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MM
1/* Perform the semantic phase of parsing, i.e., the process of
2 building tree structure, checking semantic consistency, and
3 building RTL. These routines are used both during actual parsing
4 and during the instantiation of template functions.
5
6c418184 6 Copyright (C) 1998, 1999, 2000, 2001 Free Software Foundation, Inc.
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MM
7 Written by Mark Mitchell (mmitchell@usa.net) based on code found
8 formerly in parse.y and pt.c.
9
10 This file is part of GNU CC.
11
12 GNU CC is free software; you can redistribute it and/or modify it
13 under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 2, or (at your option)
15 any later version.
16
17 GNU CC is distributed in the hope that it will be useful, but
18 WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 General Public License for more details.
21
22 You should have received a copy of the GNU General Public License
23 along with GNU CC; see the file COPYING. If not, write to the Free
24 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
25 02111-1307, USA. */
26
27#include "config.h"
8d052bc7 28#include "system.h"
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MM
29#include "tree.h"
30#include "cp-tree.h"
31#include "except.h"
32#include "lex.h"
12027a89 33#include "toplev.h"
84df082b 34#include "flags.h"
d658cd4c 35#include "ggc.h"
d9b2d9da 36#include "rtl.h"
d6684bc8 37#include "expr.h"
225ff119 38#include "output.h"
ea11ca7e 39#include "timevar.h"
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MM
40
41/* There routines provide a modular interface to perform many parsing
42 operations. They may therefore be used during actual parsing, or
43 during template instantiation, which may be regarded as a
44 degenerate form of parsing. Since the current g++ parser is
45 lacking in several respects, and will be reimplemented, we are
46 attempting to move most code that is not directly related to
47 parsing into this file; that will make implementing the new parser
48 much easier since it will be able to make use of these routines. */
49
158991b7
KG
50static tree maybe_convert_cond PARAMS ((tree));
51static tree simplify_aggr_init_exprs_r PARAMS ((tree *, int *, void *));
c2e407f1 52static void deferred_type_access_control PARAMS ((void));
31f8e4f3 53static void emit_associated_thunks PARAMS ((tree));
54f7877c 54static void genrtl_try_block PARAMS ((tree));
52a11cbf 55static void genrtl_eh_spec_block PARAMS ((tree));
54f7877c
MM
56static void genrtl_handler PARAMS ((tree));
57static void genrtl_catch_block PARAMS ((tree));
58static void genrtl_ctor_stmt PARAMS ((tree));
59static void genrtl_subobject PARAMS ((tree));
54f7877c
MM
60static void genrtl_named_return_value PARAMS ((void));
61static void cp_expand_stmt PARAMS ((tree));
f444e36b
MM
62static void genrtl_start_function PARAMS ((tree));
63static void genrtl_finish_function PARAMS ((tree));
b850de4f 64static tree clear_decl_rtl PARAMS ((tree *, int *, void *));
558475f0 65
527f0080
MM
66/* Finish processing the COND, the SUBSTMT condition for STMT. */
67
ed5511d9
MM
68#define FINISH_COND(cond, stmt, substmt) \
69 do { \
70 if (last_tree != stmt) \
71 { \
72 RECHAIN_STMTS (stmt, substmt); \
73 if (!processing_template_decl) \
74 { \
75 cond = build_tree_list (substmt, cond); \
76 substmt = cond; \
77 } \
78 } \
79 else \
80 substmt = cond; \
527f0080 81 } while (0)
35b1567d 82
f2c5f623
BC
83/* Returns non-zero if the current statement is a full expression,
84 i.e. temporaries created during that statement should be destroyed
85 at the end of the statement. */
35b1567d 86
f2c5f623
BC
87int
88stmts_are_full_exprs_p ()
89{
ae499cce
MM
90 return current_stmt_tree ()->stmts_are_full_exprs_p;
91}
92
93/* Returns the stmt_tree (if any) to which statements are currently
94 being added. If there is no active statement-tree, NULL is
95 returned. */
96
97stmt_tree
98current_stmt_tree ()
99{
100 return (cfun
101 ? &cfun->language->x_stmt_tree
102 : &scope_chain->x_stmt_tree);
f2c5f623 103}
35b1567d 104
f2c5f623
BC
105/* Nonzero if TYPE is an anonymous union or struct type. We have to use a
106 flag for this because "A union for which objects or pointers are
107 declared is not an anonymous union" [class.union]. */
35b1567d 108
f2c5f623
BC
109int
110anon_aggr_type_p (node)
111 tree node;
35b1567d 112{
f2c5f623 113 return (CLASS_TYPE_P (node) && TYPE_LANG_SPECIFIC(node)->anon_aggr);
35b1567d
BC
114}
115
f2c5f623 116/* Finish a scope. */
35b1567d
BC
117
118tree
f2c5f623 119do_poplevel ()
35b1567d
BC
120{
121 tree block = NULL_TREE;
122
f2c5f623 123 if (stmts_are_full_exprs_p ())
35b1567d 124 {
50e60bc3 125 tree scope_stmts = NULL_TREE;
f2c5f623
BC
126
127 if (!processing_template_decl)
128 scope_stmts = add_scope_stmt (/*begin_p=*/0, /*partial_p=*/0);
35b1567d
BC
129
130 block = poplevel (kept_level_p (), 1, 0);
131 if (block && !processing_template_decl)
132 {
133 SCOPE_STMT_BLOCK (TREE_PURPOSE (scope_stmts)) = block;
134 SCOPE_STMT_BLOCK (TREE_VALUE (scope_stmts)) = block;
135 }
136 }
137
138 return block;
139}
140
f2c5f623 141/* Begin a new scope. */
35b1567d
BC
142
143void
f2c5f623 144do_pushlevel ()
35b1567d 145{
f2c5f623 146 if (stmts_are_full_exprs_p ())
35b1567d 147 {
f2c5f623
BC
148 pushlevel (0);
149 if (!processing_template_decl)
150 add_scope_stmt (/*begin_p=*/1, /*partial_p=*/0);
35b1567d
BC
151 }
152}
153
35b1567d
BC
154/* Finish a goto-statement. */
155
3e4d04a1 156tree
35b1567d
BC
157finish_goto_stmt (destination)
158 tree destination;
159{
160 if (TREE_CODE (destination) == IDENTIFIER_NODE)
161 destination = lookup_label (destination);
162
163 /* We warn about unused labels with -Wunused. That means we have to
164 mark the used labels as used. */
165 if (TREE_CODE (destination) == LABEL_DECL)
166 TREE_USED (destination) = 1;
167
168 if (TREE_CODE (destination) != LABEL_DECL)
169 /* We don't inline calls to functions with computed gotos.
170 Those functions are typically up to some funny business,
171 and may be depending on the labels being at particular
172 addresses, or some such. */
173 DECL_UNINLINABLE (current_function_decl) = 1;
174
175 check_goto (destination);
176
3e4d04a1 177 return add_stmt (build_stmt (GOTO_STMT, destination));
35b1567d
BC
178}
179
ed5511d9
MM
180/* COND is the condition-expression for an if, while, etc.,
181 statement. Convert it to a boolean value, if appropriate. */
182
f2c5f623 183tree
ed5511d9
MM
184maybe_convert_cond (cond)
185 tree cond;
186{
187 /* Empty conditions remain empty. */
188 if (!cond)
189 return NULL_TREE;
190
191 /* Wait until we instantiate templates before doing conversion. */
192 if (processing_template_decl)
193 return cond;
194
195 /* Do the conversion. */
196 cond = convert_from_reference (cond);
197 return condition_conversion (cond);
198}
199
9bfadf57 200/* Finish an expression-statement, whose EXPRESSION is as indicated. */
a7e4cfa0 201
3e4d04a1 202tree
9bfadf57 203finish_expr_stmt (expr)
ad321293
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204 tree expr;
205{
3e4d04a1
RH
206 tree r = NULL_TREE;
207
ce4a0391 208 if (expr != NULL_TREE)
ad321293 209 {
35b1567d 210 if (!processing_template_decl
f2c5f623 211 && !(stmts_are_full_exprs_p ())
35b1567d
BC
212 && ((TREE_CODE (TREE_TYPE (expr)) == ARRAY_TYPE
213 && lvalue_p (expr))
214 || TREE_CODE (TREE_TYPE (expr)) == FUNCTION_TYPE))
215 expr = default_conversion (expr);
216
f2c5f623 217 if (stmts_are_full_exprs_p ())
35b1567d
BC
218 expr = convert_to_void (expr, "statement");
219
3e4d04a1 220 r = add_stmt (build_stmt (EXPR_STMT, expr));
35b1567d 221 }
364460b6 222
35b1567d 223 finish_stmt ();
558475f0 224
35b1567d
BC
225 /* This was an expression-statement, so we save the type of the
226 expression. */
227 last_expr_type = expr ? TREE_TYPE (expr) : NULL_TREE;
3e4d04a1
RH
228
229 return r;
35b1567d
BC
230}
231
35b1567d 232
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233/* Begin an if-statement. Returns a newly created IF_STMT if
234 appropriate. */
235
236tree
237begin_if_stmt ()
238{
239 tree r;
9bfadf57 240 do_pushlevel ();
0dfdeca6 241 r = build_stmt (IF_STMT, NULL_TREE, NULL_TREE, NULL_TREE);
ae499cce 242 add_stmt (r);
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243 return r;
244}
245
246/* Process the COND of an if-statement, which may be given by
247 IF_STMT. */
248
249void
250finish_if_stmt_cond (cond, if_stmt)
251 tree cond;
252 tree if_stmt;
253{
ed5511d9 254 cond = maybe_convert_cond (cond);
35b1567d 255 FINISH_COND (cond, if_stmt, IF_COND (if_stmt));
ad321293
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256}
257
258/* Finish the then-clause of an if-statement, which may be given by
259 IF_STMT. */
260
261tree
262finish_then_clause (if_stmt)
263 tree if_stmt;
264{
35b1567d 265 RECHAIN_STMTS (if_stmt, THEN_CLAUSE (if_stmt));
ae499cce 266 last_tree = if_stmt;
35b1567d 267 return if_stmt;
ad321293
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268}
269
270/* Begin the else-clause of an if-statement. */
271
272void
273begin_else_clause ()
274{
ad321293
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275}
276
277/* Finish the else-clause of an if-statement, which may be given by
278 IF_STMT. */
279
280void
281finish_else_clause (if_stmt)
282 tree if_stmt;
283{
35b1567d 284 RECHAIN_STMTS (if_stmt, ELSE_CLAUSE (if_stmt));
ad321293
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285}
286
dfbb4f34 287/* Finish an if-statement. */
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288
289void
290finish_if_stmt ()
291{
ad321293
MM
292 do_poplevel ();
293 finish_stmt ();
294}
295
35b1567d
BC
296void
297clear_out_block ()
298{
299 /* If COND wasn't a declaration, clear out the
300 block we made for it and start a new one here so the
301 optimization in expand_end_loop will work. */
302 if (getdecls () == NULL_TREE)
303 {
304 do_poplevel ();
305 do_pushlevel ();
306 }
307}
308
ad321293
MM
309/* Begin a while-statement. Returns a newly created WHILE_STMT if
310 appropriate. */
311
312tree
313begin_while_stmt ()
314{
315 tree r;
0dfdeca6 316 r = build_stmt (WHILE_STMT, NULL_TREE, NULL_TREE);
ae499cce 317 add_stmt (r);
ad321293 318 do_pushlevel ();
ad321293
MM
319 return r;
320}
321
27d26ee7 322/* Process the COND of a while-statement, which may be given by
ad321293
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323 WHILE_STMT. */
324
325void
326finish_while_stmt_cond (cond, while_stmt)
327 tree cond;
328 tree while_stmt;
329{
ed5511d9 330 cond = maybe_convert_cond (cond);
35b1567d
BC
331 FINISH_COND (cond, while_stmt, WHILE_COND (while_stmt));
332 clear_out_block ();
ad321293
MM
333}
334
335/* Finish a while-statement, which may be given by WHILE_STMT. */
336
337void
338finish_while_stmt (while_stmt)
339 tree while_stmt;
340{
341 do_poplevel ();
35b1567d 342 RECHAIN_STMTS (while_stmt, WHILE_BODY (while_stmt));
ad321293
MM
343 finish_stmt ();
344}
345
346/* Begin a do-statement. Returns a newly created DO_STMT if
347 appropriate. */
348
349tree
350begin_do_stmt ()
351{
0dfdeca6 352 tree r = build_stmt (DO_STMT, NULL_TREE, NULL_TREE);
ae499cce 353 add_stmt (r);
35b1567d 354 return r;
ad321293
MM
355}
356
357/* Finish the body of a do-statement, which may be given by DO_STMT. */
358
359void
360finish_do_body (do_stmt)
361 tree do_stmt;
362{
35b1567d 363 RECHAIN_STMTS (do_stmt, DO_BODY (do_stmt));
ad321293
MM
364}
365
366/* Finish a do-statement, which may be given by DO_STMT, and whose
367 COND is as indicated. */
368
369void
370finish_do_stmt (cond, do_stmt)
371 tree cond;
372 tree do_stmt;
373{
ed5511d9 374 cond = maybe_convert_cond (cond);
35b1567d
BC
375 DO_COND (do_stmt) = cond;
376 finish_stmt ();
377}
ed5511d9 378
ad321293
MM
379/* Finish a return-statement. The EXPRESSION returned, if any, is as
380 indicated. */
381
3e4d04a1 382tree
ad321293
MM
383finish_return_stmt (expr)
384 tree expr;
385{
3e4d04a1
RH
386 tree r;
387
35b1567d 388 if (!processing_template_decl)
efee38a9 389 expr = check_return_expr (expr);
35b1567d 390 if (!processing_template_decl)
efee38a9
MM
391 {
392 if (DECL_CONSTRUCTOR_P (current_function_decl) && ctor_label)
393 {
394 /* Even returns without a value in a constructor must return
395 `this'. We accomplish this by sending all returns in a
396 constructor to the CTOR_LABEL; finish_function emits code to
397 return a value there. When we finally generate the real
398 return statement, CTOR_LABEL is no longer set, and we fall
399 through into the normal return-processing code below. */
3e4d04a1 400 return finish_goto_stmt (ctor_label);
efee38a9
MM
401 }
402 else if (DECL_DESTRUCTOR_P (current_function_decl))
403 {
404 /* Similarly, all destructors must run destructors for
405 base-classes before returning. So, all returns in a
