re PR middle-end/42883 (internal compiler error: in redirect_eh_edge_1, at tree-eh...
[gcc.git] / gcc / tree-cfgcleanup.c
1 /* CFG cleanup for trees.
2 Copyright (C) 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009
3 Free Software Foundation, Inc.
4
5 This file is part of GCC.
6
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 3, or (at your option)
10 any later version.
11
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.
16
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
20
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "tree.h"
26 #include "rtl.h"
27 #include "tm_p.h"
28 #include "hard-reg-set.h"
29 #include "basic-block.h"
30 #include "output.h"
31 #include "toplev.h"
32 #include "flags.h"
33 #include "function.h"
34 #include "expr.h"
35 #include "ggc.h"
36 #include "langhooks.h"
37 #include "diagnostic.h"
38 #include "tree-flow.h"
39 #include "timevar.h"
40 #include "tree-dump.h"
41 #include "tree-pass.h"
42 #include "toplev.h"
43 #include "except.h"
44 #include "cfgloop.h"
45 #include "cfglayout.h"
46 #include "hashtab.h"
47 #include "tree-ssa-propagate.h"
48 #include "tree-scalar-evolution.h"
49
50 /* The set of blocks in that at least one of the following changes happened:
51 -- the statement at the end of the block was changed
52 -- the block was newly created
53 -- the set of the predecessors of the block changed
54 -- the set of the successors of the block changed
55 ??? Maybe we could track these changes separately, since they determine
56 what cleanups it makes sense to try on the block. */
57 bitmap cfgcleanup_altered_bbs;
58
59 /* Remove any fallthru edge from EV. Return true if an edge was removed. */
60
61 static bool
62 remove_fallthru_edge (VEC(edge,gc) *ev)
63 {
64 edge_iterator ei;
65 edge e;
66
67 FOR_EACH_EDGE (e, ei, ev)
68 if ((e->flags & EDGE_FALLTHRU) != 0)
69 {
70 remove_edge_and_dominated_blocks (e);
71 return true;
72 }
73 return false;
74 }
75
76
77 /* Disconnect an unreachable block in the control expression starting
78 at block BB. */
79
80 static bool
81 cleanup_control_expr_graph (basic_block bb, gimple_stmt_iterator gsi)
82 {
83 edge taken_edge;
84 bool retval = false;
85 gimple stmt = gsi_stmt (gsi);
86 tree val;
87
88 if (!single_succ_p (bb))
89 {
90 edge e;
91 edge_iterator ei;
92 bool warned;
93
94 fold_defer_overflow_warnings ();
95 val = gimple_fold (stmt);
96 taken_edge = find_taken_edge (bb, val);
97 if (!taken_edge)
98 {
99 fold_undefer_and_ignore_overflow_warnings ();
100 return false;
101 }
102
103 /* Remove all the edges except the one that is always executed. */
104 warned = false;
105 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
106 {
107 if (e != taken_edge)
108 {
109 if (!warned)
110 {
111 fold_undefer_overflow_warnings
112 (true, stmt, WARN_STRICT_OVERFLOW_CONDITIONAL);
113 warned = true;
114 }
115
116 taken_edge->probability += e->probability;
117 taken_edge->count += e->count;
118 remove_edge_and_dominated_blocks (e);
119 retval = true;
120 }
121 else
122 ei_next (&ei);
123 }
124 if (!warned)
125 fold_undefer_and_ignore_overflow_warnings ();
