* tree-ssa-operands.c (get_call_expr_operands): Add VUSE operands for
[official-gcc.git] / gcc / tree-cfg.c
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1 /* Control flow functions for trees.
2 Copyright (C) 2001, 2002, 2003, 2004 Free Software Foundation, Inc.
3 Contributed by Diego Novillo <dnovillo@redhat.com>
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to
19 the Free Software Foundation, 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
22 #include "config.h"
23 #include "system.h"
24 #include "coretypes.h"
25 #include "tm.h"
26 #include "tree.h"
27 #include "rtl.h"
28 #include "tm_p.h"
29 #include "hard-reg-set.h"
30 #include "basic-block.h"
31 #include "output.h"
32 #include "errors.h"
33 #include "flags.h"
34 #include "function.h"
35 #include "expr.h"
36 #include "ggc.h"
37 #include "langhooks.h"
38 #include "diagnostic.h"
39 #include "tree-flow.h"
40 #include "timevar.h"
41 #include "tree-dump.h"
42 #include "tree-pass.h"
43 #include "toplev.h"
44 #include "except.h"
45 #include "cfgloop.h"
47 /* This file contains functions for building the Control Flow Graph (CFG)
48 for a function tree. */
50 /* Local declarations. */
52 /* Initial capacity for the basic block array. */
53 static const int initial_cfg_capacity = 20;
55 /* Mapping of labels to their associated blocks. This can greatly speed up
56 building of the CFG in code with lots of gotos. */
57 static GTY(()) varray_type label_to_block_map;
59 /* CFG statistics. */
60 struct cfg_stats_d
62 long num_merged_labels;
65 static struct cfg_stats_d cfg_stats;
67 /* Nonzero if we found a computed goto while building basic blocks. */
68 static bool found_computed_goto;
70 /* Basic blocks and flowgraphs. */
71 static basic_block create_bb (void *, void *, basic_block);
72 static void create_block_annotation (basic_block);
73 static void free_blocks_annotations (void);
74 static void clear_blocks_annotations (void);
75 static void make_blocks (tree);
76 static void factor_computed_gotos (void);
78 /* Edges. */
79 static void make_edges (void);
80 static void make_ctrl_stmt_edges (basic_block);
81 static void make_exit_edges (basic_block);
82 static void make_cond_expr_edges (basic_block);
83 static void make_switch_expr_edges (basic_block);
84 static void make_goto_expr_edges (basic_block);
85 static edge tree_redirect_edge_and_branch (edge, basic_block);
86 static edge tree_try_redirect_by_replacing_jump (edge, basic_block);
87 static void split_critical_edges (void);
89 /* Various helpers. */
90 static inline bool stmt_starts_bb_p (tree, tree);
91 static int tree_verify_flow_info (void);
92 static void tree_make_forwarder_block (edge);
93 static bool thread_jumps (void);
94 static bool tree_forwarder_block_p (basic_block);
95 static void bsi_commit_edge_inserts_1 (edge e);
96 static void tree_cfg2vcg (FILE *);
98 /* Flowgraph optimization and cleanup. */
99 static void tree_merge_blocks (basic_block, basic_block);
100 static bool tree_can_merge_blocks_p (basic_block, basic_block);
101 static void remove_bb (basic_block);
102 static bool cleanup_control_flow (void);
103 static bool cleanup_control_expr_graph (basic_block, block_stmt_iterator);
104 static edge find_taken_edge_cond_expr (basic_block, tree);
105 static edge find_taken_edge_switch_expr (basic_block, tree);
106 static tree find_case_label_for_value (tree, tree);
107 static bool phi_alternatives_equal (basic_block, edge, edge);
110 /*---------------------------------------------------------------------------
111 Create basic blocks
112 ---------------------------------------------------------------------------*/
114 /* Entry point to the CFG builder for trees. TP points to the list of
115 statements to be added to the flowgraph. */
117 static void
118 build_tree_cfg (tree *tp)
120 /* Register specific tree functions. */
121 tree_register_cfg_hooks ();
123 /* Initialize rbi_pool. */
124 alloc_rbi_pool ();
126 /* Initialize the basic block array. */
127 init_flow ();
128 profile_status = PROFILE_ABSENT;
129 n_basic_blocks = 0;
130 last_basic_block = 0;
131 VARRAY_BB_INIT (basic_block_info, initial_cfg_capacity, "basic_block_info");
132 memset ((void *) &cfg_stats, 0, sizeof (cfg_stats));
134 /* Build a mapping of labels to their associated blocks. */
135 VARRAY_BB_INIT (label_to_block_map, initial_cfg_capacity,
136 "label to block map");
138 ENTRY_BLOCK_PTR->next_bb = EXIT_BLOCK_PTR;
139 EXIT_BLOCK_PTR->prev_bb = ENTRY_BLOCK_PTR;
141 found_computed_goto = 0;
142 make_blocks (*tp);
144 /* Computed gotos are hell to deal with, especially if there are
145 lots of them with a large number of destinations. So we factor
146 them to a common computed goto location before we build the
147 edge list. After we convert back to normal form, we will un-factor
148 the computed gotos since factoring introduces an unwanted jump. */
149 if (found_computed_goto)
150 factor_computed_gotos ();
152 /* Make sure there is always at least one block, even if its empty. */
153 if (n_basic_blocks == 0)
154 create_empty_bb (ENTRY_BLOCK_PTR);
156 create_block_annotation (ENTRY_BLOCK_PTR);
157 create_block_annotation (EXIT_BLOCK_PTR);
159 /* Adjust the size of the array. */
160 VARRAY_GROW (basic_block_info, n_basic_blocks);
162 /* To speed up statement iterator walks, we first purge dead labels. */
163 cleanup_dead_labels ();
165 /* Group case nodes to reduce the number of edges.
166 We do this after cleaning up dead labels because otherwise we miss
167 a lot of obvious case merging opportunities. */
168 group_case_labels ();
170 /* Create the edges of the flowgraph. */
171 make_edges ();
173 /* Debugging dumps. */
175 /* Write the flowgraph to a VCG file. */
177 int local_dump_flags;
178 FILE *dump_file = dump_begin (TDI_vcg, &local_dump_flags);
179 if (dump_file)
181 tree_cfg2vcg (dump_file);
182 dump_end (TDI_vcg, dump_file);
186 /* Dump a textual representation of the flowgraph. */
187 if (dump_file)
188 dump_tree_cfg (dump_file, dump_flags);
191 static void
192 execute_build_cfg (void)
194 build_tree_cfg (&DECL_SAVED_TREE (current_function_decl));
197 struct tree_opt_pass pass_build_cfg =
199 "cfg", /* name */
200 NULL, /* gate */
201 execute_build_cfg, /* execute */
202 NULL, /* sub */
203 NULL, /* next */
204 0, /* static_pass_number */
205 TV_TREE_CFG, /* tv_id */
206 PROP_gimple_leh, /* properties_required */
207 PROP_cfg, /* properties_provided */
208 0, /* properties_destroyed */
209 0, /* todo_flags_start */
210 TODO_verify_stmts /* todo_flags_finish */
213 /* Search the CFG for any computed gotos. If found, factor them to a
214 common computed goto site. Also record the location of that site so
215 that we can un-factor the gotos after we have converted back to
216 normal form. */
218 static void
219 factor_computed_gotos (void)
221 basic_block bb;
222 tree factored_label_decl = NULL;
223 tree var = NULL;
224 tree factored_computed_goto_label = NULL;
225 tree factored_computed_goto = NULL;
227 /* We know there are one or more computed gotos in this function.
228 Examine the last statement in each basic block to see if the block
229 ends with a computed goto. */
231 FOR_EACH_BB (bb)
233 block_stmt_iterator bsi = bsi_last (bb);
234 tree last;
236 if (bsi_end_p (bsi))
237 continue;
238 last = bsi_stmt (bsi);
240 /* Ignore the computed goto we create when we factor the original
241 computed gotos. */
242 if (last == factored_computed_goto)
243 continue;
245 /* If the last statement is a computed goto, factor it. */
246 if (computed_goto_p (last))
248 tree assignment;
250 /* The first time we find a computed goto we need to create
251 the factored goto block and the variable each original
252 computed goto will use for their goto destination. */
253 if (! factored_computed_goto)
255 basic_block new_bb = create_empty_bb (bb);
256 block_stmt_iterator new_bsi = bsi_start (new_bb);
258 /* Create the destination of the factored goto. Each original
259 computed goto will put its desired destination into this
260 variable and jump to the label we create immediately
261 below. */
262 var = create_tmp_var (ptr_type_node, "gotovar");
264 /* Build a label for the new block which will contain the
265 factored computed goto. */
266 factored_label_decl = create_artificial_label ();
267 factored_computed_goto_label
268 = build1 (LABEL_EXPR, void_type_node, factored_label_decl);
269 bsi_insert_after (&new_bsi, factored_computed_goto_label,
270 BSI_NEW_STMT);
272 /* Build our new computed goto. */
273 factored_computed_goto = build1 (GOTO_EXPR, void_type_node, var);
274 bsi_insert_after (&new_bsi, factored_computed_goto,
275 BSI_NEW_STMT);
278 /* Copy the original computed goto's destination into VAR. */
279 assignment = build (MODIFY_EXPR, ptr_type_node,
280 var, GOTO_DESTINATION (last));
281 bsi_insert_before (&bsi, assignment, BSI_SAME_STMT);
283 /* And re-vector the computed goto to the new destination. */
284 GOTO_DESTINATION (last) = factored_label_decl;
290 /* Create annotations for a single basic block. */
292 static void
293 create_block_annotation (basic_block bb)
295 /* Verify that the tree_annotations field is clear. */
296 if (bb->tree_annotations)
297 abort ();
298 bb->tree_annotations = ggc_alloc_cleared (sizeof (struct bb_ann_d));
302 /* Free the annotations for all the basic blocks. */
304 static void free_blocks_annotations (void)
306 clear_blocks_annotations ();
310 /* Clear the annotations for all the basic blocks. */
312 static void
313 clear_blocks_annotations (void)
315 basic_block bb;
317 FOR_BB_BETWEEN (bb, ENTRY_BLOCK_PTR, NULL, next_bb)
318 bb->tree_annotations = NULL;
322 /* Build a flowgraph for the statement_list STMT_LIST. */
324 static void
325 make_blocks (tree stmt_list)
327 tree_stmt_iterator i = tsi_start (stmt_list);
328 tree stmt = NULL;
329 bool start_new_block = true;
330 bool first_stmt_of_list = true;
331 basic_block bb = ENTRY_BLOCK_PTR;
333 while (!tsi_end_p (i))
335 tree prev_stmt;
337 prev_stmt = stmt;
338 stmt = tsi_stmt (i);
340 /* If the statement starts a new basic block or if we have determined
341 in a previous pass that we need to create a new block for STMT, do
342 so now. */
343 if (start_new_block || stmt_starts_bb_p (stmt, prev_stmt))
345 if (!first_stmt_of_list)
346 stmt_list = tsi_split_statement_list_before (&i);
347 bb = create_basic_block (stmt_list, NULL, bb);
348 start_new_block = false;
351 /* Now add STMT to BB and create the subgraphs for special statement
352 codes. */
353 set_bb_for_stmt (stmt, bb);
355 if (computed_goto_p (stmt))
356 found_computed_goto = true;
358 /* If STMT is a basic block terminator, set START_NEW_BLOCK for the
359 next iteration. */
360 if (stmt_ends_bb_p (stmt))
361 start_new_block = true;
363 tsi_next (&i);
364 first_stmt_of_list = false;
369 /* Create and return a new empty basic block after bb AFTER. */
371 static basic_block
372 create_bb (void *h, void *e, basic_block after)
374 basic_block bb;
376 if (e)
377 abort ();
379 /* Create and initialize a new basic block. */
380 bb = alloc_block ();
381 memset (bb, 0, sizeof (*bb));
383 bb->index = last_basic_block;
384 bb->flags = BB_NEW;
385 bb->stmt_list = h ? h : alloc_stmt_list ();
387 /* Add the new block to the linked list of blocks. */
388 link_block (bb, after);
390 /* Grow the basic block array if needed. */
391 if ((size_t) last_basic_block == VARRAY_SIZE (basic_block_info))
393 size_t new_size = last_basic_block + (last_basic_block + 3) / 4;
394 VARRAY_GROW (basic_block_info, new_size);
397 /* Add the newly created block to the array. */
398 BASIC_BLOCK (last_basic_block) = bb;
400 create_block_annotation (bb);
402 n_basic_blocks++;
403 last_basic_block++;
405 initialize_bb_rbi (bb);
406 return bb;
410 /*---------------------------------------------------------------------------
411 Edge creation
412 ---------------------------------------------------------------------------*/
414 /* Join all the blocks in the flowgraph. */
416 static void
417 make_edges (void)
419 basic_block bb;
421 /* Create an edge from entry to the first block with executable
422 statements in it. */
423 make_edge (ENTRY_BLOCK_PTR, BASIC_BLOCK (0), EDGE_FALLTHRU);
425 /* Traverse basic block array placing edges. */
426 FOR_EACH_BB (bb)
428 tree first = first_stmt (bb);
429 tree last = last_stmt (bb);
431 if (first)
433 /* Edges for statements that always alter flow control. */
434 if (is_ctrl_stmt (last))
435 make_ctrl_stmt_edges (bb);
437 /* Edges for statements that sometimes alter flow control. */
438 if (is_ctrl_altering_stmt (last))
439 make_exit_edges (bb);
442 /* Finally, if no edges were created above, this is a regular
443 basic block that only needs a fallthru edge. */
444 if (bb->succ == NULL)
445 make_edge (bb, bb->next_bb, EDGE_FALLTHRU);
448 /* We do not care about fake edges, so remove any that the CFG
449 builder inserted for completeness. */
450 remove_fake_exit_edges ();
452 /* Clean up the graph and warn for unreachable code. */
453 cleanup_tree_cfg ();
457 /* Create edges for control statement at basic block BB. */
459 static void
460 make_ctrl_stmt_edges (basic_block bb)
462 tree last = last_stmt (bb);
464 #if defined ENABLE_CHECKING
465 if (last == NULL_TREE)
466 abort();
467 #endif
469 switch (TREE_CODE (last))
471 case GOTO_EXPR:
472 make_goto_expr_edges (bb);
473 break;
475 case RETURN_EXPR:
476 make_edge (bb, EXIT_BLOCK_PTR, 0);
477 break;
479 case COND_EXPR:
480 make_cond_expr_edges (bb);
481 break;
483 case SWITCH_EXPR:
484 make_switch_expr_edges (bb);
485 break;
487 case RESX_EXPR:
488 make_eh_edges (last);
489 /* Yet another NORETURN hack. */
490 if (bb->succ == NULL)
491 make_edge (bb, EXIT_BLOCK_PTR, EDGE_FAKE);
492 break;
494 default:
495 abort ();
500 /* Create exit edges for statements in block BB that alter the flow of
501 control. Statements that alter the control flow are 'goto', 'return'
502 and calls to non-returning functions. */
504 static void
505 make_exit_edges (basic_block bb)
507 tree last = last_stmt (bb), op;
509 if (last == NULL_TREE)
510 abort ();
512 switch (TREE_CODE (last))
514 case CALL_EXPR:
515 /* If this function receives a nonlocal goto, then we need to
516 make edges from this call site to all the nonlocal goto
517 handlers. */
518 if (TREE_SIDE_EFFECTS (last)
519 && current_function_has_nonlocal_label)
520 make_goto_expr_edges (bb);
522 /* If this statement has reachable exception handlers, then
523 create abnormal edges to them. */
524 make_eh_edges (last);
526 /* Some calls are known not to return. For such calls we create
527 a fake edge.
529 We really need to revamp how we build edges so that it's not
530 such a bloody pain to avoid creating edges for this case since
531 all we do is remove these edges when we're done building the
532 CFG. */
533 if (call_expr_flags (last) & (ECF_NORETURN | ECF_LONGJMP))
535 make_edge (bb, EXIT_BLOCK_PTR, EDGE_FAKE);
536 return;
539 /* Don't forget the fall-thru edge. */
540 make_edge (bb, bb->next_bb, EDGE_FALLTHRU);
541 break;
543 case MODIFY_EXPR:
544 /* A MODIFY_EXPR may have a CALL_EXPR on its RHS and the CALL_EXPR
545 may have an abnormal edge. Search the RHS for this case and
546 create any required edges. */
547 op = get_call_expr_in (last);
548 if (op && TREE_SIDE_EFFECTS (op)
549 && current_function_has_nonlocal_label)
550 make_goto_expr_edges (bb);
552 make_eh_edges (last);
553 make_edge (bb, bb->next_bb, EDGE_FALLTHRU);
554 break;
556 default:
557 abort ();
562 /* Create the edges for a COND_EXPR starting at block BB.
563 At this point, both clauses must contain only simple gotos. */
565 static void
566 make_cond_expr_edges (basic_block bb)
568 tree entry = last_stmt (bb);
569 basic_block then_bb, else_bb;
570 tree then_label, else_label;
572 #if defined ENABLE_CHECKING
573 if (entry == NULL_TREE || TREE_CODE (entry) != COND_EXPR)
574 abort ();
575 #endif
577 /* Entry basic blocks for each component. */
578 then_label = GOTO_DESTINATION (COND_EXPR_THEN (entry));
579 else_label = GOTO_DESTINATION (COND_EXPR_ELSE (entry));
580 then_bb = label_to_block (then_label);
581 else_bb = label_to_block (else_label);
583 make_edge (bb, then_bb, EDGE_TRUE_VALUE);
584 make_edge (bb, else_bb, EDGE_FALSE_VALUE);
588 /* Create the edges for a SWITCH_EXPR starting at block BB.
