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[official-gcc.git] / gcc / tree-cfgcleanup.c
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1 /* CFG cleanup for trees.
2 Copyright (C) 2001-2016 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3, or (at your option)
9 any later version.
11 GCC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
20 #include "config.h"
21 #include "system.h"
22 #include "coretypes.h"
23 #include "backend.h"
24 #include "rtl.h"
25 #include "tree.h"
26 #include "gimple.h"
27 #include "cfghooks.h"
28 #include "tree-pass.h"
29 #include "ssa.h"
30 #include "diagnostic-core.h"
31 #include "fold-const.h"
32 #include "cfganal.h"
33 #include "cfgcleanup.h"
34 #include "tree-eh.h"
35 #include "gimplify.h"
36 #include "gimple-iterator.h"
37 #include "tree-cfg.h"
38 #include "tree-ssa-loop-manip.h"
39 #include "tree-dfa.h"
40 #include "tree-ssa.h"
41 #include "cfgloop.h"
42 #include "tree-scalar-evolution.h"
43 #include "gimple-match.h"
44 #include "gimple-fold.h"
47 /* The set of blocks in that at least one of the following changes happened:
48 -- the statement at the end of the block was changed
49 -- the block was newly created
50 -- the set of the predecessors of the block changed
51 -- the set of the successors of the block changed
52 ??? Maybe we could track these changes separately, since they determine
53 what cleanups it makes sense to try on the block. */
54 bitmap cfgcleanup_altered_bbs;
56 /* Remove any fallthru edge from EV. Return true if an edge was removed. */
58 static bool
59 remove_fallthru_edge (vec<edge, va_gc> *ev)
61 edge_iterator ei;
62 edge e;
64 FOR_EACH_EDGE (e, ei, ev)
65 if ((e->flags & EDGE_FALLTHRU) != 0)
67 if (e->flags & EDGE_COMPLEX)
68 e->flags &= ~EDGE_FALLTHRU;
69 else
70 remove_edge_and_dominated_blocks (e);
71 return true;
73 return false;
77 /* Disconnect an unreachable block in the control expression starting
78 at block BB. */
80 static bool
81 cleanup_control_expr_graph (basic_block bb, gimple_stmt_iterator gsi,
82 bool first_p)
84 edge taken_edge;
85 bool retval = false;
86 gimple *stmt = gsi_stmt (gsi);
88 if (!single_succ_p (bb))
90 edge e;
91 edge_iterator ei;
92 bool warned;
93 tree val = NULL_TREE;
95 fold_defer_overflow_warnings ();
96 switch (gimple_code (stmt))
98 case GIMPLE_COND:
99 /* During a first iteration on the CFG only remove trivially
100 dead edges but mark other conditions for re-evaluation. */
101 if (first_p)
103 val = const_binop (gimple_cond_code (stmt), boolean_type_node,
104 gimple_cond_lhs (stmt),
105 gimple_cond_rhs (stmt));
106 if (! val)
107 bitmap_set_bit (cfgcleanup_altered_bbs, bb->index);
109 else
111 code_helper rcode;
112 tree ops[3] = {};
113 if (gimple_simplify (stmt, &rcode, ops, NULL, no_follow_ssa_edges,
114 no_follow_ssa_edges)
115 && rcode == INTEGER_CST)
116 val = ops[0];
118 break;
120 case GIMPLE_SWITCH:
121 val = gimple_switch_index (as_a <gswitch *> (stmt));
122 break;
124 default:
127 taken_edge = find_taken_edge (bb, val);
128 if (!taken_edge)
130 fold_undefer_and_ignore_overflow_warnings ();
131 return false;
134 /* Remove all the edges except the one that is always executed. */
135 warned = false;
136 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
138 if (e != taken_edge)
140 if (!warned)
142 fold_undefer_overflow_warnings
143 (true, stmt, WARN_STRICT_OVERFLOW_CONDITIONAL);
144 warned = true;
147 taken_edge->probability += e->probability;
148 taken_edge->count += e->count;
149 remove_edge_and_dominated_blocks (e);
150 retval = true;
152 else
153 ei_next (&ei);
155 if (!warned)
156 fold_undefer_and_ignore_overflow_warnings ();
157 if (taken_edge->probability > REG_BR_PROB_BASE)
158 taken_edge->probability = REG_BR_PROB_BASE;
160 else
