1 /* Control flow graph manipulation code for GNU compiler.
2 Copyright (C) 1987-2021 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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 /* This file contains low level functions to manipulate the CFG and analyze it
21 that are aware of the RTL intermediate language.
23 Available functionality:
24 - Basic CFG/RTL manipulation API documented in cfghooks.h
25 - CFG-aware instruction chain manipulation
26 delete_insn, delete_insn_chain
27 - Edge splitting and committing to edges
28 insert_insn_on_edge, commit_edge_insertions
29 - CFG updating after insn simplification
30 purge_dead_edges, purge_all_dead_edges
31 - CFG fixing after coarse manipulation
34 Functions not supposed for generic use:
35 - Infrastructure to determine quickly basic block for insn
36 compute_bb_for_insn, update_bb_for_insn, set_block_for_insn,
37 - Edge redirection with updating and optimizing of insn chain
38 block_label, tidy_fallthru_edge, force_nonfallthru */
42 #include "coretypes.h"
49 #include "insn-config.h"
55 #include "cfgcleanup.h"
56 #include "bb-reorder.h"
57 #include "rtl-error.h"
58 #include "insn-attr.h"
62 #include "tree-pass.h"
63 #include "print-rtl.h"
67 /* Disable warnings about missing quoting in GCC diagnostics. */
69 # pragma GCC diagnostic push
70 # pragma GCC diagnostic ignored "-Wformat-diag"
73 /* Holds the interesting leading and trailing notes for the function.
74 Only applicable if the CFG is in cfglayout mode. */
75 static GTY(()) rtx_insn
*cfg_layout_function_footer
;
76 static GTY(()) rtx_insn
*cfg_layout_function_header
;
78 static rtx_insn
*skip_insns_after_block (basic_block
);
79 static void record_effective_endpoints (void);
80 static void fixup_reorder_chain (void);
82 void verify_insn_chain (void);
83 static void fixup_fallthru_exit_predecessor (void);
84 static int can_delete_note_p (const rtx_note
*);
85 static int can_delete_label_p (const rtx_code_label
*);
86 static basic_block
rtl_split_edge (edge
);
87 static bool rtl_move_block_after (basic_block
, basic_block
);
88 static int rtl_verify_flow_info (void);
89 static basic_block
cfg_layout_split_block (basic_block
, void *);
90 static edge
cfg_layout_redirect_edge_and_branch (edge
, basic_block
);
91 static basic_block
cfg_layout_redirect_edge_and_branch_force (edge
, basic_block
);
92 static void cfg_layout_delete_block (basic_block
);
93 static void rtl_delete_block (basic_block
);
94 static basic_block
rtl_redirect_edge_and_branch_force (edge
, basic_block
);
95 static edge
rtl_redirect_edge_and_branch (edge
, basic_block
);
96 static basic_block
rtl_split_block (basic_block
, void *);
97 static void rtl_dump_bb (FILE *, basic_block
, int, dump_flags_t
);
98 static int rtl_verify_flow_info_1 (void);
99 static void rtl_make_forwarder_block (edge
);
100 static bool rtl_bb_info_initialized_p (basic_block bb
);
102 /* Return true if NOTE is not one of the ones that must be kept paired,
103 so that we may simply delete it. */
106 can_delete_note_p (const rtx_note
*note
)
108 switch (NOTE_KIND (note
))
110 case NOTE_INSN_DELETED
:
111 case NOTE_INSN_BASIC_BLOCK
:
112 case NOTE_INSN_EPILOGUE_BEG
:
120 /* True if a given label can be deleted. */
123 can_delete_label_p (const rtx_code_label
*label
)
125 return (!LABEL_PRESERVE_P (label
)
126 /* User declared labels must be preserved. */
127 && LABEL_NAME (label
) == 0
128 && !vec_safe_contains
<rtx_insn
*> (forced_labels
,
129 const_cast<rtx_code_label
*> (label
)));
132 /* Delete INSN by patching it out. */
135 delete_insn (rtx_insn
*insn
)
138 bool really_delete
= true;
142 /* Some labels can't be directly removed from the INSN chain, as they
143 might be references via variables, constant pool etc.