126 if (taken_edge->probability > REG_BR_PROB_BASE)
127 taken_edge->probability = REG_BR_PROB_BASE;
128 }
129 else
130 taken_edge = single_succ_edge (bb);
131
132 bitmap_set_bit (cfgcleanup_altered_bbs, bb->index);
133 gsi_remove (&gsi, true);
134 taken_edge->flags = EDGE_FALLTHRU;
135
136 return retval;
137 }
138
139 /* Try to remove superfluous control structures in basic block BB. Returns
140 true if anything changes. */
141
142 static bool
143 cleanup_control_flow_bb (basic_block bb)
144 {
145 gimple_stmt_iterator gsi;
146 bool retval = false;
147 gimple stmt;
148
149 /* If the last statement of the block could throw and now cannot,
150 we need to prune cfg. */
151 retval |= gimple_purge_dead_eh_edges (bb);
152
153 gsi = gsi_last_bb (bb);
154 if (gsi_end_p (gsi))
155 return retval;
156
157 stmt = gsi_stmt (gsi);
158
159 if (gimple_code (stmt) == GIMPLE_COND
160 || gimple_code (stmt) == GIMPLE_SWITCH)
161 retval |= cleanup_control_expr_graph (bb, gsi);
162 else if (gimple_code (stmt) == GIMPLE_GOTO
163 && TREE_CODE (gimple_goto_dest (stmt)) == ADDR_EXPR
164 && (TREE_CODE (TREE_OPERAND (gimple_goto_dest (stmt), 0))
165 == LABEL_DECL))
166 {
167 /* If we had a computed goto which has a compile-time determinable
168 destination, then we can eliminate the goto. */
169 edge e;
170 tree label;
171 edge_iterator ei;
172 basic_block target_block;
173
174 /* First look at all the outgoing edges. Delete any outgoing
175 edges which do not go to the right block. For the one
176 edge which goes to the right block, fix up its flags. */
177 label = TREE_OPERAND (gimple_goto_dest (stmt), 0);
178 target_block = label_to_block (label);
179 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
180 {
181 if (e->dest != target_block)
182 remove_edge_and_dominated_blocks (e);
183 else
184 {
185 /* Turn off the EDGE_ABNORMAL flag. */
186 e->flags &= ~EDGE_ABNORMAL;
187
188 /* And set EDGE_FALLTHRU. */
189 e->flags |= EDGE_FALLTHRU;
190 ei_next (&ei);
191 }
192 }
193
194 bitmap_set_bit (cfgcleanup_altered_bbs, bb->index);
195 bitmap_set_bit (cfgcleanup_altered_bbs, target_block->index);
196
197 /* Remove the GOTO_EXPR as it is not needed. The CFG has all the
198 relevant information we need. */
199 gsi_remove (&gsi, true);
200 retval = true;
201 }
202
203 /* Check for indirect calls that have been turned into
204 noreturn calls. */
205 else if (is_gimple_call (stmt)
206 && gimple_call_noreturn_p (stmt)
207 && remove_fallthru_edge (bb->succs))
208 retval = true;
209
210 return retval;
211 }
212
213 /* Return true if basic block BB does nothing except pass control
214 flow to another block and that we can safely insert a label at
215 the start of the successor block.
216
217 As a precondition, we require that BB be not equal to
218 ENTRY_BLOCK_PTR. */
219
220 static bool
221 tree_forwarder_block_p (basic_block bb, bool phi_wanted)
222 {
223 gimple_stmt_iterator gsi;
224
225 /* BB must have a single outgoing edge. */
226 if (single_succ_p (bb) != 1
227 /* If PHI_WANTED is false, BB must not have any PHI nodes.
