2005-05-13 Josh Conner <jconner@apple.com>
[official-gcc.git] / gcc / cp / semantics.c
blob25286852e658d822626b6f865a49efd360383e3b
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.
6 Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005
7 Free Software Foundation, Inc.
8 Written by Mark Mitchell (mmitchell@usa.net) based on code found
9 formerly in parse.y and pt.c.
11 This file is part of GCC.
13 GCC is free software; you can redistribute it and/or modify it
14 under the terms of the GNU General Public License as published by
15 the Free Software Foundation; either version 2, or (at your option)
16 any later version.
18 GCC is distributed in the hope that it will be useful, but
19 WITHOUT ANY WARRANTY; without even the implied warranty of
20 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
21 General Public License for more details.
23 You should have received a copy of the GNU General Public License
24 along with GCC; see the file COPYING. If not, write to the Free
25 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
26 02111-1307, USA. */
28 #include "config.h"
29 #include "system.h"
30 #include "coretypes.h"
31 #include "tm.h"
32 #include "tree.h"
33 #include "cp-tree.h"
34 #include "c-common.h"
35 #include "tree-inline.h"
36 #include "tree-mudflap.h"
37 #include "except.h"
38 #include "toplev.h"
39 #include "flags.h"
40 #include "rtl.h"
41 #include "expr.h"
42 #include "output.h"
43 #include "timevar.h"
44 #include "debug.h"
45 #include "diagnostic.h"
46 #include "cgraph.h"
47 #include "tree-iterator.h"
48 #include "vec.h"
49 #include "target.h"
51 /* There routines provide a modular interface to perform many parsing
52 operations. They may therefore be used during actual parsing, or
53 during template instantiation, which may be regarded as a
54 degenerate form of parsing. Since the current g++ parser is
55 lacking in several respects, and will be reimplemented, we are
56 attempting to move most code that is not directly related to
57 parsing into this file; that will make implementing the new parser
58 much easier since it will be able to make use of these routines. */
60 static tree maybe_convert_cond (tree);
61 static tree simplify_aggr_init_exprs_r (tree *, int *, void *);
62 static void emit_associated_thunks (tree);
63 static tree finalize_nrv_r (tree *, int *, void *);
66 /* Deferred Access Checking Overview
67 ---------------------------------
69 Most C++ expressions and declarations require access checking
70 to be performed during parsing. However, in several cases,
71 this has to be treated differently.
73 For member declarations, access checking has to be deferred
74 until more information about the declaration is known. For
75 example:
77 class A {
78 typedef int X;
79 public:
80 X f();
83 A::X A::f();
84 A::X g();
86 When we are parsing the function return type `A::X', we don't
87 really know if this is allowed until we parse the function name.
89 Furthermore, some contexts require that access checking is
90 never performed at all. These include class heads, and template
91 instantiations.
93 Typical use of access checking functions is described here:
95 1. When we enter a context that requires certain access checking
96 mode, the function `push_deferring_access_checks' is called with
97 DEFERRING argument specifying the desired mode. Access checking
98 may be performed immediately (dk_no_deferred), deferred
99 (dk_deferred), or not performed (dk_no_check).
101 2. When a declaration such as a type, or a variable, is encountered,
102 the function `perform_or_defer_access_check' is called. It
103 maintains a TREE_LIST of all deferred checks.
105 3. The global `current_class_type' or `current_function_decl' is then
106 setup by the parser. `enforce_access' relies on these information
107 to check access.
109 4. Upon exiting the context mentioned in step 1,
110 `perform_deferred_access_checks' is called to check all declaration
111 stored in the TREE_LIST. `pop_deferring_access_checks' is then
112 called to restore the previous access checking mode.
114 In case of parsing error, we simply call `pop_deferring_access_checks'
115 without `perform_deferred_access_checks'. */
117 typedef struct deferred_access GTY(())
119 /* A TREE_LIST representing name-lookups for which we have deferred
120 checking access controls. We cannot check the accessibility of
121 names used in a decl-specifier-seq until we know what is being
122 declared because code like:
124 class A {
125 class B {};
126 B* f();
129 A::B* A::f() { return 0; }
131 is valid, even though `A::B' is not generally accessible.
133 The TREE_PURPOSE of each node is the scope used to qualify the
134 name being looked up; the TREE_VALUE is the DECL to which the
135 name was resolved. */
136 tree deferred_access_checks;
138 /* The current mode of access checks. */
139 enum deferring_kind deferring_access_checks_kind;
141 } deferred_access;
142 DEF_VEC_O (deferred_access);
143 DEF_VEC_ALLOC_O (deferred_access,gc);
145 /* Data for deferred access checking. */
146 static GTY(()) VEC(deferred_access,gc) *deferred_access_stack;
147 static GTY(()) unsigned deferred_access_no_check;
149 /* Save the current deferred access states and start deferred
150 access checking iff DEFER_P is true. */
152 void
153 push_deferring_access_checks (deferring_kind deferring)
155 /* For context like template instantiation, access checking
156 disabling applies to all nested context. */
157 if (deferred_access_no_check || deferring == dk_no_check)
158 deferred_access_no_check++;
159 else
161 deferred_access *ptr;
163 ptr = VEC_safe_push (deferred_access, gc, deferred_access_stack, NULL);
164 ptr->deferred_access_checks = NULL_TREE;
165 ptr->deferring_access_checks_kind = deferring;
169 /* Resume deferring access checks again after we stopped doing
170 this previously. */
172 void
173 resume_deferring_access_checks (void)
175 if (!deferred_access_no_check)
176 VEC_last (deferred_access, deferred_access_stack)
177 ->deferring_access_checks_kind = dk_deferred;
180 /* Stop deferring access checks. */
182 void
183 stop_deferring_access_checks (void)
185 if (!deferred_access_no_check)
186 VEC_last (deferred_access, deferred_access_stack)
187 ->deferring_access_checks_kind = dk_no_deferred;
190 /* Discard the current deferred access checks and restore the
191 previous states. */
193 void
194 pop_deferring_access_checks (void)
196 if (deferred_access_no_check)
197 deferred_access_no_check--;
198 else
199 VEC_pop (deferred_access, deferred_access_stack);
202 /* Returns a TREE_LIST representing the deferred checks.
203 The TREE_PURPOSE of each node is the type through which the
204 access occurred; the TREE_VALUE is the declaration named.
207 tree
208 get_deferred_access_checks (void)
210 if (deferred_access_no_check)
211 return NULL;
212 else
213 return (VEC_last (deferred_access, deferred_access_stack)
214 ->deferred_access_checks);
217 /* Take current deferred checks and combine with the
218 previous states if we also defer checks previously.
219 Otherwise perform checks now. */
221 void
222 pop_to_parent_deferring_access_checks (void)
224 if (deferred_access_no_check)
225 deferred_access_no_check--;
226 else
228 tree checks;
229 deferred_access *ptr;
231 checks = (VEC_last (deferred_access, deferred_access_stack)
232 ->deferred_access_checks);
234 VEC_pop (deferred_access, deferred_access_stack);
235 ptr = VEC_last (deferred_access, deferred_access_stack);
236 if (ptr->deferring_access_checks_kind == dk_no_deferred)
238 /* Check access. */
239 for (; checks; checks = TREE_CHAIN (checks))
240 enforce_access (TREE_PURPOSE (checks),
241 TREE_VALUE (checks));
243 else
245 /* Merge with parent. */
246 tree next;
247 tree original = ptr->deferred_access_checks;
249 for (; checks; checks = next)
251 tree probe;
253 next = TREE_CHAIN (checks);
255 for (probe = original; probe; probe = TREE_CHAIN (probe))
256 if (TREE_VALUE (probe) == TREE_VALUE (checks)
257 && TREE_PURPOSE (probe) == TREE_PURPOSE (checks))
258 goto found;
259 /* Insert into parent's checks. */
260 TREE_CHAIN (checks) = ptr->deferred_access_checks;
261 ptr->deferred_access_checks = checks;
262 found:;
268 /* Perform the deferred access checks.
270 After performing the checks, we still have to keep the list
271 `deferred_access_stack->deferred_access_checks' since we may want
272 to check access for them again later in a different context.
273 For example:
275 class A {
276 typedef int X;
277 static X a;
279 A::X A::a, x; // No error for `A::a', error for `x'
281 We have to perform deferred access of `A::X', first with `A::a',
282 next with `x'. */
284 void
285 perform_deferred_access_checks (void)
287 tree deferred_check;
289 for (deferred_check = get_deferred_access_checks ();
290 deferred_check;
291 deferred_check = TREE_CHAIN (deferred_check))
292 /* Check access. */
293 enforce_access (TREE_PURPOSE (deferred_check),
294 TREE_VALUE (deferred_check));
297 /* Defer checking the accessibility of DECL, when looked up in
298 BINFO. */
300 void
301 perform_or_defer_access_check (tree binfo, tree decl)
303 tree check;
304 deferred_access *ptr;
306 /* Exit if we are in a context that no access checking is performed.
308 if (deferred_access_no_check)
309 return;
311 gcc_assert (TREE_CODE (binfo) == TREE_BINFO);
313 ptr = VEC_last (deferred_access, deferred_access_stack);
315 /* If we are not supposed to defer access checks, just check now. */
316 if (ptr->deferring_access_checks_kind == dk_no_deferred)
318 enforce_access (binfo, decl);
319 return;
322 /* See if we are already going to perform this check. */
323 for (check = ptr->deferred_access_checks;
324 check;
325 check = TREE_CHAIN (check))
326 if (TREE_VALUE (check) == decl && TREE_PURPOSE (check) == binfo)
327 return;
328 /* If not, record the check. */
329 ptr->deferred_access_checks
330 = tree_cons (binfo, decl, ptr->deferred_access_checks);
333 /* Returns nonzero if the current statement is a full expression,
334 i.e. temporaries created during that statement should be destroyed
335 at the end of the statement. */
338 stmts_are_full_exprs_p (void)
340 return current_stmt_tree ()->stmts_are_full_exprs_p;
343 /* Returns the stmt_tree (if any) to which statements are currently
344 being added. If there is no active statement-tree, NULL is
345 returned. */
347 stmt_tree
348 current_stmt_tree (void)
350 return (cfun
351 ? &cfun->language->base.x_stmt_tree
352 : &scope_chain->x_stmt_tree);
355 /* If statements are full expressions, wrap STMT in a CLEANUP_POINT_EXPR. */
357 static tree
358 maybe_cleanup_point_expr (tree expr)
360 if (!processing_template_decl && stmts_are_full_exprs_p ())
361 expr = fold_build_cleanup_point_expr (TREE_TYPE (expr), expr);
362 return expr;
365 /* Like maybe_cleanup_point_expr except have the type of the new expression be
366 void so we don't need to create a temporary variable to hold the inner
367 expression. The reason why we do this is because the original type might be
368 an aggregate and we cannot create a temporary variable for that type. */
370 static tree
371 maybe_cleanup_point_expr_void (tree expr)
373 if (!processing_template_decl && stmts_are_full_exprs_p ())
374 expr = fold_build_cleanup_point_expr (void_type_node, expr);
375 return expr;
380 /* Create a declaration statement for the declaration given by the DECL. */
382 void
383 add_decl_expr (tree decl)
385 tree r = build_stmt (DECL_EXPR, decl);
386 if (DECL_INITIAL (decl)
387 || (DECL_SIZE (decl) && TREE_SIDE_EFFECTS (DECL_SIZE (decl))))
388 r = maybe_cleanup_point_expr_void (r);
389 add_stmt (r);
392 /* Nonzero if TYPE is an anonymous union or struct type. We have to use a
393 flag for this because "A union for which objects or pointers are
394 declared is not an anonymous union" [class.union]. */
397 anon_aggr_type_p (tree node)
399 return ANON_AGGR_TYPE_P (node);
402 /* Finish a scope. */
404 static tree
405 do_poplevel (tree stmt_list)
407 tree block = NULL;
409 if (stmts_are_full_exprs_p ())
410 block = poplevel (kept_level_p (), 1, 0);
412 stmt_list = pop_stmt_list (stmt_list);
414 if (!processing_template_decl)
416 stmt_list = c_build_bind_expr (block, stmt_list);
417 /* ??? See c_end_compound_stmt re statement expressions. */
420 return stmt_list;
423 /* Begin a new scope. */
425 static tree
426 do_pushlevel (scope_kind sk)
428 tree ret = push_stmt_list ();
429 if (stmts_are_full_exprs_p ())
430 begin_scope (sk, NULL);
431 return ret;
434 /* Queue a cleanup. CLEANUP is an expression/statement to be executed
435 when the current scope is exited. EH_ONLY is true when this is not
436 meant to apply to normal control flow transfer. */
438 void
439 push_cleanup (tree decl, tree cleanup, bool eh_only)
441 tree stmt = build_stmt (CLEANUP_STMT, NULL, cleanup, decl);
442 CLEANUP_EH_ONLY (stmt) = eh_only;
443 add_stmt (stmt);
444 CLEANUP_BODY (stmt) = push_stmt_list ();
447 /* Begin a conditional that might contain a declaration. When generating
448 normal code, we want the declaration to appear before the statement
449 containing the conditional. When generating template code, we want the
450 conditional to be rendered as the raw DECL_EXPR. */
452 static void
453 begin_cond (tree *cond_p)
455 if (processing_template_decl)
456 *cond_p = push_stmt_list ();
459 /* Finish such a conditional. */
461 static void
462 finish_cond (tree *cond_p, tree expr)
464 if (processing_template_decl)
466 tree cond = pop_stmt_list (*cond_p);
467 if (TREE_CODE (cond) == DECL_EXPR)
468 expr = cond;
470 *cond_p = expr;
473 /* If *COND_P specifies a conditional with a declaration, transform the
474 loop such that
475 while (A x = 42) { }
476 for (; A x = 42;) { }
477 becomes
478 while (true) { A x = 42; if (!x) break; }
479 for (;;) { A x = 42; if (!x) break; }
480 The statement list for BODY will be empty if the conditional did
481 not declare anything. */
483 static void
484 simplify_loop_decl_cond (tree *cond_p, tree body)
486 tree cond, if_stmt;
488 if (!TREE_SIDE_EFFECTS (body))
489 return;
491 cond = *cond_p;
492 *cond_p = boolean_true_node;
494 if_stmt = begin_if_stmt ();
495 cond = build_unary_op (TRUTH_NOT_EXPR, cond, 0);
496 finish_if_stmt_cond (cond, if_stmt);
497 finish_break_stmt ();
498 finish_then_clause (if_stmt);
499 finish_if_stmt (if_stmt);
502 /* Finish a goto-statement. */
504 tree
505 finish_goto_stmt (tree destination)
507 if (TREE_CODE (destination) == IDENTIFIER_NODE)
508 destination = lookup_label (destination);
510 /* We warn about unused labels with -Wunused. That means we have to
511 mark the used labels as used. */
512 if (TREE_CODE (destination) == LABEL_DECL)
513 TREE_USED (destination) = 1;
514 else
516 /* The DESTINATION is being used as an rvalue. */
517 if (!processing_template_decl)
518 destination = decay_conversion (destination);
519 /* We don't inline calls to functions with computed gotos.