144 Convert them to the special NOTE_INSN_DELETED_LABEL note. */
145 if (! can_delete_label_p (as_a
<rtx_code_label
*> (insn
)))
147 const char *name
= LABEL_NAME (insn
);
148 basic_block bb
= BLOCK_FOR_INSN (insn
);
149 rtx_insn
*bb_note
= NEXT_INSN (insn
);
151 really_delete
= false;
152 PUT_CODE (insn
, NOTE
);
153 NOTE_KIND (insn
) = NOTE_INSN_DELETED_LABEL
;
154 NOTE_DELETED_LABEL_NAME (insn
) = name
;
156 /* If the note following the label starts a basic block, and the
157 label is a member of the same basic block, interchange the two. */
158 if (bb_note
!= NULL_RTX
159 && NOTE_INSN_BASIC_BLOCK_P (bb_note
)
161 && bb
== BLOCK_FOR_INSN (bb_note
))
163 reorder_insns_nobb (insn
, insn
, bb_note
);
164 BB_HEAD (bb
) = bb_note
;
165 if (BB_END (bb
) == bb_note
)
170 remove_node_from_insn_list (insn
, &nonlocal_goto_handler_labels
);
175 /* If this insn has already been deleted, something is very wrong. */
176 gcc_assert (!insn
->deleted ());
178 df_insn_delete (insn
);
180 insn
->set_deleted ();
183 /* If deleting a jump, decrement the use count of the label. Deleting
184 the label itself should happen in the normal course of block merging. */
187 if (JUMP_LABEL (insn
)
188 && LABEL_P (JUMP_LABEL (insn
)))
189 LABEL_NUSES (JUMP_LABEL (insn
))--;
191 /* If there are more targets, remove them too. */
193 = find_reg_note (insn
, REG_LABEL_TARGET
, NULL_RTX
)) != NULL_RTX
194 && LABEL_P (XEXP (note
, 0)))
196 LABEL_NUSES (XEXP (note
, 0))--;
197 remove_note (insn
, note
);
201 /* Also if deleting any insn that references a label as an operand. */
202 while ((note
= find_reg_note (insn
, REG_LABEL_OPERAND
, NULL_RTX
)) != NULL_RTX
203 && LABEL_P (XEXP (note
, 0)))
205 LABEL_NUSES (XEXP (note
, 0))--;
206 remove_note (insn
, note
);
209 if (rtx_jump_table_data
*table
= dyn_cast
<rtx_jump_table_data
*> (insn
))
211 rtvec vec
= table
->get_labels ();
212 int len
= GET_NUM_ELEM (vec
);
215 for (i
= 0; i
< len
; i
++)
217 rtx label
= XEXP (RTVEC_ELT (vec
, i
), 0);
219 /* When deleting code in bulk (e.g. removing many unreachable
220 blocks) we can delete a label that's a target of the vector
221 before deleting the vector itself. */
223 LABEL_NUSES (label
)--;
228 /* Like delete_insn but also purge dead edges from BB.
229 Return true if any edges are eliminated. */
232 delete_insn_and_edges (rtx_insn
*insn
)
236 if (INSN_P (insn
) && BLOCK_FOR_INSN (insn
))
238 basic_block bb
= BLOCK_FOR_INSN (insn
);
239 if (BB_END (bb
) == insn
)
241 else if (DEBUG_INSN_P (BB_END (bb
)))
242 for (rtx_insn
*dinsn
= NEXT_INSN (insn
);
243 DEBUG_INSN_P (dinsn
); dinsn
= NEXT_INSN (dinsn
))
244 if (BB_END (bb
) == dinsn
)
252 return purge_dead_edges (BLOCK_FOR_INSN (insn
));
256 /* Unlink a chain of insns between START and FINISH, leaving notes
257 that must be paired. If CLEAR_BB is true, we set bb field for
258 insns that cannot be removed to NULL. */
261 delete_insn_chain (rtx start
, rtx_insn
*finish
, bool clear_bb
)
263 /* Unchain the insns one by one. It would be quicker to delete all of these
264 with a single unchaining, rather than one at a time, but we need to keep
266 rtx_insn
*current
= finish
;
269 rtx_insn
*prev
= PREV_INSN (current
);
270 if (NOTE_P (current
) && !can_delete_note_p (as_a
<rtx_note
*> (current
)))
273 delete_insn (current
);
275 if (clear_bb
&& !current
->deleted ())
276 set_block_for_insn (current
, NULL
);
278 if (current
== start
)
284 /* Create a new basic block consisting of the instructions between HEAD and END
285 inclusive. This function is designed to allow fast BB construction - reuses
286 the note and basic block struct in BB_NOTE, if any and do not grow
287 BASIC_BLOCK chain and should be used directly only by CFG construction code.
288 END can be NULL in to create new empty basic block before HEAD. Both END
289 and HEAD can be NULL to create basic block at the end of INSN chain.