dfbb4f34 406 destructor get sent to the DTOR_LABEL; finish_function emits
efee38a9 407 code to return a value there. */
3e4d04a1 408 return finish_goto_stmt (dtor_label);
efee38a9
MM
409 }
410 }
3e4d04a1 411 r = add_stmt (build_stmt (RETURN_STMT, expr));
35b1567d 412 finish_stmt ();
3e4d04a1
RH
413
414 return r;
35b1567d 415}
efee38a9 416
ad321293
MM
417/* Begin a for-statement. Returns a new FOR_STMT if appropriate. */
418
419tree
420begin_for_stmt ()
421{
422 tree r;
423
0dfdeca6
BC
424 r = build_stmt (FOR_STMT, NULL_TREE, NULL_TREE,
425 NULL_TREE, NULL_TREE);
f2c5f623 426 NEW_FOR_SCOPE_P (r) = flag_new_for_scope > 0;
ae499cce 427 add_stmt (r);
f2c5f623 428 if (NEW_FOR_SCOPE_P (r))
ad321293
MM
429 {
430 do_pushlevel ();
431 note_level_for_for ();
432 }
433
434 return r;
435}
436
437/* Finish the for-init-statement of a for-statement, which may be
438 given by FOR_STMT. */
439
440void
441finish_for_init_stmt (for_stmt)
442 tree for_stmt;
443{
35b1567d
BC
444 if (last_tree != for_stmt)
445 RECHAIN_STMTS (for_stmt, FOR_INIT_STMT (for_stmt));
ad321293
MM
446 do_pushlevel ();
447}
448
449/* Finish the COND of a for-statement, which may be given by
450 FOR_STMT. */
451
452void
453finish_for_cond (cond, for_stmt)
454 tree cond;
455 tree for_stmt;
456{
ed5511d9 457 cond = maybe_convert_cond (cond);
35b1567d
BC
458 FINISH_COND (cond, for_stmt, FOR_COND (for_stmt));
459 clear_out_block ();
ad321293
MM
460}
461
462/* Finish the increment-EXPRESSION in a for-statement, which may be
463 given by FOR_STMT. */
464
465void
466finish_for_expr (expr, for_stmt)
467 tree expr;
468 tree for_stmt;
469{
35b1567d 470 FOR_EXPR (for_stmt) = expr;
ad321293
MM
471}
472
473/* Finish the body of a for-statement, which may be given by
474 FOR_STMT. The increment-EXPR for the loop must be
475 provided. */
476
477void
35b1567d 478finish_for_stmt (for_stmt)
ad321293
MM
479 tree for_stmt;
480{
481 /* Pop the scope for the body of the loop. */
482 do_poplevel ();
35b1567d 483 RECHAIN_STMTS (for_stmt, FOR_BODY (for_stmt));
f2c5f623 484 if (NEW_FOR_SCOPE_P (for_stmt))
ad321293 485 do_poplevel ();
ad321293
MM
486 finish_stmt ();
487}
488
489/* Finish a break-statement. */
490
3e4d04a1 491tree
ad321293
MM
492finish_break_stmt ()
493{
3e4d04a1 494 return add_stmt (build_break_stmt ());
35b1567d
BC
495}
496
ad321293
MM
497/* Finish a continue-statement. */
498
3e4d04a1 499tree
ad321293
MM
500finish_continue_stmt ()
501{
3e4d04a1 502 return add_stmt (build_continue_stmt ());
ad321293
MM
503}
504
35b1567d
BC
505/* Begin a switch-statement. Returns a new SWITCH_STMT if
506 appropriate. */
507
508tree
509begin_switch_stmt ()
510{
511 tree r;
0dfdeca6 512 r = build_stmt (SWITCH_STMT, NULL_TREE, NULL_TREE);
ae499cce 513 add_stmt (r);
35b1567d 514 do_pushlevel ();
527f0080 515 return r;
ad321293
MM
516}
517
527f0080 518/* Finish the cond of a switch-statement. */
ad321293 519
527f0080
MM
520void
521finish_switch_cond (cond, switch_stmt)
ad321293 522 tree cond;
527f0080 523 tree switch_stmt;
ad321293 524{
35b1567d 525 if (!processing_template_decl)
373eb3b3 526 {
56cb9733
MM
527 tree type;
528 tree index;
529
35b1567d
BC
530 /* Convert the condition to an integer or enumeration type. */
531 cond = build_expr_type_conversion (WANT_INT | WANT_ENUM, cond, 1);
532 if (cond == NULL_TREE)
373eb3b3 533 {
35b1567d
BC
534 error ("switch quantity not an integer");
535 cond = error_mark_node;
536 }
537 if (cond != error_mark_node)
538 {
35b1567d 539 cond = default_conversion (cond);
2bb5d995 540 cond = fold (build1 (CLEANUP_POINT_EXPR, TREE_TYPE (cond), cond));
373eb3b3 541 }
56cb9733
MM
542
543 type = TREE_TYPE (cond);
544 index = get_unwidened (cond, NULL_TREE);
545 /* We can't strip a conversion from a signed type to an unsigned,
546 because if we did, int_fits_type_p would do the wrong thing
547 when checking case values for being in range,
548 and it's too hard to do the right thing. */
549 if (TREE_UNSIGNED (TREE_TYPE (cond))
550 == TREE_UNSIGNED (TREE_TYPE (index)))
551 cond = index;
ad321293 552 }
35b1567d 553 FINISH_COND (cond, switch_stmt, SWITCH_COND (switch_stmt));
56cb9733 554 push_switch (switch_stmt);
ad321293
MM
555}
556
557/* Finish the body of a switch-statement, which may be given by
558 SWITCH_STMT. The COND to switch on is indicated. */
559
560void
35b1567d 561finish_switch_stmt (switch_stmt)
ad321293
MM
562 tree switch_stmt;
563{
35b1567d 564 RECHAIN_STMTS (switch_stmt, SWITCH_BODY (switch_stmt));
ad321293
MM
565 pop_switch ();
566 do_poplevel ();
567 finish_stmt ();
568}
569
35b1567d 570/* Generate the RTL for T, which is a TRY_BLOCK. */
6625cdb5 571
54f7877c
MM
572static void
573genrtl_try_block (t)
35b1567d
BC
574 tree t;
575{
576 if (CLEANUP_P (t))
577 {
578 expand_eh_region_start ();
579 expand_stmt (TRY_STMTS (t));
52a11cbf 580 expand_eh_region_end_cleanup (TRY_HANDLERS (t));
46e8c075 581 }
ad321293
MM
582 else
583 {
f444e36b
MM
584 if (!FN_TRY_BLOCK_P (t))
585 emit_line_note (input_filename, lineno);
35b1567d 586
52a11cbf 587 expand_eh_region_start ();
35b1567d 588 expand_stmt (TRY_STMTS (t));
ad321293 589
35b1567d 590 if (FN_TRY_BLOCK_P (t))
ad321293 591 {
35b1567d
BC
592 end_protect_partials ();
593 expand_start_all_catch ();
594 in_function_try_handler = 1;
595 expand_stmt (TRY_HANDLERS (t));
596 in_function_try_handler = 0;
597 expand_end_all_catch ();
598 }
599 else
600 {
601 expand_start_all_catch ();
602 expand_stmt (TRY_HANDLERS (t));
603 expand_end_all_catch ();
ad321293 604 }
ad321293
MM
605 }
606}
607
52a11cbf
RH
608/* Generate the RTL for T, which is an EH_SPEC_BLOCK. */
609
610static void
611genrtl_eh_spec_block (t)
612 tree t;
613{
614 expand_eh_region_start ();
615 expand_stmt (EH_SPEC_STMTS (t));
616 expand_eh_region_end_allowed (EH_SPEC_RAISES (t),
617 build_call (call_unexpected_node,
618 tree_cons (NULL_TREE,
619 build_exc_ptr (),
620 NULL_TREE)));
621}
622
ad321293
MM
623/* Begin a try-block. Returns a newly-created TRY_BLOCK if
624 appropriate. */
625
626tree
627begin_try_block ()
628{
0dfdeca6 629 tree r = build_stmt (TRY_BLOCK, NULL_TREE, NULL_TREE);
ae499cce 630 add_stmt (r);
35b1567d 631 return r;
ad321293
MM
632}
633
0dde4175
JM
634/* Likewise, for a function-try-block. */
635
636tree
637begin_function_try_block ()
638{
0dfdeca6 639 tree r = build_stmt (TRY_BLOCK, NULL_TREE, NULL_TREE);
35b1567d 640 FN_TRY_BLOCK_P (r) = 1;
ae499cce 641 add_stmt (r);
35b1567d 642 return r;
0dde4175
JM
643}
644
ad321293
MM
645/* Finish a try-block, which may be given by TRY_BLOCK. */
646
647void
648finish_try_block (try_block)
649 tree try_block;
650{
35b1567d 651 RECHAIN_STMTS (try_block, TRY_STMTS (try_block));
ad321293
MM
652}
653
efa8eda3
MM
654/* Finish the body of a cleanup try-block, which may be given by
655 TRY_BLOCK. */
656
62409b39
MM
657void
658finish_cleanup_try_block (try_block)
659 tree try_block;
660{
35b1567d 661 RECHAIN_STMTS (try_block, TRY_STMTS (try_block));
62409b39
MM
662}
663
f1dedc31
MM
664/* Finish an implicitly generated try-block, with a cleanup is given
665 by CLEANUP. */
666
667void
668finish_cleanup (cleanup, try_block)
669 tree cleanup;
670 tree try_block;
671{
35b1567d
BC
672 TRY_HANDLERS (try_block) = cleanup;
673 CLEANUP_P (try_block) = 1;
f1dedc31
MM
674}
675
0dde4175
JM
676/* Likewise, for a function-try-block. */
677
678void
679finish_function_try_block (try_block)
f1dedc31 680 tree try_block;
0dde4175 681{
35b1567d
BC
682 if (TREE_CHAIN (try_block)
683 && TREE_CODE (TREE_CHAIN (try_block)) == CTOR_INITIALIZER)
62409b39 684 {
35b1567d
BC
685 /* Chain the compound statement after the CTOR_INITIALIZER. */
686 TREE_CHAIN (TREE_CHAIN (try_block)) = last_tree;
687 /* And make the CTOR_INITIALIZER the body of the try-block. */
688 RECHAIN_STMTS (try_block, TRY_STMTS (try_block));
62409b39 689 }
0dde4175 690 else
35b1567d 691 RECHAIN_STMTS (try_block, TRY_STMTS (try_block));
b35d4555 692 in_function_try_handler = 1;
0dde4175
JM
693}
694
ad321293
MM
695/* Finish a handler-sequence for a try-block, which may be given by
696 TRY_BLOCK. */
697
698void
699finish_handler_sequence (try_block)
700 tree try_block;
701{
35b1567d
BC
702 RECHAIN_STMTS (try_block, TRY_HANDLERS (try_block));
703 check_handlers (TRY_HANDLERS (try_block));
ad321293
MM
704}
705
0dde4175
JM
706/* Likewise, for a function-try-block. */
707
708void
709finish_function_handler_sequence (try_block)
710 tree try_block;
711{
b35d4555 712 in_function_try_handler = 0;
35b1567d
BC
713 RECHAIN_STMTS (try_block, TRY_HANDLERS (try_block));
714 check_handlers (TRY_HANDLERS (try_block));
715}
716
717/* Generate the RTL for T, which is a HANDLER. */
b35d4555 718
54f7877c 719static void
35b1567d
BC
720genrtl_handler (t)
721 tree t;
722{
723 genrtl_do_pushlevel ();
724 expand_stmt (HANDLER_BODY (t));
725 if (!processing_template_decl)
52a11cbf 726 expand_end_catch ();
0dde4175
JM
727}
728
ad321293
MM
729/* Begin a handler. Returns a HANDLER if appropriate. */
730
731tree
732begin_handler ()
733{
734 tree r;
0dfdeca6 735 r = build_stmt (HANDLER, NULL_TREE, NULL_TREE);
ae499cce 736 add_stmt (r);
ad321293 737 do_pushlevel ();
ad321293
MM
738 return r;
739}
740
741/* Finish the handler-parameters for a handler, which may be given by
b35d4555
MM
742 HANDLER. DECL is the declaration for the catch parameter, or NULL
743 if this is a `catch (...)' clause. */
ad321293 744
b35d4555
MM
745tree
746finish_handler_parms (decl, handler)
747 tree decl;
ad321293 748 tree handler;
b35d4555
MM
749{
750 tree blocks = NULL_TREE;
751
752 if (processing_template_decl)
753 {
754 if (decl)
755 {
756 decl = pushdecl (decl);
757 decl = push_template_decl (decl);
758 add_decl_stmt (decl);
759 RECHAIN_STMTS (handler, HANDLER_PARMS (handler));
760 }
761 }
35b1567d 762 else
b35d4555
MM
763 blocks = expand_start_catch_block (decl);
764
35b1567d
BC
765 if (decl)
766 TREE_TYPE (handler) = TREE_TYPE (decl);
767
768 return blocks;
769}
770
52a11cbf 771/* Generate the RTL for a START_CATCH_STMT. */
35b1567d 772
54f7877c 773static void
35b1567d
BC
774genrtl_catch_block (type)
775 tree type;
776{
52a11cbf 777 expand_start_catch (type);
35b1567d
BC
778}
779
780/* Note the beginning of a handler for TYPE. This function is called
781 at the point to which control should be transferred when an
782 appropriately-typed exception is thrown. */
783
784void
785begin_catch_block (type)
786 tree type;
787{
ae499cce 788 add_stmt (build (START_CATCH_STMT, type));
35b1567d
BC
789}
790
791/* Finish a handler, which may be given by HANDLER. The BLOCKs are
792 the return value from the matching call to finish_handler_parms. */
793
794void
795finish_handler (blocks, handler)
796 tree blocks;
797 tree handler;
798{
799 if (!processing_template_decl)
800 expand_end_catch_block (blocks);
801 do_poplevel ();
802 RECHAIN_STMTS (handler, HANDLER_BODY (handler));
803}
804
805/* Generate the RTL for T, which is a CTOR_STMT. */
806
54f7877c 807static void
35b1567d
BC
808genrtl_ctor_stmt (t)
809 tree t;
810{
811 if (CTOR_BEGIN_P (t))
812 begin_protect_partials ();
813 else
814 /* After this point, any exceptions will cause the
815 destructor to be executed, so we no longer need to worry
816 about destroying the various subobjects ourselves. */
817 end_protect_partials ();
818}
819
ad321293
MM
820/* Begin a compound-statement. If HAS_NO_SCOPE is non-zero, the
821 compound-statement does not define a scope. Returns a new
822 COMPOUND_STMT if appropriate. */
823
824tree
825begin_compound_stmt (has_no_scope)
826 int has_no_scope;
827{
828 tree r;
6625cdb5 829 int is_try = 0;
ad321293 830
0dfdeca6 831 r = build_stmt (COMPOUND_STMT, NULL_TREE);
35b1567d
BC
832
833 if (last_tree && TREE_CODE (last_tree) == TRY_BLOCK)
834 is_try = 1;
835
ae499cce 836 add_stmt (r);
35b1567d
BC
837 if (has_no_scope)
838 COMPOUND_STMT_NO_SCOPE (r) = 1;
ad321293 839
558475f0
MM
840 last_expr_type = NULL_TREE;
841
ad321293 842 if (!has_no_scope)
6625cdb5
JM
843 {
844 do_pushlevel ();
845 if (is_try)
826840d9 846 note_level_for_try ();
6625cdb5 847 }
f1dedc31
MM
848 else
849 /* Normally, we try hard to keep the BLOCK for a
850 statement-expression. But, if it's a statement-expression with
851 a scopeless block, there's nothing to keep, and we don't want
852 to accidentally keep a block *inside* the scopeless block. */
853 keep_next_level (0);
ad321293 854
24bef158
MM
855 /* If this is the outermost block of the function, declare the
856 variables __FUNCTION__, __PRETTY_FUNCTION__, and so forth. */
01d939e8 857 if (cfun
8f17b5c5 858 && !function_name_declared_p
9bfadf57 859 && !has_no_scope)
24bef158 860 {
8f17b5c5 861 function_name_declared_p = 1;
2ce07e2d 862 declare_function_name ();
24bef158
MM
863 }
864
ad321293
MM
865 return r;
866}
867
ad321293
MM
868/* Finish a compound-statement, which may be given by COMPOUND_STMT.