589 At this point, the switch body has been lowered and the
590 SWITCH_LABELS filled in, so this is in effect a multi-way branch. */
592 static void
593 make_switch_expr_edges (basic_block bb)
595 tree entry = last_stmt (bb);
596 size_t i, n;
597 tree vec;
599 vec = SWITCH_LABELS (entry);
600 n = TREE_VEC_LENGTH (vec);
602 for (i = 0; i < n; ++i)
604 tree lab = CASE_LABEL (TREE_VEC_ELT (vec, i));
605 basic_block label_bb = label_to_block (lab);
606 make_edge (bb, label_bb, 0);
611 /* Return the basic block holding label DEST. */
613 basic_block
614 label_to_block (tree dest)
616 int uid = LABEL_DECL_UID (dest);
618 /* We would die hard when faced by undefined label. Emit label to
619 very first basic block. This will hopefully make even the dataflow
620 and undefined variable warnings quite right. */
621 if ((errorcount || sorrycount) && uid < 0)
623 block_stmt_iterator bsi = bsi_start (BASIC_BLOCK (0));
624 tree stmt;
626 stmt = build1 (LABEL_EXPR, void_type_node, dest);
627 bsi_insert_before (&bsi, stmt, BSI_NEW_STMT);
628 uid = LABEL_DECL_UID (dest);
630 return VARRAY_BB (label_to_block_map, uid);
634 /* Create edges for a goto statement at block BB. */
636 static void
637 make_goto_expr_edges (basic_block bb)
639 tree goto_t, dest;
640 basic_block target_bb;
641 int for_call;
642 block_stmt_iterator last = bsi_last (bb);
644 goto_t = bsi_stmt (last);
646 /* If the last statement is not a GOTO (i.e., it is a RETURN_EXPR,
647 CALL_EXPR or MODIFY_EXPR), then the edge is an abnormal edge resulting
648 from a nonlocal goto. */
649 if (TREE_CODE (goto_t) != GOTO_EXPR)
651 dest = error_mark_node;
652 for_call = 1;
654 else
656 dest = GOTO_DESTINATION (goto_t);
657 for_call = 0;
659 /* A GOTO to a local label creates normal edges. */
660 if (simple_goto_p (goto_t))
662 edge e = make_edge (bb, label_to_block (dest), EDGE_FALLTHRU);
663 #ifdef USE_MAPPED_LOCATION
664 e->goto_locus = EXPR_LOCATION (goto_t);
665 #else
666 e->goto_locus = EXPR_LOCUS (goto_t);
667 #endif
668 bsi_remove (&last);
669 return;
672 /* Nothing more to do for nonlocal gotos. */
673 if (TREE_CODE (dest) == LABEL_DECL)
674 return;
676 /* Computed gotos remain. */
679 /* Look for the block starting with the destination label. In the
680 case of a computed goto, make an edge to any label block we find
681 in the CFG. */
682 FOR_EACH_BB (target_bb)
684 block_stmt_iterator bsi;
686 for (bsi = bsi_start (target_bb); !bsi_end_p (bsi); bsi_next (&bsi))
688 tree target = bsi_stmt (bsi);
690 if (TREE_CODE (target) != LABEL_EXPR)
691 break;
693 if (
694 /* Computed GOTOs. Make an edge to every label block that has
695 been marked as a potential target for a computed goto. */
696 (FORCED_LABEL (LABEL_EXPR_LABEL (target)) && for_call == 0)
697 /* Nonlocal GOTO target. Make an edge to every label block
698 that has been marked as a potential target for a nonlocal
699 goto. */
700 || (DECL_NONLOCAL (LABEL_EXPR_LABEL (target)) && for_call == 1))
702 make_edge (bb, target_bb, EDGE_ABNORMAL);
703 break;
708 /* Degenerate case of computed goto with no labels. */
709 if (!for_call && !bb->succ)
710 make_edge (bb, EXIT_BLOCK_PTR, EDGE_FAKE);
714 /*---------------------------------------------------------------------------
715 Flowgraph analysis
716 ---------------------------------------------------------------------------*/
718 /* Remove unreachable blocks and other miscellaneous clean up work. */
720 bool
721 cleanup_tree_cfg (void)
723 bool something_changed = true;
724 bool retval = false;
726 timevar_push (TV_TREE_CLEANUP_CFG);
728 /* These three transformations can cascade, so we iterate on them until
729 nothing changes. */
730 while (something_changed)
732 something_changed = cleanup_control_flow ();
733 something_changed |= delete_unreachable_blocks ();
734 something_changed |= thread_jumps ();
735 retval |= something_changed;
738 /* Merging the blocks creates no new opportunities for the other
739 optimizations, so do it here. */
740 merge_seq_blocks ();
742 compact_blocks ();
744 #ifdef ENABLE_CHECKING
745 verify_flow_info ();
746 #endif
747 timevar_pop (TV_TREE_CLEANUP_CFG);
748 return retval;
752 /* Cleanup useless labels in basic blocks. This is something we wish
753 to do early because it allows us to group case labels before creating
754 the edges for the CFG, and it speeds up block statement iterators in
755 all passes later on.
756 We only run this pass once, running it more than once is probably not
757 profitable. */
759 /* A map from basic block index to the leading label of that block. */
760 static tree *label_for_bb;
762 /* Callback for for_each_eh_region. Helper for cleanup_dead_labels. */
763 static void
764 update_eh_label (struct eh_region *region)
766 tree old_label = get_eh_region_tree_label (region);
767 if (old_label)
769 tree new_label;
770 basic_block bb = label_to_block (old_label);
772 /* ??? After optimizing, there may be EH regions with labels
773 that have already been removed from the function body, so
774 there is no basic block for them. */
775 if (! bb)
776 return;
778 new_label = label_for_bb[bb->index];
779 set_eh_region_tree_label (region, new_label);
783 /* Given LABEL return the first label in the same basic block. */
784 static tree
785 main_block_label (tree label)
787 basic_block bb = label_to_block (label);
789 /* label_to_block possibly inserted undefined label into the chain. */
790 if (!label_for_bb[bb->index])
791 label_for_bb[bb->index] = label;
792 return label_for_bb[bb->index];
795 /* Cleanup redundant labels. This is a three-steo process:
796 1) Find the leading label for each block.
797 2) Redirect all references to labels to the leading labels.
798 3) Cleanup all useless labels. */
800 void
801 cleanup_dead_labels (void)
803 basic_block bb;
804 label_for_bb = xcalloc (last_basic_block, sizeof (tree));
806 /* Find a suitable label for each block. We use the first user-defined
807 label is there is one, or otherwise just the first label we see. */
808 FOR_EACH_BB (bb)
810 block_stmt_iterator i;
812 for (i = bsi_start (bb); !bsi_end_p (i); bsi_next (&i))
814 tree label, stmt = bsi_stmt (i);
816 if (TREE_CODE (stmt) != LABEL_EXPR)
817 break;
819 label = LABEL_EXPR_LABEL (stmt);
821 /* If we have not yet seen a label for the current block,
822 remember this one and see if there are more labels. */
823 if (! label_for_bb[bb->index])
825 label_for_bb[bb->index] = label;
826 continue;
829 /* If we did see a label for the current block already, but it
830 is an artificially created label, replace it if the current
831 label is a user defined label. */
832 if (! DECL_ARTIFICIAL (label)
833 && DECL_ARTIFICIAL (label_for_bb[bb->index]))
835 label_for_bb[bb->index] = label;
836 break;
841 /* Now redirect all jumps/branches to the selected label.
842 First do so for each block ending in a control statement. */
843 FOR_EACH_BB (bb)
845 tree stmt = last_stmt (bb);
846 if (!stmt)
847 continue;
849 switch (TREE_CODE (stmt))
851 case COND_EXPR:
853 tree true_branch, false_branch;
855 true_branch = COND_EXPR_THEN (stmt);
856 false_branch = COND_EXPR_ELSE (stmt);
858 GOTO_DESTINATION (true_branch)
859 = main_block_label (GOTO_DESTINATION (true_branch));
860 GOTO_DESTINATION (false_branch)
861 = main_block_label (GOTO_DESTINATION (false_branch));
863 break;
866 case SWITCH_EXPR:
868 size_t i;
869 tree vec = SWITCH_LABELS (stmt);
870 size_t n = TREE_VEC_LENGTH (vec);
872 /* Replace all destination labels. */
873 for (i = 0; i < n; ++i)
874 CASE_LABEL (TREE_VEC_ELT (vec, i))
875 = main_block_label (CASE_LABEL (TREE_VEC_ELT (vec, i)));
877 break;
880 /* We have to handle GOTO_EXPRs until they're removed, and we don't
881 remove them until after we've created the CFG edges. */
882 case GOTO_EXPR:
883 if (! computed_goto_p (stmt))
885 GOTO_DESTINATION (stmt)
886 = main_block_label (GOTO_DESTINATION (stmt));
887 break;
890 default:
891 break;
895 for_each_eh_region (update_eh_label);
897 /* Finally, purge dead labels. All user-defined labels and labels that
898 can be the target of non-local gotos are preserved. */
899 FOR_EACH_BB (bb)
901 block_stmt_iterator i;
902 tree label_for_this_bb = label_for_bb[bb->index];
904 if (! label_for_this_bb)
905 continue;
907 for (i = bsi_start (bb); !bsi_end_p (i); )
909 tree label, stmt = bsi_stmt (i);
911 if (TREE_CODE (stmt) != LABEL_EXPR)
912 break;
914 label = LABEL_EXPR_LABEL (stmt);
916 if (label == label_for_this_bb
917 || ! DECL_ARTIFICIAL (label)
918 || DECL_NONLOCAL (label))
919 bsi_next (&i);
920 else
921 bsi_remove (&i);
925 free (label_for_bb);
928 /* Look for blocks ending in a multiway branch (a SWITCH_EXPR in GIMPLE),
929 and scan the sorted vector of cases. Combine the ones jumping to the
930 same label.
931 Eg. three separate entries 1: 2: 3: become one entry 1..3: */
933 void
934 group_case_labels (void)
936 basic_block bb;
938 FOR_EACH_BB (bb)
940 tree stmt = last_stmt (bb);
941 if (stmt && TREE_CODE (stmt) == SWITCH_EXPR)
943 tree labels = SWITCH_LABELS (stmt);
944 int old_size = TREE_VEC_LENGTH (labels);
945 int i, j, new_size = old_size;
946 tree default_label = TREE_VEC_ELT (labels, old_size - 1);
948 /* Look for possible opportunities to merge cases.
949 Ignore the last element of the label vector because it
950 must be the default case. */
951 i = 0;
952 while (i < old_size - 2)
954 tree base_case, base_label, base_high, type;
955 base_case = TREE_VEC_ELT (labels, i);
957 if (! base_case)
958 abort ();
960 base_label = CASE_LABEL (base_case);
962 /* Discard cases that have the same destination as the
963 default case. */
964 if (base_label == default_label)
966 TREE_VEC_ELT (labels, i) = NULL_TREE;
967 i++;
968 continue;
971 type = TREE_TYPE (CASE_LOW (base_case));
972 base_high = CASE_HIGH (base_case) ?
973 CASE_HIGH (base_case) : CASE_LOW (base_case);
975 /* Try to merge case labels. Break out when we reach the end
976 of the label vector or when we cannot merge the next case
977 label with the current one. */
978 while (i < old_size - 2)
980 tree merge_case = TREE_VEC_ELT (labels, ++i);
981 tree merge_label = CASE_LABEL (merge_case);
982 tree t = int_const_binop (PLUS_EXPR, base_high,
983 integer_one_node, 1);
985 /* Merge the cases if they jump to the same place,
986 and their ranges are consecutive. */
987 if (merge_label == base_label
988 && tree_int_cst_equal (CASE_LOW (merge_case), t))
990 base_high = CASE_HIGH (merge_case) ?
991 CASE_HIGH (merge_case) : CASE_LOW (merge_case);
992 CASE_HIGH (base_case) = base_high;
993 TREE_VEC_ELT (labels, i) = NULL_TREE;
994 new_size--;
996 else
997 break;
1001 /* Compress the case labels in the label vector, and adjust the
1002 length of the vector. */
1003 for (i = 0, j = 0; i < new_size; i++)
1005 while (! TREE_VEC_ELT (labels, j))
1006 j++;
1007 TREE_VEC_ELT (labels, i) = TREE_VEC_ELT (labels, j++);
1009 TREE_VEC_LENGTH (labels) = new_size;
1014 /* Checks whether we can merge block B into block A. */
1016 static bool
1017 tree_can_merge_blocks_p (basic_block a, basic_block b)
1019 tree stmt;
1020 block_stmt_iterator bsi;
1022 if (!a->succ
1023 || a->succ->succ_next)
1024 return false;
1026 if (a->succ->flags & EDGE_ABNORMAL)
1027 return false;
1029 if (a->succ->dest != b)
1030 return false;
1032 if (b == EXIT_BLOCK_PTR)
1033 return false;
1035 if (b->pred->pred_next)
1036 return false;
1038 /* If A ends by a statement causing exceptions or something similar, we
1039 cannot merge the blocks. */
1040 stmt = last_stmt (a);
1041 if (stmt && stmt_ends_bb_p (stmt))
1042 return false;
1044 /* Do not allow a block with only a non-local label to be merged. */
1045 if (stmt && TREE_CODE (stmt) == LABEL_EXPR
1046 && DECL_NONLOCAL (LABEL_EXPR_LABEL (stmt)))
1047 return false;
1049 /* There may be no phi nodes at the start of b. Most of these degenerate
1050 phi nodes should be cleaned up by kill_redundant_phi_nodes. */
1051 if (phi_nodes (b))
1052 return false;
1054 /* Do not remove user labels. */
1055 for (bsi = bsi_start (b); !bsi_end_p (bsi); bsi_next (&bsi))
1057 stmt = bsi_stmt (bsi);
1058 if (TREE_CODE (stmt) != LABEL_EXPR)
1059 break;
1060 if (!DECL_ARTIFICIAL (LABEL_EXPR_LABEL (stmt)))
1061 return false;
1064 return true;
1068 /* Merge block B into block A. */
1070 static void
1071 tree_merge_blocks (basic_block a, basic_block b)
1073 block_stmt_iterator bsi;
1074 tree_stmt_iterator last;
1076 if (dump_file)
1077 fprintf (dump_file, "Merging blocks %d and %d\n", a->index, b->index);
1079 /* Ensure that B follows A. */
1080 move_block_after (b, a);
1082 if (!(a->succ->flags & EDGE_FALLTHRU))
1083 abort ();
1085 if (last_stmt (a)
1086 && stmt_ends_bb_p (last_stmt (a)))
1087 abort ();
1089 /* Remove labels from B and set bb_for_stmt to A for other statements. */
1090 for (bsi = bsi_start (b); !bsi_end_p (bsi);)
1092 if (TREE_CODE (bsi_stmt (bsi)) == LABEL_EXPR)
1093 bsi_remove (&bsi);
1094 else
1096 set_bb_for_stmt (bsi_stmt (bsi), a);
1097 bsi_next (&bsi);
1101 /* Merge the chains. */
1102 last = tsi_last (a->stmt_list);
1103 tsi_link_after (&last, b->stmt_list, TSI_NEW_STMT);
1104 b->stmt_list = NULL;
1108 /* Walk the function tree removing unnecessary statements.
1110 * Empty statement nodes are removed
1112 * Unnecessary TRY_FINALLY and TRY_CATCH blocks are removed
1114 * Unnecessary COND_EXPRs are removed
1116 * Some unnecessary BIND_EXPRs are removed
1118 Clearly more work could be done. The trick is doing the analysis
1119 and removal fast enough to be a net improvement in compile times.