161 taken_edge = single_succ_edge (bb);
163 bitmap_set_bit (cfgcleanup_altered_bbs, bb->index);
164 gsi_remove (&gsi, true);
165 taken_edge->flags = EDGE_FALLTHRU;
167 return retval;
170 /* Cleanup the GF_CALL_CTRL_ALTERING flag according to
171 to updated gimple_call_flags. */
173 static void
174 cleanup_call_ctrl_altering_flag (gimple *bb_end)
176 if (!is_gimple_call (bb_end)
177 || !gimple_call_ctrl_altering_p (bb_end))
178 return;
180 int flags = gimple_call_flags (bb_end);
181 if (((flags & (ECF_CONST | ECF_PURE))
182 && !(flags & ECF_LOOPING_CONST_OR_PURE))
183 || (flags & ECF_LEAF))
184 gimple_call_set_ctrl_altering (bb_end, false);
187 /* Try to remove superfluous control structures in basic block BB. Returns
188 true if anything changes. */
190 static bool
191 cleanup_control_flow_bb (basic_block bb, bool first_p)
193 gimple_stmt_iterator gsi;
194 bool retval = false;
195 gimple *stmt;
197 /* If the last statement of the block could throw and now cannot,
198 we need to prune cfg. */
199 retval |= gimple_purge_dead_eh_edges (bb);
201 gsi = gsi_last_nondebug_bb (bb);
202 if (gsi_end_p (gsi))
203 return retval;
205 stmt = gsi_stmt (gsi);
207 /* Try to cleanup ctrl altering flag for call which ends bb. */
208 cleanup_call_ctrl_altering_flag (stmt);
210 if (gimple_code (stmt) == GIMPLE_COND
211 || gimple_code (stmt) == GIMPLE_SWITCH)
213 gcc_checking_assert (gsi_stmt (gsi_last_bb (bb)) == stmt);
214 retval |= cleanup_control_expr_graph (bb, gsi, first_p);
216 else if (gimple_code (stmt) == GIMPLE_GOTO
217 && TREE_CODE (gimple_goto_dest (stmt)) == ADDR_EXPR
218 && (TREE_CODE (TREE_OPERAND (gimple_goto_dest (stmt), 0))
219 == LABEL_DECL))
221 /* If we had a computed goto which has a compile-time determinable
222 destination, then we can eliminate the goto. */
223 edge e;
224 tree label;
225 edge_iterator ei;
226 basic_block target_block;
228 gcc_checking_assert (gsi_stmt (gsi_last_bb (bb)) == stmt);
229 /* First look at all the outgoing edges. Delete any outgoing
230 edges which do not go to the right block. For the one
231 edge which goes to the right block, fix up its flags. */
232 label = TREE_OPERAND (gimple_goto_dest (stmt), 0);
233 target_block = label_to_block (label);
234 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
236 if (e->dest != target_block)
237 remove_edge_and_dominated_blocks (e);
238 else
240 /* Turn off the EDGE_ABNORMAL flag. */
241 e->flags &= ~EDGE_ABNORMAL;
243 /* And set EDGE_FALLTHRU. */
244 e->flags |= EDGE_FALLTHRU;
245 ei_next (&ei);
249 bitmap_set_bit (cfgcleanup_altered_bbs, bb->index);
250 bitmap_set_bit (cfgcleanup_altered_bbs, target_block->index);
252 /* Remove the GOTO_EXPR as it is not needed. The CFG has all the
253 relevant information we need. */
254 gsi_remove (&gsi, true);
255 retval = true;
258 /* Check for indirect calls that have been turned into
259 noreturn calls. */
260 else if (is_gimple_call (stmt)
261 && gimple_call_noreturn_p (stmt))
263 /* If there are debug stmts after the noreturn call, remove them
264 now, they should be all unreachable anyway. */
265 for (gsi_next (&gsi); !gsi_end_p (gsi); )
266 gsi_remove (&gsi, true);
267 if (remove_fallthru_edge (bb->succs))
268 retval = true;
271 return retval;
274 /* Return true if basic block BB does nothing except pass control
275 flow to another block and that we can safely insert a label at
276 the start of the successor block.
278 As a precondition, we require that BB be not equal to
279 the entry block. */
281 static bool
282 tree_forwarder_block_p (basic_block bb, bool phi_wanted)
284 gimple_stmt_iterator gsi;
285 location_t locus;
287 /* BB must have a single outgoing edge. */
288 if (single_succ_p (bb) != 1
289 /* If PHI_WANTED is false, BB must not have any PHI nodes.