869 If HAS_NO_SCOPE is non-zero, the compound statement does not define
870 a scope. */
871
872tree
873finish_compound_stmt (has_no_scope, compound_stmt)
874 int has_no_scope;
875 tree compound_stmt;
876{
877 tree r;
558475f0 878 tree t;
ad321293
MM
879
880 if (!has_no_scope)
881 r = do_poplevel ();
882 else
883 r = NULL_TREE;
884
35b1567d 885 RECHAIN_STMTS (compound_stmt, COMPOUND_BODY (compound_stmt));
ad321293 886
cb39191d 887 /* When we call finish_stmt we will lose LAST_EXPR_TYPE. But, since
558475f0
MM
888 the precise purpose of that variable is store the type of the
889 last expression statement within the last compound statement, we
890 preserve the value. */
891 t = last_expr_type;
ad321293 892 finish_stmt ();
558475f0 893 last_expr_type = t;
ad321293
MM
894
895 return r;
896}
897
35b1567d
BC
898/* Finish an asm-statement, whose components are a CV_QUALIFIER, a
899 STRING, some OUTPUT_OPERANDS, some INPUT_OPERANDS, and some
900 CLOBBERS. */
7dc5bd62 901
3e4d04a1 902tree
35b1567d
BC
903finish_asm_stmt (cv_qualifier, string, output_operands,
904 input_operands, clobbers)
905 tree cv_qualifier;
906 tree string;
907 tree output_operands;
908 tree input_operands;
909 tree clobbers;
910{
911 tree r;
abfc8a36
MM
912 tree t;
913
35b1567d
BC
914 if (TREE_CHAIN (string))
915 string = combine_strings (string);
916
917 if (cv_qualifier != NULL_TREE
918 && cv_qualifier != ridpointers[(int) RID_VOLATILE])
919 {
920 cp_warning ("%s qualifier ignored on asm",
921 IDENTIFIER_POINTER (cv_qualifier));
922 cv_qualifier = NULL_TREE;
ad321293 923 }
35b1567d 924
abfc8a36
MM
925 if (!processing_template_decl)
926 for (t = input_operands; t; t = TREE_CHAIN (t))
8853373c
MM
927 {
928 tree converted_operand
929 = decay_conversion (TREE_VALUE (t));
930
931 /* If the type of the operand hasn't been determined (e.g.,
932 because it involves an overloaded function), then issue an
933 error message. There's no context available to resolve the
934 overloading. */
935 if (TREE_TYPE (converted_operand) == unknown_type_node)
936 {
937 cp_error ("type of asm operand `%E' could not be determined",
938 TREE_VALUE (t));
939 converted_operand = error_mark_node;
940 }
941 TREE_VALUE (t) = converted_operand;
942 }
abfc8a36 943
0dfdeca6
BC
944 r = build_stmt (ASM_STMT, cv_qualifier, string,
945 output_operands, input_operands,
946 clobbers);
3e4d04a1 947 return add_stmt (r);
ad321293 948}
b4c4a9ec 949
f01b0acb
MM
950/* Finish a label with the indicated NAME. */
951
952void
953finish_label_stmt (name)
954 tree name;
955{
3fa56191 956 tree decl = define_label (input_filename, lineno, name);
ae499cce 957 add_stmt (build_stmt (LABEL_STMT, decl));
f01b0acb
MM
958}
959
acef433b
MM
960/* Finish a series of declarations for local labels. G++ allows users
961 to declare "local" labels, i.e., labels with scope. This extension
962 is useful when writing code involving statement-expressions. */
963
964void
965finish_label_decl (name)
966 tree name;
967{
968 tree decl = declare_local_label (name);
35b1567d 969 add_decl_stmt (decl);
acef433b
MM
970}
971
35b1567d
BC
972/* Generate the RTL for a SUBOBJECT. */
973
54f7877c 974static void
35b1567d
BC
975genrtl_subobject (cleanup)
976 tree cleanup;
977{
978 add_partial_entry (cleanup);
9188c363
MM
979}
980
f1dedc31
MM
981/* We're in a constructor, and have just constructed a a subobject of
982 *THIS. CLEANUP is code to run if an exception is thrown before the
983 end of the current function is reached. */
984
985void
986finish_subobject (cleanup)
987 tree cleanup;
988{
0dfdeca6 989 tree r = build_stmt (SUBOBJECT, cleanup);
ae499cce 990 add_stmt (r);
35b1567d
BC
991}
992
24bef158
MM
993/* When DECL goes out of scope, make sure that CLEANUP is executed. */
994
995void
996finish_decl_cleanup (decl, cleanup)
997 tree decl;
998 tree cleanup;
999{
ae499cce 1000 add_stmt (build_stmt (CLEANUP_STMT, decl, cleanup));
35b1567d
BC
1001}
1002
1003/* Generate the RTL for a RETURN_INIT. */
1004
54f7877c 1005static void
44835fdd 1006genrtl_named_return_value ()
35b1567d 1007{
156ce211 1008 tree decl = DECL_RESULT (current_function_decl);
35b1567d 1009
44835fdd
MM
1010 /* If this named return value comes in a register, put it in a
1011 pseudo-register. */
1012 if (DECL_REGISTER (decl))
35b1567d 1013 {
44835fdd
MM
1014 /* Note that the mode of the old DECL_RTL may be wider than the
1015 mode of DECL_RESULT, depending on the calling conventions for
1016 the processor. For example, on the Alpha, a 32-bit integer
1017 is returned in a DImode register -- the DECL_RESULT has
1018 SImode but the DECL_RTL for the DECL_RESULT has DImode. So,
1019 here, we use the mode the back-end has already assigned for
1020 the return value. */
19e7881c 1021 SET_DECL_RTL (decl, gen_reg_rtx (GET_MODE (DECL_RTL (decl))));
44835fdd
MM
1022 if (TREE_ADDRESSABLE (decl))
1023 put_var_into_stack (decl);
35b1567d 1024 }
156ce211
RH
1025
1026 emit_local_var (decl);
24bef158
MM
1027}
1028
558475f0
MM
1029/* Bind a name and initialization to the return value of
1030 the current function. */
1031
1032void
1033finish_named_return_value (return_id, init)
1034 tree return_id, init;
1035{
1036 tree decl = DECL_RESULT (current_function_decl);
1037
44835fdd
MM
1038 /* Give this error as many times as there are occurrences, so that
1039 users can use Emacs compilation buffers to find and fix all such
1040 places. */
558475f0 1041 if (pedantic)
cab1f180 1042 pedwarn ("ISO C++ does not permit named return values");
44835fdd 1043 cp_deprecated ("the named return value extension");
558475f0
MM
1044
1045 if (return_id != NULL_TREE)
1046 {
1047 if (DECL_NAME (decl) == NULL_TREE)
92643fea 1048 DECL_NAME (decl) = return_id;
558475f0
MM
1049 else
1050 {
1051 cp_error ("return identifier `%D' already in place", return_id);
1052 return;
1053 }
1054 }
1055
1056 /* Can't let this happen for constructors. */
1057 if (DECL_CONSTRUCTOR_P (current_function_decl))
1058 {
1059 error ("can't redefine default return value for constructors");
1060 return;
1061 }
1062
1063 /* If we have a named return value, put that in our scope as well. */
1064 if (DECL_NAME (decl) != NULL_TREE)
1065 {
1066 /* Let `cp_finish_decl' know that this initializer is ok. */
1067 DECL_INITIAL (decl) = init;
b35d4555
MM
1068 if (doing_semantic_analysis_p ())
1069 pushdecl (decl);
44835fdd
MM
1070 if (!processing_template_decl)
1071 {
1072 cp_finish_decl (decl, init, NULL_TREE, 0);
ae499cce 1073 add_stmt (build_stmt (RETURN_INIT, NULL_TREE, NULL_TREE));
44835fdd
MM
1074 }
1075 else
ae499cce 1076 add_stmt (build_stmt (RETURN_INIT, return_id, init));
558475f0 1077 }
f0ad3f46
MM
1078
1079 /* Don't use tree-inlining for functions with named return values.