228 Otherwise, BB must have PHI nodes. */
229 || gimple_seq_empty_p (phi_nodes (bb)) == phi_wanted
230 /* BB may not be a predecessor of EXIT_BLOCK_PTR. */
231 || single_succ (bb) == EXIT_BLOCK_PTR
232 /* Nor should this be an infinite loop. */
233 || single_succ (bb) == bb
234 /* BB may not have an abnormal outgoing edge. */
235 || (single_succ_edge (bb)->flags & EDGE_ABNORMAL))
236 return false;
237
238 #if ENABLE_CHECKING
239 gcc_assert (bb != ENTRY_BLOCK_PTR);
240 #endif
241
242 /* There should not be an edge coming from entry, or an EH edge. */
243 {
244 edge_iterator ei;
245 edge e;
246
247 FOR_EACH_EDGE (e, ei, bb->preds)
248 if (e->src == ENTRY_BLOCK_PTR || (e->flags & EDGE_EH))
249 return false;
250 }
251
252 /* Now walk through the statements backward. We can ignore labels,
253 anything else means this is not a forwarder block. */
254 for (gsi = gsi_last_bb (bb); !gsi_end_p (gsi); gsi_prev (&gsi))
255 {
256 gimple stmt = gsi_stmt (gsi);
257
258 switch (gimple_code (stmt))
259 {
260 case GIMPLE_LABEL:
261 if (DECL_NONLOCAL (gimple_label_label (stmt)))
262 return false;
263 break;
264
265 /* ??? For now, hope there's a corresponding debug
266 assignment at the destination. */
267 case GIMPLE_DEBUG:
268 break;
269
270 default:
271 return false;
272 }
273 }
274
275 if (current_loops)
276 {
277 basic_block dest;
278 /* Protect loop latches, headers and preheaders. */
279 if (bb->loop_father->header == bb)
280 return false;
281 dest = EDGE_SUCC (bb, 0)->dest;
282
283 if (dest->loop_father->header == dest)
284 return false;
285 }
286 return true;
287 }
288
289 /* Return true if BB has at least one abnormal incoming edge. */
290
291 static inline bool
292 has_abnormal_incoming_edge_p (basic_block bb)
293 {
294 edge e;
295 edge_iterator ei;
296
297 FOR_EACH_EDGE (e, ei, bb->preds)
298 if (e->flags & EDGE_ABNORMAL)
299 return true;
300
301 return false;
302 }
303
304 /* If all the PHI nodes in DEST have alternatives for E1 and E2 and
305 those alternatives are equal in each of the PHI nodes, then return
306 true, else return false. */
307
308 static bool
309 phi_alternatives_equal (basic_block dest, edge e1, edge e2)
310 {
311 int n1 = e1->dest_idx;
312 int n2 = e2->dest_idx;
313 gimple_stmt_iterator gsi;
314
315 for (gsi = gsi_start_phis (dest); !gsi_end_p (gsi); gsi_next (&gsi))
316 {
317 gimple phi = gsi_stmt (gsi);
318 tree val1 = gimple_phi_arg_def (phi, n1);
319 tree val2 = gimple_phi_arg_def (phi, n2);
320
321 gcc_assert (val1 != NULL_TREE);
322 gcc_assert (val2 != NULL_TREE);
323
324 if (!operand_equal_for_phi_arg_p (val1, val2))
325 return false;
326 }
327
328 return true;
329 }
330
331 /* Removes forwarder block BB. Returns false if this failed. */
332
333 static bool
334 remove_forwarder_block (basic_block bb)
335 {
336 edge succ = single_succ_edge (bb), e, s;
337 basic_block dest = succ->dest;
338 gimple label;
339 edge_iterator ei;
340 gimple_stmt_iterator gsi, gsi_to;
341
342 /* We check for infinite loops already in tree_forwarder_block_p.
343 However it may happen that the infinite loop is created
344 afterwards due to removal of forwarders. */
345 if (dest == bb)
346 return false;
347
348 /* If the destination block consists of a nonlocal label or is a
349 EH landing pad, do not merge it. */
350 label = first_stmt (dest);
351 if (label
352 && gimple_code (label) == GIMPLE_LABEL
353 && (DECL_NONLOCAL (gimple_label_label (label))
354 || EH_LANDING_PAD_NR (gimple_label_label (label)) != 0))
355 return false;
356
357 /* If there is an abnormal edge to basic block BB, but not into
358 dest, problems might occur during removal of the phi node at out
359 of ssa due to overlapping live ranges of registers.
360
361 If there is an abnormal edge in DEST, the problems would occur
362 anyway since cleanup_dead_labels would then merge the labels for
363 two different eh regions, and rest of exception handling code
364 does not like it.