290 AFTER is the basic block we should be put after. */
293 create_basic_block_structure (rtx_insn
*head
, rtx_insn
*end
, rtx_note
*bb_note
,
299 && (bb
= NOTE_BASIC_BLOCK (bb_note
)) != NULL
302 /* If we found an existing note, thread it back onto the chain. */
310 after
= PREV_INSN (head
);
314 if (after
!= bb_note
&& NEXT_INSN (after
) != bb_note
)
315 reorder_insns_nobb (bb_note
, bb_note
, after
);
319 /* Otherwise we must create a note and a basic block structure. */
323 init_rtl_bb_info (bb
);
326 = emit_note_after (NOTE_INSN_BASIC_BLOCK
, get_last_insn ());
327 else if (LABEL_P (head
) && end
)
329 bb_note
= emit_note_after (NOTE_INSN_BASIC_BLOCK
, head
);
335 bb_note
= emit_note_before (NOTE_INSN_BASIC_BLOCK
, head
);
341 NOTE_BASIC_BLOCK (bb_note
) = bb
;
344 /* Always include the bb note in the block. */
345 if (NEXT_INSN (end
) == bb_note
)
350 bb
->index
= last_basic_block_for_fn (cfun
)++;
351 bb
->flags
= BB_NEW
| BB_RTL
;
352 link_block (bb
, after
);
353 SET_BASIC_BLOCK_FOR_FN (cfun
, bb
->index
, bb
);
354 df_bb_refs_record (bb
->index
, false);
355 update_bb_for_insn (bb
);
356 BB_SET_PARTITION (bb
, BB_UNPARTITIONED
);
358 /* Tag the block so that we know it has been used when considering
359 other basic block notes. */
365 /* Create new basic block consisting of instructions in between HEAD and END
366 and place it to the BB chain after block AFTER. END can be NULL to
367 create a new empty basic block before HEAD. Both END and HEAD can be
368 NULL to create basic block at the end of INSN chain. */
371 rtl_create_basic_block (void *headp
, void *endp
, basic_block after
)
373 rtx_insn
*head
= (rtx_insn
*) headp
;
374 rtx_insn
*end
= (rtx_insn
*) endp
;
377 /* Grow the basic block array if needed. */
378 if ((size_t) last_basic_block_for_fn (cfun
)
379 >= basic_block_info_for_fn (cfun
)->length ())
380 vec_safe_grow_cleared (basic_block_info_for_fn (cfun
),
381 last_basic_block_for_fn (cfun
) + 1);
383 n_basic_blocks_for_fn (cfun
)++;
385 bb
= create_basic_block_structure (head
, end
, NULL
, after
);
391 cfg_layout_create_basic_block (void *head
, void *end
, basic_block after
)
393 basic_block newbb
= rtl_create_basic_block (head
, end
, after
);
398 /* Delete the insns in a (non-live) block. We physically delete every
399 non-deleted-note insn, and update the flow graph appropriately.