520 Those functions are typically up to some funny business,
521 and may be depending on the labels being at particular
522 addresses, or some such. */
523 DECL_UNINLINABLE (current_function_decl) = 1;
526 check_goto (destination);
528 return add_stmt (build_stmt (GOTO_EXPR, destination));
531 /* COND is the condition-expression for an if, while, etc.,
532 statement. Convert it to a boolean value, if appropriate. */
534 static tree
535 maybe_convert_cond (tree cond)
537 /* Empty conditions remain empty. */
538 if (!cond)
539 return NULL_TREE;
541 /* Wait until we instantiate templates before doing conversion. */
542 if (processing_template_decl)
543 return cond;
545 /* Do the conversion. */
546 cond = convert_from_reference (cond);
547 return condition_conversion (cond);
550 /* Finish an expression-statement, whose EXPRESSION is as indicated. */
552 tree
553 finish_expr_stmt (tree expr)
555 tree r = NULL_TREE;
557 if (expr != NULL_TREE)
559 if (!processing_template_decl)
561 if (warn_sequence_point)
562 verify_sequence_points (expr);
563 expr = convert_to_void (expr, "statement");
565 else if (!type_dependent_expression_p (expr))
566 convert_to_void (build_non_dependent_expr (expr), "statement");
568 /* Simplification of inner statement expressions, compound exprs,
569 etc can result in us already having an EXPR_STMT. */
570 if (TREE_CODE (expr) != CLEANUP_POINT_EXPR)
572 if (TREE_CODE (expr) != EXPR_STMT)
573 expr = build_stmt (EXPR_STMT, expr);
574 expr = maybe_cleanup_point_expr_void (expr);
577 r = add_stmt (expr);
580 finish_stmt ();
582 return r;
586 /* Begin an if-statement. Returns a newly created IF_STMT if
587 appropriate. */
589 tree
590 begin_if_stmt (void)
592 tree r, scope;
593 scope = do_pushlevel (sk_block);
594 r = build_stmt (IF_STMT, NULL_TREE, NULL_TREE, NULL_TREE);
595 TREE_CHAIN (r) = scope;
596 begin_cond (&IF_COND (r));
597 return r;
600 /* Process the COND of an if-statement, which may be given by
601 IF_STMT. */
603 void
604 finish_if_stmt_cond (tree cond, tree if_stmt)
606 finish_cond (&IF_COND (if_stmt), maybe_convert_cond (cond));
607 add_stmt (if_stmt);
608 THEN_CLAUSE (if_stmt) = push_stmt_list ();
611 /* Finish the then-clause of an if-statement, which may be given by
612 IF_STMT. */
614 tree
615 finish_then_clause (tree if_stmt)
617 THEN_CLAUSE (if_stmt) = pop_stmt_list (THEN_CLAUSE (if_stmt));
618 return if_stmt;
621 /* Begin the else-clause of an if-statement. */
623 void
624 begin_else_clause (tree if_stmt)
626 ELSE_CLAUSE (if_stmt) = push_stmt_list ();
629 /* Finish the else-clause of an if-statement, which may be given by
630 IF_STMT. */
632 void
633 finish_else_clause (tree if_stmt)
635 ELSE_CLAUSE (if_stmt) = pop_stmt_list (ELSE_CLAUSE (if_stmt));
638 /* Finish an if-statement. */
640 void
641 finish_if_stmt (tree if_stmt)
643 tree scope = TREE_CHAIN (if_stmt);
644 TREE_CHAIN (if_stmt) = NULL;
645 add_stmt (do_poplevel (scope));
646 finish_stmt ();
649 /* Begin a while-statement. Returns a newly created WHILE_STMT if
650 appropriate. */
652 tree
653 begin_while_stmt (void)
655 tree r;
656 r = build_stmt (WHILE_STMT, NULL_TREE, NULL_TREE);
657 add_stmt (r);
658 WHILE_BODY (r) = do_pushlevel (sk_block);
659 begin_cond (&WHILE_COND (r));
660 return r;
663 /* Process the COND of a while-statement, which may be given by
664 WHILE_STMT. */
666 void
667 finish_while_stmt_cond (tree cond, tree while_stmt)
669 finish_cond (&WHILE_COND (while_stmt), maybe_convert_cond (cond));
670 simplify_loop_decl_cond (&WHILE_COND (while_stmt), WHILE_BODY (while_stmt));
673 /* Finish a while-statement, which may be given by WHILE_STMT. */
675 void
676 finish_while_stmt (tree while_stmt)
678 WHILE_BODY (while_stmt) = do_poplevel (WHILE_BODY (while_stmt));
679 finish_stmt ();
682 /* Begin a do-statement. Returns a newly created DO_STMT if
683 appropriate. */
685 tree
686 begin_do_stmt (void)
688 tree r = build_stmt (DO_STMT, NULL_TREE, NULL_TREE);
689 add_stmt (r);
690 DO_BODY (r) = push_stmt_list ();
691 return r;
694 /* Finish the body of a do-statement, which may be given by DO_STMT. */
696 void
697 finish_do_body (tree do_stmt)
699 DO_BODY (do_stmt) = pop_stmt_list (DO_BODY (do_stmt));
702 /* Finish a do-statement, which may be given by DO_STMT, and whose
703 COND is as indicated. */
705 void
706 finish_do_stmt (tree cond, tree do_stmt)
708 cond = maybe_convert_cond (cond);
709 DO_COND (do_stmt) = cond;
710 finish_stmt ();
713 /* Finish a return-statement. The EXPRESSION returned, if any, is as
714 indicated. */
716 tree
717 finish_return_stmt (tree expr)
719 tree r;
721 expr = check_return_expr (expr);
722 if (!processing_template_decl)
724 if (DECL_DESTRUCTOR_P (current_function_decl)
725 || (DECL_CONSTRUCTOR_P (current_function_decl)
726 && targetm.cxx.cdtor_returns_this ()))
728 /* Similarly, all destructors must run destructors for
729 base-classes before returning. So, all returns in a
730 destructor get sent to the DTOR_LABEL; finish_function emits
731 code to return a value there. */
732 return finish_goto_stmt (cdtor_label);
736 r = build_stmt (RETURN_EXPR, expr);
737 r = maybe_cleanup_point_expr_void (r);
738 r = add_stmt (r);
739 finish_stmt ();
741 return r;
744 /* Begin a for-statement. Returns a new FOR_STMT if appropriate. */
746 tree
747 begin_for_stmt (void)
749 tree r;
751 r = build_stmt (FOR_STMT, NULL_TREE, NULL_TREE,
752 NULL_TREE, NULL_TREE);
754 if (flag_new_for_scope > 0)
755 TREE_CHAIN (r) = do_pushlevel (sk_for);
757 if (processing_template_decl)
758 FOR_INIT_STMT (r) = push_stmt_list ();
760 return r;
763 /* Finish the for-init-statement of a for-statement, which may be
764 given by FOR_STMT. */
766 void
767 finish_for_init_stmt (tree for_stmt)
769 if (processing_template_decl)
770 FOR_INIT_STMT (for_stmt) = pop_stmt_list (FOR_INIT_STMT (for_stmt));
771 add_stmt (for_stmt);
772 FOR_BODY (for_stmt) = do_pushlevel (sk_block);
773 begin_cond (&FOR_COND (for_stmt));
776 /* Finish the COND of a for-statement, which may be given by
777 FOR_STMT. */
779 void
780 finish_for_cond (tree cond, tree for_stmt)
782 finish_cond (&FOR_COND (for_stmt), maybe_convert_cond (cond));
783 simplify_loop_decl_cond (&FOR_COND (for_stmt), FOR_BODY (for_stmt));
786 /* Finish the increment-EXPRESSION in a for-statement, which may be
787 given by FOR_STMT. */
789 void
790 finish_for_expr (tree expr, tree for_stmt)
792 if (!expr)
793 return;
794 /* If EXPR is an overloaded function, issue an error; there is no
795 context available to use to perform overload resolution. */
796 if (type_unknown_p (expr))
798 cxx_incomplete_type_error (expr, TREE_TYPE (expr));
799 expr = error_mark_node;
801 if (!processing_template_decl)
803 if (warn_sequence_point)
804 verify_sequence_points (expr);
805 expr = convert_to_void (expr, "3rd expression in for");
807 else if (!type_dependent_expression_p (expr))
808 convert_to_void (build_non_dependent_expr (expr), "3rd expression in for");
809 expr = maybe_cleanup_point_expr_void (expr);
810 FOR_EXPR (for_stmt) = expr;
813 /* Finish the body of a for-statement, which may be given by
814 FOR_STMT. The increment-EXPR for the loop must be
815 provided. */
817 void
818 finish_for_stmt (tree for_stmt)
820 FOR_BODY (for_stmt) = do_poplevel (FOR_BODY (for_stmt));
822 /* Pop the scope for the body of the loop. */
823 if (flag_new_for_scope > 0)
825 tree scope = TREE_CHAIN (for_stmt);
826 TREE_CHAIN (for_stmt) = NULL;
827 add_stmt (do_poplevel (scope));
830 finish_stmt ();
833 /* Finish a break-statement. */
835 tree
836 finish_break_stmt (void)
838 return add_stmt (build_stmt (BREAK_STMT));
841 /* Finish a continue-statement. */
843 tree
844 finish_continue_stmt (void)
846 return add_stmt (build_stmt (CONTINUE_STMT));
849 /* Begin a switch-statement. Returns a new SWITCH_STMT if
850 appropriate. */
852 tree
853 begin_switch_stmt (void)
855 tree r, scope;
857 r = build_stmt (SWITCH_STMT, NULL_TREE, NULL_TREE, NULL_TREE);
859 scope = do_pushlevel (sk_block);
860 TREE_CHAIN (r) = scope;
861 begin_cond (&SWITCH_STMT_COND (r));
863 return r;
866 /* Finish the cond of a switch-statement. */
868 void
869 finish_switch_cond (tree cond, tree switch_stmt)
871 tree orig_type = NULL;
872 if (!processing_template_decl)
874 tree index;
876 /* Convert the condition to an integer or enumeration type. */
877 cond = build_expr_type_conversion (WANT_INT | WANT_ENUM, cond, true);
878 if (cond == NULL_TREE)
880 error ("switch quantity not an integer");
881 cond = error_mark_node;
883 orig_type = TREE_TYPE (cond);
884 if (cond != error_mark_node)
886 /* [stmt.switch]
888 Integral promotions are performed. */
889 cond = perform_integral_promotions (cond);
890 cond = maybe_cleanup_point_expr (cond);
893 if (cond != error_mark_node)
895 index = get_unwidened (cond, NULL_TREE);
896 /* We can't strip a conversion from a signed type to an unsigned,
897 because if we did, int_fits_type_p would do the wrong thing
898 when checking case values for being in range,
899 and it's too hard to do the right thing. */
900 if (TYPE_UNSIGNED (TREE_TYPE (cond))
901 == TYPE_UNSIGNED (TREE_TYPE (index)))
902 cond = index;
905 finish_cond (&SWITCH_STMT_COND (switch_stmt), cond);
906 SWITCH_STMT_TYPE (switch_stmt) = orig_type;
907 add_stmt (switch_stmt);
908 push_switch (switch_stmt);
909 SWITCH_STMT_BODY (switch_stmt) = push_stmt_list ();
912 /* Finish the body of a switch-statement, which may be given by
913 SWITCH_STMT. The COND to switch on is indicated. */
915 void
916 finish_switch_stmt (tree switch_stmt)
918 tree scope;
920 SWITCH_STMT_BODY (switch_stmt) =
921 pop_stmt_list (SWITCH_STMT_BODY (switch_stmt));
922 pop_switch ();
923 finish_stmt ();
925 scope = TREE_CHAIN (switch_stmt);
926 TREE_CHAIN (switch_stmt) = NULL;
927 add_stmt (do_poplevel (scope));
930 /* Begin a try-block. Returns a newly-created TRY_BLOCK if
931 appropriate. */
933 tree
934 begin_try_block (void)
936 tree r = build_stmt (TRY_BLOCK, NULL_TREE, NULL_TREE);
937 add_stmt (r);
938 TRY_STMTS (r) = push_stmt_list ();
939 return r;
942 /* Likewise, for a function-try-block. */
944 tree
945 begin_function_try_block (void)
947 tree r = begin_try_block ();
948 FN_TRY_BLOCK_P (r) = 1;
949 return r;
952 /* Finish a try-block, which may be given by TRY_BLOCK. */
954 void
955 finish_try_block (tree try_block)
957 TRY_STMTS (try_block) = pop_stmt_list (TRY_STMTS (try_block));
958 TRY_HANDLERS (try_block) = push_stmt_list ();
961 /* Finish the body of a cleanup try-block, which may be given by
962 TRY_BLOCK. */
964 void
965 finish_cleanup_try_block (tree try_block)
967 TRY_STMTS (try_block) = pop_stmt_list (TRY_STMTS (try_block));
