1 /* CFG cleanup for trees.
2 Copyright (C) 2001-2017 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)
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/>. */
22 #include "coretypes.h"
28 #include "tree-pass.h"
30 #include "diagnostic-core.h"
31 #include "fold-const.h"
33 #include "cfgcleanup.h"
36 #include "gimple-iterator.h"
38 #include "tree-ssa-loop-manip.h"
42 #include "tree-scalar-evolution.h"
43 #include "gimple-match.h"
44 #include "gimple-fold.h"
45 #include "tree-ssa-loop-niter.h"
48 /* The set of blocks in that at least one of the following changes happened:
49 -- the statement at the end of the block was changed
50 -- the block was newly created
51 -- the set of the predecessors of the block changed
52 -- the set of the successors of the block changed
53 ??? Maybe we could track these changes separately, since they determine
54 what cleanups it makes sense to try on the block. */
55 bitmap cfgcleanup_altered_bbs
;
57 /* Remove any fallthru edge from EV. Return true if an edge was removed. */
60 remove_fallthru_edge (vec
<edge
, va_gc
> *ev
)
65 FOR_EACH_EDGE (e
, ei
, ev
)
66 if ((e
->flags
& EDGE_FALLTHRU
) != 0)
68 if (e
->flags
& EDGE_COMPLEX
)
69 e
->flags
&= ~EDGE_FALLTHRU
;
71 remove_edge_and_dominated_blocks (e
);
77 /* Convert a SWTCH with single non-default case to gcond and replace it
81 convert_single_case_switch (gswitch
*swtch
, gimple_stmt_iterator
&gsi
)
83 if (gimple_switch_num_labels (swtch
) != 2)
86 tree index
= gimple_switch_index (swtch
);
87 tree default_label
= CASE_LABEL (gimple_switch_default_label (swtch
));
88 tree label
= gimple_switch_label (swtch
, 1);
89 tree low
= CASE_LOW (label
);
90 tree high
= CASE_HIGH (label
);
92 basic_block default_bb
= label_to_block_fn (cfun
, default_label
);
93 basic_block case_bb
= label_to_block_fn (cfun
, CASE_LABEL (label
));
95 basic_block bb
= gimple_bb (swtch
);
98 /* Replace switch statement with condition statement. */
102 generate_range_test (bb
, index
, low
, high
, &lhs
, &rhs
);
103 cond
= gimple_build_cond (LE_EXPR
, lhs
, rhs
, NULL_TREE
, NULL_TREE
);
106 cond
= gimple_build_cond (EQ_EXPR
, index
,
107 fold_convert (TREE_TYPE (index
), low
),
108 NULL_TREE
, NULL_TREE
);
110 gsi_replace (&gsi
, cond
, true);
113 edge case_edge
= find_edge (bb
, case_bb
);
114 edge default_edge
= find_edge (bb
, default_bb
);
116 case_edge
->flags
|= EDGE_TRUE_VALUE
;
117 default_edge
->flags
|= EDGE_FALSE_VALUE
;
121 /* Disconnect an unreachable block in the control expression starting
125 cleanup_control_expr_graph (basic_block bb
, gimple_stmt_iterator gsi
)
129 gimple
*stmt
= gsi_stmt (gsi
);
131 if (!single_succ_p (bb
))
136 tree val
= NULL_TREE
;
138 /* Try to convert a switch with just a single non-default case to
140 if (gimple_code (stmt
) == GIMPLE_SWITCH
141 && convert_single_case_switch (as_a
<gswitch
*> (stmt
), gsi
))
142 stmt
= gsi_stmt (gsi
);
144 fold_defer_overflow_warnings ();
145 switch (gimple_code (stmt
))
151 if (gimple_simplify (stmt
, &rcode
, ops
, NULL
, no_follow_ssa_edges
,
153 && rcode
== INTEGER_CST
)
159 val
= gimple_switch_index (as_a
<gswitch
*> (stmt
));
165 taken_edge
= find_taken_edge (bb
, val
);
168 fold_undefer_and_ignore_overflow_warnings ();
172 /* Remove all the edges except the one that is always executed. */
174 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
180 fold_undefer_overflow_warnings
181 (true, stmt
, WARN_STRICT_OVERFLOW_CONDITIONAL
);
185 taken_edge
->probability
+= e
->probability
;
186 remove_edge_and_dominated_blocks (e
);
193 fold_undefer_and_ignore_overflow_warnings ();
196 taken_edge
= single_succ_edge (bb
);
198 bitmap_set_bit (cfgcleanup_altered_bbs
, bb
->index
);
199 gsi_remove (&gsi
, true);
200 taken_edge
->flags
= EDGE_FALLTHRU
;
205 /* Cleanup the GF_CALL_CTRL_ALTERING flag according to
206 to updated gimple_call_flags. */
209 cleanup_call_ctrl_altering_flag (gimple
*bb_end
)
211 if (!is_gimple_call (bb_end
)
212 || !gimple_call_ctrl_altering_p (bb_end
))
215 int flags
= gimple_call_flags (bb_end
);
216 if (((flags
& (ECF_CONST
| ECF_PURE
))
217 && !(flags
& ECF_LOOPING_CONST_OR_PURE
))
218 || (flags
& ECF_LEAF
))
219 gimple_call_set_ctrl_altering (bb_end
, false);
222 /* Try to remove superfluous control structures in basic block BB. Returns