401 Return nonzero if we deleted an exception handler. */
403 /* ??? Preserving all such notes strikes me as wrong. It would be nice
404 to post-process the stream to remove empty blocks, loops, ranges, etc. */
407 rtl_delete_block (basic_block b
)
409 rtx_insn
*insn
, *end
;
411 /* If the head of this block is a CODE_LABEL, then it might be the
412 label for an exception handler which can't be reached. We need
413 to remove the label from the exception_handler_label list. */
416 end
= get_last_bb_insn (b
);
418 /* Selectively delete the entire chain. */
420 delete_insn_chain (insn
, end
, true);
424 fprintf (dump_file
, "deleting block %d\n", b
->index
);
425 df_bb_delete (b
->index
);
428 /* Records the basic block struct in BLOCK_FOR_INSN for every insn. */
431 compute_bb_for_insn (void)
435 FOR_EACH_BB_FN (bb
, cfun
)
437 rtx_insn
*end
= BB_END (bb
);
440 for (insn
= BB_HEAD (bb
); ; insn
= NEXT_INSN (insn
))
442 BLOCK_FOR_INSN (insn
) = bb
;
449 /* Release the basic_block_for_insn array. */
452 free_bb_for_insn (void)
455 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
456 if (!BARRIER_P (insn
))
457 BLOCK_FOR_INSN (insn
) = NULL
;
463 const pass_data pass_data_free_cfg
=
466 "*free_cfg", /* name */
467 OPTGROUP_NONE
, /* optinfo_flags */
469 0, /* properties_required */
470 0, /* properties_provided */
471 PROP_cfg
, /* properties_destroyed */
472 0, /* todo_flags_start */
473 0, /* todo_flags_finish */
476 class pass_free_cfg
: public rtl_opt_pass
479 pass_free_cfg (gcc::context
*ctxt
)
480 : rtl_opt_pass (pass_data_free_cfg
, ctxt
)
483 /* opt_pass methods: */
484 virtual unsigned int execute (function
*);
486 }; // class pass_free_cfg
489 pass_free_cfg::execute (function
*)
491 /* The resource.c machinery uses DF but the CFG isn't guaranteed to be
492 valid at that point so it would be too late to call df_analyze. */
493 if (DELAY_SLOTS
&& optimize
> 0 && flag_delayed_branch
)
495 df_note_add_problem ();
499 if (crtl
->has_bb_partition
)
500 insert_section_boundary_note ();
509 make_pass_free_cfg (gcc::context
*ctxt
)
511 return new pass_free_cfg (ctxt
);
514 /* Return RTX to emit after when we want to emit code on the entry of function. */
516 entry_of_function (void)
518 return (n_basic_blocks_for_fn (cfun
) > NUM_FIXED_BLOCKS
?
519 BB_HEAD (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
) : get_insns ());
522 /* Emit INSN at the entry point of the function, ensuring that it is only
523 executed once per function. */
525 emit_insn_at_entry (rtx insn
)
527 edge_iterator ei
= ei_start (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->succs
);
528 edge e
= ei_safe_edge (ei
);
529 gcc_assert (e
->flags
& EDGE_FALLTHRU
);
531 insert_insn_on_edge (insn
, e
);
532 commit_edge_insertions ();
535 /* Update BLOCK_FOR_INSN of insns between BEGIN and END
536 (or BARRIER if found) and notify df of the bb change.
537 The insn chain range is inclusive
538 (i.e. both BEGIN and END will be updated. */
541 update_bb_for_insn_chain (rtx_insn
*begin
, rtx_insn
*end
, basic_block bb
)
545 end
= NEXT_INSN (end
);
546 for (insn
= begin
; insn
!= end
; insn
= NEXT_INSN (insn
))
547 if (!BARRIER_P (insn
))
548 df_insn_change_bb (insn
, bb
);
551 /* Update BLOCK_FOR_INSN of insns in BB to BB,
552 and notify df of the change. */
555 update_bb_for_insn (basic_block bb
)
557 update_bb_for_insn_chain (BB_HEAD (bb
), BB_END (bb
), bb
);
561 /* Like active_insn_p, except keep the return value use or clobber around
562 even after reload. */
565 flow_active_insn_p (const rtx_insn
*insn
)
567 if (active_insn_p (insn
))
570 /* A clobber of the function return value exists for buggy
571 programs that fail to return a value. Its effect is to
572 keep the return value from being live across the entire
573 function. If we allow it to be skipped, we introduce the
574 possibility for register lifetime confusion.
