Makefile.in (parse.o, decl.o): Also depend on $(srcdir)/../except.h $(srcdir)/.....
[gcc.git] / gcc / cp / call.c
1 /* Functions related to invoking methods and overloaded functions.
2 Copyright (C) 1987, 92, 93, 94, 95, 96, 1997 Free Software Foundation, Inc.
3 Contributed by Michael Tiemann (tiemann@cygnus.com) and
4 hacked by Brendan Kehoe (brendan@cygnus.com).
5
6 This file is part of GNU CC.
7
8 GNU CC 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 GNU CC 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 GNU CC; 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
24 /* High-level class interface. */
25
26 #include "config.h"
27 #include "tree.h"
28 #include <stdio.h>
29 #include "cp-tree.h"
30 #include "class.h"
31 #include "output.h"
32 #include "flags.h"
33
34 #ifdef HAVE_STDLIB_H
35 #include <stdlib.h>
36 #endif
37
38 #include "obstack.h"
39 #define obstack_chunk_alloc xmalloc
40 #define obstack_chunk_free free
41
42 extern int inhibit_warnings;
43 extern tree ctor_label, dtor_label;
44
45 /* Compute the ease with which a conversion can be performed
46 between an expected and the given type. */
47
48 static struct harshness_code convert_harshness PROTO((register tree, register tree, tree));
49 static tree build_new_method_call PROTO((tree, tree, tree, tree, int));
50
51 static int rank_for_ideal PROTO((struct candidate *,
52 struct candidate *));
53 static int user_harshness PROTO((tree, tree));
54 static int strictly_better PROTO((unsigned int, unsigned int));
55 static struct candidate * ideal_candidate PROTO((struct candidate *,
56 int, int));
57 static int may_be_remote PROTO((tree));
58 static tree build_field_call PROTO((tree, tree, tree, tree));
59 static tree find_scoped_type PROTO((tree, tree, tree));
60 static void print_candidates PROTO((tree));
61 static struct z_candidate * tourney PROTO((struct z_candidate *));
62 static int joust PROTO((struct z_candidate *, struct z_candidate *));
63 static int compare_qual PROTO((tree, tree));
64 static int compare_ics PROTO((tree, tree));
65 static tree build_over_call PROTO((tree, tree, tree, int));
66 static tree convert_default_arg PROTO((tree, tree));
67 static void enforce_access PROTO((tree, tree));
68 static tree convert_like PROTO((tree, tree));
69 static void op_error PROTO((enum tree_code, enum tree_code, tree, tree,
70 tree, char *));
71 static tree build_object_call PROTO((tree, tree));
72 static tree resolve_args PROTO((tree));
73 static struct z_candidate * build_user_type_conversion_1
74 PROTO ((tree, tree, int));
75 static void print_z_candidates PROTO((struct z_candidate *));
76 static tree build_this PROTO((tree));
77 static struct z_candidate * splice_viable PROTO((struct z_candidate *));
78 static int any_viable PROTO((struct z_candidate *));
79 static struct z_candidate * add_template_candidate
80 PROTO((struct z_candidate *, tree, tree, tree, tree, int));
81 static struct z_candidate * add_template_conv_candidate
82 PROTO((struct z_candidate *, tree, tree, tree, tree));
83 static struct z_candidate * add_builtin_candidates
84 PROTO((struct z_candidate *, enum tree_code, enum tree_code,
85 tree, tree *, int));
86 static struct z_candidate * add_builtin_candidate
87 PROTO((struct z_candidate *, enum tree_code, enum tree_code,
88 tree, tree, tree, tree *, tree *, int));
89 static int is_complete PROTO((tree));
90 static struct z_candidate * build_builtin_candidate
91 PROTO((struct z_candidate *, tree, tree, tree, tree *, tree *,
92 int));
93 static struct z_candidate * add_conv_candidate
94 PROTO((struct z_candidate *, tree, tree, tree));
95 static struct z_candidate * add_function_candidate
96 PROTO((struct z_candidate *, tree, tree, int));
97 static tree implicit_conversion PROTO((tree, tree, tree, int));
98 static tree standard_conversion PROTO((tree, tree, tree));
99 static tree reference_binding PROTO((tree, tree, tree, int));
100 static tree strip_top_quals PROTO((tree));
101 static tree non_reference PROTO((tree));
102 static tree build_conv PROTO((enum tree_code, tree, tree));
103 static void print_n_candidates PROTO((struct candidate *, int));
104 static tree default_parm_conversions PROTO((tree, tree *));
105 static int is_subseq PROTO((tree, tree));
106
107 #define EVIL_RETURN(ARG) ((ARG).code = EVIL_CODE, (ARG))
108 #define STD_RETURN(ARG) ((ARG).code = STD_CODE, (ARG))
109 #define QUAL_RETURN(ARG) ((ARG).code = QUAL_CODE, (ARG))
110 #define TRIVIAL_RETURN(ARG) ((ARG).code = TRIVIAL_CODE, (ARG))
111 #define ZERO_RETURN(ARG) ((ARG).code = 0, (ARG))
112
113 /* Ordering function for overload resolution. Compare two candidates
114 by gross quality. */
115
116 int
117 rank_for_overload (x, y)
118 struct candidate *x, *y;
119 {
120 if (y->h.code & (EVIL_CODE|ELLIPSIS_CODE|USER_CODE))
121 return y->h.code - x->h.code;
122 if (x->h.code & (EVIL_CODE|ELLIPSIS_CODE|USER_CODE))
123 return -1;
124
125 /* This is set by compute_conversion_costs, for calling a non-const
126 member function from a const member function. */
127 if ((y->harshness[0].code & CONST_CODE) ^ (x->harshness[0].code & CONST_CODE))
128 return y->harshness[0].code - x->harshness[0].code;
129
130 if (y->h.code & STD_CODE)
131 {
132 if (x->h.code & STD_CODE)
133 return y->h.distance - x->h.distance;
134 return 1;
135 }
136 if (x->h.code & STD_CODE)
137 return -1;
138
139 return y->h.code - x->h.code;
140 }
141
142 /* Compare two candidates, argument by argument. */
143
144 static int
145 rank_for_ideal (x, y)
146 struct candidate *x, *y;
147 {
148 int i;
149
150 if (x->h_len != y->h_len)
151 abort ();
152
153 for (i = 0; i < x->h_len; i++)
154 {
155 if (y->harshness[i].code - x->harshness[i].code)
156 return y->harshness[i].code - x->harshness[i].code;
157 if ((y->harshness[i].code & STD_CODE)
158 && (y->harshness[i].distance - x->harshness[i].distance))
159 return y->harshness[i].distance - x->harshness[i].distance;
160
161 /* They're both the same code. Now see if we're dealing with an
162 integral promotion that needs a finer grain of accuracy. */
163 if (y->harshness[0].code & PROMO_CODE
164 && (y->harshness[i].int_penalty ^ x->harshness[i].int_penalty))
165 return y->harshness[i].int_penalty - x->harshness[i].int_penalty;
166 }
167 return 0;
168 }
169
170 /* TYPE is the type we wish to convert to. PARM is the parameter
171 we have to work with. We use a somewhat arbitrary cost function
172 to measure this conversion. */
173
174 static struct harshness_code
175 convert_harshness (type, parmtype, parm)
176 register tree type, parmtype;
177 tree parm;
178 {
179 struct harshness_code h;
180 register enum tree_code codel;
181 register enum tree_code coder;
182 int lvalue;
183
184 h.code = 0;
185 h.distance = 0;
186 h.int_penalty = 0;
187
188 #ifdef GATHER_STATISTICS
189 n_convert_harshness++;
190 #endif
191
192 if (TREE_CODE (parmtype) == REFERENCE_TYPE)
193 {
194 if (parm)
195 parm = convert_from_reference (parm);
196 parmtype = TREE_TYPE (parmtype);
197 lvalue = 1;
198 }
199 else if (parm)
200 lvalue = lvalue_p (parm);
201 else
202 lvalue = 0;
203
204 if (TYPE_PTRMEMFUNC_P (type))
205 type = TYPE_PTRMEMFUNC_FN_TYPE (type);
206 if (TYPE_PTRMEMFUNC_P (parmtype))
207 parmtype = TYPE_PTRMEMFUNC_FN_TYPE (parmtype);
208
209 codel = TREE_CODE (type);
210 coder = TREE_CODE (parmtype);
211
212 if (TYPE_MAIN_VARIANT (parmtype) == TYPE_MAIN_VARIANT (type))
213 return ZERO_RETURN (h);
214
215 if (coder == ERROR_MARK)
216 return EVIL_RETURN (h);
217
218 if (codel == REFERENCE_TYPE)
219 {
220 tree ttl, ttr;
221 int constp = parm ? TREE_READONLY (parm) : TYPE_READONLY (parmtype);
222 int volatilep = (parm ? TREE_THIS_VOLATILE (parm)
223 : TYPE_VOLATILE (parmtype));
224 register tree intype = TYPE_MAIN_VARIANT (parmtype);
225 register enum tree_code form = TREE_CODE (intype);
226 int penalty = 0;
227
228 ttl = TREE_TYPE (type);
229
230 /* Only allow const reference binding if we were given a parm to deal
231 with, since it isn't really a conversion. This is a hack to
232 prevent build_type_conversion from finding this conversion, but
233 still allow overloading to find it. */
234 if (! lvalue && ! (parm && TYPE_READONLY (ttl)))
235 return EVIL_RETURN (h);
236
237 if ((TYPE_READONLY (ttl) < constp)
238 || (TYPE_VOLATILE (ttl) < volatilep))
239 return EVIL_RETURN (h);
240
241 /* When passing a non-const argument into a const reference, dig it a
242 little, so a non-const reference is preferred over this one. */
243 penalty = ((TYPE_READONLY (ttl) > constp)
244 + (TYPE_VOLATILE (ttl) > volatilep));
245
246 ttl = TYPE_MAIN_VARIANT (ttl);
247
248 if (form == OFFSET_TYPE)
249 {
250 intype = TREE_TYPE (intype);
251 form = TREE_CODE (intype);
252 }
253
254 ttr = intype;
255
256 if (TREE_CODE (ttl) == ARRAY_TYPE && TREE_CODE (ttr) == ARRAY_TYPE)
257 {
258 if (comptypes (ttl, ttr, 1))
259 return ZERO_RETURN (h);
260 return EVIL_RETURN (h);
261 }
262
263 h = convert_harshness (ttl, ttr, NULL_TREE);
264 if (penalty && h.code == 0)
265 {
266 h.code = QUAL_CODE;
267 h.int_penalty = penalty;
268 }
269 return h;
270 }
271
272 if (codel == POINTER_TYPE && fntype_p (parmtype))
273 {
274 tree p1, p2;
275 struct harshness_code h1, h2;
276
277 /* Get to the METHOD_TYPE or FUNCTION_TYPE that this might be. */
278 type = TREE_TYPE (type);
279
280 if (coder == POINTER_TYPE)
281 {
282 parmtype = TREE_TYPE (parmtype);
283 coder = TREE_CODE (parmtype);
284 }
285
286 if (coder != TREE_CODE (type))
287 return EVIL_RETURN (h);
288
289 if (type != parmtype && coder == METHOD_TYPE)
290 {
291 tree ttl = TYPE_METHOD_BASETYPE (type);
292 tree ttr = TYPE_METHOD_BASETYPE (parmtype);
293
294 int b_or_d = get_base_distance (ttr, ttl, 0, (tree*)0);
295 if (b_or_d < 0)
296 {
297 b_or_d = get_base_distance (ttl, ttr, 0, (tree*)0);
298 if (b_or_d < 0)
299 return EVIL_RETURN (h);
300 h.distance = -b_or_d;
301 }
302 else
303 h.distance = b_or_d;
304 h.code = STD_CODE;
305
306 type = build_function_type
307 (TREE_TYPE (type), TREE_CHAIN (TYPE_ARG_TYPES (type)));
308 parmtype = build_function_type
309 (TREE_TYPE (parmtype), TREE_CHAIN (TYPE_ARG_TYPES (parmtype)));
310 }
311
312 /* We allow the default conversion between function type
313 and pointer-to-function type for free. */
314 if (comptypes (type, parmtype, 1))
315 return h;
316
317 if (pedantic)
318 return EVIL_RETURN (h);
319
320 /* Compare return types. */
321 p1 = TREE_TYPE (type);
322 p2 = TREE_TYPE (parmtype);
323 h2 = convert_harshness (p1, p2, NULL_TREE);
324 if (h2.code & EVIL_CODE)
325 return h2;
326
327 h1.code = TRIVIAL_CODE;
328 h1.distance = 0;
329
330 if (h2.distance != 0)
331 {
332 tree binfo;
333
334 /* This only works for pointers. */
335 if (TREE_CODE (p1) != POINTER_TYPE
336 && TREE_CODE (p1) != REFERENCE_TYPE)
337 return EVIL_RETURN (h);
338
339 p1 = TREE_TYPE (p1);
340 p2 = TREE_TYPE (p2);
341 /* Don't die if we happen to be dealing with void*. */
342 if (!IS_AGGR_TYPE (p1) || !IS_AGGR_TYPE (p2))
343 return EVIL_RETURN (h);
344 if (h2.distance < 0)
345 binfo = get_binfo (p2, p1, 0);
346 else
347 binfo = get_binfo (p1, p2, 0);
348
349 if (! BINFO_OFFSET_ZEROP (binfo))
350 {
351 #if 0
352 static int explained = 0;
353 if (h2.distance < 0)
354 message_2_types (sorry, "cannot cast `%s' to `%s' at function call site", p2, p1);
355 else
356 message_2_types (sorry, "cannot cast `%s' to `%s' at function call site", p1, p2);
357
358 if (! explained++)
359 sorry ("(because pointer values change during conversion)");
360 #endif
361 return EVIL_RETURN (h);
362 }
363 }
364
365 h1.code |= h2.code;
366 if (h2.distance > h1.distance)
367 h1.distance = h2.distance;
368
369 p1 = TYPE_ARG_TYPES (type);
370 p2 = TYPE_ARG_TYPES (parmtype);
371 while (p1 && TREE_VALUE (p1) != void_type_node
372 && p2 && TREE_VALUE (p2) != void_type_node)
373 {
374 h2 = convert_harshness (TREE_VALUE (p1), TREE_VALUE (p2),
375 NULL_TREE);
376 if (h2.code & EVIL_CODE)
377 return h2;
378
379 if (h2.distance)
380 {
381 /* This only works for pointers and references. */
382 if (TREE_CODE (TREE_VALUE (p1)) != POINTER_TYPE
383 && TREE_CODE (TREE_VALUE (p1)) != REFERENCE_TYPE)
384 return EVIL_RETURN (h);
385 h2.distance = - h2.distance;
386 }
387
388 h1.code |= h2.code;
389 if (h2.distance > h1.distance)
390 h1.distance = h2.distance;
391 p1 = TREE_CHAIN (p1);
392 p2 = TREE_CHAIN (p2);
393 }
394 if (p1 == p2)
395 return h1;
396 if (p2)
397 {
398 if (p1)
399 return EVIL_RETURN (h);
400 h1.code |= ELLIPSIS_CODE;
401 return h1;
402 }
403 if (p1)
404 {
405 if (TREE_PURPOSE (p1) == NULL_TREE)
406 h1.code |= EVIL_CODE;
407 return h1;
408 }
409 }
410 else if (codel == POINTER_TYPE && coder == OFFSET_TYPE)
411 {
412 tree ttl, ttr;
413
414 /* Get to the OFFSET_TYPE that this might be. */
415 type = TREE_TYPE (type);
416
417 if (coder != TREE_CODE (type))
418 return EVIL_RETURN (h);
419
420 ttl = TYPE_OFFSET_BASETYPE (type);
421 ttr = TYPE_OFFSET_BASETYPE (parmtype);
422
423 if (ttl == ttr)
424 h.code = 0;
425 else
426 {
427 int b_or_d = get_base_distance (ttr, ttl, 0, (tree*)0);
428 if (b_or_d < 0)
429 {
430 b_or_d = get_base_distance (ttl, ttr, 0, (tree*)0);
431 if (b_or_d < 0)
432 return EVIL_RETURN (h);
433 h.distance = -b_or_d;
434 }
435 else
436 h.distance = b_or_d;
437 h.code = STD_CODE;
438 }
439
440 /* Now test the OFFSET_TYPE's target compatibility. */
441 type = TREE_TYPE (type);
442 parmtype = TREE_TYPE (parmtype);
443 }
444
445 if (coder == UNKNOWN_TYPE)
446 {
447 if (codel == FUNCTION_TYPE
448 || codel == METHOD_TYPE
449 || (codel == POINTER_TYPE
450 && (TREE_CODE (TREE_TYPE (type)) == FUNCTION_TYPE
451 || TREE_CODE (TREE_TYPE (type)) == METHOD_TYPE)))
452 return TRIVIAL_RETURN (h);
453 return EVIL_RETURN (h);
454 }
455
456 if (coder == VOID_TYPE)
457 return EVIL_RETURN (h);
458
459 if (codel == BOOLEAN_TYPE)
460 {
461 if (INTEGRAL_CODE_P (coder) || coder == REAL_TYPE)
462 return STD_RETURN (h);
463 else if (coder == POINTER_TYPE || coder == OFFSET_TYPE)
464 {
465 /* Make this worse than any conversion to another pointer.
466 FIXME this is how I think the language should work, but it may not
467 end up being how the language is standardized (jason 1/30/95). */
468 h.distance = 32767;
469 return STD_RETURN (h);
470 }
471 return EVIL_RETURN (h);
472 }
473
474 if (INTEGRAL_CODE_P (codel))
475 {
476 /* Control equivalence of ints an enums. */
477
478 if (codel == ENUMERAL_TYPE
479 && flag_int_enum_equivalence == 0)
480 {
481 /* Enums can be converted to ints, but not vice-versa. */
482 if (coder != ENUMERAL_TYPE
483 || TYPE_MAIN_VARIANT (type) != TYPE_MAIN_VARIANT (parmtype))
484 return EVIL_RETURN (h);
485 }
486
487 /* else enums and ints (almost) freely interconvert. */
488
489 if (INTEGRAL_CODE_P (coder))
490 {
491 if (TYPE_MAIN_VARIANT (type)
492 == TYPE_MAIN_VARIANT (type_promotes_to (parmtype)))
493 {
494 h.code = PROMO_CODE;
495 }
496 else
497 h.code = STD_CODE;
498
499 return h;
500 }
501 else if (coder == REAL_TYPE)
502 {
503 h.code = STD_CODE;
504 h.distance = 0;
505 return h;
506 }
507 }
508
509 if (codel == REAL_TYPE)
510 {
511 if (coder == REAL_TYPE)
512 {
513 if (TYPE_MAIN_VARIANT (type)
514 == TYPE_MAIN_VARIANT (type_promotes_to (parmtype)))
515 h.code = PROMO_CODE;
516 else
517 h.code = STD_CODE;
518
519 return h;
520 }
521 else if (INTEGRAL_CODE_P (coder))
522 {
523 h.code = STD_CODE;
524 h.distance = 0;
525 return h;
526 }
527 }
528
529 /* Convert arrays which have not previously been converted. */
530 if (coder == ARRAY_TYPE)
531 {
532 coder = POINTER_TYPE;
533 if (parm)
534 {
535 parm = decay_conversion (parm);
536 parmtype = TREE_TYPE (parm);
537 }
538 else
539 parmtype = build_pointer_type (TREE_TYPE (parmtype));
540 }
541
542 /* Conversions among pointers */
543 if (codel == POINTER_TYPE && coder == POINTER_TYPE)
544 {
545 register tree ttl = TYPE_MAIN_VARIANT (TREE_TYPE (type));
546 register tree ttr = TYPE_MAIN_VARIANT (TREE_TYPE (parmtype));
547 int penalty = 4 * (ttl != ttr);
548
549 /* Anything converts to void *. Since this may be `const void *'
550 (etc.) use VOID_TYPE instead of void_type_node. Otherwise, the
551 targets must be the same, except that we do allow (at some cost)
552 conversion between signed and unsigned pointer types. */
553
554 if ((TREE_CODE (ttl) == METHOD_TYPE
555 || TREE_CODE (ttl) == FUNCTION_TYPE)
556 && TREE_CODE (ttl) == TREE_CODE (ttr))
557 {
558 if (comptypes (ttl, ttr, -1))
559 {
560 h.code = penalty ? STD_CODE : 0;
561 h.distance = 0;
562 }
563 else
564 h.code = EVIL_CODE;
565 return h;
566 }
567
568 #if 1
569 if (TREE_CODE (ttl) != VOID_TYPE
570 && (TREE_CODE (ttr) != VOID_TYPE || !parm || !null_ptr_cst_p (parm)))
571 {
572 if (comp_target_types (type, parmtype, 1) <= 0)
573 return EVIL_RETURN (h);
574 }
575 #else
576 if (!(TREE_CODE (ttl) == VOID_TYPE
577 || TREE_CODE (ttr) == VOID_TYPE
578 || (TREE_UNSIGNED (ttl) ^ TREE_UNSIGNED (ttr)
579 && (ttl = unsigned_type (ttl),
580 ttr = unsigned_type (ttr),
581 penalty = 10, 0))
582 || (comp_target_types (ttl, ttr, 0) > 0)))
583 return EVIL_RETURN (h);
584 #endif
585
586 if (ttr == ttl)
587 {
588 tree tmp1 = TREE_TYPE (type), tmp2 = TREE_TYPE (parmtype);
589
590 h.code = 0;
591 /* Note conversion from `T*' to `const T*',
592 or `T*' to `volatile T*'. */
593 if ((TYPE_READONLY (tmp1) < TREE_READONLY (tmp2))
594 || (TYPE_VOLATILE (tmp1) < TYPE_VOLATILE (tmp2)))
595 h.code = EVIL_CODE;
596 else if ((TYPE_READONLY (tmp1) != TREE_READONLY (tmp2))
597 || (TYPE_VOLATILE (tmp1) != TYPE_VOLATILE (tmp2)))
598 h.code |= QUAL_CODE;
599
600 h.distance = 0;
601 return h;
602 }
603
604
605 if (TREE_CODE (ttl) == RECORD_TYPE && TREE_CODE (ttr) == RECORD_TYPE)
606 {
607 int b_or_d = get_base_distance (ttl, ttr, 0, (tree*)0);
608 if (b_or_d < 0)
609 {
610 b_or_d = get_base_distance (ttr, ttl, 0, (tree*)0);
611 if (b_or_d < 0)
612 return EVIL_RETURN (h);
613 h.distance = -b_or_d;
614 }
615 else
616 h.distance = b_or_d;
617 h.code = STD_CODE;
618 return h;
619 }
620
621 /* If converting from a `class*' to a `void*', make it
622 less favorable than any inheritance relationship. */
623 if (TREE_CODE (ttl) == VOID_TYPE && IS_AGGR_TYPE (ttr))
624 {
625 h.code = STD_CODE;
626 h.distance = CLASSTYPE_MAX_DEPTH (ttr)+1;
627 return h;
628 }
629
630 h.code = penalty ? STD_CODE : PROMO_CODE;
631 /* Catch things like `const char *' -> `const void *'
632 vs `const char *' -> `void *'. */
633 if (ttl != ttr)
634 {
635 tree tmp1 = TREE_TYPE (type), tmp2 = TREE_TYPE (parmtype);
636 if ((TYPE_READONLY (tmp1) < TREE_READONLY (tmp2))
637 || (TYPE_VOLATILE (tmp1) < TYPE_VOLATILE (tmp2)))
638 h.code = EVIL_CODE;
639 else if ((TYPE_READONLY (tmp1) > TREE_READONLY (tmp2))
640 || (TYPE_VOLATILE (tmp1) > TYPE_VOLATILE (tmp2)))
641 h.code |= QUAL_CODE;
642 }
643 return h;
644 }
645
646 if (codel == POINTER_TYPE && coder == INTEGER_TYPE)
647 {
648 /* This is not a bad match, but don't let it beat
649 integer-enum combinations. */
650 if (parm && integer_zerop (parm))
651 {
652 h.code = STD_CODE;
653 h.distance = 0;
654 return h;
655 }
656 }
657
658 /* C++: Since the `this' parameter of a signature member function
659 is represented as a signature pointer to handle default implementations
660 correctly, we can have the case that `type' is a signature pointer
661 while `parmtype' is a pointer to a signature table. We don't really
662 do any conversions in this case, so just return 0. */
663
664 if (codel == RECORD_TYPE && coder == POINTER_TYPE
665 && IS_SIGNATURE_POINTER (type) && IS_SIGNATURE (TREE_TYPE (parmtype)))
666 return ZERO_RETURN (h);
667
668 if (codel == RECORD_TYPE && coder == RECORD_TYPE)
669 {
670 int b_or_d = get_base_distance (type, parmtype, 0, (tree*)0);
671 if (b_or_d < 0)
672 {
673 b_or_d = get_base_distance (parmtype, type, 0, (tree*)0);
674 if (b_or_d < 0)
675 return EVIL_RETURN (h);
676 h.distance = -b_or_d;
677 }
678 else
679 h.distance = b_or_d;
680 h.code = STD_CODE;
681 return h;
682 }
683 return EVIL_RETURN (h);
684 }
685
686 /* A clone of build_type_conversion for checking user-defined conversions in
687 overload resolution. */
688
689 static int
690 user_harshness (type, parmtype)
691 register tree type, parmtype;
692 {
693 tree conv;
694 tree winner = NULL_TREE;
695 int code;
696
697 {
698 tree typename = build_typename_overload (type);
699 if (lookup_fnfields (TYPE_BINFO (parmtype), typename, 0))
700 return 0;
701 }
702
703 for (conv = lookup_conversions (parmtype); conv; conv = TREE_CHAIN (conv))
704 {
705 struct harshness_code tmp;
706 tree cand = TREE_VALUE (conv);
707
708 if (winner && winner == cand)
709 continue;
710
711 tmp = convert_harshness (type, TREE_TYPE (TREE_TYPE (cand)), NULL_TREE);
712 if ((tmp.code < USER_CODE) && (tmp.distance >= 0))
713 {
714 if (winner)
715 return EVIL_CODE;
716 else
717 {
718 winner = cand;
719 code = tmp.code;
720 }
721 }
722 }
723
724 if (winner)
725 return code;
726
727 return -1;
728 }
729
730 #ifdef DEBUG_MATCHING
731 static char *
732 print_harshness (h)
733 struct harshness_code *h;
734 {
735 static char buf[1024];
736 char tmp[1024];
737
738 bzero (buf, 1024 * sizeof (char));
739 strcat (buf, "codes=[");
740 if (h->code & EVIL_CODE)
741 strcat (buf, "EVIL");
742 if (h->code & CONST_CODE)
743 strcat (buf, " CONST");
744 if (h->code & ELLIPSIS_CODE)
745 strcat (buf, " ELLIPSIS");
746 if (h->code & USER_CODE)
747 strcat (buf, " USER");
748 if (h->code & STD_CODE)
749 strcat (buf, " STD");
750 if (h->code & PROMO_CODE)
751 strcat (buf, " PROMO");
752 if (h->code & QUAL_CODE)
753 strcat (buf, " QUAL");
754 if (h->code & TRIVIAL_CODE)
755 strcat (buf, " TRIVIAL");
756 if (buf[0] == '\0')
757 strcat (buf, "0");
758
759 sprintf (tmp, "] distance=%d int_penalty=%d", h->distance, h->int_penalty);
760
761 strcat (buf, tmp);
762
763 return buf;
764 }
765 #endif
766
767 /* Algorithm: For each argument, calculate how difficult it is to
768 make FUNCTION accept that argument. If we can easily tell that
769 FUNCTION won't be acceptable to one of the arguments, then we
770 don't need to compute the ease of converting the other arguments,
771 since it will never show up in the intersection of all arguments'
772 favorite functions.