223 true if anything changes. */
226 cleanup_control_flow_bb (basic_block bb
)
228 gimple_stmt_iterator gsi
;
232 /* If the last statement of the block could throw and now cannot,
233 we need to prune cfg. */
234 retval
|= gimple_purge_dead_eh_edges (bb
);
236 gsi
= gsi_last_nondebug_bb (bb
);
240 stmt
= gsi_stmt (gsi
);
242 /* Try to cleanup ctrl altering flag for call which ends bb. */
243 cleanup_call_ctrl_altering_flag (stmt
);
245 if (gimple_code (stmt
) == GIMPLE_COND
246 || gimple_code (stmt
) == GIMPLE_SWITCH
)
248 gcc_checking_assert (gsi_stmt (gsi_last_bb (bb
)) == stmt
);
249 retval
|= cleanup_control_expr_graph (bb
, gsi
);
251 else if (gimple_code (stmt
) == GIMPLE_GOTO
252 && TREE_CODE (gimple_goto_dest (stmt
)) == ADDR_EXPR
253 && (TREE_CODE (TREE_OPERAND (gimple_goto_dest (stmt
), 0))
256 /* If we had a computed goto which has a compile-time determinable
257 destination, then we can eliminate the goto. */
261 basic_block target_block
;
263 gcc_checking_assert (gsi_stmt (gsi_last_bb (bb
)) == stmt
);
264 /* First look at all the outgoing edges. Delete any outgoing
265 edges which do not go to the right block. For the one
266 edge which goes to the right block, fix up its flags. */
267 label
= TREE_OPERAND (gimple_goto_dest (stmt
), 0);
268 if (DECL_CONTEXT (label
) != cfun
->decl
)
270 target_block
= label_to_block (label
);
271 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
273 if (e
->dest
!= target_block
)
274 remove_edge_and_dominated_blocks (e
);
277 /* Turn off the EDGE_ABNORMAL flag. */
278 e
->flags
&= ~EDGE_ABNORMAL
;
280 /* And set EDGE_FALLTHRU. */
281 e
->flags
|= EDGE_FALLTHRU
;
286 bitmap_set_bit (cfgcleanup_altered_bbs
, bb
->index
);
287 bitmap_set_bit (cfgcleanup_altered_bbs
, target_block
->index
);
289 /* Remove the GOTO_EXPR as it is not needed. The CFG has all the
290 relevant information we need. */
291 gsi_remove (&gsi
, true);
295 /* Check for indirect calls that have been turned into
297 else if (is_gimple_call (stmt
)
298 && gimple_call_noreturn_p (stmt
))
300 /* If there are debug stmts after the noreturn call, remove them
301 now, they should be all unreachable anyway. */
302 for (gsi_next (&gsi
); !gsi_end_p (gsi
); )
303 gsi_remove (&gsi
, true);
304 if (remove_fallthru_edge (bb
->succs
))
311 /* Return true if basic block BB does nothing except pass control
312 flow to another block and that we can safely insert a label at
313 the start of the successor block.
315 As a precondition, we require that BB be not equal to
319 tree_forwarder_block_p (basic_block bb
, bool phi_wanted
)
321 gimple_stmt_iterator gsi
;
324 /* BB must have a single outgoing edge. */
325 if (single_succ_p (bb
) != 1
326 /* If PHI_WANTED is false, BB must not have any PHI nodes.
327 Otherwise, BB must have PHI nodes. */
328 || gimple_seq_empty_p (phi_nodes (bb
)) == phi_wanted
329 /* BB may not be a predecessor of the exit block. */
330 || single_succ (bb
) == EXIT_BLOCK_PTR_FOR_FN (cfun
)
331 /* Nor should this be an infinite loop. */
332 || single_succ (bb
) == bb
333 /* BB may not have an abnormal outgoing edge. */
334 || (single_succ_edge (bb
)->flags
& EDGE_ABNORMAL
))
337 gcc_checking_assert (bb
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
));
339 locus
= single_succ_edge (bb
)->goto_locus
;
341 /* There should not be an edge coming from entry, or an EH edge. */
346 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
347 if (e
->src
== ENTRY_BLOCK_PTR_FOR_FN (cfun
) || (e
->flags
& EDGE_EH
))
349 /* If goto_locus of any of the edges differs, prevent removing
350 the forwarder block for -O0. */
351 else if (optimize
== 0 && e
->goto_locus
!= locus
)
355 /* Now walk through the statements backward. We can ignore labels,
356 anything else means this is not a forwarder block. */
357 for (gsi
= gsi_last_bb (bb
); !gsi_end_p (gsi
); gsi_prev (&gsi
))
359 gimple
*stmt
= gsi_stmt (gsi
);
361 switch (gimple_code (stmt
))
364 if (DECL_NONLOCAL (gimple_label_label (as_a
<glabel
*> (stmt
))))
366 if (optimize
== 0 && gimple_location (stmt
) != locus
)
370 /* ??? For now, hope there's a corresponding debug
371 assignment at the destination. */
383 /* Protect loop headers. */
384 if (bb_loop_header_p (bb
))
387 dest
= EDGE_SUCC (bb
, 0)->dest
;
388 /* Protect loop preheaders and latches if requested. */