970 /* Finish an implicitly generated try-block, with a cleanup is given
971 by CLEANUP. */
973 void
974 finish_cleanup (tree cleanup, tree try_block)
976 TRY_HANDLERS (try_block) = cleanup;
977 CLEANUP_P (try_block) = 1;
980 /* Likewise, for a function-try-block. */
982 void
983 finish_function_try_block (tree try_block)
985 finish_try_block (try_block);
986 /* FIXME : something queer about CTOR_INITIALIZER somehow following
987 the try block, but moving it inside. */
988 in_function_try_handler = 1;
991 /* Finish a handler-sequence for a try-block, which may be given by
992 TRY_BLOCK. */
994 void
995 finish_handler_sequence (tree try_block)
997 TRY_HANDLERS (try_block) = pop_stmt_list (TRY_HANDLERS (try_block));
998 check_handlers (TRY_HANDLERS (try_block));
1001 /* Likewise, for a function-try-block. */
1003 void
1004 finish_function_handler_sequence (tree try_block)
1006 in_function_try_handler = 0;
1007 finish_handler_sequence (try_block);
1010 /* Begin a handler. Returns a HANDLER if appropriate. */
1012 tree
1013 begin_handler (void)
1015 tree r;
1017 r = build_stmt (HANDLER, NULL_TREE, NULL_TREE);
1018 add_stmt (r);
1020 /* Create a binding level for the eh_info and the exception object
1021 cleanup. */
1022 HANDLER_BODY (r) = do_pushlevel (sk_catch);
1024 return r;
1027 /* Finish the handler-parameters for a handler, which may be given by
1028 HANDLER. DECL is the declaration for the catch parameter, or NULL
1029 if this is a `catch (...)' clause. */
1031 void
1032 finish_handler_parms (tree decl, tree handler)
1034 tree type = NULL_TREE;
1035 if (processing_template_decl)
1037 if (decl)
1039 decl = pushdecl (decl);
1040 decl = push_template_decl (decl);
1041 HANDLER_PARMS (handler) = decl;
1042 type = TREE_TYPE (decl);
1045 else
1046 type = expand_start_catch_block (decl);
1048 HANDLER_TYPE (handler) = type;
1049 if (!processing_template_decl && type)
1050 mark_used (eh_type_info (type));
1053 /* Finish a handler, which may be given by HANDLER. The BLOCKs are
1054 the return value from the matching call to finish_handler_parms. */
1056 void
1057 finish_handler (tree handler)
1059 if (!processing_template_decl)
1060 expand_end_catch_block ();
1061 HANDLER_BODY (handler) = do_poplevel (HANDLER_BODY (handler));
1064 /* Begin a compound statement. FLAGS contains some bits that control the
1065 behavior and context. If BCS_NO_SCOPE is set, the compound statement
1066 does not define a scope. If BCS_FN_BODY is set, this is the outermost
1067 block of a function. If BCS_TRY_BLOCK is set, this is the block
1068 created on behalf of a TRY statement. Returns a token to be passed to
1069 finish_compound_stmt. */
1071 tree
1072 begin_compound_stmt (unsigned int flags)
1074 tree r;
1076 if (flags & BCS_NO_SCOPE)
1078 r = push_stmt_list ();
1079 STATEMENT_LIST_NO_SCOPE (r) = 1;
1081 /* Normally, we try hard to keep the BLOCK for a statement-expression.
1082 But, if it's a statement-expression with a scopeless block, there's
1083 nothing to keep, and we don't want to accidentally keep a block
1084 *inside* the scopeless block. */
1085 keep_next_level (false);
1087 else
1088 r = do_pushlevel (flags & BCS_TRY_BLOCK ? sk_try : sk_block);
1090 /* When processing a template, we need to remember where the braces were,
1091 so that we can set up identical scopes when instantiating the template
1092 later. BIND_EXPR is a handy candidate for this.
1093 Note that do_poplevel won't create a BIND_EXPR itself here (and thus
1094 result in nested BIND_EXPRs), since we don't build BLOCK nodes when
1095 processing templates. */
1096 if (processing_template_decl)
1098 r = build3 (BIND_EXPR, NULL, NULL, r, NULL);
1099 BIND_EXPR_TRY_BLOCK (r) = (flags & BCS_TRY_BLOCK) != 0;
1100 BIND_EXPR_BODY_BLOCK (r) = (flags & BCS_FN_BODY) != 0;
1101 TREE_SIDE_EFFECTS (r) = 1;
1104 return r;
1107 /* Finish a compound-statement, which is given by STMT. */
1109 void
1110 finish_compound_stmt (tree stmt)
1112 if (TREE_CODE (stmt) == BIND_EXPR)
1113 BIND_EXPR_BODY (stmt) = do_poplevel (BIND_EXPR_BODY (stmt));
1114 else if (STATEMENT_LIST_NO_SCOPE (stmt))
1115 stmt = pop_stmt_list (stmt);
1116 else
1118 /* Destroy any ObjC "super" receivers that may have been
1119 created. */
1120 objc_clear_super_receiver ();
1122 stmt = do_poplevel (stmt);
1125 /* ??? See c_end_compound_stmt wrt statement expressions. */
1126 add_stmt (stmt);
1127 finish_stmt ();
1130 /* Finish an asm-statement, whose components are a STRING, some
1131 OUTPUT_OPERANDS, some INPUT_OPERANDS, and some CLOBBERS. Also note
1132 whether the asm-statement should be considered volatile. */
1134 tree
1135 finish_asm_stmt (int volatile_p, tree string, tree output_operands,
1136 tree input_operands, tree clobbers)
1138 tree r;
1139 tree t;
1141 if (!processing_template_decl)
1143 int ninputs, noutputs;
1144 const char *constraint;
1145 const char **oconstraints;
1146 bool allows_mem, allows_reg, is_inout;
1147 tree operand;
1148 int i;
1150 ninputs = list_length (input_operands);
1151 noutputs = list_length (output_operands);
1152 oconstraints = (const char **) alloca (noutputs * sizeof (char *));
1154 string = resolve_asm_operand_names (string, output_operands,
1155 input_operands);
1157 for (i = 0, t = output_operands; t; t = TREE_CHAIN (t), ++i)
1159 operand = TREE_VALUE (t);
1161 /* ??? Really, this should not be here. Users should be using a
1162 proper lvalue, dammit. But there's a long history of using
1163 casts in the output operands. In cases like longlong.h, this
1164 becomes a primitive form of typechecking -- if the cast can be
1165 removed, then the output operand had a type of the proper width;
1166 otherwise we'll get an error. Gross, but ... */
1167 STRIP_NOPS (operand);
1169 if (!lvalue_or_else (operand, lv_asm))
1170 operand = error_mark_node;
1172 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (t)));
1173 oconstraints[i] = constraint;
1175 if (parse_output_constraint (&constraint, i, ninputs, noutputs,
1176 &allows_mem, &allows_reg, &is_inout))
1178 /* If the operand is going to end up in memory,
1179 mark it addressable. */
1180 if (!allows_reg && !cxx_mark_addressable (operand))
1181 operand = error_mark_node;
1183 else
1184 operand = error_mark_node;
1186 TREE_VALUE (t) = operand;
1189 for (i = 0, t = input_operands; t; ++i, t = TREE_CHAIN (t))
1191 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (t)));
1192 operand = decay_conversion (TREE_VALUE (t));
1194 /* If the type of the operand hasn't been determined (e.g.,
1195 because it involves an overloaded function), then issue
1196 an error message. There's no context available to
1197 resolve the overloading. */
1198 if (TREE_TYPE (operand) == unknown_type_node)
1200 error ("type of asm operand %qE could not be determined",
1201 TREE_VALUE (t));
1202 operand = error_mark_node;
1205 if (parse_input_constraint (&constraint, i, ninputs, noutputs, 0,
1206 oconstraints, &allows_mem, &allows_reg))
1208 /* If the operand is going to end up in memory,
1209 mark it addressable. */
1210 if (!allows_reg && allows_mem)
1212 /* Strip the nops as we allow this case. FIXME, this really
1213 should be rejected or made deprecated. */
1214 STRIP_NOPS (operand);
1215 if (!cxx_mark_addressable (operand))
1216 operand = error_mark_node;
1219 else
1220 operand = error_mark_node;
1222 TREE_VALUE (t) = operand;
1226 r = build_stmt (ASM_EXPR, string,
1227 output_operands, input_operands,
1228 clobbers);
1229 ASM_VOLATILE_P (r) = volatile_p;
1230 r = maybe_cleanup_point_expr_void (r);
1231 return add_stmt (r);
1234 /* Finish a label with the indicated NAME. */
1236 tree
1237 finish_label_stmt (tree name)
1239 tree decl = define_label (input_location, name);
1240 return add_stmt (build_stmt (LABEL_EXPR, decl));
1243 /* Finish a series of declarations for local labels. G++ allows users
1244 to declare "local" labels, i.e., labels with scope. This extension
1245 is useful when writing code involving statement-expressions. */
1247 void
1248 finish_label_decl (tree name)
1250 tree decl = declare_local_label (name);
1251 add_decl_expr (decl);
1254 /* When DECL goes out of scope, make sure that CLEANUP is executed. */
1256 void
1257 finish_decl_cleanup (tree decl, tree cleanup)
1259 push_cleanup (decl, cleanup, false);
1262 /* If the current scope exits with an exception, run CLEANUP. */
1264 void
1265 finish_eh_cleanup (tree cleanup)
1267 push_cleanup (NULL, cleanup, true);
1270 /* The MEM_INITS is a list of mem-initializers, in reverse of the
1271 order they were written by the user. Each node is as for
1272 emit_mem_initializers. */
1274 void
1275 finish_mem_initializers (tree mem_inits)
1277 /* Reorder the MEM_INITS so that they are in the order they appeared
1278 in the source program. */
1279 mem_inits = nreverse (mem_inits);
1281 if (processing_template_decl)
1282 add_stmt (build_min_nt (CTOR_INITIALIZER, mem_inits));
1283 else
1284 emit_mem_initializers (mem_inits);
1287 /* Finish a parenthesized expression EXPR. */
1289 tree
1290 finish_parenthesized_expr (tree expr)
1292 if (EXPR_P (expr))
1293 /* This inhibits warnings in c_common_truthvalue_conversion. */
1294 TREE_NO_WARNING (expr) = 1;
1296 if (TREE_CODE (expr) == OFFSET_REF)
1297 /* [expr.unary.op]/3 The qualified id of a pointer-to-member must not be
1298 enclosed in parentheses. */
1299 PTRMEM_OK_P (expr) = 0;
1301 if (TREE_CODE (expr) == STRING_CST)
1302 PAREN_STRING_LITERAL_P (expr) = 1;
1304 return expr;
1307 /* Finish a reference to a non-static data member (DECL) that is not
1308 preceded by `.' or `->'. */
1310 tree
1311 finish_non_static_data_member (tree decl, tree object, tree qualifying_scope)
1313 gcc_assert (TREE_CODE (decl) == FIELD_DECL);
1315 if (!object)
1317 if (current_function_decl
1318 && DECL_STATIC_FUNCTION_P (current_function_decl))
1319 cp_error_at ("invalid use of member %qD in static member function",
1320 decl);
1321 else
1322 cp_error_at ("invalid use of non-static data member %qD", decl);
1323 error ("from this location");
1325 return error_mark_node;
1327 TREE_USED (current_class_ptr) = 1;
1328 if (processing_template_decl && !qualifying_scope)
1330 tree type = TREE_TYPE (decl);
1332 if (TREE_CODE (type) == REFERENCE_TYPE)
1333 type = TREE_TYPE (type);
1334 else
1336 /* Set the cv qualifiers. */
1337 int quals = cp_type_quals (TREE_TYPE (current_class_ref));
1339 if (DECL_MUTABLE_P (decl))
1340 quals &= ~TYPE_QUAL_CONST;
1342 quals |= cp_type_quals (TREE_TYPE (decl));
1343 type = cp_build_qualified_type (type, quals);
1346 return build_min (COMPONENT_REF, type, object, decl, NULL_TREE);