290 Otherwise, BB must have PHI nodes. */
291 || gimple_seq_empty_p (phi_nodes (bb)) == phi_wanted
292 /* BB may not be a predecessor of the exit block. */
293 || single_succ (bb) == EXIT_BLOCK_PTR_FOR_FN (cfun)
294 /* Nor should this be an infinite loop. */
295 || single_succ (bb) == bb
296 /* BB may not have an abnormal outgoing edge. */
297 || (single_succ_edge (bb)->flags & EDGE_ABNORMAL))
298 return false;
300 gcc_checking_assert (bb != ENTRY_BLOCK_PTR_FOR_FN (cfun));
302 locus = single_succ_edge (bb)->goto_locus;
304 /* There should not be an edge coming from entry, or an EH edge. */
306 edge_iterator ei;
307 edge e;
309 FOR_EACH_EDGE (e, ei, bb->preds)
310 if (e->src == ENTRY_BLOCK_PTR_FOR_FN (cfun) || (e->flags & EDGE_EH))
311 return false;
312 /* If goto_locus of any of the edges differs, prevent removing
313 the forwarder block for -O0. */
314 else if (optimize == 0 && e->goto_locus != locus)
315 return false;
318 /* Now walk through the statements backward. We can ignore labels,
319 anything else means this is not a forwarder block. */
320 for (gsi = gsi_last_bb (bb); !gsi_end_p (gsi); gsi_prev (&gsi))
322 gimple *stmt = gsi_stmt (gsi);
324 switch (gimple_code (stmt))
326 case GIMPLE_LABEL:
327 if (DECL_NONLOCAL (gimple_label_label (as_a <glabel *> (stmt))))
328 return false;
329 if (optimize == 0 && gimple_location (stmt) != locus)
330 return false;
331 break;
333 /* ??? For now, hope there's a corresponding debug
334 assignment at the destination. */
335 case GIMPLE_DEBUG:
336 break;
338 default:
339 return false;
343 if (current_loops)
345 basic_block dest;
346 /* Protect loop headers. */
347 if (bb_loop_header_p (bb))
348 return false;
350 dest = EDGE_SUCC (bb, 0)->dest;
351 /* Protect loop preheaders and latches if requested. */
352 if (dest->loop_father->header == dest)
354 if (bb->loop_father == dest->loop_father)
356 if (loops_state_satisfies_p (LOOPS_HAVE_SIMPLE_LATCHES))
357 return false;
358 /* If bb doesn't have a single predecessor we'd make this
359 loop have multiple latches. Don't do that if that
360 would in turn require disambiguating them. */
361 return (single_pred_p (bb)
362 || loops_state_satisfies_p
363 (LOOPS_MAY_HAVE_MULTIPLE_LATCHES));
365 else if (bb->loop_father == loop_outer (dest->loop_father))
366 return !loops_state_satisfies_p (LOOPS_HAVE_PREHEADERS);
367 /* Always preserve other edges into loop headers that are
368 not simple latches or preheaders. */
369 return false;
373 return true;
376 /* If all the PHI nodes in DEST have alternatives for E1 and E2 and
377 those alternatives are equal in each of the PHI nodes, then return
378 true, else return false. */
380 static bool
381 phi_alternatives_equal (basic_block dest, edge e1, edge e2)
383 int n1 = e1->dest_idx;
384 int n2 = e2->dest_idx;
385 gphi_iterator gsi;
387 for (gsi = gsi_start_phis (dest); !gsi_end_p (gsi); gsi_next (&gsi))
389 gphi *phi = gsi.phi ();
390 tree val1 = gimple_phi_arg_def (phi, n1);
391 tree val2 = gimple_phi_arg_def (phi, n2);
393 gcc_assert (val1 != NULL_TREE);
394 gcc_assert (val2 != NULL_TREE);
396 if (!operand_equal_for_phi_arg_p (val1, val2))
397 return false;
400 return true;
403 /* Removes forwarder block BB. Returns false if this failed. */
405 static bool
406 remove_forwarder_block (basic_block bb)
408 edge succ = single_succ_edge (bb), e, s;
409 basic_block dest = succ->dest;
410 gimple *label;
411 edge_iterator ei;
412 gimple_stmt_iterator gsi, gsi_to;
413 bool can_move_debug_stmts;
415 /* We check for infinite loops already in tree_forwarder_block_p.
416 However it may happen that the infinite loop is created
417 afterwards due to removal of forwarders. */
418 if (dest == bb)
419 return false;
421 /* If the destination block consists of a nonlocal label or is a
422 EH landing pad, do not merge it. */
423 label = first_stmt (dest);
424 if (label)
425 if (glabel *label_stmt = dyn_cast <glabel *> (label))
426 if (DECL_NONLOCAL (gimple_label_label (label_stmt))
427 || EH_LANDING_PAD_NR (gimple_label_label (label_stmt)) != 0)
428 return false;
430 /* If there is an abnormal edge to basic block BB, but not into
431 dest, problems might occur during removal of the phi node at out
432 of ssa due to overlapping live ranges of registers.
434 If there is an abnormal edge in DEST, the problems would occur
435 anyway since cleanup_dead_labels would then merge the labels for
436 two different eh regions, and rest of exception handling code
437 does not like it.