389 if (dest
->loop_father
->header
== dest
)
391 if (bb
->loop_father
== dest
->loop_father
)
393 if (loops_state_satisfies_p (LOOPS_HAVE_SIMPLE_LATCHES
))
395 /* If bb doesn't have a single predecessor we'd make this
396 loop have multiple latches. Don't do that if that
397 would in turn require disambiguating them. */
398 return (single_pred_p (bb
)
399 || loops_state_satisfies_p
400 (LOOPS_MAY_HAVE_MULTIPLE_LATCHES
));
402 else if (bb
->loop_father
== loop_outer (dest
->loop_father
))
403 return !loops_state_satisfies_p (LOOPS_HAVE_PREHEADERS
);
404 /* Always preserve other edges into loop headers that are
405 not simple latches or preheaders. */
413 /* If all the PHI nodes in DEST have alternatives for E1 and E2 and
414 those alternatives are equal in each of the PHI nodes, then return
415 true, else return false. */
418 phi_alternatives_equal (basic_block dest
, edge e1
, edge e2
)
420 int n1
= e1
->dest_idx
;
421 int n2
= e2
->dest_idx
;
424 for (gsi
= gsi_start_phis (dest
); !gsi_end_p (gsi
); gsi_next (&gsi
))
426 gphi
*phi
= gsi
.phi ();
427 tree val1
= gimple_phi_arg_def (phi
, n1
);
428 tree val2
= gimple_phi_arg_def (phi
, n2
);
430 gcc_assert (val1
!= NULL_TREE
);
431 gcc_assert (val2
!= NULL_TREE
);
433 if (!operand_equal_for_phi_arg_p (val1
, val2
))
440 /* Removes forwarder block BB. Returns false if this failed. */
443 remove_forwarder_block (basic_block bb
)
445 edge succ
= single_succ_edge (bb
), e
, s
;
446 basic_block dest
= succ
->dest
;
449 gimple_stmt_iterator gsi
, gsi_to
;
450 bool can_move_debug_stmts
;
452 /* We check for infinite loops already in tree_forwarder_block_p.
453 However it may happen that the infinite loop is created
454 afterwards due to removal of forwarders. */
458 /* If the destination block consists of a nonlocal label or is a
459 EH landing pad, do not merge it. */
460 label
= first_stmt (dest
);
462 if (glabel
*label_stmt
= dyn_cast
<glabel
*> (label
))
463 if (DECL_NONLOCAL (gimple_label_label (label_stmt
))
464 || EH_LANDING_PAD_NR (gimple_label_label (label_stmt
)) != 0)
467 /* If there is an abnormal edge to basic block BB, but not into
468 dest, problems might occur during removal of the phi node at out
469 of ssa due to overlapping live ranges of registers.
471 If there is an abnormal edge in DEST, the problems would occur
472 anyway since cleanup_dead_labels would then merge the labels for
473 two different eh regions, and rest of exception handling code
476 So if there is an abnormal edge to BB, proceed only if there is
477 no abnormal edge to DEST and there are no phi nodes in DEST. */
478 if (bb_has_abnormal_pred (bb
)
479 && (bb_has_abnormal_pred (dest
)
480 || !gimple_seq_empty_p (phi_nodes (dest
))))
483 /* If there are phi nodes in DEST, and some of the blocks that are
484 predecessors of BB are also predecessors of DEST, check that the
485 phi node arguments match. */
486 if (!gimple_seq_empty_p (phi_nodes (dest
)))
488 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
490 s
= find_edge (e
->src
, dest
);
494 if (!phi_alternatives_equal (dest
, succ
, s
))
499 can_move_debug_stmts
= MAY_HAVE_DEBUG_STMTS
&& single_pred_p (dest
);
501 basic_block pred
= NULL
;
502 if (single_pred_p (bb
))
503 pred
= single_pred (bb
);
505 /* Redirect the edges. */
506 for (ei
= ei_start (bb
->preds
); (e
= ei_safe_edge (ei
)); )
508 bitmap_set_bit (cfgcleanup_altered_bbs
, e
->src
->index
);
510 if (e
->flags
& EDGE_ABNORMAL
)
512 /* If there is an abnormal edge, redirect it anyway, and
513 move the labels to the new block to make it legal. */
514 s
= redirect_edge_succ_nodup (e
, dest
);
517 s
= redirect_edge_and_branch (e
, dest
);
521 /* Create arguments for the phi nodes, since the edge was not
523 for (gphi_iterator psi
= gsi_start_phis (dest
);
527 gphi
*phi
= psi
.phi ();
528 source_location l
= gimple_phi_arg_location_from_edge (phi
, succ
);
529 tree def
= gimple_phi_arg_def (phi
, succ
->dest_idx
);
530 add_phi_arg (phi
, unshare_expr (def
), s
, l
);
535 /* Move nonlocal labels and computed goto targets as well as user
536 defined labels and labels with an EH landing pad number to the
537 new block, so that the redirection of the abnormal edges works,
538 jump targets end up in a sane place and debug information for
