
1449
1450 if (in_library)
1451 {
1452 if (doing_runtime)
1453 DECL_EXTERNAL (decl) = 0;
1454 else
1455 {
1456 /* If we're not in the runtime, then DECL (which is already
1457 DECL_EXTERNAL) will not be defined here. */
1458 DECL_INTERFACE_KNOWN (decl) = 1;
1459 return false;
1460 }
1461 }
1462 else if (involves_incomplete_p (type))
1463 {
1464 if (!decl_needed_p (decl))
1465 return false;
1466 /* If TYPE involves an incomplete class type, then the typeinfo
1467 object will be emitted with internal linkage. There is no
1468 way to know whether or not types are incomplete until the end
1469 of the compilation, so this determination must be deferred
1470 until this point. */
1471 TREE_PUBLIC (decl) = 0;
1472 DECL_EXTERNAL (decl) = 0;
1473 DECL_INTERFACE_KNOWN (decl) = 1;
1474 }
1475
1476 import_export_decl (decl);
1477 if (DECL_NOT_REALLY_EXTERN (decl) && decl_needed_p (decl))
1478 {
1479 tree init;
1480
1481 DECL_EXTERNAL (decl) = 0;
1482 init = get_pseudo_ti_init (type, get_pseudo_ti_index (type));
1483 DECL_INITIAL (decl) = init;
1484 mark_used (decl);
1485 cp_finish_decl (decl, init, NULL_TREE, 0);
1486 return true;
1487 }
1488 else
1489 return false;
1490 }
1491
1492 #include "gt-cp-rtti.h"