439 So if there is an abnormal edge to BB, proceed only if there is
440 no abnormal edge to DEST and there are no phi nodes in DEST. */
441 if (bb_has_abnormal_pred (bb)
442 && (bb_has_abnormal_pred (dest)
443 || !gimple_seq_empty_p (phi_nodes (dest))))
444 return false;
446 /* If there are phi nodes in DEST, and some of the blocks that are
447 predecessors of BB are also predecessors of DEST, check that the
448 phi node arguments match. */
449 if (!gimple_seq_empty_p (phi_nodes (dest)))
451 FOR_EACH_EDGE (e, ei, bb->preds)
453 s = find_edge (e->src, dest);
454 if (!s)
455 continue;
457 if (!phi_alternatives_equal (dest, succ, s))
458 return false;
462 can_move_debug_stmts = MAY_HAVE_DEBUG_STMTS && single_pred_p (dest);
464 basic_block pred = NULL;
465 if (single_pred_p (bb))
466 pred = single_pred (bb);
468 /* Redirect the edges. */
469 for (ei = ei_start (bb->preds); (e = ei_safe_edge (ei)); )
471 bitmap_set_bit (cfgcleanup_altered_bbs, e->src->index);
473 if (e->flags & EDGE_ABNORMAL)
475 /* If there is an abnormal edge, redirect it anyway, and
476 move the labels to the new block to make it legal. */
477 s = redirect_edge_succ_nodup (e, dest);
479 else
480 s = redirect_edge_and_branch (e, dest);
482 if (s == e)
484 /* Create arguments for the phi nodes, since the edge was not
485 here before. */
486 for (gphi_iterator psi = gsi_start_phis (dest);
487 !gsi_end_p (psi);
488 gsi_next (&psi))
490 gphi *phi = psi.phi ();
491 source_location l = gimple_phi_arg_location_from_edge (phi, succ);
492 tree def = gimple_phi_arg_def (phi, succ->dest_idx);
493 add_phi_arg (phi, unshare_expr (def), s, l);
498 /* Move nonlocal labels and computed goto targets as well as user
499 defined labels and labels with an EH landing pad number to the
500 new block, so that the redirection of the abnormal edges works,
501 jump targets end up in a sane place and debug information for
502 labels is retained. */
503 gsi_to = gsi_start_bb (dest);
504 for (gsi = gsi_start_bb (bb); !gsi_end_p (gsi); )
506 tree decl;
507 label = gsi_stmt (gsi);
508 if (is_gimple_debug (label))
509 break;
510 decl = gimple_label_label (as_a <glabel *> (label));
511 if (EH_LANDING_PAD_NR (decl) != 0
512 || DECL_NONLOCAL (decl)
513 || FORCED_LABEL (decl)
514 || !DECL_ARTIFICIAL (decl))
516 gsi_remove (&gsi, false);
517 gsi_insert_before (&gsi_to, label, GSI_SAME_STMT);
519 else
520 gsi_next (&gsi);
523 /* Move debug statements if the destination has a single predecessor. */
524 if (can_move_debug_stmts)
526 gsi_to = gsi_after_labels (dest);
527 for (gsi = gsi_after_labels (bb); !gsi_end_p (gsi); )
529 gimple *debug = gsi_stmt (gsi);
530 if (!is_gimple_debug (debug))
531 break;
532 gsi_remove (&gsi, false);
533 gsi_insert_before (&gsi_to, debug, GSI_SAME_STMT);
537 bitmap_set_bit (cfgcleanup_altered_bbs, dest->index);
539 /* Update the dominators. */
540 if (dom_info_available_p (CDI_DOMINATORS))
542 basic_block dom, dombb, domdest;
544 dombb = get_immediate_dominator (CDI_DOMINATORS, bb);
545 domdest = get_immediate_dominator (CDI_DOMINATORS, dest);
546 if (domdest == bb)
548 /* Shortcut to avoid calling (relatively expensive)
549 nearest_common_dominator unless necessary. */
550 dom = dombb;
552 else
553 dom = nearest_common_dominator (CDI_DOMINATORS, domdest, dombb);
555 set_immediate_dominator (CDI_DOMINATORS, dest, dom);
558 /* Adjust latch infomation of BB's parent loop as otherwise
559 the cfg hook has a hard time not to kill the loop. */
560 if (current_loops && bb->loop_father->latch == bb)
561 bb->loop_father->latch = pred;
563 /* And kill the forwarder block. */
564 delete_basic_block (bb);
566 return true;
569 /* STMT is a call that has been discovered noreturn. Split the
570 block to prepare fixing up the CFG and remove LHS.
571 Return true if cleanup-cfg needs to run. */
573 bool
574 fixup_noreturn_call (gimple *stmt)
576 basic_block bb = gimple_bb (stmt);
577 bool changed = false;
579 if (gimple_call_builtin_p (stmt, BUILT_IN_RETURN))
580 return false;
582 /* First split basic block if stmt is not last. */
583 if (stmt != gsi_stmt (gsi_last_bb (bb)))
585 if (stmt == gsi_stmt (gsi_last_nondebug_bb (bb)))
587 /* Don't split if there are only debug stmts
588 after stmt, that can result in -fcompare-debug
589 failures. Remove the debug stmts instead,
590 they should be all unreachable anyway. */
591 gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
592 for (gsi_next (&gsi); !gsi_end_p (gsi); )
593 gsi_remove (&gsi, true);
595 else
597 split_block (bb, stmt);
598 changed = true;
602 /* If there is an LHS, remove it, but only if its type has fixed size.