539 labels is retained. */
540 gsi_to
= gsi_start_bb (dest
);
541 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); )
544 label
= gsi_stmt (gsi
);
545 if (is_gimple_debug (label
))
547 decl
= gimple_label_label (as_a
<glabel
*> (label
));
548 if (EH_LANDING_PAD_NR (decl
) != 0
549 || DECL_NONLOCAL (decl
)
550 || FORCED_LABEL (decl
)
551 || !DECL_ARTIFICIAL (decl
))
553 gsi_remove (&gsi
, false);
554 gsi_insert_before (&gsi_to
, label
, GSI_SAME_STMT
);
560 /* Move debug statements if the destination has a single predecessor. */
561 if (can_move_debug_stmts
)
563 gsi_to
= gsi_after_labels (dest
);
564 for (gsi
= gsi_after_labels (bb
); !gsi_end_p (gsi
); )
566 gimple
*debug
= gsi_stmt (gsi
);
567 if (!is_gimple_debug (debug
))
569 gsi_remove (&gsi
, false);
570 gsi_insert_before (&gsi_to
, debug
, GSI_SAME_STMT
);
574 bitmap_set_bit (cfgcleanup_altered_bbs
, dest
->index
);
576 /* Update the dominators. */
577 if (dom_info_available_p (CDI_DOMINATORS
))
579 basic_block dom
, dombb
, domdest
;
581 dombb
= get_immediate_dominator (CDI_DOMINATORS
, bb
);
582 domdest
= get_immediate_dominator (CDI_DOMINATORS
, dest
);
585 /* Shortcut to avoid calling (relatively expensive)
586 nearest_common_dominator unless necessary. */
590 dom
= nearest_common_dominator (CDI_DOMINATORS
, domdest
, dombb
);
592 set_immediate_dominator (CDI_DOMINATORS
, dest
, dom
);
595 /* Adjust latch infomation of BB's parent loop as otherwise
596 the cfg hook has a hard time not to kill the loop. */
597 if (current_loops
&& bb
->loop_father
->latch
== bb
)
598 bb
->loop_father
->latch
= pred
;
600 /* And kill the forwarder block. */
601 delete_basic_block (bb
);
606 /* STMT is a call that has been discovered noreturn. Split the
607 block to prepare fixing up the CFG and remove LHS.
608 Return true if cleanup-cfg needs to run. */
611 fixup_noreturn_call (gimple
*stmt
)
613 basic_block bb
= gimple_bb (stmt
);
614 bool changed
= false;
616 if (gimple_call_builtin_p (stmt
, BUILT_IN_RETURN
))
619 /* First split basic block if stmt is not last. */
620 if (stmt
!= gsi_stmt (gsi_last_bb (bb
)))
622 if (stmt
== gsi_stmt (gsi_last_nondebug_bb (bb
)))
624 /* Don't split if there are only debug stmts
625 after stmt, that can result in -fcompare-debug
626 failures. Remove the debug stmts instead,
627 they should be all unreachable anyway. */
628 gimple_stmt_iterator gsi
= gsi_for_stmt (stmt
);
629 for (gsi_next (&gsi
); !gsi_end_p (gsi
); )
630 gsi_remove (&gsi
, true);
634 split_block (bb
, stmt
);
639 /* If there is an LHS, remove it, but only if its type has fixed size.
640 The LHS will need to be recreated during RTL expansion and creating
641 temporaries of variable-sized types is not supported. Also don't
642 do this with TREE_ADDRESSABLE types, as assign_temp will abort.
643 Drop LHS regardless of TREE_ADDRESSABLE, if the function call
644 has been changed into a call that does not return a value, like
645 __builtin_unreachable or __cxa_pure_virtual. */
646 tree lhs
= gimple_call_lhs (stmt
);
648 && (should_remove_lhs_p (lhs
)
649 || VOID_TYPE_P (TREE_TYPE (gimple_call_fntype (stmt
)))))
651 gimple_call_set_lhs (stmt
, NULL_TREE
);
653 /* We need to fix up the SSA name to avoid checking errors. */
654 if (TREE_CODE (lhs
) == SSA_NAME
)
656 tree new_var
= create_tmp_reg (TREE_TYPE (lhs
));
657 SET_SSA_NAME_VAR_OR_IDENTIFIER (lhs
, new_var
);
658 SSA_NAME_DEF_STMT (lhs
) = gimple_build_nop ();
659 set_ssa_default_def (cfun
, new_var
, lhs
);
665 /* Mark the call as altering control flow. */
666 if (!gimple_call_ctrl_altering_p (stmt
))
668 gimple_call_set_ctrl_altering (stmt
, true);
675 /* Return true if we want to merge BB1 and BB2 into a single block. */
678 want_merge_blocks_p (basic_block bb1
, basic_block bb2
)
680 if (!can_merge_blocks_p (bb1
, bb2
))
682 gimple_stmt_iterator gsi
= gsi_last_nondebug_bb (bb1
);
683 if (gsi_end_p (gsi
) || !stmt_can_terminate_bb_p (gsi_stmt (gsi
)))
685 return bb1
->count
.ok_for_merging (bb2
->count
);
689 /* Tries to cleanup cfg in basic block BB. Returns true if anything
693 cleanup_tree_cfg_bb (basic_block bb
)
695 if (tree_forwarder_block_p (bb
, false)
696 && remove_forwarder_block (bb
))
699 /* If there is a merge opportunity with the predecessor
700 do nothing now but wait until we process the predecessor.