365
366 So if there is an abnormal edge to BB, proceed only if there is
367 no abnormal edge to DEST and there are no phi nodes in DEST. */
368 if (has_abnormal_incoming_edge_p (bb)
369 && (has_abnormal_incoming_edge_p (dest)
370 || !gimple_seq_empty_p (phi_nodes (dest))))
371 return false;
372
373 /* If there are phi nodes in DEST, and some of the blocks that are
374 predecessors of BB are also predecessors of DEST, check that the
375 phi node arguments match. */
376 if (!gimple_seq_empty_p (phi_nodes (dest)))
377 {
378 FOR_EACH_EDGE (e, ei, bb->preds)
379 {
380 s = find_edge (e->src, dest);
381 if (!s)
382 continue;
383
384 if (!phi_alternatives_equal (dest, succ, s))
385 return false;
386 }
387 }
388
389 /* Redirect the edges. */
390 for (ei = ei_start (bb->preds); (e = ei_safe_edge (ei)); )
391 {
392 bitmap_set_bit (cfgcleanup_altered_bbs, e->src->index);
393
394 if (e->flags & EDGE_ABNORMAL)
395 {
396 /* If there is an abnormal edge, redirect it anyway, and
397 move the labels to the new block to make it legal. */
398 s = redirect_edge_succ_nodup (e, dest);
399 }
400 else
401 s = redirect_edge_and_branch (e, dest);
402
403 if (s == e)
404 {
405 /* Create arguments for the phi nodes, since the edge was not
406 here before. */
407 for (gsi = gsi_start_phis (dest);
408 !gsi_end_p (gsi);
409 gsi_next (&gsi))
410 {
411 gimple phi = gsi_stmt (gsi);
412 source_location l = gimple_phi_arg_location_from_edge (phi, succ);
413 add_phi_arg (phi, gimple_phi_arg_def (phi, succ->dest_idx), s, l);
414 }
415 }
416 }
417
418 /* Move nonlocal labels and computed goto targets as well as user
419 defined labels and labels with an EH landing pad number to the
420 new block, so that the redirection of the abnormal edges works,
421 jump targets end up in a sane place and debug information for
422 labels is retained. */
423 gsi_to = gsi_start_bb (dest);
424 for (gsi = gsi_start_bb (bb); !gsi_end_p (gsi); )
425 {
426 tree decl;
427 label = gsi_stmt (gsi);
428 if (is_gimple_debug (label))
429 break;
430 decl = gimple_label_label (label);
431 if (EH_LANDING_PAD_NR (decl) != 0
432 || DECL_NONLOCAL (decl)
433 || FORCED_LABEL (decl)
434 || !DECL_ARTIFICIAL (decl))
435 {
436 gsi_remove (&gsi, false);
437 gsi_insert_before (&gsi_to, label, GSI_SAME_STMT);
438 }
439 else
440 gsi_next (&gsi);
441 }
442
443 /* Move debug statements if the destination has just a single
444 predecessor. */
445 if (single_pred_p (dest))
446 {
447 gsi_to = gsi_after_labels (dest);
448 for (gsi = gsi_after_labels (bb); !gsi_end_p (gsi); )
449 {
450 if (!is_gimple_debug (gsi_stmt (gsi)))
451 break;
452 gsi_remove (&gsi, false);
453 gsi_insert_before (&gsi_to, label, GSI_SAME_STMT);
454 }
455 }
456
457 bitmap_set_bit (cfgcleanup_altered_bbs, dest->index);
458
459 /* Update the dominators. */
460 if (dom_info_available_p (CDI_DOMINATORS))
461 {
462 basic_block dom, dombb, domdest;
463
464 dombb = get_immediate_dominator (CDI_DOMINATORS, bb);
465 domdest = get_immediate_dominator (CDI_DOMINATORS, dest);
466 if (domdest == bb)
467 {
468 /* Shortcut to avoid calling (relatively expensive)
469 nearest_common_dominator unless necessary. */
470 dom = dombb;
471 }
472 else
473 dom = nearest_common_dominator (CDI_DOMINATORS, domdest, dombb);
474
475 set_immediate_dominator (CDI_DOMINATORS, dest, dom);
476 }
477
478 /* And kill the forwarder block. */