1121 Note that when we remove a control structure such as a COND_EXPR
1122 BIND_EXPR, or TRY block, we will need to repeat this optimization pass
1123 to ensure we eliminate all the useless code. */
1125 struct rus_data
1127 tree *last_goto;
1128 bool repeat;
1129 bool may_throw;
1130 bool may_branch;
1131 bool has_label;
1134 static void remove_useless_stmts_1 (tree *, struct rus_data *);
1136 static bool
1137 remove_useless_stmts_warn_notreached (tree stmt)
1139 if (EXPR_HAS_LOCATION (stmt))
1141 location_t loc = EXPR_LOCATION (stmt);
1142 warning ("%Hwill never be executed", &loc);
1143 return true;
1146 switch (TREE_CODE (stmt))
1148 case STATEMENT_LIST:
1150 tree_stmt_iterator i;
1151 for (i = tsi_start (stmt); !tsi_end_p (i); tsi_next (&i))
1152 if (remove_useless_stmts_warn_notreached (tsi_stmt (i)))
1153 return true;
1155 break;
1157 case COND_EXPR:
1158 if (remove_useless_stmts_warn_notreached (COND_EXPR_COND (stmt)))
1159 return true;
1160 if (remove_useless_stmts_warn_notreached (COND_EXPR_THEN (stmt)))
1161 return true;
1162 if (remove_useless_stmts_warn_notreached (COND_EXPR_ELSE (stmt)))
1163 return true;
1164 break;
1166 case TRY_FINALLY_EXPR:
1167 case TRY_CATCH_EXPR:
1168 if (remove_useless_stmts_warn_notreached (TREE_OPERAND (stmt, 0)))
1169 return true;
1170 if (remove_useless_stmts_warn_notreached (TREE_OPERAND (stmt, 1)))
1171 return true;
1172 break;
1174 case CATCH_EXPR:
1175 return remove_useless_stmts_warn_notreached (CATCH_BODY (stmt));
1176 case EH_FILTER_EXPR:
1177 return remove_useless_stmts_warn_notreached (EH_FILTER_FAILURE (stmt));
1178 case BIND_EXPR:
1179 return remove_useless_stmts_warn_notreached (BIND_EXPR_BLOCK (stmt));
1181 default:
1182 /* Not a live container. */
1183 break;
1186 return false;
1189 static void
1190 remove_useless_stmts_cond (tree *stmt_p, struct rus_data *data)
1192 tree then_clause, else_clause, cond;
1193 bool save_has_label, then_has_label, else_has_label;
1195 save_has_label = data->has_label;
1196 data->has_label = false;
1197 data->last_goto = NULL;
1199 remove_useless_stmts_1 (&COND_EXPR_THEN (*stmt_p), data);
1201 then_has_label = data->has_label;
1202 data->has_label = false;
1203 data->last_goto = NULL;
1205 remove_useless_stmts_1 (&COND_EXPR_ELSE (*stmt_p), data);
1207 else_has_label = data->has_label;
1208 data->has_label = save_has_label | then_has_label | else_has_label;
1210 fold_stmt (stmt_p);
1211 then_clause = COND_EXPR_THEN (*stmt_p);
1212 else_clause = COND_EXPR_ELSE (*stmt_p);
1213 cond = COND_EXPR_COND (*stmt_p);
1215 /* If neither arm does anything at all, we can remove the whole IF. */
1216 if (!TREE_SIDE_EFFECTS (then_clause) && !TREE_SIDE_EFFECTS (else_clause))
1218 *stmt_p = build_empty_stmt ();
1219 data->repeat = true;
1222 /* If there are no reachable statements in an arm, then we can
1223 zap the entire conditional. */
1224 else if (integer_nonzerop (cond) && !else_has_label)
1226 if (warn_notreached)
1227 remove_useless_stmts_warn_notreached (else_clause);
1228 *stmt_p = then_clause;
1229 data->repeat = true;
1231 else if (integer_zerop (cond) && !then_has_label)
1233 if (warn_notreached)
1234 remove_useless_stmts_warn_notreached (then_clause);
1235 *stmt_p = else_clause;
1236 data->repeat = true;
1239 /* Check a couple of simple things on then/else with single stmts. */
1240 else
1242 tree then_stmt = expr_only (then_clause);
1243 tree else_stmt = expr_only (else_clause);
1245 /* Notice branches to a common destination. */
1246 if (then_stmt && else_stmt
1247 && TREE_CODE (then_stmt) == GOTO_EXPR
1248 && TREE_CODE (else_stmt) == GOTO_EXPR
1249 && (GOTO_DESTINATION (then_stmt) == GOTO_DESTINATION (else_stmt)))
1251 *stmt_p = then_stmt;
1252 data->repeat = true;
1255 /* If the THEN/ELSE clause merely assigns a value to a variable or
1256 parameter which is already known to contain that value, then
1257 remove the useless THEN/ELSE clause. */
1258 else if (TREE_CODE (cond) == VAR_DECL || TREE_CODE (cond) == PARM_DECL)
1260 if (else_stmt
1261 && TREE_CODE (else_stmt) == MODIFY_EXPR
1262 && TREE_OPERAND (else_stmt, 0) == cond
1263 && integer_zerop (TREE_OPERAND (else_stmt, 1)))
1264 COND_EXPR_ELSE (*stmt_p) = alloc_stmt_list ();
1266 else if ((TREE_CODE (cond) == EQ_EXPR || TREE_CODE (cond) == NE_EXPR)
1267 && (TREE_CODE (TREE_OPERAND (cond, 0)) == VAR_DECL
1268 || TREE_CODE (TREE_OPERAND (cond, 0)) == PARM_DECL)
1269 && TREE_CONSTANT (TREE_OPERAND (cond, 1)))
1271 tree stmt = (TREE_CODE (cond) == EQ_EXPR
1272 ? then_stmt : else_stmt);
1273 tree *location = (TREE_CODE (cond) == EQ_EXPR
1274 ? &COND_EXPR_THEN (*stmt_p)
1275 : &COND_EXPR_ELSE (*stmt_p));
1277 if (stmt
1278 && TREE_CODE (stmt) == MODIFY_EXPR
1279 && TREE_OPERAND (stmt, 0) == TREE_OPERAND (cond, 0)
1280 && TREE_OPERAND (stmt, 1) == TREE_OPERAND (cond, 1))
1281 *location = alloc_stmt_list ();
1285 /* Protect GOTOs in the arm of COND_EXPRs from being removed. They
1286 would be re-introduced during lowering. */
1287 data->last_goto = NULL;
1291 static void
1292 remove_useless_stmts_tf (tree *stmt_p, struct rus_data *data)
1294 bool save_may_branch, save_may_throw;
1295 bool this_may_branch, this_may_throw;
1297 /* Collect may_branch and may_throw information for the body only. */
1298 save_may_branch = data->may_branch;
1299 save_may_throw = data->may_throw;
1300 data->may_branch = false;
1301 data->may_throw = false;
1302 data->last_goto = NULL;
1304 remove_useless_stmts_1 (&TREE_OPERAND (*stmt_p, 0), data);
1306 this_may_branch = data->may_branch;
1307 this_may_throw = data->may_throw;
1308 data->may_branch |= save_may_branch;
1309 data->may_throw |= save_may_throw;
1310 data->last_goto = NULL;
1312 remove_useless_stmts_1 (&TREE_OPERAND (*stmt_p, 1), data);
1314 /* If the body is empty, then we can emit the FINALLY block without
1315 the enclosing TRY_FINALLY_EXPR. */
1316 if (!TREE_SIDE_EFFECTS (TREE_OPERAND (*stmt_p, 0)))
1318 *stmt_p = TREE_OPERAND (*stmt_p, 1);
1319 data->repeat = true;
1322 /* If the handler is empty, then we can emit the TRY block without
1323 the enclosing TRY_FINALLY_EXPR. */
1324 else if (!TREE_SIDE_EFFECTS (TREE_OPERAND (*stmt_p, 1)))
1326 *stmt_p = TREE_OPERAND (*stmt_p, 0);
1327 data->repeat = true;
1330 /* If the body neither throws, nor branches, then we can safely
1331 string the TRY and FINALLY blocks together. */
1332 else if (!this_may_branch && !this_may_throw)
1334 tree stmt = *stmt_p;
1335 *stmt_p = TREE_OPERAND (stmt, 0);
1336 append_to_statement_list (TREE_OPERAND (stmt, 1), stmt_p);
1337 data->repeat = true;
1342 static void
1343 remove_useless_stmts_tc (tree *stmt_p, struct rus_data *data)
1345 bool save_may_throw, this_may_throw;
1346 tree_stmt_iterator i;
1347 tree stmt;
1349 /* Collect may_throw information for the body only. */
1350 save_may_throw = data->may_throw;
1351 data->may_throw = false;
1352 data->last_goto = NULL;
1354 remove_useless_stmts_1 (&TREE_OPERAND (*stmt_p, 0), data);
1356 this_may_throw = data->may_throw;
1357 data->may_throw = save_may_throw;
1359 /* If the body cannot throw, then we can drop the entire TRY_CATCH_EXPR. */
1360 if (!this_may_throw)
1362 if (warn_notreached)
1363 remove_useless_stmts_warn_notreached (TREE_OPERAND (*stmt_p, 1));
1364 *stmt_p = TREE_OPERAND (*stmt_p, 0);
1365 data->repeat = true;
1366 return;
1369 /* Process the catch clause specially. We may be able to tell that
1370 no exceptions propagate past this point. */
1372 this_may_throw = true;
1373 i = tsi_start (TREE_OPERAND (*stmt_p, 1));
1374 stmt = tsi_stmt (i);
1375 data->last_goto = NULL;
1377 switch (TREE_CODE (stmt))
1379 case CATCH_EXPR:
1380 for (; !tsi_end_p (i); tsi_next (&i))
1382 stmt = tsi_stmt (i);
1383 /* If we catch all exceptions, then the body does not
1384 propagate exceptions past this point. */
1385 if (CATCH_TYPES (stmt) == NULL)
1386 this_may_throw = false;
1387 data->last_goto = NULL;
1388 remove_useless_stmts_1 (&CATCH_BODY (stmt), data);
1390 break;
1392 case EH_FILTER_EXPR:
1393 if (EH_FILTER_MUST_NOT_THROW (stmt))
1394 this_may_throw = false;
1395 else if (EH_FILTER_TYPES (stmt) == NULL)
1396 this_may_throw = false;
1397 remove_useless_stmts_1 (&EH_FILTER_FAILURE (stmt), data);
1398 break;
1400 default:
1401 /* Otherwise this is a cleanup. */
1402 remove_useless_stmts_1 (&TREE_OPERAND (*stmt_p, 1), data);
1404 /* If the cleanup is empty, then we can emit the TRY block without
1405 the enclosing TRY_CATCH_EXPR. */
1406 if (!TREE_SIDE_EFFECTS (TREE_OPERAND (*stmt_p, 1)))
1408 *stmt_p = TREE_OPERAND (*stmt_p, 0);
1409 data->repeat = true;
1411 break;
1413 data->may_throw |= this_may_throw;
1417 static void
1418 remove_useless_stmts_bind (tree *stmt_p, struct rus_data *data)
1420 tree block;
1422 /* First remove anything underneath the BIND_EXPR. */
1423 remove_useless_stmts_1 (&BIND_EXPR_BODY (*stmt_p), data);
1425 /* If the BIND_EXPR has no variables, then we can pull everything
1426 up one level and remove the BIND_EXPR, unless this is the toplevel
1427 BIND_EXPR for the current function or an inlined function.
1429 When this situation occurs we will want to apply this
1430 optimization again. */
1431 block = BIND_EXPR_BLOCK (*stmt_p);
1432 if (BIND_EXPR_VARS (*stmt_p) == NULL_TREE
1433 && *stmt_p != DECL_SAVED_TREE (current_function_decl)
1434 && (! block
1435 || ! BLOCK_ABSTRACT_ORIGIN (block)
1436 || (TREE_CODE (BLOCK_ABSTRACT_ORIGIN (block))
1437 != FUNCTION_DECL)))
1439 *stmt_p = BIND_EXPR_BODY (*stmt_p);
1440 data->repeat = true;
1445 static void
1446 remove_useless_stmts_goto (tree *stmt_p, struct rus_data *data)
1448 tree dest = GOTO_DESTINATION (*stmt_p);
1450 data->may_branch = true;
1451 data->last_goto = NULL;
1453 /* Record the last goto expr, so that we can delete it if unnecessary. */
1454 if (TREE_CODE (dest) == LABEL_DECL)
1455 data->last_goto = stmt_p;
1459 static void
1460 remove_useless_stmts_label (tree *stmt_p, struct rus_data *data)
1462 tree label = LABEL_EXPR_LABEL (*stmt_p);
1464 data->has_label = true;
1466 /* We do want to jump across non-local label receiver code. */
1467 if (DECL_NONLOCAL (label))
1468 data->last_goto = NULL;
1470 else if (data->last_goto && GOTO_DESTINATION (*data->last_goto) == label)
1472 *data->last_goto = build_empty_stmt ();
1473 data->repeat = true;
1476 /* ??? Add something here to delete unused labels. */
1480 /* If the function is "const" or "pure", then clear TREE_SIDE_EFFECTS on its
1481 decl. This allows us to eliminate redundant or useless
1482 calls to "const" functions.
1484 Gimplifier already does the same operation, but we may notice functions
1485 being const and pure once their calls has been gimplified, so we need
1486 to update the flag. */
1488 static void
1489 update_call_expr_flags (tree call)
1491 tree decl = get_callee_fndecl (call);
1492 if (!decl)
1493 return;
1494 if (call_expr_flags (call) & (ECF_CONST | ECF_PURE))
1495 TREE_SIDE_EFFECTS (call) = 0;
1496 if (TREE_NOTHROW (decl))
1497 TREE_NOTHROW (call) = 1;
1501 /* T is CALL_EXPR. Set current_function_calls_* flags. */
1503 void
1504 notice_special_calls (tree t)
1506 int flags = call_expr_flags (t);
1508 if (flags & ECF_MAY_BE_ALLOCA)
1509 current_function_calls_alloca = true;
1510 if (flags & ECF_RETURNS_TWICE)
1511 current_function_calls_setjmp = true;
1515 /* Clear flags set by notice_special_calls. Used by dead code removal
1516 to update the flags. */
1518 void
1519 clear_special_calls (void)
1521 current_function_calls_alloca = false;
1522 current_function_calls_setjmp = false;
1526 static void
1527 remove_useless_stmts_1 (tree *tp, struct rus_data *data)
1529 tree t = *tp, op;
1531 switch (TREE_CODE (t))
1533 case COND_EXPR:
1534 remove_useless_stmts_cond (tp, data);
1535 break;
1537 case TRY_FINALLY_EXPR:
1538 remove_useless_stmts_tf (tp, data);
1539 break;
1541 case TRY_CATCH_EXPR:
1542 remove_useless_stmts_tc (tp, data);
1543 break;
1545 case BIND_EXPR:
1546 remove_useless_stmts_bind (tp, data);
1547 break;
1549 case GOTO_EXPR:
1550 remove_useless_stmts_goto (tp, data);
1551 break;
1553 case LABEL_EXPR:
1554 remove_useless_stmts_label (tp, data);
1555 break;
1557 case RETURN_EXPR:
1558 fold_stmt (tp);
1559 data->last_goto = NULL;
1560 data->may_branch = true;
1561 break;
1563 case CALL_EXPR:
1564 fold_stmt (tp);
1565 data->last_goto = NULL;
1566 notice_special_calls (t);
1567 update_call_expr_flags (t);
1568 if (tree_could_throw_p (t))
1569 data->may_throw = true;
1570 break;
1572 case MODIFY_EXPR:
1573 data->last_goto = NULL;
1574 fold_stmt (tp);
1575 op = get_call_expr_in (t);
1576 if (op)
1578 update_call_expr_flags (op);
1579 notice_special_calls (op);
1581 if (tree_could_throw_p (t))
1582 data->may_throw = true;
1583 break;
1585 case STATEMENT_LIST:
1587 tree_stmt_iterator i = tsi_start (t);
1588 while (!tsi_end_p (i))
1590 t = tsi_stmt (i);
1591 if (IS_EMPTY_STMT (t))
1593 tsi_delink (&i);
1594 continue;
1597 remove_useless_stmts_1 (tsi_stmt_ptr (i), data);
1599 t = tsi_stmt (i);
1600 if (TREE_CODE (t) == STATEMENT_LIST)
1602 tsi_link_before (&i, t, TSI_SAME_STMT);
1603 tsi_delink (&i);
1605 else
1606 tsi_next (&i);
1609 break;
1610 case SWITCH_EXPR:
1611 fold_stmt (tp);
1612 data->last_goto = NULL;
1613 break;
1615 default:
1616 data->last_goto = NULL;
1617 break;
1621 static void
1622 remove_useless_stmts (void)
1624 struct rus_data data;
1626 clear_special_calls ();
1630 memset (&data, 0, sizeof (data));
1631 remove_useless_stmts_1 (&DECL_SAVED_TREE (current_function_decl), &data);
1633 while (data.repeat);
1637 struct tree_opt_pass pass_remove_useless_stmts =
1639 "useless", /* name */
1640 NULL, /* gate */
1641 remove_useless_stmts, /* execute */
1642 NULL, /* sub */
1643 NULL, /* next */
1644 0, /* static_pass_number */
1645 0, /* tv_id */
1646 PROP_gimple_any, /* properties_required */
1647 0, /* properties_provided */
1648 0, /* properties_destroyed */
1649 0, /* todo_flags_start */
1650 TODO_dump_func /* todo_flags_finish */
1654 /* Remove obviously useless statements in basic block BB. */
1656 static void
1657 cfg_remove_useless_stmts_bb (basic_block bb)
1659 block_stmt_iterator bsi;
1660 tree stmt = NULL_TREE;
1661 tree cond, var = NULL_TREE, val = NULL_TREE;
1662 struct var_ann_d *ann;
1664 /* Check whether we come here from a condition, and if so, get the
1665 condition. */
1666 if (!bb->pred
1667 || bb->pred->pred_next
1668 || !(bb->pred->flags & (EDGE_TRUE_VALUE | EDGE_FALSE_VALUE)))
1669 return;
1671 cond = COND_EXPR_COND (last_stmt (bb->pred->src));
1673 if (TREE_CODE (cond) == VAR_DECL || TREE_CODE (cond) == PARM_DECL)
1675 var = cond;
1676 val = (bb->pred->flags & EDGE_FALSE_VALUE
1677 ? boolean_false_node : boolean_true_node);
1679 else if (TREE_CODE (cond) == TRUTH_NOT_EXPR
1680 && (TREE_CODE (TREE_OPERAND (cond, 0)) == VAR_DECL
1681 || TREE_CODE (TREE_OPERAND (cond, 0)) == PARM_DECL))
1683 var = TREE_OPERAND (cond, 0);
1684 val = (bb->pred->flags & EDGE_FALSE_VALUE
1685 ? boolean_true_node : boolean_false_node);
1687 else
1689 if (bb->pred->flags & EDGE_FALSE_VALUE)
1690 cond = invert_truthvalue (cond);
1691 if (TREE_CODE (cond) == EQ_EXPR
1692 && (TREE_CODE (TREE_OPERAND (cond, 0)) == VAR_DECL
1693 || TREE_CODE (TREE_OPERAND (cond, 0)) == PARM_DECL)
1694 && (TREE_CODE (TREE_OPERAND (cond, 1)) == VAR_DECL
1695 || TREE_CODE (TREE_OPERAND (cond, 1)) == PARM_DECL
1696 || TREE_CONSTANT (TREE_OPERAND (cond, 1))))
1698 var = TREE_OPERAND (cond, 0);
1699 val = TREE_OPERAND (cond, 1);
1701 else
1702 return;
1705 /* Only work for normal local variables. */
1706 ann = var_ann (var);
1707 if (!ann
1708 || ann->may_aliases
1709 || TREE_ADDRESSABLE (var))
1710 return;
1712 if (! TREE_CONSTANT (val))
1714 ann = var_ann (val);
1715 if (!ann
1716 || ann->may_aliases
1717 || TREE_ADDRESSABLE (val))
1718 return;
1721 /* Ignore floating point variables, since comparison behaves weird for
1722 them. */
1723 if (FLOAT_TYPE_P (TREE_TYPE (var)))
1724 return;
1726 for (bsi = bsi_start (bb); !bsi_end_p (bsi);)
1728 stmt = bsi_stmt (bsi);
1730 /* If the THEN/ELSE clause merely assigns a value to a variable/parameter
1731 which is already known to contain that value, then remove the useless
1732 THEN/ELSE clause. */
1733 if (TREE_CODE (stmt) == MODIFY_EXPR
1734 && TREE_OPERAND (stmt, 0) == var
1735 && operand_equal_p (val, TREE_OPERAND (stmt, 1), 0))
1737 bsi_remove (&bsi);
1738 continue;
1741 /* Invalidate the var if we encounter something that could modify it. */
1742 if (TREE_CODE (stmt) == ASM_EXPR
1743 || (TREE_CODE (stmt) == MODIFY_EXPR
1744 && TREE_OPERAND (stmt, 0) == var))
1745 return;
1747 bsi_next (&bsi);
1752 /* A CFG-aware version of remove_useless_stmts. */
1754 void
1755 cfg_remove_useless_stmts (void)
1757 basic_block bb;
1759 #ifdef ENABLE_CHECKING
1760 verify_flow_info ();
1761 #endif
1763 FOR_EACH_BB (bb)
1765 cfg_remove_useless_stmts_bb (bb);
1770 /* Remove PHI nodes associated with basic block BB and all edges out of BB. */
1772 static void
1773 remove_phi_nodes_and_edges_for_unreachable_block (basic_block bb)
1775 tree phi;
1777 /* Since this block is no longer reachable, we can just delete all
1778 of its PHI nodes. */
1779 phi = phi_nodes (bb);
1780 while (phi)
1782 tree next = PHI_CHAIN (phi);
1783 remove_phi_node (phi, NULL_TREE, bb);
1784 phi = next;
1787 /* Remove edges to BB's successors. */
1788 while (bb->succ != NULL)
1789 ssa_remove_edge (bb->succ);
1793 /* Remove statements of basic block BB. */
1795 static void
1796 remove_bb (basic_block bb)
1798 block_stmt_iterator i;
1799 source_locus loc = 0;