603 The LHS will need to be recreated during RTL expansion and creating
604 temporaries of variable-sized types is not supported. Also don't
605 do this with TREE_ADDRESSABLE types, as assign_temp will abort. */
606 tree lhs = gimple_call_lhs (stmt);
607 if (should_remove_lhs_p (lhs))
609 gimple_call_set_lhs (stmt, NULL_TREE);
611 /* We need to fix up the SSA name to avoid checking errors. */
612 if (TREE_CODE (lhs) == SSA_NAME)
614 tree new_var = create_tmp_reg (TREE_TYPE (lhs));
615 SET_SSA_NAME_VAR_OR_IDENTIFIER (lhs, new_var);
616 SSA_NAME_DEF_STMT (lhs) = gimple_build_nop ();
617 set_ssa_default_def (cfun, new_var, lhs);
620 update_stmt (stmt);
623 /* Mark the call as altering control flow. */
624 if (!gimple_call_ctrl_altering_p (stmt))
626 gimple_call_set_ctrl_altering (stmt, true);
627 changed = true;
630 return changed;
634 /* Tries to cleanup cfg in basic block BB. Returns true if anything
635 changes. */
637 static bool
638 cleanup_tree_cfg_bb (basic_block bb)
640 if (tree_forwarder_block_p (bb, false)
641 && remove_forwarder_block (bb))
642 return true;
644 /* Merging the blocks may create new opportunities for folding
645 conditional branches (due to the elimination of single-valued PHI
646 nodes). */
647 if (single_succ_p (bb)
648 && can_merge_blocks_p (bb, single_succ (bb)))
650 /* If there is a merge opportunity with the predecessor
651 do nothing now but wait until we process the predecessor.
652 This happens when we visit BBs in a non-optimal order and
653 avoids quadratic behavior with adjusting stmts BB pointer. */
654 if (single_pred_p (bb)
655 && can_merge_blocks_p (single_pred (bb), bb))
657 else
659 merge_blocks (bb, single_succ (bb));
660 return true;
664 return false;
667 /* Iterate the cfg cleanups, while anything changes. */
669 static bool
670 cleanup_tree_cfg_1 (void)
672 bool retval = false;
673 basic_block bb;
674 unsigned i, n;
676 /* Prepare the worklists of altered blocks. */
677 cfgcleanup_altered_bbs = BITMAP_ALLOC (NULL);
679 /* During forwarder block cleanup, we may redirect edges out of
680 SWITCH_EXPRs, which can get expensive. So we want to enable
681 recording of edge to CASE_LABEL_EXPR. */
682 start_recording_case_labels ();
684 /* We cannot use FOR_EACH_BB_FN for the BB iterations below
685 since the basic blocks may get removed. */
687 /* Start by iterating over all basic blocks looking for edge removal
688 opportunities. Do this first because incoming SSA form may be
689 invalid and we want to avoid performing SSA related tasks such
690 as propgating out a PHI node during BB merging in that state. */
691 n = last_basic_block_for_fn (cfun);
692 for (i = NUM_FIXED_BLOCKS; i < n; i++)
694 bb = BASIC_BLOCK_FOR_FN (cfun, i);
695 if (bb)
696 retval |= cleanup_control_flow_bb (bb, true);
699 /* After doing the above SSA form should be valid (or an update SSA
700 should be required). */
702 /* Continue by iterating over all basic blocks looking for BB merging
703 opportunities. */
704 n = last_basic_block_for_fn (cfun);
705 for (i = NUM_FIXED_BLOCKS; i < n; i++)
707 bb = BASIC_BLOCK_FOR_FN (cfun, i);
708 if (bb)
709 retval |= cleanup_tree_cfg_bb (bb);
712 /* Now process the altered blocks, as long as any are available. */
713 while (!bitmap_empty_p (cfgcleanup_altered_bbs))
715 i = bitmap_first_set_bit (cfgcleanup_altered_bbs);
716 bitmap_clear_bit (cfgcleanup_altered_bbs, i);
717 if (i < NUM_FIXED_BLOCKS)
718 continue;
720 bb = BASIC_BLOCK_FOR_FN (cfun, i);
721 if (!bb)
722 continue;
724 retval |= cleanup_control_flow_bb (bb, false);
725 retval |= cleanup_tree_cfg_bb (bb);
728 end_recording_case_labels ();
729 BITMAP_FREE (cfgcleanup_altered_bbs);
730 return retval;
734 /* Remove unreachable blocks and other miscellaneous clean up work.