1348 else
1350 tree access_type = TREE_TYPE (object);
1351 tree lookup_context = context_for_name_lookup (decl);
1353 while (!DERIVED_FROM_P (lookup_context, access_type))
1355 access_type = TYPE_CONTEXT (access_type);
1356 while (access_type && DECL_P (access_type))
1357 access_type = DECL_CONTEXT (access_type);
1359 if (!access_type)
1361 cp_error_at ("object missing in reference to %qD", decl);
1362 error ("from this location");
1363 return error_mark_node;
1367 /* If PROCESSING_TEMPLATE_DECL is nonzero here, then
1368 QUALIFYING_SCOPE is also non-null. Wrap this in a SCOPE_REF
1369 for now. */
1370 if (processing_template_decl)
1371 return build_min (SCOPE_REF, TREE_TYPE (decl),
1372 qualifying_scope, DECL_NAME (decl));
1374 perform_or_defer_access_check (TYPE_BINFO (access_type), decl);
1376 /* If the data member was named `C::M', convert `*this' to `C'
1377 first. */
1378 if (qualifying_scope)
1380 tree binfo = NULL_TREE;
1381 object = build_scoped_ref (object, qualifying_scope,
1382 &binfo);
1385 return build_class_member_access_expr (object, decl,
1386 /*access_path=*/NULL_TREE,
1387 /*preserve_reference=*/false);
1391 /* DECL was the declaration to which a qualified-id resolved. Issue
1392 an error message if it is not accessible. If OBJECT_TYPE is
1393 non-NULL, we have just seen `x->' or `x.' and OBJECT_TYPE is the
1394 type of `*x', or `x', respectively. If the DECL was named as
1395 `A::B' then NESTED_NAME_SPECIFIER is `A'. */
1397 void
1398 check_accessibility_of_qualified_id (tree decl,
1399 tree object_type,
1400 tree nested_name_specifier)
1402 tree scope;
1403 tree qualifying_type = NULL_TREE;
1405 /* If we're not checking, return immediately. */
1406 if (deferred_access_no_check)
1407 return;
1409 /* Determine the SCOPE of DECL. */
1410 scope = context_for_name_lookup (decl);
1411 /* If the SCOPE is not a type, then DECL is not a member. */
1412 if (!TYPE_P (scope))
1413 return;
1414 /* Compute the scope through which DECL is being accessed. */
1415 if (object_type
1416 /* OBJECT_TYPE might not be a class type; consider:
1418 class A { typedef int I; };
1419 I *p;
1420 p->A::I::~I();
1422 In this case, we will have "A::I" as the DECL, but "I" as the
1423 OBJECT_TYPE. */
1424 && CLASS_TYPE_P (object_type)
1425 && DERIVED_FROM_P (scope, object_type))
1426 /* If we are processing a `->' or `.' expression, use the type of the
1427 left-hand side. */
1428 qualifying_type = object_type;
1429 else if (nested_name_specifier)
1431 /* If the reference is to a non-static member of the
1432 current class, treat it as if it were referenced through
1433 `this'. */
1434 if (DECL_NONSTATIC_MEMBER_P (decl)
1435 && current_class_ptr
1436 && DERIVED_FROM_P (scope, current_class_type))
1437 qualifying_type = current_class_type;
1438 /* Otherwise, use the type indicated by the
1439 nested-name-specifier. */
1440 else
1441 qualifying_type = nested_name_specifier;
1443 else
1444 /* Otherwise, the name must be from the current class or one of
1445 its bases. */
1446 qualifying_type = currently_open_derived_class (scope);
1448 if (qualifying_type && IS_AGGR_TYPE_CODE (TREE_CODE (qualifying_type)))
1449 /* It is possible for qualifying type to be a TEMPLATE_TYPE_PARM
1450 or similar in a default argument value. */
1451 perform_or_defer_access_check (TYPE_BINFO (qualifying_type), decl);
1454 /* EXPR is the result of a qualified-id. The QUALIFYING_CLASS was the
1455 class named to the left of the "::" operator. DONE is true if this
1456 expression is a complete postfix-expression; it is false if this
1457 expression is followed by '->', '[', '(', etc. ADDRESS_P is true
1458 iff this expression is the operand of '&'. */
1460 tree
1461 finish_qualified_id_expr (tree qualifying_class, tree expr, bool done,
1462 bool address_p)
1464 if (error_operand_p (expr))
1465 return error_mark_node;
1467 /* If EXPR occurs as the operand of '&', use special handling that
1468 permits a pointer-to-member. */
1469 if (address_p && done)
1471 if (TREE_CODE (expr) == SCOPE_REF)
1472 expr = TREE_OPERAND (expr, 1);
1473 expr = build_offset_ref (qualifying_class, expr,
1474 /*address_p=*/true);
1475 return expr;
1478 if (TREE_CODE (expr) == FIELD_DECL)
1479 expr = finish_non_static_data_member (expr, current_class_ref,
1480 qualifying_class);
1481 else if (BASELINK_P (expr) && !processing_template_decl)
1483 tree fns;
1485 /* See if any of the functions are non-static members. */
1486 fns = BASELINK_FUNCTIONS (expr);
1487 if (TREE_CODE (fns) == TEMPLATE_ID_EXPR)
1488 fns = TREE_OPERAND (fns, 0);
1489 /* If so, the expression may be relative to the current
1490 class. */
1491 if (!shared_member_p (fns)
1492 && current_class_type
1493 && DERIVED_FROM_P (qualifying_class, current_class_type))
1494 expr = (build_class_member_access_expr
1495 (maybe_dummy_object (qualifying_class, NULL),
1496 expr,
1497 BASELINK_ACCESS_BINFO (expr),
1498 /*preserve_reference=*/false));
1499 else if (done)
1500 /* The expression is a qualified name whose address is not
1501 being taken. */
1502 expr = build_offset_ref (qualifying_class, expr, /*address_p=*/false);
1505 return expr;
1508 /* Begin a statement-expression. The value returned must be passed to
1509 finish_stmt_expr. */
1511 tree
1512 begin_stmt_expr (void)
1514 return push_stmt_list ();
1517 /* Process the final expression of a statement expression. EXPR can be
1518 NULL, if the final expression is empty. Build up a TARGET_EXPR so
1519 that the result value can be safely returned to the enclosing
1520 expression. */
1522 tree
1523 finish_stmt_expr_expr (tree expr, tree stmt_expr)
1525 tree result = NULL_TREE;
1527 if (error_operand_p (expr))
1528 return error_mark_node;
1530 if (expr)
1532 if (!processing_template_decl && !VOID_TYPE_P (TREE_TYPE (expr)))
1534 tree type = TREE_TYPE (expr);
1536 if (TREE_CODE (type) == ARRAY_TYPE
1537 || TREE_CODE (type) == FUNCTION_TYPE)
1538 expr = decay_conversion (expr);
1540 expr = require_complete_type (expr);
1542 type = TREE_TYPE (expr);
1544 /* Build a TARGET_EXPR for this aggregate. finish_stmt_expr
1545 will then pull it apart so the lifetime of the target is
1546 within the scope of the expression containing this statement
1547 expression. */
1548 if (TREE_CODE (expr) == TARGET_EXPR)
1550 else if (!IS_AGGR_TYPE (type) || TYPE_HAS_TRIVIAL_INIT_REF (type))
1551 expr = build_target_expr_with_type (expr, type);
1552 else
1554 /* Copy construct. */
1555 expr = build_special_member_call
1556 (NULL_TREE, complete_ctor_identifier,
1557 build_tree_list (NULL_TREE, expr),
1558 type, LOOKUP_NORMAL);
1559 expr = build_cplus_new (type, expr);
1560 gcc_assert (TREE_CODE (expr) == TARGET_EXPR);
1564 if (expr != error_mark_node)
1566 result = build_stmt (EXPR_STMT, expr);
1567 EXPR_STMT_STMT_EXPR_RESULT (result) = 1;
1568 add_stmt (result);
1572 finish_stmt ();
1574 /* Remember the last expression so that finish_stmt_expr
1575 can pull it apart. */
1576 TREE_TYPE (stmt_expr) = result;
1578 return result;
1581 /* Finish a statement-expression. EXPR should be the value returned
1582 by the previous begin_stmt_expr. Returns an expression
1583 representing the statement-expression. */
1585 tree
1586 finish_stmt_expr (tree stmt_expr, bool has_no_scope)
1588 tree result, result_stmt, type;
1589 tree *result_stmt_p = NULL;
1591 result_stmt = TREE_TYPE (stmt_expr);
1592 TREE_TYPE (stmt_expr) = void_type_node;
1593 result = pop_stmt_list (stmt_expr);
1595 if (!result_stmt || VOID_TYPE_P (result_stmt))
1596 type = void_type_node;
1597 else
1599 /* We need to search the statement expression for the result_stmt,
1600 since we'll need to replace it entirely. */
1601 tree t;
1602 result_stmt_p = &result;
1603 while (1)
1605 t = *result_stmt_p;
1606 if (t == result_stmt)
1607 break;
1609 switch (TREE_CODE (t))
1611 case STATEMENT_LIST:
1613 tree_stmt_iterator i = tsi_last (t);
1614 result_stmt_p = tsi_stmt_ptr (i);
1615 break;
1617 case BIND_EXPR:
1618 result_stmt_p = &BIND_EXPR_BODY (t);
1619 break;
1620 case TRY_FINALLY_EXPR:
1621 case TRY_CATCH_EXPR:
1622 case CLEANUP_STMT:
1623 result_stmt_p = &TREE_OPERAND (t, 0);
1624 break;
1625 default:
1626 gcc_unreachable ();
1629 type = TREE_TYPE (EXPR_STMT_EXPR (result_stmt));
1632 if (processing_template_decl)
1634 result = build_min (STMT_EXPR, type, result);
1635 TREE_SIDE_EFFECTS (result) = 1;
1636 STMT_EXPR_NO_SCOPE (result) = has_no_scope;
1638 else if (!VOID_TYPE_P (type))
1640 /* Pull out the TARGET_EXPR that is the final expression. Put
1641 the target's init_expr as the final expression and then put
1642 the statement expression itself as the target's init
1643 expr. Finally, return the target expression. */
1644 tree init, target_expr = EXPR_STMT_EXPR (result_stmt);
1645 gcc_assert (TREE_CODE (target_expr) == TARGET_EXPR);
1647 /* The initializer will be void if the initialization is done by
1648 AGGR_INIT_EXPR; propagate that out to the statement-expression as
1649 a whole. */
1650 init = TREE_OPERAND (target_expr, 1);
1651 type = TREE_TYPE (init);
1653 init = maybe_cleanup_point_expr (init);
1654 *result_stmt_p = init;
1656 if (VOID_TYPE_P (type))
1657 /* No frobbing needed. */;
1658 else if (TREE_CODE (result) == BIND_EXPR)
1660 /* The BIND_EXPR created in finish_compound_stmt is void; if we're
1661 returning a value directly, give it the appropriate type. */
1662 if (VOID_TYPE_P (TREE_TYPE (result)))
1663 TREE_TYPE (result) = type;
1664 else
1665 gcc_assert (same_type_p (TREE_TYPE (result), type));
1667 else if (TREE_CODE (result) == STATEMENT_LIST)
1668 /* We need to wrap a STATEMENT_LIST in a BIND_EXPR so it can have a
1669 type other than void. FIXME why can't we just return a value
1670 from STATEMENT_LIST? */
1671 result = build3 (BIND_EXPR, type, NULL, result, NULL);
1673 TREE_OPERAND (target_expr, 1) = result;
1674 result = target_expr;
1677 return result;
1680 /* Perform Koenig lookup. FN is the postfix-expression representing
1681 the function (or functions) to call; ARGS are the arguments to the
1682 call. Returns the functions to be considered by overload
1683 resolution. */
1685 tree
1686 perform_koenig_lookup (tree fn, tree args)
1688 tree identifier = NULL_TREE;
1689 tree functions = NULL_TREE;
1691 /* Find the name of the overloaded function. */
1692 if (TREE_CODE (fn) == IDENTIFIER_NODE)
1693 identifier = fn;
1694 else if (is_overloaded_fn (fn))
1696 functions = fn;
1697 identifier = DECL_NAME (get_first_fn (functions));
1699 else if (DECL_P (fn))
1701 functions = fn;
1702 identifier = DECL_NAME (fn);
1705 /* A call to a namespace-scope function using an unqualified name.