1801 if (dump_file)
1803 fprintf (dump_file, "Removing basic block %d\n", bb->index);
1804 if (dump_flags & TDF_DETAILS)
1806 dump_bb (bb, dump_file, 0);
1807 fprintf (dump_file, "\n");
1811 /* Remove all the instructions in the block. */
1812 for (i = bsi_start (bb); !bsi_end_p (i); bsi_remove (&i))
1814 tree stmt = bsi_stmt (i);
1816 set_bb_for_stmt (stmt, NULL);
1818 /* Don't warn for removed gotos. Gotos are often removed due to
1819 jump threading, thus resulting in bogus warnings. Not great,
1820 since this way we lose warnings for gotos in the original
1821 program that are indeed unreachable. */
1822 if (TREE_CODE (stmt) != GOTO_EXPR && EXPR_HAS_LOCATION (stmt) && !loc)
1823 #ifdef USE_MAPPED_LOCATION
1824 loc = EXPR_LOCATION (stmt);
1825 #else
1826 loc = EXPR_LOCUS (stmt);
1827 #endif
1830 /* If requested, give a warning that the first statement in the
1831 block is unreachable. We walk statements backwards in the
1832 loop above, so the last statement we process is the first statement
1833 in the block. */
1834 if (warn_notreached && loc)
1835 #ifdef USE_MAPPED_LOCATION
1836 warning ("%Hwill never be executed", &loc);
1837 #else
1838 warning ("%Hwill never be executed", loc);
1839 #endif
1841 remove_phi_nodes_and_edges_for_unreachable_block (bb);
1845 /* Examine BB to determine if it is a forwarding block (a block which only
1846 transfers control to a new destination). If BB is a forwarding block,
1847 then return the edge leading to the ultimate destination. */
1849 edge
1850 tree_block_forwards_to (basic_block bb)
1852 block_stmt_iterator bsi;
1853 bb_ann_t ann = bb_ann (bb);
1854 tree stmt;
1856 /* If this block is not forwardable, then avoid useless work. */
1857 if (! ann->forwardable)
1858 return NULL;
1860 /* Set this block to not be forwardable. This prevents infinite loops since
1861 any block currently under examination is considered non-forwardable. */
1862 ann->forwardable = 0;
1864 /* No forwarding is possible if this block is a special block (ENTRY/EXIT),
1865 this block has more than one successor, this block's single successor is
1866 reached via an abnormal edge, this block has phi nodes, or this block's
1867 single successor has phi nodes. */
1868 if (bb == EXIT_BLOCK_PTR
1869 || bb == ENTRY_BLOCK_PTR
1870 || !bb->succ
1871 || bb->succ->succ_next
1872 || bb->succ->dest == EXIT_BLOCK_PTR
1873 || (bb->succ->flags & EDGE_ABNORMAL) != 0
1874 || phi_nodes (bb)
1875 || phi_nodes (bb->succ->dest))
1876 return NULL;
1878 /* Walk past any labels at the start of this block. */
1879 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
1881 stmt = bsi_stmt (bsi);
1882 if (TREE_CODE (stmt) != LABEL_EXPR)
1883 break;
1886 /* If we reached the end of this block we may be able to optimize this
1887 case. */
1888 if (bsi_end_p (bsi))
1890 edge dest;
1892 /* Recursive call to pick up chains of forwarding blocks. */
1893 dest = tree_block_forwards_to (bb->succ->dest);
1895 /* If none found, we forward to bb->succ at minimum. */
1896 if (!dest)
1897 dest = bb->succ;
1899 ann->forwardable = 1;
1900 return dest;
1903 /* No forwarding possible. */
1904 return NULL;
1908 /* Try to remove superfluous control structures. */
1910 static bool
1911 cleanup_control_flow (void)
1913 basic_block bb;
1914 block_stmt_iterator bsi;
1915 bool retval = false;
1916 tree stmt;
1918 FOR_EACH_BB (bb)
1920 bsi = bsi_last (bb);
1922 if (bsi_end_p (bsi))
1923 continue;
1925 stmt = bsi_stmt (bsi);
1926 if (TREE_CODE (stmt) == COND_EXPR
1927 || TREE_CODE (stmt) == SWITCH_EXPR)
1928 retval |= cleanup_control_expr_graph (bb, bsi);
1930 return retval;
1934 /* Disconnect an unreachable block in the control expression starting
1935 at block BB. */
1937 static bool
1938 cleanup_control_expr_graph (basic_block bb, block_stmt_iterator bsi)
1940 edge taken_edge;
1941 bool retval = false;
1942 tree expr = bsi_stmt (bsi), val;
1944 if (bb->succ->succ_next)
1946 edge e, next;
1948 switch (TREE_CODE (expr))
1950 case COND_EXPR:
1951 val = COND_EXPR_COND (expr);
1952 break;
1954 case SWITCH_EXPR:
1955 val = SWITCH_COND (expr);
1956 if (TREE_CODE (val) != INTEGER_CST)
1957 return false;
1958 break;
1960 default:
1961 abort ();
1964 taken_edge = find_taken_edge (bb, val);
1965 if (!taken_edge)
1966 return false;
1968 /* Remove all the edges except the one that is always executed. */
1969 for (e = bb->succ; e; e = next)
1971 next = e->succ_next;
1972 if (e != taken_edge)
1974 taken_edge->probability += e->probability;
1975 taken_edge->count += e->count;
1976 ssa_remove_edge (e);
1977 retval = true;
1980 if (taken_edge->probability > REG_BR_PROB_BASE)
1981 taken_edge->probability = REG_BR_PROB_BASE;
1983 else
1984 taken_edge = bb->succ;
1986 bsi_remove (&bsi);
1987 taken_edge->flags = EDGE_FALLTHRU;
1989 /* We removed some paths from the cfg. */
1990 if (dom_computed[CDI_DOMINATORS] >= DOM_CONS_OK)
1991 dom_computed[CDI_DOMINATORS] = DOM_CONS_OK;
1993 return retval;
1997 /* Given a control block BB and a predicate VAL, return the edge that
1998 will be taken out of the block. If VAL does not match a unique
1999 edge, NULL is returned. */
2001 edge
2002 find_taken_edge (basic_block bb, tree val)
2004 tree stmt;
2006 stmt = last_stmt (bb);
2008 #if defined ENABLE_CHECKING
2009 if (stmt == NULL_TREE || !is_ctrl_stmt (stmt))
2010 abort ();
2011 #endif
2013 /* If VAL is a predicate of the form N RELOP N, where N is an
2014 SSA_NAME, we can always determine its truth value (except when
2015 doing floating point comparisons that may involve NaNs). */
2016 if (val
2017 && TREE_CODE_CLASS (TREE_CODE (val)) == '<'
2018 && TREE_OPERAND (val, 0) == TREE_OPERAND (val, 1)
2019 && TREE_CODE (TREE_OPERAND (val, 0)) == SSA_NAME
2020 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (val, 0))) != REAL_TYPE
2021 || !HONOR_NANS (TYPE_MODE (TREE_TYPE (TREE_OPERAND (val, 0))))))
2023 enum tree_code code = TREE_CODE (val);
2025 if (code == EQ_EXPR || code == LE_EXPR || code == GE_EXPR)
2026 val = boolean_true_node;
2027 else if (code == LT_EXPR || code == GT_EXPR || code == NE_EXPR)
2028 val = boolean_false_node;
2031 /* If VAL is not a constant, we can't determine which edge might
2032 be taken. */
2033 if (val == NULL || !really_constant_p (val))
2034 return NULL;
2036 if (TREE_CODE (stmt) == COND_EXPR)
2037 return find_taken_edge_cond_expr (bb, val);
2039 if (TREE_CODE (stmt) == SWITCH_EXPR)
2040 return find_taken_edge_switch_expr (bb, val);
2042 return bb->succ;
2046 /* Given a constant value VAL and the entry block BB to a COND_EXPR
2047 statement, determine which of the two edges will be taken out of the
2048 block. Return NULL if either edge may be taken. */
2050 static edge
2051 find_taken_edge_cond_expr (basic_block bb, tree val)
2053 edge true_edge, false_edge;
2055 extract_true_false_edges_from_block (bb, &true_edge, &false_edge);
2057 /* If both edges of the branch lead to the same basic block, it doesn't
2058 matter which edge is taken. */
2059 if (true_edge->dest == false_edge->dest)
2060 return true_edge;
2062 /* Otherwise, try to determine which branch of the if() will be taken.
2063 If VAL is a constant but it can't be reduced to a 0 or a 1, then
2064 we don't really know which edge will be taken at runtime. This
2065 may happen when comparing addresses (e.g., if (&var1 == 4)). */
2066 if (integer_nonzerop (val))
2067 return true_edge;
2068 else if (integer_zerop (val))
2069 return false_edge;
2070 else
2071 return NULL;
2075 /* Given a constant value VAL and the entry block BB to a SWITCH_EXPR
2076 statement, determine which edge will be taken out of the block. Return
2077 NULL if any edge may be taken. */
2079 static edge
2080 find_taken_edge_switch_expr (basic_block bb, tree val)
2082 tree switch_expr, taken_case;
2083 basic_block dest_bb;
2084 edge e;
2086 if (TREE_CODE (val) != INTEGER_CST)
2087 return NULL;
2089 switch_expr = last_stmt (bb);
2090 taken_case = find_case_label_for_value (switch_expr, val);
2091 dest_bb = label_to_block (CASE_LABEL (taken_case));
2093 e = find_edge (bb, dest_bb);
2094 if (!e)
2095 abort ();
2096 return e;
2100 /* Return the CASE_LABEL_EXPR that SWITCH_EXPR will take for VAL.
2101 We can make optimal use here of the fact that the case labels are
2102 sorted: We can do a binary search for a case matching VAL. */
2104 static tree
2105 find_case_label_for_value (tree switch_expr, tree val)
2107 tree vec = SWITCH_LABELS (switch_expr);
2108 size_t low, high, n = TREE_VEC_LENGTH (vec);
2109 tree default_case = TREE_VEC_ELT (vec, n - 1);
2111 for (low = -1, high = n - 1; high - low > 1; )
2113 size_t i = (high + low) / 2;
2114 tree t = TREE_VEC_ELT (vec, i);
2115 int cmp;
2117 /* Cache the result of comparing CASE_LOW and val. */
2118 cmp = tree_int_cst_compare (CASE_LOW (t), val);
2120 if (cmp > 0)
2121 high = i;
2122 else
2123 low = i;
2125 if (CASE_HIGH (t) == NULL)
2127 /* A singe-valued case label. */
2128 if (cmp == 0)
2129 return t;
2131 else
2133 /* A case range. We can only handle integer ranges. */
2134 if (cmp <= 0 && tree_int_cst_compare (CASE_HIGH (t), val) >= 0)
2135 return t;
2139 return default_case;
2143 /* If all the PHI nodes in DEST have alternatives for E1 and E2 and
2144 those alternatives are equal in each of the PHI nodes, then return
2145 true, else return false. */
2147 static bool
2148 phi_alternatives_equal (basic_block dest, edge e1, edge e2)
2150 tree phi, val1, val2;
2151 int n1, n2;
2153 for (phi = phi_nodes (dest); phi; phi = PHI_CHAIN (phi))
2155 n1 = phi_arg_from_edge (phi, e1);
2156 n2 = phi_arg_from_edge (phi, e2);
2158 #ifdef ENABLE_CHECKING
2159 if (n1 < 0 || n2 < 0)
2160 abort ();
2161 #endif
2163 val1 = PHI_ARG_DEF (phi, n1);
2164 val2 = PHI_ARG_DEF (phi, n2);
2166 if (!operand_equal_p (val1, val2, 0))
2167 return false;
2170 return true;
2174 /*---------------------------------------------------------------------------
2175 Debugging functions
2176 ---------------------------------------------------------------------------*/
2178 /* Dump tree-specific information of block BB to file OUTF. */
2180 void
2181 tree_dump_bb (basic_block bb, FILE *outf, int indent)
2183 dump_generic_bb (outf, bb, indent, TDF_VOPS);
2187 /* Dump a basic block on stderr. */
2189 void
2190 debug_tree_bb (basic_block bb)
2192 dump_bb (bb, stderr, 0);
2196 /* Dump basic block with index N on stderr. */
2198 basic_block
2199 debug_tree_bb_n (int n)
2201 debug_tree_bb (BASIC_BLOCK (n));
2202 return BASIC_BLOCK (n);
2206 /* Dump the CFG on stderr.
2208 FLAGS are the same used by the tree dumping functions
2209 (see TDF_* in tree.h). */
2211 void
2212 debug_tree_cfg (int flags)
2214 dump_tree_cfg (stderr, flags);
2218 /* Dump the program showing basic block boundaries on the given FILE.
2220 FLAGS are the same used by the tree dumping functions (see TDF_* in
2221 tree.h). */
2223 void
2224 dump_tree_cfg (FILE *file, int flags)
2226 if (flags & TDF_DETAILS)
2228 const char *funcname
2229 = lang_hooks.decl_printable_name (current_function_decl, 2);
2231 fputc ('\n', file);
2232 fprintf (file, ";; Function %s\n\n", funcname);
2233 fprintf (file, ";; \n%d basic blocks, %d edges, last basic block %d.\n\n",
2234 n_basic_blocks, n_edges, last_basic_block);
2236 brief_dump_cfg (file);
2237 fprintf (file, "\n");
2240 if (flags & TDF_STATS)
2241 dump_cfg_stats (file);
2243 dump_function_to_file (current_function_decl, file, flags | TDF_BLOCKS);
2247 /* Dump CFG statistics on FILE. */
2249 void
2250 dump_cfg_stats (FILE *file)
2252 static long max_num_merged_labels = 0;
2253 unsigned long size, total = 0;
2254 int n_edges;
2255 basic_block bb;
2256 const char * const fmt_str = "%-30s%-13s%12s\n";
2257 const char * const fmt_str_1 = "%-30s%13d%11lu%c\n";
2258 const char * const fmt_str_3 = "%-43s%11lu%c\n";
2259 const char *funcname
2260 = lang_hooks.decl_printable_name (current_function_decl, 2);
2263 fprintf (file, "\nCFG Statistics for %s\n\n", funcname);
2265 fprintf (file, "---------------------------------------------------------\n");
2266 fprintf (file, fmt_str, "", " Number of ", "Memory");
2267 fprintf (file, fmt_str, "", " instances ", "used ");
2268 fprintf (file, "---------------------------------------------------------\n");
2270 size = n_basic_blocks * sizeof (struct basic_block_def);
2271 total += size;
2272 fprintf (file, fmt_str_1, "Basic blocks", n_basic_blocks,
2273 SCALE (size), LABEL (size));
2275 n_edges = 0;
2276 FOR_EACH_BB (bb)
2278 edge e;
2279 for (e = bb->succ; e; e = e->succ_next)
2280 n_edges++;
2282 size = n_edges * sizeof (struct edge_def);
2283 total += size;
2284 fprintf (file, fmt_str_1, "Edges", n_edges, SCALE (size), LABEL (size));
2286 size = n_basic_blocks * sizeof (struct bb_ann_d);
2287 total += size;
2288 fprintf (file, fmt_str_1, "Basic block annotations", n_basic_blocks,
2289 SCALE (size), LABEL (size));
2291 fprintf (file, "---------------------------------------------------------\n");
2292 fprintf (file, fmt_str_3, "Total memory used by CFG data", SCALE (total),
2293 LABEL (total));
2294 fprintf (file, "---------------------------------------------------------\n");
2295 fprintf (file, "\n");
2297 if (cfg_stats.num_merged_labels > max_num_merged_labels)
2298 max_num_merged_labels = cfg_stats.num_merged_labels;
2300 fprintf (file, "Coalesced label blocks: %ld (Max so far: %ld)\n",
2301 cfg_stats.num_merged_labels, max_num_merged_labels);
2303 fprintf (file, "\n");
2307 /* Dump CFG statistics on stderr. Keep extern so that it's always
2308 linked in the final executable. */
2310 void
2311 debug_cfg_stats (void)
2313 dump_cfg_stats (stderr);
2317 /* Dump the flowgraph to a .vcg FILE. */
2319 static void
2320 tree_cfg2vcg (FILE *file)
2322 edge e;
2323 basic_block bb;
2324 const char *funcname
2325 = lang_hooks.decl_printable_name (current_function_decl, 2);
2327 /* Write the file header. */
2328 fprintf (file, "graph: { title: \"%s\"\n", funcname);
2329 fprintf (file, "node: { title: \"ENTRY\" label: \"ENTRY\" }\n");
2330 fprintf (file, "node: { title: \"EXIT\" label: \"EXIT\" }\n");
2332 /* Write blocks and edges. */
2333 for (e = ENTRY_BLOCK_PTR->succ; e; e = e->succ_next)
2335 fprintf (file, "edge: { sourcename: \"ENTRY\" targetname: \"%d\"",
2336 e->dest->index);
2338 if (e->flags & EDGE_FAKE)
2339 fprintf (file, " linestyle: dotted priority: 10");
2340 else
2341 fprintf (file, " linestyle: solid priority: 100");
2343 fprintf (file, " }\n");
2345 fputc ('\n', file);
2347 FOR_EACH_BB (bb)
2349 enum tree_code head_code, end_code;
2350 const char *head_name, *end_name;
2351 int head_line = 0;
2352 int end_line = 0;
2353 tree first = first_stmt (bb);
2354 tree last = last_stmt (bb);
2356 if (first)
2358 head_code = TREE_CODE (first);
2359 head_name = tree_code_name[head_code];
2360 head_line = get_lineno (first);
2362 else
2363 head_name = "no-statement";
2365 if (last)
2367 end_code = TREE_CODE (last);
2368 end_name = tree_code_name[end_code];
2369 end_line = get_lineno (last);
2371 else
2372 end_name = "no-statement";
2374 fprintf (file, "node: { title: \"%d\" label: \"#%d\\n%s (%d)\\n%s (%d)\"}\n",
2375 bb->index, bb->index, head_name, head_line, end_name,
2376 end_line);
2378 for (e = bb->succ; e; e = e->succ_next)
2380 if (e->dest == EXIT_BLOCK_PTR)
2381 fprintf (file, "edge: { sourcename: \"%d\" targetname: \"EXIT\"", bb->index);
2382 else
2383 fprintf (file, "edge: { sourcename: \"%d\" targetname: \"%d\"", bb->index, e->dest->index);
2385 if (e->flags & EDGE_FAKE)
2386 fprintf (file, " priority: 10 linestyle: dotted");
2387 else
2388 fprintf (file, " priority: 100 linestyle: solid");
2390 fprintf (file, " }\n");
2393 if (bb->next_bb != EXIT_BLOCK_PTR)
2394 fputc ('\n', file);
2397 fputs ("}\n\n", file);
2402 /*---------------------------------------------------------------------------
2403 Miscellaneous helpers
2404 ---------------------------------------------------------------------------*/
2406 /* Return true if T represents a stmt that always transfers control. */
2408 bool
2409 is_ctrl_stmt (tree t)
2411 return (TREE_CODE (t) == COND_EXPR
2412 || TREE_CODE (t) == SWITCH_EXPR
2413 || TREE_CODE (t) == GOTO_EXPR
2414 || TREE_CODE (t) == RETURN_EXPR
2415 || TREE_CODE (t) == RESX_EXPR);
2419 /* Return true if T is a statement that may alter the flow of control
2420 (e.g., a call to a non-returning function). */
2422 bool
2423 is_ctrl_altering_stmt (tree t)
2425 tree call;
2427 #if defined ENABLE_CHECKING
2428 if (t == NULL)
2429 abort ();
2430 #endif
2432 call = get_call_expr_in (t);
2433 if (call)
2435 /* A non-pure/const CALL_EXPR alters flow control if the current
2436 function has nonlocal labels. */
2437 if (TREE_SIDE_EFFECTS (call) && current_function_has_nonlocal_label)
2438 return true;
2440 /* A CALL_EXPR also alters control flow if it does not return. */
2441 if (call_expr_flags (call) & (ECF_NORETURN | ECF_LONGJMP))
2442 return true;
2445 /* If a statement can throw, it alters control flow. */
2446 return tree_can_throw_internal (t);
2450 /* Return true if T is a computed goto. */
2452 bool
2453 computed_goto_p (tree t)
2455 return (TREE_CODE (t) == GOTO_EXPR
2456 && TREE_CODE (GOTO_DESTINATION (t)) != LABEL_DECL);
2460 /* Checks whether EXPR is a simple local goto. */
2462 bool
2463 simple_goto_p (tree expr)
2465 return (TREE_CODE (expr) == GOTO_EXPR
2466 && TREE_CODE (GOTO_DESTINATION (expr)) == LABEL_DECL);
2470 /* Return true if T should start a new basic block. PREV_T is the
2471 statement preceding T. It is used when T is a label or a case label.