1080 That doesn't work properly because we don't do any translation of
1081 the RETURN_INITs when they are copied. */
1082 DECL_UNINLINABLE (current_function_decl) = 1;
558475f0
MM
1083}
1084
bf3428d0
MM
1085/* The INIT_LIST is a list of mem-initializers, in the order they were
1086 written by the user. The TREE_VALUE of each node is a list of
1087 initializers for a particular subobject. The TREE_PURPOSE is a
1088 FIELD_DECL is the initializer is for a non-static data member, and
1089 a class type if the initializer is for a base class. */
1090
1091void
1092finish_mem_initializers (init_list)
1093 tree init_list;
1094{
1095 tree member_init_list;
1096 tree base_init_list;
1097 tree last_base_warned_about;
1098 tree next;
1099 tree init;
1100
1101 member_init_list = NULL_TREE;
1102 base_init_list = NULL_TREE;
1103 last_base_warned_about = NULL_TREE;
1104
1105 for (init = init_list; init; init = next)
1106 {
1107 next = TREE_CHAIN (init);
1108 if (TREE_CODE (TREE_PURPOSE (init)) == FIELD_DECL)
1109 {
1110 TREE_CHAIN (init) = member_init_list;
1111 member_init_list = init;
1112
1113 /* We're running through the initializers from right to left
1114 as we process them here. So, if we see a data member
1115 initializer after we see a base initializer, that
1116 actually means that the base initializer preceeded the
1117 data member initializer. */
1118 if (warn_reorder && last_base_warned_about != base_init_list)
1119 {
1120 tree base;
1121
1122 for (base = base_init_list;
1123 base != last_base_warned_about;
1124 base = TREE_CHAIN (base))
1125 {
1126 cp_warning ("base initializer for `%T'",
1127 TREE_PURPOSE (base));
1128 warning (" will be re-ordered to precede member initializations");
1129 }
1130
1131 last_base_warned_about = base_init_list;
1132 }
1133 }
1134 else
1135 {
1136 TREE_CHAIN (init) = base_init_list;
1137 base_init_list = init;
1138 }
1139 }
1140
1141 setup_vtbl_ptr (member_init_list, base_init_list);
1142}
1143
558475f0
MM
1144/* Cache the value of this class's main virtual function table pointer
1145 in a register variable. This will save one indirection if a
1146 more than one virtual function call is made this function. */
1147
1148void
fd74ca0b
MM
1149setup_vtbl_ptr (member_init_list, base_init_list)
1150 tree member_init_list;
1151 tree base_init_list;
558475f0 1152{
9bfadf57
MM
1153 my_friendly_assert (doing_semantic_analysis_p (), 19990919);
1154
1155 /* If we've already done this, there's no need to do it again. */
1156 if (vtbls_set_up_p)
1157 return;
1158
1159 if (DECL_CONSTRUCTOR_P (current_function_decl))
558475f0 1160 {
9bfadf57 1161 if (processing_template_decl)
ae499cce 1162 add_stmt (build_min_nt
558475f0 1163 (CTOR_INITIALIZER,
fd74ca0b 1164 member_init_list, base_init_list));
558475f0 1165 else
46e8c075
MM
1166 {
1167 tree ctor_stmt;
1168
1169 /* Mark the beginning of the constructor. */
0dfdeca6 1170 ctor_stmt = build_stmt (CTOR_STMT);
46e8c075 1171 CTOR_BEGIN_P (ctor_stmt) = 1;
ae499cce 1172 add_stmt (ctor_stmt);
46e8c075
MM
1173
1174 /* And actually initialize the base-classes and members. */
fd74ca0b 1175 emit_base_init (member_init_list, base_init_list);
46e8c075 1176 }
9bfadf57
MM
1177 }
1178 else if (DECL_DESTRUCTOR_P (current_function_decl)
1179 && !processing_template_decl)
1180 {
9bfadf57
MM
1181 tree if_stmt;
1182 tree compound_stmt;
f9817201 1183 int saved_cfnd;
9bfadf57 1184
3ec6bad3
MM
1185 /* If the dtor is empty, and we know there is not any possible
1186 way we could use any vtable entries, before they are possibly
1187 set by a base class dtor, we don't have to setup the vtables,
1188 as we know that any base class dtor will set up any vtables
1189 it needs. We avoid MI, because one base class dtor can do a
9bfadf57
MM
1190 virtual dispatch to an overridden function that would need to
1191 have a non-related vtable set up, we cannot avoid setting up
3ec6bad3
MM
1192 vtables in that case. We could change this to see if there
1193 is just one vtable. */
9bfadf57
MM
1194 if_stmt = begin_if_stmt ();
1195
1196 /* If it is not safe to avoid setting up the vtables, then
1197 someone will change the condition to be boolean_true_node.
1198 (Actually, for now, we do not have code to set the condition
f9817201 1199 appropriately, so we just assume that we always need to
9bfadf57
MM
1200 initialize the vtables.) */
1201 finish_if_stmt_cond (boolean_true_node, if_stmt);
1202 current_vcalls_possible_p = &IF_COND (if_stmt);
f9817201
MM
1203
1204 /* Don't declare __PRETTY_FUNCTION__ and friends here when we
1205 open the block for the if-body. */
8f17b5c5
MM
1206 saved_cfnd = function_name_declared_p;
1207 function_name_declared_p = 1;
9bfadf57 1208 compound_stmt = begin_compound_stmt (/*has_no_scope=*/0);
8f17b5c5 1209 function_name_declared_p = saved_cfnd;
9bfadf57
MM
1210
1211 /* Make all virtual function table pointers in non-virtual base
1212 classes point to CURRENT_CLASS_TYPE's virtual function
1213 tables. */
cf2e003b 1214 initialize_vtbl_ptrs (current_class_ptr);
9bfadf57
MM
1215
1216 finish_compound_stmt (/*has_no_scope=*/0, compound_stmt);
1217 finish_then_clause (if_stmt);
1218 finish_if_stmt ();
558475f0 1219 }
f1dedc31
MM
1220
1221 /* Always keep the BLOCK node associated with the outermost pair of
9bfadf57 1222 curly braces of a function. These are needed for correct
f1dedc31
MM
1223 operation of dwarfout.c. */
1224 keep_next_level (1);
9bfadf57
MM
1225
1226 /* The virtual function tables are set up now. */
1227 vtbls_set_up_p = 1;
558475f0
MM
1228}
1229
8f17b5c5 1230/* Returns the stack of SCOPE_STMTs for the current function. */
35b1567d 1231
8f17b5c5
MM
1232tree *
1233current_scope_stmt_stack ()
8f471b0d 1234{
8f17b5c5 1235 return &cfun->language->x_scope_stmt_stack;
8f471b0d
MM
1236}
1237
b4c4a9ec
MM
1238/* Finish a parenthesized expression EXPR. */
1239
1240tree
1241finish_parenthesized_expr (expr)
1242 tree expr;
1243{
1244 if (IS_EXPR_CODE_CLASS (TREE_CODE_CLASS (TREE_CODE (expr))))
1245 /* This inhibits warnings in truthvalue_conversion. */
1246 C_SET_EXP_ORIGINAL_CODE (expr, ERROR_MARK);
1247
19420d00
NS
1248 if (TREE_CODE (expr) == OFFSET_REF)
1249 /* [expr.unary.op]/3 The qualified id of a pointer-to-member must not be
1250 enclosed in parentheses. */
1251 PTRMEM_OK_P (expr) = 0;
b4c4a9ec
MM
1252 return expr;
1253}
1254
b69b1501
MM
1255/* Begin a statement-expression. The value returned must be passed to
1256 finish_stmt_expr. */
b4c4a9ec
MM
1257
1258tree
1259begin_stmt_expr ()
1260{
6f80451c
MM
1261 /* If we're outside a function, we won't have a statement-tree to
1262 work with. But, if we see a statement-expression we need to
1263 create one. */
01d939e8 1264 if (! cfun && !last_tree)
6f80451c
MM
1265 begin_stmt_tree (&scope_chain->x_saved_tree);
1266
f1dedc31 1267 keep_next_level (1);
558475f0 1268 /* If we're building a statement tree, then the upcoming compound
b69b1501
MM
1269 statement will be chained onto the tree structure, starting at
1270 last_tree. We return last_tree so that we can later unhook the
1271 compound statement. */
35b1567d
BC
1272 return last_tree;
1273}
1274
596fd31c
MM
1275/* Used when beginning a statement-expression outside function scope.
1276 For example, when handling a file-scope initializer, we use this
1277 function. */
35b1567d 1278
596fd31c
MM
1279tree
1280begin_global_stmt_expr ()
35b1567d 1281{
596fd31c
MM
1282 if (! cfun && !last_tree)
1283 begin_stmt_tree (&scope_chain->x_saved_tree);
35b1567d 1284
596fd31c
MM
1285 keep_next_level (1);
1286
1287 return (last_tree != NULL_TREE) ? last_tree : expand_start_stmt_expr();
1288}
1289
1290/* Finish the STMT_EXPR last begun with begin_global_stmt_expr. */
1291
1292tree
1293finish_global_stmt_expr (stmt_expr)
1294 tree stmt_expr;
1295{
1296 stmt_expr = expand_end_stmt_expr (stmt_expr);
35b1567d
BC
1297
1298 if (! cfun
1299 && TREE_CHAIN (scope_chain->x_saved_tree) == NULL_TREE)
1300 finish_stmt_tree (&scope_chain->x_saved_tree);
1301
596fd31c 1302 return stmt_expr;
b4c4a9ec
MM
1303}
1304
1305/* Finish a statement-expression. RTL_EXPR should be the value
1306 returned by the previous begin_stmt_expr; EXPR is the
1307 statement-expression. Returns an expression representing the
1308 statement-expression. */
1309
1310tree
5ba57b55 1311finish_stmt_expr (rtl_expr)
b4c4a9ec 1312 tree rtl_expr;
b4c4a9ec
MM
1313{
1314 tree result;
1315
35b1567d
BC
1316 /* If the last thing in the statement-expression was not an
1317 expression-statement, then it has type `void'. */
1318 if (!last_expr_type)
1319 last_expr_type = void_type_node;
1320 result = build_min (STMT_EXPR, last_expr_type, last_tree);
1321 TREE_SIDE_EFFECTS (result) = 1;
1322
1323 /* Remove the compound statement from the tree structure; it is
1324 now saved in the STMT_EXPR. */
ae499cce 1325 last_tree = rtl_expr;
35b1567d 1326 TREE_CHAIN (last_tree) = NULL_TREE;
f1dedc31 1327
6f80451c
MM
1328 /* If we created a statement-tree for this statement-expression,
1329 remove it now. */
01d939e8 1330 if (! cfun
6f80451c
MM
1331 && TREE_CHAIN (scope_chain->x_saved_tree) == NULL_TREE)
1332 finish_stmt_tree (&scope_chain->x_saved_tree);
1333
b4c4a9ec
MM
1334 return result;
1335}
1336
1337/* Finish a call to FN with ARGS. Returns a representation of the
1338 call. */
1339
1340tree
a759e627 1341finish_call_expr (fn, args, koenig)
b4c4a9ec
MM
1342 tree fn;
1343 tree args;
a759e627 1344 int koenig;
b4c4a9ec 1345{
a759e627
ML
1346 tree result;
1347
1348 if (koenig)
03d82991
JM
1349 {
1350 if (TREE_CODE (fn) == BIT_NOT_EXPR)
1351 fn = build_x_unary_op (BIT_NOT_EXPR, TREE_OPERAND (fn, 0));
1352 else if (TREE_CODE (fn) != TEMPLATE_ID_EXPR)
e13a4123 1353 fn = do_identifier (fn, 2, args);
03d82991 1354 }
a759e627 1355 result = build_x_function_call (fn, args, current_class_ref);
b4c4a9ec
MM
1356
1357 if (TREE_CODE (result) == CALL_EXPR
66543169
NS
1358 && (! TREE_TYPE (result)
1359 || TREE_CODE (TREE_TYPE (result)) != VOID_TYPE))
b4c4a9ec
MM
1360 result = require_complete_type (result);
1361
1362 return result;
1363}
1364
1365/* Finish a call to a postfix increment or decrement or EXPR. (Which
1366 is indicated by CODE, which should be POSTINCREMENT_EXPR or
1367 POSTDECREMENT_EXPR.) */
1368
1369tree
1370finish_increment_expr (expr, code)
1371 tree expr;
1372 enum tree_code code;
1373{
1374 /* If we get an OFFSET_REF, turn it into what it really means (e.g.,
1375 a COMPONENT_REF). This way if we've got, say, a reference to a
1376 static member that's being operated on, we don't end up trying to
1377 find a member operator for the class it's in. */
1378
1379 if (TREE_CODE (expr) == OFFSET_REF)
1380 expr = resolve_offset_ref (expr);
1381 return build_x_unary_op (code, expr);
1382}
1383
1384/* Finish a use of `this'. Returns an expression for `this'. */
1385
1386tree
1387finish_this_expr ()
1388{
1389 tree result;
1390
1391 if (current_class_ptr)
1392 {
1393#ifdef WARNING_ABOUT_CCD
1394 TREE_USED (current_class_ptr) = 1;
1395#endif
1396 result = current_class_ptr;
1397 }
1398 else if (current_function_decl
1399 && DECL_STATIC_FUNCTION_P (current_function_decl))
1400 {
8251199e 1401 error ("`this' is unavailable for static member functions");
b4c4a9ec
MM
1402 result = error_mark_node;
1403 }
1404 else
1405 {
1406 if (current_function_decl)
8251199e 1407 error ("invalid use of `this' in non-member function");
b4c4a9ec 1408 else
8251199e 1409 error ("invalid use of `this' at top level");
b4c4a9ec
MM
1410 result = error_mark_node;
1411 }
1412
1413 return result;
1414}
1415
1416/* Finish a member function call using OBJECT and ARGS as arguments to
1417 FN. Returns an expression for the call. */
1418
1419tree
1420finish_object_call_expr (fn, object, args)
1421 tree fn;
1422 tree object;
1423 tree args;
1424{
1425#if 0
1426 /* This is a future direction of this code, but because
1427 build_x_function_call cannot always undo what is done in