575 Similarly, keep a USE of the function return value, otherwise
576 the USE is dropped and we could fail to thread jump if USE
577 appears on some paths and not on others, see PR90257. */
578 if ((GET_CODE (PATTERN (insn
)) == CLOBBER
579 || GET_CODE (PATTERN (insn
)) == USE
)
580 && REG_P (XEXP (PATTERN (insn
), 0))
581 && REG_FUNCTION_VALUE_P (XEXP (PATTERN (insn
), 0)))
587 /* Return true if the block has no effect and only forwards control flow to
588 its single destination. */
591 contains_no_active_insn_p (const_basic_block bb
)
595 if (bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
596 || bb
== ENTRY_BLOCK_PTR_FOR_FN (cfun
)
597 || !single_succ_p (bb
)
598 || (single_succ_edge (bb
)->flags
& EDGE_FAKE
) != 0)
601 for (insn
= BB_HEAD (bb
); insn
!= BB_END (bb
); insn
= NEXT_INSN (insn
))
602 if (INSN_P (insn
) && flow_active_insn_p (insn
))
605 return (!INSN_P (insn
)
606 || (JUMP_P (insn
) && simplejump_p (insn
))
607 || !flow_active_insn_p (insn
));
610 /* Likewise, but protect loop latches, headers and preheaders. */
611 /* FIXME: Make this a cfg hook. */
614 forwarder_block_p (const_basic_block bb
)
616 if (!contains_no_active_insn_p (bb
))
619 /* Protect loop latches, headers and preheaders. */
623 if (bb
->loop_father
->header
== bb
)
625 dest
= EDGE_SUCC (bb
, 0)->dest
;
626 if (dest
->loop_father
->header
== dest
)
633 /* Return nonzero if we can reach target from src by falling through. */
634 /* FIXME: Make this a cfg hook, the result is only valid in cfgrtl mode. */
637 can_fallthru (basic_block src
, basic_block target
)
639 rtx_insn
*insn
= BB_END (src
);
644 if (target
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
646 if (src
->next_bb
!= target
)
649 /* ??? Later we may add code to move jump tables offline. */
650 if (tablejump_p (insn
, NULL
, NULL
))
653 FOR_EACH_EDGE (e
, ei
, src
->succs
)
654 if (e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
655 && e
->flags
& EDGE_FALLTHRU
)
658 insn2
= BB_HEAD (target
);
659 if (!active_insn_p (insn2
))
660 insn2
= next_active_insn (insn2
);
662 return next_active_insn (insn
) == insn2
;
665 /* Return nonzero if we could reach target from src by falling through,
666 if the target was made adjacent. If we already have a fall-through
667 edge to the exit block, we can't do that. */
669 could_fall_through (basic_block src
, basic_block target
)
674 if (target
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
676 FOR_EACH_EDGE (e
, ei
, src
->succs
)
677 if (e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
678 && e
->flags
& EDGE_FALLTHRU
)
683 /* Return the NOTE_INSN_BASIC_BLOCK of BB. */
685 bb_note (basic_block bb
)
691 note
= NEXT_INSN (note
);
693 gcc_assert (NOTE_INSN_BASIC_BLOCK_P (note
));
694 return as_a
<rtx_note
*> (note
);
697 /* Return the INSN immediately following the NOTE_INSN_BASIC_BLOCK
698 note associated with the BLOCK. */
701 first_insn_after_basic_block_note (basic_block block
)
705 /* Get the first instruction in the block. */
706 insn
= BB_HEAD (block
);
708 if (insn
== NULL_RTX
)
711 insn
= NEXT_INSN (insn
);
712 gcc_assert (NOTE_INSN_BASIC_BLOCK_P (insn
));
714 return NEXT_INSN (insn
);
717 /* Creates a new basic block just after basic block BB by splitting
718 everything after specified instruction INSNP. */
721 rtl_split_block (basic_block bb
, void *insnp
)
724 rtx_insn
*insn
= (rtx_insn
*) insnp
;
730 insn
= first_insn_after_basic_block_note (bb
);
734 rtx_insn
*next
= insn
;
736 insn
= PREV_INSN (insn
);
738 /* If the block contains only debug insns, insn would have
739 been NULL in a non-debug compilation, and then we'd end
740 up emitting a DELETED note. For -fcompare-debug
741 stability, emit the note too. */