1707 Do Koenig lookup -- unless any of the arguments are
1708 type-dependent. */
1709 if (!any_type_dependent_arguments_p (args))
1711 fn = lookup_arg_dependent (identifier, functions, args);
1712 if (!fn)
1713 /* The unqualified name could not be resolved. */
1714 fn = unqualified_fn_lookup_error (identifier);
1716 else
1717 fn = identifier;
1719 return fn;
1722 /* Generate an expression for `FN (ARGS)'.
1724 If DISALLOW_VIRTUAL is true, the call to FN will be not generated
1725 as a virtual call, even if FN is virtual. (This flag is set when
1726 encountering an expression where the function name is explicitly
1727 qualified. For example a call to `X::f' never generates a virtual
1728 call.)
1730 Returns code for the call. */
1732 tree
1733 finish_call_expr (tree fn, tree args, bool disallow_virtual, bool koenig_p)
1735 tree result;
1736 tree orig_fn;
1737 tree orig_args;
1739 if (fn == error_mark_node || args == error_mark_node)
1740 return error_mark_node;
1742 /* ARGS should be a list of arguments. */
1743 gcc_assert (!args || TREE_CODE (args) == TREE_LIST);
1745 orig_fn = fn;
1746 orig_args = args;
1748 if (processing_template_decl)
1750 if (type_dependent_expression_p (fn)
1751 || any_type_dependent_arguments_p (args))
1753 result = build_nt (CALL_EXPR, fn, args, NULL_TREE);
1754 KOENIG_LOOKUP_P (result) = koenig_p;
1755 return result;
1757 if (!BASELINK_P (fn)
1758 && TREE_CODE (fn) != PSEUDO_DTOR_EXPR
1759 && TREE_TYPE (fn) != unknown_type_node)
1760 fn = build_non_dependent_expr (fn);
1761 args = build_non_dependent_args (orig_args);
1764 /* A reference to a member function will appear as an overloaded
1765 function (rather than a BASELINK) if an unqualified name was used
1766 to refer to it. */
1767 if (!BASELINK_P (fn) && is_overloaded_fn (fn))
1769 tree f = fn;
1771 if (TREE_CODE (f) == TEMPLATE_ID_EXPR)
1772 f = TREE_OPERAND (f, 0);
1773 f = get_first_fn (f);
1774 if (DECL_FUNCTION_MEMBER_P (f))
1776 tree type = currently_open_derived_class (DECL_CONTEXT (f));
1777 if (!type)
1778 type = DECL_CONTEXT (f);
1779 fn = build_baselink (TYPE_BINFO (type),
1780 TYPE_BINFO (type),
1781 fn, /*optype=*/NULL_TREE);
1785 result = NULL_TREE;
1786 if (BASELINK_P (fn))
1788 tree object;
1790 /* A call to a member function. From [over.call.func]:
1792 If the keyword this is in scope and refers to the class of
1793 that member function, or a derived class thereof, then the
1794 function call is transformed into a qualified function call
1795 using (*this) as the postfix-expression to the left of the
1796 . operator.... [Otherwise] a contrived object of type T
1797 becomes the implied object argument.
1799 This paragraph is unclear about this situation:
1801 struct A { void f(); };
1802 struct B : public A {};
1803 struct C : public A { void g() { B::f(); }};
1805 In particular, for `B::f', this paragraph does not make clear
1806 whether "the class of that member function" refers to `A' or
1807 to `B'. We believe it refers to `B'. */
1808 if (current_class_type
1809 && DERIVED_FROM_P (BINFO_TYPE (BASELINK_ACCESS_BINFO (fn)),
1810 current_class_type)
1811 && current_class_ref)
1812 object = maybe_dummy_object (BINFO_TYPE (BASELINK_ACCESS_BINFO (fn)),
1813 NULL);
1814 else
1816 tree representative_fn;
1818 representative_fn = BASELINK_FUNCTIONS (fn);
1819 if (TREE_CODE (representative_fn) == TEMPLATE_ID_EXPR)
1820 representative_fn = TREE_OPERAND (representative_fn, 0);
1821 representative_fn = get_first_fn (representative_fn);
1822 object = build_dummy_object (DECL_CONTEXT (representative_fn));
1825 if (processing_template_decl)
1827 if (type_dependent_expression_p (object))
1828 return build_nt (CALL_EXPR, orig_fn, orig_args, NULL_TREE);
1829 object = build_non_dependent_expr (object);
1832 result = build_new_method_call (object, fn, args, NULL_TREE,
1833 (disallow_virtual
1834 ? LOOKUP_NONVIRTUAL : 0));
1836 else if (is_overloaded_fn (fn))
1838 /* If the function is an overloaded builtin, resolve it. */
1839 if (TREE_CODE (fn) == FUNCTION_DECL
1840 && (DECL_BUILT_IN_CLASS (fn) == BUILT_IN_NORMAL
1841 || DECL_BUILT_IN_CLASS (fn) == BUILT_IN_MD))
1842 result = resolve_overloaded_builtin (fn, args);
1844 if (!result)
1845 /* A call to a namespace-scope function. */
1846 result = build_new_function_call (fn, args);
1848 else if (TREE_CODE (fn) == PSEUDO_DTOR_EXPR)
1850 if (args)
1851 error ("arguments to destructor are not allowed");
1852 /* Mark the pseudo-destructor call as having side-effects so
1853 that we do not issue warnings about its use. */
1854 result = build1 (NOP_EXPR,
1855 void_type_node,
1856 TREE_OPERAND (fn, 0));
1857 TREE_SIDE_EFFECTS (result) = 1;
1859 else if (CLASS_TYPE_P (TREE_TYPE (fn)))
1860 /* If the "function" is really an object of class type, it might
1861 have an overloaded `operator ()'. */
1862 result = build_new_op (CALL_EXPR, LOOKUP_NORMAL, fn, args, NULL_TREE,
1863 /*overloaded_p=*/NULL);
1865 if (!result)
1866 /* A call where the function is unknown. */
1867 result = build_function_call (fn, args);
1869 if (processing_template_decl)
1871 result = build3 (CALL_EXPR, TREE_TYPE (result), orig_fn,
1872 orig_args, NULL_TREE);
1873 KOENIG_LOOKUP_P (result) = koenig_p;
1875 return result;
1878 /* Finish a call to a postfix increment or decrement or EXPR. (Which
1879 is indicated by CODE, which should be POSTINCREMENT_EXPR or
1880 POSTDECREMENT_EXPR.) */
1882 tree
1883 finish_increment_expr (tree expr, enum tree_code code)
1885 return build_x_unary_op (code, expr);
1888 /* Finish a use of `this'. Returns an expression for `this'. */
1890 tree
1891 finish_this_expr (void)
1893 tree result;
1895 if (current_class_ptr)
1897 result = current_class_ptr;
1899 else if (current_function_decl
1900 && DECL_STATIC_FUNCTION_P (current_function_decl))
1902 error ("%<this%> is unavailable for static member functions");
1903 result = error_mark_node;
1905 else
1907 if (current_function_decl)
1908 error ("invalid use of %<this%> in non-member function");
1909 else
1910 error ("invalid use of %<this%> at top level");
1911 result = error_mark_node;
1914 return result;
1917 /* Finish a pseudo-destructor expression. If SCOPE is NULL, the
1918 expression was of the form `OBJECT.~DESTRUCTOR' where DESTRUCTOR is
1919 the TYPE for the type given. If SCOPE is non-NULL, the expression
1920 was of the form `OBJECT.SCOPE::~DESTRUCTOR'. */
1922 tree
1923 finish_pseudo_destructor_expr (tree object, tree scope, tree destructor)
1925 if (destructor == error_mark_node)
1926 return error_mark_node;
1928 gcc_assert (TYPE_P (destructor));
1930 if (!processing_template_decl)
1932 if (scope == error_mark_node)
1934 error ("invalid qualifying scope in pseudo-destructor name");
1935 return error_mark_node;
1938 /* [expr.pseudo] says both:
1940 The type designated by the pseudo-destructor-name shall be
1941 the same as the object type.
1943 and:
1945 The cv-unqualified versions of the object type and of the
1946 type designated by the pseudo-destructor-name shall be the
1947 same type.
1949 We implement the more generous second sentence, since that is
1950 what most other compilers do. */
1951 if (!same_type_ignoring_top_level_qualifiers_p (TREE_TYPE (object),
1952 destructor))
1954 error ("%qE is not of type %qT", object, destructor);
1955 return error_mark_node;
1959 return build3 (PSEUDO_DTOR_EXPR, void_type_node, object, scope, destructor);
1962 /* Finish an expression of the form CODE EXPR. */
1964 tree
1965 finish_unary_op_expr (enum tree_code code, tree expr)
1967 tree result = build_x_unary_op (code, expr);
1968 /* Inside a template, build_x_unary_op does not fold the
1969 expression. So check whether the result is folded before
1970 setting TREE_NEGATED_INT. */
1971 if (code == NEGATE_EXPR && TREE_CODE (expr) == INTEGER_CST
1972 && TREE_CODE (result) == INTEGER_CST
1973 && !TYPE_UNSIGNED (TREE_TYPE (result))
1974 && INT_CST_LT (result, integer_zero_node))
1976 /* RESULT may be a cached INTEGER_CST, so we must copy it before
1977 setting TREE_NEGATED_INT. */
1978 result = copy_node (result);
1979 TREE_NEGATED_INT (result) = 1;
1981 overflow_warning (result);
1982 return result;
1985 /* Finish a compound-literal expression. TYPE is the type to which
1986 the INITIALIZER_LIST is being cast. */
1988 tree
1989 finish_compound_literal (tree type, tree initializer_list)
1991 tree compound_literal;
1993 /* Build a CONSTRUCTOR for the INITIALIZER_LIST. */
1994 compound_literal = build_constructor (NULL_TREE, initializer_list);
1995 /* Mark it as a compound-literal. */
1996 TREE_HAS_CONSTRUCTOR (compound_literal) = 1;
1997 if (processing_template_decl)
1998 TREE_TYPE (compound_literal) = type;
1999 else
2001 /* Check the initialization. */
2002 compound_literal = digest_init (type, compound_literal, NULL);
2003 /* If the TYPE was an array type with an unknown bound, then we can
2004 figure out the dimension now. For example, something like:
2006 `(int []) { 2, 3 }'
2008 implies that the array has two elements. */
2009 if (TREE_CODE (type) == ARRAY_TYPE && !COMPLETE_TYPE_P (type))
2010 cp_complete_array_type (&TREE_TYPE (compound_literal),
2011 compound_literal, 1);
2014 return compound_literal;
2017 /* Return the declaration for the function-name variable indicated by
2018 ID. */
2020 tree
2021 finish_fname (tree id)
2023 tree decl;
2025 decl = fname_decl (C_RID_CODE (id), id);
2026 if (processing_template_decl)
2027 decl = DECL_NAME (decl);
2028 return decl;
2031 /* Finish a translation unit. */
2033 void
2034 finish_translation_unit (void)
2036 /* In case there were missing closebraces,
2037 get us back to the global binding level. */
2038 pop_everything ();
2039 while (current_namespace != global_namespace)
2040 pop_namespace ();
2042 /* Do file scope __FUNCTION__ et al. */
2043 finish_fname_decls ();
2046 /* Finish a template type parameter, specified as AGGR IDENTIFIER.
2047 Returns the parameter. */
2049 tree
2050 finish_template_type_parm (tree aggr, tree identifier)
2052 if (aggr != class_type_node)
2054 pedwarn ("template type parameters must use the keyword %<class%> or %<typename%>");
2055 aggr = class_type_node;
2058 return build_tree_list (aggr, identifier);
2061 /* Finish a template template parameter, specified as AGGR IDENTIFIER.