1428 build_component_ref entirely yet, we cannot do this. */
1429
1430 tree real_fn = build_component_ref (object, fn, NULL_TREE, 1);
1431 return finish_call_expr (real_fn, args);
1432#else
c219b878 1433 if (DECL_DECLARES_TYPE_P (fn))
c68c56f7
MM
1434 {
1435 if (processing_template_decl)
1436 /* This can happen on code like:
1437
1438 class X;
1439 template <class T> void f(T t) {
1440 t.X();
1441 }
1442
1443 We just grab the underlying IDENTIFIER. */
1444 fn = DECL_NAME (fn);
1445 else
1446 {
8251199e 1447 cp_error ("calling type `%T' like a method", fn);
c68c56f7
MM
1448 return error_mark_node;
1449 }
1450 }
1451
b4c4a9ec
MM
1452 return build_method_call (object, fn, args, NULL_TREE, LOOKUP_NORMAL);
1453#endif
1454}
1455
1456/* Finish a qualified member function call using OBJECT and ARGS as
509fc277 1457 arguments to FN. Returns an expression for the call. */
b4c4a9ec
MM
1458
1459tree
1460finish_qualified_object_call_expr (fn, object, args)
1461 tree fn;
1462 tree object;
1463 tree args;
1464{
6eabb241
MM
1465 return build_scoped_method_call (object, TREE_OPERAND (fn, 0),
1466 TREE_OPERAND (fn, 1), args);
b4c4a9ec
MM
1467}
1468
1469/* Finish a pseudo-destructor call expression of OBJECT, with SCOPE
1470 being the scope, if any, of DESTRUCTOR. Returns an expression for
1471 the call. */
1472
1473tree
1474finish_pseudo_destructor_call_expr (object, scope, destructor)
1475 tree object;
1476 tree scope;
1477 tree destructor;
1478{
40242ccf
MM
1479 if (processing_template_decl)
1480 return build_min_nt (PSEUDO_DTOR_EXPR, object, scope, destructor);
1481
b4c4a9ec 1482 if (scope && scope != destructor)
8251199e 1483 cp_error ("destructor specifier `%T::~%T()' must have matching names",
b4c4a9ec
MM
1484 scope, destructor);
1485
1486 if ((scope == NULL_TREE || IDENTIFIER_GLOBAL_VALUE (destructor))
1487 && (TREE_CODE (TREE_TYPE (object)) !=
1488 TREE_CODE (TREE_TYPE (IDENTIFIER_GLOBAL_VALUE (destructor)))))
8251199e 1489 cp_error ("`%E' is not of type `%T'", object, destructor);
b4c4a9ec
MM
1490
1491 return cp_convert (void_type_node, object);
1492}
1493
1494/* Finish a call to a globally qualified member function FN using
1495 ARGS. Returns an expression for the call. */
1496
1497tree
75d587eb 1498finish_qualified_call_expr (fn, args)
b4c4a9ec
MM
1499 tree fn;
1500 tree args;
1501{
1502 if (processing_template_decl)
2a1e9fdd 1503 return build_min_nt (CALL_EXPR, fn, args, NULL_TREE);
b4c4a9ec
MM
1504 else
1505 return build_member_call (TREE_OPERAND (fn, 0),
1506 TREE_OPERAND (fn, 1),
1507 args);
1508}
1509
1510/* Finish an expression taking the address of LABEL. Returns an
1511 expression for the address. */
1512
1513tree
1514finish_label_address_expr (label)
1515 tree label;
1516{
1517 tree result;
1518
1519 label = lookup_label (label);
1520 if (label == NULL_TREE)
1521 result = null_pointer_node;
1522 else
1523 {
1524 TREE_USED (label) = 1;
1525 result = build1 (ADDR_EXPR, ptr_type_node, label);
1526 TREE_CONSTANT (result) = 1;
46e8c075
MM
1527 /* This function cannot be inlined. All jumps to the addressed
1528 label should wind up at the same point. */
1529 DECL_UNINLINABLE (current_function_decl) = 1;
b4c4a9ec
MM
1530 }
1531
1532 return result;
1533}
1534
ce4a0391
MM
1535/* Finish an expression of the form CODE EXPR. */
1536
1537tree
1538finish_unary_op_expr (code, expr)
1539 enum tree_code code;
1540 tree expr;
1541{
1542 tree result = build_x_unary_op (code, expr);
7c355bca
ML
1543 /* Inside a template, build_x_unary_op does not fold the
1544 expression. So check whether the result is folded before
1545 setting TREE_NEGATED_INT. */
1546 if (code == NEGATE_EXPR && TREE_CODE (expr) == INTEGER_CST
88b4335f
NS
1547 && TREE_CODE (result) == INTEGER_CST
1548 && !TREE_UNSIGNED (TREE_TYPE (result))
1549 && INT_CST_LT (result, integer_zero_node))
ce4a0391
MM
1550 TREE_NEGATED_INT (result) = 1;
1551 overflow_warning (result);
1552 return result;
1553}
1554
1555/* Finish an id-expression. */
1556
1557tree
1558finish_id_expr (expr)
1559 tree expr;
1560{
1561 if (TREE_CODE (expr) == IDENTIFIER_NODE)
a759e627 1562 expr = do_identifier (expr, 1, NULL_TREE);
ce4a0391 1563
3d7e9ba4
NS
1564 if (TREE_TYPE (expr) == error_mark_node)
1565 expr = error_mark_node;
ce4a0391
MM
1566 return expr;
1567}
1568
70adf8a9
JM
1569static tree current_type_lookups;
1570
1571/* Perform deferred access control for types used in the type of a
1572 declaration. */
1573
1f51a992 1574static void
70adf8a9
JM
1575deferred_type_access_control ()
1576{
1f51a992 1577 tree lookup = type_lookups;
70adf8a9
JM
1578
1579 if (lookup == error_mark_node)
1580 return;
1581
1582 for (; lookup; lookup = TREE_CHAIN (lookup))
1583 enforce_access (TREE_PURPOSE (lookup), TREE_VALUE (lookup));
1584}
1585
70adf8a9 1586void
1f51a992
JM
1587decl_type_access_control (decl)
1588 tree decl;
70adf8a9 1589{
1f51a992 1590 tree save_fn;
70adf8a9 1591
1f51a992
JM
1592 if (type_lookups == error_mark_node)
1593 return;
1594
1595 save_fn = current_function_decl;
1596
1597 if (decl && TREE_CODE (decl) == FUNCTION_DECL)
1598 current_function_decl = decl;
70adf8a9 1599
70adf8a9 1600 deferred_type_access_control ();
1f51a992
JM
1601
1602 current_function_decl = save_fn;
1603
1604 /* Now strip away the checks for the current declarator; they were
1605 added to type_lookups after typed_declspecs saved the copy that
1606 ended up in current_type_lookups. */
1607 type_lookups = current_type_lookups;
788bf0e3
NS
1608
1609 current_type_lookups = NULL_TREE;
1f51a992
JM
1610}
1611
788bf0e3
NS
1612/* Record the lookups, if we're doing deferred access control. */
1613
1f51a992
JM
1614void
1615save_type_access_control (lookups)
1616 tree lookups;
1617{
788bf0e3
NS
1618 if (type_lookups != error_mark_node)
1619 {
1620 my_friendly_assert (!current_type_lookups, 20010301);
1621 current_type_lookups = lookups;
1622 }
1623 else
1624 my_friendly_assert (!lookups || lookups == error_mark_node, 20010301);
1625}
1626
1627/* Set things up so that the next deferred access control will succeed.
1628 This is needed for friend declarations see grokdeclarator for details. */
1629
1630void
1631skip_type_access_control ()
1632{
1633 type_lookups = NULL_TREE;
1634}
1635
1636/* Reset the deferred access control. */
1637
1638void
1639reset_type_access_control ()
1640{
1641 type_lookups = NULL_TREE;
1642 current_type_lookups = NULL_TREE;
1f51a992 1643}
70adf8a9
JM
1644
1645/* Begin a function definition declared with DECL_SPECS and
b4c4a9ec
MM
1646 DECLARATOR. Returns non-zero if the function-declaration is
1647 legal. */
1648
1649int
1f51a992 1650begin_function_definition (decl_specs, declarator)
b4c4a9ec
MM
1651 tree decl_specs;
1652 tree declarator;
1653{
1654 tree specs;
1655 tree attrs;
70adf8a9 1656
b4c4a9ec 1657 split_specs_attrs (decl_specs, &specs, &attrs);
a8f73d4b 1658 if (!start_function (specs, declarator, attrs, SF_DEFAULT))
b4c4a9ec 1659 return 0;
1f51a992
JM
1660
1661 deferred_type_access_control ();
1662 type_lookups = error_mark_node;
1663
39c01e4c
MM
1664 /* The things we're about to see are not directly qualified by any
1665 template headers we've seen thus far. */
1666 reset_specialization ();
1667
b4c4a9ec
MM
1668 return 1;
1669}
1670
1671/* Begin a constructor declarator of the form `SCOPE::NAME'. Returns
1672 a SCOPE_REF. */
1673
1674tree
1675begin_constructor_declarator (scope, name)
1676 tree scope;
1677 tree name;
1678{
718b8ea5 1679 tree result = build_nt (SCOPE_REF, scope, name);
830fcda8 1680 enter_scope_of (result);
b4c4a9ec
MM
1681 return result;
1682}
1683
ce4a0391
MM
1684/* Finish an init-declarator. Returns a DECL. */
1685
1686tree
1687finish_declarator (declarator, declspecs, attributes,
1688 prefix_attributes, initialized)
1689 tree declarator;
1690 tree declspecs;
1691 tree attributes;
1692 tree prefix_attributes;
1693 int initialized;
1694{
1695 return start_decl (declarator, declspecs, initialized, attributes,
1696 prefix_attributes);
1697}
1698
8014a339 1699/* Finish a translation unit. */
ce4a0391
MM
1700
1701void
1702finish_translation_unit ()
1703{
1704 /* In case there were missing closebraces,
1705 get us back to the global binding level. */
273a708f 1706 pop_everything ();
ce4a0391
MM
1707 while (current_namespace != global_namespace)
1708 pop_namespace ();
1709 finish_file ();
1710}
1711
b4c4a9ec
MM
1712/* Finish a template type parameter, specified as AGGR IDENTIFIER.
1713 Returns the parameter. */
1714
1715tree
1716finish_template_type_parm (aggr, identifier)
1717 tree aggr;
1718 tree identifier;
1719{
6eabb241 1720 if (aggr != class_type_node)
b4c4a9ec 1721 {
8251199e 1722 pedwarn ("template type parameters must use the keyword `class' or `typename'");
b4c4a9ec
MM
1723 aggr = class_type_node;
1724 }
1725
1726 return build_tree_list (aggr, identifier);
1727}
1728
1729/* Finish a template template parameter, specified as AGGR IDENTIFIER.
1730 Returns the parameter. */
1731
1732tree
1733finish_template_template_parm (aggr, identifier)
1734 tree aggr;
1735 tree identifier;
1736{
1737 tree decl = build_decl (TYPE_DECL, identifier, NULL_TREE);
1738 tree tmpl = build_lang_decl (TEMPLATE_DECL, identifier, NULL_TREE);
1739 DECL_TEMPLATE_PARMS (tmpl) = current_template_parms;
1740 DECL_TEMPLATE_RESULT (tmpl) = decl;
c727aa5e 1741 DECL_ARTIFICIAL (decl) = 1;
b4c4a9ec
MM
1742 end_template_decl ();
1743
b37bf5bd
NS
1744 my_friendly_assert (DECL_TEMPLATE_PARMS (tmpl), 20010110);
1745
b4c4a9ec
MM
1746 return finish_template_type_parm (aggr, tmpl);
1747}
ce4a0391
MM
1748
1749/* Finish a parameter list, indicated by PARMS. If ELLIPSIS is
1750 non-zero, the parameter list was terminated by a `...'. */
1751
1752tree
1753finish_parmlist (parms, ellipsis)
1754 tree parms;
1755 int ellipsis;
1756{
5cce22b6
NS
1757 if (parms)
1758 {
1759 /* We mark the PARMS as a parmlist so that declarator processing can
1760 disambiguate certain constructs. */
1761 TREE_PARMLIST (parms) = 1;
1762 /* We do not append void_list_node here, but leave it to grokparms
1763 to do that. */
1764 PARMLIST_ELLIPSIS_P (parms) = ellipsis;
1765 }
ce4a0391
MM
1766 return parms;
1767}
1768
1769/* Begin a class definition, as indicated by T. */
1770
1771tree
1772begin_class_definition (t)
1773 tree t;
1774{
788bf0e3
NS
1775 /* Check the bases are accessible. */
1776 decl_type_access_control (TYPE_NAME (t));
1777 reset_type_access_control ();
1778
522d6614
NS
1779 if (processing_template_parmlist)
1780 {
1781 cp_error ("definition of `%#T' inside template parameter list", t);
1782 return error_mark_node;
1783 }
ce4a0391
MM
1784 if (t == error_mark_node
1785 || ! IS_AGGR_TYPE (t))
1786 {
33848bb0 1787 t = make_aggr_type (RECORD_TYPE);
ce4a0391
MM
1788 pushtag (make_anon_name (), t, 0);
1789 }
830fcda8
JM
1790
1791 /* In a definition of a member class template, we will get here with an
1792 implicit typename, a TYPENAME_TYPE with a type. */
1793 if (TREE_CODE (t) == TYPENAME_TYPE)
1794 t = TREE_TYPE (t);
4c571114
MM
1795
1796 /* If we generated a partial instantiation of this type, but now
1797 we're seeing a real definition, we're actually looking at a
1798 partial specialization. Consider:
1799
1800 template <class T, class U>
1801 struct Y {};
1802
1803 template <class T>
1804 struct X {};
1805
1806 template <class T, class U>
1807 void f()
1808 {
1809 typename X<Y<T, U> >::A a;
1810 }
1811
1812 template <class T, class U>
1813 struct X<Y<T, U> >
1814 {
1815 };
1816
1817 We have to undo the effects of the previous partial
1818 instantiation. */
1819 if (PARTIAL_INSTANTIATION_P (t))
1820 {
1821 if (!pedantic)
1822 {
1823 /* Unfortunately, when we're not in pedantic mode, we
1824 attempt to actually fill in some of the fields of the
1825 partial instantiation, in order to support the implicit
1826 typename extension. Clear those fields now, in
1827 preparation for the definition here. The fields cleared
1828 here must match those set in instantiate_class_template.