735 Return true if the flowgraph was modified, false otherwise. */
737 static bool
738 cleanup_tree_cfg_noloop (void)
740 bool changed;
742 timevar_push (TV_TREE_CLEANUP_CFG);
744 /* Iterate until there are no more cleanups left to do. If any
745 iteration changed the flowgraph, set CHANGED to true.
747 If dominance information is available, there cannot be any unreachable
748 blocks. */
749 if (!dom_info_available_p (CDI_DOMINATORS))
751 changed = delete_unreachable_blocks ();
752 calculate_dominance_info (CDI_DOMINATORS);
754 else
756 checking_verify_dominators (CDI_DOMINATORS);
757 changed = false;
760 changed |= cleanup_tree_cfg_1 ();
762 gcc_assert (dom_info_available_p (CDI_DOMINATORS));
763 compact_blocks ();
765 checking_verify_flow_info ();
767 timevar_pop (TV_TREE_CLEANUP_CFG);
769 if (changed && current_loops)
770 loops_state_set (LOOPS_NEED_FIXUP);
772 return changed;
775 /* Repairs loop structures. */
777 static void
778 repair_loop_structures (void)
780 bitmap changed_bbs;
781 unsigned n_new_loops;
783 calculate_dominance_info (CDI_DOMINATORS);
785 timevar_push (TV_REPAIR_LOOPS);
786 changed_bbs = BITMAP_ALLOC (NULL);
787 n_new_loops = fix_loop_structure (changed_bbs);
789 /* This usually does nothing. But sometimes parts of cfg that originally
790 were inside a loop get out of it due to edge removal (since they
791 become unreachable by back edges from latch). Also a former
792 irreducible loop can become reducible - in this case force a full
793 rewrite into loop-closed SSA form. */
794 if (loops_state_satisfies_p (LOOP_CLOSED_SSA))
795 rewrite_into_loop_closed_ssa (n_new_loops ? NULL : changed_bbs,
796 TODO_update_ssa);
798 BITMAP_FREE (changed_bbs);
800 checking_verify_loop_structure ();
801 scev_reset ();
803 timevar_pop (TV_REPAIR_LOOPS);
806 /* Cleanup cfg and repair loop structures. */
808 bool
809 cleanup_tree_cfg (void)
811 bool changed = cleanup_tree_cfg_noloop ();
813 if (current_loops != NULL
814 && loops_state_satisfies_p (LOOPS_NEED_FIXUP))
815 repair_loop_structures ();
817 return changed;
820 /* Tries to merge the PHI nodes at BB into those at BB's sole successor.
821 Returns true if successful. */
823 static bool
824 remove_forwarder_block_with_phi (basic_block bb)
826 edge succ = single_succ_edge (bb);
827 basic_block dest = succ->dest;
828 gimple *label;
829 basic_block dombb, domdest, dom;
831 /* We check for infinite loops already in tree_forwarder_block_p.
832 However it may happen that the infinite loop is created
833 afterwards due to removal of forwarders. */
834 if (dest == bb)
835 return false;
837 /* If the destination block consists of a nonlocal label, do not
838 merge it. */
839 label = first_stmt (dest);
840 if (label)
841 if (glabel *label_stmt = dyn_cast <glabel *> (label))
842 if (DECL_NONLOCAL (gimple_label_label (label_stmt)))
843 return false;
845 /* Record BB's single pred in case we need to update the father
846 loop's latch information later. */
847 basic_block pred = NULL;
848 if (single_pred_p (bb))
849 pred = single_pred (bb);
851 /* Redirect each incoming edge to BB to DEST. */
852 while (EDGE_COUNT (bb->preds) > 0)
854 edge e = EDGE_PRED (bb, 0), s;
855 gphi_iterator gsi;
857 s = find_edge (e->src, dest);
858 if (s)
860 /* We already have an edge S from E->src to DEST. If S and
861 E->dest's sole successor edge have the same PHI arguments
862 at DEST, redirect S to DEST. */
863 if (phi_alternatives_equal (dest, s, succ))
865 e = redirect_edge_and_branch (e, dest);
866 redirect_edge_var_map_clear (e);
867 continue;
870 /* PHI arguments are different. Create a forwarder block by
871 splitting E so that we can merge PHI arguments on E to
872 DEST. */
873 e = single_succ_edge (split_edge (e));
876 s = redirect_edge_and_branch (e, dest);
878 /* redirect_edge_and_branch must not create a new edge. */
879 gcc_assert (s == e);
881 /* Add to the PHI nodes at DEST each PHI argument removed at the