742 if (insn
!= BB_END (bb
)
743 && DEBUG_INSN_P (next
)
744 && DEBUG_INSN_P (BB_END (bb
)))
746 while (next
!= BB_END (bb
) && DEBUG_INSN_P (next
))
747 next
= NEXT_INSN (next
);
749 if (next
== BB_END (bb
))
750 emit_note_after (NOTE_INSN_DELETED
, next
);
754 insn
= get_last_insn ();
757 /* We probably should check type of the insn so that we do not create
758 inconsistent cfg. It is checked in verify_flow_info anyway, so do not
760 if (insn
== BB_END (bb
))
761 emit_note_after (NOTE_INSN_DELETED
, insn
);
763 /* Create the new basic block. */
764 new_bb
= create_basic_block (NEXT_INSN (insn
), BB_END (bb
), bb
);
765 BB_COPY_PARTITION (new_bb
, bb
);
768 /* Redirect the outgoing edges. */
769 new_bb
->succs
= bb
->succs
;
771 FOR_EACH_EDGE (e
, ei
, new_bb
->succs
)
774 /* The new block starts off being dirty. */
775 df_set_bb_dirty (bb
);
779 /* Return true if the single edge between blocks A and B is the only place
780 in RTL which holds some unique locus. */
783 unique_locus_on_edge_between_p (basic_block a
, basic_block b
)
785 const location_t goto_locus
= EDGE_SUCC (a
, 0)->goto_locus
;
786 rtx_insn
*insn
, *end
;
788 if (LOCATION_LOCUS (goto_locus
) == UNKNOWN_LOCATION
)
791 /* First scan block A backward. */
793 end
= PREV_INSN (BB_HEAD (a
));
794 while (insn
!= end
&& (!NONDEBUG_INSN_P (insn
) || !INSN_HAS_LOCATION (insn
)))
795 insn
= PREV_INSN (insn
);
797 if (insn
!= end
&& INSN_LOCATION (insn
) == goto_locus
)
800 /* Then scan block B forward. */
804 end
= NEXT_INSN (BB_END (b
));
805 while (insn
!= end
&& !NONDEBUG_INSN_P (insn
))
806 insn
= NEXT_INSN (insn
);
808 if (insn
!= end
&& INSN_HAS_LOCATION (insn
)
809 && INSN_LOCATION (insn
) == goto_locus
)
816 /* If the single edge between blocks A and B is the only place in RTL which
817 holds some unique locus, emit a nop with that locus between the blocks. */
820 emit_nop_for_unique_locus_between (basic_block a
, basic_block b
)
822 if (!unique_locus_on_edge_between_p (a
, b
))
825 BB_END (a
) = emit_insn_after_noloc (gen_nop (), BB_END (a
), a
);
826 INSN_LOCATION (BB_END (a
)) = EDGE_SUCC (a
, 0)->goto_locus
;
829 /* Blocks A and B are to be merged into a single block A. The insns
830 are already contiguous. */
833 rtl_merge_blocks (basic_block a
, basic_block b
)
835 /* If B is a forwarder block whose outgoing edge has no location, we'll
836 propagate the locus of the edge between A and B onto it. */
837 const bool forward_edge_locus
838 = (b
->flags
& BB_FORWARDER_BLOCK
) != 0
839 && LOCATION_LOCUS (EDGE_SUCC (b
, 0)->goto_locus
) == UNKNOWN_LOCATION
;
840 rtx_insn
*b_head
= BB_HEAD (b
), *b_end
= BB_END (b
), *a_end
= BB_END (a
);
841 rtx_insn
*del_first
= NULL
, *del_last
= NULL
;
842 rtx_insn
*b_debug_start
= b_end
, *b_debug_end
= b_end
;
846 fprintf (dump_file
, "Merging block %d into block %d...\n", b
->index
,
849 while (DEBUG_INSN_P (b_end
))
850 b_end
= PREV_INSN (b_debug_start
= b_end
);
852 /* If there was a CODE_LABEL beginning B, delete it. */
853 if (LABEL_P (b_head
))
855 /* Detect basic blocks with nothing but a label. This can happen
856 in particular at the end of a function. */
860 del_first
= del_last
= b_head
;
861 b_head
= NEXT_INSN (b_head
);
864 /* Delete the basic block note and handle blocks containing just that
866 if (NOTE_INSN_BASIC_BLOCK_P (b_head
))
874 b_head
= NEXT_INSN (b_head
);
877 /* If there was a jump out of A, delete it. */
882 for (prev
= PREV_INSN (a_end
); ; prev
= PREV_INSN (prev
))
884 || NOTE_INSN_BASIC_BLOCK_P (prev
)
885 || prev
== BB_HEAD (a
))
890 /* If this was a conditional jump, we need to also delete
891 the insn that set cc0. */
892 if (HAVE_cc0
&& only_sets_cc0_p (prev
))
894 rtx_insn
*tmp
= prev
;