2472 Labels should only start a new basic block if their previous statement
2473 wasn't a label. Otherwise, sequence of labels would generate
2474 unnecessary basic blocks that only contain a single label. */
2476 static inline bool
2477 stmt_starts_bb_p (tree t, tree prev_t)
2479 enum tree_code code;
2481 if (t == NULL_TREE)
2482 return false;
2484 /* LABEL_EXPRs start a new basic block only if the preceding
2485 statement wasn't a label of the same type. This prevents the
2486 creation of consecutive blocks that have nothing but a single
2487 label. */
2488 code = TREE_CODE (t);
2489 if (code == LABEL_EXPR)
2491 /* Nonlocal and computed GOTO targets always start a new block. */
2492 if (code == LABEL_EXPR
2493 && (DECL_NONLOCAL (LABEL_EXPR_LABEL (t))
2494 || FORCED_LABEL (LABEL_EXPR_LABEL (t))))
2495 return true;
2497 if (prev_t && TREE_CODE (prev_t) == code)
2499 if (DECL_NONLOCAL (LABEL_EXPR_LABEL (prev_t)))
2500 return true;
2502 cfg_stats.num_merged_labels++;
2503 return false;
2505 else
2506 return true;
2509 return false;
2513 /* Return true if T should end a basic block. */
2515 bool
2516 stmt_ends_bb_p (tree t)
2518 return is_ctrl_stmt (t) || is_ctrl_altering_stmt (t);
2522 /* Add gotos that used to be represented implicitly in the CFG. */
2524 void
2525 disband_implicit_edges (void)
2527 basic_block bb;
2528 block_stmt_iterator last;
2529 edge e;
2530 tree stmt, label;
2532 FOR_EACH_BB (bb)
2534 last = bsi_last (bb);
2535 stmt = last_stmt (bb);
2537 if (stmt && TREE_CODE (stmt) == COND_EXPR)
2539 /* Remove superfluous gotos from COND_EXPR branches. Moved
2540 from cfg_remove_useless_stmts here since it violates the
2541 invariants for tree--cfg correspondence and thus fits better
2542 here where we do it anyway. */
2543 for (e = bb->succ; e; e = e->succ_next)
2545 if (e->dest != bb->next_bb)
2546 continue;
2548 if (e->flags & EDGE_TRUE_VALUE)
2549 COND_EXPR_THEN (stmt) = build_empty_stmt ();
2550 else if (e->flags & EDGE_FALSE_VALUE)
2551 COND_EXPR_ELSE (stmt) = build_empty_stmt ();
2552 else
2553 abort ();
2554 e->flags |= EDGE_FALLTHRU;
2557 continue;
2560 if (stmt && TREE_CODE (stmt) == RETURN_EXPR)
2562 /* Remove the RETURN_EXPR if we may fall though to the exit
2563 instead. */
2564 if (!bb->succ
2565 || bb->succ->succ_next
2566 || bb->succ->dest != EXIT_BLOCK_PTR)
2567 abort ();
2569 if (bb->next_bb == EXIT_BLOCK_PTR
2570 && !TREE_OPERAND (stmt, 0))
2572 bsi_remove (&last);
2573 bb->succ->flags |= EDGE_FALLTHRU;
2575 continue;
2578 /* There can be no fallthru edge if the last statement is a control
2579 one. */
2580 if (stmt && is_ctrl_stmt (stmt))
2581 continue;
2583 /* Find a fallthru edge and emit the goto if necessary. */
2584 for (e = bb->succ; e; e = e->succ_next)
2585 if (e->flags & EDGE_FALLTHRU)
2586 break;
2588 if (!e || e->dest == bb->next_bb)
2589 continue;
2591 if (e->dest == EXIT_BLOCK_PTR)
2592 abort ();
2594 label = tree_block_label (e->dest);
2596 stmt = build1 (GOTO_EXPR, void_type_node, label);
2597 #ifdef USE_MAPPED_LOCATION
2598 SET_EXPR_LOCATION (stmt, e->goto_locus);
2599 #else
2600 SET_EXPR_LOCUS (stmt, e->goto_locus);
2601 #endif
2602 bsi_insert_after (&last, stmt, BSI_NEW_STMT);
2603 e->flags &= ~EDGE_FALLTHRU;
2607 /* Remove block annotations and other datastructures. */
2609 void
2610 delete_tree_cfg_annotations (void)
2612 basic_block bb;
2613 if (n_basic_blocks > 0)
2614 free_blocks_annotations ();
2616 label_to_block_map = NULL;
2617 free_rbi_pool ();
2618 FOR_EACH_BB (bb)
2619 bb->rbi = NULL;
2623 /* Return the first statement in basic block BB. */
2625 tree
2626 first_stmt (basic_block bb)
2628 block_stmt_iterator i = bsi_start (bb);
2629 return !bsi_end_p (i) ? bsi_stmt (i) : NULL_TREE;
2633 /* Return the last statement in basic block BB. */
2635 tree
2636 last_stmt (basic_block bb)
2638 block_stmt_iterator b = bsi_last (bb);
2639 return !bsi_end_p (b) ? bsi_stmt (b) : NULL_TREE;
2643 /* Return a pointer to the last statement in block BB. */
2645 tree *
2646 last_stmt_ptr (basic_block bb)
2648 block_stmt_iterator last = bsi_last (bb);
2649 return !bsi_end_p (last) ? bsi_stmt_ptr (last) : NULL;
2653 /* Return the last statement of an otherwise empty block. Return NULL
2654 if the block is totally empty, or if it contains more than one
2655 statement. */
2657 tree
2658 last_and_only_stmt (basic_block bb)
2660 block_stmt_iterator i = bsi_last (bb);
2661 tree last, prev;
2663 if (bsi_end_p (i))
2664 return NULL_TREE;
2666 last = bsi_stmt (i);
2667 bsi_prev (&i);
2668 if (bsi_end_p (i))
2669 return last;
2671 /* Empty statements should no longer appear in the instruction stream.
2672 Everything that might have appeared before should be deleted by
2673 remove_useless_stmts, and the optimizers should just bsi_remove
2674 instead of smashing with build_empty_stmt.
2676 Thus the only thing that should appear here in a block containing
2677 one executable statement is a label. */
2678 prev = bsi_stmt (i);
2679 if (TREE_CODE (prev) == LABEL_EXPR)
2680 return last;
2681 else
2682 return NULL_TREE;
2686 /* Mark BB as the basic block holding statement T. */
2688 void
2689 set_bb_for_stmt (tree t, basic_block bb)
2691 if (TREE_CODE (t) == STATEMENT_LIST)
2693 tree_stmt_iterator i;
2694 for (i = tsi_start (t); !tsi_end_p (i); tsi_next (&i))
2695 set_bb_for_stmt (tsi_stmt (i), bb);
2697 else
2699 stmt_ann_t ann = get_stmt_ann (t);
2700 ann->bb = bb;
2702 /* If the statement is a label, add the label to block-to-labels map
2703 so that we can speed up edge creation for GOTO_EXPRs. */
2704 if (TREE_CODE (t) == LABEL_EXPR)
2706 int uid;
2708 t = LABEL_EXPR_LABEL (t);
2709 uid = LABEL_DECL_UID (t);
2710 if (uid == -1)
2712 LABEL_DECL_UID (t) = uid = cfun->last_label_uid++;
2713 if (VARRAY_SIZE (label_to_block_map) <= (unsigned) uid)
2714 VARRAY_GROW (label_to_block_map, 3 * uid / 2);
2716 else
2718 #ifdef ENABLE_CHECKING
2719 /* We're moving an existing label. Make sure that we've
2720 removed it from the old block. */
2721 if (bb && VARRAY_BB (label_to_block_map, uid))
2722 abort ();
2723 #endif
2725 VARRAY_BB (label_to_block_map, uid) = bb;
2731 /* Insert statement (or statement list) T before the statement
2732 pointed-to by iterator I. M specifies how to update iterator I
2733 after insertion (see enum bsi_iterator_update). */
2735 void
2736 bsi_insert_before (block_stmt_iterator *i, tree t, enum bsi_iterator_update m)
2738 set_bb_for_stmt (t, i->bb);
2739 tsi_link_before (&i->tsi, t, m);
2740 modify_stmt (t);
2744 /* Insert statement (or statement list) T after the statement
2745 pointed-to by iterator I. M specifies how to update iterator I
2746 after insertion (see enum bsi_iterator_update). */
2748 void
2749 bsi_insert_after (block_stmt_iterator *i, tree t, enum bsi_iterator_update m)
2751 set_bb_for_stmt (t, i->bb);
2752 tsi_link_after (&i->tsi, t, m);
2753 modify_stmt (t);
2757 /* Remove the statement pointed to by iterator I. The iterator is updated
2758 to the next statement. */
2760 void
2761 bsi_remove (block_stmt_iterator *i)
2763 tree t = bsi_stmt (*i);
2764 set_bb_for_stmt (t, NULL);
2765 tsi_delink (&i->tsi);
2769 /* Move the statement at FROM so it comes right after the statement at TO. */
2771 void
2772 bsi_move_after (block_stmt_iterator *from, block_stmt_iterator *to)
2774 tree stmt = bsi_stmt (*from);
2775 bsi_remove (from);
2776 bsi_insert_after (to, stmt, BSI_SAME_STMT);
2780 /* Move the statement at FROM so it comes right before the statement at TO. */
2782 void
2783 bsi_move_before (block_stmt_iterator *from, block_stmt_iterator *to)
2785 tree stmt = bsi_stmt (*from);
2786 bsi_remove (from);
2787 bsi_insert_before (to, stmt, BSI_SAME_STMT);
2791 /* Move the statement at FROM to the end of basic block BB. */
2793 void
2794 bsi_move_to_bb_end (block_stmt_iterator *from, basic_block bb)
2796 block_stmt_iterator last = bsi_last (bb);
2798 /* Have to check bsi_end_p because it could be an empty block. */
2799 if (!bsi_end_p (last) && is_ctrl_stmt (bsi_stmt (last)))
2800 bsi_move_before (from, &last);
2801 else
2802 bsi_move_after (from, &last);
2806 /* Replace the contents of the statement pointed to by iterator BSI
2807 with STMT. If PRESERVE_EH_INFO is true, the exception handling
2808 information of the original statement is preserved. */
2810 void
2811 bsi_replace (const block_stmt_iterator *bsi, tree stmt, bool preserve_eh_info)
2813 int eh_region;
2814 tree orig_stmt = bsi_stmt (*bsi);
2816 SET_EXPR_LOCUS (stmt, EXPR_LOCUS (orig_stmt));
2817 set_bb_for_stmt (stmt, bsi->bb);
2819 /* Preserve EH region information from the original statement, if
2820 requested by the caller. */
2821 if (preserve_eh_info)
2823 eh_region = lookup_stmt_eh_region (orig_stmt);
2824 if (eh_region >= 0)
2825 add_stmt_to_eh_region (stmt, eh_region);
2828 *bsi_stmt_ptr (*bsi) = stmt;
2829 modify_stmt (stmt);
2833 /* Insert the statement pointed-to by BSI into edge E. Every attempt
2834 is made to place the statement in an existing basic block, but
2835 sometimes that isn't possible. When it isn't possible, the edge is
2836 split and the statement is added to the new block.
2838 In all cases, the returned *BSI points to the correct location. The
2839 return value is true if insertion should be done after the location,
2840 or false if it should be done before the location. */
2842 static bool
2843 tree_find_edge_insert_loc (edge e, block_stmt_iterator *bsi)
2845 basic_block dest, src;
2846 tree tmp;
2848 dest = e->dest;
2849 restart:
2851 /* If the destination has one predecessor which has no PHI nodes,
2852 insert there. Except for the exit block.
2854 The requirement for no PHI nodes could be relaxed. Basically we
2855 would have to examine the PHIs to prove that none of them used
2856 the value set by the statement we want to insert on E. That
2857 hardly seems worth the effort. */
2858 if (dest->pred->pred_next == NULL
2859 && ! phi_nodes (dest)
2860 && dest != EXIT_BLOCK_PTR)
2862 *bsi = bsi_start (dest);
2863 if (bsi_end_p (*bsi))
2864 return true;
2866 /* Make sure we insert after any leading labels. */
2867 tmp = bsi_stmt (*bsi);
2868 while (TREE_CODE (tmp) == LABEL_EXPR)
2870 bsi_next (bsi);
2871 if (bsi_end_p (*bsi))
2872 break;
2873 tmp = bsi_stmt (*bsi);
2876 if (bsi_end_p (*bsi))
2878 *bsi = bsi_last (dest);
2879 return true;
2881 else
2882 return false;
2885 /* If the source has one successor, the edge is not abnormal and
2886 the last statement does not end a basic block, insert there.
2887 Except for the entry block. */
2888 src = e->src;
2889 if ((e->flags & EDGE_ABNORMAL) == 0
2890 && src->succ->succ_next == NULL
2891 && src != ENTRY_BLOCK_PTR)
2893 *bsi = bsi_last (src);
2894 if (bsi_end_p (*bsi))
2895 return true;
2897 tmp = bsi_stmt (*bsi);
2898 if (!stmt_ends_bb_p (tmp))
2899 return true;
2901 /* Insert code just before returning the value. We may need to decompose
2902 the return in the case it contains non-trivial operand. */
2903 if (TREE_CODE (tmp) == RETURN_EXPR)
2905 tree op = TREE_OPERAND (tmp, 0);
2906 if (!is_gimple_val (op))
2908 if (TREE_CODE (op) != MODIFY_EXPR)
2909 abort ();
2910 bsi_insert_before (bsi, op, BSI_NEW_STMT);
2911 TREE_OPERAND (tmp, 0) = TREE_OPERAND (op, 0);
2913 bsi_prev (bsi);
2914 return true;
2918 /* Otherwise, create a new basic block, and split this edge. */
2919 dest = split_edge (e);
2920 e = dest->pred;
2921 goto restart;
2925 /* This routine will commit all pending edge insertions, creating any new
2926 basic blocks which are necessary.
2928 If specified, NEW_BLOCKS returns a count of the number of new basic
2929 blocks which were created. */
2931 void
2932 bsi_commit_edge_inserts (int *new_blocks)
2934 basic_block bb;
2935 edge e;
2936 int blocks;
2938 blocks = n_basic_blocks;
2940 bsi_commit_edge_inserts_1 (ENTRY_BLOCK_PTR->succ);
2942 FOR_EACH_BB (bb)
2943 for (e = bb->succ; e; e = e->succ_next)
2944 bsi_commit_edge_inserts_1 (e);
2946 if (new_blocks)
2947 *new_blocks = n_basic_blocks - blocks;
2951 /* Commit insertions pending at edge E. */
2953 static void
2954 bsi_commit_edge_inserts_1 (edge e)
2956 if (PENDING_STMT (e))
2958 block_stmt_iterator bsi;
2959 tree stmt = PENDING_STMT (e);
2961 PENDING_STMT (e) = NULL_TREE;
2963 if (tree_find_edge_insert_loc (e, &bsi))
2964 bsi_insert_after (&bsi, stmt, BSI_NEW_STMT);
2965 else
2966 bsi_insert_before (&bsi, stmt, BSI_NEW_STMT);
2971 /* Add STMT to the pending list of edge E. No actual insertion is
2972 made until a call to bsi_commit_edge_inserts () is made. */
2974 void
2975 bsi_insert_on_edge (edge e, tree stmt)
2977 append_to_statement_list (stmt, &PENDING_STMT (e));
2981 /*---------------------------------------------------------------------------
2982 Tree specific functions for CFG manipulation
2983 ---------------------------------------------------------------------------*/
2985 /* Split a (typically critical) edge EDGE_IN. Return the new block.
2986 Abort on abnormal edges. */
2988 static basic_block
2989 tree_split_edge (edge edge_in)
2991 basic_block new_bb, after_bb, dest, src;
2992 edge new_edge, e;
2993 tree phi;
2994 int i, num_elem;
2996 /* Abnormal edges cannot be split. */
2997 if (edge_in->flags & EDGE_ABNORMAL)
2998 abort ();
3000 src = edge_in->src;
3001 dest = edge_in->dest;
3003 /* Place the new block in the block list. Try to keep the new block
3004 near its "logical" location. This is of most help to humans looking
3005 at debugging dumps. */
3006 for (e = dest->pred; e; e = e->pred_next)
3007 if (e->src->next_bb == dest)
3008 break;
3009 if (!e)
3010 after_bb = dest->prev_bb;
3011 else
3012 after_bb = edge_in->src;
3014 new_bb = create_empty_bb (after_bb);
3015 new_edge = make_edge (new_bb, dest, EDGE_FALLTHRU);
3017 /* Find all the PHI arguments on the original edge, and change them to
3018 the new edge. Do it before redirection, so that the argument does not
3019 get removed. */
3020 for (phi = phi_nodes (dest); phi; phi = PHI_CHAIN (phi))
3022 num_elem = PHI_NUM_ARGS (phi);
3023 for (i = 0; i < num_elem; i++)
3024 if (PHI_ARG_EDGE (phi, i) == edge_in)
3026 PHI_ARG_EDGE (phi, i) = new_edge;
3027 break;
3031 if (!redirect_edge_and_branch (edge_in, new_bb))
3032 abort ();
3034 if (PENDING_STMT (edge_in))
3035 abort ();
3037 return new_bb;
3041 /* Return true when BB has label LABEL in it. */
3043 static bool
3044 has_label_p (basic_block bb, tree label)
3046 block_stmt_iterator bsi;
3048 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
3050 tree stmt = bsi_stmt (bsi);
3052 if (TREE_CODE (stmt) != LABEL_EXPR)
3053 return false;
3054 if (LABEL_EXPR_LABEL (stmt) == label)
3055 return true;
3057 return false;
3061 /* Callback for walk_tree, check that all elements with address taken are
3062 properly noticed as such. */
3064 static tree
3065 verify_expr (tree *tp, int *walk_subtrees, void *data ATTRIBUTE_UNUSED)
3067 tree t = *tp, x;
3069 if (TYPE_P (t))
3070 *walk_subtrees = 0;
3072 /* Check operand N for being valid GIMPLE and give error MSG if not.