773
774 Conversions between builtin and user-defined types are allowed, but
775 no function involving such a conversion is preferred to one which
776 does not require such a conversion. Furthermore, such conversions
777 must be unique. */
778
779 void
780 compute_conversion_costs (function, tta_in, cp, arglen)
781 tree function;
782 tree tta_in;
783 struct candidate *cp;
784 int arglen;
785 {
786 tree ttf_in = TYPE_ARG_TYPES (TREE_TYPE (function));
787 tree ttf = ttf_in;
788 tree tta = tta_in;
789
790 /* Start out with no strikes against. */
791 int evil_strikes = 0;
792 int ellipsis_strikes = 0;
793 int user_strikes = 0;
794 int b_or_d_strikes = 0;
795 int easy_strikes = 0;
796
797 int strike_index = 0, win;
798 struct harshness_code lose;
799 extern int cp_silent;
800
801 #ifdef GATHER_STATISTICS
802 n_compute_conversion_costs++;
803 #endif
804
805 #ifndef DEBUG_MATCHING
806 /* We don't emit any warnings or errors while trying out each candidate. */
807 cp_silent = 1;
808 #endif
809
810 cp->function = function;
811 cp->arg = tta ? TREE_VALUE (tta) : NULL_TREE;
812 cp->u.bad_arg = 0; /* optimistic! */
813
814 cp->h.code = 0;
815 cp->h.distance = 0;
816 cp->h.int_penalty = 0;
817 bzero ((char *) cp->harshness,
818 (cp->h_len + 1) * sizeof (struct harshness_code));
819
820 while (ttf && tta)
821 {
822 struct harshness_code h;
823
824 if (ttf == void_list_node)
825 break;
826
827 if (type_unknown_p (TREE_VALUE (tta)))
828 {
829 /* Must perform some instantiation here. */
830 tree rhs = TREE_VALUE (tta);
831 tree lhstype = TREE_VALUE (ttf);
832
833 /* Keep quiet about possible contravariance violations. */
834 int old_inhibit_warnings = inhibit_warnings;
835 inhibit_warnings = 1;
836
837 /* @@ This is to undo what `grokdeclarator' does to
838 parameter types. It really should go through
839 something more general. */
840
841 TREE_TYPE (tta) = unknown_type_node;
842 rhs = instantiate_type (lhstype, rhs, 0);
843 inhibit_warnings = old_inhibit_warnings;
844
845 if (TREE_CODE (rhs) == ERROR_MARK)
846 h.code = EVIL_CODE;
847 else
848 h = convert_harshness (lhstype, TREE_TYPE (rhs), rhs);
849 }
850 else
851 {
852 #ifdef DEBUG_MATCHING
853 static tree old_function = NULL_TREE;
854
855 if (!old_function || function != old_function)
856 {
857 cp_error ("trying %D", function);
858 old_function = function;
859 }
860
861 cp_error (" doing (%T) %E against arg %T",
862 TREE_TYPE (TREE_VALUE (tta)), TREE_VALUE (tta),
863 TREE_VALUE (ttf));
864 #endif
865
866 h = convert_harshness (TREE_VALUE (ttf),
867 TREE_TYPE (TREE_VALUE (tta)),
868 TREE_VALUE (tta));
869
870 #ifdef DEBUG_MATCHING
871 cp_error (" evaluated %s", print_harshness (&h));
872 #endif
873 }
874
875 cp->harshness[strike_index] = h;
876 if ((h.code & EVIL_CODE)
877 || ((h.code & STD_CODE) && h.distance < 0))
878 {
879 cp->u.bad_arg = strike_index;
880 evil_strikes = 1;
881 }
882 else if (h.code & ELLIPSIS_CODE)
883 ellipsis_strikes += 1;
884 #if 0
885 /* This is never set by `convert_harshness'. */
886 else if (h.code & USER_CODE)
887 {
888 user_strikes += 1;
889 }
890 #endif
891 else
892 {
893 if ((h.code & STD_CODE) && h.distance)
894 {
895 if (h.distance > b_or_d_strikes)
896 b_or_d_strikes = h.distance;
897 }
898 else
899 easy_strikes += (h.code & (STD_CODE|PROMO_CODE|TRIVIAL_CODE));
900 cp->h.code |= h.code;
901 /* Make sure we communicate this. */
902 cp->h.int_penalty += h.int_penalty;
903 }
904
905 ttf = TREE_CHAIN (ttf);
906 tta = TREE_CHAIN (tta);
907 strike_index += 1;
908 }
909
910 if (tta)
911 {
912 /* ran out of formals, and parmlist is fixed size. */
913 if (ttf /* == void_type_node */)
914 {
915 cp->h.code = EVIL_CODE;
916 cp->u.bad_arg = -1;
917 cp_silent = 0;
918 return;
919 }
920 else
921 {
922 struct harshness_code h;
923 int l = list_length (tta);
924 ellipsis_strikes += l;
925 h.code = ELLIPSIS_CODE;
926 h.distance = 0;
927 h.int_penalty = 0;
928 for (; l; --l)
929 cp->harshness[strike_index++] = h;
930 }
931 }
932 else if (ttf && ttf != void_list_node)
933 {
934 /* ran out of actuals, and no defaults. */
935 if (TREE_PURPOSE (ttf) == NULL_TREE)
936 {
937 cp->h.code = EVIL_CODE;
938 cp->u.bad_arg = -2;
939 cp_silent = 0;
940 return;
941 }
942 /* Store index of first default. */
943 cp->harshness[arglen].distance = strike_index+1;
944 }
945 else
946 cp->harshness[arglen].distance = 0;
947
948 /* Argument list lengths work out, so don't need to check them again. */
949 if (evil_strikes)
950 {
951 /* We do not check for derived->base conversions here, since in
952 no case would they give evil strike counts, unless such conversions
953 are somehow ambiguous. */
954
955 /* See if any user-defined conversions apply.
956 But make sure that we do not loop. */
957 static int dont_convert_types = 0;
958
959 if (dont_convert_types)
960 {
961 cp->h.code = EVIL_CODE;
962 cp_silent = 0;
963 return;
964 }
965
966 win = 0; /* Only get one chance to win. */
967 ttf = TYPE_ARG_TYPES (TREE_TYPE (function));
968 tta = tta_in;
969 strike_index = 0;
970 evil_strikes = 0;
971
972 while (ttf && tta)
973 {
974 if (ttf == void_list_node)
975 break;
976
977 lose = cp->harshness[strike_index];
978 if ((lose.code & EVIL_CODE)
979 || ((lose.code & STD_CODE) && lose.distance < 0))
980 {
981 tree actual_type = TREE_TYPE (TREE_VALUE (tta));
982 tree formal_type = TREE_VALUE (ttf);
983 int extra_conversions = 0;
984
985 dont_convert_types = 1;
986
987 if (TREE_CODE (formal_type) == REFERENCE_TYPE)
988 formal_type = TREE_TYPE (formal_type);
989 if (TREE_CODE (actual_type) == REFERENCE_TYPE)
990 actual_type = TREE_TYPE (actual_type);
991
992 if (formal_type != error_mark_node
993 && actual_type != error_mark_node)
994 {
995 formal_type = complete_type (TYPE_MAIN_VARIANT (formal_type));
996 actual_type = complete_type (TYPE_MAIN_VARIANT (actual_type));
997
998 if (TYPE_HAS_CONSTRUCTOR (formal_type))
999 {
1000 /* If it has a constructor for this type,
1001 try to use it. */
1002 /* @@ There is no way to save this result yet, so
1003 success is a NULL_TREE for now. */
1004 if (convert_to_aggr (formal_type, TREE_VALUE (tta), 0, 1)
1005 != error_mark_node)
1006 win++;
1007 }
1008 if (TYPE_LANG_SPECIFIC (actual_type)
1009 && TYPE_HAS_CONVERSION (actual_type))
1010 {
1011 int extra = user_harshness (formal_type, actual_type);
1012
1013 if (extra == EVIL_CODE)
1014 win += 2;
1015 else if (extra >= 0)
1016 {
1017 win++;
1018 extra_conversions = extra;
1019 }
1020 }
1021 }
1022 dont_convert_types = 0;
1023
1024 if (win == 1)
1025 {
1026 user_strikes += 1;
1027 cp->harshness[strike_index].code
1028 = USER_CODE | (extra_conversions ? STD_CODE : 0);
1029 win = 0;
1030 }
1031 else
1032 {
1033 if (cp->u.bad_arg > strike_index)
1034 cp->u.bad_arg = strike_index;
1035
1036 evil_strikes = win ? 2 : 1;
1037 break;
1038 }
1039 }
1040
1041 ttf = TREE_CHAIN (ttf);
1042 tta = TREE_CHAIN (tta);
1043 strike_index += 1;
1044 }
1045 }
1046
1047 /* Const member functions get a small penalty because defaulting
1048 to const is less useful than defaulting to non-const. */
1049 /* This is bogus, it does not correspond to anything in the ARM.
1050 This code will be fixed when this entire section is rewritten
1051 to conform to the ARM. (mrs) */
1052 if (TREE_CODE (TREE_TYPE (function)) == METHOD_TYPE)
1053 {
1054 tree this_parm = TREE_VALUE (ttf_in);
1055
1056 if (TREE_CODE (this_parm) == RECORD_TYPE /* Is `this' a sig ptr? */
1057 ? TYPE_READONLY (TREE_TYPE (TREE_TYPE (TYPE_FIELDS (this_parm))))
1058 : TYPE_READONLY (TREE_TYPE (this_parm)))
1059 {
1060 cp->harshness[0].code |= TRIVIAL_CODE;
1061 ++easy_strikes;
1062 }
1063 else
1064 {
1065 /* Calling a non-const member function from a const member function
1066 is probably invalid, but for now we let it only draw a warning.
1067 We indicate that such a mismatch has occurred by setting the
1068 harshness to a maximum value. */
1069 if (TREE_CODE (TREE_TYPE (TREE_VALUE (tta_in))) == POINTER_TYPE
1070 && (TYPE_READONLY (TREE_TYPE (TREE_TYPE (TREE_VALUE (tta_in))))))
1071 cp->harshness[0].code |= CONST_CODE;
1072 }
1073 }
1074
1075 if (evil_strikes)
1076 cp->h.code = EVIL_CODE;
1077 if (ellipsis_strikes)
1078 cp->h.code |= ELLIPSIS_CODE;
1079 if (user_strikes)
1080 cp->h.code |= USER_CODE;
1081 cp_silent = 0;
1082 #ifdef DEBUG_MATCHING
1083 cp_error ("final eval %s", print_harshness (&cp->h));
1084 #endif
1085 }
1086
1087 /* Subroutine of ideal_candidate. See if X or Y is a better match
1088 than the other. */
1089
1090 static int
1091 strictly_better (x, y)
1092 unsigned int x, y;
1093 {
1094 unsigned short xor;
1095
1096 if (x == y)
1097 return 0;
1098
1099 xor = x ^ y;
1100 if (xor >= x || xor >= y)
1101 return 1;
1102 return 0;
1103 }
1104
1105 /* When one of several possible overloaded functions and/or methods
1106 can be called, choose the best candidate for overloading.
1107
1108 BASETYPE is the context from which we start method resolution
1109 or NULL if we are comparing overloaded functions.
1110 CANDIDATES is the array of candidates we have to choose from.
1111 N_CANDIDATES is the length of CANDIDATES.
1112 PARMS is a TREE_LIST of parameters to the function we'll ultimately
1113 choose. It is modified in place when resolving methods. It is not
1114 modified in place when resolving overloaded functions.
1115 LEN is the length of the parameter list. */
1116
1117 static struct candidate *
1118 ideal_candidate (candidates, n_candidates, len)
1119 struct candidate *candidates;
1120 int n_candidates;
1121 int len;
1122 {
1123 struct candidate *cp = candidates+n_candidates;
1124 int i, j = -1, best_code;
1125
1126 /* For each argument, sort the functions from best to worst for the arg.
1127 For each function that's not best for this arg, set its overall
1128 harshness to EVIL so that other args won't like it. The candidate
1129 list for the last argument is the intersection of all the best-liked
1130 functions. */
1131
1132 qsort (candidates, n_candidates, sizeof (struct candidate),
1133 (int (*) PROTO((const void *, const void *))) rank_for_overload);
1134 best_code = cp[-1].h.code;
1135
1136 /* If they're at least as good as each other, do an arg-by-arg check. */
1137 if (! strictly_better (cp[-1].h.code, cp[-2].h.code))
1138 {
1139 int better = 0;
1140 int worse = 0;
1141
1142 for (j = 0; j < n_candidates; j++)
1143 if (! strictly_better (candidates[j].h.code, best_code))
1144 break;
1145
1146 qsort (candidates+j, n_candidates-j, sizeof (struct candidate),
1147 (int (*) PROTO((const void *, const void *))) rank_for_ideal);
1148 for (i = 0; i < len; i++)
1149 {
1150 if (cp[-1].harshness[i].code < cp[-2].harshness[i].code)
1151 better = 1;
1152 else if (cp[-1].harshness[i].code > cp[-2].harshness[i].code)
1153 worse = 1;
1154 else if (cp[-1].harshness[i].code & STD_CODE)
1155 {
1156 /* If it involves a standard conversion, let the
1157 inheritance lattice be the final arbiter. */
1158 if (cp[-1].harshness[i].distance > cp[-2].harshness[i].distance)
1159 worse = 1;
1160 else if (cp[-1].harshness[i].distance < cp[-2].harshness[i].distance)
1161 better = 1;
1162 }
1163 else if (cp[-1].harshness[i].code & PROMO_CODE)
1164 {
1165 /* For integral promotions, take into account a finer
1166 granularity for determining which types should be favored
1167 over others in such promotions. */
1168 if (cp[-1].harshness[i].int_penalty > cp[-2].harshness[i].int_penalty)
1169 worse = 1;
1170 else if (cp[-1].harshness[i].int_penalty < cp[-2].harshness[i].int_penalty)
1171 better = 1;
1172 }
1173 }
1174
1175 if (! better || worse)
1176 return NULL;
1177 }
1178 return cp-1;
1179 }
1180
1181 /* Assume that if the class referred to is not in the
1182 current class hierarchy, that it may be remote.
1183 PARENT is assumed to be of aggregate type here. */
1184
1185 static int
1186 may_be_remote (parent)
1187 tree parent;
1188 {
1189 if (TYPE_OVERLOADS_METHOD_CALL_EXPR (parent) == 0)
1190 return 0;
1191
1192 if (current_class_type == NULL_TREE)
1193 return 0;
1194
1195 if (parent == current_class_type)
1196 return 0;
1197
1198 if (UNIQUELY_DERIVED_FROM_P (parent, current_class_type))
1199 return 0;
1200 return 1;
1201 }
1202
1203 tree
1204 build_vfield_ref (datum, type)
1205 tree datum, type;
1206 {
1207 tree rval;
1208 int old_assume_nonnull_objects = flag_assume_nonnull_objects;
1209
1210 if (datum == error_mark_node)
1211 return error_mark_node;
1212
1213 /* Vtable references are always made from non-null objects. */
1214 flag_assume_nonnull_objects = 1;
1215 if (TREE_CODE (TREE_TYPE (datum)) == REFERENCE_TYPE)
1216 datum = convert_from_reference (datum);
1217
1218 if (! TYPE_USES_COMPLEX_INHERITANCE (type))
1219 rval = build (COMPONENT_REF, TREE_TYPE (CLASSTYPE_VFIELD (type)),
1220 datum, CLASSTYPE_VFIELD (type));
1221 else
1222 rval = build_component_ref (datum, DECL_NAME (CLASSTYPE_VFIELD (type)), NULL_TREE, 0);
1223 flag_assume_nonnull_objects = old_assume_nonnull_objects;
1224
1225 return rval;
1226 }
1227
1228 /* Build a call to a member of an object. I.e., one that overloads
1229 operator ()(), or is a pointer-to-function or pointer-to-method. */
1230
1231 static tree
1232 build_field_call (basetype_path, instance_ptr, name, parms)
1233 tree basetype_path, instance_ptr, name, parms;
1234 {
1235 tree field, instance;
1236
1237 if (name == ctor_identifier || name == dtor_identifier)
1238 return NULL_TREE;
1239
1240 if (instance_ptr == current_class_ptr)
1241 {
1242 /* Check to see if we really have a reference to an instance variable
1243 with `operator()()' overloaded. */
1244 field = IDENTIFIER_CLASS_VALUE (name);
1245
1246 if (field == NULL_TREE)
1247 {
1248 cp_error ("`this' has no member named `%D'", name);
1249 return error_mark_node;
1250 }
1251
1252 if (TREE_CODE (field) == FIELD_DECL)
1253 {
1254 /* If it's a field, try overloading operator (),
1255 or calling if the field is a pointer-to-function. */
1256 instance = build_component_ref_1 (current_class_ref, field, 0);
1257 if (instance == error_mark_node)
1258 return error_mark_node;
1259
1260 if (TYPE_LANG_SPECIFIC (TREE_TYPE (instance))
1261 && (TYPE_OVERLOADS_CALL_EXPR (TREE_TYPE (instance))
1262 || flag_ansi_overloading))
1263 return build_opfncall (CALL_EXPR, LOOKUP_NORMAL, instance, parms, NULL_TREE);
1264
1265 if (TREE_CODE (TREE_TYPE (instance)) == POINTER_TYPE)
1266 {
1267 if (TREE_CODE (TREE_TYPE (TREE_TYPE (instance))) == FUNCTION_TYPE)
1268 return build_function_call (instance, parms);
1269 else if (TREE_CODE (TREE_TYPE (TREE_TYPE (instance))) == METHOD_TYPE)
1270 return build_function_call (instance, tree_cons (NULL_TREE, current_class_ptr, parms));
1271 }
1272 }
1273 return NULL_TREE;
1274 }
1275
1276 /* Check to see if this is not really a reference to an instance variable
1277 with `operator()()' overloaded. */
1278 field = lookup_field (basetype_path, name, 1, 0);
1279
1280 /* This can happen if the reference was ambiguous or for access
1281 violations. */
1282 if (field == error_mark_node)
1283 return error_mark_node;
1284
1285 if (field)
1286 {
1287 tree basetype;
1288 tree ftype = TREE_TYPE (field);
1289
1290 if (TREE_CODE (ftype) == REFERENCE_TYPE)
1291 ftype = TREE_TYPE (ftype);
1292
1293 if (TYPE_LANG_SPECIFIC (ftype)
1294 && (TYPE_OVERLOADS_CALL_EXPR (ftype) || flag_ansi_overloading))
1295 {
1296 /* Make the next search for this field very short. */
1297 basetype = DECL_FIELD_CONTEXT (field);
1298 instance_ptr = convert_pointer_to (basetype, instance_ptr);
1299
1300 instance = build_indirect_ref (instance_ptr, NULL_PTR);
1301 return build_opfncall (CALL_EXPR, LOOKUP_NORMAL,
1302 build_component_ref_1 (instance, field, 0),
1303 parms, NULL_TREE);
1304 }
1305 if (TREE_CODE (ftype) == POINTER_TYPE)
1306 {
1307 if (TREE_CODE (TREE_TYPE (ftype)) == FUNCTION_TYPE
1308 || TREE_CODE (TREE_TYPE (ftype)) == METHOD_TYPE)
1309 {
1310 /* This is a member which is a pointer to function. */
1311 tree ref
1312 = build_component_ref_1 (build_indirect_ref (instance_ptr,
1313 NULL_PTR),
1314 field, LOOKUP_COMPLAIN);
1315 if (ref == error_mark_node)
1316 return error_mark_node;
1317 return build_function_call (ref, parms);
1318 }
1319 }
1320 else if (TREE_CODE (ftype) == METHOD_TYPE)
1321 {
1322 error ("invalid call via pointer-to-member function");
1323 return error_mark_node;
1324 }
1325 else
1326 return NULL_TREE;
1327 }
1328 return NULL_TREE;
1329 }
1330
1331 static tree
1332 find_scoped_type (type, inner_name, inner_types)
1333 tree type, inner_name, inner_types;
1334 {
1335 tree tags = CLASSTYPE_TAGS (type);
1336
1337 while (tags)
1338 {
1339 /* The TREE_PURPOSE of an enum tag (which becomes a member of the
1340 enclosing class) is set to the name for the enum type. So, if
1341 inner_name is `bar', and we strike `baz' for `enum bar { baz }',
1342 then this test will be true. */
1343 if (TREE_PURPOSE (tags) == inner_name)
1344 {
1345 if (inner_types == NULL_TREE)
1346 return TYPE_MAIN_DECL (TREE_VALUE (tags));
1347 return resolve_scope_to_name (TREE_VALUE (tags), inner_types);
1348 }
1349 tags = TREE_CHAIN (tags);
1350 }
1351
1352 /* Look for a TYPE_DECL. */
1353 for (tags = TYPE_FIELDS (type); tags; tags = TREE_CHAIN (tags))
1354 if (TREE_CODE (tags) == TYPE_DECL && DECL_NAME (tags) == inner_name)
1355 {
1356 /* Code by raeburn. */
1357 if (inner_types == NULL_TREE)
1358 return tags;
1359 return resolve_scope_to_name (TREE_TYPE (tags), inner_types);
1360 }
1361
1362 return NULL_TREE;
1363 }
1364
1365 /* Resolve an expression NAME1::NAME2::...::NAMEn to
1366 the name that names the above nested type. INNER_TYPES
1367 is a chain of nested type names (held together by SCOPE_REFs);
1368 OUTER_TYPE is the type we know to enclose INNER_TYPES.
1369 Returns NULL_TREE if there is an error. */
1370
1371 tree
1372 resolve_scope_to_name (outer_type, inner_stuff)
1373 tree outer_type, inner_stuff;
1374 {
1375 register tree tmp;
1376 tree inner_name, inner_type;
1377
1378 if (outer_type == NULL_TREE && current_class_type != NULL_TREE)
1379 {
1380 /* We first try to look for a nesting in our current class context,
1381 then try any enclosing classes. */
1382 tree type = current_class_type;
1383
1384 while (type && (TREE_CODE (type) == RECORD_TYPE
1385 || TREE_CODE (type) == UNION_TYPE))
1386 {
1387 tree rval = resolve_scope_to_name (type, inner_stuff);
1388
1389 if (rval != NULL_TREE)
1390 return rval;
1391 type = DECL_CONTEXT (TYPE_MAIN_DECL (type));
1392 }
1393 }
1394
1395 if (TREE_CODE (inner_stuff) == SCOPE_REF)
1396 {
1397 inner_name = TREE_OPERAND (inner_stuff, 0);
1398 inner_type = TREE_OPERAND (inner_stuff, 1);
1399 }
1400 else
1401 {
1402 inner_name = inner_stuff;
1403 inner_type = NULL_TREE;
1404 }
1405
1406 if (outer_type == NULL_TREE)
1407 {
1408 tree x;
1409 /* If we have something that's already a type by itself,
1410 use that. */
1411 if (IDENTIFIER_HAS_TYPE_VALUE (inner_name))
1412 {
1413 if (inner_type)
1414 return resolve_scope_to_name (IDENTIFIER_TYPE_VALUE (inner_name),
1415 inner_type);
1416 return inner_name;
1417 }
1418
1419 x = lookup_name (inner_name, 0);
1420
1421 if (x && TREE_CODE (x) == NAMESPACE_DECL)
1422 {
1423 x = lookup_namespace_name (x, inner_type);
1424 return x;
1425 }
1426 return NULL_TREE;
1427 }
1428
1429 if (! IS_AGGR_TYPE (outer_type))
1430 return NULL_TREE;
1431
1432 /* Look for member classes or enums. */
1433 tmp = find_scoped_type (outer_type, inner_name, inner_type);
1434
1435 /* If it's not a type in this class, then go down into the
1436 base classes and search there. */
1437 if (! tmp && TYPE_BINFO (outer_type))
1438 {
1439 tree binfos = TYPE_BINFO_BASETYPES (outer_type);
1440 int i, n_baselinks = binfos ? TREE_VEC_LENGTH (binfos) : 0;
1441
1442 for (i = 0; i < n_baselinks; i++)
1443 {
1444 tree base_binfo = TREE_VEC_ELT (binfos, i);
1445 tmp = resolve_scope_to_name (BINFO_TYPE (base_binfo), inner_stuff);
1446 if (tmp)
1447 return tmp;
1448 }
1449 tmp = NULL_TREE;
1450 }
1451
1452 return tmp;
1453 }
1454
1455 /* Build a method call of the form `EXP->SCOPES::NAME (PARMS)'.
1456 This is how virtual function calls are avoided. */
1457
1458 tree
1459 build_scoped_method_call (exp, basetype, name, parms)
1460 tree exp, basetype, name, parms;
1461 {
1462 /* Because this syntactic form does not allow
1463 a pointer to a base class to be `stolen',
1464 we need not protect the derived->base conversion
1465 that happens here.
1466
1467 @@ But we do have to check access privileges later. */
1468 tree binfo, decl;
1469 tree type = TREE_TYPE (exp);
1470
1471 if (type == error_mark_node
1472 || basetype == error_mark_node)
1473 return error_mark_node;
1474
1475 if (processing_template_decl)
1476 {
1477 if (TREE_CODE (name) == BIT_NOT_EXPR)
1478 {
1479 tree type = get_aggr_from_typedef (TREE_OPERAND (name, 0), 1);
1480 name = build_min_nt (BIT_NOT_EXPR, type);
1481 }
1482 name = build_min_nt (SCOPE_REF, basetype, name);
1483 return build_min_nt (METHOD_CALL_EXPR, name, exp, parms, NULL_TREE);
1484 }
1485
1486 if (TREE_CODE (type) == REFERENCE_TYPE)
1487 type = TREE_TYPE (type);
1488
1489 if (TREE_CODE (basetype) == TREE_VEC)
1490 {
1491 binfo = basetype;
1492 basetype = BINFO_TYPE (binfo);
1493 }
1494 else
1495 binfo = NULL_TREE;
1496
1497 /* Destructors can be "called" for simple types; see 5.2.4 and 12.4 Note
1498 that explicit ~int is caught in the parser; this deals with typedefs
1499 and template parms. */
1500 if (TREE_CODE (name) == BIT_NOT_EXPR && ! IS_AGGR_TYPE (basetype))
1501 {
1502 if (type != basetype)
1503 cp_error ("type of `%E' does not match destructor type `%T' (type was `%T')",
1504 exp, basetype, type);
1505 name = TREE_OPERAND (name, 0);
1506 if (basetype != name && basetype != get_type_value (name))
1507 cp_error ("qualified type `%T' does not match destructor name `~%T'",
1508 basetype, name);
1509 return cp_convert (void_type_node, exp);
1510 }
1511
1512 if (! is_aggr_type (basetype, 1))
1513 return error_mark_node;
1514
1515 if (! IS_AGGR_TYPE (type))
1516 {
1517 cp_error ("base object `%E' of scoped method call is of non-aggregate type `%T'",
1518 exp, type);
1519 return error_mark_node;
1520 }
1521
1522 if (! binfo)
1523 {
1524 binfo = get_binfo (basetype, type, 1);
1525 if (binfo == error_mark_node)
1526 return error_mark_node;
1527 if (! binfo)
1528 error_not_base_type (basetype, type);
1529 }
1530
1531 if (binfo)
1532 {
1533 if (TREE_CODE (exp) == INDIRECT_REF)
1534 decl = build_indirect_ref
1535 (convert_pointer_to_real
1536 (binfo, build_unary_op (ADDR_EXPR, exp, 0)), NULL_PTR);
1537 else
1538 decl = build_scoped_ref (exp, basetype);
1539
1540 /* Call to a destructor. */
1541 if (TREE_CODE (name) == BIT_NOT_EXPR)
1542 {
1543 /* Explicit call to destructor. */
1544 name = TREE_OPERAND (name, 0);
1545 if (! (name == TYPE_MAIN_VARIANT (TREE_TYPE (decl))
1546 || name == constructor_name (TREE_TYPE (decl))
1547 || TREE_TYPE (decl) == get_type_value (name)))
1548 {
1549 cp_error
1550 ("qualified type `%T' does not match destructor name `~%T'",
1551 TREE_TYPE (decl), name);
1552 return error_mark_node;
1553 }
1554 if (! TYPE_HAS_DESTRUCTOR (TREE_TYPE (decl)))
1555 return cp_convert (void_type_node, exp);
1556
1557 return build_delete (TREE_TYPE (decl), decl, integer_two_node,
1558 LOOKUP_NORMAL|LOOKUP_NONVIRTUAL|LOOKUP_DESTRUCTOR,
1559 0);
1560 }
1561
1562 /* Call to a method. */
1563 return build_method_call (decl, name, parms, binfo,
1564 LOOKUP_NORMAL|LOOKUP_NONVIRTUAL);
1565 }
1566 return error_mark_node;
1567 }
1568
1569 static void
1570 print_candidates (candidates)
1571 tree candidates;
1572 {
1573 cp_error_at ("candidates are: %D", TREE_VALUE (candidates));
1574 candidates = TREE_CHAIN (candidates);
1575
1576 while (candidates)
1577 {
1578 cp_error_at (" %D", TREE_VALUE (candidates));
1579 candidates = TREE_CHAIN (candidates);
1580 }
1581 }
1582
1583 static void
1584 print_n_candidates (candidates, n)
1585 struct candidate *candidates;
1586 int n;
1587 {
1588 int i;
1589
1590 cp_error_at ("candidates are: %D", candidates[0].function);
1591 for (i = 1; i < n; i++)
1592 cp_error_at (" %D", candidates[i].function);
1593 }
1594
1595 /* We want the address of a function or method. We avoid creating a
1596 pointer-to-member function. */
1597
1598 tree
1599 build_addr_func (function)
1600 tree function;
1601 {
1602 tree type = TREE_TYPE (function);
1603
1604 /* We have to do these by hand to avoid real pointer to member
1605 functions. */
1606 if (TREE_CODE (type) == METHOD_TYPE)
1607 {
1608 tree addr;
1609
1610 type = build_pointer_type (type);
1611
1612 if (mark_addressable (function) == 0)
1613 return error_mark_node;
1614
1615 addr = build1 (ADDR_EXPR, type, function);
1616
1617 /* Address of a static or external variable or function counts
1618 as a constant */
1619 if (staticp (function))
1620 TREE_CONSTANT (addr) = 1;
1621
1622 function = addr;
1623 }
1624 else
1625 function = default_conversion (function);
1626
1627 return function;
1628 }
1629
1630 /* Build a CALL_EXPR, we can handle FUNCTION_TYPEs, METHOD_TYPEs, or
1631 POINTER_TYPE to those. Note, pointer to member function types
1632 (TYPE_PTRMEMFUNC_P) must be handled by our callers. */
1633
1634 tree
1635 build_call (function, result_type, parms)
1636 tree function, result_type, parms;
1637 {
1638 int is_constructor = 0;
1639
1640 function = build_addr_func (function);
1641
1642 if (TYPE_PTRMEMFUNC_P (TREE_TYPE (function)))
1643 {
1644 sorry ("unable to call pointer to member function here");
1645 return error_mark_node;
1646 }
1647
1648 if (TREE_CODE (function) == ADDR_EXPR
1649 && TREE_CODE (TREE_OPERAND (function, 0)) == FUNCTION_DECL
1650 && DECL_CONSTRUCTOR_P (TREE_OPERAND (function, 0)))
1651 is_constructor = 1;
1652
1653 function = build_nt (CALL_EXPR, function, parms, NULL_TREE);
1654 TREE_HAS_CONSTRUCTOR (function) = is_constructor;
1655 TREE_TYPE (function) = result_type;
1656 TREE_SIDE_EFFECTS (function) = 1;
1657
1658 return function;
1659 }
1660
1661 static tree
1662 default_parm_conversions (parms, last)
1663 tree parms, *last;
1664 {
1665 tree parm, parmtypes = NULL_TREE;
1666
1667 *last = NULL_TREE;
1668
1669 for (parm = parms; parm; parm = TREE_CHAIN (parm))
1670 {
1671 tree t = TREE_TYPE (TREE_VALUE (parm));
1672
1673 if (TREE_CODE (t) == OFFSET_TYPE
1674 || TREE_CODE (t) == METHOD_TYPE
1675 || TREE_CODE (t) == FUNCTION_TYPE)
1676 {
1677 TREE_VALUE (parm) = default_conversion (TREE_VALUE (parm));
1678 t = TREE_TYPE (TREE_VALUE (parm));
1679 }
1680
1681 if (t == error_mark_node)
1682 return error_mark_node;
1683
1684 *last = build_tree_list (NULL_TREE, t);
1685 parmtypes = chainon (parmtypes, *last);
1686 }
1687
1688 return parmtypes;
1689 }
1690
1691
1692 /* Build something of the form ptr->method (args)
1693 or object.method (args). This can also build
1694 calls to constructors, and find friends.