479 delete_basic_block (bb);
480
481 return true;
482 }
483
484 /* Split basic blocks on calls in the middle of a basic block that are now
485 known not to return, and remove the unreachable code. */
486
487 static bool
488 split_bbs_on_noreturn_calls (void)
489 {
490 bool changed = false;
491 gimple stmt;
492 basic_block bb;
493
494 /* Detect cases where a mid-block call is now known not to return. */
495 if (cfun->gimple_df)
496 while (VEC_length (gimple, MODIFIED_NORETURN_CALLS (cfun)))
497 {
498 stmt = VEC_pop (gimple, MODIFIED_NORETURN_CALLS (cfun));
499 bb = gimple_bb (stmt);
500 /* BB might be deleted at this point, so verify first
501 BB is present in the cfg. */
502 if (bb == NULL
503 || bb->index < NUM_FIXED_BLOCKS
504 || bb->index >= n_basic_blocks
505 || BASIC_BLOCK (bb->index) != bb
506 || last_stmt (bb) == stmt
507 || !gimple_call_noreturn_p (stmt))
508 continue;
509
510 changed = true;
511 split_block (bb, stmt);
512 remove_fallthru_edge (bb->succs);
513 }
514
515 return changed;
516 }
517
518 /* If GIMPLE_OMP_RETURN in basic block BB is unreachable, remove it. */
519
520 static bool
521 cleanup_omp_return (basic_block bb)
522 {
523 gimple stmt = last_stmt (bb);
524 basic_block control_bb;
525
526 if (stmt == NULL
527 || gimple_code (stmt) != GIMPLE_OMP_RETURN
528 || !single_pred_p (bb))
529 return false;
530
531 control_bb = single_pred (bb);
532 stmt = last_stmt (control_bb);
533
534 if (stmt == NULL || gimple_code (stmt) != GIMPLE_OMP_SECTIONS_SWITCH)
535 return false;
536
537 /* The block with the control statement normally has two entry edges -- one
538 from entry, one from continue. If continue is removed, return is
539 unreachable, so we remove it here as well. */
540 if (EDGE_COUNT (control_bb->preds) == 2)
541 return false;
542
543 gcc_assert (EDGE_COUNT (control_bb->preds) == 1);
544 remove_edge_and_dominated_blocks (single_pred_edge (bb));
545 return true;
546 }
547
548 /* Tries to cleanup cfg in basic block BB. Returns true if anything
549 changes. */
550
551 static bool
552 cleanup_tree_cfg_bb (basic_block bb)
553 {
554 bool retval = false;
555
556 if (cleanup_omp_return (bb))
557 return true;
558
559 retval = cleanup_control_flow_bb (bb);
560
561 /* Forwarder blocks can carry line number information which is
562 useful when debugging, so we only clean them up when
563 optimizing. */
564 if (optimize > 0
565 && tree_forwarder_block_p (bb, false)
566 && remove_forwarder_block (bb))
567 return true;
568
569 /* Merging the blocks may create new opportunities for folding
570 conditional branches (due to the elimination of single-valued PHI
571 nodes). */
572 if (single_succ_p (bb)
573 && can_merge_blocks_p (bb, single_succ (bb)))
574 {
575 merge_blocks (bb, single_succ (bb));
576 return true;
577 }
578
579 return retval;
580 }
581
582 /* Iterate the cfg cleanups, while anything changes. */
583
584 static bool
585 cleanup_tree_cfg_1 (void)
586 {
587 bool retval = false;
588 basic_block bb;
589 unsigned i, n;
590
591 retval |= split_bbs_on_noreturn_calls ();
592
593 /* Prepare the worklists of altered blocks. */
594 cfgcleanup_altered_bbs = BITMAP_ALLOC (NULL);
595
596 /* During forwarder block cleanup, we may redirect edges out of
597 SWITCH_EXPRs, which can get expensive. So we want to enable
598 recording of edge to CASE_LABEL_EXPR. */
599 start_recording_case_labels ();
600