2062 Returns the parameter. */
2064 tree
2065 finish_template_template_parm (tree aggr, tree identifier)
2067 tree decl = build_decl (TYPE_DECL, identifier, NULL_TREE);
2068 tree tmpl = build_lang_decl (TEMPLATE_DECL, identifier, NULL_TREE);
2069 DECL_TEMPLATE_PARMS (tmpl) = current_template_parms;
2070 DECL_TEMPLATE_RESULT (tmpl) = decl;
2071 DECL_ARTIFICIAL (decl) = 1;
2072 end_template_decl ();
2074 gcc_assert (DECL_TEMPLATE_PARMS (tmpl));
2076 return finish_template_type_parm (aggr, tmpl);
2079 /* ARGUMENT is the default-argument value for a template template
2080 parameter. If ARGUMENT is invalid, issue error messages and return
2081 the ERROR_MARK_NODE. Otherwise, ARGUMENT itself is returned. */
2083 tree
2084 check_template_template_default_arg (tree argument)
2086 if (TREE_CODE (argument) != TEMPLATE_DECL
2087 && TREE_CODE (argument) != TEMPLATE_TEMPLATE_PARM
2088 && TREE_CODE (argument) != UNBOUND_CLASS_TEMPLATE)
2090 if (TREE_CODE (argument) == TYPE_DECL)
2092 tree t = TREE_TYPE (argument);
2094 /* Try to emit a slightly smarter error message if we detect
2095 that the user is using a template instantiation. */
2096 if (CLASSTYPE_TEMPLATE_INFO (t)
2097 && CLASSTYPE_TEMPLATE_INSTANTIATION (t))
2098 error ("invalid use of type %qT as a default value for a "
2099 "template template-parameter", t);
2100 else
2101 error ("invalid use of %qD as a default value for a template "
2102 "template-parameter", argument);
2104 else
2105 error ("invalid default argument for a template template parameter");
2106 return error_mark_node;
2109 return argument;
2112 /* Begin a class definition, as indicated by T. */
2114 tree
2115 begin_class_definition (tree t)
2117 if (t == error_mark_node)
2118 return error_mark_node;
2120 if (processing_template_parmlist)
2122 error ("definition of %q#T inside template parameter list", t);
2123 return error_mark_node;
2125 /* A non-implicit typename comes from code like:
2127 template <typename T> struct A {
2128 template <typename U> struct A<T>::B ...
2130 This is erroneous. */
2131 else if (TREE_CODE (t) == TYPENAME_TYPE)
2133 error ("invalid definition of qualified type %qT", t);
2134 t = error_mark_node;
2137 if (t == error_mark_node || ! IS_AGGR_TYPE (t))
2139 t = make_aggr_type (RECORD_TYPE);
2140 pushtag (make_anon_name (), t, /*tag_scope=*/ts_current);
2143 /* Update the location of the decl. */
2144 DECL_SOURCE_LOCATION (TYPE_NAME (t)) = input_location;
2146 if (TYPE_BEING_DEFINED (t))
2148 t = make_aggr_type (TREE_CODE (t));
2149 pushtag (TYPE_IDENTIFIER (t), t, /*tag_scope=*/ts_current);
2151 maybe_process_partial_specialization (t);
2152 pushclass (t);
2153 TYPE_BEING_DEFINED (t) = 1;
2154 if (flag_pack_struct)
2156 tree v;
2157 TYPE_PACKED (t) = 1;
2158 /* Even though the type is being defined for the first time
2159 here, there might have been a forward declaration, so there
2160 might be cv-qualified variants of T. */
2161 for (v = TYPE_NEXT_VARIANT (t); v; v = TYPE_NEXT_VARIANT (v))
2162 TYPE_PACKED (v) = 1;
2164 /* Reset the interface data, at the earliest possible
2165 moment, as it might have been set via a class foo;
2166 before. */
2167 if (! TYPE_ANONYMOUS_P (t))
2169 struct c_fileinfo *finfo = get_fileinfo (lbasename (input_filename));
2170 CLASSTYPE_INTERFACE_ONLY (t) = finfo->interface_only;
2171 SET_CLASSTYPE_INTERFACE_UNKNOWN_X
2172 (t, finfo->interface_unknown);
2174 reset_specialization();
2176 /* Make a declaration for this class in its own scope. */
2177 build_self_reference ();
2179 return t;
2182 /* Finish the member declaration given by DECL. */
2184 void
2185 finish_member_declaration (tree decl)
2187 if (decl == error_mark_node || decl == NULL_TREE)
2188 return;
2190 if (decl == void_type_node)
2191 /* The COMPONENT was a friend, not a member, and so there's
2192 nothing for us to do. */
2193 return;
2195 /* We should see only one DECL at a time. */
2196 gcc_assert (TREE_CHAIN (decl) == NULL_TREE);
2198 /* Set up access control for DECL. */
2199 TREE_PRIVATE (decl)
2200 = (current_access_specifier == access_private_node);
2201 TREE_PROTECTED (decl)
2202 = (current_access_specifier == access_protected_node);
2203 if (TREE_CODE (decl) == TEMPLATE_DECL)
2205 TREE_PRIVATE (DECL_TEMPLATE_RESULT (decl)) = TREE_PRIVATE (decl);
2206 TREE_PROTECTED (DECL_TEMPLATE_RESULT (decl)) = TREE_PROTECTED (decl);
2209 /* Mark the DECL as a member of the current class. */
2210 DECL_CONTEXT (decl) = current_class_type;
2212 /* [dcl.link]
2214 A C language linkage is ignored for the names of class members
2215 and the member function type of class member functions. */
2216 if (DECL_LANG_SPECIFIC (decl) && DECL_LANGUAGE (decl) == lang_c)
2217 SET_DECL_LANGUAGE (decl, lang_cplusplus);
2219 /* Put functions on the TYPE_METHODS list and everything else on the
2220 TYPE_FIELDS list. Note that these are built up in reverse order.
2221 We reverse them (to obtain declaration order) in finish_struct. */
2222 if (TREE_CODE (decl) == FUNCTION_DECL
2223 || DECL_FUNCTION_TEMPLATE_P (decl))
2225 /* We also need to add this function to the
2226 CLASSTYPE_METHOD_VEC. */
2227 add_method (current_class_type, decl);
2229 TREE_CHAIN (decl) = TYPE_METHODS (current_class_type);
2230 TYPE_METHODS (current_class_type) = decl;
2232 maybe_add_class_template_decl_list (current_class_type, decl,
2233 /*friend_p=*/0);
2235 /* Enter the DECL into the scope of the class. */
2236 else if ((TREE_CODE (decl) == USING_DECL && TREE_TYPE (decl))
2237 || pushdecl_class_level (decl))
2239 /* All TYPE_DECLs go at the end of TYPE_FIELDS. Ordinary fields
2240 go at the beginning. The reason is that lookup_field_1
2241 searches the list in order, and we want a field name to
2242 override a type name so that the "struct stat hack" will
2243 work. In particular:
2245 struct S { enum E { }; int E } s;
2246 s.E = 3;
2248 is valid. In addition, the FIELD_DECLs must be maintained in
2249 declaration order so that class layout works as expected.
2250 However, we don't need that order until class layout, so we
2251 save a little time by putting FIELD_DECLs on in reverse order
2252 here, and then reversing them in finish_struct_1. (We could
2253 also keep a pointer to the correct insertion points in the
2254 list.) */
2256 if (TREE_CODE (decl) == TYPE_DECL)
2257 TYPE_FIELDS (current_class_type)
2258 = chainon (TYPE_FIELDS (current_class_type), decl);
2259 else
2261 TREE_CHAIN (decl) = TYPE_FIELDS (current_class_type);
2262 TYPE_FIELDS (current_class_type) = decl;
2265 maybe_add_class_template_decl_list (current_class_type, decl,
2266 /*friend_p=*/0);
2269 if (pch_file)
2270 note_decl_for_pch (decl);
2273 /* DECL has been declared while we are building a PCH file. Perform
2274 actions that we might normally undertake lazily, but which can be
2275 performed now so that they do not have to be performed in
2276 translation units which include the PCH file. */
2278 void
2279 note_decl_for_pch (tree decl)
2281 gcc_assert (pch_file);
2283 /* A non-template inline function with external linkage will always
2284 be COMDAT. As we must eventually determine the linkage of all
2285 functions, and as that causes writes to the data mapped in from
2286 the PCH file, it's advantageous to mark the functions at this
2287 point. */
2288 if (TREE_CODE (decl) == FUNCTION_DECL
2289 && TREE_PUBLIC (decl)
2290 && DECL_DECLARED_INLINE_P (decl)
2291 && !DECL_IMPLICIT_INSTANTIATION (decl))
2293 comdat_linkage (decl);
2294 DECL_INTERFACE_KNOWN (decl) = 1;
2297 /* There's a good chance that we'll have to mangle names at some
2298 point, even if only for emission in debugging information. */
2299 if (TREE_CODE (decl) == VAR_DECL
2300 || TREE_CODE (decl) == FUNCTION_DECL)
2301 mangle_decl (decl);
2304 /* Finish processing a complete template declaration. The PARMS are
2305 the template parameters. */
2307 void
2308 finish_template_decl (tree parms)
2310 if (parms)
2311 end_template_decl ();
2312 else
2313 end_specialization ();
2316 /* Finish processing a template-id (which names a type) of the form
2317 NAME < ARGS >. Return the TYPE_DECL for the type named by the
2318 template-id. If ENTERING_SCOPE is nonzero we are about to enter
2319 the scope of template-id indicated. */
2321 tree
2322 finish_template_type (tree name, tree args, int entering_scope)
2324 tree decl;
2326 decl = lookup_template_class (name, args,
2327 NULL_TREE, NULL_TREE, entering_scope,
2328 tf_error | tf_warning | tf_user);
2329 if (decl != error_mark_node)
2330 decl = TYPE_STUB_DECL (decl);
2332 return decl;
2335 /* Finish processing a BASE_CLASS with the indicated ACCESS_SPECIFIER.
2336 Return a TREE_LIST containing the ACCESS_SPECIFIER and the
2337 BASE_CLASS, or NULL_TREE if an error occurred. The
2338 ACCESS_SPECIFIER is one of
2339 access_{default,public,protected_private}_node. For a virtual base
2340 we set TREE_TYPE. */
2342 tree
2343 finish_base_specifier (tree base, tree access, bool virtual_p)
2345 tree result;
2347 if (base == error_mark_node)
2349 error ("invalid base-class specification");
2350 result = NULL_TREE;
2352 else if (! is_aggr_type (base, 1))
2353 result = NULL_TREE;
2354 else
2356 if (cp_type_quals (base) != 0)
2358 error ("base class %qT has cv qualifiers", base);
2359 base = TYPE_MAIN_VARIANT (base);
2361 result = build_tree_list (access, base);
2362 if (virtual_p)
2363 TREE_TYPE (result) = integer_type_node;
2366 return result;
2369 /* Issue a diagnostic that NAME cannot be found in SCOPE. DECL is
2370 what we found when we tried to do the lookup. */
2372 void
2373 qualified_name_lookup_error (tree scope, tree name, tree decl)
2375 if (TYPE_P (scope))
2377 if (!COMPLETE_TYPE_P (scope))
2378 error ("incomplete type %qT used in nested name specifier", scope);
2379 else if (TREE_CODE (decl) == TREE_LIST)
2381 error ("reference to %<%T::%D%> is ambiguous", scope, name);
2382 print_candidates (decl);
2384 else
2385 error ("%qD is not a member of %qT", name, scope);
2387 else if (scope != global_namespace)
2388 error ("%qD is not a member of %qD", name, scope);
2389 else
2390 error ("%<::%D%> has not been declared", name);
2393 /* ID_EXPRESSION is a representation of parsed, but unprocessed,
2394 id-expression. (See cp_parser_id_expression for details.) SCOPE,
2395 if non-NULL, is the type or namespace used to explicitly qualify
2396 ID_EXPRESSION. DECL is the entity to which that name has been
2397 resolved.
2399 *CONSTANT_EXPRESSION_P is true if we are presently parsing a
2400 constant-expression. In that case, *NON_CONSTANT_EXPRESSION_P will
2401 be set to true if this expression isn't permitted in a
2402 constant-expression, but it is otherwise not set by this function.
2403 *ALLOW_NON_CONSTANT_EXPRESSION_P is true if we are parsing a
2404 constant-expression, but a non-constant expression is also
2405 permissible.
2407 If an error occurs, and it is the kind of error that might cause
2408 the parser to abort a tentative parse, *ERROR_MSG is filled in. It
2409 is the caller's responsibility to issue the message. *ERROR_MSG
2410 will be a string with static storage duration, so the caller need
2411 not "free" it.
2413 Return an expression for the entity, after issuing appropriate
2414 diagnostics. This function is also responsible for transforming a
2415 reference to a non-static member into a COMPONENT_REF that makes
2416 the use of "this" explicit.