1695
1696 Member functions always take their class variable
1697 as a pointer.
1698
1699 INSTANCE is a class instance.
1700
1701 NAME is the name of the method desired, usually an IDENTIFIER_NODE.
1702
1703 PARMS help to figure out what that NAME really refers to.
1704
1705 BASETYPE_PATH, if non-NULL, contains a chain from the type of INSTANCE
1706 down to the real instance type to use for access checking. We need this
1707 information to get protected accesses correct. This parameter is used
1708 by build_member_call.
1709
1710 FLAGS is the logical disjunction of zero or more LOOKUP_
1711 flags. See cp-tree.h for more info.
1712
1713 If this is all OK, calls build_function_call with the resolved
1714 member function.
1715
1716 This function must also handle being called to perform
1717 initialization, promotion/coercion of arguments, and
1718 instantiation of default parameters.
1719
1720 Note that NAME may refer to an instance variable name. If
1721 `operator()()' is defined for the type of that field, then we return
1722 that result. */
1723
1724 tree
1725 build_method_call (instance, name, parms, basetype_path, flags)
1726 tree instance, name, parms, basetype_path;
1727 int flags;
1728 {
1729 register tree function, fntype, value_type;
1730 register tree basetype, save_basetype;
1731 register tree baselink, result, parmtypes;
1732 tree last;
1733 int pass;
1734 tree access = access_public_node;
1735 tree orig_basetype = basetype_path ? BINFO_TYPE (basetype_path) : NULL_TREE;
1736
1737 /* Range of cases for vtable optimization. */
1738 enum vtable_needs { not_needed, maybe_needed, unneeded, needed };
1739 enum vtable_needs need_vtbl = not_needed;
1740
1741 char *name_kind;
1742 tree save_name = name;
1743 int ever_seen = 0;
1744 tree instance_ptr = NULL_TREE;
1745 int all_virtual = flag_all_virtual;
1746 int static_call_context = 0;
1747 tree found_fns = NULL_TREE;
1748
1749 /* Keep track of `const' and `volatile' objects. */
1750 int constp, volatilep;
1751
1752 #ifdef GATHER_STATISTICS
1753 n_build_method_call++;
1754 #endif
1755
1756 if (instance == error_mark_node
1757 || name == error_mark_node
1758 || parms == error_mark_node
1759 || (instance != NULL_TREE && TREE_TYPE (instance) == error_mark_node))
1760 return error_mark_node;
1761
1762 if (processing_template_decl)
1763 {
1764 if (TREE_CODE (name) == BIT_NOT_EXPR)
1765 {
1766 tree type = get_aggr_from_typedef (TREE_OPERAND (name, 0), 1);
1767 name = build_min_nt (BIT_NOT_EXPR, type);
1768 }
1769
1770 return build_min_nt (METHOD_CALL_EXPR, name, instance, parms, NULL_TREE);
1771 }
1772
1773 /* This is the logic that magically deletes the second argument to
1774 operator delete, if it is not needed. */
1775 if (name == ansi_opname[(int) DELETE_EXPR] && list_length (parms)==2)
1776 {
1777 tree save_last = TREE_CHAIN (parms);
1778 tree result;
1779 /* get rid of unneeded argument */
1780 TREE_CHAIN (parms) = NULL_TREE;
1781 result = build_method_call (instance, name, parms, basetype_path,
1782 (LOOKUP_SPECULATIVELY|flags)
1783 &~LOOKUP_COMPLAIN);
1784 /* If it finds a match, return it. */
1785 if (result)
1786 return build_method_call (instance, name, parms, basetype_path, flags);
1787 /* If it doesn't work, two argument delete must work */
1788 TREE_CHAIN (parms) = save_last;
1789 }
1790 /* We already know whether it's needed or not for vec delete. */
1791 else if (name == ansi_opname[(int) VEC_DELETE_EXPR]
1792 && TYPE_LANG_SPECIFIC (TREE_TYPE (instance))
1793 && ! TYPE_VEC_DELETE_TAKES_SIZE (TREE_TYPE (instance)))
1794 TREE_CHAIN (parms) = NULL_TREE;
1795
1796 if (TREE_CODE (name) == BIT_NOT_EXPR)
1797 {
1798 flags |= LOOKUP_DESTRUCTOR;
1799 name = TREE_OPERAND (name, 0);
1800 if (parms)
1801 error ("destructors take no parameters");
1802 basetype = TREE_TYPE (instance);
1803 if (TREE_CODE (basetype) == REFERENCE_TYPE)
1804 basetype = TREE_TYPE (basetype);
1805 if (! (name == basetype
1806 || (IS_AGGR_TYPE (basetype)
1807 && name == constructor_name (basetype))
1808 || basetype == get_type_value (name)))
1809 {
1810 cp_error ("destructor name `~%D' does not match type `%T' of expression",
1811 name, basetype);
1812 return cp_convert (void_type_node, instance);
1813 }
1814
1815 if (! TYPE_HAS_DESTRUCTOR (basetype))
1816 return cp_convert (void_type_node, instance);
1817 instance = default_conversion (instance);
1818 instance_ptr = build_unary_op (ADDR_EXPR, instance, 0);
1819 return build_delete (build_pointer_type (basetype),
1820 instance_ptr, integer_two_node,
1821 LOOKUP_NORMAL|LOOKUP_DESTRUCTOR, 0);
1822 }
1823
1824 if (flag_ansi_overloading)
1825 return build_new_method_call (instance, name, parms, basetype_path, flags);
1826
1827 {
1828 char *xref_name;
1829
1830 /* Initialize name for error reporting. */
1831 if (IDENTIFIER_OPNAME_P (name) && ! IDENTIFIER_TYPENAME_P (name))
1832 {
1833 char *p = operator_name_string (name);
1834 xref_name = (char *)alloca (strlen (p) + 10);
1835 sprintf (xref_name, "operator %s", p);
1836 }
1837 else if (TREE_CODE (name) == SCOPE_REF)
1838 xref_name = IDENTIFIER_POINTER (TREE_OPERAND (name, 1));
1839 else
1840 xref_name = IDENTIFIER_POINTER (name);
1841
1842 GNU_xref_call (current_function_decl, xref_name);
1843 }
1844
1845 if (instance == NULL_TREE)
1846 {
1847 basetype = NULL_TREE;
1848 /* Check cases where this is really a call to raise
1849 an exception. */
1850 if (current_class_type && TREE_CODE (name) == IDENTIFIER_NODE)
1851 {
1852 basetype = purpose_member (name, CLASSTYPE_TAGS (current_class_type));
1853 if (basetype)
1854 basetype = TREE_VALUE (basetype);
1855 }
1856 else if (TREE_CODE (name) == SCOPE_REF
1857 && TREE_CODE (TREE_OPERAND (name, 0)) == IDENTIFIER_NODE)
1858 {
1859 if (! is_aggr_typedef (TREE_OPERAND (name, 0), 1))
1860 return error_mark_node;
1861 basetype = purpose_member (TREE_OPERAND (name, 1),
1862 CLASSTYPE_TAGS (IDENTIFIER_TYPE_VALUE (TREE_OPERAND (name, 0))));
1863 if (basetype)
1864 basetype = TREE_VALUE (basetype);
1865 }
1866
1867 if (basetype != NULL_TREE)
1868 ;
1869 /* call to a constructor... */
1870 else if (basetype_path)
1871 {
1872 basetype = BINFO_TYPE (basetype_path);
1873 if (name == TYPE_IDENTIFIER (basetype))
1874 name = ctor_identifier;
1875 }
1876 else if (IDENTIFIER_HAS_TYPE_VALUE (name))
1877 {
1878 basetype = IDENTIFIER_TYPE_VALUE (name);
1879 name = ctor_identifier;
1880 }
1881 else
1882 {
1883 tree typedef_name = lookup_name (name, 1);
1884 if (typedef_name && TREE_CODE (typedef_name) == TYPE_DECL)
1885 {
1886 /* Canonicalize the typedef name. */
1887 basetype = TREE_TYPE (typedef_name);
1888 name = ctor_identifier;
1889 }
1890 else
1891 {
1892 cp_error ("no constructor named `%T' in scope",
1893 name);
1894 return error_mark_node;
1895 }
1896 }
1897
1898 if (! IS_AGGR_TYPE (basetype))
1899 {
1900 non_aggr_error:
1901 if ((flags & LOOKUP_COMPLAIN) && basetype != error_mark_node)
1902 cp_error ("request for member `%D' in `%E', which is of non-aggregate type `%T'",
1903 name, instance, basetype);
1904
1905 return error_mark_node;
1906 }
1907 }
1908 else if (instance == current_class_ref || instance == current_class_ptr)
1909 {
1910 /* When doing initialization, we side-effect the TREE_TYPE of
1911 current_class_ref, hence we cannot set up BASETYPE from CURRENT_CLASS_TYPE. */
1912 basetype = TREE_TYPE (current_class_ref);
1913
1914 /* Anything manifestly `this' in constructors and destructors
1915 has a known type, so virtual function tables are not needed. */
1916 if (TYPE_VIRTUAL_P (basetype)
1917 && !(flags & LOOKUP_NONVIRTUAL))
1918 need_vtbl = (dtor_label || ctor_label)
1919 ? unneeded : maybe_needed;
1920
1921 /* If `this' is a signature pointer and `name' is not a constructor,
1922 we are calling a signature member function. In that case, set the
1923 `basetype' to the signature type and dereference the `optr' field. */
1924 if (IS_SIGNATURE_POINTER (basetype)
1925 && TYPE_IDENTIFIER (basetype) != name)
1926 {
1927 basetype = SIGNATURE_TYPE (basetype);
1928 instance_ptr = instance;
1929 basetype_path = TYPE_BINFO (basetype);
1930 }
1931 else
1932 {
1933 instance = current_class_ref;
1934 instance_ptr = current_class_ptr;
1935 basetype_path = TYPE_BINFO (current_class_type);
1936 }
1937 result = build_field_call (basetype_path, instance_ptr, name, parms);
1938
1939 if (result)
1940 return result;
1941 }
1942 else if (TREE_CODE (instance) == RESULT_DECL)
1943 {
1944 basetype = TREE_TYPE (instance);
1945 /* Should we ever have to make a virtual function reference
1946 from a RESULT_DECL, know that it must be of fixed type
1947 within the scope of this function. */
1948 if (!(flags & LOOKUP_NONVIRTUAL) && TYPE_VIRTUAL_P (basetype))
1949 need_vtbl = maybe_needed;
1950 instance_ptr = build1 (ADDR_EXPR, build_pointer_type (basetype), instance);
1951 }
1952 else
1953 {
1954 /* The MAIN_VARIANT of the type that `instance_ptr' winds up being. */
1955 tree inst_ptr_basetype;
1956
1957 static_call_context
1958 = (TREE_CODE (instance) == INDIRECT_REF
1959 && TREE_CODE (TREE_OPERAND (instance, 0)) == NOP_EXPR
1960 && TREE_OPERAND (TREE_OPERAND (instance, 0), 0) == error_mark_node);
1961
1962 if (TREE_CODE (instance) == OFFSET_REF)
1963 instance = resolve_offset_ref (instance);
1964
1965 /* the base type of an instance variable is pointer to class */
1966 basetype = TREE_TYPE (instance);
1967
1968 if (TREE_CODE (basetype) == REFERENCE_TYPE)
1969 {
1970 basetype = TREE_TYPE (basetype);
1971 if (! IS_AGGR_TYPE (basetype))
1972 goto non_aggr_error;
1973 /* Call to convert not needed because we are remaining
1974 within the same type. */
1975 instance_ptr = build1 (NOP_EXPR, build_pointer_type (basetype),
1976 instance);
1977 inst_ptr_basetype = TYPE_MAIN_VARIANT (basetype);
1978 }
1979 else
1980 {
1981 if (! IS_AGGR_TYPE (basetype)
1982 && ! (TYPE_LANG_SPECIFIC (basetype)
1983 && (IS_SIGNATURE_POINTER (basetype)
1984 || IS_SIGNATURE_REFERENCE (basetype))))
1985 goto non_aggr_error;
1986
1987 /* If `instance' is a signature pointer/reference and `name' is
1988 not a constructor, we are calling a signature member function.
1989 In that case set the `basetype' to the signature type. */
1990 if ((IS_SIGNATURE_POINTER (basetype)
1991 || IS_SIGNATURE_REFERENCE (basetype))
1992 && TYPE_IDENTIFIER (basetype) != name)
1993 basetype = SIGNATURE_TYPE (basetype);
1994
1995 basetype = complete_type (basetype);
1996
1997 if ((IS_SIGNATURE (basetype)
1998 && (instance_ptr = instance))
1999 || (lvalue_p (instance)
2000 && (instance_ptr = build_unary_op (ADDR_EXPR, instance, 0)))
2001 || (instance_ptr = unary_complex_lvalue (ADDR_EXPR, instance)))
2002 {
2003 if (instance_ptr == error_mark_node)
2004 return error_mark_node;
2005 }
2006 else if (TREE_CODE (instance) == NOP_EXPR
2007 || TREE_CODE (instance) == CONSTRUCTOR)
2008 {
2009 /* A cast is not an lvalue. Initialize a fresh temp
2010 with the value we are casting from, and proceed with
2011 that temporary. We can't cast to a reference type,
2012 so that simplifies the initialization to something
2013 we can manage. */
2014 tree temp = get_temp_name (TREE_TYPE (instance), 0);
2015 if (IS_AGGR_TYPE (TREE_TYPE (instance)))
2016 expand_aggr_init (temp, instance, 0, flags);
2017 else
2018 {
2019 store_init_value (temp, instance);
2020 expand_decl_init (temp);
2021 }
2022 instance = temp;
2023 instance_ptr = build_unary_op (ADDR_EXPR, instance, 0);
2024 }
2025 else
2026 {
2027 if (TREE_CODE (instance) != CALL_EXPR)
2028 my_friendly_abort (125);
2029 if (TYPE_NEEDS_CONSTRUCTING (basetype))
2030 instance = build_cplus_new (basetype, instance);
2031 else
2032 {
2033 instance = get_temp_name (basetype, 0);
2034 TREE_ADDRESSABLE (instance) = 1;
2035 }
2036 instance_ptr = build_unary_op (ADDR_EXPR, instance, 0);
2037 }
2038 /* @@ Should we call comp_target_types here? */
2039 if (IS_SIGNATURE (basetype))
2040 inst_ptr_basetype = basetype;
2041 else
2042 inst_ptr_basetype = TREE_TYPE (TREE_TYPE (instance_ptr));
2043 if (TYPE_MAIN_VARIANT (basetype) == TYPE_MAIN_VARIANT (inst_ptr_basetype))
2044 basetype = inst_ptr_basetype;
2045 else
2046 {
2047 instance_ptr = cp_convert (build_pointer_type (basetype), instance_ptr);
2048 if (instance_ptr == error_mark_node)
2049 return error_mark_node;
2050 }
2051 }
2052
2053 /* After converting `instance_ptr' above, `inst_ptr_basetype' was
2054 not updated, so we use `basetype' instead. */
2055 if (basetype_path == NULL_TREE
2056 && IS_SIGNATURE (basetype))
2057 basetype_path = TYPE_BINFO (basetype);
2058 else if (basetype_path == NULL_TREE
2059 || (BINFO_TYPE (basetype_path)
2060 != TYPE_MAIN_VARIANT (inst_ptr_basetype)))
2061 basetype_path = TYPE_BINFO (inst_ptr_basetype);
2062
2063 result = build_field_call (basetype_path, instance_ptr, name, parms);
2064 if (result)
2065 return result;
2066
2067 if (!(flags & LOOKUP_NONVIRTUAL) && TYPE_VIRTUAL_P (basetype))
2068 {
2069 if (TREE_SIDE_EFFECTS (instance_ptr))
2070 {
2071 /* This action is needed because the instance is needed
2072 for providing the base of the virtual function table.
2073 Without using a SAVE_EXPR, the function we are building
2074 may be called twice, or side effects on the instance
2075 variable (such as a post-increment), may happen twice. */
2076 instance_ptr = save_expr (instance_ptr);
2077 instance = build_indirect_ref (instance_ptr, NULL_PTR);
2078 }
2079 else if (TREE_CODE (TREE_TYPE (instance)) == POINTER_TYPE)
2080 {
2081 /* This happens when called for operator new (). */
2082 instance = build_indirect_ref (instance, NULL_PTR);
2083 }
2084
2085 need_vtbl = maybe_needed;
2086 }
2087 }
2088
2089 if (save_name == ctor_identifier)
2090 save_name = TYPE_IDENTIFIER (basetype);
2091
2092 if (TYPE_SIZE (complete_type (basetype)) == 0)
2093 {
2094 /* This is worth complaining about, I think. */
2095 cp_error ("cannot lookup method in incomplete type `%T'", basetype);
2096 return error_mark_node;
2097 }
2098
2099 save_basetype = TYPE_MAIN_VARIANT (basetype);
2100
2101 parmtypes = default_parm_conversions (parms, &last);
2102 if (parmtypes == error_mark_node)
2103 {
2104 return error_mark_node;
2105 }
2106
2107 if (instance && IS_SIGNATURE (basetype))
2108 {
2109 /* @@ Should this be the constp/volatilep flags for the optr field
2110 of the signature pointer? */
2111 constp = TYPE_READONLY (basetype);
2112 volatilep = TYPE_VOLATILE (basetype);
2113 parms = tree_cons (NULL_TREE, instance_ptr, parms);
2114 }
2115 else if (instance)
2116 {
2117 /* TREE_READONLY (instance) fails for references. */
2118 constp = TYPE_READONLY (TREE_TYPE (TREE_TYPE (instance_ptr)));
2119 volatilep = TYPE_VOLATILE (TREE_TYPE (TREE_TYPE (instance_ptr)));
2120 parms = tree_cons (NULL_TREE, instance_ptr, parms);
2121 }
2122 else
2123 {
2124 /* Raw constructors are always in charge. */
2125 if (TYPE_USES_VIRTUAL_BASECLASSES (basetype)
2126 && ! (flags & LOOKUP_HAS_IN_CHARGE))
2127 {
2128 flags |= LOOKUP_HAS_IN_CHARGE;
2129 parms = tree_cons (NULL_TREE, integer_one_node, parms);
2130 parmtypes = tree_cons (NULL_TREE, integer_type_node, parmtypes);
2131 }
2132
2133 constp = 0;
2134 volatilep = 0;
2135 instance_ptr = build_int_2 (0, 0);
2136 TREE_TYPE (instance_ptr) = build_pointer_type (basetype);
2137 parms = tree_cons (NULL_TREE, instance_ptr, parms);
2138 }
2139
2140 parmtypes = tree_cons (NULL_TREE, TREE_TYPE (instance_ptr), parmtypes);
2141
2142 if (last == NULL_TREE)
2143 last = parmtypes;
2144
2145 /* Look up function name in the structure type definition. */
2146
2147 /* FIXME Axe most of this now? */
2148 if ((IDENTIFIER_HAS_TYPE_VALUE (name)
2149 && ! IDENTIFIER_OPNAME_P (name)
2150 && IS_AGGR_TYPE (IDENTIFIER_TYPE_VALUE (name)))
2151 || name == constructor_name (basetype)
2152 || name == ctor_identifier)
2153 {
2154 tree tmp = NULL_TREE;
2155 if (IDENTIFIER_TYPE_VALUE (name) == basetype
2156 || name == constructor_name (basetype)
2157 || name == ctor_identifier)
2158 tmp = TYPE_BINFO (basetype);
2159 else
2160 tmp = get_binfo (IDENTIFIER_TYPE_VALUE (name), basetype, 0);
2161
2162 if (tmp != NULL_TREE)
2163 {
2164 name_kind = "constructor";
2165
2166 if (TYPE_USES_VIRTUAL_BASECLASSES (basetype)
2167 && ! (flags & LOOKUP_HAS_IN_CHARGE))
2168 {
2169 /* Constructors called for initialization
2170 only are never in charge. */
2171 tree tmplist;
2172
2173 flags |= LOOKUP_HAS_IN_CHARGE;
2174 tmplist = tree_cons (NULL_TREE, integer_zero_node,
2175 TREE_CHAIN (parms));
2176 TREE_CHAIN (parms) = tmplist;
2177 tmplist = tree_cons (NULL_TREE, integer_type_node, TREE_CHAIN (parmtypes));
2178 TREE_CHAIN (parmtypes) = tmplist;
2179 }
2180 basetype = BINFO_TYPE (tmp);
2181 }
2182 else
2183 name_kind = "method";
2184 }
2185 else
2186 name_kind = "method";
2187
2188 if (basetype_path == NULL_TREE
2189 || BINFO_TYPE (basetype_path) != TYPE_MAIN_VARIANT (basetype))
2190 basetype_path = TYPE_BINFO (basetype);
2191 result = lookup_fnfields (basetype_path, name,
2192 (flags & LOOKUP_COMPLAIN));
2193 if (result == error_mark_node)
2194 return error_mark_node;
2195
2196 for (pass = 0; pass < 2; pass++)
2197 {
2198 struct candidate *candidates;
2199 struct candidate *cp;
2200 int len;
2201 unsigned best = 1;
2202
2203 baselink = result;
2204
2205 if (pass > 0)
2206 {
2207 candidates
2208 = (struct candidate *) alloca ((ever_seen+1)
2209 * sizeof (struct candidate));
2210 bzero ((char *) candidates, (ever_seen + 1) * sizeof (struct candidate));
2211 cp = candidates;
2212 len = list_length (parms);
2213 ever_seen = 0;
2214
2215 /* First see if a global function has a shot at it. */
2216 if (flags & LOOKUP_GLOBAL)
2217 {
2218 tree friend_parms;
2219 tree parm = instance_ptr;
2220
2221 if (TREE_CODE (TREE_TYPE (parm)) == REFERENCE_TYPE)
2222 parm = convert_from_reference (parm);
2223 else if (TREE_CODE (TREE_TYPE (parm)) == POINTER_TYPE)
2224 parm = build_indirect_ref (parm, "friendifying parms (compiler error)");
2225 else
2226 my_friendly_abort (167);
2227
2228 friend_parms = tree_cons (NULL_TREE, parm, TREE_CHAIN (parms));
2229
2230 cp->h_len = len;
2231 cp->harshness = (struct harshness_code *)
2232 alloca ((len + 1) * sizeof (struct harshness_code));
2233
2234 result = build_overload_call_real (name, friend_parms, 0, cp, 1);
2235
2236 /* If it turns out to be the one we were actually looking for
2237 (it was probably a friend function), the return the
2238 good result. */
2239 if (TREE_CODE (result) == CALL_EXPR)
2240 return result;
2241
2242 while ((cp->h.code & EVIL_CODE) == 0)
2243 {
2244 /* non-standard uses: set the field to 0 to indicate
2245 we are using a non-member function. */
2246 cp->u.field = 0;
2247 if (cp->harshness[len].distance == 0
2248 && cp->h.code < best)
2249 best = cp->h.code;
2250 cp += 1;
2251 }
2252 }
2253 }
2254
2255 if (baselink)
2256 {
2257 /* We have a hit (of sorts). If the parameter list is
2258 "error_mark_node", or some variant thereof, it won't
2259 match any methods. Since we have verified that the is
2260 some method vaguely matching this one (in name at least),
2261 silently return.
2262
2263 Don't stop for friends, however. */
2264 basetype_path = TREE_PURPOSE (baselink);
2265
2266 function = TREE_VALUE (baselink);
2267 if (TREE_CODE (basetype_path) == TREE_LIST)
2268 basetype_path = TREE_VALUE (basetype_path);
2269 basetype = BINFO_TYPE (basetype_path);
2270
2271 for (; function; function = DECL_CHAIN (function))
2272 {
2273 #ifdef GATHER_STATISTICS
2274 n_inner_fields_searched++;
2275 #endif
2276 ever_seen++;
2277 if (pass > 0)
2278 found_fns = tree_cons (NULL_TREE, function, found_fns);
2279
2280 /* Not looking for friends here. */
2281 if (TREE_CODE (TREE_TYPE (function)) == FUNCTION_TYPE
2282 && ! DECL_STATIC_FUNCTION_P (function))
2283 continue;
2284
2285 if (pass > 0)
2286 {
2287 tree these_parms = parms;
2288
2289 #ifdef GATHER_STATISTICS
2290 n_inner_fields_searched++;
2291 #endif
2292 cp->h_len = len;
2293 cp->harshness = (struct harshness_code *)
2294 alloca ((len + 1) * sizeof (struct harshness_code));
2295
2296 if (DECL_STATIC_FUNCTION_P (function))
2297 these_parms = TREE_CHAIN (these_parms);
2298 compute_conversion_costs (function, these_parms, cp, len);
2299
2300 if ((cp->h.code & EVIL_CODE) == 0)
2301 {
2302 cp->u.field = function;
2303 cp->function = function;
2304 cp->basetypes = basetype_path;
2305
2306 /* Don't allow non-converting constructors to convert. */
2307 if (flags & LOOKUP_ONLYCONVERTING
2308 && DECL_LANG_SPECIFIC (function)
2309 && DECL_NONCONVERTING_P (function))
2310 continue;
2311
2312 /* No "two-level" conversions. */
2313 if (flags & LOOKUP_NO_CONVERSION
2314 && (cp->h.code & USER_CODE))
2315 continue;
2316
2317 cp++;
2318 }
2319 }
2320 }
2321 }
2322
2323 if (pass == 0)
2324 {
2325 tree igv = lookup_name_nonclass (name);
2326
2327 /* No exact match could be found. Now try to find match
2328 using default conversions. */
2329 if ((flags & LOOKUP_GLOBAL) && igv)
2330 {
2331 if (TREE_CODE (igv) == FUNCTION_DECL)
2332 ever_seen += 1;
2333 else if (TREE_CODE (igv) == TREE_LIST)
2334 ever_seen += count_functions (igv);
2335 }
2336
2337 if (ever_seen == 0)
2338 {
2339 if ((flags & (LOOKUP_SPECULATIVELY|LOOKUP_COMPLAIN))
2340 == LOOKUP_SPECULATIVELY)
2341 return NULL_TREE;
2342
2343 TREE_CHAIN (last) = void_list_node;
2344 if (flags & LOOKUP_GLOBAL)
2345 cp_error ("no global or member function `%D(%A)' defined",
2346 save_name, parmtypes);
2347 else
2348 cp_error ("no member function `%T::%D(%A)' defined",
2349 save_basetype, save_name, TREE_CHAIN (parmtypes));
2350 return error_mark_node;
2351 }
2352 continue;
2353 }
2354
2355 if (cp - candidates != 0)
2356 {
2357 /* Rank from worst to best. Then cp will point to best one.
2358 Private fields have their bits flipped. For unsigned
2359 numbers, this should make them look very large.
2360 If the best alternate has a (signed) negative value,
2361 then all we ever saw were private members. */
2362 if (cp - candidates > 1)
2363 {
2364 int n_candidates = cp - candidates;
2365 extern int warn_synth;
2366 TREE_VALUE (parms) = instance_ptr;
2367 cp = ideal_candidate (candidates, n_candidates, len);
2368 if (cp == (struct candidate *)0)
2369 {
2370 if (flags & LOOKUP_COMPLAIN)
2371 {
2372 TREE_CHAIN (last) = void_list_node;
2373 cp_error ("call of overloaded %s `%D(%A)' is ambiguous",
2374 name_kind, save_name, TREE_CHAIN (parmtypes));
2375 print_n_candidates (candidates, n_candidates);
2376 }
2377 return error_mark_node;
2378 }
2379 if (cp->h.code & EVIL_CODE)
2380 return error_mark_node;
2381 if (warn_synth
2382 && DECL_NAME (cp->function) == ansi_opname[MODIFY_EXPR]
2383 && DECL_ARTIFICIAL (cp->function)
2384 && n_candidates == 2)
2385 {
2386 cp_warning ("using synthesized `%#D' for copy assignment",
2387 cp->function);
2388 cp_warning_at (" where cfront would use `%#D'",
2389 candidates->function);
2390 }
2391 }
2392 else if (cp[-1].h.code & EVIL_CODE)
2393 {
2394 if (flags & LOOKUP_COMPLAIN)
2395 cp_error ("ambiguous type conversion requested for %s `%D'",
2396 name_kind, save_name);
2397 return error_mark_node;
2398 }
2399 else
2400 cp--;
2401
2402 /* The global function was the best, so use it. */
2403 if (cp->u.field == 0)
2404 {
2405 /* We must convert the instance pointer into a reference type.