601 /* Start by iterating over all basic blocks. We cannot use FOR_EACH_BB,
602 since the basic blocks may get removed. */
603 n = last_basic_block;
604 for (i = NUM_FIXED_BLOCKS; i < n; i++)
605 {
606 bb = BASIC_BLOCK (i);
607 if (bb)
608 retval |= cleanup_tree_cfg_bb (bb);
609 }
610
611 /* Now process the altered blocks, as long as any are available. */
612 while (!bitmap_empty_p (cfgcleanup_altered_bbs))
613 {
614 i = bitmap_first_set_bit (cfgcleanup_altered_bbs);
615 bitmap_clear_bit (cfgcleanup_altered_bbs, i);
616 if (i < NUM_FIXED_BLOCKS)
617 continue;
618
619 bb = BASIC_BLOCK (i);
620 if (!bb)
621 continue;
622
623 retval |= cleanup_tree_cfg_bb (bb);
624
625 /* Rerun split_bbs_on_noreturn_calls, in case we have altered any noreturn
626 calls. */
627 retval |= split_bbs_on_noreturn_calls ();
628 }
629
630 end_recording_case_labels ();
631 BITMAP_FREE (cfgcleanup_altered_bbs);
632 return retval;
633 }
634
635
636 /* Remove unreachable blocks and other miscellaneous clean up work.
637 Return true if the flowgraph was modified, false otherwise. */
638
639 static bool
640 cleanup_tree_cfg_noloop (void)
641 {
642 bool changed;
643
644 timevar_push (TV_TREE_CLEANUP_CFG);
645
646 /* Iterate until there are no more cleanups left to do. If any
647 iteration changed the flowgraph, set CHANGED to true.
648
649 If dominance information is available, there cannot be any unreachable
650 blocks. */
651 if (!dom_info_available_p (CDI_DOMINATORS))
652 {
653 changed = delete_unreachable_blocks ();
654 calculate_dominance_info (CDI_DOMINATORS);
655 }
656 else
657 {
658 #ifdef ENABLE_CHECKING
659 verify_dominators (CDI_DOMINATORS);
660 #endif
661 changed = false;
662 }
663
664 changed |= cleanup_tree_cfg_1 ();
665
666 gcc_assert (dom_info_available_p (CDI_DOMINATORS));
667 compact_blocks ();
668
669 #ifdef ENABLE_CHECKING
670 verify_flow_info ();
671 #endif
672
673 timevar_pop (TV_TREE_CLEANUP_CFG);
674
675 if (changed && current_loops)
676 loops_state_set (LOOPS_NEED_FIXUP);
677
678 return changed;
679 }
680
681 /* Repairs loop structures. */
682
683 static void
684 repair_loop_structures (void)
685 {
686 bitmap changed_bbs = BITMAP_ALLOC (NULL);
687 fix_loop_structure (changed_bbs);
688
689 /* This usually does nothing. But sometimes parts of cfg that originally
690 were inside a loop get out of it due to edge removal (since they
691 become unreachable by back edges from latch). */
692 if (loops_state_satisfies_p (LOOP_CLOSED_SSA))
693 rewrite_into_loop_closed_ssa (changed_bbs, TODO_update_ssa);
694
695 BITMAP_FREE (changed_bbs);
696
697 #ifdef ENABLE_CHECKING
698 verify_loop_structure ();
699 #endif
700 scev_reset ();
701
702 loops_state_clear (LOOPS_NEED_FIXUP);
703 }
704
705 /* Cleanup cfg and repair loop structures. */
706
707 bool
708 cleanup_tree_cfg (void)
709 {
710 bool changed = cleanup_tree_cfg_noloop ();
711
712 if (current_loops != NULL
713 && loops_state_satisfies_p (LOOPS_NEED_FIXUP))
714 repair_loop_structures ();
715
716 return changed;
717 }
718
719 /* Merge the PHI nodes at BB into those at BB's sole successor. */
720
721 static void
722 remove_forwarder_block_with_phi (basic_block bb)
723 {
724 edge succ = single_succ_edge (bb);
725 basic_block dest = succ->dest;
726 gimple label;
727 basic_block dombb, domdest, dom;
728
729 /* We check for infinite loops already in tree_forwarder_block_p.