882 destination of E. */
883 for (gsi = gsi_start_phis (dest);
884 !gsi_end_p (gsi);
885 gsi_next (&gsi))
887 gphi *phi = gsi.phi ();
888 tree def = gimple_phi_arg_def (phi, succ->dest_idx);
889 source_location locus = gimple_phi_arg_location_from_edge (phi, succ);
891 if (TREE_CODE (def) == SSA_NAME)
893 /* If DEF is one of the results of PHI nodes removed during
894 redirection, replace it with the PHI argument that used
895 to be on E. */
896 vec<edge_var_map> *head = redirect_edge_var_map_vector (e);
897 size_t length = head ? head->length () : 0;
898 for (size_t i = 0; i < length; i++)
900 edge_var_map *vm = &(*head)[i];
901 tree old_arg = redirect_edge_var_map_result (vm);
902 tree new_arg = redirect_edge_var_map_def (vm);
904 if (def == old_arg)
906 def = new_arg;
907 locus = redirect_edge_var_map_location (vm);
908 break;
913 add_phi_arg (phi, def, s, locus);
916 redirect_edge_var_map_clear (e);
919 /* Update the dominators. */
920 dombb = get_immediate_dominator (CDI_DOMINATORS, bb);
921 domdest = get_immediate_dominator (CDI_DOMINATORS, dest);
922 if (domdest == bb)
924 /* Shortcut to avoid calling (relatively expensive)
925 nearest_common_dominator unless necessary. */
926 dom = dombb;
928 else
929 dom = nearest_common_dominator (CDI_DOMINATORS, domdest, dombb);
931 set_immediate_dominator (CDI_DOMINATORS, dest, dom);
933 /* Adjust latch infomation of BB's parent loop as otherwise
934 the cfg hook has a hard time not to kill the loop. */
935 if (current_loops && bb->loop_father->latch == bb)
936 bb->loop_father->latch = pred;
938 /* Remove BB since all of BB's incoming edges have been redirected
939 to DEST. */
940 delete_basic_block (bb);
942 return true;
945 /* This pass merges PHI nodes if one feeds into another. For example,
946 suppose we have the following:
948 goto <bb 9> (<L9>);
950 <L8>:;
951 tem_17 = foo ();
953 # tem_6 = PHI <tem_17(8), tem_23(7)>;
954 <L9>:;
956 # tem_3 = PHI <tem_6(9), tem_2(5)>;
957 <L10>:;
959 Then we merge the first PHI node into the second one like so:
961 goto <bb 9> (<L10>);
963 <L8>:;
964 tem_17 = foo ();
966 # tem_3 = PHI <tem_23(7), tem_2(5), tem_17(8)>;
967 <L10>:;
970 namespace {
972 const pass_data pass_data_merge_phi =
974 GIMPLE_PASS, /* type */
975 "mergephi", /* name */
976 OPTGROUP_NONE, /* optinfo_flags */
977 TV_TREE_MERGE_PHI, /* tv_id */
978 ( PROP_cfg | PROP_ssa ), /* properties_required */
979 0, /* properties_provided */
980 0, /* properties_destroyed */
981 0, /* todo_flags_start */
982 0, /* todo_flags_finish */
985 class pass_merge_phi : public gimple_opt_pass
987 public:
988 pass_merge_phi (gcc::context *ctxt)
989 : gimple_opt_pass (pass_data_merge_phi, ctxt)
992 /* opt_pass methods: */
993 opt_pass * clone () { return new pass_merge_phi (m_ctxt); }
994 virtual unsigned int execute (function *);
996 }; // class pass_merge_phi
998 unsigned int
999 pass_merge_phi::execute (function *fun)
1001 basic_block *worklist = XNEWVEC (basic_block, n_basic_blocks_for_fn (fun));
1002 basic_block *current = worklist;
1003 basic_block bb;
1005 calculate_dominance_info (CDI_DOMINATORS);
1007 /* Find all PHI nodes that we may be able to merge. */
1008 FOR_EACH_BB_FN (bb, fun)
1010 basic_block dest;
1012 /* Look for a forwarder block with PHI nodes. */
1013 if (!tree_forwarder_block_p (bb, true))
1014 continue;
1016 dest = single_succ (bb);
1018 /* We have to feed into another basic block with PHI
1019 nodes. */
1020 if (gimple_seq_empty_p (phi_nodes (dest))
1021 /* We don't want to deal with a basic block with
1022 abnormal edges. */
1023 || bb_has_abnormal_pred (bb))
1024 continue;
1026 if (!dominated_by_p (CDI_DOMINATORS, dest, bb))
1028 /* If BB does not dominate DEST, then the PHI nodes at
1029 DEST must be the only users of the results of the PHI
1030 nodes at BB. */
1031 *current++ = bb;
1033 else
1035 gphi_iterator gsi;
1036 unsigned int dest_idx = single_succ_edge (bb)->dest_idx;