701 This happens when we visit BBs in a non-optimal order and
702 avoids quadratic behavior with adjusting stmts BB pointer. */
703 if (single_pred_p (bb
)
704 && want_merge_blocks_p (single_pred (bb
), bb
))
705 /* But make sure we _do_ visit it. When we remove unreachable paths
706 ending in a backedge we fail to mark the destinations predecessors
708 bitmap_set_bit (cfgcleanup_altered_bbs
, single_pred (bb
)->index
);
710 /* Merging the blocks may create new opportunities for folding
711 conditional branches (due to the elimination of single-valued PHI
713 else if (single_succ_p (bb
)
714 && want_merge_blocks_p (bb
, single_succ (bb
)))
716 merge_blocks (bb
, single_succ (bb
));
723 /* Do cleanup_control_flow_bb in PRE order. */
726 cleanup_control_flow_pre ()
730 auto_vec
<edge_iterator
, 20> stack (n_basic_blocks_for_fn (cfun
) + 1);
731 auto_sbitmap
visited (last_basic_block_for_fn (cfun
));
732 bitmap_clear (visited
);
734 stack
.quick_push (ei_start (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->succs
));
736 while (! stack
.is_empty ())
738 /* Look at the edge on the top of the stack. */
739 edge_iterator ei
= stack
.last ();
740 basic_block dest
= ei_edge (ei
)->dest
;
742 if (dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
743 && ! bitmap_bit_p (visited
, dest
->index
))
745 bitmap_set_bit (visited
, dest
->index
);
746 retval
|= cleanup_control_flow_bb (dest
);
747 if (EDGE_COUNT (dest
->succs
) > 0)
748 stack
.quick_push (ei_start (dest
->succs
));
752 if (!ei_one_before_end_p (ei
))
753 ei_next (&stack
.last ());
762 /* Iterate the cfg cleanups, while anything changes. */
765 cleanup_tree_cfg_1 (void)
771 /* Prepare the worklists of altered blocks. */
772 cfgcleanup_altered_bbs
= BITMAP_ALLOC (NULL
);
774 /* During forwarder block cleanup, we may redirect edges out of
775 SWITCH_EXPRs, which can get expensive. So we want to enable
776 recording of edge to CASE_LABEL_EXPR. */
777 start_recording_case_labels ();
779 /* We cannot use FOR_EACH_BB_FN for the BB iterations below
780 since the basic blocks may get removed. */
782 /* Start by iterating over all basic blocks in PRE order looking for
783 edge removal opportunities. Do this first because incoming SSA form
784 may be invalid and we want to avoid performing SSA related tasks such
785 as propgating out a PHI node during BB merging in that state. */
786 retval
|= cleanup_control_flow_pre ();
788 /* After doing the above SSA form should be valid (or an update SSA
789 should be required). */
791 /* Continue by iterating over all basic blocks looking for BB merging
793 n
= last_basic_block_for_fn (cfun
);
794 for (i
= NUM_FIXED_BLOCKS
; i
< n
; i
++)
796 bb
= BASIC_BLOCK_FOR_FN (cfun
, i
);
798 retval
|= cleanup_tree_cfg_bb (bb
);
801 /* Now process the altered blocks, as long as any are available. */
802 while (!bitmap_empty_p (cfgcleanup_altered_bbs
))
804 i
= bitmap_first_set_bit (cfgcleanup_altered_bbs
);
805 bitmap_clear_bit (cfgcleanup_altered_bbs
, i
);
806 if (i
< NUM_FIXED_BLOCKS
)
809 bb
= BASIC_BLOCK_FOR_FN (cfun
, i
);
813 retval
|= cleanup_control_flow_bb (bb
);
814 retval
|= cleanup_tree_cfg_bb (bb
);
817 end_recording_case_labels ();
818 BITMAP_FREE (cfgcleanup_altered_bbs
);
823 mfb_keep_latches (edge e
)
825 return ! dominated_by_p (CDI_DOMINATORS
, e
->src
, e
->dest
);
828 /* Remove unreachable blocks and other miscellaneous clean up work.
829 Return true if the flowgraph was modified, false otherwise. */
832 cleanup_tree_cfg_noloop (void)
836 timevar_push (TV_TREE_CLEANUP_CFG
);
838 /* Iterate until there are no more cleanups left to do. If any
839 iteration changed the flowgraph, set CHANGED to true.