3073 We check for constants explicitly since they are not considered
3074 gimple invariants if they overflowed. */
3075 #define CHECK_OP(N, MSG) \
3076 do { if (TREE_CODE_CLASS (TREE_CODE (TREE_OPERAND (t, N))) != 'c' \
3077 && !is_gimple_val (TREE_OPERAND (t, N))) \
3078 { error (MSG); return TREE_OPERAND (t, N); }} while (0)
3080 switch (TREE_CODE (t))
3082 case SSA_NAME:
3083 if (SSA_NAME_IN_FREE_LIST (t))
3085 error ("SSA name in freelist but still referenced");
3086 return *tp;
3088 break;
3090 case MODIFY_EXPR:
3091 x = TREE_OPERAND (t, 0);
3092 if (TREE_CODE (x) == BIT_FIELD_REF
3093 && is_gimple_reg (TREE_OPERAND (x, 0)))
3095 error ("GIMPLE register modified with BIT_FIELD_REF");
3096 return t;
3098 break;
3100 case ADDR_EXPR:
3101 /* Skip any references (they will be checked when we recurse down the
3102 tree) and ensure that any variable used as a prefix is marked
3103 addressable. */
3104 for (x = TREE_OPERAND (t, 0);
3105 (handled_component_p (x)
3106 || TREE_CODE (x) == REALPART_EXPR
3107 || TREE_CODE (x) == IMAGPART_EXPR);
3108 x = TREE_OPERAND (x, 0))
3111 if (TREE_CODE (x) != VAR_DECL && TREE_CODE (x) != PARM_DECL)
3112 return NULL;
3113 if (!TREE_ADDRESSABLE (x))
3115 error ("address taken, but ADDRESSABLE bit not set");
3116 return x;
3118 break;
3120 case COND_EXPR:
3121 x = TREE_OPERAND (t, 0);
3122 if (TREE_CODE (TREE_TYPE (x)) != BOOLEAN_TYPE)
3124 error ("non-boolean used in condition");
3125 return x;
3127 break;
3129 case NOP_EXPR:
3130 case CONVERT_EXPR:
3131 case FIX_TRUNC_EXPR:
3132 case FIX_CEIL_EXPR:
3133 case FIX_FLOOR_EXPR:
3134 case FIX_ROUND_EXPR:
3135 case FLOAT_EXPR:
3136 case NEGATE_EXPR:
3137 case ABS_EXPR:
3138 case BIT_NOT_EXPR:
3139 case NON_LVALUE_EXPR:
3140 case TRUTH_NOT_EXPR:
3141 CHECK_OP (0, "Invalid operand to unary operator");
3142 break;
3144 case REALPART_EXPR:
3145 case IMAGPART_EXPR:
3146 case COMPONENT_REF:
3147 case ARRAY_REF:
3148 case ARRAY_RANGE_REF:
3149 case BIT_FIELD_REF:
3150 case VIEW_CONVERT_EXPR:
3151 /* We have a nest of references. Verify that each of the operands
3152 that determine where to reference is either a constant or a variable,
3153 verify that the base is valid, and then show we've already checked
3154 the subtrees. */
3155 while (TREE_CODE (t) == REALPART_EXPR || TREE_CODE (t) == IMAGPART_EXPR
3156 || handled_component_p (t))
3158 if (TREE_CODE (t) == COMPONENT_REF && TREE_OPERAND (t, 2))
3159 CHECK_OP (2, "Invalid COMPONENT_REF offset operator");
3160 else if (TREE_CODE (t) == ARRAY_REF
3161 || TREE_CODE (t) == ARRAY_RANGE_REF)
3163 CHECK_OP (1, "Invalid array index.");
3164 if (TREE_OPERAND (t, 2))
3165 CHECK_OP (2, "Invalid array lower bound.");
3166 if (TREE_OPERAND (t, 3))
3167 CHECK_OP (3, "Invalid array stride.");
3169 else if (TREE_CODE (t) == BIT_FIELD_REF)
3171 CHECK_OP (1, "Invalid operand to BIT_FIELD_REF");
3172 CHECK_OP (2, "Invalid operand to BIT_FIELD_REF");
3175 t = TREE_OPERAND (t, 0);
3178 if (TREE_CODE_CLASS (TREE_CODE (t)) != 'c'
3179 && !is_gimple_lvalue (t))
3181 error ("Invalid reference prefix.");
3182 return t;
3184 *walk_subtrees = 0;
3185 break;
3187 case LT_EXPR:
3188 case LE_EXPR:
3189 case GT_EXPR:
3190 case GE_EXPR:
3191 case EQ_EXPR:
3192 case NE_EXPR:
3193 case UNORDERED_EXPR:
3194 case ORDERED_EXPR:
3195 case UNLT_EXPR:
3196 case UNLE_EXPR:
3197 case UNGT_EXPR:
3198 case UNGE_EXPR:
3199 case UNEQ_EXPR:
3200 case LTGT_EXPR:
3201 case PLUS_EXPR:
3202 case MINUS_EXPR:
3203 case MULT_EXPR:
3204 case TRUNC_DIV_EXPR:
3205 case CEIL_DIV_EXPR:
3206 case FLOOR_DIV_EXPR:
3207 case ROUND_DIV_EXPR:
3208 case TRUNC_MOD_EXPR:
3209 case CEIL_MOD_EXPR:
3210 case FLOOR_MOD_EXPR:
3211 case ROUND_MOD_EXPR:
3212 case RDIV_EXPR:
3213 case EXACT_DIV_EXPR:
3214 case MIN_EXPR:
3215 case MAX_EXPR:
3216 case LSHIFT_EXPR:
3217 case RSHIFT_EXPR:
3218 case LROTATE_EXPR:
3219 case RROTATE_EXPR:
3220 case BIT_IOR_EXPR:
3221 case BIT_XOR_EXPR:
3222 case BIT_AND_EXPR:
3223 CHECK_OP (0, "Invalid operand to binary operator");
3224 CHECK_OP (1, "Invalid operand to binary operator");
3225 break;
3227 default:
3228 break;
3230 return NULL;
3232 #undef CHECK_OP
3236 /* Verify STMT, return true if STMT is not in GIMPLE form.
3237 TODO: Implement type checking. */
3239 static bool
3240 verify_stmt (tree stmt, bool last_in_block)
3242 tree addr;
3244 if (!is_gimple_stmt (stmt))
3246 error ("Is not a valid GIMPLE statement.");
3247 goto fail;
3250 addr = walk_tree (&stmt, verify_expr, NULL, NULL);
3251 if (addr)
3253 debug_generic_stmt (addr);
3254 return true;
3257 /* If the statement is marked as part of an EH region, then it is
3258 expected that the statement could throw. Verify that when we
3259 have optimizations that simplify statements such that we prove
3260 that they cannot throw, that we update other data structures
3261 to match. */
3262 if (lookup_stmt_eh_region (stmt) >= 0)
3264 if (!tree_could_throw_p (stmt))
3266 error ("Statement marked for throw, but doesn't.");
3267 goto fail;
3269 if (!last_in_block && tree_can_throw_internal (stmt))
3271 error ("Statement marked for throw in middle of block.");
3272 goto fail;
3276 return false;
3278 fail:
3279 debug_generic_stmt (stmt);
3280 return true;
3284 /* Return true when the T can be shared. */
3286 static bool
3287 tree_node_can_be_shared (tree t)
3289 if (TYPE_P (t) || DECL_P (t)
3290 /* We check for constants explicitly since they are not considered
3291 gimple invariants if they overflowed. */
3292 || TREE_CODE_CLASS (TREE_CODE (t)) == 'c'
3293 || is_gimple_min_invariant (t)
3294 || TREE_CODE (t) == SSA_NAME)
3295 return true;
3297 while (((TREE_CODE (t) == ARRAY_REF || TREE_CODE (t) == ARRAY_RANGE_REF)
3298 /* We check for constants explicitly since they are not considered
3299 gimple invariants if they overflowed. */
3300 && (TREE_CODE_CLASS (TREE_CODE (TREE_OPERAND (t, 1))) == 'c'
3301 || is_gimple_min_invariant (TREE_OPERAND (t, 1))))
3302 || (TREE_CODE (t) == COMPONENT_REF
3303 || TREE_CODE (t) == REALPART_EXPR
3304 || TREE_CODE (t) == IMAGPART_EXPR))
3305 t = TREE_OPERAND (t, 0);
3307 if (DECL_P (t))
3308 return true;
3310 return false;
3314 /* Called via walk_trees. Verify tree sharing. */
3316 static tree
3317 verify_node_sharing (tree * tp, int *walk_subtrees, void *data)
3319 htab_t htab = (htab_t) data;
3320 void **slot;
3322 if (tree_node_can_be_shared (*tp))
3324 *walk_subtrees = false;
3325 return NULL;
3328 slot = htab_find_slot (htab, *tp, INSERT);
3329 if (*slot)
3330 return *slot;
3331 *slot = *tp;
3333 return NULL;
3337 /* Verify the GIMPLE statement chain. */
3339 void
3340 verify_stmts (void)
3342 basic_block bb;
3343 block_stmt_iterator bsi;
3344 bool err = false;
3345 htab_t htab;
3346 tree addr;
3348 timevar_push (TV_TREE_STMT_VERIFY);
3349 htab = htab_create (37, htab_hash_pointer, htab_eq_pointer, NULL);
3351 FOR_EACH_BB (bb)
3353 tree phi;
3354 int i;
3356 for (phi = phi_nodes (bb); phi; phi = PHI_CHAIN (phi))
3358 int phi_num_args = PHI_NUM_ARGS (phi);
3360 for (i = 0; i < phi_num_args; i++)
3362 tree t = PHI_ARG_DEF (phi, i);
3363 tree addr;
3365 /* Addressable variables do have SSA_NAMEs but they
3366 are not considered gimple values. */
3367 if (TREE_CODE (t) != SSA_NAME
3368 && TREE_CODE (t) != FUNCTION_DECL
3369 && !is_gimple_val (t))
3371 error ("PHI def is not a GIMPLE value");
3372 debug_generic_stmt (phi);
3373 debug_generic_stmt (t);
3374 err |= true;
3377 addr = walk_tree (&t, verify_expr, NULL, NULL);
3378 if (addr)
3380 debug_generic_stmt (addr);
3381 err |= true;
3384 addr = walk_tree (&t, verify_node_sharing, htab, NULL);
3385 if (addr)
3387 error ("Incorrect sharing of tree nodes");
3388 debug_generic_stmt (phi);
3389 debug_generic_stmt (addr);
3390 err |= true;
3395 for (bsi = bsi_start (bb); !bsi_end_p (bsi); )
3397 tree stmt = bsi_stmt (bsi);
3398 bsi_next (&bsi);
3399 err |= verify_stmt (stmt, bsi_end_p (bsi));
3400 addr = walk_tree (&stmt, verify_node_sharing, htab, NULL);
3401 if (addr)
3403 error ("Incorrect sharing of tree nodes");
3404 debug_generic_stmt (stmt);
3405 debug_generic_stmt (addr);
3406 err |= true;
3411 if (err)
3412 internal_error ("verify_stmts failed.");
3414 htab_delete (htab);
3415 timevar_pop (TV_TREE_STMT_VERIFY);
3419 /* Verifies that the flow information is OK. */
3421 static int
3422 tree_verify_flow_info (void)
3424 int err = 0;
3425 basic_block bb;
3426 block_stmt_iterator bsi;
3427 tree stmt;
3428 edge e;
3430 if (ENTRY_BLOCK_PTR->stmt_list)
3432 error ("ENTRY_BLOCK has a statement list associated with it\n");
3433 err = 1;
3436 if (EXIT_BLOCK_PTR->stmt_list)
3438 error ("EXIT_BLOCK has a statement list associated with it\n");
3439 err = 1;
3442 for (e = EXIT_BLOCK_PTR->pred; e; e = e->pred_next)
3443 if (e->flags & EDGE_FALLTHRU)
3445 error ("Fallthru to exit from bb %d\n", e->src->index);
3446 err = 1;
3449 FOR_EACH_BB (bb)
3451 bool found_ctrl_stmt = false;
3453 /* Skip labels on the start of basic block. */
3454 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
3456 if (TREE_CODE (bsi_stmt (bsi)) != LABEL_EXPR)
3457 break;
3459 if (label_to_block (LABEL_EXPR_LABEL (bsi_stmt (bsi))) != bb)
3461 error ("Label %s to block does not match in bb %d\n",
3462 IDENTIFIER_POINTER (DECL_NAME (bsi_stmt (bsi))),
3463 bb->index);
3464 err = 1;
3467 if (decl_function_context (LABEL_EXPR_LABEL (bsi_stmt (bsi)))
3468 != current_function_decl)
3470 error ("Label %s has incorrect context in bb %d\n",
3471 IDENTIFIER_POINTER (DECL_NAME (bsi_stmt (bsi))),
3472 bb->index);
3473 err = 1;
3477 /* Verify that body of basic block BB is free of control flow. */
3478 for (; !bsi_end_p (bsi); bsi_next (&bsi))
3480 tree stmt = bsi_stmt (bsi);
3482 if (found_ctrl_stmt)
3484 error ("Control flow in the middle of basic block %d\n",
3485 bb->index);
3486 err = 1;
3489 if (stmt_ends_bb_p (stmt))
3490 found_ctrl_stmt = true;
3492 if (TREE_CODE (stmt) == LABEL_EXPR)
3494 error ("Label %s in the middle of basic block %d\n",
3495 IDENTIFIER_POINTER (DECL_NAME (stmt)),
3496 bb->index);
3497 err = 1;
3500 bsi = bsi_last (bb);
3501 if (bsi_end_p (bsi))
3502 continue;
3504 stmt = bsi_stmt (bsi);
3506 if (is_ctrl_stmt (stmt))
3508 for (e = bb->succ; e; e = e->succ_next)
3509 if (e->flags & EDGE_FALLTHRU)
3511 error ("Fallthru edge after a control statement in bb %d \n",
3512 bb->index);
3513 err = 1;
3517 switch (TREE_CODE (stmt))
3519 case COND_EXPR:
3521 edge true_edge;
3522 edge false_edge;
3523 if (TREE_CODE (COND_EXPR_THEN (stmt)) != GOTO_EXPR
3524 || TREE_CODE (COND_EXPR_ELSE (stmt)) != GOTO_EXPR)
3526 error ("Structured COND_EXPR at the end of bb %d\n", bb->index);
3527 err = 1;
3530 extract_true_false_edges_from_block (bb, &true_edge, &false_edge);
3532 if (!true_edge || !false_edge
3533 || !(true_edge->flags & EDGE_TRUE_VALUE)
3534 || !(false_edge->flags & EDGE_FALSE_VALUE)
3535 || (true_edge->flags & (EDGE_FALLTHRU | EDGE_ABNORMAL))
3536 || (false_edge->flags & (EDGE_FALLTHRU | EDGE_ABNORMAL))
3537 || bb->succ->succ_next->succ_next)
3539 error ("Wrong outgoing edge flags at end of bb %d\n",
3540 bb->index);
3541 err = 1;
3544 if (!has_label_p (true_edge->dest,
3545 GOTO_DESTINATION (COND_EXPR_THEN (stmt))))
3547 error ("`then' label does not match edge at end of bb %d\n",
3548 bb->index);
3549 err = 1;
3552 if (!has_label_p (false_edge->dest,
3553 GOTO_DESTINATION (COND_EXPR_ELSE (stmt))))
3555 error ("`else' label does not match edge at end of bb %d\n",
3556 bb->index);
3557 err = 1;
3560 break;
3562 case GOTO_EXPR:
3563 if (simple_goto_p (stmt))
3565 error ("Explicit goto at end of bb %d\n", bb->index);
3566 err = 1;
3568 else
3570 /* FIXME. We should double check that the labels in the
3571 destination blocks have their address taken. */
3572 for (e = bb->succ; e; e = e->succ_next)
3573 if ((e->flags & (EDGE_FALLTHRU | EDGE_TRUE_VALUE
3574 | EDGE_FALSE_VALUE))
3575 || !(e->flags & EDGE_ABNORMAL))
3577 error ("Wrong outgoing edge flags at end of bb %d\n",
3578 bb->index);
3579 err = 1;
3582 break;
3584 case RETURN_EXPR:
3585 if (!bb->succ || bb->succ->succ_next
3586 || (bb->succ->flags & (EDGE_FALLTHRU | EDGE_ABNORMAL
3587 | EDGE_TRUE_VALUE | EDGE_FALSE_VALUE)))
3589 error ("Wrong outgoing edge flags at end of bb %d\n", bb->index);
3590 err = 1;
3592 if (bb->succ->dest != EXIT_BLOCK_PTR)
3594 error ("Return edge does not point to exit in bb %d\n",
3595 bb->index);
3596 err = 1;
3598 break;
3600 case SWITCH_EXPR:
3602 tree prev;
3603 edge e;
3604 size_t i, n;
3605 tree vec;
3607 vec = SWITCH_LABELS (stmt);
3608 n = TREE_VEC_LENGTH (vec);
3610 /* Mark all the destination basic blocks. */
3611 for (i = 0; i < n; ++i)
3613 tree lab = CASE_LABEL (TREE_VEC_ELT (vec, i));
3614 basic_block label_bb = label_to_block (lab);
3616 if (label_bb->aux && label_bb->aux != (void *)1)
3617 abort ();
3618 label_bb->aux = (void *)1;
3621 /* Verify that the case labels are sorted. */
3622 prev = TREE_VEC_ELT (vec, 0);
3623 for (i = 1; i < n - 1; ++i)
3625 tree c = TREE_VEC_ELT (vec, i);
3626 if (! CASE_LOW (c))
3628 error ("Found default case not at end of case vector");
3629 err = 1;
3630 continue;
3632 if (! tree_int_cst_lt (CASE_LOW (prev), CASE_LOW (c)))
3634 error ("Case labels not sorted:\n ");
3635 print_generic_expr (stderr, prev, 0);
3636 fprintf (stderr," is greater than ");
3637 print_generic_expr (stderr, c, 0);
3638 fprintf (stderr," but comes before it.\n");
3639 err = 1;
3641 prev = c;
3643 if (CASE_LOW (TREE_VEC_ELT (vec, n - 1)))
3645 error ("No default case found at end of case vector");
3646 err = 1;
3649 for (e = bb->succ; e; e = e->succ_next)
3651 if (!e->dest->aux)
3653 error ("Extra outgoing edge %d->%d\n",
3654 bb->index, e->dest->index);
3655 err = 1;
3657 e->dest->aux = (void *)2;
3658 if ((e->flags & (EDGE_FALLTHRU | EDGE_ABNORMAL
3659 | EDGE_TRUE_VALUE | EDGE_FALSE_VALUE)))
3661 error ("Wrong outgoing edge flags at end of bb %d\n",
3662 bb->index);
3663 err = 1;
3667 /* Check that we have all of them. */
3668 for (i = 0; i < n; ++i)
3670 tree lab = CASE_LABEL (TREE_VEC_ELT (vec, i));
3671 basic_block label_bb = label_to_block (lab);
3673 if (label_bb->aux != (void *)2)
3675 error ("Missing edge %i->%i\n",
3676 bb->index, label_bb->index);
3677 err = 1;
3681 for (e = bb->succ; e; e = e->succ_next)
3682 e->dest->aux = (void *)0;
3685 default: ;
3689 if (dom_computed[CDI_DOMINATORS] >= DOM_NO_FAST_QUERY)
3690 verify_dominators (CDI_DOMINATORS);
3692 return err;
3696 /* Updates phi nodes after creating forwarder block joined
3697 by edge FALLTHRU. */
3699 static void
3700 tree_make_forwarder_block (edge fallthru)
3702 edge e;
3703 basic_block dummy, bb;
3704 tree phi, new_phi, var, prev, next;
3706 dummy = fallthru->src;
3707 bb = fallthru->dest;
3709 if (!bb->pred->pred_next)
3710 return;
3712 /* If we redirected a branch we must create new phi nodes at the
3713 start of BB. */
3714 for (phi = phi_nodes (dummy); phi; phi = PHI_CHAIN (phi))
3716 var = PHI_RESULT (phi);
3717 new_phi = create_phi_node (var, bb);
3718 SSA_NAME_DEF_STMT (var) = new_phi;
3719 SET_PHI_RESULT (phi, make_ssa_name (SSA_NAME_VAR (var), phi));
3720 add_phi_arg (&new_phi, PHI_RESULT (phi), fallthru);
3723 /* Ensure that the PHI node chain is in the same order. */
3724 prev = NULL;
3725 for (phi = phi_nodes (bb); phi; phi = next)
3727 next = PHI_CHAIN (phi);
3728 PHI_CHAIN (phi) = prev;
3729 prev = phi;
3731 set_phi_nodes (bb, prev);
3733 /* Add the arguments we have stored on edges. */
3734 for (e = bb->pred; e; e = e->pred_next)
3736 if (e == fallthru)
3737 continue;
3739 for (phi = phi_nodes (bb), var = PENDING_STMT (e);
3740 phi;
3741 phi = PHI_CHAIN (phi), var = TREE_CHAIN (var))
3742 add_phi_arg (&phi, TREE_VALUE (var), e);
3744 PENDING_STMT (e) = NULL;
3749 /* Return true if basic block BB does nothing except pass control
3750 flow to another block and that we can safely insert a label at
3751 the start of the successor block. */
3753 static bool
3754 tree_forwarder_block_p (basic_block bb)
3756 block_stmt_iterator bsi;
3757 edge e;
3759 /* If we have already determined that this block is not forwardable,
3760 then no further checks are necessary. */
3761 if (! bb_ann (bb)->forwardable)
3762 return false;
3764 /* BB must have a single outgoing normal edge. Otherwise it can not be
3765 a forwarder block. */
3766 if (!bb->succ
3767 || bb->succ->succ_next
3768 || bb->succ->dest == EXIT_BLOCK_PTR
3769 || (bb->succ->flags & EDGE_ABNORMAL)
3770 || bb == ENTRY_BLOCK_PTR)
3772 bb_ann (bb)->forwardable = 0;
3773 return false;
3776 /* Successors of the entry block are not forwarders. */
3777 for (e = ENTRY_BLOCK_PTR->succ; e; e = e->succ_next)
3778 if (e->dest == bb)
3780 bb_ann (bb)->forwardable = 0;
3781 return false;
3784 /* BB can not have any PHI nodes. This could potentially be relaxed
3785 early in compilation if we re-rewrote the variables appearing in
3786 any PHI nodes in forwarder blocks. */
3787 if (phi_nodes (bb))
3789 bb_ann (bb)->forwardable = 0;
3790 return false;
3793 /* Now walk through the statements. We can ignore labels, anything else
3794 means this is not a forwarder block. */
3795 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
3797 tree stmt = bsi_stmt (bsi);
3799 switch (TREE_CODE (stmt))
3801 case LABEL_EXPR:
3802 if (DECL_NONLOCAL (LABEL_EXPR_LABEL (stmt)))
3803 return false;
3804 break;
3806 default:
3807 bb_ann (bb)->forwardable = 0;
3808 return false;
3812 return true;
3816 /* Thread jumps over empty statements.