1829 Look for a comment mentioning begin_class_definition
1830 there. */
1831 TYPE_BINFO_BASETYPES (t) = NULL_TREE;
1832 TYPE_FIELDS (t) = NULL_TREE;
1833 TYPE_METHODS (t) = NULL_TREE;
1834 CLASSTYPE_TAGS (t) = NULL_TREE;
1ddd4323 1835 CLASSTYPE_VBASECLASSES (t) = NULL_TREE;
4c571114
MM
1836 TYPE_SIZE (t) = NULL_TREE;
1837 }
830fcda8 1838
4c571114
MM
1839 /* This isn't a partial instantiation any more. */
1840 PARTIAL_INSTANTIATION_P (t) = 0;
1841 }
1842 /* If this type was already complete, and we see another definition,
1843 that's an error. */
d0f062fb 1844 else if (COMPLETE_TYPE_P (t))
ce4a0391 1845 duplicate_tag_error (t);
4c571114 1846
b4f70b3d
NS
1847 /* Update the location of the decl. */
1848 DECL_SOURCE_FILE (TYPE_NAME (t)) = input_filename;
1849 DECL_SOURCE_LINE (TYPE_NAME (t)) = lineno;
1850
4c571114 1851 if (TYPE_BEING_DEFINED (t))
ce4a0391 1852 {
33848bb0 1853 t = make_aggr_type (TREE_CODE (t));
ce4a0391 1854 pushtag (TYPE_IDENTIFIER (t), t, 0);
ce4a0391 1855 }
ff350acd 1856 maybe_process_partial_specialization (t);
8f032717 1857 pushclass (t, 1);
ce4a0391 1858 TYPE_BEING_DEFINED (t) = 1;
55760a0c 1859 TYPE_PACKED (t) = flag_pack_struct;
ce4a0391
MM
1860 /* Reset the interface data, at the earliest possible
1861 moment, as it might have been set via a class foo;
1862 before. */
1951a1b6
JM
1863 if (! TYPE_ANONYMOUS_P (t))
1864 {
1865 CLASSTYPE_INTERFACE_ONLY (t) = interface_only;
1866 SET_CLASSTYPE_INTERFACE_UNKNOWN_X
1867 (t, interface_unknown);
1868 }
ce4a0391
MM
1869 reset_specialization();
1870
b7975aed
MM
1871 /* Make a declaration for this class in its own scope. */
1872 build_self_reference ();
1873
830fcda8 1874 return t;
ce4a0391
MM
1875}
1876
61a127b3
MM
1877/* Finish the member declaration given by DECL. */
1878
1879void
1880finish_member_declaration (decl)
1881 tree decl;
1882{
1883 if (decl == error_mark_node || decl == NULL_TREE)
1884 return;
1885
1886 if (decl == void_type_node)
1887 /* The COMPONENT was a friend, not a member, and so there's
1888 nothing for us to do. */
1889 return;
1890
1891 /* We should see only one DECL at a time. */
1892 my_friendly_assert (TREE_CHAIN (decl) == NULL_TREE, 0);
1893
1894 /* Set up access control for DECL. */
1895 TREE_PRIVATE (decl)
1896 = (current_access_specifier == access_private_node);
1897 TREE_PROTECTED (decl)
1898 = (current_access_specifier == access_protected_node);
1899 if (TREE_CODE (decl) == TEMPLATE_DECL)
1900 {
17aec3eb
RK
1901 TREE_PRIVATE (DECL_TEMPLATE_RESULT (decl)) = TREE_PRIVATE (decl);
1902 TREE_PROTECTED (DECL_TEMPLATE_RESULT (decl)) = TREE_PROTECTED (decl);
61a127b3
MM
1903 }
1904
1905 /* Mark the DECL as a member of the current class. */
4f1c5b7d 1906 DECL_CONTEXT (decl) = current_class_type;
61a127b3 1907
421844e7
MM
1908 /* [dcl.link]
1909
1910 A C language linkage is ignored for the names of class members
1911 and the member function type of class member functions. */
1912 if (DECL_LANG_SPECIFIC (decl) && DECL_LANGUAGE (decl) == lang_c)
5d2ed28c 1913 SET_DECL_LANGUAGE (decl, lang_cplusplus);
421844e7 1914
61a127b3
MM
1915 /* Put functions on the TYPE_METHODS list and everything else on the
1916 TYPE_FIELDS list. Note that these are built up in reverse order.
1917 We reverse them (to obtain declaration order) in finish_struct. */
1918 if (TREE_CODE (decl) == FUNCTION_DECL
1919 || DECL_FUNCTION_TEMPLATE_P (decl))
1920 {
1921 /* We also need to add this function to the
1922 CLASSTYPE_METHOD_VEC. */
452a394b 1923 add_method (current_class_type, decl, /*error_p=*/0);
61a127b3
MM
1924
1925 TREE_CHAIN (decl) = TYPE_METHODS (current_class_type);
1926 TYPE_METHODS (current_class_type) = decl;
1927 }
1928 else
1929 {
1930 /* All TYPE_DECLs go at the end of TYPE_FIELDS. Ordinary fields
1931 go at the beginning. The reason is that lookup_field_1
1932 searches the list in order, and we want a field name to
1933 override a type name so that the "struct stat hack" will
1934 work. In particular:
1935
1936 struct S { enum E { }; int E } s;
1937 s.E = 3;
1938
1939 is legal. In addition, the FIELD_DECLs must be maintained in
1940 declaration order so that class layout works as expected.
1941 However, we don't need that order until class layout, so we
1942 save a little time by putting FIELD_DECLs on in reverse order
1943 here, and then reversing them in finish_struct_1. (We could
1944 also keep a pointer to the correct insertion points in the
1945 list.) */
1946
1947 if (TREE_CODE (decl) == TYPE_DECL)
1948 TYPE_FIELDS (current_class_type)
1949 = chainon (TYPE_FIELDS (current_class_type), decl);
1950 else
1951 {
1952 TREE_CHAIN (decl) = TYPE_FIELDS (current_class_type);
1953 TYPE_FIELDS (current_class_type) = decl;
1954 }
8f032717
MM
1955
1956 /* Enter the DECL into the scope of the class. */
1957 if (TREE_CODE (decl) != USING_DECL)
1958 pushdecl_class_level (decl);
61a127b3
MM
1959 }
1960}
1961
1962/* Finish a class definition T with the indicate ATTRIBUTES. If SEMI,
1963 the definition is immediately followed by a semicolon. Returns the
1964 type. */
ce4a0391
MM
1965
1966tree
fbdd0024 1967finish_class_definition (t, attributes, semi, pop_scope_p)
ce4a0391 1968 tree t;
ce4a0391
MM
1969 tree attributes;
1970 int semi;
fbdd0024 1971 int pop_scope_p;
ce4a0391 1972{
ce4a0391
MM
1973 /* finish_struct nukes this anyway; if finish_exception does too,
1974 then it can go. */
1975 if (semi)
1976 note_got_semicolon (t);
1977
dc8263bc
JM
1978 /* If we got any attributes in class_head, xref_tag will stick them in
1979 TREE_TYPE of the type. Grab them now. */
1980 attributes = chainon (TREE_TYPE (t), attributes);
1981 TREE_TYPE (t) = NULL_TREE;
1982
ce4a0391
MM
1983 if (TREE_CODE (t) == ENUMERAL_TYPE)
1984 ;
1985 else
1986 {
9f33663b 1987 t = finish_struct (t, attributes);
ce4a0391
MM
1988 if (semi)
1989 note_got_semicolon (t);
1990 }
1991
ce4a0391
MM
1992 if (! semi)
1993 check_for_missing_semicolon (t);
fbdd0024
MM
1994 if (pop_scope_p)
1995 pop_scope (CP_DECL_CONTEXT (TYPE_MAIN_DECL (t)));
788bf0e3
NS
1996 if (current_function_decl)
1997 type_lookups = error_mark_node;
ce4a0391
MM
1998 if (current_scope () == current_function_decl)
1999 do_pending_defargs ();
2000
2001 return t;
2002}
2003
2004/* Finish processing the default argument expressions cached during
2005 the processing of a class definition. */
2006
2007void
51632249 2008begin_inline_definitions ()
ce4a0391 2009{
0e5921e8 2010 if (current_scope () == current_function_decl)
ce4a0391
MM
2011 do_pending_inlines ();
2012}
2013
2014/* Finish processing the inline function definitions cached during the
2015 processing of a class definition. */
2016
2017void
51632249 2018finish_inline_definitions ()
ce4a0391
MM
2019{
2020 if (current_class_type == NULL_TREE)
2021 clear_inline_text_obstack ();
ce4a0391 2022}
35acd3f2
MM
2023
2024/* Finish processing the declaration of a member class template
2025 TYPES whose template parameters are given by PARMS. */
2026
2027tree
61a127b3 2028finish_member_class_template (types)
35acd3f2
MM
2029 tree types;
2030{
36a117a5
MM
2031 tree t;
2032
2033 /* If there are declared, but undefined, partial specializations
2034 mixed in with the typespecs they will not yet have passed through
2035 maybe_process_partial_specialization, so we do that here. */
2036 for (t = types; t != NULL_TREE; t = TREE_CHAIN (t))
2037 if (IS_AGGR_TYPE_CODE (TREE_CODE (TREE_VALUE (t))))
2038 maybe_process_partial_specialization (TREE_VALUE (t));
2039
35acd3f2 2040 note_list_got_semicolon (types);
61a127b3 2041 grok_x_components (types);
35acd3f2
MM
2042 if (TYPE_CONTEXT (TREE_VALUE (types)) != current_class_type)
2043 /* The component was in fact a friend declaration. We avoid
2044 finish_member_template_decl performing certain checks by
2045 unsetting TYPES. */
2046 types = NULL_TREE;
61a127b3
MM
2047
2048 finish_member_template_decl (types);
2049
35acd3f2
MM
2050 /* As with other component type declarations, we do
2051 not store the new DECL on the list of
2052 component_decls. */
2053 return NULL_TREE;
2054}
36a117a5
MM
2055
2056/* Finish processsing a complete template declaration. The PARMS are
2057 the template parameters. */
2058
2059void
2060finish_template_decl (parms)
2061 tree parms;
2062{
2063 if (parms)
2064 end_template_decl ();
2065 else
2066 end_specialization ();
2067}
2068
509fc277 2069/* Finish processing a template-id (which names a type) of the form
36a117a5
MM
2070 NAME < ARGS >. Return the TYPE_DECL for the type named by the
2071 template-id. If ENTERING_SCOPE is non-zero we are about to enter
2072 the scope of template-id indicated. */
2073
2074tree
2075finish_template_type (name, args, entering_scope)
2076 tree name;
2077 tree args;
2078 int entering_scope;
2079{
2080 tree decl;
2081
2082 decl = lookup_template_class (name, args,
f9c244b8
NS
2083 NULL_TREE, NULL_TREE,
2084 entering_scope, /*complain=*/1);
36a117a5
MM
2085 if (decl != error_mark_node)
2086 decl = TYPE_STUB_DECL (decl);
2087
2088 return decl;
2089}
648f19f6
MM
2090
2091/* SR is a SCOPE_REF node. Enter the scope of SR, whether it is a
2092 namespace scope or a class scope. */
2093
2094void
2095enter_scope_of (sr)
2096 tree sr;
2097{
2098 tree scope = TREE_OPERAND (sr, 0);
2099
2100 if (TREE_CODE (scope) == NAMESPACE_DECL)
2101 {
2102 push_decl_namespace (scope);
2103 TREE_COMPLEXITY (sr) = -1;
2104 }
2105 else if (scope != current_class_type)
2106 {
830fcda8
JM
2107 if (TREE_CODE (scope) == TYPENAME_TYPE)
2108 {
2109 /* In a declarator for a template class member, the scope will
2110 get here as an implicit typename, a TYPENAME_TYPE with a type. */
2111 scope = TREE_TYPE (scope);
2112 TREE_OPERAND (sr, 0) = scope;
2113 }
648f19f6
MM
2114 push_nested_class (scope, 3);
2115 TREE_COMPLEXITY (sr) = current_class_depth;
2116 }
2117}
ea6021e8
MM
2118
2119/* Finish processing a BASE_CLASS with the indicated ACCESS_SPECIFIER.
2120 Return a TREE_LIST containing the ACCESS_SPECIFIER and the
2121 BASE_CLASS, or NULL_TREE if an error occurred. The
2122 ACCESSS_SPECIFIER is one of
2123 access_{default,public,protected_private}[_virtual]_node.*/
2124
2125tree
6eabb241 2126finish_base_specifier (access_specifier, base_class)
ea6021e8
MM
2127 tree access_specifier;
2128 tree base_class;
ea6021e8 2129{
ea6021e8
MM
2130 tree result;
2131
bb92901d 2132 if (! is_aggr_type (base_class, 1))
ea6021e8 2133 result = NULL_TREE;
ea6021e8 2134 else
bb92901d
NS
2135 {
2136 if (CP_TYPE_QUALS (base_class) != 0)
2137 {
2138 cp_error ("base class `%T' has cv qualifiers", base_class);
2139 base_class = TYPE_MAIN_VARIANT (base_class);
2140 }
2141 result = build_tree_list (access_specifier, base_class);
2142 }
ea6021e8
MM
2143
2144 return result;
2145}
61a127b3
MM
2146
2147/* Called when multiple declarators are processed. If that is not
2148 premitted in this context, an error is issued. */
2149
2150void
2151check_multiple_declarators ()
2152{
2153 /* [temp]
2154
2155 In a template-declaration, explicit specialization, or explicit
2156 instantiation the init-declarator-list in the declaration shall
2157 contain at most one declarator.