841 If dominance information is available, there cannot be any unreachable
843 if (!dom_info_available_p (CDI_DOMINATORS
))
845 changed
= delete_unreachable_blocks ();
846 calculate_dominance_info (CDI_DOMINATORS
);
850 checking_verify_dominators (CDI_DOMINATORS
);
854 /* Ensure that we have single entries into loop headers. Otherwise
855 if one of the entries is becoming a latch due to CFG cleanup
856 (from formerly being part of an irreducible region) then we mess
857 up loop fixup and associate the old loop with a different region
858 which makes niter upper bounds invalid. See for example PR80549.
859 This needs to be done before we remove trivially dead edges as
860 we need to capture the dominance state before the pending transform. */
865 FOR_EACH_VEC_ELT (*get_loops (cfun
), i
, loop
)
866 if (loop
&& loop
->header
)
868 basic_block bb
= loop
->header
;
871 bool found_latch
= false;
872 bool any_abnormal
= false;
874 /* We are only interested in preserving existing loops, but
875 we need to check whether they are still real and of course
876 if we need to add a preheader at all. */
877 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
879 if (e
->flags
& EDGE_ABNORMAL
)
884 if (dominated_by_p (CDI_DOMINATORS
, e
->src
, bb
))
891 /* If we have more than one entry to the loop header
892 create a forwarder. */
893 if (found_latch
&& ! any_abnormal
&& n
> 1)
895 edge fallthru
= make_forwarder_block (bb
, mfb_keep_latches
,
897 loop
->header
= fallthru
->dest
;
898 if (! loops_state_satisfies_p (LOOPS_NEED_FIXUP
))
900 /* The loop updating from the CFG hook is incomplete
901 when we have multiple latches, fixup manually. */
902 remove_bb_from_loops (fallthru
->src
);
904 FOR_EACH_EDGE (e
, ei
, fallthru
->src
->preds
)
905 cloop
= find_common_loop (cloop
, e
->src
->loop_father
);
906 add_bb_to_loop (fallthru
->src
, cloop
);
912 changed
|= cleanup_tree_cfg_1 ();
914 gcc_assert (dom_info_available_p (CDI_DOMINATORS
));
916 /* Do not renumber blocks if the SCEV cache is active, it is indexed by
917 basic-block numbers. */
918 if (! scev_initialized_p ())
921 checking_verify_flow_info ();
923 timevar_pop (TV_TREE_CLEANUP_CFG
);
925 if (changed
&& current_loops
)
927 /* Removing edges and/or blocks may make recorded bounds refer
928 to stale GIMPLE stmts now, so clear them. */
929 free_numbers_of_iterations_estimates (cfun
);
930 loops_state_set (LOOPS_NEED_FIXUP
);
936 /* Repairs loop structures. */
939 repair_loop_structures (void)
942 unsigned n_new_loops
;
944 calculate_dominance_info (CDI_DOMINATORS
);
946 timevar_push (TV_REPAIR_LOOPS
);
947 changed_bbs
= BITMAP_ALLOC (NULL
);
948 n_new_loops
= fix_loop_structure (changed_bbs
);
950 /* This usually does nothing. But sometimes parts of cfg that originally
951 were inside a loop get out of it due to edge removal (since they
952 become unreachable by back edges from latch). Also a former
953 irreducible loop can become reducible - in this case force a full
954 rewrite into loop-closed SSA form. */
955 if (loops_state_satisfies_p (LOOP_CLOSED_SSA
))
956 rewrite_into_loop_closed_ssa (n_new_loops
? NULL
: changed_bbs
,
959 BITMAP_FREE (changed_bbs
);
961 checking_verify_loop_structure ();
964 timevar_pop (TV_REPAIR_LOOPS
);
967 /* Cleanup cfg and repair loop structures. */
970 cleanup_tree_cfg (void)
972 bool changed
= cleanup_tree_cfg_noloop ();
974 if (current_loops
!= NULL
975 && loops_state_satisfies_p (LOOPS_NEED_FIXUP
))
976 repair_loop_structures ();
981 /* Tries to merge the PHI nodes at BB into those at BB's sole successor.
982 Returns true if successful. */
985 remove_forwarder_block_with_phi (basic_block bb
)
987 edge succ
= single_succ_edge (bb
);
988 basic_block dest
= succ
->dest
;
990 basic_block dombb
, domdest
, dom
;
992 /* We check for infinite loops already in tree_forwarder_block_p.