2406 Global overloaded functions can only either take
2407 aggregate objects (which come for free from references)
2408 or reference data types anyway. */
2409 TREE_VALUE (parms) = copy_node (instance_ptr);
2410 TREE_TYPE (TREE_VALUE (parms)) = build_reference_type (TREE_TYPE (TREE_TYPE (instance_ptr)));
2411 return build_function_call (cp->function, parms);
2412 }
2413
2414 function = cp->function;
2415 basetype_path = cp->basetypes;
2416 if (! DECL_STATIC_FUNCTION_P (function))
2417 TREE_VALUE (parms) = cp->arg;
2418 goto found_and_maybe_warn;
2419 }
2420
2421 if (flags & (LOOKUP_COMPLAIN|LOOKUP_SPECULATIVELY))
2422 {
2423 if ((flags & (LOOKUP_SPECULATIVELY|LOOKUP_COMPLAIN))
2424 == LOOKUP_SPECULATIVELY)
2425 return NULL_TREE;
2426
2427 if (DECL_STATIC_FUNCTION_P (cp->function))
2428 parms = TREE_CHAIN (parms);
2429 if (ever_seen)
2430 {
2431 if (flags & LOOKUP_SPECULATIVELY)
2432 return NULL_TREE;
2433 if (static_call_context
2434 && TREE_CODE (TREE_TYPE (cp->function)) == METHOD_TYPE)
2435 cp_error ("object missing in call to `%D'", cp->function);
2436 else if (ever_seen > 1)
2437 {
2438 TREE_CHAIN (last) = void_list_node;
2439 cp_error ("no matching function for call to `%T::%D (%A)%V'",
2440 TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (instance_ptr))),
2441 save_name, TREE_CHAIN (parmtypes),
2442 TREE_TYPE (TREE_TYPE (instance_ptr)));
2443 TREE_CHAIN (last) = NULL_TREE;
2444 print_candidates (found_fns);
2445 }
2446 else
2447 report_type_mismatch (cp, parms, name_kind);
2448 return error_mark_node;
2449 }
2450
2451 if ((flags & (LOOKUP_SPECULATIVELY|LOOKUP_COMPLAIN))
2452 == LOOKUP_COMPLAIN)
2453 {
2454 cp_error ("%T has no method named %D", save_basetype, save_name);
2455 return error_mark_node;
2456 }
2457 return NULL_TREE;
2458 }
2459 continue;
2460
2461 found_and_maybe_warn:
2462 if ((cp->harshness[0].code & CONST_CODE)
2463 /* 12.1p2: Constructors can be called for const objects. */
2464 && ! DECL_CONSTRUCTOR_P (cp->function))
2465 {
2466 if (flags & LOOKUP_COMPLAIN)
2467 {
2468 cp_error_at ("non-const member function `%D'", cp->function);
2469 error ("called for const object at this point in file");
2470 }
2471 /* Not good enough for a match. */
2472 else
2473 return error_mark_node;
2474 }
2475 goto found;
2476 }
2477 /* Silently return error_mark_node. */
2478 return error_mark_node;
2479
2480 found:
2481 if (flags & LOOKUP_PROTECT)
2482 access = compute_access (basetype_path, function);
2483
2484 if (access == access_private_node)
2485 {
2486 if (flags & LOOKUP_COMPLAIN)
2487 {
2488 cp_error_at ("%s `%+#D' is %s", name_kind, function,
2489 TREE_PRIVATE (function) ? "private"
2490 : "from private base class");
2491 error ("within this context");
2492 }
2493 return error_mark_node;
2494 }
2495 else if (access == access_protected_node)
2496 {
2497 if (flags & LOOKUP_COMPLAIN)
2498 {
2499 cp_error_at ("%s `%+#D' %s", name_kind, function,
2500 TREE_PROTECTED (function) ? "is protected"
2501 : "has protected accessibility");
2502 error ("within this context");
2503 }
2504 return error_mark_node;
2505 }
2506
2507 /* From here on down, BASETYPE is the type that INSTANCE_PTR's
2508 type (if it exists) is a pointer to. */
2509
2510 if (DECL_ABSTRACT_VIRTUAL_P (function)
2511 && instance == current_class_ref
2512 && DECL_CONSTRUCTOR_P (current_function_decl)
2513 && ! (flags & LOOKUP_NONVIRTUAL)
2514 && value_member (function, get_abstract_virtuals (basetype)))
2515 cp_error ("abstract virtual `%#D' called from constructor", function);
2516
2517 if (IS_SIGNATURE (basetype))
2518 {
2519 if (static_call_context)
2520 {
2521 cp_error ("cannot call signature member function `%T::%D' without signature pointer/reference",
2522 basetype, save_name);
2523 return error_mark_node;
2524 }
2525 return build_signature_method_call (function, parms);
2526 }
2527
2528 function = DECL_MAIN_VARIANT (function);
2529 mark_used (function);
2530
2531 fntype = TREE_TYPE (function);
2532 if (TREE_CODE (fntype) == POINTER_TYPE)
2533 fntype = TREE_TYPE (fntype);
2534 basetype = DECL_CLASS_CONTEXT (function);
2535
2536 /* If we are referencing a virtual function from an object
2537 of effectively static type, then there is no need
2538 to go through the virtual function table. */
2539 if (need_vtbl == maybe_needed)
2540 {
2541 int fixed_type = resolves_to_fixed_type_p (instance, 0);
2542
2543 if (all_virtual == 1
2544 && DECL_VINDEX (function)
2545 && may_be_remote (basetype))
2546 need_vtbl = needed;
2547 else if (DECL_VINDEX (function))
2548 need_vtbl = fixed_type ? unneeded : needed;
2549 else
2550 need_vtbl = not_needed;
2551 }
2552
2553 if (TREE_CODE (fntype) == METHOD_TYPE && static_call_context
2554 && !DECL_CONSTRUCTOR_P (function))
2555 {
2556 /* Let's be nasty to the user now, and give reasonable
2557 error messages. */
2558 instance_ptr = current_class_ptr;
2559 if (instance_ptr)
2560 {
2561 if (basetype != current_class_type)
2562 {
2563 if (basetype == error_mark_node)
2564 return error_mark_node;
2565 else
2566 {
2567 if (orig_basetype != NULL_TREE)
2568 error_not_base_type (orig_basetype, current_class_type);
2569 else
2570 error_not_base_type (function, current_class_type);
2571 return error_mark_node;
2572 }
2573 }
2574 }
2575 /* Only allow a static member function to call another static member
2576 function. */
2577 else if (DECL_LANG_SPECIFIC (function)
2578 && !DECL_STATIC_FUNCTION_P (function))
2579 {
2580 cp_error ("cannot call member function `%D' without object",
2581 function);
2582 return error_mark_node;
2583 }
2584 }
2585
2586 value_type = TREE_TYPE (fntype) ? TREE_TYPE (fntype) : void_type_node;
2587
2588 if (TYPE_SIZE (complete_type (value_type)) == 0)
2589 {
2590 if (flags & LOOKUP_COMPLAIN)
2591 incomplete_type_error (0, value_type);
2592 return error_mark_node;
2593 }
2594
2595 if (DECL_STATIC_FUNCTION_P (function))
2596 parms = convert_arguments (NULL_TREE, TYPE_ARG_TYPES (fntype),
2597 TREE_CHAIN (parms), function, LOOKUP_NORMAL);
2598 else if (need_vtbl == unneeded)
2599 {
2600 int sub_flags = DECL_CONSTRUCTOR_P (function) ? flags : LOOKUP_NORMAL;
2601 basetype = TREE_TYPE (instance);
2602 if (TYPE_METHOD_BASETYPE (TREE_TYPE (function))
2603 != TYPE_MAIN_VARIANT (basetype))
2604 {
2605 basetype = DECL_CLASS_CONTEXT (function);
2606 instance_ptr = convert_pointer_to (basetype, instance_ptr);
2607 instance = build_indirect_ref (instance_ptr, NULL_PTR);
2608 }
2609 parms = tree_cons (NULL_TREE, instance_ptr,
2610 convert_arguments (NULL_TREE, TREE_CHAIN (TYPE_ARG_TYPES (fntype)), TREE_CHAIN (parms), function, sub_flags));
2611 }
2612 else
2613 {
2614 if ((flags & LOOKUP_NONVIRTUAL) == 0)
2615 basetype = DECL_CONTEXT (function);
2616
2617 /* First parm could be integer_zerop with casts like
2618 ((Object*)0)->Object::IsA() */
2619 if (!integer_zerop (TREE_VALUE (parms)))
2620 {
2621 /* Since we can't have inheritance with a union, doing get_binfo
2622 on it won't work. We do all the convert_pointer_to_real
2623 stuff to handle MI correctly...for unions, that's not
2624 an issue, so we must short-circuit that extra work here. */
2625 tree tmp = TREE_TYPE (TREE_TYPE (TREE_VALUE (parms)));
2626 if (tmp != NULL_TREE && TREE_CODE (tmp) == UNION_TYPE)
2627 instance_ptr = TREE_VALUE (parms);
2628 else
2629 {
2630 tree binfo = get_binfo (basetype,
2631 TREE_TYPE (TREE_TYPE (TREE_VALUE (parms))),
2632 0);
2633 instance_ptr = convert_pointer_to_real (binfo, TREE_VALUE (parms));
2634 }
2635 instance_ptr
2636 = convert_pointer_to (build_type_variant (basetype,
2637 constp, volatilep),
2638 instance_ptr);
2639
2640 if (TREE_CODE (instance_ptr) == COND_EXPR)
2641 {
2642 instance_ptr = save_expr (instance_ptr);
2643 instance = build_indirect_ref (instance_ptr, NULL_PTR);
2644 }
2645 else if (TREE_CODE (instance_ptr) == NOP_EXPR
2646 && TREE_CODE (TREE_OPERAND (instance_ptr, 0)) == ADDR_EXPR
2647 && TREE_OPERAND (TREE_OPERAND (instance_ptr, 0), 0) == instance)
2648 ;
2649 /* The call to `convert_pointer_to' may return error_mark_node. */
2650 else if (instance_ptr == error_mark_node)
2651 return instance_ptr;
2652 else if (instance == NULL_TREE
2653 || TREE_CODE (instance) != INDIRECT_REF
2654 || TREE_OPERAND (instance, 0) != instance_ptr)
2655 instance = build_indirect_ref (instance_ptr, NULL_PTR);
2656 }
2657 parms = tree_cons (NULL_TREE, instance_ptr,
2658 convert_arguments (NULL_TREE, TREE_CHAIN (TYPE_ARG_TYPES (fntype)), TREE_CHAIN (parms), function, LOOKUP_NORMAL));
2659 }
2660
2661 if (parms == error_mark_node
2662 || (parms && TREE_CHAIN (parms) == error_mark_node))
2663 return error_mark_node;
2664
2665 if (need_vtbl == needed)
2666 {
2667 function = build_vfn_ref (&TREE_VALUE (parms), instance,
2668 DECL_VINDEX (function));
2669 TREE_TYPE (function) = build_pointer_type (fntype);
2670 }
2671
2672 if (TREE_CODE (function) == FUNCTION_DECL)
2673 GNU_xref_call (current_function_decl,
2674 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (function)));
2675
2676 result = build_call (function, value_type, parms);
2677 if (IS_AGGR_TYPE (value_type))
2678 result = build_cplus_new (value_type, result);
2679 result = convert_from_reference (result);
2680 return result;
2681 }
2682
2683 /* Similar to `build_method_call', but for overloaded non-member functions.
2684 The name of this function comes through NAME. The name depends
2685 on PARMS.
2686
2687 Note that this function must handle simple `C' promotions,
2688 as well as variable numbers of arguments (...), and
2689 default arguments to boot.
2690
2691 If the overloading is successful, we return a tree node which
2692 contains the call to the function.
2693
2694 If overloading produces candidates which are probable, but not definite,
2695 we hold these candidates. If FINAL_CP is non-zero, then we are free
2696 to assume that final_cp points to enough storage for all candidates that
2697 this function might generate. The `harshness' array is preallocated for
2698 the first candidate, but not for subsequent ones.
2699
2700 Note that the DECL_RTL of FUNCTION must be made to agree with this
2701 function's new name. */
2702
2703 tree
2704 build_overload_call_real (fnname, parms, flags, final_cp, require_complete)
2705 tree fnname, parms;
2706 int flags;
2707 struct candidate *final_cp;
2708 int require_complete;
2709 {
2710 /* must check for overloading here */
2711 tree functions, function;
2712 tree parmtypes, last;
2713 register tree outer;
2714 int length;
2715 int parmlength = list_length (parms);
2716
2717 struct candidate *candidates, *cp;
2718
2719 if (final_cp)
2720 {
2721 final_cp[0].h.code = 0;
2722 final_cp[0].h.distance = 0;
2723 final_cp[0].function = 0;
2724 /* end marker. */
2725 final_cp[1].h.code = EVIL_CODE;
2726 }
2727
2728 parmtypes = default_parm_conversions (parms, &last);
2729 if (parmtypes == error_mark_node)
2730 {
2731 if (final_cp)
2732 final_cp->h.code = EVIL_CODE;
2733 return error_mark_node;
2734 }
2735
2736 if (last)
2737 TREE_CHAIN (last) = void_list_node;
2738 else
2739 parmtypes = void_list_node;
2740
2741 if (is_overloaded_fn (fnname))
2742 {
2743 functions = fnname;
2744 if (TREE_CODE (fnname) == TREE_LIST)
2745 fnname = TREE_PURPOSE (functions);
2746 else if (TREE_CODE (fnname) == FUNCTION_DECL)
2747 fnname = DECL_NAME (functions);
2748 }
2749 else
2750 functions = lookup_name_nonclass (fnname);
2751
2752 if (functions == NULL_TREE)
2753 {
2754 if (flags & LOOKUP_SPECULATIVELY)
2755 return NULL_TREE;
2756 if (flags & LOOKUP_COMPLAIN)
2757 error ("only member functions apply");
2758 if (final_cp)
2759 final_cp->h.code = EVIL_CODE;
2760 return error_mark_node;
2761 }
2762
2763 if (TREE_CODE (functions) == FUNCTION_DECL && ! IDENTIFIER_OPNAME_P (fnname))
2764 {
2765 functions = DECL_MAIN_VARIANT (functions);
2766 if (final_cp)
2767 {
2768 /* We are just curious whether this is a viable alternative or
2769 not. */
2770 compute_conversion_costs (functions, parms, final_cp, parmlength);
2771 return functions;
2772 }
2773 else
2774 return build_function_call_real (functions, parms, 1, flags);
2775 }
2776
2777 if (TREE_CODE (functions) == TREE_LIST
2778 && TREE_VALUE (functions) == NULL_TREE)
2779 {
2780 if (flags & LOOKUP_SPECULATIVELY)
2781 return NULL_TREE;
2782
2783 if (flags & LOOKUP_COMPLAIN)
2784 cp_error ("function `%D' declared overloaded, but no instances of that function declared",
2785 TREE_PURPOSE (functions));
2786 if (final_cp)
2787 final_cp->h.code = EVIL_CODE;
2788 return error_mark_node;
2789 }
2790
2791 length = count_functions (functions);
2792
2793 if (final_cp)
2794 candidates = final_cp;
2795 else
2796 {
2797 candidates
2798 = (struct candidate *)alloca ((length+1) * sizeof (struct candidate));
2799 bzero ((char *) candidates, (length + 1) * sizeof (struct candidate));
2800 }
2801
2802 cp = candidates;
2803
2804 my_friendly_assert (is_overloaded_fn (functions), 169);
2805
2806 functions = get_first_fn (functions);
2807
2808 /* OUTER is the list of FUNCTION_DECLS, in a TREE_LIST. */
2809 for (outer = functions; outer; outer = DECL_CHAIN (outer))
2810 {
2811 int template_cost = 0;
2812 function = outer;
2813 if (TREE_CODE (function) != FUNCTION_DECL
2814 && ! (TREE_CODE (function) == TEMPLATE_DECL
2815 && TREE_CODE (DECL_TEMPLATE_RESULT (function)) == FUNCTION_DECL))
2816 {
2817 enum tree_code code = TREE_CODE (function);
2818 if (code == TEMPLATE_DECL)
2819 code = TREE_CODE (DECL_TEMPLATE_RESULT (function));
2820 if (code == CONST_DECL)
2821 cp_error_at
2822 ("enumeral value `%D' conflicts with function of same name",
2823 function);
2824 else if (code == VAR_DECL)
2825 {
2826 if (TREE_STATIC (function))
2827 cp_error_at
2828 ("variable `%D' conflicts with function of same name",
2829 function);
2830 else
2831 cp_error_at
2832 ("constant field `%D' conflicts with function of same name",
2833 function);
2834 }
2835 else if (code == TYPE_DECL)
2836 continue;
2837 else
2838 my_friendly_abort (2);
2839 error ("at this point in file");
2840 continue;
2841 }
2842 if (TREE_CODE (function) == TEMPLATE_DECL)
2843 {
2844 int ntparms = DECL_NTPARMS (function);
2845 tree targs = make_tree_vec (ntparms);
2846 int i;
2847
2848 i = type_unification (DECL_INNERMOST_TEMPLATE_PARMS (function),
2849 &TREE_VEC_ELT (targs, 0),
2850 TYPE_ARG_TYPES (TREE_TYPE (function)),
2851 parms, NULL_TREE, &template_cost, 0, 0);
2852 if (i == 0)
2853 {
2854 function = instantiate_template (function, targs);
2855 if (function == error_mark_node)
2856 return function;
2857 }
2858 }
2859
2860 if (TREE_CODE (function) == TEMPLATE_DECL)
2861 {
2862 /* Unconverted template -- failed match. */
2863 cp->function = function;
2864 cp->u.bad_arg = -4;
2865 cp->h.code = EVIL_CODE;
2866 }
2867 else
2868 {
2869 struct candidate *cp2;
2870
2871 /* Check that this decl is not the same as a function that's in
2872 the list due to some template instantiation. */
2873 cp2 = candidates;
2874 while (cp2 != cp)
2875 if (cp2->function == function)
2876 break;
2877 else
2878 cp2 += 1;
2879 if (cp2->function == function)
2880 continue;
2881
2882 function = DECL_MAIN_VARIANT (function);
2883
2884 /* Can't use alloca here, since result might be
2885 passed to calling function. */
2886 cp->h_len = parmlength;
2887 cp->harshness = (struct harshness_code *)
2888 oballoc ((parmlength + 1) * sizeof (struct harshness_code));
2889
2890 compute_conversion_costs (function, parms, cp, parmlength);
2891
2892 /* Make sure this is clear as well. */
2893 cp->h.int_penalty += template_cost;
2894
2895 if ((cp[0].h.code & EVIL_CODE) == 0)
2896 {
2897 cp[1].h.code = EVIL_CODE;
2898 cp++;
2899 }
2900 }
2901 }
2902
2903 if (cp - candidates)
2904 {
2905 tree rval = error_mark_node;
2906
2907 /* Leave marker. */
2908 cp[0].h.code = EVIL_CODE;
2909 if (cp - candidates > 1)
2910 {
2911 struct candidate *best_cp
2912 = ideal_candidate (candidates, cp - candidates, parmlength);
2913 if (best_cp == (struct candidate *)0)
2914 {
2915 if (flags & LOOKUP_COMPLAIN)
2916 {
2917 cp_error ("call of overloaded `%D' is ambiguous", fnname);
2918 print_n_candidates (candidates, cp - candidates);
2919 }
2920 return error_mark_node;
2921 }
2922 else
2923 rval = best_cp->function;
2924 }
2925 else
2926 {
2927 cp -= 1;
2928 if (cp->h.code & EVIL_CODE)
2929 {
2930 if (flags & LOOKUP_COMPLAIN)
2931 error ("type conversion ambiguous");
2932 }
2933 else
2934 rval = cp->function;
2935 }
2936
2937 if (final_cp)
2938 return rval;
2939
2940 return build_function_call_real (rval, parms, require_complete, flags);
2941 }
2942
2943 if (flags & LOOKUP_SPECULATIVELY)
2944 return NULL_TREE;
2945
2946 if (flags & LOOKUP_COMPLAIN)
2947 report_type_mismatch (cp, parms, "function");
2948
2949 return error_mark_node;
2950 }
2951
2952 /* This requires a complete type on the result of the call. */
2953
2954 tree
2955 build_overload_call (fnname, parms, flags)
2956 tree fnname, parms;
2957 int flags;
2958 {
2959 return build_overload_call_real (fnname, parms, flags, (struct candidate *)0, 1);
2960 }
2961
2962 /* New overloading code. */
2963
2964 struct z_candidate {
2965 tree fn;
2966 tree convs;
2967 tree second_conv;
2968 int viable;
2969 tree basetype_path;
2970 tree template;
2971 struct z_candidate *next;
2972 };
2973
2974 #define IDENTITY_RANK 0
2975 #define EXACT_RANK 1
2976 #define PROMO_RANK 2
2977 #define STD_RANK 3
2978 #define PBOOL_RANK 4
2979 #define USER_RANK 5
2980 #define ELLIPSIS_RANK 6
2981 #define BAD_RANK 7
2982
2983 #define ICS_RANK(NODE) \
2984 (ICS_BAD_FLAG (NODE) ? BAD_RANK \
2985 : ICS_ELLIPSIS_FLAG (NODE) ? ELLIPSIS_RANK \
2986 : ICS_USER_FLAG (NODE) ? USER_RANK \
2987 : ICS_STD_RANK (NODE))
2988
2989 #define ICS_STD_RANK(NODE) TREE_COMPLEXITY (NODE)
2990
2991 #define ICS_USER_FLAG(NODE) TREE_LANG_FLAG_0 (NODE)
2992 #define ICS_ELLIPSIS_FLAG(NODE) TREE_LANG_FLAG_1 (NODE)
2993 #define ICS_THIS_FLAG(NODE) TREE_LANG_FLAG_2 (NODE)
2994 #define ICS_BAD_FLAG(NODE) TREE_LANG_FLAG_3 (NODE)
2995
2996 #define USER_CONV_FN(NODE) TREE_OPERAND (NODE, 1)
2997
2998 int
2999 null_ptr_cst_p (t)
3000 tree t;
3001 {
3002 if (t == null_node
3003 || integer_zerop (t) && TREE_CODE (TREE_TYPE (t)) == INTEGER_TYPE)
3004 return 1;
3005 return 0;
3006 }
3007
3008 static tree
3009 build_conv (code, type, from)
3010 enum tree_code code;
3011 tree type, from;
3012 {
3013 tree t = build1 (code, type, from);
3014 int rank = ICS_STD_RANK (from);
3015 switch (code)
3016 {
3017 case PTR_CONV:
3018 case PMEM_CONV:
3019 case BASE_CONV:
3020 case STD_CONV:
3021 if (rank < STD_RANK)
3022 rank = STD_RANK;
3023 break;
3024
3025 case QUAL_CONV:
3026 if (rank < EXACT_RANK)
3027 rank = EXACT_RANK;
3028
3029 default:
3030 break;
3031 }
3032 ICS_STD_RANK (t) = rank;
3033 ICS_USER_FLAG (t) = ICS_USER_FLAG (from);
3034 ICS_BAD_FLAG (t) = ICS_BAD_FLAG (from);
3035 return t;
3036 }
3037
3038 static tree
3039 non_reference (t)
3040 tree t;
3041 {
3042 if (TREE_CODE (t) == REFERENCE_TYPE)
3043 t = TREE_TYPE (t);
3044 return t;
3045 }
3046
3047 static tree
3048 strip_top_quals (t)
3049 tree t;
3050 {
3051 if (TREE_CODE (t) == ARRAY_TYPE)
3052 return t;
3053 return TYPE_MAIN_VARIANT (t);
3054 }
3055
3056 /* Returns the standard conversion path (see [conv]) from type FROM to type
3057 TO, if any. For proper handling of null pointer constants, you must
3058 also pass the expression EXPR to convert from. */
3059
3060 static tree
3061 standard_conversion (to, from, expr)
3062 tree to, from, expr;
3063 {
3064 enum tree_code fcode, tcode;
3065 tree conv;
3066 int fromref = 0;
3067
3068 if (TREE_CODE (to) == REFERENCE_TYPE)
3069 to = TREE_TYPE (to);
3070 if (TREE_CODE (from) == REFERENCE_TYPE)
3071 {
3072 fromref = 1;
3073 from = TREE_TYPE (from);
3074 }
3075 to = strip_top_quals (to);
3076 from = strip_top_quals (from);
3077
3078 fcode = TREE_CODE (from);
3079 tcode = TREE_CODE (to);
3080
3081 conv = build1 (IDENTITY_CONV, from, expr);
3082
3083 if (fcode == FUNCTION_TYPE)
3084 {
3085 from = build_pointer_type (from);
3086 fcode = TREE_CODE (from);
3087 conv = build_conv (LVALUE_CONV, from, conv);
3088 }
3089 else if (fcode == ARRAY_TYPE)
3090 {
3091 from = build_pointer_type (TREE_TYPE (from));
3092 fcode = TREE_CODE (from);
3093 conv = build_conv (LVALUE_CONV, from, conv);
3094 }
3095 else if (fromref || (expr && real_lvalue_p (expr)))
3096 conv = build_conv (RVALUE_CONV, from, conv);
3097
3098 if (from == to)
3099 return conv;
3100
3101 if ((tcode == POINTER_TYPE || TYPE_PTRMEMFUNC_P (to))
3102 && expr && null_ptr_cst_p (expr))
3103 {
3104 conv = build_conv (STD_CONV, to, conv);
3105 }
3106 else if (tcode == POINTER_TYPE && fcode == POINTER_TYPE)
3107 {
3108 enum tree_code ufcode = TREE_CODE (TREE_TYPE (from));
3109 enum tree_code utcode = TREE_CODE (TREE_TYPE (to));
3110 tree nconv = NULL_TREE;
3111
3112 if (comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (from)),
3113 TYPE_MAIN_VARIANT (TREE_TYPE (to)), 1))
3114 nconv = conv;
3115 else if (utcode == VOID_TYPE && ufcode != OFFSET_TYPE
3116 && ufcode != FUNCTION_TYPE)
3117 {
3118 from = build_pointer_type
3119 (cp_build_type_variant (void_type_node,
3120 TYPE_READONLY (TREE_TYPE (from)),
3121 TYPE_VOLATILE (TREE_TYPE (from))));
3122 nconv = build_conv (PTR_CONV, from, conv);
3123 }
3124 else if (ufcode == OFFSET_TYPE && utcode == OFFSET_TYPE)
3125 {
3126 tree fbase = TYPE_OFFSET_BASETYPE (TREE_TYPE (from));
3127 tree tbase = TYPE_OFFSET_BASETYPE (TREE_TYPE (to));
3128
3129 if (DERIVED_FROM_P (fbase, tbase)
3130 && (comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (from))),
3131 TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (to))),
3132 1)))
3133 {
3134 from = build_offset_type (tbase, TREE_TYPE (TREE_TYPE (from)));
3135 from = build_pointer_type (from);
3136 nconv = build_conv (PMEM_CONV, from, conv);
3137 }
3138 }
3139 else if (IS_AGGR_TYPE (TREE_TYPE (from))
3140 && IS_AGGR_TYPE (TREE_TYPE (to)))
3141 {
3142 if (DERIVED_FROM_P (TREE_TYPE (to), TREE_TYPE (from)))
3143 {
3144 from = cp_build_type_variant (TREE_TYPE (to),
3145 TYPE_READONLY (TREE_TYPE (from)),
3146 TYPE_VOLATILE (TREE_TYPE (from)));
3147 from = build_pointer_type (from);
3148 nconv = build_conv (PTR_CONV, from, conv);
3149 }
3150 }
3151
3152 if (nconv && comptypes (from, to, 1))
3153 conv = nconv;
3154 else if (nconv && comp_ptr_ttypes (TREE_TYPE (to), TREE_TYPE (from)))
3155 conv = build_conv (QUAL_CONV, to, nconv);
3156 else if (ptr_reasonably_similar (TREE_TYPE (to), TREE_TYPE (from)))
3157 {
3158 conv = build_conv (PTR_CONV, to, conv);
3159 ICS_BAD_FLAG (conv) = 1;
3160 }
3161 else
3162 return 0;
3163
3164 from = to;
3165 }
3166 else if (TYPE_PTRMEMFUNC_P (to) && TYPE_PTRMEMFUNC_P (from))
3167 {
3168 tree fromfn = TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (from));
3169 tree tofn = TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (to));
3170 tree fbase = TREE_TYPE (TREE_VALUE (TYPE_ARG_TYPES (fromfn)));
3171 tree tbase = TREE_TYPE (TREE_VALUE (TYPE_ARG_TYPES (tofn)));
3172
3173 if (! DERIVED_FROM_P (fbase, tbase)
3174 || ! comptypes (TREE_TYPE (fromfn), TREE_TYPE (tofn), 1)
3175 || ! compparms (TREE_CHAIN (TYPE_ARG_TYPES (fromfn)),
3176 TREE_CHAIN (TYPE_ARG_TYPES (tofn)), 1)
3177 || TYPE_READONLY (fbase) != TYPE_READONLY (tbase)
3178 || TYPE_VOLATILE (fbase) != TYPE_VOLATILE (tbase))
3179 return 0;
3180
3181 from = cp_build_type_variant (tbase, TYPE_READONLY (fbase),
3182 TYPE_VOLATILE (fbase));
3183 from = build_cplus_method_type (from, TREE_TYPE (fromfn),
3184 TREE_CHAIN (TYPE_ARG_TYPES (fromfn)));
3185 from = build_ptrmemfunc_type (build_pointer_type (from));
3186 conv = build_conv (PMEM_CONV, from, conv);
3187 }
3188 else if (tcode == BOOLEAN_TYPE)
3189 {
3190 if (! (INTEGRAL_CODE_P (fcode) || fcode == REAL_TYPE
3191 || fcode == POINTER_TYPE || TYPE_PTRMEMFUNC_P (from)))
3192 return 0;
3193
3194 conv = build_conv (STD_CONV, to, conv);
3195 if (fcode == POINTER_TYPE || TYPE_PTRMEMFUNC_P (from)
3196 && ICS_STD_RANK (conv) < PBOOL_RANK)
3197 ICS_STD_RANK (conv) = PBOOL_RANK;
3198 }
3199 /* We don't check for ENUMERAL_TYPE here because there are no standard
3200 conversions to enum type. */
3201 else if (tcode == INTEGER_TYPE || tcode == BOOLEAN_TYPE
3202 || tcode == REAL_TYPE)
3203 {
3204 if (! (INTEGRAL_CODE_P (fcode) || fcode == REAL_TYPE))
3205 return 0;
3206 conv = build_conv (STD_CONV, to, conv);
3207
3208 /* Give this a better rank if it's a promotion. */
3209 if (to == type_promotes_to (from)
3210 && ICS_STD_RANK (TREE_OPERAND (conv, 0)) <= PROMO_RANK)
3211 ICS_STD_RANK (conv) = PROMO_RANK;
3212 }
3213 else if (IS_AGGR_TYPE (to) && IS_AGGR_TYPE (from)
3214 && DERIVED_FROM_P (to, from))
3215 conv = build_conv (BASE_CONV, to, conv);
3216 else
3217 return 0;
3218
3219 return conv;
3220 }
3221
3222 /* Returns the conversion path from type FROM to reference type TO for
3223 purposes of reference binding. For lvalue binding, either pass a
3224 reference type to FROM or an lvalue expression to EXPR.