2418 Upon return, *IDK will be filled in appropriately. */
2420 tree
2421 finish_id_expression (tree id_expression,
2422 tree decl,
2423 tree scope,
2424 cp_id_kind *idk,
2425 tree *qualifying_class,
2426 bool integral_constant_expression_p,
2427 bool allow_non_integral_constant_expression_p,
2428 bool *non_integral_constant_expression_p,
2429 const char **error_msg)
2431 /* Initialize the output parameters. */
2432 *idk = CP_ID_KIND_NONE;
2433 *error_msg = NULL;
2435 if (id_expression == error_mark_node)
2436 return error_mark_node;
2437 /* If we have a template-id, then no further lookup is
2438 required. If the template-id was for a template-class, we
2439 will sometimes have a TYPE_DECL at this point. */
2440 else if (TREE_CODE (decl) == TEMPLATE_ID_EXPR
2441 || TREE_CODE (decl) == TYPE_DECL)
2443 /* Look up the name. */
2444 else
2446 if (decl == error_mark_node)
2448 /* Name lookup failed. */
2449 if (scope
2450 && (!TYPE_P (scope)
2451 || (!dependent_type_p (scope)
2452 && !(TREE_CODE (id_expression) == IDENTIFIER_NODE
2453 && IDENTIFIER_TYPENAME_P (id_expression)
2454 && dependent_type_p (TREE_TYPE (id_expression))))))
2456 /* If the qualifying type is non-dependent (and the name
2457 does not name a conversion operator to a dependent
2458 type), issue an error. */
2459 qualified_name_lookup_error (scope, id_expression, decl);
2460 return error_mark_node;
2462 else if (!scope)
2464 /* It may be resolved via Koenig lookup. */
2465 *idk = CP_ID_KIND_UNQUALIFIED;
2466 return id_expression;
2468 else
2469 decl = id_expression;
2471 /* If DECL is a variable that would be out of scope under
2472 ANSI/ISO rules, but in scope in the ARM, name lookup
2473 will succeed. Issue a diagnostic here. */
2474 else
2475 decl = check_for_out_of_scope_variable (decl);
2477 /* Remember that the name was used in the definition of
2478 the current class so that we can check later to see if
2479 the meaning would have been different after the class
2480 was entirely defined. */
2481 if (!scope && decl != error_mark_node)
2482 maybe_note_name_used_in_class (id_expression, decl);
2485 /* If we didn't find anything, or what we found was a type,
2486 then this wasn't really an id-expression. */
2487 if (TREE_CODE (decl) == TEMPLATE_DECL
2488 && !DECL_FUNCTION_TEMPLATE_P (decl))
2490 *error_msg = "missing template arguments";
2491 return error_mark_node;
2493 else if (TREE_CODE (decl) == TYPE_DECL
2494 || TREE_CODE (decl) == NAMESPACE_DECL)
2496 *error_msg = "expected primary-expression";
2497 return error_mark_node;
2500 /* If the name resolved to a template parameter, there is no
2501 need to look it up again later. */
2502 if ((TREE_CODE (decl) == CONST_DECL && DECL_TEMPLATE_PARM_P (decl))
2503 || TREE_CODE (decl) == TEMPLATE_PARM_INDEX)
2505 tree r;
2507 *idk = CP_ID_KIND_NONE;
2508 if (TREE_CODE (decl) == TEMPLATE_PARM_INDEX)
2509 decl = TEMPLATE_PARM_DECL (decl);
2510 r = convert_from_reference (DECL_INITIAL (decl));
2512 if (integral_constant_expression_p
2513 && !dependent_type_p (TREE_TYPE (decl))
2514 && !(INTEGRAL_OR_ENUMERATION_TYPE_P (TREE_TYPE (r))))
2516 if (!allow_non_integral_constant_expression_p)
2517 error ("template parameter %qD of type %qT is not allowed in "
2518 "an integral constant expression because it is not of "
2519 "integral or enumeration type", decl, TREE_TYPE (decl));
2520 *non_integral_constant_expression_p = true;
2522 return r;
2524 /* Similarly, we resolve enumeration constants to their
2525 underlying values. */
2526 else if (TREE_CODE (decl) == CONST_DECL)
2528 *idk = CP_ID_KIND_NONE;
2529 if (!processing_template_decl)
2530 return DECL_INITIAL (decl);
2531 return decl;
2533 else
2535 bool dependent_p;
2537 /* If the declaration was explicitly qualified indicate
2538 that. The semantics of `A::f(3)' are different than
2539 `f(3)' if `f' is virtual. */
2540 *idk = (scope
2541 ? CP_ID_KIND_QUALIFIED
2542 : (TREE_CODE (decl) == TEMPLATE_ID_EXPR
2543 ? CP_ID_KIND_TEMPLATE_ID
2544 : CP_ID_KIND_UNQUALIFIED));
2547 /* [temp.dep.expr]
2549 An id-expression is type-dependent if it contains an
2550 identifier that was declared with a dependent type.
2552 The standard is not very specific about an id-expression that
2553 names a set of overloaded functions. What if some of them
2554 have dependent types and some of them do not? Presumably,
2555 such a name should be treated as a dependent name. */
2556 /* Assume the name is not dependent. */
2557 dependent_p = false;
2558 if (!processing_template_decl)
2559 /* No names are dependent outside a template. */
2561 /* A template-id where the name of the template was not resolved
2562 is definitely dependent. */
2563 else if (TREE_CODE (decl) == TEMPLATE_ID_EXPR
2564 && (TREE_CODE (TREE_OPERAND (decl, 0))
2565 == IDENTIFIER_NODE))
2566 dependent_p = true;
2567 /* For anything except an overloaded function, just check its
2568 type. */
2569 else if (!is_overloaded_fn (decl))
2570 dependent_p
2571 = dependent_type_p (TREE_TYPE (decl));
2572 /* For a set of overloaded functions, check each of the
2573 functions. */
2574 else
2576 tree fns = decl;
2578 if (BASELINK_P (fns))
2579 fns = BASELINK_FUNCTIONS (fns);
2581 /* For a template-id, check to see if the template
2582 arguments are dependent. */
2583 if (TREE_CODE (fns) == TEMPLATE_ID_EXPR)
2585 tree args = TREE_OPERAND (fns, 1);
2586 dependent_p = any_dependent_template_arguments_p (args);
2587 /* The functions are those referred to by the
2588 template-id. */
2589 fns = TREE_OPERAND (fns, 0);
2592 /* If there are no dependent template arguments, go through
2593 the overloaded functions. */
2594 while (fns && !dependent_p)
2596 tree fn = OVL_CURRENT (fns);
2598 /* Member functions of dependent classes are
2599 dependent. */
2600 if (TREE_CODE (fn) == FUNCTION_DECL
2601 && type_dependent_expression_p (fn))
2602 dependent_p = true;
2603 else if (TREE_CODE (fn) == TEMPLATE_DECL
2604 && dependent_template_p (fn))
2605 dependent_p = true;
2607 fns = OVL_NEXT (fns);
2611 /* If the name was dependent on a template parameter, we will
2612 resolve the name at instantiation time. */
2613 if (dependent_p)
2615 /* Create a SCOPE_REF for qualified names, if the scope is
2616 dependent. */
2617 if (scope)
2619 if (TYPE_P (scope))
2620 *qualifying_class = scope;
2621 /* Since this name was dependent, the expression isn't
2622 constant -- yet. No error is issued because it might
2623 be constant when things are instantiated. */
2624 if (integral_constant_expression_p)
2625 *non_integral_constant_expression_p = true;
2626 if (TYPE_P (scope) && dependent_type_p (scope))
2627 return build_nt (SCOPE_REF, scope, id_expression);
2628 else if (TYPE_P (scope) && DECL_P (decl))
2629 return convert_from_reference
2630 (build2 (SCOPE_REF, TREE_TYPE (decl), scope, id_expression));
2631 else
2632 return convert_from_reference (decl);
2634 /* A TEMPLATE_ID already contains all the information we
2635 need. */
2636 if (TREE_CODE (id_expression) == TEMPLATE_ID_EXPR)
2637 return id_expression;
2638 *idk = CP_ID_KIND_UNQUALIFIED_DEPENDENT;
2639 /* If we found a variable, then name lookup during the
2640 instantiation will always resolve to the same VAR_DECL
2641 (or an instantiation thereof). */
2642 if (TREE_CODE (decl) == VAR_DECL
2643 || TREE_CODE (decl) == PARM_DECL)
2644 return convert_from_reference (decl);
2645 /* The same is true for FIELD_DECL, but we also need to
2646 make sure that the syntax is correct. */
2647 else if (TREE_CODE (decl) == FIELD_DECL)
2649 /* Since SCOPE is NULL here, this is an unqualified name.
2650 Access checking has been performed during name lookup
2651 already. Turn off checking to avoid duplicate errors. */
2652 push_deferring_access_checks (dk_no_check);
2653 decl = finish_non_static_data_member
2654 (decl, current_class_ref,
2655 /*qualifying_scope=*/NULL_TREE);
2656 pop_deferring_access_checks ();
2657 return decl;
2659 return id_expression;
2662 /* Only certain kinds of names are allowed in constant
2663 expression. Enumerators and template parameters have already
2664 been handled above. */
2665 if (integral_constant_expression_p
2666 && ! DECL_INTEGRAL_CONSTANT_VAR_P (decl)
2667 && ! builtin_valid_in_constant_expr_p (decl))
2669 if (!allow_non_integral_constant_expression_p)
2671 error ("%qD cannot appear in a constant-expression", decl);
2672 return error_mark_node;
2674 *non_integral_constant_expression_p = true;
2677 if (TREE_CODE (decl) == NAMESPACE_DECL)
2679 error ("use of namespace %qD as expression", decl);
2680 return error_mark_node;
2682 else if (DECL_CLASS_TEMPLATE_P (decl))
2684 error ("use of class template %qT as expression", decl);
2685 return error_mark_node;
2687 else if (TREE_CODE (decl) == TREE_LIST)
2689 /* Ambiguous reference to base members. */
2690 error ("request for member %qD is ambiguous in "
2691 "multiple inheritance lattice", id_expression);
2692 print_candidates (decl);
2693 return error_mark_node;
2696 /* Mark variable-like entities as used. Functions are similarly
2697 marked either below or after overload resolution. */
2698 if (TREE_CODE (decl) == VAR_DECL
2699 || TREE_CODE (decl) == PARM_DECL
2700 || TREE_CODE (decl) == RESULT_DECL)
2701 mark_used (decl);
2703 if (scope)
2705 decl = (adjust_result_of_qualified_name_lookup
2706 (decl, scope, current_class_type));
2708 if (TREE_CODE (decl) == FUNCTION_DECL)
2709 mark_used (decl);
2711 if (TREE_CODE (decl) == FIELD_DECL || BASELINK_P (decl))
2712 *qualifying_class = scope;
2713 else
2715 tree r = convert_from_reference (decl);
2717 if (processing_template_decl
2718 && TYPE_P (scope))
2719 r = build2 (SCOPE_REF, TREE_TYPE (r), scope, decl);
2720 decl = r;
2723 else if (TREE_CODE (decl) == FIELD_DECL)
2725 /* Since SCOPE is NULL here, this is an unqualified name.