993 However it may happen that the infinite loop is created
994 afterwards due to removal of forwarders. */
998 /* Removal of forwarders may expose new natural loops and thus
999 a block may turn into a loop header. */
1000 if (current_loops
&& bb_loop_header_p (bb
))
1003 /* If the destination block consists of a nonlocal label, do not
1005 label
= first_stmt (dest
);
1007 if (glabel
*label_stmt
= dyn_cast
<glabel
*> (label
))
1008 if (DECL_NONLOCAL (gimple_label_label (label_stmt
)))
1011 /* Record BB's single pred in case we need to update the father
1012 loop's latch information later. */
1013 basic_block pred
= NULL
;
1014 if (single_pred_p (bb
))
1015 pred
= single_pred (bb
);
1017 /* Redirect each incoming edge to BB to DEST. */
1018 while (EDGE_COUNT (bb
->preds
) > 0)
1020 edge e
= EDGE_PRED (bb
, 0), s
;
1023 s
= find_edge (e
->src
, dest
);
1026 /* We already have an edge S from E->src to DEST. If S and
1027 E->dest's sole successor edge have the same PHI arguments
1028 at DEST, redirect S to DEST. */
1029 if (phi_alternatives_equal (dest
, s
, succ
))
1031 e
= redirect_edge_and_branch (e
, dest
);
1032 redirect_edge_var_map_clear (e
);
1036 /* PHI arguments are different. Create a forwarder block by
1037 splitting E so that we can merge PHI arguments on E to
1039 e
= single_succ_edge (split_edge (e
));
1043 /* If we merge the forwarder into a loop header verify if we
1044 are creating another loop latch edge. If so, reset
1045 number of iteration information of the loop. */
1046 if (dest
->loop_father
->header
== dest
1047 && dominated_by_p (CDI_DOMINATORS
, e
->src
, dest
))
1049 dest
->loop_father
->any_upper_bound
= false;
1050 dest
->loop_father
->any_likely_upper_bound
= false;
1051 free_numbers_of_iterations_estimates (dest
->loop_father
);
1055 s
= redirect_edge_and_branch (e
, dest
);
1057 /* redirect_edge_and_branch must not create a new edge. */
1058 gcc_assert (s
== e
);
1060 /* Add to the PHI nodes at DEST each PHI argument removed at the
1061 destination of E. */
1062 for (gsi
= gsi_start_phis (dest
);
1066 gphi
*phi
= gsi
.phi ();
1067 tree def
= gimple_phi_arg_def (phi
, succ
->dest_idx
);
1068 source_location locus
= gimple_phi_arg_location_from_edge (phi
, succ
);
1070 if (TREE_CODE (def
) == SSA_NAME
)
1072 /* If DEF is one of the results of PHI nodes removed during
1073 redirection, replace it with the PHI argument that used
1075 vec
<edge_var_map
> *head
= redirect_edge_var_map_vector (e
);
1076 size_t length
= head
? head
->length () : 0;
1077 for (size_t i
= 0; i
< length
; i
++)
1079 edge_var_map
*vm
= &(*head
)[i
];
1080 tree old_arg
= redirect_edge_var_map_result (vm
);
1081 tree new_arg
= redirect_edge_var_map_def (vm
);
1086 locus
= redirect_edge_var_map_location (vm
);
1092 add_phi_arg (phi
, def
, s
, locus
);
1095 redirect_edge_var_map_clear (e
);
1098 /* Update the dominators. */
1099 dombb
= get_immediate_dominator (CDI_DOMINATORS
, bb
);
1100 domdest
= get_immediate_dominator (CDI_DOMINATORS
, dest
);
1103 /* Shortcut to avoid calling (relatively expensive)
1104 nearest_common_dominator unless necessary. */
1108 dom
= nearest_common_dominator (CDI_DOMINATORS
, domdest
, dombb
);
1110 set_immediate_dominator (CDI_DOMINATORS
, dest
, dom
);
1112 /* Adjust latch infomation of BB's parent loop as otherwise
1113 the cfg hook has a hard time not to kill the loop. */
1114 if (current_loops
&& bb
->loop_father
->latch
== bb
)
1115 bb
->loop_father
->latch
= pred
;
1117 /* Remove BB since all of BB's incoming edges have been redirected
1119 delete_basic_block (bb
);
1124 /* This pass merges PHI nodes if one feeds into another. For example,
1125 suppose we have the following:
1132 # tem_6 = PHI <tem_17(8), tem_23(7)>;
1135 # tem_3 = PHI <tem_6(9), tem_2(5)>;
1138 Then we merge the first PHI node into the second one like so:
1140 goto <bb 9> (<L10>);
1145 # tem_3 = PHI <tem_23(7), tem_2(5), tem_17(8)>;
1151 const pass_data pass_data_merge_phi
=
1153 GIMPLE_PASS
, /* type */
1154 "mergephi", /* name */
1155 OPTGROUP_NONE
, /* optinfo_flags */
1156 TV_TREE_MERGE_PHI
, /* tv_id */
1157 ( PROP_cfg
| PROP_ssa
), /* properties_required */
1158 0, /* properties_provided */
1159 0, /* properties_destroyed */
1160 0, /* todo_flags_start */
1161 0, /* todo_flags_finish */
1164 class pass_merge_phi
: public gimple_opt_pass
1167 pass_merge_phi (gcc::context
*ctxt
)
1168 : gimple_opt_pass (pass_data_merge_phi
, ctxt
)
1171 /* opt_pass methods: */
1172 opt_pass
* clone () { return new pass_merge_phi (m_ctxt