3225
3226 Currently does not distinguish in the generated trees between binding to
3227 an lvalue and a temporary. Should it? */
3228
3229 static tree
3230 reference_binding (rto, rfrom, expr, flags)
3231 tree rto, rfrom, expr;
3232 int flags;
3233 {
3234 tree conv;
3235 int lvalue = 1;
3236 tree to = TREE_TYPE (rto);
3237 tree from = rfrom;
3238 int related;
3239
3240 if (TREE_CODE (from) == REFERENCE_TYPE)
3241 from = TREE_TYPE (from);
3242 else if (! expr || ! real_lvalue_p (expr))
3243 lvalue = 0;
3244
3245 related = (TYPE_MAIN_VARIANT (to) == TYPE_MAIN_VARIANT (from)
3246 || (IS_AGGR_TYPE (to) && IS_AGGR_TYPE (from)
3247 && DERIVED_FROM_P (to, from)));
3248
3249 if (lvalue && related
3250 && TYPE_READONLY (to) >= TYPE_READONLY (from)
3251 && TYPE_VOLATILE (to) >= TYPE_VOLATILE (from))
3252 {
3253 conv = build1 (IDENTITY_CONV, from, expr);
3254
3255 if (TYPE_MAIN_VARIANT (to) == TYPE_MAIN_VARIANT (from))
3256 conv = build_conv (REF_BIND, rto, conv);
3257 else
3258 {
3259 conv = build_conv (REF_BIND, rto, conv);
3260 ICS_STD_RANK (conv) = STD_RANK;
3261 }
3262 }
3263 else
3264 conv = NULL_TREE;
3265
3266 if (! conv)
3267 {
3268 conv = standard_conversion (to, rfrom, expr);
3269 if (conv)
3270 {
3271 conv = build_conv (REF_BIND, rto, conv);
3272
3273 /* Bind directly to a base subobject of a class rvalue. Do it
3274 after building the conversion for proper handling of ICS_RANK. */
3275 if (TREE_CODE (TREE_OPERAND (conv, 0)) == BASE_CONV)
3276 TREE_OPERAND (conv, 0) = TREE_OPERAND (TREE_OPERAND (conv, 0), 0);
3277 }
3278 if (conv
3279 && ((! (TYPE_READONLY (to) && ! TYPE_VOLATILE (to)
3280 && (flags & LOOKUP_NO_TEMP_BIND) == 0))
3281 /* If T1 is reference-related to T2, cv1 must be the same
3282 cv-qualification as, or greater cv-qualification than,
3283 cv2; otherwise, the program is ill-formed. */
3284 || (related
3285 && (TYPE_READONLY (to) < TYPE_READONLY (from)
3286 || TYPE_VOLATILE (to) < TYPE_VOLATILE (from)))))
3287 ICS_BAD_FLAG (conv) = 1;
3288 }
3289
3290 return conv;
3291 }
3292
3293 /* Returns the implicit conversion sequence (see [over.ics]) from type FROM
3294 to type TO. The optional expression EXPR may affect the conversion.
3295 FLAGS are the usual overloading flags. Only LOOKUP_NO_CONVERSION is
3296 significant. */
3297
3298 static tree
3299 implicit_conversion (to, from, expr, flags)
3300 tree to, from, expr;
3301 int flags;
3302 {
3303 tree conv;
3304 struct z_candidate *cand;
3305
3306 if (expr && type_unknown_p (expr))
3307 {
3308 expr = instantiate_type (to, expr, 0);
3309 if (expr == error_mark_node)
3310 return 0;
3311 from = TREE_TYPE (expr);
3312 }
3313
3314 if (TREE_CODE (to) == REFERENCE_TYPE)
3315 conv = reference_binding (to, from, expr, flags);
3316 else
3317 conv = standard_conversion (to, from, expr);
3318
3319 if (conv)
3320 ;
3321 else if ((IS_AGGR_TYPE (non_reference (from))
3322 || IS_AGGR_TYPE (non_reference (to)))
3323 && (flags & LOOKUP_NO_CONVERSION) == 0)
3324 {
3325 cand = build_user_type_conversion_1
3326 (to, expr, LOOKUP_ONLYCONVERTING);
3327 if (cand)
3328 conv = cand->second_conv;
3329 if ((! conv || ICS_BAD_FLAG (conv))
3330 && TREE_CODE (to) == REFERENCE_TYPE
3331 && (flags & LOOKUP_NO_TEMP_BIND) == 0)
3332 {
3333 cand = build_user_type_conversion_1
3334 (TYPE_MAIN_VARIANT (TREE_TYPE (to)), expr, LOOKUP_ONLYCONVERTING);
3335 if (cand)
3336 {
3337 if (! TYPE_READONLY (TREE_TYPE (to))
3338 || TYPE_VOLATILE (TREE_TYPE (to)))
3339 ICS_BAD_FLAG (cand->second_conv) = 1;
3340 if (!conv || (ICS_BAD_FLAG (conv)
3341 > ICS_BAD_FLAG (cand->second_conv)))
3342 conv = build_conv (REF_BIND, to, cand->second_conv);
3343 }
3344 }
3345 }
3346
3347 return conv;
3348 }
3349
3350 /* Create an overload candidate for the function or method FN called with
3351 the argument list ARGLIST and add it to CANDIDATES. FLAGS is passed on
3352 to implicit_conversion. */
3353
3354 static struct z_candidate *
3355 add_function_candidate (candidates, fn, arglist, flags)
3356 struct z_candidate *candidates;
3357 tree fn, arglist;
3358 int flags;
3359 {
3360 tree parmlist = TYPE_ARG_TYPES (TREE_TYPE (fn));
3361 int i, len;
3362 tree convs;
3363 tree parmnode = parmlist;
3364 tree argnode = arglist;
3365 int viable = 1;
3366 struct z_candidate *cand;
3367
3368 /* The `this' and `in_chrg' arguments to constructors are not considered
3369 in overload resolution. */
3370 if (DECL_CONSTRUCTOR_P (fn))
3371 {
3372 parmnode = TREE_CHAIN (parmnode);
3373 argnode = TREE_CHAIN (argnode);
3374 if (TYPE_USES_VIRTUAL_BASECLASSES (DECL_CONTEXT (fn)))
3375 {
3376 parmnode = TREE_CHAIN (parmnode);
3377 argnode = TREE_CHAIN (argnode);
3378 }
3379 }
3380
3381 len = list_length (argnode);
3382 convs = make_tree_vec (len);
3383
3384 for (i = 0; i < len; ++i)
3385 {
3386 tree arg = TREE_VALUE (argnode);
3387 tree argtype = TREE_TYPE (arg);
3388 tree t;
3389
3390 argtype = cp_build_type_variant
3391 (argtype, TREE_READONLY (arg), TREE_THIS_VOLATILE (arg));
3392
3393 if (parmnode == void_list_node)
3394 break;
3395 else if (parmnode)
3396 t = implicit_conversion (TREE_VALUE (parmnode), argtype, arg, flags);
3397 else
3398 {
3399 t = build1 (IDENTITY_CONV, argtype, arg);
3400 ICS_ELLIPSIS_FLAG (t) = 1;
3401 }
3402
3403 if (i == 0 && t && TREE_CODE (TREE_TYPE (fn)) == METHOD_TYPE
3404 && ! DECL_CONSTRUCTOR_P (fn))
3405 ICS_THIS_FLAG (t) = 1;
3406
3407 TREE_VEC_ELT (convs, i) = t;
3408 if (! t)
3409 break;
3410
3411 if (ICS_BAD_FLAG (t))
3412 viable = -1;
3413
3414 if (parmnode)
3415 parmnode = TREE_CHAIN (parmnode);
3416 argnode = TREE_CHAIN (argnode);
3417 }
3418
3419 if (i < len)
3420 viable = 0;
3421
3422 /* Make sure there are default args for the rest of the parms. */
3423 for (; parmnode && parmnode != void_list_node;
3424 parmnode = TREE_CHAIN (parmnode))
3425 if (! TREE_PURPOSE (parmnode))
3426 {
3427 viable = 0;
3428 break;
3429 }
3430
3431 cand = (struct z_candidate *) oballoc (sizeof (struct z_candidate));
3432
3433 cand->fn = fn;
3434 cand->convs = convs;
3435 cand->second_conv = NULL_TREE;
3436 cand->viable = viable;
3437 cand->basetype_path = NULL_TREE;
3438 cand->template = NULL_TREE;
3439 cand->next = candidates;
3440
3441 return cand;
3442 }
3443
3444 /* Create an overload candidate for the conversion function FN which will
3445 be invoked for expression OBJ, producing a pointer-to-function which
3446 will in turn be called with the argument list ARGLIST, and add it to
3447 CANDIDATES. FLAGS is passed on to implicit_conversion. */
3448
3449 static struct z_candidate *
3450 add_conv_candidate (candidates, fn, obj, arglist)
3451 struct z_candidate *candidates;
3452 tree fn, obj, arglist;
3453 {
3454 tree totype = TREE_TYPE (TREE_TYPE (fn));
3455 tree parmlist = TYPE_ARG_TYPES (TREE_TYPE (totype));
3456 int i, len = list_length (arglist) + 1;
3457 tree convs = make_tree_vec (len);
3458 tree parmnode = parmlist;
3459 tree argnode = arglist;
3460 int viable = 1;
3461 struct z_candidate *cand;
3462 int flags = LOOKUP_NORMAL;
3463
3464 for (i = 0; i < len; ++i)
3465 {
3466 tree arg = i == 0 ? obj : TREE_VALUE (argnode);
3467 tree argtype = lvalue_type (arg);
3468 tree t;
3469
3470 if (i == 0)
3471 t = implicit_conversion (totype, argtype, arg, flags);
3472 else if (parmnode == void_list_node)
3473 break;
3474 else if (parmnode)
3475 t = implicit_conversion (TREE_VALUE (parmnode), argtype, arg, flags);
3476 else
3477 {
3478 t = build1 (IDENTITY_CONV, argtype, arg);
3479 ICS_ELLIPSIS_FLAG (t) = 1;
3480 }
3481
3482 TREE_VEC_ELT (convs, i) = t;
3483 if (! t)
3484 break;
3485
3486 if (ICS_BAD_FLAG (t))
3487 viable = -1;
3488
3489 if (i == 0)
3490 continue;
3491
3492 if (parmnode)
3493 parmnode = TREE_CHAIN (parmnode);
3494 argnode = TREE_CHAIN (argnode);
3495 }
3496
3497 if (i < len)
3498 viable = 0;
3499
3500 for (; parmnode && parmnode != void_list_node;
3501 parmnode = TREE_CHAIN (parmnode))
3502 if (! TREE_PURPOSE (parmnode))
3503 {
3504 viable = 0;
3505 break;
3506 }
3507
3508 cand = (struct z_candidate *) oballoc (sizeof (struct z_candidate));
3509
3510 cand->fn = fn;
3511 cand->convs = convs;
3512 cand->second_conv = NULL_TREE;
3513 cand->viable = viable;
3514 cand->basetype_path = NULL_TREE;
3515 cand->template = NULL_TREE;
3516 cand->next = candidates;
3517
3518 return cand;
3519 }
3520
3521 static struct z_candidate *
3522 build_builtin_candidate (candidates, fnname, type1, type2,
3523 args, argtypes, flags)
3524 struct z_candidate *candidates;
3525 tree fnname, type1, type2, *args, *argtypes;
3526 int flags;
3527
3528 {
3529 tree t, convs;
3530 int viable = 1, i;
3531 struct z_candidate *cand;
3532 tree types[2];
3533
3534 types[0] = type1;
3535 types[1] = type2;
3536
3537 convs = make_tree_vec (args[2] ? 3 : (args[1] ? 2 : 1));
3538
3539 for (i = 0; i < 2; ++i)
3540 {
3541 if (! args[i])
3542 break;
3543
3544 t = implicit_conversion (types[i], argtypes[i], args[i], flags);
3545 if (! t)
3546 {
3547 viable = 0;
3548 /* We need something for printing the candidate. */
3549 t = build1 (IDENTITY_CONV, types[i], NULL_TREE);
3550 }
3551 else if (ICS_BAD_FLAG (t))
3552 viable = 0;
3553 TREE_VEC_ELT (convs, i) = t;
3554 }
3555
3556 /* For COND_EXPR we rearranged the arguments; undo that now. */
3557 if (args[2])
3558 {
3559 TREE_VEC_ELT (convs, 2) = TREE_VEC_ELT (convs, 1);
3560 TREE_VEC_ELT (convs, 1) = TREE_VEC_ELT (convs, 0);
3561 t = implicit_conversion (boolean_type_node, argtypes[2], args[2], flags);
3562 if (t)
3563 TREE_VEC_ELT (convs, 0) = t;
3564 else
3565 viable = 0;
3566 }
3567
3568 cand = (struct z_candidate *) oballoc (sizeof (struct z_candidate));
3569
3570 cand->fn = fnname;
3571 cand->convs = convs;
3572 cand->second_conv = NULL_TREE;
3573 cand->viable = viable;
3574 cand->basetype_path = NULL_TREE;
3575 cand->template = NULL_TREE;
3576 cand->next = candidates;
3577
3578 return cand;
3579 }
3580
3581 static int
3582 is_complete (t)
3583 tree t;
3584 {
3585 return TYPE_SIZE (complete_type (t)) != NULL_TREE;
3586 }
3587
3588 /* Create any builtin operator overload candidates for the operator in
3589 question given the converted operand types TYPE1 and TYPE2. The other
3590 args are passed through from add_builtin_candidates to
3591 build_builtin_candidate. */
3592
3593 static struct z_candidate *
3594 add_builtin_candidate (candidates, code, code2, fnname, type1, type2,
3595 args, argtypes, flags)
3596 struct z_candidate *candidates;
3597 enum tree_code code, code2;
3598 tree fnname, type1, type2, *args, *argtypes;
3599 int flags;
3600 {
3601 switch (code)
3602 {
3603 case POSTINCREMENT_EXPR:
3604 case POSTDECREMENT_EXPR:
3605 args[1] = integer_zero_node;
3606 type2 = integer_type_node;
3607 }
3608
3609 switch (code)
3610 {
3611
3612 /* 4 For every pair T, VQ), where T is an arithmetic or enumeration type,
3613 and VQ is either volatile or empty, there exist candidate operator
3614 functions of the form
3615 VQ T& operator++(VQ T&);
3616 T operator++(VQ T&, int);
3617 5 For every pair T, VQ), where T is an enumeration type or an arithmetic
3618 type other than bool, and VQ is either volatile or empty, there exist
3619 candidate operator functions of the form
3620 VQ T& operator--(VQ T&);
3621 T operator--(VQ T&, int);
3622 6 For every pair T, VQ), where T is a cv-qualified or cv-unqualified
3623 complete object type, and VQ is either volatile or empty, there exist
3624 candidate operator functions of the form
3625 T*VQ& operator++(T*VQ&);
3626 T*VQ& operator--(T*VQ&);
3627 T* operator++(T*VQ&, int);
3628 T* operator--(T*VQ&, int); */
3629
3630 case POSTDECREMENT_EXPR:
3631 case PREDECREMENT_EXPR:
3632 if (TREE_CODE (type1) == BOOLEAN_TYPE)
3633 return candidates;
3634 case POSTINCREMENT_EXPR:
3635 case PREINCREMENT_EXPR:
3636 if ((ARITHMETIC_TYPE_P (type1) && TREE_CODE (type1) != ENUMERAL_TYPE)
3637 || TYPE_PTROB_P (type1))
3638 {
3639 type1 = build_reference_type (type1);
3640 break;
3641 }
3642 return candidates;
3643
3644 /* 7 For every cv-qualified or cv-unqualified complete object type T, there
3645 exist candidate operator functions of the form
3646
3647 T& operator*(T*);
3648
3649 8 For every function type T, there exist candidate operator functions of
3650 the form
3651 T& operator*(T*); */
3652
3653 case INDIRECT_REF:
3654 if (TREE_CODE (type1) == POINTER_TYPE
3655 && (TYPE_PTROB_P (type1)
3656 || TREE_CODE (TREE_TYPE (type1)) == FUNCTION_TYPE))
3657 break;
3658 return candidates;
3659
3660 /* 9 For every type T, there exist candidate operator functions of the form
3661 T* operator+(T*);
3662
3663 10For every promoted arithmetic type T, there exist candidate operator
3664 functions of the form
3665 T operator+(T);
3666 T operator-(T); */
3667
3668 case CONVERT_EXPR: /* unary + */
3669 if (TREE_CODE (type1) == POINTER_TYPE
3670 && TREE_CODE (TREE_TYPE (type1)) != OFFSET_TYPE)
3671 break;
3672 case NEGATE_EXPR:
3673 if (ARITHMETIC_TYPE_P (type1))
3674 break;
3675 return candidates;
3676
3677 /* 11For every promoted integral type T, there exist candidate operator
3678 functions of the form
3679 T operator~(T); */
3680
3681 case BIT_NOT_EXPR:
3682 if (INTEGRAL_TYPE_P (type1))
3683 break;
3684 return candidates;
3685
3686 /* 12For every quintuple C1, C2, T, CV1, CV2), where C2 is a class type, C1
3687 is the same type as C2 or is a derived class of C2, T is a complete
3688 object type or a function type, and CV1 and CV2 are cv-qualifier-seqs,
3689 there exist candidate operator functions of the form
3690 CV12 T& operator->*(CV1 C1*, CV2 T C2::*);
3691 where CV12 is the union of CV1 and CV2. */
3692
3693 case MEMBER_REF:
3694 if (TREE_CODE (type1) == POINTER_TYPE
3695 && (TYPE_PTRMEMFUNC_P (type2) || TYPE_PTRMEM_P (type2)))
3696 {
3697 tree c1 = TREE_TYPE (type1);
3698 tree c2 = (TYPE_PTRMEMFUNC_P (type2)
3699 ? TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (type2)))
3700 : TYPE_OFFSET_BASETYPE (TREE_TYPE (type2)));
3701
3702 if (IS_AGGR_TYPE (c1) && DERIVED_FROM_P (c2, c1)
3703 && (TYPE_PTRMEMFUNC_P (type2)
3704 || is_complete (TREE_TYPE (TREE_TYPE (type2)))))
3705 break;
3706 }
3707 return candidates;
3708
3709 /* 13For every pair of promoted arithmetic types L and R, there exist can-
3710 didate operator functions of the form
3711 LR operator*(L, R);
3712 LR operator/(L, R);
3713 LR operator+(L, R);
3714 LR operator-(L, R);
3715 bool operator<(L, R);
3716 bool operator>(L, R);
3717 bool operator<=(L, R);
3718 bool operator>=(L, R);
3719 bool operator==(L, R);
3720 bool operator!=(L, R);
3721 where LR is the result of the usual arithmetic conversions between
3722 types L and R.
3723
3724 14For every pair of types T and I, where T is a cv-qualified or cv-
3725 unqualified complete object type and I is a promoted integral type,
3726 there exist candidate operator functions of the form
3727 T* operator+(T*, I);
3728 T& operator[](T*, I);
3729 T* operator-(T*, I);
3730 T* operator+(I, T*);
3731 T& operator[](I, T*);
3732
3733 15For every T, where T is a pointer to complete object type, there exist
3734 candidate operator functions of the form112)
3735 ptrdiff_t operator-(T, T);
3736
3737 16For every pointer type T, there exist candidate operator functions of
3738 the form
3739 bool operator<(T, T);
3740 bool operator>(T, T);
3741 bool operator<=(T, T);
3742 bool operator>=(T, T);
3743 bool operator==(T, T);
3744 bool operator!=(T, T);
3745
3746 17For every pointer to member type T, there exist candidate operator
3747 functions of the form
3748 bool operator==(T, T);
3749 bool operator!=(T, T); */
3750
3751 case MINUS_EXPR:
3752 if (TYPE_PTROB_P (type1) && TYPE_PTROB_P (type2))
3753 break;
3754 if (TYPE_PTROB_P (type1) && INTEGRAL_TYPE_P (type2))
3755 {
3756 type2 = ptrdiff_type_node;
3757 break;
3758 }
3759 case MULT_EXPR:
3760 case TRUNC_DIV_EXPR:
3761 if (ARITHMETIC_TYPE_P (type1) && ARITHMETIC_TYPE_P (type2))
3762 break;
3763 return candidates;
3764
3765 case EQ_EXPR:
3766 case NE_EXPR:
3767 if (TYPE_PTRMEMFUNC_P (type1) && TYPE_PTRMEMFUNC_P (type2)
3768 || TYPE_PTRMEM_P (type1) && TYPE_PTRMEM_P (type2))
3769 break;
3770 if ((TYPE_PTRMEMFUNC_P (type1) || TYPE_PTRMEM_P (type1))
3771 && null_ptr_cst_p (args[1]))
3772 {
3773 type2 = type1;
3774 break;
3775 }
3776 if ((TYPE_PTRMEMFUNC_P (type2) || TYPE_PTRMEM_P (type2))
3777 && null_ptr_cst_p (args[0]))
3778 {
3779 type1 = type2;
3780 break;
3781 }
3782 case LT_EXPR:
3783 case GT_EXPR:
3784 case LE_EXPR:
3785 case GE_EXPR:
3786 case MAX_EXPR:
3787 case MIN_EXPR:
3788 if (ARITHMETIC_TYPE_P (type1) && ARITHMETIC_TYPE_P (type2)
3789 || TYPE_PTR_P (type1) && TYPE_PTR_P (type2))
3790 break;
3791 if (TYPE_PTR_P (type1) && null_ptr_cst_p (args[1]))
3792 {
3793 type2 = type1;
3794 break;
3795 }
3796 if (null_ptr_cst_p (args[0]) && TYPE_PTR_P (type2))
3797 {
3798 type1 = type2;
3799 break;
3800 }
3801 return candidates;
3802
3803 case PLUS_EXPR:
3804 if (ARITHMETIC_TYPE_P (type1) && ARITHMETIC_TYPE_P (type2))
3805 break;
3806 case ARRAY_REF:
3807 if (INTEGRAL_TYPE_P (type1) && TYPE_PTROB_P (type2))
3808 {
3809 type1 = ptrdiff_type_node;
3810 break;
3811 }
3812 if (TYPE_PTROB_P (type1) && INTEGRAL_TYPE_P (type2))
3813 {
3814 type2 = ptrdiff_type_node;
3815 break;
3816 }
3817 return candidates;
3818
3819 /* 18For every pair of promoted integral types L and R, there exist candi-
3820 date operator functions of the form
3821 LR operator%(L, R);
3822 LR operator&(L, R);
3823 LR operator^(L, R);
3824 LR operator|(L, R);
3825 L operator<<(L, R);
3826 L operator>>(L, R);
3827 where LR is the result of the usual arithmetic conversions between
3828 types L and R. */
3829
3830 case TRUNC_MOD_EXPR:
3831 case BIT_AND_EXPR:
3832 case BIT_IOR_EXPR:
3833 case BIT_XOR_EXPR:
3834 case LSHIFT_EXPR:
3835 case RSHIFT_EXPR:
3836 if (INTEGRAL_TYPE_P (type1) && INTEGRAL_TYPE_P (type2))
3837 break;
3838 return candidates;
3839
3840 /* 19For every triple L, VQ, R), where L is an arithmetic or enumeration
3841 type, VQ is either volatile or empty, and R is a promoted arithmetic
3842 type, there exist candidate operator functions of the form
3843 VQ L& operator=(VQ L&, R);
3844 VQ L& operator*=(VQ L&, R);
3845 VQ L& operator/=(VQ L&, R);
3846 VQ L& operator+=(VQ L&, R);
3847 VQ L& operator-=(VQ L&, R);
3848
3849 20For every pair T, VQ), where T is any type and VQ is either volatile
3850 or empty, there exist candidate operator functions of the form
3851 T*VQ& operator=(T*VQ&, T*);
3852
3853 21For every pair T, VQ), where T is a pointer to member type and VQ is
3854 either volatile or empty, there exist candidate operator functions of
3855 the form
3856 VQ T& operator=(VQ T&, T);
3857
3858 22For every triple T, VQ, I), where T is a cv-qualified or cv-
3859 unqualified complete object type, VQ is either volatile or empty, and
3860 I is a promoted integral type, there exist candidate operator func-
3861 tions of the form
3862 T*VQ& operator+=(T*VQ&, I);
3863 T*VQ& operator-=(T*VQ&, I);
3864
3865 23For every triple L, VQ, R), where L is an integral or enumeration
3866 type, VQ is either volatile or empty, and R is a promoted integral
3867 type, there exist candidate operator functions of the form
3868
3869 VQ L& operator%=(VQ L&, R);
3870 VQ L& operator<<=(VQ L&, R);
3871 VQ L& operator>>=(VQ L&, R);
3872 VQ L& operator&=(VQ L&, R);
3873 VQ L& operator^=(VQ L&, R);
3874 VQ L& operator|=(VQ L&, R); */
3875
3876 case MODIFY_EXPR:
3877 switch (code2)
3878 {
3879 case PLUS_EXPR:
3880 case MINUS_EXPR:
3881 if (TYPE_PTROB_P (type1) && INTEGRAL_TYPE_P (type2))
3882 {
3883 type2 = ptrdiff_type_node;
3884 break;
3885 }
3886 case MULT_EXPR:
3887 case TRUNC_DIV_EXPR:
3888 if (ARITHMETIC_TYPE_P (type1) && ARITHMETIC_TYPE_P (type2))
3889 break;
3890 return candidates;
3891
3892 case TRUNC_MOD_EXPR:
3893 case BIT_AND_EXPR:
3894 case BIT_IOR_EXPR:
3895 case BIT_XOR_EXPR:
3896 case LSHIFT_EXPR:
3897 case RSHIFT_EXPR:
3898 if (INTEGRAL_TYPE_P (type1) && INTEGRAL_TYPE_P (type2))
3899 break;
3900 return candidates;
3901
3902 case NOP_EXPR:
3903 if (ARITHMETIC_TYPE_P (type1) && ARITHMETIC_TYPE_P (type2))
3904 break;
3905 if ((TYPE_PTRMEMFUNC_P (type1) && TYPE_PTRMEMFUNC_P (type2))
3906 || (TYPE_PTR_P (type1) && TYPE_PTR_P (type2))
3907 || (TYPE_PTRMEM_P (type1) && TYPE_PTRMEM_P (type2))
3908 || ((TYPE_PTRMEMFUNC_P (type1)
3909 || TREE_CODE (type1) == POINTER_TYPE)
3910 && null_ptr_cst_p (args[1])))
3911 {
3912 type2 = type1;
3913 break;
3914 }
3915 return candidates;
3916
3917 default:
3918 my_friendly_abort (367);
3919 }
3920 type1 = build_reference_type (type1);
3921 break;
3922
3923 case COND_EXPR:
3924 /* Kludge around broken overloading rules whereby
3925 bool ? const char& : enum is ambiguous
3926 (between int and const char&). */
3927 flags |= LOOKUP_NO_TEMP_BIND;
3928
3929 /* Extension: Support ?: of enumeral type. Hopefully this will not
3930 be an extension for long. */
3931 if (TREE_CODE (type1) == ENUMERAL_TYPE && type1 == type2)
3932 break;
3933 else if (TREE_CODE (type1) == ENUMERAL_TYPE
3934 || TREE_CODE (type2) == ENUMERAL_TYPE)
3935 return candidates;
3936 if (ARITHMETIC_TYPE_P (type1) && ARITHMETIC_TYPE_P (type2))
3937 break;
3938 if (TREE_CODE (type1) == TREE_CODE (type2)
3939 && (TREE_CODE (type1) == REFERENCE_TYPE
3940 || TREE_CODE (type1) == POINTER_TYPE
3941 || TYPE_PTRMEMFUNC_P (type1)
3942 || IS_AGGR_TYPE (type1)))
3943 break;
3944 if (TREE_CODE (type1) == REFERENCE_TYPE
3945 || TREE_CODE (type2) == REFERENCE_TYPE)
3946 return candidates;
3947 if (((TYPE_PTRMEMFUNC_P (type1) || TREE_CODE (type1) == POINTER_TYPE)
3948 && null_ptr_cst_p (args[1]))
3949 || IS_AGGR_TYPE (type1))
3950 {
3951 type2 = type1;
3952 break;
3953 }
3954 if (((TYPE_PTRMEMFUNC_P (type2) || TREE_CODE (type2) == POINTER_TYPE)
3955 && null_ptr_cst_p (args[0]))
3956 || IS_AGGR_TYPE (type2))
3957 {
3958 type1 = type2;
3959 break;
3960 }
3961 return candidates;
3962
3963 default:
3964 my_friendly_abort (367);
3965 }
3966
3967 /* If we're dealing with two pointer types, we need candidates
3968 for both of them. */
3969 if (type2 && type1 != type2
3970 && TREE_CODE (type1) == TREE_CODE (type2)
3971 && (TREE_CODE (type1) == REFERENCE_TYPE
3972 || (TREE_CODE (type1) == POINTER_TYPE
3973 && TYPE_PTRMEM_P (type1) == TYPE_PTRMEM_P (type2))
3974 || TYPE_PTRMEMFUNC_P (type1)
3975 || IS_AGGR_TYPE (type1)))
3976 {
3977 candidates = build_builtin_candidate
3978 (candidates, fnname, type1, type1, args, argtypes, flags);
3979 return build_builtin_candidate
3980 (candidates, fnname, type2, type2, args, argtypes, flags);
3981 }
3982
3983 return build_builtin_candidate
3984 (candidates, fnname, type1, type2, args, argtypes, flags);
3985 }
3986
3987 tree
3988 type_decays_to (type)
3989 tree type;
3990 {
3991 if (TREE_CODE (type) == ARRAY_TYPE)
3992 return build_pointer_type (TREE_TYPE (type));
3993 if (TREE_CODE (type) == FUNCTION_TYPE)
3994 return build_pointer_type (type);
3995 return type;
3996 }
3997
3998 /* There are three conditions of builtin candidates:
3999
4000 1) bool-taking candidates. These are the same regardless of the input.