1038 /* BB dominates DEST. There may be many users of the PHI
1039 nodes in BB. However, there is still a trivial case we
1040 can handle. If the result of every PHI in BB is used
1041 only by a PHI in DEST, then we can trivially merge the
1042 PHI nodes from BB into DEST. */
1043 for (gsi = gsi_start_phis (bb); !gsi_end_p (gsi);
1044 gsi_next (&gsi))
1046 gphi *phi = gsi.phi ();
1047 tree result = gimple_phi_result (phi);
1048 use_operand_p imm_use;
1049 gimple *use_stmt;
1051 /* If the PHI's result is never used, then we can just
1052 ignore it. */
1053 if (has_zero_uses (result))
1054 continue;
1056 /* Get the single use of the result of this PHI node. */
1057 if (!single_imm_use (result, &imm_use, &use_stmt)
1058 || gimple_code (use_stmt) != GIMPLE_PHI
1059 || gimple_bb (use_stmt) != dest
1060 || gimple_phi_arg_def (use_stmt, dest_idx) != result)
1061 break;
1064 /* If the loop above iterated through all the PHI nodes
1065 in BB, then we can merge the PHIs from BB into DEST. */
1066 if (gsi_end_p (gsi))
1067 *current++ = bb;
1071 /* Now let's drain WORKLIST. */
1072 bool changed = false;
1073 while (current != worklist)
1075 bb = *--current;
1076 changed |= remove_forwarder_block_with_phi (bb);
1078 free (worklist);
1080 /* Removing forwarder blocks can cause formerly irreducible loops
1081 to become reducible if we merged two entry blocks. */
1082 if (changed
1083 && current_loops)
1084 loops_state_set (LOOPS_NEED_FIXUP);
1086 return 0;
1089 } // anon namespace
1091 gimple_opt_pass *
1092 make_pass_merge_phi (gcc::context *ctxt)
1094 return new pass_merge_phi (ctxt);
1097 /* Pass: cleanup the CFG just before expanding trees to RTL.
1098 This is just a round of label cleanups and case node grouping
1099 because after the tree optimizers have run such cleanups may
1100 be necessary. */
1102 static unsigned int
1103 execute_cleanup_cfg_post_optimizing (void)
1105 unsigned int todo = execute_fixup_cfg ();
1106 if (cleanup_tree_cfg ())
1108 todo &= ~TODO_cleanup_cfg;
1109 todo |= TODO_update_ssa;
1111 maybe_remove_unreachable_handlers ();
1112 cleanup_dead_labels ();
1113 group_case_labels ();
1114 if ((flag_compare_debug_opt || flag_compare_debug)
1115 && flag_dump_final_insns)
1117 FILE *final_output = fopen (flag_dump_final_insns, "a");
1119 if (!final_output)
1121 error ("could not open final insn dump file %qs: %m",
1122 flag_dump_final_insns);
1123 flag_dump_final_insns = NULL;
1125 else
1127 int save_unnumbered = flag_dump_unnumbered;
1128 int save_noaddr = flag_dump_noaddr;
1130 flag_dump_noaddr = flag_dump_unnumbered = 1;
1131 fprintf (final_output, "\n");
1132 dump_enumerated_decls (final_output, dump_flags | TDF_NOUID);
1133 flag_dump_noaddr = save_noaddr;
1134 flag_dump_unnumbered = save_unnumbered;
1135 if (fclose (final_output))
1137 error ("could not close final insn dump file %qs: %m",
1138 flag_dump_final_insns);
1139 flag_dump_final_insns = NULL;
1143 return todo;
1146 namespace {
1148 const pass_data pass_data_cleanup_cfg_post_optimizing =
1150 GIMPLE_PASS, /* type */
1151 "optimized", /* name */
1152 OPTGROUP_NONE, /* optinfo_flags */
1153 TV_TREE_CLEANUP_CFG, /* tv_id */
1154 PROP_cfg, /* properties_required */
1155 0, /* properties_provided */
1156 0, /* properties_destroyed */
1157 0, /* todo_flags_start */
1158 TODO_remove_unused_locals, /* todo_flags_finish */
1161 class pass_cleanup_cfg_post_optimizing : public gimple_opt_pass
1163 public:
1164 pass_cleanup_cfg_post_optimizing (gcc::context *ctxt)
1165 : gimple_opt_pass (pass_data_cleanup_cfg_post_optimizing, ctxt)
1168 /* opt_pass methods: */
1169 virtual unsigned int execute (function *)
1171 return execute_cleanup_cfg_post_optimizing ();
1174 }; // class pass_cleanup_cfg_post_optimizing
1176 } // anon namespace
1178 gimple_opt_pass *
1179 make_pass_cleanup_cfg_post_optimizing (gcc::context *ctxt)
1181 return new pass_cleanup_cfg_post_optimizing (ctxt);