3818 This code should _not_ thread over obviously equivalent conditions
3819 as that requires nontrivial updates to the SSA graph. */
3821 static bool
3822 thread_jumps (void)
3824 edge e, next, last, old;
3825 basic_block bb, dest, tmp, old_dest, dom;
3826 tree phi;
3827 int arg;
3828 bool retval = false;
3830 FOR_EACH_BB (bb)
3831 bb_ann (bb)->forwardable = 1;
3833 FOR_BB_BETWEEN (bb, ENTRY_BLOCK_PTR, EXIT_BLOCK_PTR, next_bb)
3835 /* Don't waste time on unreachable blocks. */
3836 if (!bb->pred)
3837 continue;
3839 /* Nor on forwarders. */
3840 if (tree_forwarder_block_p (bb))
3841 continue;
3843 /* This block is now part of a forwarding path, mark it as not
3844 forwardable so that we can detect loops. This bit will be
3845 reset below. */
3846 bb_ann (bb)->forwardable = 0;
3848 /* Examine each of our block's successors to see if it is
3849 forwardable. */
3850 for (e = bb->succ; e; e = next)
3852 next = e->succ_next;
3854 /* If the edge is abnormal or its destination is not
3855 forwardable, then there's nothing to do. */
3856 if ((e->flags & EDGE_ABNORMAL)
3857 || !tree_forwarder_block_p (e->dest))
3858 continue;
3860 /* Now walk through as many forwarder block as possible to
3861 find the ultimate destination we want to thread our jump
3862 to. */
3863 last = e->dest->succ;
3864 bb_ann (e->dest)->forwardable = 0;
3865 for (dest = e->dest->succ->dest;
3866 tree_forwarder_block_p (dest);
3867 last = dest->succ,
3868 dest = dest->succ->dest)
3870 /* An infinite loop detected. We redirect the edge anyway, so
3871 that the loop is shrunk into single basic block. */
3872 if (!bb_ann (dest)->forwardable)
3873 break;
3875 if (dest->succ->dest == EXIT_BLOCK_PTR)
3876 break;
3878 bb_ann (dest)->forwardable = 0;
3881 /* Reset the forwardable marks to 1. */
3882 for (tmp = e->dest;
3883 tmp != dest;
3884 tmp = tmp->succ->dest)
3885 bb_ann (tmp)->forwardable = 1;
3887 if (dest == e->dest)
3888 continue;
3890 old = find_edge (bb, dest);
3891 if (old)
3893 /* If there already is an edge, check whether the values
3894 in phi nodes differ. */
3895 if (!phi_alternatives_equal (dest, last, old))
3897 /* The previous block is forwarder. Redirect our jump
3898 to that target instead since we know it has no PHI
3899 nodes that will need updating. */
3900 dest = last->src;
3902 /* That might mean that no forwarding at all is possible. */
3903 if (dest == e->dest)
3904 continue;
3906 old = find_edge (bb, dest);
3910 /* Perform the redirection. */
3911 retval = true;
3912 old_dest = e->dest;
3913 e = redirect_edge_and_branch (e, dest);
3915 if (!old)
3917 /* Update PHI nodes. We know that the new argument should
3918 have the same value as the argument associated with LAST.
3919 Otherwise we would have changed our target block above. */
3920 for (phi = phi_nodes (dest); phi; phi = PHI_CHAIN (phi))
3922 arg = phi_arg_from_edge (phi, last);
3923 if (arg < 0)
3924 abort ();
3925 add_phi_arg (&phi, PHI_ARG_DEF (phi, arg), e);
3929 /* Update the dominators. */
3930 if (dom_computed[CDI_DOMINATORS] >= DOM_CONS_OK)
3932 /* Remove the unreachable blocks (observe that if all blocks
3933 were reachable before, only those in the path we threaded
3934 over and did not have any predecessor outside of the path
3935 become unreachable). */
3936 for (; old_dest != dest; old_dest = tmp)
3938 tmp = old_dest->succ->dest;
3940 if (old_dest->pred)
3941 break;
3943 delete_basic_block (old_dest);
3945 /* If the dominator of the destination was in the path, set its
3946 dominator to the start of the redirected edge. */
3947 if (get_immediate_dominator (CDI_DOMINATORS, old_dest) == NULL)
3948 set_immediate_dominator (CDI_DOMINATORS, old_dest, bb);
3950 /* Now proceed like if we forwarded just over one edge at a time.
3951 Algorithm for forwarding over edge A --> B then is
3953 if (idom (B) == A)
3954 idom (B) = idom (A);
3955 recount_idom (A); */
3957 for (; old_dest != dest; old_dest = tmp)
3959 tmp = old_dest->succ->dest;
3961 if (get_immediate_dominator (CDI_DOMINATORS, tmp) == old_dest)
3963 dom = get_immediate_dominator (CDI_DOMINATORS, old_dest);
3964 set_immediate_dominator (CDI_DOMINATORS, tmp, dom);
3967 dom = recount_dominator (CDI_DOMINATORS, old_dest);
3968 set_immediate_dominator (CDI_DOMINATORS, old_dest, dom);
3973 /* Reset the forwardable bit on our block since it's no longer in
3974 a forwarding chain path. */
3975 bb_ann (bb)->forwardable = 1;
3978 return retval;
3982 /* Return a non-special label in the head of basic block BLOCK.
3983 Create one if it doesn't exist. */
3985 tree
3986 tree_block_label (basic_block bb)
3988 block_stmt_iterator i, s = bsi_start (bb);
3989 bool first = true;
3990 tree label, stmt;
3992 for (i = s; !bsi_end_p (i); first = false, bsi_next (&i))
3994 stmt = bsi_stmt (i);
3995 if (TREE_CODE (stmt) != LABEL_EXPR)
3996 break;
3997 label = LABEL_EXPR_LABEL (stmt);
3998 if (!DECL_NONLOCAL (label))
4000 if (!first)
4001 bsi_move_before (&i, &s);
4002 return label;
4006 label = create_artificial_label ();
4007 stmt = build1 (LABEL_EXPR, void_type_node, label);
4008 bsi_insert_before (&s, stmt, BSI_NEW_STMT);
4009 return label;
4013 /* Attempt to perform edge redirection by replacing a possibly complex
4014 jump instruction by a goto or by removing the jump completely.
4015 This can apply only if all edges now point to the same block. The
4016 parameters and return values are equivalent to
4017 redirect_edge_and_branch. */
4019 static edge
4020 tree_try_redirect_by_replacing_jump (edge e, basic_block target)
4022 basic_block src = e->src;
4023 edge tmp;
4024 block_stmt_iterator b;
4025 tree stmt;
4027 /* Verify that all targets will be TARGET. */
4028 for (tmp = src->succ; tmp; tmp = tmp->succ_next)
4029 if (tmp->dest != target && tmp != e)
4030 break;
4032 if (tmp)
4033 return NULL;
4035 b = bsi_last (src);
4036 if (bsi_end_p (b))
4037 return NULL;
4038 stmt = bsi_stmt (b);
4040 if (TREE_CODE (stmt) == COND_EXPR
4041 || TREE_CODE (stmt) == SWITCH_EXPR)
4043 bsi_remove (&b);
4044 e = ssa_redirect_edge (e, target);
4045 e->flags = EDGE_FALLTHRU;
4046 return e;
4049 return NULL;
4053 /* Redirect E to DEST. Return NULL on failure. Otherwise, return the
4054 edge representing the redirected branch. */
4056 static edge
4057 tree_redirect_edge_and_branch (edge e, basic_block dest)
4059 basic_block bb = e->src;
4060 block_stmt_iterator bsi;
4061 edge ret;
4062 tree label, stmt;
4064 if (e->flags & (EDGE_ABNORMAL_CALL | EDGE_EH))
4065 return NULL;
4067 if (e->src != ENTRY_BLOCK_PTR
4068 && (ret = tree_try_redirect_by_replacing_jump (e, dest)))
4069 return ret;
4071 if (e->dest == dest)
4072 return NULL;
4074 label = tree_block_label (dest);
4076 bsi = bsi_last (bb);
4077 stmt = bsi_end_p (bsi) ? NULL : bsi_stmt (bsi);
4079 switch (stmt ? TREE_CODE (stmt) : ERROR_MARK)
4081 case COND_EXPR:
4082 stmt = (e->flags & EDGE_TRUE_VALUE
4083 ? COND_EXPR_THEN (stmt)
4084 : COND_EXPR_ELSE (stmt));
4085 GOTO_DESTINATION (stmt) = label;
4086 break;
4088 case GOTO_EXPR:
4089 /* No non-abnormal edges should lead from a non-simple goto, and
4090 simple ones should be represented implicitly. */
4091 abort ();
4093 case SWITCH_EXPR:
4095 tree vec = SWITCH_LABELS (stmt);
4096 size_t i, n = TREE_VEC_LENGTH (vec);
4098 for (i = 0; i < n; ++i)
4100 tree elt = TREE_VEC_ELT (vec, i);
4101 if (label_to_block (CASE_LABEL (elt)) == e->dest)
4102 CASE_LABEL (elt) = label;
4105 break;
4107 case RETURN_EXPR:
4108 bsi_remove (&bsi);
4109 e->flags |= EDGE_FALLTHRU;
4110 break;
4112 default:
4113 /* Otherwise it must be a fallthru edge, and we don't need to
4114 do anything besides redirecting it. */
4115 if (!(e->flags & EDGE_FALLTHRU))
4116 abort ();
4117 break;
4120 /* Update/insert PHI nodes as necessary. */
4122 /* Now update the edges in the CFG. */
4123 e = ssa_redirect_edge (e, dest);
4125 return e;
4129 /* Simple wrapper, as we can always redirect fallthru edges. */
4131 static basic_block
4132 tree_redirect_edge_and_branch_force (edge e, basic_block dest)
4134 e = tree_redirect_edge_and_branch (e, dest);
4135 if (!e)
4136 abort ();
4138 return NULL;
4142 /* Splits basic block BB after statement STMT (but at least after the
4143 labels). If STMT is NULL, BB is split just after the labels. */
4145 static basic_block
4146 tree_split_block (basic_block bb, void *stmt)
4148 block_stmt_iterator bsi, bsi_tgt;
4149 tree act;
4150 basic_block new_bb;
4151 edge e;
4153 new_bb = create_empty_bb (bb);
4155 /* Redirect the outgoing edges. */
4156 new_bb->succ = bb->succ;
4157 bb->succ = NULL;
4158 for (e = new_bb->succ; e; e = e->succ_next)
4159 e->src = new_bb;
4161 if (stmt && TREE_CODE ((tree) stmt) == LABEL_EXPR)
4162 stmt = NULL;
4164 /* Move everything from BSI to the new basic block. */
4165 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
4167 act = bsi_stmt (bsi);
4168 if (TREE_CODE (act) == LABEL_EXPR)
4169 continue;
4171 if (!stmt)
4172 break;
4174 if (stmt == act)
4176 bsi_next (&bsi);
4177 break;
4181 bsi_tgt = bsi_start (new_bb);
4182 while (!bsi_end_p (bsi))
4184 act = bsi_stmt (bsi);
4185 bsi_remove (&bsi);
4186 bsi_insert_after (&bsi_tgt, act, BSI_NEW_STMT);
4189 return new_bb;
4193 /* Moves basic block BB after block AFTER. */
4195 static bool
4196 tree_move_block_after (basic_block bb, basic_block after)
4198 if (bb->prev_bb == after)
4199 return true;
4201 unlink_block (bb);
4202 link_block (bb, after);
4204 return true;
4208 /* Return true if basic_block can be duplicated. */
4210 static bool
4211 tree_can_duplicate_bb_p (basic_block bb ATTRIBUTE_UNUSED)
4213 return true;
4217 /* Create a duplicate of the basic block BB. NOTE: This does not
4218 preserve SSA form. */
4220 static basic_block
4221 tree_duplicate_bb (basic_block bb)
4223 basic_block new_bb;
4224 block_stmt_iterator bsi, bsi_tgt;
4225 tree phi;
4226 def_optype defs;
4227 v_may_def_optype v_may_defs;
4228 v_must_def_optype v_must_defs;
4229 unsigned j;
4231 new_bb = create_empty_bb (EXIT_BLOCK_PTR->prev_bb);
4233 for (phi = phi_nodes (bb); phi; phi = TREE_CHAIN (phi))
4235 mark_for_rewrite (PHI_RESULT (phi));
4238 bsi_tgt = bsi_start (new_bb);
4239 for (bsi = bsi_start (bb); !bsi_end_p (bsi); bsi_next (&bsi))
4241 tree stmt = bsi_stmt (bsi);
4242 tree copy;
4244 if (TREE_CODE (stmt) == LABEL_EXPR)
4245 continue;
4247 /* Record the definitions. */
4248 get_stmt_operands (stmt);
4250 defs = STMT_DEF_OPS (stmt);
4251 for (j = 0; j < NUM_DEFS (defs); j++)
4252 mark_for_rewrite (DEF_OP (defs, j));
4254 v_may_defs = STMT_V_MAY_DEF_OPS (stmt);
4255 for (j = 0; j < NUM_V_MAY_DEFS (v_may_defs); j++)
4256 mark_for_rewrite (V_MAY_DEF_RESULT (v_may_defs, j));
4258 v_must_defs = STMT_V_MUST_DEF_OPS (stmt);
4259 for (j = 0; j < NUM_V_MUST_DEFS (v_must_defs); j++)
4260 mark_for_rewrite (V_MUST_DEF_OP (v_must_defs, j));
4262 copy = unshare_expr (stmt);
4264 /* Copy also the virtual operands. */
4265 get_stmt_ann (copy);
4266 copy_virtual_operands (copy, stmt);
4268 bsi_insert_after (&bsi_tgt, copy, BSI_NEW_STMT);
4271 return new_bb;
4275 /* Dump FUNCTION_DECL FN to file FILE using FLAGS (see TDF_* in tree.h) */
4277 void
4278 dump_function_to_file (tree fn, FILE *file, int flags)
4280 tree arg, vars, var;
4281 bool ignore_topmost_bind = false, any_var = false;
4282 basic_block bb;
4283 tree chain;
4285 fprintf (file, "%s (", lang_hooks.decl_printable_name (fn, 2));
4287 arg = DECL_ARGUMENTS (fn);
4288 while (arg)
4290 print_generic_expr (file, arg, dump_flags);
4291 if (TREE_CHAIN (arg))
4292 fprintf (file, ", ");
4293 arg = TREE_CHAIN (arg);
4295 fprintf (file, ")\n");
4297 if (flags & TDF_RAW)
4299 dump_node (fn, TDF_SLIM | flags, file);
4300 return;
4303 /* When GIMPLE is lowered, the variables are no longer available in
4304 BIND_EXPRs, so display them separately. */
4305 if (cfun && cfun->unexpanded_var_list)
4307 ignore_topmost_bind = true;
4309 fprintf (file, "{\n");
4310 for (vars = cfun->unexpanded_var_list; vars; vars = TREE_CHAIN (vars))
4312 var = TREE_VALUE (vars);
4314 print_generic_decl (file, var, flags);
4315 fprintf (file, "\n");
4317 any_var = true;
4321 if (basic_block_info)
4323 /* Make a CFG based dump. */
4324 check_bb_profile (ENTRY_BLOCK_PTR, file);
4325 if (!ignore_topmost_bind)
4326 fprintf (file, "{\n");
4328 if (any_var && n_basic_blocks)
4329 fprintf (file, "\n");
4331 FOR_EACH_BB (bb)
4332 dump_generic_bb (file, bb, 2, flags);
4334 fprintf (file, "}\n");
4335 check_bb_profile (EXIT_BLOCK_PTR, file);
4337 else
4339 int indent;
4341 /* Make a tree based dump. */
4342 chain = DECL_SAVED_TREE (fn);
4344 if (TREE_CODE (chain) == BIND_EXPR)
4346 if (ignore_topmost_bind)
4348 chain = BIND_EXPR_BODY (chain);
4349 indent = 2;
4351 else
4352 indent = 0;
4354 else
4356 if (!ignore_topmost_bind)
4357 fprintf (file, "{\n");
4358 indent = 2;
4361 if (any_var)
4362 fprintf (file, "\n");
4364 print_generic_stmt_indented (file, chain, flags, indent);
4365 if (ignore_topmost_bind)
4366 fprintf (file, "}\n");
4369 fprintf (file, "\n\n");
4373 /* Pretty print of the loops intermediate representation. */
4374 static void print_loop (FILE *, struct loop *, int);
4375 static void print_pred_bbs (FILE *, edge);
4376 static void print_succ_bbs (FILE *, edge);
4379 /* Print the predecessors indexes of edge E on FILE. */
4381 static void
4382 print_pred_bbs (FILE *file, edge e)
4384 if (e == NULL)
4385 return;
4387 else if (e->pred_next == NULL)
4388 fprintf (file, "bb_%d", e->src->index);
4390 else
4392 fprintf (file, "bb_%d, ", e->src->index);
4393 print_pred_bbs (file, e->pred_next);
4398 /* Print the successors indexes of edge E on FILE. */
4400 static void
4401 print_succ_bbs (FILE *file, edge e)
4403 if (e == NULL)
4404 return;
4405 else if (e->succ_next == NULL)
4406 fprintf (file, "bb_%d", e->dest->index);
4407 else
4409 fprintf (file, "bb_%d, ", e->dest->index);
4410 print_succ_bbs (file, e->succ_next);
4415 /* Pretty print LOOP on FILE, indented INDENT spaces. */
4417 static void
4418 print_loop (FILE *file, struct loop *loop, int indent)
4420 char *s_indent;
4421 basic_block bb;
4423 if (loop == NULL)
4424 return;
4426 s_indent = (char *) alloca ((size_t) indent + 1);
4427 memset ((void *) s_indent, ' ', (size_t) indent);
4428 s_indent[indent] = '\0';
4430 /* Print the loop's header. */
4431 fprintf (file, "%sloop_%d\n", s_indent, loop->num);
4433 /* Print the loop's body. */
4434 fprintf (file, "%s{\n", s_indent);
4435 FOR_EACH_BB (bb)
4436 if (bb->loop_father == loop)
4438 /* Print the basic_block's header. */
4439 fprintf (file, "%s bb_%d (preds = {", s_indent, bb->index);
4440 print_pred_bbs (file, bb->pred);
4441 fprintf (file, "}, succs = {");
4442 print_succ_bbs (file, bb->succ);
4443 fprintf (file, "})\n");
4445 /* Print the basic_block's body. */
4446 fprintf (file, "%s {\n", s_indent);
4447 tree_dump_bb (bb, file, indent + 4);
4448 fprintf (file, "%s }\n", s_indent);
4451 print_loop (file, loop->inner, indent + 2);
4452 fprintf (file, "%s}\n", s_indent);
4453 print_loop (file, loop->next, indent);
4457 /* Follow a CFG edge from the entry point of the program, and on entry
4458 of a loop, pretty print the loop structure on FILE. */
4460 void
4461 print_loop_ir (FILE *file)
4463 basic_block bb;
4465 bb = BASIC_BLOCK (0);
4466 if (bb && bb->loop_father)
4467 print_loop (file, bb->loop_father, 0);
4471 /* Debugging loops structure at tree level. */
4473 void
4474 debug_loop_ir (void)
4476 print_loop_ir (stderr);
4480 /* Return true if BB ends with a call, possibly followed by some
4481 instructions that must stay with the call. Return false,
4482 otherwise. */
4484 static bool
4485 tree_block_ends_with_call_p (basic_block bb)
4487 block_stmt_iterator bsi = bsi_last (bb);
4488 return get_call_expr_in (bsi_stmt (bsi)) != NULL;
4492 /* Return true if BB ends with a conditional branch. Return false,
4493 otherwise. */
4495 static bool
4496 tree_block_ends_with_condjump_p (basic_block bb)
4498 tree stmt = tsi_stmt (bsi_last (bb).tsi);
4499 return (TREE_CODE (stmt) == COND_EXPR);
4503 /* Return true if we need to add fake edge to exit at statement T.