4001 2) pointer-pair taking candidates. These are generated for each type
4002 one of the input types converts to.
4003 3) arithmetic candidates. According to the WP, we should generate
4004 all of these, but I'm trying not to... */
4005
4006 static struct z_candidate *
4007 add_builtin_candidates (candidates, code, code2, fnname, args, flags)
4008 struct z_candidate *candidates;
4009 enum tree_code code, code2;
4010 tree fnname, *args;
4011 int flags;
4012 {
4013 int ref1, i;
4014 tree type, argtypes[3], types[2];
4015
4016 for (i = 0; i < 3; ++i)
4017 {
4018 if (args[i])
4019 argtypes[i] = lvalue_type (args[i]);
4020 else
4021 argtypes[i] = NULL_TREE;
4022 }
4023
4024 switch (code)
4025 {
4026 /* 4 For every pair T, VQ), where T is an arithmetic or enumeration type,
4027 and VQ is either volatile or empty, there exist candidate operator
4028 functions of the form
4029 VQ T& operator++(VQ T&); */
4030
4031 case POSTINCREMENT_EXPR:
4032 case PREINCREMENT_EXPR:
4033 case POSTDECREMENT_EXPR:
4034 case PREDECREMENT_EXPR:
4035 case MODIFY_EXPR:
4036 ref1 = 1;
4037 break;
4038
4039 /* 24There also exist candidate operator functions of the form
4040 bool operator!(bool);
4041 bool operator&&(bool, bool);
4042 bool operator||(bool, bool); */
4043
4044 case TRUTH_NOT_EXPR:
4045 return build_builtin_candidate
4046 (candidates, fnname, boolean_type_node,
4047 NULL_TREE, args, argtypes, flags);
4048
4049 case TRUTH_ORIF_EXPR:
4050 case TRUTH_ANDIF_EXPR:
4051 return build_builtin_candidate
4052 (candidates, fnname, boolean_type_node,
4053 boolean_type_node, args, argtypes, flags);
4054
4055 case ADDR_EXPR:
4056 case COMPOUND_EXPR:
4057 case COMPONENT_REF:
4058 return candidates;
4059
4060 default:
4061 ref1 = 0;
4062 }
4063
4064 types[0] = types[1] = NULL_TREE;
4065
4066 for (i = 0; i < 2; ++i)
4067 {
4068 if (! args[i])
4069 ;
4070 else if (IS_AGGR_TYPE (argtypes[i]))
4071 {
4072 tree convs = lookup_conversions (argtypes[i]);
4073
4074 if (code == COND_EXPR)
4075 {
4076 if (real_lvalue_p (args[i]))
4077 types[i] = tree_cons
4078 (NULL_TREE, build_reference_type (argtypes[i]), types[i]);
4079
4080 types[i] = tree_cons
4081 (NULL_TREE, TYPE_MAIN_VARIANT (argtypes[i]), types[i]);
4082 }
4083
4084 else if (! convs || (i == 0 && code == MODIFY_EXPR
4085 && code2 == NOP_EXPR))
4086 return candidates;
4087
4088 for (; convs; convs = TREE_CHAIN (convs))
4089 {
4090 type = TREE_TYPE (TREE_TYPE (TREE_VALUE (convs)));
4091
4092 if (i == 0 && ref1
4093 && (TREE_CODE (type) != REFERENCE_TYPE
4094 || TYPE_READONLY (TREE_TYPE (type))))
4095 continue;
4096
4097 if (code == COND_EXPR && TREE_CODE (type) == REFERENCE_TYPE)
4098 types[i] = tree_cons (NULL_TREE, type, types[i]);
4099
4100 type = non_reference (type);
4101 if (i != 0 || ! ref1)
4102 {
4103 type = TYPE_MAIN_VARIANT (type_decays_to (type));
4104 if (code == COND_EXPR && TREE_CODE (type) == ENUMERAL_TYPE)
4105 types[i] = tree_cons (NULL_TREE, type, types[i]);
4106 if (INTEGRAL_TYPE_P (type))
4107 type = type_promotes_to (type);
4108 }
4109
4110 if (! value_member (type, types[i]))
4111 types[i] = tree_cons (NULL_TREE, type, types[i]);
4112 }
4113 }
4114 else
4115 {
4116 if (code == COND_EXPR && real_lvalue_p (args[i]))
4117 types[i] = tree_cons
4118 (NULL_TREE, build_reference_type (argtypes[i]), types[i]);
4119 type = non_reference (argtypes[i]);
4120 if (i != 0 || ! ref1)
4121 {
4122 type = TYPE_MAIN_VARIANT (type_decays_to (type));
4123 if (code == COND_EXPR && TREE_CODE (type) == ENUMERAL_TYPE)
4124 types[i] = tree_cons (NULL_TREE, type, types[i]);
4125 if (INTEGRAL_TYPE_P (type))
4126 type = type_promotes_to (type);
4127 }
4128 types[i] = tree_cons (NULL_TREE, type, types[i]);
4129 }
4130 }
4131
4132 for (; types[0]; types[0] = TREE_CHAIN (types[0]))
4133 {
4134 if (types[1])
4135 for (type = types[1]; type; type = TREE_CHAIN (type))
4136 candidates = add_builtin_candidate
4137 (candidates, code, code2, fnname, TREE_VALUE (types[0]),
4138 TREE_VALUE (type), args, argtypes, flags);
4139 else
4140 candidates = add_builtin_candidate
4141 (candidates, code, code2, fnname, TREE_VALUE (types[0]),
4142 NULL_TREE, args, argtypes, flags);
4143 }
4144
4145 return candidates;
4146 }
4147
4148 /* If TMPL can be successfully instantiated as indicated by
4149 EXPLICIT_TARGS and ARGLIST, adds the instantiation to CANDIDATES.
4150
4151 TMPL is the template. EXPLICIT_TARGS are any explicit template arguments.
4152 ARGLIST is the arguments provided at the call-site. The RETURN_TYPE
4153 is the desired type for conversion operators. FLAGS are as for
4154 add_function_candidate. */
4155
4156 static struct z_candidate *
4157 add_template_candidate (candidates, tmpl, explicit_targs,
4158 arglist, return_type, flags)
4159 struct z_candidate *candidates;
4160 tree tmpl, explicit_targs, arglist, return_type;
4161 int flags;
4162 {
4163 int ntparms = DECL_NTPARMS (tmpl);
4164 tree targs = make_tree_vec (ntparms);
4165 struct z_candidate *cand;
4166 int i;
4167 tree fn;
4168
4169 i = fn_type_unification (tmpl, explicit_targs, targs, arglist,
4170 return_type, 0);
4171
4172 if (i != 0)
4173 return candidates;
4174
4175 fn = instantiate_template (tmpl, targs);
4176 if (fn == error_mark_node)
4177 return candidates;
4178
4179 cand = add_function_candidate (candidates, fn, arglist, flags);
4180 cand->template = DECL_TEMPLATE_INFO (fn);
4181 return cand;
4182 }
4183
4184
4185 static struct z_candidate *
4186 add_template_conv_candidate (candidates, tmpl, obj, arglist, return_type)
4187 struct z_candidate *candidates;
4188 tree tmpl, obj, arglist, return_type;
4189 {
4190 int ntparms = DECL_NTPARMS (tmpl);
4191 tree targs = make_tree_vec (ntparms);
4192 struct z_candidate *cand;
4193 int i;
4194 tree fn;
4195
4196 i = fn_type_unification (tmpl, NULL_TREE, targs, arglist, return_type, 0);
4197
4198 if (i != 0)
4199 return candidates;
4200
4201 fn = instantiate_template (tmpl, targs);
4202 if (fn == error_mark_node)
4203 return candidates;
4204
4205 cand = add_conv_candidate (candidates, fn, obj, arglist);
4206 cand->template = DECL_TEMPLATE_INFO (fn);
4207 return cand;
4208 }
4209
4210
4211 static int
4212 any_viable (cands)
4213 struct z_candidate *cands;
4214 {
4215 for (; cands; cands = cands->next)
4216 if (pedantic ? cands->viable == 1 : cands->viable)
4217 return 1;
4218 return 0;
4219 }
4220
4221 static struct z_candidate *
4222 splice_viable (cands)
4223 struct z_candidate *cands;
4224 {
4225 struct z_candidate **p = &cands;
4226
4227 for (; *p; )
4228 {
4229 if (pedantic ? (*p)->viable == 1 : (*p)->viable)
4230 p = &((*p)->next);
4231 else
4232 *p = (*p)->next;
4233 }
4234
4235 return cands;
4236 }
4237
4238 static tree
4239 build_this (obj)
4240 tree obj;
4241 {
4242 /* Fix this to work on non-lvalues. */
4243 if (IS_SIGNATURE_POINTER (TREE_TYPE (obj))
4244 || IS_SIGNATURE_REFERENCE (TREE_TYPE (obj)))
4245 return obj;
4246 else
4247 return build_unary_op (ADDR_EXPR, obj, 0);
4248 }
4249
4250 static void
4251 print_z_candidates (candidates)
4252 struct z_candidate *candidates;
4253 {
4254 char *str = "candidates are:";
4255 for (; candidates; candidates = candidates->next)
4256 {
4257 if (TREE_CODE (candidates->fn) == IDENTIFIER_NODE)
4258 {
4259 if (candidates->fn == ansi_opname [COND_EXPR])
4260 cp_error ("%s %D(%T, %T, %T) <builtin>", str, candidates->fn,
4261 TREE_TYPE (TREE_VEC_ELT (candidates->convs, 0)),
4262 TREE_TYPE (TREE_VEC_ELT (candidates->convs, 1)),
4263 TREE_TYPE (TREE_VEC_ELT (candidates->convs, 2)));
4264 else if (TREE_VEC_LENGTH (candidates->convs) == 2)
4265 cp_error ("%s %D(%T, %T) <builtin>", str, candidates->fn,
4266 TREE_TYPE (TREE_VEC_ELT (candidates->convs, 0)),
4267 TREE_TYPE (TREE_VEC_ELT (candidates->convs, 1)));
4268 else
4269 cp_error ("%s %D(%T) <builtin>", str, candidates->fn,
4270 TREE_TYPE (TREE_VEC_ELT (candidates->convs, 0)));
4271 }
4272 else
4273 cp_error_at ("%s %+D%s", str, candidates->fn,
4274 candidates->viable == -1 ? " <near match>" : "");
4275 str = " ";
4276 }
4277 }
4278
4279 /* Returns the best overload candidate to perform the requested
4280 conversion. This function is used for three the overloading situations
4281 described in [over.match.copy], [over.match.conv], and [over.match.ref].
4282 If TOTYPE is a REFERENCE_TYPE, we're trying to find an lvalue binding as
4283 per [dcl.init.ref], so we ignore temporary bindings. */
4284
4285 static struct z_candidate *
4286 build_user_type_conversion_1 (totype, expr, flags)
4287 tree totype, expr;
4288 int flags;
4289 {
4290 struct z_candidate *candidates, *cand;
4291 tree fromtype = TREE_TYPE (expr);
4292 tree ctors = NULL_TREE, convs = NULL_TREE, *p;
4293 tree args;
4294 tree templates = NULL_TREE;
4295
4296 if (IS_AGGR_TYPE (totype))
4297 ctors = lookup_fnfields (TYPE_BINFO (totype), ctor_identifier, 0);
4298 if (IS_AGGR_TYPE (fromtype)
4299 && (! IS_AGGR_TYPE (totype) || ! DERIVED_FROM_P (totype, fromtype)))
4300 convs = lookup_conversions (fromtype);
4301
4302 candidates = 0;
4303 flags |= LOOKUP_NO_CONVERSION;
4304
4305 if (ctors)
4306 {
4307 tree t = build_int_2 (0, 0);
4308 TREE_TYPE (t) = build_pointer_type (totype);
4309 args = build_tree_list (NULL_TREE, expr);
4310 if (TYPE_USES_VIRTUAL_BASECLASSES (totype))
4311 args = tree_cons (NULL_TREE, integer_one_node, args);
4312 args = tree_cons (NULL_TREE, t, args);
4313
4314 ctors = TREE_VALUE (ctors);
4315 }
4316 for (; ctors; ctors = DECL_CHAIN (ctors))
4317 {
4318 if (DECL_NONCONVERTING_P (ctors))
4319 continue;
4320
4321 if (TREE_CODE (ctors) == TEMPLATE_DECL)
4322 {
4323 templates = decl_tree_cons (NULL_TREE, ctors, templates);
4324 candidates =
4325 add_template_candidate (candidates, ctors,
4326 NULL_TREE, args, NULL_TREE, flags);
4327 }
4328 else
4329 candidates = add_function_candidate (candidates, ctors,
4330 args, flags);
4331
4332 if (candidates)
4333 {
4334 candidates->second_conv = build1 (IDENTITY_CONV, totype, NULL_TREE);
4335 candidates->basetype_path = TYPE_BINFO (totype);
4336 }
4337 }
4338
4339 if (convs)
4340 args = build_tree_list (NULL_TREE, build_this (expr));
4341
4342 for (; convs; convs = TREE_CHAIN (convs))
4343 {
4344 tree fn = TREE_VALUE (convs);
4345 int convflags = LOOKUP_NO_CONVERSION;
4346 tree ics;
4347
4348 /* If we are called to convert to a reference type, we are trying to
4349 find an lvalue binding, so don't even consider temporaries. If
4350 we don't find an lvalue binding, the caller will try again to
4351 look for a temporary binding. */
4352 if (TREE_CODE (totype) == REFERENCE_TYPE)
4353 convflags |= LOOKUP_NO_TEMP_BIND;
4354
4355 ics = implicit_conversion
4356 (totype, TREE_TYPE (TREE_TYPE (fn)), 0, convflags);
4357
4358 if (TREE_CODE (totype) == REFERENCE_TYPE && ics && ICS_BAD_FLAG (ics))
4359 /* ignore the near match. */;
4360 else if (ics)
4361 for (; fn; fn = DECL_CHAIN (fn))
4362 {
4363 if (TREE_CODE (fn) == TEMPLATE_DECL)
4364 {
4365 templates = decl_tree_cons (NULL_TREE, fn, templates);
4366 candidates =
4367 add_template_candidate (candidates, fn, NULL_TREE,
4368 args, totype, flags);
4369 }
4370 else
4371 candidates = add_function_candidate (candidates, fn,
4372 args, flags);
4373
4374 if (candidates)
4375 {
4376 candidates->second_conv = ics;
4377 candidates->basetype_path = TREE_PURPOSE (convs);
4378 if (candidates->viable == 1 && ICS_BAD_FLAG (ics))
4379 candidates->viable = -1;
4380 }
4381 }
4382 }
4383
4384 if (! any_viable (candidates))
4385 {
4386 #if 0
4387 if (flags & LOOKUP_COMPLAIN)
4388 {
4389 if (candidates && ! candidates->next)
4390 /* say why this one won't work or try to be loose */;
4391 else
4392 cp_error ("no viable candidates");
4393 }
4394 #endif
4395
4396 return 0;
4397 }
4398
4399 candidates = splice_viable (candidates);
4400 cand = tourney (candidates);
4401
4402 if (cand == 0)
4403 {
4404 if (flags & LOOKUP_COMPLAIN)
4405 {
4406 cp_error ("conversion from `%T' to `%T' is ambiguous",
4407 fromtype, totype);
4408 print_z_candidates (candidates);
4409 }
4410
4411 cand = candidates; /* any one will do */
4412 cand->second_conv = build1 (AMBIG_CONV, totype, expr);
4413 ICS_USER_FLAG (cand->second_conv) = 1;
4414 ICS_BAD_FLAG (cand->second_conv) = 1;
4415
4416 return cand;
4417 }
4418
4419 for (p = &(cand->second_conv); TREE_CODE (*p) != IDENTITY_CONV; )
4420 p = &(TREE_OPERAND (*p, 0));
4421
4422 /* Pedantically, normal function declarations are never considered
4423 to refer to template instantiations, so we only do this with
4424 -fguiding-decls. */
4425 if (flag_guiding_decls && templates && ! cand->template
4426 && !DECL_INITIAL (cand->fn)
4427 && TREE_CODE (TREE_TYPE (cand->fn)) != METHOD_TYPE)
4428 add_maybe_template (cand->fn, templates);
4429
4430 *p = build
4431 (USER_CONV,
4432 (DECL_CONSTRUCTOR_P (cand->fn)
4433 ? totype : non_reference (TREE_TYPE (TREE_TYPE (cand->fn)))),
4434 expr, cand->fn, cand->convs, cand->basetype_path);
4435 ICS_USER_FLAG (cand->second_conv) = 1;
4436 if (cand->viable == -1)
4437 ICS_BAD_FLAG (cand->second_conv) = 1;
4438
4439 return cand;
4440 }
4441
4442 tree
4443 build_user_type_conversion (totype, expr, flags)
4444 tree totype, expr;
4445 int flags;
4446 {
4447 struct z_candidate *cand
4448 = build_user_type_conversion_1 (totype, expr, flags);
4449
4450 if (cand)
4451 {
4452 if (TREE_CODE (cand->second_conv) == AMBIG_CONV)
4453 return error_mark_node;
4454 return convert_from_reference (convert_like (cand->second_conv, expr));
4455 }
4456 return NULL_TREE;
4457 }
4458
4459 /* Do any initial processing on the arguments to a function call. */
4460
4461 static tree
4462 resolve_args (args)
4463 tree args;
4464 {
4465 tree t;
4466 for (t = args; t; t = TREE_CHAIN (t))
4467 {
4468 if (TREE_VALUE (t) == error_mark_node)
4469 return error_mark_node;
4470 else if (TREE_CODE (TREE_TYPE (TREE_VALUE (t))) == VOID_TYPE)
4471 {
4472 error ("invalid use of void expression");
4473 return error_mark_node;
4474 }
4475 else if (TREE_CODE (TREE_VALUE (t)) == OFFSET_REF)
4476 TREE_VALUE (t) = resolve_offset_ref (TREE_VALUE (t));
4477 }
4478 return args;
4479 }
4480
4481 tree
4482 build_new_function_call (fn, args, obj)
4483 tree fn, args, obj;
4484 {
4485 struct z_candidate *candidates = 0, *cand;
4486 tree explicit_targs = NULL_TREE;
4487
4488 if (TREE_CODE (fn) == TEMPLATE_ID_EXPR)
4489 {
4490 explicit_targs = TREE_OPERAND (fn, 1);
4491 fn = TREE_OPERAND (fn, 0);
4492 }
4493
4494 if (obj == NULL_TREE && really_overloaded_fn (fn))
4495 {
4496 tree t;
4497 tree templates = NULL_TREE;
4498
4499 args = resolve_args (args);
4500
4501 if (args == error_mark_node)
4502 return error_mark_node;
4503
4504 for (t = TREE_VALUE (fn); t; t = DECL_CHAIN (t))
4505 {
4506 if (TREE_CODE (t) == TEMPLATE_DECL)
4507 {
4508 templates = decl_tree_cons (NULL_TREE, t, templates);
4509 candidates = add_template_candidate
4510 (candidates, t, explicit_targs, args, NULL_TREE,
4511 LOOKUP_NORMAL);
4512 }
4513 else if (explicit_targs == NULL_TREE)
4514 candidates = add_function_candidate
4515 (candidates, t, args, LOOKUP_NORMAL);
4516 }
4517
4518 if (! any_viable (candidates))
4519 {
4520 if (candidates && ! candidates->next)
4521 return build_function_call (candidates->fn, args);
4522 cp_error ("no matching function for call to `%D (%A)'",
4523 TREE_PURPOSE (fn), args);
4524 if (candidates)
4525 print_z_candidates (candidates);
4526 return error_mark_node;
4527 }
4528 candidates = splice_viable (candidates);
4529 cand = tourney (candidates);
4530
4531 if (cand == 0)
4532 {
4533 cp_error ("call of overloaded `%D (%A)' is ambiguous",
4534 TREE_PURPOSE (fn), args);
4535 print_z_candidates (candidates);
4536 return error_mark_node;
4537 }
4538
4539 /* Pedantically, normal function declarations are never considered
4540 to refer to template instantiations, so we only do this with
4541 -fguiding-decls. */
4542 if (flag_guiding_decls && templates && ! cand->template
4543 && ! DECL_INITIAL (cand->fn))
4544 add_maybe_template (cand->fn, templates);
4545
4546 return build_over_call (cand->fn, cand->convs, args, LOOKUP_NORMAL);
4547 }
4548
4549 return build_function_call (fn, args);
4550 }
4551
4552 static tree
4553 build_object_call (obj, args)
4554 tree obj, args;
4555 {
4556 struct z_candidate *candidates = 0, *cand;
4557 tree fns, convs, mem_args;
4558 tree type = TREE_TYPE (obj);
4559 tree templates = NULL_TREE;
4560
4561 fns = lookup_fnfields (TYPE_BINFO (type), ansi_opname [CALL_EXPR], 0);
4562
4563 args = resolve_args (args);
4564
4565 if (args == error_mark_node)
4566 return error_mark_node;
4567
4568 if (fns)
4569 {
4570 tree fn = TREE_VALUE (fns);
4571 mem_args = tree_cons (NULL_TREE, build_this (obj), args);
4572
4573 for (; fn; fn = DECL_CHAIN (fn))
4574 {
4575 if (TREE_CODE (fn) == TEMPLATE_DECL)
4576 {
4577 templates = decl_tree_cons (NULL_TREE, fn, templates);
4578 candidates
4579 = add_template_candidate (candidates, fn, NULL_TREE,
4580 mem_args, NULL_TREE,
4581 LOOKUP_NORMAL);
4582 }
4583 else
4584 candidates = add_function_candidate
4585 (candidates, fn, mem_args, LOOKUP_NORMAL);
4586
4587 if (candidates)
4588 candidates->basetype_path = TREE_PURPOSE (fns);
4589 }
4590 }
4591
4592 convs = lookup_conversions (type);
4593
4594 for (; convs; convs = TREE_CHAIN (convs))
4595 {
4596 tree fn = TREE_VALUE (convs);
4597 tree totype = TREE_TYPE (TREE_TYPE (fn));
4598
4599 if (TREE_CODE (totype) == POINTER_TYPE
4600 && TREE_CODE (TREE_TYPE (totype)) == FUNCTION_TYPE)
4601 for (; fn; fn = DECL_CHAIN (fn))
4602 {
4603 if (TREE_CODE (fn) == TEMPLATE_DECL)
4604 {
4605 templates = decl_tree_cons (NULL_TREE, fn, templates);
4606 candidates = add_template_conv_candidate (candidates,
4607 fn,
4608 obj,
4609 args,
4610 totype);
4611 }
4612 else
4613 candidates = add_conv_candidate (candidates, fn, obj, args);
4614
4615 if (candidates)
4616 candidates->basetype_path = TREE_PURPOSE (convs);
4617 }
4618 }
4619
4620 if (! any_viable (candidates))
4621 {
4622 cp_error ("no match for call to `(%T) (%A)'", TREE_TYPE (obj), args);
4623 print_z_candidates (candidates);
4624 return error_mark_node;
4625 }
4626
4627 candidates = splice_viable (candidates);
4628 cand = tourney (candidates);
4629
4630 if (cand == 0)
4631 {
4632 cp_error ("call of `(%T) (%A)' is ambiguous", TREE_TYPE (obj), args);
4633 print_z_candidates (candidates);
4634 return error_mark_node;
4635 }
4636
4637 if (DECL_NAME (cand->fn) == ansi_opname [CALL_EXPR])
4638 return build_over_call (cand->fn, cand->convs, mem_args, LOOKUP_NORMAL);
4639
4640 obj = convert_like (TREE_VEC_ELT (cand->convs, 0), obj);
4641
4642 /* FIXME */
4643 return build_function_call (obj, args);
4644 }
4645
4646 static void
4647 op_error (code, code2, arg1, arg2, arg3, problem)
4648 enum tree_code code, code2;
4649 tree arg1, arg2, arg3;
4650 char *problem;
4651 {
4652 char * opname
4653 = (code == MODIFY_EXPR ? assignop_tab [code2] : opname_tab [code]);
4654
4655 switch (code)
4656 {
4657 case COND_EXPR:
4658 cp_error ("%s for `%T ? %T : %T'", problem,
4659 error_type (arg1), error_type (arg2), error_type (arg3));
4660 break;
4661 case POSTINCREMENT_EXPR:
4662 case POSTDECREMENT_EXPR:
4663 cp_error ("%s for `%T%s'", problem, error_type (arg1), opname);
4664 break;
4665 case ARRAY_REF:
4666 cp_error ("%s for `%T[%T]'", problem,
4667 error_type (arg1), error_type (arg2));
4668 break;
4669 default:
4670 if (arg2)
4671 cp_error ("%s for `%T %s %T'", problem,
4672 error_type (arg1), opname, error_type (arg2));
4673 else
4674 cp_error ("%s for `%s%T'", problem, opname, error_type (arg1));
4675 }
4676 }
4677
4678 tree
4679 build_new_op (code, flags, arg1, arg2, arg3)
4680 enum tree_code code;
4681 int flags;
4682 tree arg1, arg2, arg3;
4683 {
4684 struct z_candidate *candidates = 0, *cand;
4685 tree fns, mem_arglist, arglist, fnname;
4686 enum tree_code code2 = NOP_EXPR;
4687 tree templates = NULL_TREE;
4688 tree conv;
4689
4690 if (arg1 == error_mark_node
4691 || arg2 == error_mark_node
4692 || arg3 == error_mark_node)
4693 return error_mark_node;
4694
4695 /* This can happen if a template takes all non-type parameters, e.g.