730 However it may happen that the infinite loop is created
731 afterwards due to removal of forwarders. */
732 if (dest == bb)
733 return;
734
735 /* If the destination block consists of a nonlocal label, do not
736 merge it. */
737 label = first_stmt (dest);
738 if (label
739 && gimple_code (label) == GIMPLE_LABEL
740 && DECL_NONLOCAL (gimple_label_label (label)))
741 return;
742
743 /* Redirect each incoming edge to BB to DEST. */
744 while (EDGE_COUNT (bb->preds) > 0)
745 {
746 edge e = EDGE_PRED (bb, 0), s;
747 gimple_stmt_iterator gsi;
748
749 s = find_edge (e->src, dest);
750 if (s)
751 {
752 /* We already have an edge S from E->src to DEST. If S and
753 E->dest's sole successor edge have the same PHI arguments
754 at DEST, redirect S to DEST. */
755 if (phi_alternatives_equal (dest, s, succ))
756 {
757 e = redirect_edge_and_branch (e, dest);
758 redirect_edge_var_map_clear (e);
759 continue;
760 }
761
762 /* PHI arguments are different. Create a forwarder block by
763 splitting E so that we can merge PHI arguments on E to
764 DEST. */
765 e = single_succ_edge (split_edge (e));
766 }
767
768 s = redirect_edge_and_branch (e, dest);
769
770 /* redirect_edge_and_branch must not create a new edge. */
771 gcc_assert (s == e);
772
773 /* Add to the PHI nodes at DEST each PHI argument removed at the
774 destination of E. */
775 for (gsi = gsi_start_phis (dest);
776 !gsi_end_p (gsi);
777 gsi_next (&gsi))
778 {
779 gimple phi = gsi_stmt (gsi);
780 tree def = gimple_phi_arg_def (phi, succ->dest_idx);
781 source_location locus = gimple_phi_arg_location_from_edge (phi, succ);
782
783 if (TREE_CODE (def) == SSA_NAME)
784 {
785 edge_var_map_vector head;
786 edge_var_map *vm;
787 size_t i;
788
789 /* If DEF is one of the results of PHI nodes removed during
790 redirection, replace it with the PHI argument that used
791 to be on E. */
792 head = redirect_edge_var_map_vector (e);
793 for (i = 0; VEC_iterate (edge_var_map, head, i, vm); ++i)
794 {
795 tree old_arg = redirect_edge_var_map_result (vm);
796 tree new_arg = redirect_edge_var_map_def (vm);
797
798 if (def == old_arg)
799 {
800 def = new_arg;
801 locus = redirect_edge_var_map_location (vm);
802 break;
803 }
804 }
805 }
806
807 add_phi_arg (phi, def, s, locus);
808 }
809
810 redirect_edge_var_map_clear (e);
811 }
812
813 /* Update the dominators. */
814 dombb = get_immediate_dominator (CDI_DOMINATORS, bb);
815 domdest = get_immediate_dominator (CDI_DOMINATORS, dest);
816 if (domdest == bb)
817 {
818 /* Shortcut to avoid calling (relatively expensive)
819 nearest_common_dominator unless necessary. */
820 dom = dombb;
821 }
822 else
823 dom = nearest_common_dominator (CDI_DOMINATORS, domdest, dombb);
824
825 set_immediate_dominator (CDI_DOMINATORS, dest, dom);
826
827 /* Remove BB since all of BB's incoming edges have been redirected
828 to DEST. */
829 delete_basic_block (bb);
830 }
831
832 /* This pass merges PHI nodes if one feeds into another. For example,
833 suppose we have the following:
834
835 goto <bb 9> (<L9>);
836
837 <L8>:;
838 tem_17 = foo ();
839
840 # tem_6 = PHI <tem_17(8), tem_23(7)>;
841 <L9>:;
842
843 # tem_3 = PHI <tem_6(9), tem_2(5)>;