4504 Helper function for tree_flow_call_edges_add. */
4506 static bool
4507 need_fake_edge_p (tree t)
4509 tree call;
4511 /* NORETURN and LONGJMP calls already have an edge to exit.
4512 CONST, PURE and ALWAYS_RETURN calls do not need one.
4513 We don't currently check for CONST and PURE here, although
4514 it would be a good idea, because those attributes are
4515 figured out from the RTL in mark_constant_function, and
4516 the counter incrementation code from -fprofile-arcs
4517 leads to different results from -fbranch-probabilities. */
4518 call = get_call_expr_in (t);
4519 if (call
4520 && !(call_expr_flags (call) &
4521 (ECF_NORETURN | ECF_LONGJMP | ECF_ALWAYS_RETURN)))
4522 return true;
4524 if (TREE_CODE (t) == ASM_EXPR
4525 && (ASM_VOLATILE_P (t) || ASM_INPUT_P (t)))
4526 return true;
4528 return false;
4532 /* Add fake edges to the function exit for any non constant and non
4533 noreturn calls, volatile inline assembly in the bitmap of blocks
4534 specified by BLOCKS or to the whole CFG if BLOCKS is zero. Return
4535 the number of blocks that were split.
4537 The goal is to expose cases in which entering a basic block does
4538 not imply that all subsequent instructions must be executed. */
4540 static int
4541 tree_flow_call_edges_add (sbitmap blocks)
4543 int i;
4544 int blocks_split = 0;
4545 int last_bb = last_basic_block;
4546 bool check_last_block = false;
4548 if (n_basic_blocks == 0)
4549 return 0;
4551 if (! blocks)
4552 check_last_block = true;
4553 else
4554 check_last_block = TEST_BIT (blocks, EXIT_BLOCK_PTR->prev_bb->index);
4556 /* In the last basic block, before epilogue generation, there will be
4557 a fallthru edge to EXIT. Special care is required if the last insn
4558 of the last basic block is a call because make_edge folds duplicate
4559 edges, which would result in the fallthru edge also being marked
4560 fake, which would result in the fallthru edge being removed by
4561 remove_fake_edges, which would result in an invalid CFG.
4563 Moreover, we can't elide the outgoing fake edge, since the block
4564 profiler needs to take this into account in order to solve the minimal
4565 spanning tree in the case that the call doesn't return.
4567 Handle this by adding a dummy instruction in a new last basic block. */
4568 if (check_last_block)
4570 basic_block bb = EXIT_BLOCK_PTR->prev_bb;
4571 block_stmt_iterator bsi = bsi_last (bb);
4572 tree t = NULL_TREE;
4573 if (!bsi_end_p (bsi))
4574 t = bsi_stmt (bsi);
4576 if (need_fake_edge_p (t))
4578 edge e;
4580 for (e = bb->succ; e; e = e->succ_next)
4581 if (e->dest == EXIT_BLOCK_PTR)
4583 bsi_insert_on_edge (e, build_empty_stmt ());
4584 bsi_commit_edge_inserts ((int *)NULL);
4585 break;
4590 /* Now add fake edges to the function exit for any non constant
4591 calls since there is no way that we can determine if they will
4592 return or not... */
4593 for (i = 0; i < last_bb; i++)
4595 basic_block bb = BASIC_BLOCK (i);
4596 block_stmt_iterator bsi;
4597 tree stmt, last_stmt;
4599 if (!bb)
4600 continue;
4602 if (blocks && !TEST_BIT (blocks, i))
4603 continue;
4605 bsi = bsi_last (bb);
4606 if (!bsi_end_p (bsi))
4608 last_stmt = bsi_stmt (bsi);
4611 stmt = bsi_stmt (bsi);
4612 if (need_fake_edge_p (stmt))
4614 edge e;
4615 /* The handling above of the final block before the
4616 epilogue should be enough to verify that there is
4617 no edge to the exit block in CFG already.
4618 Calling make_edge in such case would cause us to
4619 mark that edge as fake and remove it later. */
4620 #ifdef ENABLE_CHECKING
4621 if (stmt == last_stmt)
4622 for (e = bb->succ; e; e = e->succ_next)
4623 if (e->dest == EXIT_BLOCK_PTR)
4624 abort ();
4625 #endif
4627 /* Note that the following may create a new basic block
4628 and renumber the existing basic blocks. */
4629 if (stmt != last_stmt)
4631 e = split_block (bb, stmt);
4632 if (e)
4633 blocks_split++;
4635 make_edge (bb, EXIT_BLOCK_PTR, EDGE_FAKE);
4637 bsi_prev (&bsi);
4639 while (!bsi_end_p (bsi));
4643 if (blocks_split)
4644 verify_flow_info ();
4646 return blocks_split;
4649 bool
4650 tree_purge_dead_eh_edges (basic_block bb)
4652 bool changed = false;
4653 edge e, next;
4654 tree stmt = last_stmt (bb);
4656 if (stmt && tree_can_throw_internal (stmt))
4657 return false;
4659 for (e = bb->succ; e ; e = next)
4661 next = e->succ_next;
4662 if (e->flags & EDGE_EH)
4664 ssa_remove_edge (e);
4665 changed = true;
4669 return changed;
4672 bool
4673 tree_purge_all_dead_eh_edges (bitmap blocks)
4675 bool changed = false;
4676 size_t i;
4678 EXECUTE_IF_SET_IN_BITMAP (blocks, 0, i,
4679 { changed |= tree_purge_dead_eh_edges (BASIC_BLOCK (i)); });
4681 return changed;
4684 struct cfg_hooks tree_cfg_hooks = {
4685 "tree",
4686 tree_verify_flow_info,
4687 tree_dump_bb, /* dump_bb */
4688 create_bb, /* create_basic_block */
4689 tree_redirect_edge_and_branch,/* redirect_edge_and_branch */
4690 tree_redirect_edge_and_branch_force,/* redirect_edge_and_branch_force */
4691 remove_bb, /* delete_basic_block */
4692 tree_split_block, /* split_block */
4693 tree_move_block_after, /* move_block_after */
4694 tree_can_merge_blocks_p, /* can_merge_blocks_p */
4695 tree_merge_blocks, /* merge_blocks */
4696 tree_predict_edge, /* predict_edge */
4697 tree_predicted_by_p, /* predicted_by_p */
4698 tree_can_duplicate_bb_p, /* can_duplicate_block_p */
4699 tree_duplicate_bb, /* duplicate_block */
4700 tree_split_edge, /* split_edge */
4701 tree_make_forwarder_block, /* make_forward_block */
4702 NULL, /* tidy_fallthru_edge */
4703 tree_block_ends_with_call_p, /* block_ends_with_call_p */
4704 tree_block_ends_with_condjump_p, /* block_ends_with_condjump_p */
4705 tree_flow_call_edges_add /* flow_call_edges_add */
4709 /* Split all critical edges. */
4711 static void
4712 split_critical_edges (void)
4714 basic_block bb;
4715 edge e;
4717 FOR_ALL_BB (bb)
4719 for (e = bb->succ; e ; e = e->succ_next)
4720 if (EDGE_CRITICAL_P (e) && !(e->flags & EDGE_ABNORMAL))
4722 split_edge (e);
4727 struct tree_opt_pass pass_split_crit_edges =
4729 "crited", /* name */
4730 NULL, /* gate */
4731 split_critical_edges, /* execute */
4732 NULL, /* sub */
4733 NULL, /* next */
4734 0, /* static_pass_number */
4735 TV_TREE_SPLIT_EDGES, /* tv_id */
4736 PROP_cfg, /* properties required */
4737 PROP_no_crit_edges, /* properties_provided */
4738 0, /* properties_destroyed */
4739 0, /* todo_flags_start */
4740 TODO_dump_func, /* todo_flags_finish */
4744 /* Return EXP if it is a valid GIMPLE rvalue, else gimplify it into
4745 a temporary, make sure and register it to be renamed if necessary,
4746 and finally return the temporary. Put the statements to compute
4747 EXP before the current statement in BSI. */
4749 tree
4750 gimplify_val (block_stmt_iterator *bsi, tree type, tree exp)
4752 tree t, new_stmt, orig_stmt;
4754 if (is_gimple_val (exp))
4755 return exp;
4757 t = make_rename_temp (type, NULL);
4758 new_stmt = build (MODIFY_EXPR, type, t, exp);
4760 orig_stmt = bsi_stmt (*bsi);
4761 SET_EXPR_LOCUS (new_stmt, EXPR_LOCUS (orig_stmt));
4762 TREE_BLOCK (new_stmt) = TREE_BLOCK (orig_stmt);
4764 bsi_insert_before (bsi, new_stmt, BSI_SAME_STMT);
4766 return t;
4769 /* Build a ternary operation and gimplify it. Emit code before BSI.
4770 Return the gimple_val holding the result. */
4772 tree
4773 gimplify_build3 (block_stmt_iterator *bsi, enum tree_code code,
4774 tree type, tree a, tree b, tree c)
4776 tree ret;
4778 ret = fold (build3 (code, type, a, b, c));
4779 STRIP_NOPS (ret);
4781 return gimplify_val (bsi, type, ret);
4784 /* Build a binary operation and gimplify it. Emit code before BSI.
4785 Return the gimple_val holding the result. */
4787 tree
4788 gimplify_build2 (block_stmt_iterator *bsi, enum tree_code code,
4789 tree type, tree a, tree b)
4791 tree ret;
4793 ret = fold (build2 (code, type, a, b));
4794 STRIP_NOPS (ret);
4796 return gimplify_val (bsi, type, ret);
4799 /* Build a unary operation and gimplify it. Emit code before BSI.
4800 Return the gimple_val holding the result. */
4802 tree
4803 gimplify_build1 (block_stmt_iterator *bsi, enum tree_code code, tree type,
4804 tree a)
4806 tree ret;
4808 ret = fold (build1 (code, type, a));
4809 STRIP_NOPS (ret);
4811 return gimplify_val (bsi, type, ret);
4816 /* Emit return warnings. */
4818 static void
4819 execute_warn_function_return (void)
4821 #ifdef USE_MAPPED_LOCATION
4822 source_location location;
4823 #else
4824 location_t *locus;
4825 #endif
4826 tree last;
4827 edge e;
4829 if (warn_missing_noreturn
4830 && !TREE_THIS_VOLATILE (cfun->decl)
4831 && EXIT_BLOCK_PTR->pred == NULL
4832 && !lang_hooks.function.missing_noreturn_ok_p (cfun->decl))
4833 warning ("%Jfunction might be possible candidate for attribute `noreturn'",
4834 cfun->decl);
4836 /* If we have a path to EXIT, then we do return. */
4837 if (TREE_THIS_VOLATILE (cfun->decl)
4838 && EXIT_BLOCK_PTR->pred != NULL)
4840 #ifdef USE_MAPPED_LOCATION
4841 location = UNKNOWN_LOCATION;
4842 #else
4843 locus = NULL;
4844 #endif
4845 for (e = EXIT_BLOCK_PTR->pred; e ; e = e->pred_next)
4847 last = last_stmt (e->src);
4848 if (TREE_CODE (last) == RETURN_EXPR
4849 #ifdef USE_MAPPED_LOCATION
4850 && (location = EXPR_LOCATION (last)) != UNKNOWN_LOCATION)
4851 #else
4852 && (locus = EXPR_LOCUS (last)) != NULL)
4853 #endif
4854 break;
4856 #ifdef USE_MAPPED_LOCATION
4857 if (location == UNKNOWN_LOCATION)
4858 location = cfun->function_end_locus;
4859 warning ("%H`noreturn' function does return", &location);
4860 #else
4861 if (!locus)
4862 locus = &cfun->function_end_locus;
4863 warning ("%H`noreturn' function does return", locus);
4864 #endif
4867 /* If we see "return;" in some basic block, then we do reach the end
4868 without returning a value. */
4869 else if (warn_return_type
4870 && EXIT_BLOCK_PTR->pred != NULL
4871 && !VOID_TYPE_P (TREE_TYPE (TREE_TYPE (cfun->decl))))
4873 for (e = EXIT_BLOCK_PTR->pred; e ; e = e->pred_next)
4875 tree last = last_stmt (e->src);
4876 if (TREE_CODE (last) == RETURN_EXPR
4877 && TREE_OPERAND (last, 0) == NULL)
4879 #ifdef USE_MAPPED_LOCATION
4880 location = EXPR_LOCATION (last);
4881 if (location == UNKNOWN_LOCATION)
4882 location = cfun->function_end_locus;
4883 warning ("%Hcontrol reaches end of non-void function", &location);
4884 #else
4885 locus = EXPR_LOCUS (last);
4886 if (!locus)
4887 locus = &cfun->function_end_locus;
4888 warning ("%Hcontrol reaches end of non-void function", locus);
4889 #endif
4890 break;
4897 /* Given a basic block B which ends with a conditional and has
4898 precisely two successors, determine which of the edges is taken if
4899 the conditional is true and which is taken if the conditional is
4900 false. Set TRUE_EDGE and FALSE_EDGE appropriately. */
4902 void
4903 extract_true_false_edges_from_block (basic_block b,
4904 edge *true_edge,
4905 edge *false_edge)
4907 edge e = b->succ;
4909 if (e->flags & EDGE_TRUE_VALUE)
4911 *true_edge = e;
4912 *false_edge = e->succ_next;
4914 else
4916 *false_edge = e;
4917 *true_edge = e->succ_next;
4921 struct tree_opt_pass pass_warn_function_return =
4923 NULL, /* name */
4924 NULL, /* gate */
4925 execute_warn_function_return, /* execute */
4926 NULL, /* sub */
4927 NULL, /* next */
4928 0, /* static_pass_number */
4929 0, /* tv_id */
4930 PROP_cfg, /* properties_required */
4931 0, /* properties_provided */
4932 0, /* properties_destroyed */
4933 0, /* todo_flags_start */
4934 0 /* todo_flags_finish */
4937 #include "gt-tree-cfg.h"