4696 undeclared_template<1, 5, 72>a; */
4697 if (code == LT_EXPR && TREE_CODE (arg1) == TEMPLATE_DECL)
4698 {
4699 cp_error ("`%D' must be declared before use", arg1);
4700 return error_mark_node;
4701 }
4702
4703 if (code == MODIFY_EXPR)
4704 {
4705 code2 = TREE_CODE (arg3);
4706 arg3 = NULL_TREE;
4707 fnname = ansi_assopname[code2];
4708 }
4709 else
4710 fnname = ansi_opname[code];
4711
4712 switch (code)
4713 {
4714 case NEW_EXPR:
4715 case VEC_NEW_EXPR:
4716 {
4717 tree rval;
4718
4719 arglist = tree_cons (NULL_TREE, arg2, arg3);
4720 if (flags & LOOKUP_GLOBAL)
4721 return build_new_function_call
4722 (lookup_name_nonclass (fnname), arglist, NULL_TREE);
4723
4724 /* FIXME */
4725 rval = build_method_call
4726 (build_indirect_ref (build1 (NOP_EXPR, arg1, error_mark_node),
4727 "new"),
4728 fnname, arglist, NULL_TREE, flags);
4729 if (rval == error_mark_node)
4730 /* User might declare fancy operator new, but invoke it
4731 like standard one. */
4732 return rval;
4733
4734 TREE_TYPE (rval) = arg1;
4735 TREE_CALLS_NEW (rval) = 1;
4736 return rval;
4737 }
4738
4739 case VEC_DELETE_EXPR:
4740 case DELETE_EXPR:
4741 {
4742 tree rval;
4743
4744 if (flags & LOOKUP_GLOBAL)
4745 return build_new_function_call
4746 (lookup_name_nonclass (fnname),
4747 build_tree_list (NULL_TREE, arg1), NULL_TREE);
4748
4749 arglist = tree_cons (NULL_TREE, arg1, build_tree_list (NULL_TREE, arg2));
4750
4751 arg1 = TREE_TYPE (arg1);
4752
4753 /* This handles the case where we're trying to delete
4754 X (*a)[10];
4755 a=new X[5][10];
4756 delete[] a; */
4757
4758 if (TREE_CODE (TREE_TYPE (arg1)) == ARRAY_TYPE)
4759 {
4760 /* Strip off the pointer and the array. */
4761 arg1 = TREE_TYPE (TREE_TYPE (arg1));
4762
4763 while (TREE_CODE (arg1) == ARRAY_TYPE)
4764 arg1 = (TREE_TYPE (arg1));
4765
4766 arg1 = build_pointer_type (arg1);
4767 }
4768
4769 /* FIXME */
4770 rval = build_method_call
4771 (build_indirect_ref (build1 (NOP_EXPR, arg1,
4772 error_mark_node),
4773 NULL_PTR),
4774 fnname, arglist, NULL_TREE, flags);
4775 #if 0
4776 /* This can happen when operator delete is protected. */
4777 my_friendly_assert (rval != error_mark_node, 250);
4778 TREE_TYPE (rval) = void_type_node;
4779 #endif
4780 return rval;
4781 }
4782
4783 case CALL_EXPR:
4784 return build_object_call (arg1, arg2);
4785 }
4786
4787 /* The comma operator can have void args. */
4788 if (TREE_CODE (arg1) == OFFSET_REF)
4789 arg1 = resolve_offset_ref (arg1);
4790 if (arg2 && TREE_CODE (arg2) == OFFSET_REF)
4791 arg2 = resolve_offset_ref (arg2);
4792 if (arg3 && TREE_CODE (arg3) == OFFSET_REF)
4793 arg3 = resolve_offset_ref (arg3);
4794
4795 if (code == COND_EXPR)
4796 {
4797 if (arg2 == NULL_TREE
4798 || TREE_CODE (TREE_TYPE (arg2)) == VOID_TYPE
4799 || TREE_CODE (TREE_TYPE (arg3)) == VOID_TYPE
4800 || (! IS_OVERLOAD_TYPE (TREE_TYPE (arg2))
4801 && ! IS_OVERLOAD_TYPE (TREE_TYPE (arg3))))
4802 goto builtin;
4803 }
4804 else if (! IS_OVERLOAD_TYPE (TREE_TYPE (arg1))
4805 && (! arg2 || ! IS_OVERLOAD_TYPE (TREE_TYPE (arg2))))
4806 goto builtin;
4807
4808 if (code == POSTINCREMENT_EXPR || code == POSTDECREMENT_EXPR)
4809 arg2 = integer_zero_node;
4810
4811 fns = lookup_name_nonclass (fnname);
4812 /* + Koenig lookup */
4813
4814 if (arg2 && arg3)
4815 arglist = tree_cons (NULL_TREE, arg1, tree_cons
4816 (NULL_TREE, arg2, build_tree_list (NULL_TREE, arg3)));
4817 else if (arg2)
4818 arglist = tree_cons (NULL_TREE, arg1, build_tree_list (NULL_TREE, arg2));
4819 else
4820 arglist = build_tree_list (NULL_TREE, arg1);
4821
4822 if (fns && TREE_CODE (fns) == TREE_LIST)
4823 fns = TREE_VALUE (fns);
4824 for (; fns; fns = DECL_CHAIN (fns))
4825 {
4826 if (TREE_CODE (fns) == TEMPLATE_DECL)
4827 {
4828 templates = decl_tree_cons (NULL_TREE, fns, templates);
4829 candidates
4830 = add_template_candidate (candidates, fns, NULL_TREE,
4831 arglist, TREE_TYPE (fnname),
4832 flags);
4833 }
4834 else
4835 candidates = add_function_candidate (candidates, fns, arglist, flags);
4836 }
4837
4838 if (IS_AGGR_TYPE (TREE_TYPE (arg1)))
4839 fns = lookup_fnfields (TYPE_BINFO (TREE_TYPE (arg1)), fnname, 0);
4840 else
4841 fns = NULL_TREE;
4842
4843 if (fns)
4844 {
4845 tree fn = TREE_VALUE (fns);
4846 mem_arglist = tree_cons (NULL_TREE, build_this (arg1), TREE_CHAIN (arglist));
4847 for (; fn; fn = DECL_CHAIN (fn))
4848 {
4849 tree this_arglist;
4850
4851 if (TREE_CODE (TREE_TYPE (fn)) == METHOD_TYPE)
4852 this_arglist = mem_arglist;
4853 else
4854 this_arglist = arglist;
4855
4856 if (TREE_CODE (fn) == TEMPLATE_DECL)
4857 {
4858 /* A member template. */
4859 templates = decl_tree_cons (NULL_TREE, fn, templates);
4860 candidates
4861 = add_template_candidate (candidates, fn, NULL_TREE,
4862 this_arglist, TREE_TYPE
4863 (fnname), LOOKUP_NORMAL);
4864 }
4865 else
4866 candidates = add_function_candidate
4867 (candidates, fn, this_arglist, flags);
4868
4869 if (candidates)
4870 candidates->basetype_path = TREE_PURPOSE (fns);
4871 }
4872 }
4873
4874 {
4875 tree args[3];
4876
4877 /* Rearrange the arguments for ?: so that add_builtin_candidate only has
4878 to know about two args; a builtin candidate will always have a first
4879 parameter of type bool. We'll handle that in
4880 build_builtin_candidate. */
4881 if (code == COND_EXPR)
4882 {
4883 args[0] = arg2;
4884 args[1] = arg3;
4885 args[2] = arg1;
4886 }
4887 else
4888 {
4889 args[0] = arg1;
4890 args[1] = arg2;
4891 args[2] = NULL_TREE;
4892 }
4893
4894 candidates = add_builtin_candidates
4895 (candidates, code, code2, fnname, args, flags);
4896 }
4897
4898 if (! any_viable (candidates))
4899 {
4900 switch (code)
4901 {
4902 case POSTINCREMENT_EXPR:
4903 case POSTDECREMENT_EXPR:
4904 /* Look for an `operator++ (int)'. If they didn't have
4905 one, then we fall back to the old way of doing things. */
4906 if (flags & LOOKUP_COMPLAIN)
4907 cp_pedwarn ("no `%D (int)' declared for postfix `%s', trying prefix operator instead",
4908 fnname, opname_tab [code]);
4909 if (code == POSTINCREMENT_EXPR)
4910 code = PREINCREMENT_EXPR;
4911 else
4912 code = PREDECREMENT_EXPR;
4913 return build_new_op (code, flags, arg1, NULL_TREE, NULL_TREE);
4914
4915 /* The caller will deal with these. */
4916 case ADDR_EXPR:
4917 case COMPOUND_EXPR:
4918 case COMPONENT_REF:
4919 return NULL_TREE;
4920 }
4921 if (flags & LOOKUP_COMPLAIN)
4922 {
4923 op_error (code, code2, arg1, arg2, arg3, "no match");
4924 print_z_candidates (candidates);
4925 }
4926 return error_mark_node;
4927 }
4928 candidates = splice_viable (candidates);
4929 cand = tourney (candidates);
4930
4931 if (cand == 0)
4932 {
4933 if (flags & LOOKUP_COMPLAIN)
4934 {
4935 op_error (code, code2, arg1, arg2, arg3, "ambiguous overload");
4936 print_z_candidates (candidates);
4937 }
4938 return error_mark_node;
4939 }
4940
4941 if (TREE_CODE (cand->fn) == FUNCTION_DECL)
4942 {
4943 extern int warn_synth;
4944 if (warn_synth
4945 && fnname == ansi_opname[MODIFY_EXPR]
4946 && DECL_ARTIFICIAL (cand->fn)
4947 && candidates->next
4948 && ! candidates->next->next)
4949 {
4950 cp_warning ("using synthesized `%#D' for copy assignment",
4951 cand->fn);
4952 cp_warning_at (" where cfront would use `%#D'",
4953 cand == candidates
4954 ? candidates->next->fn
4955 : candidates->fn);
4956 }
4957
4958 if (DECL_FUNCTION_MEMBER_P (cand->fn))
4959 enforce_access (cand->basetype_path, cand->fn);
4960
4961 /* Pedantically, normal function declarations are never considered
4962 to refer to template instantiations, so we only do this with
4963 -fguiding-decls. */
4964 if (flag_guiding_decls && templates && ! cand->template
4965 && ! DECL_INITIAL (cand->fn)
4966 && TREE_CODE (TREE_TYPE (cand->fn)) != METHOD_TYPE)
4967 add_maybe_template (cand->fn, templates);
4968
4969 return build_over_call
4970 (cand->fn, cand->convs,
4971 TREE_CODE (TREE_TYPE (cand->fn)) == METHOD_TYPE
4972 ? mem_arglist : arglist,
4973 LOOKUP_NORMAL);
4974 }
4975
4976 /* Check for comparison of different enum types. */
4977 switch (code)
4978 {
4979 case GT_EXPR:
4980 case LT_EXPR:
4981 case GE_EXPR:
4982 case LE_EXPR:
4983 case EQ_EXPR:
4984 case NE_EXPR:
4985 if (flag_int_enum_equivalence == 0
4986 && TREE_CODE (TREE_TYPE (arg1)) == ENUMERAL_TYPE
4987 && TREE_CODE (TREE_TYPE (arg2)) == ENUMERAL_TYPE
4988 && (TYPE_MAIN_VARIANT (TREE_TYPE (arg1))
4989 != TYPE_MAIN_VARIANT (TREE_TYPE (arg2))))
4990 {
4991 cp_warning ("comparison between `%#T' and `%#T'",
4992 TREE_TYPE (arg1), TREE_TYPE (arg2));
4993 }
4994 }
4995
4996 /* We need to strip any leading REF_BIND so that bitfields don't cause
4997 errors. This should not remove any important conversions, because
4998 builtins don't apply to class objects directly. */
4999 conv = TREE_VEC_ELT (cand->convs, 0);
5000 if (TREE_CODE (conv) == REF_BIND)
5001 conv = TREE_OPERAND (conv, 0);
5002 arg1 = convert_like (conv, arg1);
5003 if (arg2)
5004 arg2 = convert_like (TREE_VEC_ELT (cand->convs, 1), arg2);
5005 if (arg3)
5006 arg3 = convert_like (TREE_VEC_ELT (cand->convs, 2), arg3);
5007
5008 builtin:
5009 switch (code)
5010 {
5011 case MODIFY_EXPR:
5012 return build_modify_expr (arg1, code2, arg2);
5013
5014 case INDIRECT_REF:
5015 return build_indirect_ref (arg1, "unary *");
5016
5017 case PLUS_EXPR:
5018 case MINUS_EXPR:
5019 case MULT_EXPR:
5020 case TRUNC_DIV_EXPR:
5021 case GT_EXPR:
5022 case LT_EXPR:
5023 case GE_EXPR:
5024 case LE_EXPR:
5025 case EQ_EXPR:
5026 case NE_EXPR:
5027 case MAX_EXPR:
5028 case MIN_EXPR:
5029 case LSHIFT_EXPR:
5030 case RSHIFT_EXPR:
5031 case TRUNC_MOD_EXPR:
5032 case BIT_AND_EXPR:
5033 case BIT_IOR_EXPR:
5034 case BIT_XOR_EXPR:
5035 case TRUTH_ANDIF_EXPR:
5036 case TRUTH_ORIF_EXPR:
5037 return build_binary_op_nodefault (code, arg1, arg2, code);
5038
5039 case CONVERT_EXPR:
5040 case NEGATE_EXPR:
5041 case BIT_NOT_EXPR:
5042 case TRUTH_NOT_EXPR:
5043 case PREINCREMENT_EXPR:
5044 case POSTINCREMENT_EXPR:
5045 case PREDECREMENT_EXPR:
5046 case POSTDECREMENT_EXPR:
5047 case REALPART_EXPR:
5048 case IMAGPART_EXPR:
5049 return build_unary_op (code, arg1, candidates != 0);
5050
5051 case ARRAY_REF:
5052 return build_array_ref (arg1, arg2);
5053
5054 case COND_EXPR:
5055 return build_conditional_expr (arg1, arg2, arg3);
5056
5057 case MEMBER_REF:
5058 return build_m_component_ref
5059 (build_indirect_ref (arg1, NULL_PTR), arg2);
5060
5061 /* The caller will deal with these. */
5062 case ADDR_EXPR:
5063 case COMPONENT_REF:
5064 case COMPOUND_EXPR:
5065 return NULL_TREE;
5066
5067 default:
5068 my_friendly_abort (367);
5069 }
5070 }
5071
5072 static void
5073 enforce_access (basetype_path, function)
5074 tree basetype_path, function;
5075 {
5076 tree access = compute_access (basetype_path, function);
5077
5078 if (access == access_private_node)
5079 {
5080 cp_error_at ("`%+#D' is %s", function,
5081 TREE_PRIVATE (function) ? "private"
5082 : "from private base class");
5083 error ("within this context");
5084 }
5085 else if (access == access_protected_node)
5086 {
5087 cp_error_at ("`%+#D' %s", function,
5088 TREE_PROTECTED (function) ? "is protected"
5089 : "has protected accessibility");
5090 error ("within this context");
5091 }
5092 }
5093
5094 /* Perform the conversions in CONVS on the expression EXPR. */
5095
5096 static tree
5097 convert_like (convs, expr)
5098 tree convs, expr;
5099 {
5100 if (ICS_BAD_FLAG (convs)
5101 && TREE_CODE (convs) != USER_CONV
5102 && TREE_CODE (convs) != AMBIG_CONV)
5103 {
5104 tree t = convs;
5105 for (; t; t = TREE_OPERAND (t, 0))
5106 {
5107 if (TREE_CODE (t) == USER_CONV)
5108 {
5109 expr = convert_like (t, expr);
5110 break;
5111 }
5112 else if (TREE_CODE (t) == AMBIG_CONV)
5113 return convert_like (t, expr);
5114 else if (TREE_CODE (t) == IDENTITY_CONV)
5115 break;
5116 }
5117 return convert_for_initialization
5118 (NULL_TREE, TREE_TYPE (convs), expr, LOOKUP_NORMAL,
5119 "conversion", NULL_TREE, 0);
5120 }
5121
5122 switch (TREE_CODE (convs))
5123 {
5124 case USER_CONV:
5125 {
5126 tree fn = TREE_OPERAND (convs, 1);
5127 tree args;
5128 enforce_access (TREE_OPERAND (convs, 3), fn);
5129
5130 if (DECL_CONSTRUCTOR_P (fn))
5131 {
5132 tree t = build_int_2 (0, 0);
5133 TREE_TYPE (t) = build_pointer_type (DECL_CONTEXT (fn));
5134
5135 args = build_tree_list (NULL_TREE, expr);
5136 if (TYPE_USES_VIRTUAL_BASECLASSES (DECL_CONTEXT (fn)))
5137 args = tree_cons (NULL_TREE, integer_one_node, args);
5138 args = tree_cons (NULL_TREE, t, args);
5139 }
5140 else
5141 args = build_this (expr);
5142 expr = build_over_call
5143 (TREE_OPERAND (convs, 1), TREE_OPERAND (convs, 2),
5144 args, LOOKUP_NORMAL);
5145
5146 /* If this is a constructor or a function returning an aggr type,
5147 we need to build up a TARGET_EXPR. */
5148 if (DECL_CONSTRUCTOR_P (fn))
5149 expr = build_cplus_new (TREE_TYPE (convs), expr);
5150
5151 return expr;
5152 }
5153 case IDENTITY_CONV:
5154 if (type_unknown_p (expr))
5155 expr = instantiate_type (TREE_TYPE (convs), expr, 1);
5156 if (TREE_READONLY_DECL_P (expr))
5157 expr = decl_constant_value (expr);
5158 return expr;
5159 case AMBIG_CONV:
5160 /* Call build_user_type_conversion again for the error. */
5161 return build_user_type_conversion
5162 (TREE_TYPE (convs), TREE_OPERAND (convs, 0), LOOKUP_NORMAL);
5163 };
5164
5165 expr = convert_like (TREE_OPERAND (convs, 0), expr);
5166 if (expr == error_mark_node)
5167 return error_mark_node;
5168
5169 switch (TREE_CODE (convs))
5170 {
5171 case RVALUE_CONV:
5172 if (! IS_AGGR_TYPE (TREE_TYPE (convs)))
5173 return expr;
5174 /* else fall through */
5175 case BASE_CONV:
5176 return build_user_type_conversion
5177 (TREE_TYPE (convs), expr, LOOKUP_NORMAL);
5178 case REF_BIND:
5179 return convert_to_reference
5180 (TREE_TYPE (convs), expr,
5181 CONV_IMPLICIT, LOOKUP_NORMAL|LOOKUP_NO_CONVERSION,
5182 error_mark_node);
5183 case LVALUE_CONV:
5184 return decay_conversion (expr);
5185 }
5186 return ocp_convert (TREE_TYPE (convs), expr, CONV_IMPLICIT,
5187 LOOKUP_NORMAL|LOOKUP_NO_CONVERSION);
5188 }
5189
5190 static tree
5191 convert_default_arg (type, arg)
5192 tree type, arg;
5193 {
5194 arg = break_out_target_exprs (arg);
5195
5196 if (TREE_CODE (arg) == CONSTRUCTOR)
5197 {
5198 arg = digest_init (type, arg, 0);
5199 arg = convert_for_initialization (0, type, arg, LOOKUP_NORMAL,
5200 "default argument", 0, 0);
5201 }
5202 else
5203 {
5204 /* This could get clobbered by the following call. */
5205 if (TREE_HAS_CONSTRUCTOR (arg))
5206 arg = copy_node (arg);
5207
5208 arg = convert_for_initialization (0, type, arg, LOOKUP_NORMAL,
5209 "default argument", 0, 0);
5210 #ifdef PROMOTE_PROTOTYPES
5211 if ((TREE_CODE (type) == INTEGER_TYPE
5212 || TREE_CODE (type) == ENUMERAL_TYPE)
5213 && (TYPE_PRECISION (type) < TYPE_PRECISION (integer_type_node)))
5214 arg = default_conversion (arg);
5215 #endif
5216 }
5217
5218 return arg;
5219 }
5220
5221 static tree
5222 build_over_call (fn, convs, args, flags)
5223 tree fn, convs, args;
5224 int flags;
5225 {
5226 tree converted_args = NULL_TREE;
5227 tree parm = TYPE_ARG_TYPES (TREE_TYPE (fn));
5228 tree conv, arg, val;
5229 int i = 0;
5230 int is_method = 0;
5231
5232 if (args && TREE_CODE (args) != TREE_LIST)
5233 args = build_tree_list (NULL_TREE, args);
5234 arg = args;
5235
5236 /* The implicit parameters to a constructor are not considered by overload
5237 resolution, and must be of the proper type. */
5238 if (DECL_CONSTRUCTOR_P (fn))
5239 {
5240 converted_args = tree_cons (NULL_TREE, TREE_VALUE (arg), converted_args);
5241 arg = TREE_CHAIN (arg);
5242 parm = TREE_CHAIN (parm);
5243 if (TYPE_USES_VIRTUAL_BASECLASSES (DECL_CONTEXT (fn)))
5244 {
5245 converted_args = tree_cons
5246 (NULL_TREE, TREE_VALUE (arg), converted_args);
5247 arg = TREE_CHAIN (arg);
5248 parm = TREE_CHAIN (parm);
5249 }
5250 }
5251 /* Bypass access control for 'this' parameter. */
5252 else if (TREE_CODE (TREE_TYPE (fn)) == METHOD_TYPE)
5253 {
5254 tree parmtype = TREE_VALUE (parm);
5255 tree argtype = TREE_TYPE (TREE_VALUE (arg));
5256 if (ICS_BAD_FLAG (TREE_VEC_ELT (convs, i)))
5257 {
5258 int dv = (TYPE_VOLATILE (TREE_TYPE (parmtype))
5259 < TYPE_VOLATILE (TREE_TYPE (argtype)));
5260 int dc = (TYPE_READONLY (TREE_TYPE (parmtype))
5261 < TYPE_READONLY (TREE_TYPE (argtype)));
5262 char *p = (dv && dc ? "const and volatile"
5263 : dc ? "const" : dv ? "volatile" : "");
5264
5265 cp_pedwarn ("passing `%T' as `this' argument of `%#D' discards %s",
5266 TREE_TYPE (argtype), fn, p);
5267 }
5268 converted_args = tree_cons
5269 (NULL_TREE, convert_force (TREE_VALUE (parm), TREE_VALUE (arg), CONV_C_CAST),
5270 converted_args);
5271 parm = TREE_CHAIN (parm);
5272 arg = TREE_CHAIN (arg);
5273 ++i;
5274 is_method = 1;
5275 }
5276
5277 for (; arg && parm;
5278 parm = TREE_CHAIN (parm), arg = TREE_CHAIN (arg), ++i)
5279 {
5280 tree type = TREE_VALUE (parm);
5281
5282 conv = TREE_VEC_ELT (convs, i);
5283 if (ICS_BAD_FLAG (conv))
5284 {
5285 tree t = conv;
5286 val = TREE_VALUE (arg);
5287
5288 for (; t; t = TREE_OPERAND (t, 0))
5289 {
5290 if (TREE_CODE (t) == USER_CONV
5291 || TREE_CODE (t) == AMBIG_CONV)
5292 {
5293 val = convert_like (t, val);
5294 break;
5295 }
5296 else if (TREE_CODE (t) == IDENTITY_CONV)
5297 break;
5298 }
5299 val = convert_for_initialization
5300 (NULL_TREE, type, val, LOOKUP_NORMAL,
5301 "argument passing", fn, i - is_method);
5302 }
5303 else
5304 val = convert_like (conv, TREE_VALUE (arg));
5305
5306 #ifdef PROMOTE_PROTOTYPES
5307 if ((TREE_CODE (type) == INTEGER_TYPE
5308 || TREE_CODE (type) == ENUMERAL_TYPE)
5309 && (TYPE_PRECISION (type) < TYPE_PRECISION (integer_type_node)))
5310 val = default_conversion (val);
5311 #endif
5312 converted_args = tree_cons (NULL_TREE, val, converted_args);
5313 }
5314
5315 /* Default arguments */
5316 for (; parm && parm != void_list_node; parm = TREE_CHAIN (parm))
5317 {
5318 tree arg = TREE_PURPOSE (parm);
5319
5320 if (DECL_TEMPLATE_INFO (fn))
5321 /* This came from a template. Instantiate the default arg here,
5322 not in tsubst. */
5323 arg = tsubst_expr (arg, DECL_TI_ARGS (fn),
5324 TREE_VEC_LENGTH (DECL_TI_ARGS (fn)), NULL_TREE);
5325 converted_args = tree_cons
5326 (NULL_TREE, convert_default_arg (TREE_VALUE (parm), arg),
5327 converted_args);
5328 }
5329
5330 /* Ellipsis */
5331 for (; arg; arg = TREE_CHAIN (arg))
5332 {
5333 val = TREE_VALUE (arg);
5334
5335 if (TREE_CODE (TREE_TYPE (val)) == REAL_TYPE
5336 && (TYPE_PRECISION (TREE_TYPE (val))
5337 < TYPE_PRECISION (double_type_node)))
5338 /* Convert `float' to `double'. */
5339 val = cp_convert (double_type_node, val);
5340 else if (TYPE_LANG_SPECIFIC (TREE_TYPE (val))
5341 && ! TYPE_HAS_TRIVIAL_INIT_REF (TREE_TYPE (val)))
5342 cp_warning ("cannot pass objects of type `%T' through `...'",
5343 TREE_TYPE (val));
5344 else
5345 /* Convert `short' and `char' to full-size `int'. */
5346 val = default_conversion (val);
5347
5348 converted_args = tree_cons (NULL_TREE, val, converted_args);
5349 }
5350
5351 converted_args = nreverse (converted_args);
5352
5353 /* Avoid actually calling copy constructors and copy assignment operators,
5354 if possible. */
5355 if (DECL_CONSTRUCTOR_P (fn)
5356 && TREE_VEC_LENGTH (convs) == 1
5357 && copy_args_p (fn))
5358 {
5359 tree targ;
5360 arg = TREE_VALUE (TREE_CHAIN (converted_args));
5361
5362 /* Pull out the real argument, disregarding const-correctness. */
5363 targ = arg;
5364 while (TREE_CODE (targ) == NOP_EXPR
5365 || TREE_CODE (targ) == NON_LVALUE_EXPR
5366 || TREE_CODE (targ) == CONVERT_EXPR)
5367 targ = TREE_OPERAND (targ, 0);
5368 if (TREE_CODE (targ) == ADDR_EXPR)
5369 {
5370 targ = TREE_OPERAND (targ, 0);
5371 if (! comptypes (TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (arg))),
5372 TYPE_MAIN_VARIANT (TREE_TYPE (targ)), 1))
5373 targ = NULL_TREE;
5374 }
5375 else
5376 targ = NULL_TREE;
5377
5378 if (targ)
5379 arg = targ;
5380 else
5381 arg = build_indirect_ref (arg, 0);
5382
5383 /* [class.copy]: the copy constructor is implicitly defined even if
5384 the implementation elided its use. */
5385 if (TYPE_HAS_COMPLEX_INIT_REF (DECL_CONTEXT (fn)))
5386 mark_used (fn);
5387
5388 /* If we're creating a temp and we already have one, don't create a
5389 new one. If we're not creating a temp but we get one, use
5390 INIT_EXPR to collapse the temp into our target. Otherwise, if the
5391 ctor is trivial, do a bitwise copy with a simple TARGET_EXPR for a
5392 temp or an INIT_EXPR otherwise. */
5393 if (integer_zerop (TREE_VALUE (args)))
5394 {
5395 if (! real_lvalue_p (arg))
5396 return arg;
5397 else if (TYPE_HAS_TRIVIAL_INIT_REF (DECL_CONTEXT (fn)))
5398 {
5399 val = build (VAR_DECL, DECL_CONTEXT (fn));
5400 layout_decl (val, 0);
5401 val = build (TARGET_EXPR, DECL_CONTEXT (fn), val, arg, 0, 0);
5402 TREE_SIDE_EFFECTS (val) = 1;
5403 return val;
5404 }
5405 }
5406 else if (! real_lvalue_p (arg)
5407 || TYPE_HAS_TRIVIAL_INIT_REF (DECL_CONTEXT (fn)))
5408 {
5409 tree to = stabilize_reference
5410 (build_indirect_ref (TREE_VALUE (args), 0));
5411 val = build (INIT_EXPR, DECL_CONTEXT (fn), to, arg);
5412 TREE_SIDE_EFFECTS (val) = 1;
5413 return build_unary_op (ADDR_EXPR, val, 0);
5414 }
5415 }
5416 else if (DECL_NAME (fn) == ansi_opname[MODIFY_EXPR]
5417 && copy_args_p (fn)
5418 && TYPE_HAS_TRIVIAL_ASSIGN_REF (DECL_CONTEXT (fn)))
5419 {
5420 tree to = stabilize_reference
5421 (build_indirect_ref (TREE_VALUE (converted_args), 0));
5422 arg = build_indirect_ref (TREE_VALUE (TREE_CHAIN (converted_args)), 0);
5423 val = build (MODIFY_EXPR, TREE_TYPE (to), to, arg);
5424 TREE_SIDE_EFFECTS (val) = 1;
5425 return val;
5426 }
5427
5428 mark_used (fn);
5429
5430 if (DECL_CONTEXT (fn) && IS_SIGNATURE (DECL_CONTEXT (fn)))
5431 return build_signature_method_call (fn, converted_args);
5432 else if (DECL_VINDEX (fn) && (flags & LOOKUP_NONVIRTUAL) == 0)
5433 {
5434 tree t, *p = &TREE_VALUE (converted_args);
5435 tree binfo = get_binfo
5436 (DECL_CONTEXT (fn), TREE_TYPE (TREE_TYPE (*p)), 0);
5437 *p = convert_pointer_to_real (binfo, *p);
5438 if (TREE_SIDE_EFFECTS (*p))
5439 *p = save_expr (*p);
5440 t = build_pointer_type (TREE_TYPE (fn));
5441 fn = build_vfn_ref (p, build_indirect_ref (*p, 0), DECL_VINDEX (fn));
5442 TREE_TYPE (fn) = t;
5443 }
5444 else if (DECL_INLINE (fn))
5445 fn = inline_conversion (fn);
5446 else
5447 fn = build_addr_func (fn);
5448
5449 fn = build_call (fn, TREE_TYPE (TREE_TYPE (TREE_TYPE (fn))), converted_args);
5450 if (TREE_TYPE (fn) == void_type_node)
5451 return fn;
5452 fn = require_complete_type (fn);
5453 if (IS_AGGR_TYPE (TREE_TYPE (fn)))
5454 fn = build_cplus_new (TREE_TYPE (fn), fn);
5455 return convert_from_reference (fn);
5456 }
5457
5458 static tree
5459 build_new_method_call (instance, name, args, basetype_path, flags)
5460 tree instance, name, args, basetype_path;
5461 int flags;
5462 {
5463 struct z_candidate *candidates = 0, *cand;
5464 tree explicit_targs = NULL_TREE;
5465 tree basetype, mem_args, fns, instance_ptr;
5466 tree pretty_name;
5467 tree user_args = args;
5468 tree templates = NULL_TREE;
5469
5470 if (TREE_CODE (name) == TEMPLATE_ID_EXPR)
5471 {
5472 explicit_targs = TREE_OPERAND (name, 1);
5473 name = TREE_OPERAND (name, 0);
5474 }
5475
5476 /* If there is an extra argument for controlling virtual bases,
5477 remove it for error reporting. */
5478 if (flags & LOOKUP_HAS_IN_CHARGE)
5479 user_args = TREE_CHAIN (args);
5480
5481 args = resolve_args (args);
5482
5483 if (args == error_mark_node)
5484 return error_mark_node;
5485
5486 if (instance == NULL_TREE)
5487 basetype = BINFO_TYPE (basetype_path);
5488 else
5489 {
5490 if (TREE_CODE (instance) == OFFSET_REF)
5491 instance = resolve_offset_ref (instance);
5492 if (TREE_CODE (TREE_TYPE (instance)) == REFERENCE_TYPE)
5493 instance = convert_from_reference (instance);
5494 basetype = TREE_TYPE (instance);
5495
5496 /* XXX this should be handled before we get here. */
5497 if (! IS_AGGR_TYPE (basetype)
5498 && ! (TYPE_LANG_SPECIFIC (basetype)
5499 && (IS_SIGNATURE_POINTER (basetype)
5500 || IS_SIGNATURE_REFERENCE (basetype))))
5501 {
5502 if ((flags & LOOKUP_COMPLAIN) && basetype != error_mark_node)
5503 cp_error ("request for member `%D' in `%E', which is of non-aggregate type `%T'",
5504 name, instance, basetype);
5505
5506 return error_mark_node;
5507 }
5508
5509 /* If `instance' is a signature pointer/reference and `name' is
5510 not a constructor, we are calling a signature member function.