844 <L10>:;
845
846 Then we merge the first PHI node into the second one like so:
847
848 goto <bb 9> (<L10>);
849
850 <L8>:;
851 tem_17 = foo ();
852
853 # tem_3 = PHI <tem_23(7), tem_2(5), tem_17(8)>;
854 <L10>:;
855 */
856
857 static unsigned int
858 merge_phi_nodes (void)
859 {
860 basic_block *worklist = XNEWVEC (basic_block, n_basic_blocks);
861 basic_block *current = worklist;
862 basic_block bb;
863
864 calculate_dominance_info (CDI_DOMINATORS);
865
866 /* Find all PHI nodes that we may be able to merge. */
867 FOR_EACH_BB (bb)
868 {
869 basic_block dest;
870
871 /* Look for a forwarder block with PHI nodes. */
872 if (!tree_forwarder_block_p (bb, true))
873 continue;
874
875 dest = single_succ (bb);
876
877 /* We have to feed into another basic block with PHI
878 nodes. */
879 if (gimple_seq_empty_p (phi_nodes (dest))
880 /* We don't want to deal with a basic block with
881 abnormal edges. */
882 || has_abnormal_incoming_edge_p (bb))
883 continue;
884
885 if (!dominated_by_p (CDI_DOMINATORS, dest, bb))
886 {
887 /* If BB does not dominate DEST, then the PHI nodes at
888 DEST must be the only users of the results of the PHI
889 nodes at BB. */
890 *current++ = bb;
891 }
892 else
893 {
894 gimple_stmt_iterator gsi;
895 unsigned int dest_idx = single_succ_edge (bb)->dest_idx;
896
897 /* BB dominates DEST. There may be many users of the PHI
898 nodes in BB. However, there is still a trivial case we
899 can handle. If the result of every PHI in BB is used
900 only by a PHI in DEST, then we can trivially merge the
901 PHI nodes from BB into DEST. */
902 for (gsi = gsi_start_phis (bb); !gsi_end_p (gsi);
903 gsi_next (&gsi))
904 {
905 gimple phi = gsi_stmt (gsi);
906 tree result = gimple_phi_result (phi);
907 use_operand_p imm_use;
908 gimple use_stmt;
909
910 /* If the PHI's result is never used, then we can just
911 ignore it. */
912 if (has_zero_uses (result))
913 continue;
914
915 /* Get the single use of the result of this PHI node. */
916 if (!single_imm_use (result, &imm_use, &use_stmt)
917 || gimple_code (use_stmt) != GIMPLE_PHI
918 || gimple_bb (use_stmt) != dest
919 || gimple_phi_arg_def (use_stmt, dest_idx) != result)
920 break;
921 }
922
923 /* If the loop above iterated through all the PHI nodes
924 in BB, then we can merge the PHIs from BB into DEST. */
925 if (gsi_end_p (gsi))
926 *current++ = bb;
927 }
928 }
929
930 /* Now let's drain WORKLIST. */
931 while (current != worklist)
932 {
933 bb = *--current;
934 remove_forwarder_block_with_phi (bb);
935 }
936
937 free (worklist);
938 return 0;
939 }
940
941 static bool
942 gate_merge_phi (void)
943 {
944 return 1;
945 }
946
947 struct gimple_opt_pass pass_merge_phi =
948 {
949 {
950 GIMPLE_PASS,
951 "mergephi", /* name */
952 gate_merge_phi, /* gate */
953 merge_phi_nodes, /* execute */
954 NULL, /* sub */
955 NULL, /* next */
956 0, /* static_pass_number */
957 TV_TREE_MERGE_PHI, /* tv_id */
958 PROP_cfg | PROP_ssa, /* properties_required */
959 0, /* properties_provided */
960 0, /* properties_destroyed */
961 0, /* todo_flags_start */
962 TODO_dump_func | TODO_ggc_collect /* todo_flags_finish */
963 | TODO_verify_ssa
964 }
965 };