2158
2159 We don't just use PROCESSING_TEMPLATE_DECL for the first
2160 condition since that would disallow the perfectly legal code,
2161 like `template <class T> struct S { int i, j; };'. */
2162 tree scope = current_scope ();
2163
2164 if (scope && TREE_CODE (scope) == FUNCTION_DECL)
2165 /* It's OK to write `template <class T> void f() { int i, j;}'. */
2166 return;
2167
2168 if (PROCESSING_REAL_TEMPLATE_DECL_P ()
2169 || processing_explicit_instantiation
2170 || processing_specialization)
2171 cp_error ("multiple declarators in template declaration");
2172}
2173
b894fc05
JM
2174tree
2175finish_typeof (expr)
2176 tree expr;
2177{
2178 if (processing_template_decl)
2179 {
2180 tree t;
2181
33848bb0 2182 t = make_aggr_type (TYPEOF_TYPE);
b894fc05 2183 TYPE_FIELDS (t) = expr;
b894fc05
JM
2184
2185 return t;
2186 }
2187
12fa82db
MM
2188 if (TREE_CODE (expr) == OFFSET_REF)
2189 expr = resolve_offset_ref (expr);
2190
b894fc05
JM
2191 return TREE_TYPE (expr);
2192}
558475f0 2193
62409b39
MM
2194/* Generate RTL for the statement T, and its substatements, and any
2195 other statements at its nesting level. */
558475f0 2196
54f7877c
MM
2197static void
2198cp_expand_stmt (t)
558475f0
MM
2199 tree t;
2200{
54f7877c 2201 switch (TREE_CODE (t))
62409b39 2202 {
54f7877c
MM
2203 case CLEANUP_STMT:
2204 genrtl_decl_cleanup (CLEANUP_DECL (t), CLEANUP_EXPR (t));
2205 break;
558475f0 2206
54f7877c
MM
2207 case START_CATCH_STMT:
2208 genrtl_catch_block (TREE_TYPE (t));
2209 break;
a7e4cfa0 2210
54f7877c
MM
2211 case CTOR_STMT:
2212 genrtl_ctor_stmt (t);
2213 break;
a7e4cfa0 2214
54f7877c
MM
2215 case TRY_BLOCK:
2216 genrtl_try_block (t);
2217 break;
558475f0 2218
52a11cbf
RH
2219 case EH_SPEC_BLOCK:
2220 genrtl_eh_spec_block (t);
2221 break;
2222
54f7877c
MM
2223 case HANDLER:
2224 genrtl_handler (t);
2225 break;
558475f0 2226
54f7877c
MM
2227 case SUBOBJECT:
2228 genrtl_subobject (SUBOBJECT_CLEANUP (t));
2229 break;
2230
54f7877c
MM
2231 case RETURN_INIT:
2232 genrtl_named_return_value ();
2233 break;
2234
2235 default:
2236 my_friendly_abort (19990810);
2237 break;
2238 }
558475f0
MM
2239}
2240
3eb24f73
MM
2241/* Called from expand_body via walk_tree. Replace all AGGR_INIT_EXPRs
2242 will equivalent CALL_EXPRs. */
2243
2244static tree
2245simplify_aggr_init_exprs_r (tp, walk_subtrees, data)
2246 tree *tp;
2247 int *walk_subtrees ATTRIBUTE_UNUSED;
2248 void *data ATTRIBUTE_UNUSED;
2249{
2250 tree aggr_init_expr;
2251 tree call_expr;
2252 tree fn;
2253 tree args;
2254 tree slot;
2255 tree type;
3eb24f73
MM
2256 int copy_from_buffer_p;
2257
3eb24f73 2258 aggr_init_expr = *tp;
22e92ac3
MM
2259 /* We don't need to walk into types; there's nothing in a type that
2260 needs simplification. (And, furthermore, there are places we
2261 actively don't want to go. For example, we don't want to wander
2262 into the default arguments for a FUNCTION_DECL that appears in a
2263 CALL_EXPR.) */
2264 if (TYPE_P (aggr_init_expr))
2265 {
2266 *walk_subtrees = 0;
2267 return NULL_TREE;
2268 }
2269 /* Only AGGR_INIT_EXPRs are interesting. */
2270 else if (TREE_CODE (aggr_init_expr) != AGGR_INIT_EXPR)
3eb24f73
MM
2271 return NULL_TREE;
2272
2273 /* Form an appropriate CALL_EXPR. */
2274 fn = TREE_OPERAND (aggr_init_expr, 0);
2275 args = TREE_OPERAND (aggr_init_expr, 1);
2276 slot = TREE_OPERAND (aggr_init_expr, 2);
2277 type = TREE_TYPE (aggr_init_expr);
3eb24f73
MM
2278 if (AGGR_INIT_VIA_CTOR_P (aggr_init_expr))
2279 {
2280 /* Replace the first argument with the address of the third
2281 argument to the AGGR_INIT_EXPR. */
3eb24f73 2282 mark_addressable (slot);
b850de4f
MM
2283 args = tree_cons (NULL_TREE,
2284 build1 (ADDR_EXPR,
2285 build_pointer_type (TREE_TYPE (slot)),
2286 slot),
3eb24f73
MM
2287 TREE_CHAIN (args));
2288 }
b850de4f
MM
2289 call_expr = build (CALL_EXPR,
2290 TREE_TYPE (TREE_TYPE (TREE_TYPE (fn))),
2291 fn, args, NULL_TREE);
3eb24f73
MM
2292 TREE_SIDE_EFFECTS (call_expr) = 1;
2293
2294 /* If we're using the non-reentrant PCC calling convention, then we
2295 need to copy the returned value out of the static buffer into the
2296 SLOT. */
2297 copy_from_buffer_p = 0;
2298#ifdef PCC_STATIC_STRUCT_RETURN
2299 if (!AGGR_INIT_VIA_CTOR_P (aggr_init_expr) && aggregate_value_p (type))
2300 {
41251458 2301 int old_ac = flag_access_control;
3eb24f73
MM
2302
2303 flag_access_control = 0;
2304 call_expr = build_aggr_init (slot, call_expr, LOOKUP_ONLYCONVERTING);
2305 flag_access_control = old_ac;
2306 copy_from_buffer_p = 1;
2307 }
2308#endif
2309
2310 /* If this AGGR_INIT_EXPR indicates the value returned by a
2311 function, then we want to use the value of the initialized
2312 location as the result. */
2313 if (AGGR_INIT_VIA_CTOR_P (aggr_init_expr) || copy_from_buffer_p)
2314 {
2315 call_expr = build (COMPOUND_EXPR, type,
2316 call_expr, slot);
2317 TREE_SIDE_EFFECTS (call_expr) = 1;
2318 }
2319
2320 /* Replace the AGGR_INIT_EXPR with the CALL_EXPR. */
2321 TREE_CHAIN (call_expr) = TREE_CHAIN (aggr_init_expr);
2322 *tp = call_expr;
2323
2324 /* Keep iterating. */
2325 return NULL_TREE;
2326}
2327
31f8e4f3
MM
2328/* Emit all thunks to FN that should be emitted when FN is emitted. */
2329
2330static void
2331emit_associated_thunks (fn)
2332 tree fn;
2333{
2334 /* When we use vcall offsets, we emit thunks with the virtual
2335 functions to which they thunk. The whole point of vcall offsets
2336 is so that you can know statically the entire set of thunks that
2337 will ever be needed for a given virtual function, thereby
2338 enabling you to output all the thunks with the function itself. */
2339 if (vcall_offsets_in_vtable_p () && DECL_VIRTUAL_P (fn))
2340 {
2341 tree binfo;
2342 tree v;
2343
2344 for (binfo = TYPE_BINFO (DECL_CONTEXT (fn));
2345 binfo;
2346 binfo = TREE_CHAIN (binfo))
2347 for (v = BINFO_VIRTUALS (binfo); v; v = TREE_CHAIN (v))
2348 if (BV_FN (v) == fn
2349 && (!integer_zerop (BV_DELTA (v))
2350 || BV_VCALL_INDEX (v)))
2351 {
2352 tree thunk;
2353 tree vcall_index;
2354
2355 if (BV_USE_VCALL_INDEX_P (v))
2356 {
2357 vcall_index = BV_VCALL_INDEX (v);
2358 my_friendly_assert (vcall_index != NULL_TREE, 20000621);
2359 }
2360 else
2361 vcall_index = NULL_TREE;
2362
2363 thunk = make_thunk (build1 (ADDR_EXPR,
2364 vfunc_ptr_type_node,
2365 fn),
2366 BV_DELTA (v),
2367 vcall_index,
2368 /*generate_with_vtable_p=*/0);
2369 use_thunk (thunk, /*emit_p=*/1);
2370 }
2371 }
2372}
2373
558475f0
MM
2374/* Generate RTL for FN. */
2375
2376void
2377expand_body (fn)
2378 tree fn;
2379{
62409b39 2380 int saved_lineno;
3b304f5b 2381 const char *saved_input_filename;
558475f0 2382
62409b39
MM
2383 /* When the parser calls us after finishing the body of a template
2384 function, we don't really want to expand the body. When we're
2385 processing an in-class definition of an inline function,
2386 PROCESSING_TEMPLATE_DECL will no longer be set here, so we have
2387 to look at the function itself. */
2388 if (processing_template_decl
2389 || (DECL_LANG_SPECIFIC (fn)
2390 && DECL_TEMPLATE_INFO (fn)
2391 && uses_template_parms (DECL_TI_ARGS (fn))))
d658cd4c
MM
2392 {
2393 /* Normally, collection only occurs in rest_of_compilation. So,
2394 if we don't collect here, we never collect junk generated
2395 during the processing of templates until we hit a
2396 non-template function. */
2397 ggc_collect ();
2398 return;
2399 }
62409b39 2400
3eb24f73 2401 /* Replace AGGR_INIT_EXPRs with appropriate CALL_EXPRs. */
ee94fce6
MM
2402 walk_tree_without_duplicates (&DECL_SAVED_TREE (fn),
2403 simplify_aggr_init_exprs_r,
2404 NULL);
3eb24f73 2405
db9b2174
MM
2406 /* If this is a constructor or destructor body, we have to clone it
2407 under the new ABI. */
2408 if (maybe_clone_body (fn))
2409 {
2410 /* We don't want to process FN again, so pretend we've written
2411 it out, even though we haven't. */
2412 TREE_ASM_WRITTEN (fn) = 1;
2413 return;
2414 }
2415
84df082b
MM
2416 /* There's no reason to do any of the work here if we're only doing
2417 semantic analysis; this code just generates RTL. */
2418 if (flag_syntax_only)
2419 return;
2420
21b0c6dc
MM
2421 /* If possible, avoid generating RTL for this function. Instead,
2422 just record it as an inline function, and wait until end-of-file
2423 to decide whether to write it out or not. */
56e770bf
MM
2424 if (/* We have to generate RTL if it's not an inline function. */
2425 (DECL_INLINE (fn) || DECL_COMDAT (fn))
21b0c6dc
MM
2426 /* Or if we have to keep all inline functions anyhow. */
2427 && !flag_keep_inline_functions
2428 /* Or if we actually have a reference to the function. */
2429 && !DECL_NEEDED_P (fn)
21b0c6dc 2430 /* Or if this is a nested function. */
4f1c5b7d 2431 && !decl_function_context (fn))
21b0c6dc 2432 {
21b0c6dc
MM
2433 /* Set DECL_EXTERNAL so that assemble_external will be called as
2434 necessary. We'll clear it again in finish_file. */
2435 if (!DECL_EXTERNAL (fn))
2436 {
2437 DECL_NOT_REALLY_EXTERN (fn) = 1;
2438 DECL_EXTERNAL (fn) = 1;
2439 }
2440 /* Remember this function. In finish_file we'll decide if
2441 we actually need to write this function out. */
56e770bf 2442 defer_fn (fn);
de23a892
MM
2443 /* Let the back-end know that this funtion exists. */
2444 note_deferral_of_defined_inline_function (fn);
21b0c6dc
MM
2445 return;
2446 }
2447
92788413
MM
2448 /* Compute the appropriate object-file linkage for inline
2449 functions. */
79065db2 2450 if (DECL_DECLARED_INLINE_P (fn))
92788413
MM
2451 import_export_decl (fn);
2452
31f8e4f3
MM
2453 /* Emit any thunks that should be emitted at the same time as FN. */
2454 emit_associated_thunks (fn);
2455
297a5329 2456 timevar_push (TV_INTEGRATION);
ea11ca7e 2457
46e8c075
MM
2458 /* Optimize the body of the function before expanding it. */
2459 optimize_function (fn);
2460
297a5329
JM
2461 timevar_pop (TV_INTEGRATION);
2462 timevar_push (TV_EXPAND);
2463
62409b39 2464 /* Save the current file name and line number. When we expand the
84df082b 2465 body of the function, we'll set LINENO and INPUT_FILENAME so that
62409b39
MM
2466 error-mesages come out in the right places. */
2467 saved_lineno = lineno;
2468 saved_input_filename = input_filename;
2469 lineno = DECL_SOURCE_LINE (fn);
2470 input_filename = DECL_SOURCE_FILE (fn);
2471
f444e36b 2472 genrtl_start_function (fn);
6462c441 2473 current_function_is_thunk = DECL_THUNK_P (fn);
558475f0 2474
24bef158
MM
2475 /* We don't need to redeclare __FUNCTION__, __PRETTY_FUNCTION__, or
2476 any of the other magic variables we set up when starting a
2477 function body. */
8f17b5c5 2478 function_name_declared_p = 1;
24bef158 2479
558475f0 2480 /* Expand the body. */
b35d4555 2481 expand_stmt (DECL_SAVED_TREE (fn));
558475f0 2482
62409b39
MM
2483 /* Statements should always be full-expressions at the outermost set
2484 of curly braces for a function. */
f2c5f623 2485 my_friendly_assert (stmts_are_full_exprs_p (), 19990831);
62409b39
MM
2486
2487 /* The outermost statement for a function contains the line number
2488 recorded when we finished processing the function. */
2489 lineno = STMT_LINENO (DECL_SAVED_TREE (fn));
2490
2491 /* Generate code for the function. */
f444e36b 2492 genrtl_finish_function (fn);
62409b39 2493
46e8c075
MM
2494 /* If possible, obliterate the body of the function so that it can
2495 be garbage collected. */
2496 if (flag_dump_translation_unit)
2497 /* Keep the body; we're going to dump it. */
2498 ;
2499 else if (DECL_INLINE (fn) && flag_inline_trees)
2500 /* We might need the body of this function so that we can expand
2501 it inline somewhere else. */
2502 ;
2503 else
2504 /* We don't need the body; blow it away. */
d658cd4c
MM
2505 DECL_SAVED_TREE (fn) = NULL_TREE;
2506
62409b39
MM
2507 /* And restore the current source position. */
2508 lineno = saved_lineno;
2509 input_filename = saved_input_filename;
f12eef58 2510 extract_interface_info ();
ea11ca7e
JM
2511
2512 timevar_pop (TV_EXPAND);
558475f0 2513}
54f7877c 2514
f444e36b
MM
2515/* Start generating the RTL for FN. */
2516
2517static void
2518genrtl_start_function (fn)
2519 tree fn;
2520{
2521 tree parm;
2522
2523 /* Tell everybody what function we're processing. */
2524 current_function_decl = fn;
2525 /* Get the RTL machinery going for this function. */
2526 init_function_start (fn, DECL_SOURCE_FILE (fn), DECL_SOURCE_LINE (fn));
2527 /* Let everybody know that we're expanding this function, not doing
2528 semantic analysis. */
2529 expanding_p = 1;
2530
2531 /* Even though we're inside a function body, we still don't want to
2532 call expand_expr to calculate the size of a variable-sized array.