); }
1173 virtual unsigned int execute (function
*);
1175 }; // class pass_merge_phi
1178 pass_merge_phi::execute (function
*fun
)
1180 basic_block
*worklist
= XNEWVEC (basic_block
, n_basic_blocks_for_fn (fun
));
1181 basic_block
*current
= worklist
;
1184 calculate_dominance_info (CDI_DOMINATORS
);
1186 /* Find all PHI nodes that we may be able to merge. */
1187 FOR_EACH_BB_FN (bb
, fun
)
1191 /* Look for a forwarder block with PHI nodes. */
1192 if (!tree_forwarder_block_p (bb
, true))
1195 dest
= single_succ (bb
);
1197 /* We have to feed into another basic block with PHI
1199 if (gimple_seq_empty_p (phi_nodes (dest
))
1200 /* We don't want to deal with a basic block with
1202 || bb_has_abnormal_pred (bb
))
1205 if (!dominated_by_p (CDI_DOMINATORS
, dest
, bb
))
1207 /* If BB does not dominate DEST, then the PHI nodes at
1208 DEST must be the only users of the results of the PHI
1215 unsigned int dest_idx
= single_succ_edge (bb
)->dest_idx
;
1217 /* BB dominates DEST. There may be many users of the PHI
1218 nodes in BB. However, there is still a trivial case we
1219 can handle. If the result of every PHI in BB is used
1220 only by a PHI in DEST, then we can trivially merge the
1221 PHI nodes from BB into DEST. */
1222 for (gsi
= gsi_start_phis (bb
); !gsi_end_p (gsi
);
1225 gphi
*phi
= gsi
.phi ();
1226 tree result
= gimple_phi_result (phi
);
1227 use_operand_p imm_use
;
1230 /* If the PHI's result is never used, then we can just
1232 if (has_zero_uses (result
))
1235 /* Get the single use of the result of this PHI node. */
1236 if (!single_imm_use (result
, &imm_use
, &use_stmt
)
1237 || gimple_code (use_stmt
) != GIMPLE_PHI
1238 || gimple_bb (use_stmt
) != dest
1239 || gimple_phi_arg_def (use_stmt
, dest_idx
) != result
)
1243 /* If the loop above iterated through all the PHI nodes
1244 in BB, then we can merge the PHIs from BB into DEST. */
1245 if (gsi_end_p (gsi
))
1250 /* Now let's drain WORKLIST. */
1251 bool changed
= false;
1252 while (current
!= worklist
)
1255 changed
|= remove_forwarder_block_with_phi (bb
);
1259 /* Removing forwarder blocks can cause formerly irreducible loops
1260 to become reducible if we merged two entry blocks. */
1263 loops_state_set (LOOPS_NEED_FIXUP
);
1271 make_pass_merge_phi (gcc::context
*ctxt
)
1273 return new pass_merge_phi (ctxt
);
1276 /* Pass: cleanup the CFG just before expanding trees to RTL.
1277 This is just a round of label cleanups and case node grouping
1278 because after the tree optimizers have run such cleanups may
1282 execute_cleanup_cfg_post_optimizing (void)
1284 unsigned int todo
= execute_fixup_cfg ();
1285 if (cleanup_tree_cfg ())
1287 todo
&= ~TODO_cleanup_cfg
;
1288 todo
|= TODO_update_ssa
;
1290 maybe_remove_unreachable_handlers ();
1291 cleanup_dead_labels ();
1292 if (group_case_labels ())
1293 todo
|= TODO_cleanup_cfg
;
1294 if ((flag_compare_debug_opt
|| flag_compare_debug
)
1295 && flag_dump_final_insns
)
1297 FILE *final_output
= fopen (flag_dump_final_insns
, "a");
1301 error ("could not open final insn dump file %qs: %m",
1302 flag_dump_final_insns
);
1303 flag_dump_final_insns
= NULL
;
1307 int save_unnumbered
= flag_dump_unnumbered
;
1308 int save_noaddr
= flag_dump_noaddr
;
1310 flag_dump_noaddr
= flag_dump_unnumbered
= 1;
1311 fprintf (final_output
, "\n");
1312 dump_enumerated_decls (final_output
, dump_flags
| TDF_NOUID
);
1313 flag_dump_noaddr
= save_noaddr
;
1314 flag_dump_unnumbered
= save_unnumbered
;
1315 if (fclose (final_output
))
1317 error ("could not close final insn dump file %qs: %m",
1318 flag_dump_final_insns
);
1319 flag_dump_final_insns
= NULL
;
1328 const pass_data pass_data_cleanup_cfg_post_optimizing
=
1330 GIMPLE_PASS
, /* type */
1331 "optimized", /* name */
1332 OPTGROUP_NONE
, /* optinfo_flags */
1333 TV_TREE_CLEANUP_CFG
, /* tv_id */
1334 PROP_cfg
, /* properties_required */
1335 0, /* properties_provided */
1336 0, /* properties_destroyed */
1337 0, /* todo_flags_start */
1338 TODO_remove_unused_locals
, /* todo_flags_finish */
1341 class pass_cleanup_cfg_post_optimizing
: public gimple_opt_pass
1344 pass_cleanup_cfg_post_optimizing (gcc::context
*ctxt
)
1345 : gimple_opt_pass (pass_data_cleanup_cfg_post_optimizing
, ctxt
)
1348 /* opt_pass methods: */
1349 virtual unsigned int execute (function
*)
1351 return execute_cleanup_cfg_post_optimizing ();
1354 }; // class pass_cleanup_cfg_post_optimizing
1359 make_pass_cleanup_cfg_post_optimizing (gcc::context
*ctxt
)
1361 return new pass_cleanup_cfg_post_optimizing (ctxt
);