5511 In that case set the `basetype' to the signature type. */
5512 if ((IS_SIGNATURE_POINTER (basetype)
5513 || IS_SIGNATURE_REFERENCE (basetype))
5514 && TYPE_IDENTIFIER (basetype) != name)
5515 basetype = SIGNATURE_TYPE (basetype);
5516 }
5517
5518 if (basetype_path == NULL_TREE)
5519 basetype_path = TYPE_BINFO (basetype);
5520
5521 if (instance)
5522 {
5523 instance_ptr = build_this (instance);
5524
5525 /* XXX this should be handled before we get here. */
5526 fns = build_field_call (basetype_path, instance_ptr, name, args);
5527 if (fns)
5528 return fns;
5529 }
5530 else
5531 {
5532 instance_ptr = build_int_2 (0, 0);
5533 TREE_TYPE (instance_ptr) = build_pointer_type (basetype);
5534 }
5535
5536 pretty_name
5537 = (name == ctor_identifier ? constructor_name_full (basetype) : name);
5538
5539 fns = lookup_fnfields (basetype_path, name, 1);
5540
5541 if (fns == error_mark_node)
5542 return error_mark_node;
5543 if (fns)
5544 {
5545 tree t = TREE_VALUE (fns);
5546 if (name == ctor_identifier && TYPE_USES_VIRTUAL_BASECLASSES (basetype)
5547 && ! (flags & LOOKUP_HAS_IN_CHARGE))
5548 {
5549 flags |= LOOKUP_HAS_IN_CHARGE;
5550 args = tree_cons (NULL_TREE, integer_one_node, args);
5551 }
5552 mem_args = tree_cons (NULL_TREE, instance_ptr, args);
5553 for (; t; t = DECL_CHAIN (t))
5554 {
5555 tree this_arglist;
5556
5557 /* We can end up here for copy-init of same or base class. */
5558 if (name == ctor_identifier
5559 && (flags & LOOKUP_ONLYCONVERTING)
5560 && DECL_NONCONVERTING_P (t))
5561 continue;
5562 if (TREE_CODE (TREE_TYPE (t)) == METHOD_TYPE)
5563 this_arglist = mem_args;
5564 else
5565 this_arglist = args;
5566
5567 if (TREE_CODE (t) == TEMPLATE_DECL)
5568 {
5569 /* A member template. */
5570 templates = decl_tree_cons (NULL_TREE, t, templates);
5571 candidates =
5572 add_template_candidate (candidates, t, explicit_targs,
5573 this_arglist,
5574 TREE_TYPE (name),
5575 LOOKUP_NORMAL);
5576 }
5577 else if (explicit_targs == NULL_TREE)
5578 candidates = add_function_candidate (candidates, t,
5579 this_arglist, flags);
5580
5581 if (candidates)
5582 candidates->basetype_path = TREE_PURPOSE (fns);
5583 }
5584 }
5585
5586 if (! any_viable (candidates))
5587 {
5588 /* XXX will LOOKUP_SPECULATIVELY be needed when this is done? */
5589 if (flags & LOOKUP_SPECULATIVELY)
5590 return NULL_TREE;
5591 cp_error ("no matching function for call to `%T::%D (%A)%V'", basetype,
5592 pretty_name, user_args, TREE_TYPE (TREE_TYPE (instance_ptr)));
5593 print_z_candidates (candidates);
5594 return error_mark_node;
5595 }
5596 candidates = splice_viable (candidates);
5597 cand = tourney (candidates);
5598
5599 if (cand == 0)
5600 {
5601 cp_error ("call of overloaded `%D(%A)' is ambiguous", pretty_name,
5602 user_args);
5603 print_z_candidates (candidates);
5604 return error_mark_node;
5605 }
5606
5607 enforce_access (cand->basetype_path, cand->fn);
5608 if (DECL_ABSTRACT_VIRTUAL_P (cand->fn)
5609 && instance == current_class_ref
5610 && DECL_CONSTRUCTOR_P (current_function_decl)
5611 && ! (flags & LOOKUP_NONVIRTUAL)
5612 && value_member (cand->fn, get_abstract_virtuals (basetype)))
5613 cp_error ("abstract virtual `%#D' called from constructor", cand->fn);
5614 if (TREE_CODE (TREE_TYPE (cand->fn)) == METHOD_TYPE
5615 && TREE_CODE (instance_ptr) == NOP_EXPR
5616 && TREE_OPERAND (instance_ptr, 0) == error_mark_node)
5617 cp_error ("cannot call member function `%D' without object", cand->fn);
5618
5619 if (DECL_VINDEX (cand->fn) && ! (flags & LOOKUP_NONVIRTUAL)
5620 && ((instance == current_class_ref && (dtor_label || ctor_label))
5621 || resolves_to_fixed_type_p (instance, 0)))
5622 flags |= LOOKUP_NONVIRTUAL;
5623
5624 /* Pedantically, normal function declarations are never considered
5625 to refer to template instantiations, so we only do this with
5626 -fguiding-decls. */
5627 if (flag_guiding_decls && templates && ! cand->template
5628 && ! DECL_INITIAL (cand->fn))
5629 add_maybe_template (cand->fn, templates);
5630
5631 return build_over_call
5632 (cand->fn, cand->convs,
5633 TREE_CODE (TREE_TYPE (cand->fn)) == METHOD_TYPE ? mem_args : args,
5634 flags);
5635 }
5636
5637 /* Compare two implicit conversion sequences that differ only in their
5638 qualification conversion. Subroutine of compare_ics. */
5639
5640 static int
5641 compare_qual (ics1, ics2)
5642 tree ics1, ics2;
5643 {
5644 tree to1 = TREE_TYPE (ics1);
5645 tree to2 = TREE_TYPE (ics2);
5646
5647 if (TYPE_PTRMEMFUNC_P (to1))
5648 to1 = TYPE_PTRMEMFUNC_FN_TYPE (to1);
5649 if (TYPE_PTRMEMFUNC_P (to2))
5650 to2 = TYPE_PTRMEMFUNC_FN_TYPE (to2);
5651
5652 to1 = TREE_TYPE (to1);
5653 to2 = TREE_TYPE (to2);
5654
5655 if (TREE_CODE (to1) == OFFSET_TYPE)
5656 {
5657 to1 = TREE_TYPE (to1);
5658 to2 = TREE_TYPE (to2);
5659 }
5660
5661 if (TYPE_READONLY (to1) >= TYPE_READONLY (to2)
5662 && TYPE_VOLATILE (to1) > TYPE_VOLATILE (to2))
5663 return -1;
5664 else if (TYPE_READONLY (to1) > TYPE_READONLY (to2)
5665 && TYPE_VOLATILE (to1) == TYPE_VOLATILE (to2))
5666 return -1;
5667 else if (TYPE_READONLY (to1) <= TYPE_READONLY (to2)
5668 && TYPE_VOLATILE (to1) < TYPE_VOLATILE (to2))
5669 return 1;
5670 else if (TYPE_READONLY (to1) < TYPE_READONLY (to2)
5671 && TYPE_VOLATILE (to1) == TYPE_VOLATILE (to2))
5672 return 1;
5673 return 0;
5674 }
5675
5676 /* Determine whether standard conversion sequence ICS1 is a proper
5677 subsequence of ICS2. We assume that a conversion of the same code
5678 between the same types indicates a subsequence. */
5679
5680 static int
5681 is_subseq (ics1, ics2)
5682 tree ics1, ics2;
5683 {
5684 /* Do not consider lvalue transformations here. */
5685 if (TREE_CODE (ics2) == RVALUE_CONV
5686 || TREE_CODE (ics2) == LVALUE_CONV)
5687 return 0;
5688
5689 for (;; ics2 = TREE_OPERAND (ics2, 0))
5690 {
5691 if (TREE_CODE (ics2) == TREE_CODE (ics1)
5692 && comptypes (TREE_TYPE (ics2), TREE_TYPE (ics1), 1)
5693 && comptypes (TREE_TYPE (TREE_OPERAND (ics2, 0)),
5694 TREE_TYPE (TREE_OPERAND (ics1, 0)), 1))
5695 return 1;
5696
5697 if (TREE_CODE (ics2) == USER_CONV
5698 || TREE_CODE (ics2) == AMBIG_CONV
5699 || TREE_CODE (ics2) == IDENTITY_CONV)
5700 return 0;
5701 }
5702 }
5703
5704 /* Compare two implicit conversion sequences according to the rules set out in
5705 [over.ics.rank]. Return values:
5706
5707 1: ics1 is better than ics2
5708 -1: ics2 is better than ics1
5709 0: ics1 and ics2 are indistinguishable */
5710
5711 static int
5712 compare_ics (ics1, ics2)
5713 tree ics1, ics2;
5714 {
5715 tree main1, main2;
5716
5717 if (TREE_CODE (ics1) == QUAL_CONV)
5718 main1 = TREE_OPERAND (ics1, 0);
5719 else
5720 main1 = ics1;
5721
5722 if (TREE_CODE (ics2) == QUAL_CONV)
5723 main2 = TREE_OPERAND (ics2, 0);
5724 else
5725 main2 = ics2;
5726
5727 /* Conversions for `this' are PTR_CONVs, but we compare them as though
5728 they were REF_BINDs. */
5729 if (ICS_THIS_FLAG (ics1))
5730 {
5731 tree t = main1;
5732 if (TREE_CODE (t) == PTR_CONV)
5733 t = TREE_OPERAND (t, 0);
5734 t = build1 (IDENTITY_CONV, TREE_TYPE (TREE_TYPE (t)), NULL_TREE);
5735 t = build_conv (REF_BIND, TREE_TYPE (ics1), t);
5736 ICS_STD_RANK (t) = ICS_STD_RANK (main1);
5737 main1 = ics1 = t;
5738 }
5739 if (ICS_THIS_FLAG (ics2))
5740 {
5741 tree t = main2;
5742 if (TREE_CODE (t) == PTR_CONV)
5743 t = TREE_OPERAND (t, 0);
5744 t = build1 (IDENTITY_CONV, TREE_TYPE (TREE_TYPE (t)), NULL_TREE);
5745 t = build_conv (REF_BIND, TREE_TYPE (ics2), t);
5746 ICS_STD_RANK (t) = ICS_STD_RANK (main2);
5747 main2 = ics2 = t;
5748 }
5749
5750 if (ICS_RANK (ics1) > ICS_RANK (ics2))
5751 return -1;
5752 else if (ICS_RANK (ics1) < ICS_RANK (ics2))
5753 return 1;
5754
5755 if (ICS_RANK (ics1) == BAD_RANK)
5756 {
5757 if (ICS_USER_FLAG (ics1) > ICS_USER_FLAG (ics2)
5758 || ICS_STD_RANK (ics1) > ICS_STD_RANK (ics2))
5759 return -1;
5760 else if (ICS_USER_FLAG (ics1) < ICS_USER_FLAG (ics2)
5761 || ICS_STD_RANK (ics1) < ICS_STD_RANK (ics2))
5762 return 1;
5763
5764 /* else fall through */
5765 }
5766
5767 /* User-defined conversion sequence U1 is a better conversion sequence
5768 than another user-defined conversion sequence U2 if they contain the
5769 same user-defined conversion operator or constructor and if the sec-
5770 ond standard conversion sequence of U1 is better than the second
5771 standard conversion sequence of U2. */
5772
5773 if (ICS_USER_FLAG (ics1))
5774 {
5775 tree t1, t2;
5776
5777 for (t1 = ics1; TREE_CODE (t1) != USER_CONV; t1 = TREE_OPERAND (t1, 0))
5778 if (TREE_CODE (t1) == AMBIG_CONV)
5779 return 0;
5780 for (t2 = ics2; TREE_CODE (t2) != USER_CONV; t2 = TREE_OPERAND (t2, 0))
5781 if (TREE_CODE (t2) == AMBIG_CONV)
5782 return 0;
5783
5784 if (USER_CONV_FN (t1) != USER_CONV_FN (t2))
5785 return 0;
5786 else if (ICS_STD_RANK (ics1) > ICS_STD_RANK (ics2))
5787 return -1;
5788 else if (ICS_STD_RANK (ics1) < ICS_STD_RANK (ics2))
5789 return 1;
5790
5791 /* else fall through */
5792 }
5793
5794 #if 0 /* Handled by ranking */
5795 /* A conversion that is not a conversion of a pointer, or pointer to
5796 member, to bool is better than another conversion that is such a
5797 conversion. */
5798 #endif
5799
5800 if (TREE_CODE (main1) != TREE_CODE (main2))
5801 {
5802 /* ...if S1 is a proper subsequence of S2 */
5803 if (is_subseq (main1, main2))
5804 return 1;
5805 if (is_subseq (main2, main1))
5806 return -1;
5807 return 0;
5808 }
5809
5810 if (TREE_CODE (main1) == PTR_CONV || TREE_CODE (main1) == PMEM_CONV
5811 || TREE_CODE (main1) == REF_BIND || TREE_CODE (main1) == BASE_CONV)
5812 {
5813 tree to1 = TREE_TYPE (main1);
5814 tree from1 = TREE_TYPE (TREE_OPERAND (main1, 0));
5815 tree to2 = TREE_TYPE (main2);
5816 tree from2 = TREE_TYPE (TREE_OPERAND (main2, 0));
5817 int distf, distt;
5818
5819 /* Standard conversion sequence S1 is a better conversion sequence than
5820 standard conversion sequence S2 if...
5821
5822 S1 and S2 differ only in their qualification conversion and they
5823 yield types identical except for cv-qualifiers and S2 adds all the
5824 qualifiers that S1 adds (and in the same places) and S2 adds yet
5825 more cv-qualifiers than S1, or the similar case with reference
5826 binding15). */
5827 if (TREE_CODE (main1) == REF_BIND)
5828 {
5829 if (TYPE_MAIN_VARIANT (TREE_TYPE (to1))
5830 == TYPE_MAIN_VARIANT (TREE_TYPE (to2)))
5831 return compare_qual (ics1, ics2);
5832 }
5833 else if (TREE_CODE (main1) != BASE_CONV && from1 == from2 && to1 == to2)
5834 return compare_qual (ics1, ics2);
5835
5836 if (TYPE_PTRMEMFUNC_P (to1))
5837 {
5838 to1 = TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (to1)));
5839 from1 = TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (from1)));
5840 }
5841 else if (TREE_CODE (main1) != BASE_CONV)
5842 {
5843 to1 = TREE_TYPE (to1);
5844 if (TREE_CODE (main1) != REF_BIND)
5845 from1 = TREE_TYPE (from1);
5846
5847 if (TREE_CODE (to1) == OFFSET_TYPE)
5848 {
5849 to1 = TYPE_OFFSET_BASETYPE (to1);
5850 from1 = TYPE_OFFSET_BASETYPE (from1);
5851 }
5852 }
5853
5854 if (TYPE_PTRMEMFUNC_P (to2))
5855 {
5856 to2 = TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (to2)));
5857 from2 = TYPE_METHOD_BASETYPE (TREE_TYPE (TYPE_PTRMEMFUNC_FN_TYPE (from2)));
5858 }
5859 else if (TREE_CODE (main1) != BASE_CONV)
5860 {
5861 to2 = TREE_TYPE (to2);
5862 if (TREE_CODE (main1) != REF_BIND)
5863 from2 = TREE_TYPE (from2);
5864
5865 if (TREE_CODE (to2) == OFFSET_TYPE)
5866 {
5867 to2 = TYPE_OFFSET_BASETYPE (to2);
5868 from2 = TYPE_OFFSET_BASETYPE (from2);
5869 }
5870 }
5871
5872 if (! (IS_AGGR_TYPE (from1) && IS_AGGR_TYPE (from2)))
5873 return 0;
5874
5875 /* The sense of pmem conversions is reversed from that of the other
5876 conversions. */
5877 if (TREE_CODE (main1) == PMEM_CONV)
5878 {
5879 tree t = from1; from1 = from2; from2 = t;
5880 t = to1; to1 = to2; to2 = t;
5881 }
5882
5883 distf = get_base_distance (from1, from2, 0, 0);
5884 if (distf == -1)
5885 {
5886 distf = -get_base_distance (from2, from1, 0, 0);
5887 if (distf == 1)
5888 return 0;
5889 }
5890
5891 /* If class B is derived directly or indirectly from class A,
5892 conver- sion of B* to A* is better than conversion of B* to
5893 void*, and conversion of A* to void* is better than
5894 conversion of B* to void*. */
5895
5896 if (TREE_CODE (to1) == VOID_TYPE && TREE_CODE (to2) == VOID_TYPE)
5897 {
5898 if (distf > 0)
5899 return 1;
5900 else if (distf < 0)
5901 return -1;
5902 }
5903 else if (TREE_CODE (to2) == VOID_TYPE && IS_AGGR_TYPE (to1)
5904 && get_base_distance (to1, from1, 0, 0) != -1)
5905 return 1;
5906 else if (TREE_CODE (to1) == VOID_TYPE && IS_AGGR_TYPE (to2)
5907 && get_base_distance (to2, from2, 0, 0) != -1)
5908 return -1;
5909
5910 if (! (IS_AGGR_TYPE (to1) && IS_AGGR_TYPE (to2)))
5911 return 0;
5912
5913 /* If class B is derived directly or indirectly from class A and class
5914 C is derived directly or indirectly from B */
5915
5916 distt = get_base_distance (to1, to2, 0, 0);
5917 if (distt == -1)
5918 {
5919 distt = -get_base_distance (to2, to1, 0, 0);
5920 if (distt == 1)
5921 return 0;
5922 }
5923
5924 /* --conversion of C* to B* is better than conversion of C* to A*, */
5925 if (distf == 0)
5926 {
5927 if (distt > 0)
5928 return -1;
5929 else if (distt < 0)
5930 return 1;
5931 }
5932 /* --conversion of B* to A* is better than conversion of C* to A*, */
5933 else if (distt == 0)
5934 {
5935 if (distf > 0)
5936 return 1;
5937 else if (distf < 0)
5938 return -1;
5939 }
5940 }
5941 else if (TREE_CODE (TREE_TYPE (main1)) == POINTER_TYPE
5942 || TYPE_PTRMEMFUNC_P (TREE_TYPE (main1)))
5943 {
5944 if (TREE_TYPE (main1) == TREE_TYPE (main2))
5945 return compare_qual (ics1, ics2);
5946
5947 #if 0 /* This is now handled by making identity better than anything else. */
5948 /* existing practice, not WP-endorsed: const char * -> const char *
5949 is better than char * -> const char *. (jason 6/29/96) */
5950 if (TREE_TYPE (ics1) == TREE_TYPE (ics2))
5951 return -compare_qual (main1, main2);
5952 #endif
5953 }
5954
5955 return 0;
5956 }
5957
5958 /* The source type for this standard conversion sequence. */
5959
5960 static tree
5961 source_type (t)
5962 tree t;
5963 {
5964 for (;; t = TREE_OPERAND (t, 0))
5965 {
5966 if (TREE_CODE (t) == USER_CONV
5967 || TREE_CODE (t) == AMBIG_CONV
5968 || TREE_CODE (t) == IDENTITY_CONV)
5969 return TREE_TYPE (t);
5970 }
5971 my_friendly_abort (1823);
5972 }
5973
5974 /* Compare two candidates for overloading as described in
5975 [over.match.best]. Return values:
5976
5977 1: cand1 is better than cand2
5978 -1: cand2 is better than cand1
5979 0: cand1 and cand2 are indistinguishable */
5980
5981 static int
5982 joust (cand1, cand2)
5983 struct z_candidate *cand1, *cand2;
5984 {
5985 int winner = 0;
5986 int i, off1 = 0, off2 = 0, len;
5987
5988 /* Candidates that involve bad conversions are always worse than those
5989 that don't. */
5990 if (cand1->viable > cand2->viable)
5991 return 1;
5992 if (cand1->viable < cand2->viable)
5993 return -1;
5994
5995 /* a viable function F1
5996 is defined to be a better function than another viable function F2 if
5997 for all arguments i, ICSi(F1) is not a worse conversion sequence than
5998 ICSi(F2), and then */
5999
6000 /* for some argument j, ICSj(F1) is a better conversion sequence than
6001 ICSj(F2) */
6002
6003 /* For comparing static and non-static member functions, we ignore the
6004 implicit object parameter of the non-static function. The WP says to
6005 pretend that the static function has an object parm, but that won't
6006 work with operator overloading. */
6007 len = TREE_VEC_LENGTH (cand1->convs);
6008 if (len != TREE_VEC_LENGTH (cand2->convs))
6009 {
6010 if (DECL_STATIC_FUNCTION_P (cand1->fn)
6011 && ! DECL_STATIC_FUNCTION_P (cand2->fn))
6012 off2 = 1;
6013 else if (! DECL_STATIC_FUNCTION_P (cand1->fn)
6014 && DECL_STATIC_FUNCTION_P (cand2->fn))
6015 {
6016 off1 = 1;
6017 --len;
6018 }
6019 else
6020 my_friendly_abort (42);
6021 }
6022
6023 for (i = 0; i < len; ++i)
6024 {
6025 tree t1 = TREE_VEC_ELT (cand1->convs, i+off1);
6026 tree t2 = TREE_VEC_ELT (cand2->convs, i+off2);
6027 int comp = compare_ics (t1, t2);
6028
6029 if (comp != 0)
6030 {
6031 #if 0 /* move this warning to tourney. */
6032 if (warn_sign_promo
6033 && ICS_RANK (t1) + ICS_RANK (t2) == STD_RANK + PROMO_RANK
6034 && TREE_CODE (t1) == STD_CONV
6035 && TREE_CODE (t2) == STD_CONV
6036 && TREE_CODE (TREE_TYPE (t1)) == INTEGER_TYPE
6037 && TREE_CODE (TREE_TYPE (t2)) == INTEGER_TYPE
6038 && (TYPE_PRECISION (TREE_TYPE (t1))
6039 == TYPE_PRECISION (TREE_TYPE (t2)))
6040 && (TREE_UNSIGNED (TREE_TYPE (TREE_OPERAND (t1, 0)))
6041 || (TREE_CODE (TREE_TYPE (TREE_OPERAND (t1, 0)))
6042 == ENUMERAL_TYPE)))
6043 {
6044 tree type = TREE_TYPE (TREE_OPERAND (t1, 0));
6045 tree type1, type2;
6046 if (comp > 0)
6047 type1 = TREE_TYPE (t1), type2 = TREE_TYPE (t2);
6048 else
6049 type1 = TREE_TYPE (t2), type2 = TREE_TYPE (t1);
6050
6051 cp_warning ("passing `%T' chooses `%T' over `%T'",
6052 type, type1, type2);
6053 cp_warning (" in call to `%D'", DECL_NAME (cand1->fn));
6054 }
6055 #endif
6056
6057 if (winner && comp != winner)
6058 {
6059 winner = 0;
6060 goto tweak;
6061 }
6062 winner = comp;
6063 }
6064 }
6065
6066 #if 0 /* move this warning to tourney. */
6067 /* warn about confusing overload resolution */
6068 if (winner && cand1->second_conv
6069 && ! DECL_CONSTRUCTOR_P (cand1->fn)
6070 && ! DECL_CONSTRUCTOR_P (cand2->fn))
6071 {
6072 int comp = compare_ics (cand1->second_conv, cand2->second_conv);
6073 if (comp && comp != winner)
6074 {
6075 struct z_candidate *w, *l;
6076 if (winner == 1)
6077 w = cand1, l = cand2;
6078 else
6079 w = cand2, l = cand1;
6080 cp_warning ("choosing `%D' over `%D'", w->fn, l->fn);
6081 cp_warning (" for conversion from `%T' to `%T'",
6082 TREE_TYPE (source_type (TREE_VEC_ELT (w->convs, 0))),
6083 TREE_TYPE (w->second_conv));
6084 cp_warning (" because conversion sequence for `this' argument is better");
6085 }
6086 }
6087 #endif
6088
6089 if (winner)
6090 return winner;
6091
6092 /* or, if not that,
6093 F1 is a non-template function and F2 is a template function */
6094
6095 if (! cand1->template && cand2->template)
6096 return 1;
6097 else if (cand1->template && ! cand2->template)
6098 return -1;
6099 else if (cand1->template && cand2->template)
6100 winner = more_specialized
6101 (TI_TEMPLATE (cand1->template), TI_TEMPLATE (cand2->template));
6102
6103 /* or, if not that,
6104 the context is an initialization by user-defined conversion (see
6105 _dcl.init_ and _over.match.user_) and the standard conversion
6106 sequence from the return type of F1 to the destination type (i.e.,
6107 the type of the entity being initialized) is a better conversion
6108 sequence than the standard conversion sequence from the return type
6109 of F2 to the destination type. */
6110
6111 if (! winner && cand1->second_conv)
6112 winner = compare_ics (cand1->second_conv, cand2->second_conv);
6113
6114 /* If the built-in candidates are the same, arbitrarily pick one. */
6115 if (! winner && cand1->fn == cand2->fn
6116 && TREE_CODE (cand1->fn) == IDENTIFIER_NODE)
6117 {
6118 for (i = 0; i < len; ++i)
6119 if (! comptypes (TREE_TYPE (TREE_VEC_ELT (cand1->convs, i)),
6120 TREE_TYPE (TREE_VEC_ELT (cand2->convs, i)), 1))
6121 break;
6122 if (i == TREE_VEC_LENGTH (cand1->convs))
6123 return 1;
6124
6125 /* Kludge around broken overloading rules whereby
6126 Integer a, b; test ? a : b; is ambiguous, since there's a builtin
6127 that takes references and another that takes values. */
6128 if (cand1->fn == ansi_opname[COND_EXPR])
6129 {
6130 tree c1 = TREE_VEC_ELT (cand1->convs, 1);
6131 tree c2 = TREE_VEC_ELT (cand2->convs, 1);
6132 tree t1 = strip_top_quals (non_reference (TREE_TYPE (c1)));
6133 tree t2 = strip_top_quals (non_reference (TREE_TYPE (c2)));
6134
6135 if (comptypes (t1, t2, 1))
6136 {
6137 if (TREE_CODE (c1) == REF_BIND && TREE_CODE (c2) != REF_BIND)
6138 return 1;
6139 if (TREE_CODE (c1) != REF_BIND && TREE_CODE (c2) == REF_BIND)
6140 return -1;
6141 }
6142 }
6143 }
6144
6145 tweak:
6146
6147 /* Extension: If the worst conversion for one candidate is worse than the
6148 worst conversion for the other, take the first. */
6149 if (! winner && ! pedantic)
6150 {
6151 int rank1 = IDENTITY_RANK, rank2 = IDENTITY_RANK;
6152
6153 for (i = 0; i < len; ++i)
6154 {
6155 if (ICS_RANK (TREE_VEC_ELT (cand1->convs, i+off1)) > rank1)
6156 rank1 = ICS_RANK (TREE_VEC_ELT (cand1->convs, i+off1));
6157 if (ICS_RANK (TREE_VEC_ELT (cand2->convs, i+off2)) > rank2)
6158 rank2 = ICS_RANK (TREE_VEC_ELT (cand2->convs, i+off2));
6159 }
6160
6161 if (rank1 < rank2)
6162 return 1;
6163 if (rank1 > rank2)
6164 return -1;
6165 }
6166
6167 return winner;
6168 }
6169
6170 /* Given a list of candidates for overloading, find the best one, if any.
6171 This algorithm has a worst case of O(2n) (winner is last), and a best
6172 case of O(n/2) (totally ambiguous); much better than a sorting
6173 algorithm. */
6174
6175 static struct z_candidate *
6176 tourney (candidates)
6177 struct z_candidate *candidates;
6178 {
6179 struct z_candidate *champ = candidates, *challenger;
6180 int fate;
6181
6182 /* Walk through the list once, comparing each current champ to the next
6183 candidate, knocking out a candidate or two with each comparison. */
6184
6185 for (challenger = champ->next; challenger; )
6186 {
6187 fate = joust (champ, challenger);
6188 if (fate == 1)
6189 challenger = challenger->next;
6190 else
6191 {
6192 if (fate == 0)
6193 {
6194 champ = challenger->next;
6195 if (champ == 0)
6196 return 0;
6197 }
6198 else
6199 champ = challenger;
6200
6201 challenger = champ->next;
6202 }
6203 }
6204
6205 /* Make sure the champ is better than all the candidates it hasn't yet
6206 been compared to. This may do one more comparison than necessary. Oh
6207 well. */
6208
6209 for (challenger = candidates; challenger != champ;
6210 challenger = challenger->next)
6211 {
6212 fate = joust (champ, challenger);
6213 if (fate != 1)
6214 return 0;
6215 }
6216
6217 return champ;
6218 }
6219
6220 int
6221 can_convert (to, from)
6222 tree to, from;
6223 {
6224 if (flag_ansi_overloading)
6225 {
6226 tree t = implicit_conversion (to, from, NULL_TREE, LOOKUP_NORMAL);
6227 return (t && ! ICS_BAD_FLAG (t));
6228 }
6229 else
6230 {
6231 struct harshness_code h;
6232 h = convert_harshness (to, from, NULL_TREE);
6233 return (h.code < USER_CODE) && (h.distance >= 0);
6234 }
6235 }
6236
6237 int
6238 can_convert_arg (to, from, arg)
6239 tree to, from, arg;
6240 {
6241 if (flag_ansi_overloading)
6242 {
6243 tree t = implicit_conversion (to, from, arg, LOOKUP_NORMAL);
6244 return (t && ! ICS_BAD_FLAG (t));
6245 }
6246 else
6247 {
6248 struct harshness_code h;
6249 h = convert_harshness (to, from, arg);
6250 return (h.code < USER_CODE) && (h.distance >= 0);
6251 }
6252 }