2533 We haven't necessarily assigned RTL to all variables yet, so it's
2534 not safe to try to expand expressions involving them. */
2535 immediate_size_expand = 0;
2536 cfun->x_dont_save_pending_sizes_p = 1;
2537
2538 /* Let the user know we're compiling this function. */
2539 announce_function (fn);
2540
2541 /* Initialize the per-function data. */
2542 my_friendly_assert (!DECL_PENDING_INLINE_P (fn), 20000911);
2543 if (DECL_SAVED_FUNCTION_DATA (fn))
2544 {
2545 /* If we already parsed this function, and we're just expanding it
2546 now, restore saved state. */
2547 *cp_function_chain = *DECL_SAVED_FUNCTION_DATA (fn);
2548
2549 /* This function is being processed in whole-function mode; we
2550 already did semantic analysis. */
2551 cfun->x_whole_function_mode_p = 1;
2552
2553 /* If we decided that we didn't want to inline this function,
2554 make sure the back-end knows that. */
2555 if (!current_function_cannot_inline)
2556 current_function_cannot_inline = cp_function_chain->cannot_inline;
2557
2558 /* We don't need the saved data anymore. */
2559 free (DECL_SAVED_FUNCTION_DATA (fn));
2560 DECL_SAVED_FUNCTION_DATA (fn) = NULL;
2561 }
2562
2563 /* Tell the cross-reference machinery that we're defining this
2564 function. */
2565 GNU_xref_function (fn, DECL_ARGUMENTS (fn));
2566
2567 /* Keep track of how many functions we're presently expanding. */
2568 ++function_depth;
2569
2570 /* Create a binding level for the parameters. */
2571 expand_start_bindings (2);
2572 /* Clear out any previously saved instructions for this function, in
2573 case it was defined more than once. */
2574 DECL_SAVED_INSNS (fn) = NULL;
2575 /* Go through the PARM_DECLs for this function to see if any need
2576 cleanups. */
2577 for (parm = DECL_ARGUMENTS (fn); parm; parm = TREE_CHAIN (parm))
2578 if (TREE_TYPE (parm) != error_mark_node
2579 && TYPE_HAS_NONTRIVIAL_DESTRUCTOR (TREE_TYPE (parm)))
2580 {
2581 expand_function_start (fn, /*parms_have_cleanups=*/1);
2582 break;
2583 }
2584 if (!parm)
2585 expand_function_start (fn, /*parms_have_cleanups=*/0);
2586 /* If this function is `main'. */
2587 if (DECL_MAIN_P (fn))
2588 expand_main_function ();
2589 /* Create a binding contour which can be used to catch
2590 cleanup-generated temporaries. */
2591 expand_start_bindings (2);
2592}
2593
2594/* Finish generating the RTL for FN. */
2595
2596static void
2597genrtl_finish_function (fn)
2598 tree fn;
2599{
f444e36b
MM
2600 tree no_return_label = NULL_TREE;
2601
2602#if 0
2603 if (write_symbols != NO_DEBUG)
2604 {
2605 /* Keep this code around in case we later want to control debug info
2606 based on whether a type is "used". (jason 1999-11-11) */
2607
2608 tree ttype = target_type (fntype);
2609 tree parmdecl;
2610
2611 if (IS_AGGR_TYPE (ttype))
2612 /* Let debugger know it should output info for this type. */
2613 note_debug_info_needed (ttype);
2614
2615 for (parmdecl = DECL_ARGUMENTS (fndecl); parmdecl; parmdecl = TREE_CHAIN (parmdecl))
2616 {
2617 ttype = target_type (TREE_TYPE (parmdecl));
2618 if (IS_AGGR_TYPE (ttype))
2619 /* Let debugger know it should output info for this type. */
2620 note_debug_info_needed (ttype);
2621 }
2622 }
2623#endif
2624
2625 /* Clean house because we will need to reorder insns here. */
2626 do_pending_stack_adjust ();
2627
2628 if (!dtor_label && !DECL_CONSTRUCTOR_P (fn)
2629 && return_label != NULL_RTX
2630 && current_function_return_value == NULL_TREE
2631 && ! DECL_NAME (DECL_RESULT (current_function_decl)))
2632 no_return_label = build_decl (LABEL_DECL, NULL_TREE, NULL_TREE);
2633
f444e36b
MM
2634 /* If this function is supposed to return a value, ensure that
2635 we do not fall into the cleanups by mistake. The end of our
2636 function will look like this:
2637
2638 user code (may have return stmt somewhere)
2639 goto no_return_label
2640 cleanup_label:
2641 cleanups
2642 goto return_label
2643 no_return_label:
2644 NOTE_INSN_FUNCTION_END
2645 return_label:
2646 things for return
2647
2648 If the user omits a return stmt in the USER CODE section, we
2649 will have a control path which reaches NOTE_INSN_FUNCTION_END.
2650 Otherwise, we won't. */
2651 if (no_return_label)
2652 {
2653 DECL_CONTEXT (no_return_label) = fn;
2654 DECL_INITIAL (no_return_label) = error_mark_node;
2655 DECL_SOURCE_FILE (no_return_label) = input_filename;
2656 DECL_SOURCE_LINE (no_return_label) = lineno;
2657 expand_goto (no_return_label);
2658 }
2659
2660 if (cleanup_label)
2661 {
2662 /* Remove the binding contour which is used to catch
2663 cleanup-generated temporaries. */
2664 expand_end_bindings (0, 0, 0);
2665 poplevel (0, 0, 0);
2666
2667 /* Emit label at beginning of cleanup code for parameters. */
2668 emit_label (cleanup_label);
2669 }
2670
f444e36b
MM
2671 /* Finish building code that will trigger warnings if users forget
2672 to make their functions return values. */
e6fe680d
JM
2673 if (return_label)
2674 emit_jump (return_label);
f444e36b
MM
2675 if (no_return_label)
2676 {
2677 /* We don't need to call `expand_*_return' here because we don't
2678 need any cleanups here--this path of code is only for error
2679 checking purposes. */
2680 expand_label (no_return_label);
2681 }
2682
2683 /* We hard-wired immediate_size_expand to zero in start_function.
2684 Expand_function_end will decrement this variable. So, we set the
2685 variable to one here, so that after the decrement it will remain
2686 zero. */
2687 immediate_size_expand = 1;
2688
2689 /* Generate rtl for function exit. */
2690 expand_function_end (input_filename, lineno, 1);
2691
f444e36b
MM
2692 /* If this is a nested function (like a template instantiation that
2693 we're compiling in the midst of compiling something else), push a
2694 new GC context. That will keep local variables on the stack from
2695 being collected while we're doing the compilation of this
2696 function. */
2697 if (function_depth > 1)
2698 ggc_push_context ();
2699
b850de4f
MM
2700 /* There's no need to defer outputting this function any more; we
2701 know we want to output it. */
2702 DECL_DEFER_OUTPUT (fn) = 0;
2703
f444e36b
MM
2704 /* Run the optimizers and output the assembler code for this
2705 function. */
2706 rest_of_compilation (fn);
2707
2708 /* Undo the call to ggc_push_context above. */
2709 if (function_depth > 1)
2710 ggc_pop_context ();
2711
2712 if (DECL_SAVED_INSNS (fn) && ! TREE_ASM_WRITTEN (fn))
2713 {
2714 /* Set DECL_EXTERNAL so that assemble_external will be called as
2715 necessary. We'll clear it again in finish_file. */
2716 if (! DECL_EXTERNAL (fn))
2717 DECL_NOT_REALLY_EXTERN (fn) = 1;
2718 DECL_EXTERNAL (fn) = 1;
2719 defer_fn (fn);
2720 }
2721
2722#if 0
2723 /* Keep this code around in case we later want to control debug info
2724 based on whether a type is "used". (jason 1999-11-11) */
2725
2726 if (ctype && TREE_ASM_WRITTEN (fn))
2727 note_debug_info_needed (ctype);
2728#endif
2729
2730 /* If this function is marked with the constructor attribute, add it
2731 to the list of functions to be called along with constructors
2732 from static duration objects. */
2733 if (DECL_STATIC_CONSTRUCTOR (fn))
2734 static_ctors = tree_cons (NULL_TREE, fn, static_ctors);
2735
2736 /* If this function is marked with the destructor attribute, add it
2737 to the list of functions to be called along with destructors from
2738 static duration objects. */
2739 if (DECL_STATIC_DESTRUCTOR (fn))
2740 static_dtors = tree_cons (NULL_TREE, fn, static_dtors);
2741
f444e36b
MM
2742 --function_depth;
2743
b850de4f
MM
2744 /* If we don't need the RTL for this function anymore, stop pointing
2745 to it. That's especially important for LABEL_DECLs, since you
2746 can reach all the instructions in the function from the
2747 CODE_LABEL stored in the DECL_RTL for the LABEL_DECL. */
2748 if (!DECL_SAVED_INSNS (fn))
f444e36b
MM
2749 {
2750 tree t;
2751
b850de4f
MM
2752 /* Walk the BLOCK-tree, clearing DECL_RTL for LABEL_DECLs and
2753 non-static local variables. */
2754 walk_tree_without_duplicates (&DECL_SAVED_TREE (fn),
2755 clear_decl_rtl,
2756 NULL);
2757
2758 /* Clear out the RTL for the arguments. */
f444e36b 2759 for (t = DECL_ARGUMENTS (fn); t; t = TREE_CHAIN (t))
19e7881c
MM
2760 {
2761 SET_DECL_RTL (t, NULL_RTX);
2762 DECL_INCOMING_RTL (t) = NULL_RTX;
2763 }
f444e36b 2764
b850de4f
MM
2765 if (!(flag_inline_trees && DECL_INLINE (fn)))
2766 /* DECL_INITIAL must remain nonzero so we know this was an
2767 actual function definition. */
2768 DECL_INITIAL (fn) = error_mark_node;
2769 }
2770
f444e36b
MM
2771 /* Let the error reporting routines know that we're outside a
2772 function. For a nested function, this value is used in
2773 pop_cp_function_context and then reset via pop_function_context. */
2774 current_function_decl = NULL_TREE;
2775}
2776
b850de4f
MM
2777/* Clear out the DECL_RTL for the non-static variables in BLOCK and
2778 its sub-blocks. */
2779
2780static tree
2781clear_decl_rtl (tp, walk_subtrees, data)
2782 tree *tp;
2783 int *walk_subtrees ATTRIBUTE_UNUSED;
2784 void *data ATTRIBUTE_UNUSED;
2785{
2786 if (nonstatic_local_decl_p (*tp))
2787 SET_DECL_RTL (*tp, NULL_RTX);
2788
2789 return NULL_TREE;
2790}
2791
54f7877c
MM
2792/* Perform initialization related to this module. */
2793
2794void
2795init_cp_semantics ()
2796{
2797 lang_expand_stmt = cp_expand_stmt;
2798}