2726 Access checking has been performed during name lookup
2727 already. Turn off checking to avoid duplicate errors. */
2728 push_deferring_access_checks (dk_no_check);
2729 decl = finish_non_static_data_member (decl, current_class_ref,
2730 /*qualifying_scope=*/NULL_TREE);
2731 pop_deferring_access_checks ();
2733 else if (is_overloaded_fn (decl))
2735 tree first_fn = OVL_CURRENT (decl);
2737 if (TREE_CODE (first_fn) == TEMPLATE_DECL)
2738 first_fn = DECL_TEMPLATE_RESULT (first_fn);
2740 if (!really_overloaded_fn (decl))
2741 mark_used (first_fn);
2743 if (TREE_CODE (first_fn) == FUNCTION_DECL
2744 && DECL_FUNCTION_MEMBER_P (first_fn)
2745 && !shared_member_p (decl))
2747 /* A set of member functions. */
2748 decl = maybe_dummy_object (DECL_CONTEXT (first_fn), 0);
2749 return finish_class_member_access_expr (decl, id_expression);
2752 else
2754 if (TREE_CODE (decl) == VAR_DECL
2755 || TREE_CODE (decl) == PARM_DECL
2756 || TREE_CODE (decl) == RESULT_DECL)
2758 tree context = decl_function_context (decl);
2760 if (context != NULL_TREE && context != current_function_decl
2761 && ! TREE_STATIC (decl))
2763 error ("use of %s from containing function",
2764 (TREE_CODE (decl) == VAR_DECL
2765 ? "%<auto%> variable" : "parameter"));
2766 cp_error_at (" %q#D declared here", decl);
2767 return error_mark_node;
2771 if (DECL_P (decl) && DECL_NONLOCAL (decl)
2772 && DECL_CLASS_SCOPE_P (decl)
2773 && DECL_CONTEXT (decl) != current_class_type)
2775 tree path;
2777 path = currently_open_derived_class (DECL_CONTEXT (decl));
2778 perform_or_defer_access_check (TYPE_BINFO (path), decl);
2781 decl = convert_from_reference (decl);
2784 /* Resolve references to variables of anonymous unions
2785 into COMPONENT_REFs. */
2786 if (TREE_CODE (decl) == ALIAS_DECL)
2787 decl = unshare_expr (DECL_INITIAL (decl));
2790 if (TREE_DEPRECATED (decl))
2791 warn_deprecated_use (decl);
2793 return decl;
2796 /* Implement the __typeof keyword: Return the type of EXPR, suitable for
2797 use as a type-specifier. */
2799 tree
2800 finish_typeof (tree expr)
2802 tree type;
2804 if (type_dependent_expression_p (expr))
2806 type = make_aggr_type (TYPEOF_TYPE);
2807 TYPEOF_TYPE_EXPR (type) = expr;
2809 return type;
2812 type = TREE_TYPE (expr);
2814 if (!type || type == unknown_type_node)
2816 error ("type of %qE is unknown", expr);
2817 return error_mark_node;
2820 return type;
2823 /* Called from expand_body via walk_tree. Replace all AGGR_INIT_EXPRs
2824 with equivalent CALL_EXPRs. */
2826 static tree
2827 simplify_aggr_init_exprs_r (tree* tp,
2828 int* walk_subtrees,
2829 void* data ATTRIBUTE_UNUSED)
2831 /* We don't need to walk into types; there's nothing in a type that
2832 needs simplification. (And, furthermore, there are places we
2833 actively don't want to go. For example, we don't want to wander
2834 into the default arguments for a FUNCTION_DECL that appears in a
2835 CALL_EXPR.) */
2836 if (TYPE_P (*tp))
2838 *walk_subtrees = 0;
2839 return NULL_TREE;
2841 /* Only AGGR_INIT_EXPRs are interesting. */
2842 else if (TREE_CODE (*tp) != AGGR_INIT_EXPR)
2843 return NULL_TREE;
2845 simplify_aggr_init_expr (tp);
2847 /* Keep iterating. */
2848 return NULL_TREE;
2851 /* Replace the AGGR_INIT_EXPR at *TP with an equivalent CALL_EXPR. This
2852 function is broken out from the above for the benefit of the tree-ssa
2853 project. */
2855 void
2856 simplify_aggr_init_expr (tree *tp)
2858 tree aggr_init_expr = *tp;
2860 /* Form an appropriate CALL_EXPR. */
2861 tree fn = TREE_OPERAND (aggr_init_expr, 0);
2862 tree args = TREE_OPERAND (aggr_init_expr, 1);
2863 tree slot = TREE_OPERAND (aggr_init_expr, 2);
2864 tree type = TREE_TYPE (slot);
2866 tree call_expr;
2867 enum style_t { ctor, arg, pcc } style;
2869 if (AGGR_INIT_VIA_CTOR_P (aggr_init_expr))
2870 style = ctor;
2871 #ifdef PCC_STATIC_STRUCT_RETURN
2872 else if (1)
2873 style = pcc;
2874 #endif
2875 else
2877 gcc_assert (TREE_ADDRESSABLE (type));
2878 style = arg;
2881 if (style == ctor || style == arg)
2883 /* Pass the address of the slot. If this is a constructor, we
2884 replace the first argument; otherwise, we tack on a new one. */
2885 tree addr;
2887 if (style == ctor)
2888 args = TREE_CHAIN (args);
2890 cxx_mark_addressable (slot);
2891 addr = build1 (ADDR_EXPR, build_pointer_type (type), slot);
2892 if (style == arg)
2894 /* The return type might have different cv-quals from the slot. */
2895 tree fntype = TREE_TYPE (TREE_TYPE (fn));
2897 gcc_assert (TREE_CODE (fntype) == FUNCTION_TYPE
2898 || TREE_CODE (fntype) == METHOD_TYPE);
2899 addr = convert (build_pointer_type (TREE_TYPE (fntype)), addr);
2902 args = tree_cons (NULL_TREE, addr, args);
2905 call_expr = build3 (CALL_EXPR,
2906 TREE_TYPE (TREE_TYPE (TREE_TYPE (fn))),
2907 fn, args, NULL_TREE);
2909 if (style == arg)
2910 /* Tell the backend that we've added our return slot to the argument
2911 list. */
2912 CALL_EXPR_HAS_RETURN_SLOT_ADDR (call_expr) = 1;
2913 else if (style == pcc)
2915 /* If we're using the non-reentrant PCC calling convention, then we
2916 need to copy the returned value out of the static buffer into the
2917 SLOT. */
2918 push_deferring_access_checks (dk_no_check);
2919 call_expr = build_aggr_init (slot, call_expr,
2920 DIRECT_BIND | LOOKUP_ONLYCONVERTING);
2921 pop_deferring_access_checks ();
2924 *tp = call_expr;
2927 /* Emit all thunks to FN that should be emitted when FN is emitted. */
2929 static void
2930 emit_associated_thunks (tree fn)
2932 /* When we use vcall offsets, we emit thunks with the virtual
2933 functions to which they thunk. The whole point of vcall offsets
2934 is so that you can know statically the entire set of thunks that
2935 will ever be needed for a given virtual function, thereby
2936 enabling you to output all the thunks with the function itself. */
2937 if (DECL_VIRTUAL_P (fn))
2939 tree thunk;
2941 for (thunk = DECL_THUNKS (fn); thunk; thunk = TREE_CHAIN (thunk))
2943 if (!THUNK_ALIAS (thunk))
2945 use_thunk (thunk, /*emit_p=*/1);
2946 if (DECL_RESULT_THUNK_P (thunk))
2948 tree probe;
2950 for (probe = DECL_THUNKS (thunk);
2951 probe; probe = TREE_CHAIN (probe))
2952 use_thunk (probe, /*emit_p=*/1);
2955 else
2956 gcc_assert (!DECL_THUNKS (thunk));
2961 /* Generate RTL for FN. */
2963 void
2964 expand_body (tree fn)
2966 tree saved_function;
2968 /* Compute the appropriate object-file linkage for inline
2969 functions. */
2970 if (DECL_DECLARED_INLINE_P (fn))
2971 import_export_decl (fn);
2973 /* If FN is external, then there's no point in generating RTL for
2974 it. This situation can arise with an inline function under
2975 `-fexternal-templates'; we instantiate the function, even though
2976 we're not planning on emitting it, in case we get a chance to
2977 inline it. */
2978 if (DECL_EXTERNAL (fn))
2979 return;
2981 /* ??? When is this needed? */
2982 saved_function = current_function_decl;
2984 /* Emit any thunks that should be emitted at the same time as FN. */
2985 emit_associated_thunks (fn);
2987 /* This function is only called from cgraph, or recursively from
2988 emit_associated_thunks. In neither case should we be currently
2989 generating trees for a function. */
2990 gcc_assert (function_depth == 0);
2992 tree_rest_of_compilation (fn);
2994 current_function_decl = saved_function;
2996 if (DECL_CLONED_FUNCTION_P (fn))
2998 /* If this is a clone, go through the other clones now and mark
2999 their parameters used. We have to do that here, as we don't
3000 know whether any particular clone will be expanded, and
3001 therefore cannot pick one arbitrarily. */
3002 tree probe;
3004 for (probe = TREE_CHAIN (DECL_CLONED_FUNCTION (fn));
3005 probe && DECL_CLONED_FUNCTION_P (probe);
3006 probe = TREE_CHAIN (probe))
3008 tree parms;
3010 for (parms = DECL_ARGUMENTS (probe);
3011 parms; parms = TREE_CHAIN (parms))
3012 TREE_USED (parms) = 1;
3017 /* Generate RTL for FN. */
3019 void
3020 expand_or_defer_fn (tree fn)
3022 /* When the parser calls us after finishing the body of a template
3023 function, we don't really want to expand the body. */
3024 if (processing_template_decl)
3026 /* Normally, collection only occurs in rest_of_compilation. So,
3027 if we don't collect here, we never collect junk generated
3028 during the processing of templates until we hit a
3029 non-template function. */
3030 ggc_collect ();
3031 return;
3034 /* Replace AGGR_INIT_EXPRs with appropriate CALL_EXPRs. */
3035 walk_tree_without_duplicates (&DECL_SAVED_TREE (fn),
3036 simplify_aggr_init_exprs_r,
3037 NULL);
3039 /* If this is a constructor or destructor body, we have to clone
3040 it. */
3041 if (maybe_clone_body (fn))
3043 /* We don't want to process FN again, so pretend we've written
3044 it out, even though we haven't. */
3045 TREE_ASM_WRITTEN (fn) = 1;
3046 return;
3049 /* If this function is marked with the constructor attribute, add it
3050 to the list of functions to be called along with constructors
3051 from static duration objects. */
3052 if (DECL_STATIC_CONSTRUCTOR (fn))
3053 static_ctors = tree_cons (NULL_TREE, fn, static_ctors);
3055 /* If this function is marked with the destructor attribute, add it
3056 to the list of functions to be called along with destructors from
3057 static duration objects. */
3058 if (DECL_STATIC_DESTRUCTOR (fn))
3059 static_dtors = tree_cons (NULL_TREE, fn, static_dtors);
3061 /* We make a decision about linkage for these functions at the end
3062 of the compilation. Until that point, we do not want the back
3063 end to output them -- but we do want it to see the bodies of
3064 these functions so that it can inline them as appropriate. */
3065 if (DECL_DECLARED_INLINE_P (fn) || DECL_IMPLICIT_INSTANTIATION (fn))
3067 if (!at_eof)
3069 DECL_EXTERNAL (fn) = 1;
3070 DECL_NOT_REALLY_EXTERN (fn) = 1;
3071 note_vague_linkage_fn (fn);
3073 else
3074 import_export_decl (fn);
3076 /* If the user wants us to keep all inline functions, then mark
3077 this function as needed so that finish_file will make sure to
3078 output it later. */
3079 if (flag_keep_inline_functions && DECL_DECLARED_INLINE_P (fn))
3080 mark_needed (fn);
3083 /* There's no reason to do any of the work here if we're only doing
3084 semantic analysis; this code just generates RTL. */
3085 if (flag_syntax_only)
3086 return;
3088 function_depth++;
3090 /* Expand or defer, at the whim of the compilation unit manager. */
3091 cgraph_finalize_function (fn, function_depth > 1);
3093 function_depth--;
3096 struct nrv_data
3098 tree var;
3099 tree result;
3100 htab_t visited;
3103 /* Helper function for walk_tree, used by finalize_nrv below. */
3105 static tree
3106 finalize_nrv_r (tree* tp, int* walk_subtrees, void* data)
3108 struct nrv_data *dp = (struct nrv_data *)data;
3109 void **slot;
3111 /* No need to walk into types. There wouldn't be any need to walk into
3112 non-statements, except that we have to consider STMT_EXPRs. */
3113 if (TYPE_P (*tp))
3114 *walk_subtrees = 0;
3115 /* Change all returns to just refer to the RESULT_DECL; this is a nop,
3116 but differs from using NULL_TREE in that it indicates that we care
3117 about the value of the RESULT_DECL. */
3118 else if (TREE_CODE (*tp) == RETURN_EXPR)
3119 TREE_OPERAND (*tp, 0) = dp->result;
3120 /* Change all cleanups for the NRV to only run when an exception is
3121 thrown. */
3122 else if (TREE_CODE (*tp) == CLEANUP_STMT
3123 && CLEANUP_DECL (*tp) == dp->var)
3124 CLEANUP_EH_ONLY (*tp) = 1;
3125 /* Replace the DECL_EXPR for the NRV with an initialization of the
3126 RESULT_DECL, if needed. */
3127 else if (TREE_CODE (*tp) == DECL_EXPR
3128 && DECL_EXPR_DECL (*tp) == dp->var)
3130 tree init;
3131 if (DECL_INITIAL (dp->var)
3132 && DECL_INITIAL (dp->var) != error_mark_node)
3134 init = build2 (INIT_EXPR, void_type_node, dp->result,
3135 DECL_INITIAL (dp->var));
3136 DECL_INITIAL (dp->var) = error_mark_node;
3138 else
3139 init = build_empty_stmt ();
3140 SET_EXPR_LOCUS (init, EXPR_LOCUS (*tp));
3141 *tp = init;
3143 /* And replace all uses of the NRV with the RESULT_DECL. */
3144 else if (*tp == dp->var)
3145 *tp = dp->result;
3147 /* Avoid walking into the same tree more than once. Unfortunately, we
3148 can't just use walk_tree_without duplicates because it would only call
3149 us for the first occurrence of dp->var in the function body. */
3150 slot = htab_find_slot (dp->visited, *tp, INSERT);
3151 if (*slot)
3152 *walk_subtrees = 0;
3153 else
3154 *slot = *tp;
3156 /* Keep iterating. */
3157 return NULL_TREE;
3160 /* Called from finish_function to implement the named return value
3161 optimization by overriding all the RETURN_EXPRs and pertinent
3162 CLEANUP_STMTs and replacing all occurrences of VAR with RESULT, the
3163 RESULT_DECL for the function. */
3165 void
3166 finalize_nrv (tree *tp, tree var, tree result)
3168 struct nrv_data data;
3170 /* Copy debugging information from VAR to RESULT. */
3171 DECL_NAME (result) = DECL_NAME (var);
3172 DECL_ARTIFICIAL (result) = DECL_ARTIFICIAL (var);
3173 DECL_IGNORED_P (result) = DECL_IGNORED_P (var);
3174 DECL_SOURCE_LOCATION (result) = DECL_SOURCE_LOCATION (var);
3175 DECL_ABSTRACT_ORIGIN (result) = DECL_ABSTRACT_ORIGIN (var);
3176 /* Don't forget that we take its address. */
3177 TREE_ADDRESSABLE (result) = TREE_ADDRESSABLE (var);
3179 data.var = var;
3180 data.result = result;
3181 data.visited = htab_create (37, htab_hash_pointer, htab_eq_pointer, NULL);
3182 walk_tree (tp, finalize_nrv_r, &data, 0);
3183 htab_delete (data.visited);
3186 /* Perform initialization related to this module. */
3188 void
3189 init_cp_semantics (void)
3193 #include "gt-cp-semantics.h"