896 prev
= prev_nonnote_insn (prev
);
902 a_end
= PREV_INSN (del_first
);
904 else if (BARRIER_P (NEXT_INSN (a_end
)))
905 del_first
= NEXT_INSN (a_end
);
907 /* Delete everything marked above as well as crap that might be
908 hanging out between the two blocks. */
910 BB_HEAD (b
) = b_empty
? NULL
: b_head
;
911 delete_insn_chain (del_first
, del_last
, true);
913 /* If not optimizing, preserve the locus of the single edge between
914 blocks A and B if necessary by emitting a nop. */
916 && !forward_edge_locus
917 && !DECL_IGNORED_P (current_function_decl
))
919 emit_nop_for_unique_locus_between (a
, b
);
923 /* Reassociate the insns of B with A. */
926 update_bb_for_insn_chain (a_end
, b_debug_end
, a
);
928 BB_END (a
) = b_debug_end
;
931 else if (b_end
!= b_debug_end
)
933 /* Move any deleted labels and other notes between the end of A
934 and the debug insns that make up B after the debug insns,
935 bringing the debug insns into A while keeping the notes after
937 if (NEXT_INSN (a_end
) != b_debug_start
)
938 reorder_insns_nobb (NEXT_INSN (a_end
), PREV_INSN (b_debug_start
),
940 update_bb_for_insn_chain (b_debug_start
, b_debug_end
, a
);
941 BB_END (a
) = b_debug_end
;
944 df_bb_delete (b
->index
);
946 if (forward_edge_locus
)
947 EDGE_SUCC (b
, 0)->goto_locus
= EDGE_SUCC (a
, 0)->goto_locus
;
950 fprintf (dump_file
, "Merged blocks %d and %d.\n", a
->index
, b
->index
);
954 /* Return true when block A and B can be merged. */
957 rtl_can_merge_blocks (basic_block a
, basic_block b
)
959 /* If we are partitioning hot/cold basic blocks, we don't want to
960 mess up unconditional or indirect jumps that cross between hot
963 Basic block partitioning may result in some jumps that appear to
964 be optimizable (or blocks that appear to be mergeable), but which really
965 must be left untouched (they are required to make it safely across
966 partition boundaries). See the comments at the top of
967 bb-reorder.c:partition_hot_cold_basic_blocks for complete details. */
969 if (BB_PARTITION (a
) != BB_PARTITION (b
))
972 /* Protect the loop latches. */
973 if (current_loops
&& b
->loop_father
->latch
== b
)
976 /* There must be exactly one edge in between the blocks. */
977 return (single_succ_p (a
)
978 && single_succ (a
) == b
981 /* Must be simple edge. */
982 && !(single_succ_edge (a
)->flags
& EDGE_COMPLEX
)
984 && a
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
985 && b
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
986 /* If the jump insn has side effects,
987 we can't kill the edge. */
988 && (!JUMP_P (BB_END (a
))
990 ? simplejump_p (BB_END (a
)) : onlyjump_p (BB_END (a
)))));
993 /* Return the label in the head of basic block BLOCK. Create one if it doesn't
997 block_label (basic_block block
)
999 if (block
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1002 if (!LABEL_P (BB_HEAD (block
)))
1004 BB_HEAD (block
) = emit_label_before (gen_label_rtx (), BB_HEAD (block
));
1007 return as_a
<rtx_code_label
*> (BB_HEAD (block
));
1010 /* Remove all barriers from BB_FOOTER of a BB. */
1013 remove_barriers_from_footer (basic_block bb
)
1015 rtx_insn
*insn
= BB_FOOTER (bb
);
1017 /* Remove barriers but keep jumptables. */
1020 if (BARRIER_P (insn
))
1022 if (PREV_INSN (insn
))
1023 SET_NEXT_INSN (PREV_INSN (insn
)) = NEXT_INSN (insn
);
1025 BB_FOOTER (bb
) = NEXT_INSN (insn
);
1026 if (NEXT_INSN (insn
))
1027 SET_PREV_INSN (NEXT_INSN (insn
)) = PREV_INSN (insn
);
1031 insn
= NEXT_INSN (insn
);
1035 /* Attempt to perform edge redirection by replacing possibly complex jump
1036 instruction by unconditional jump or removing jump completely. This can
1037 apply only if all edges now point to the same block. The parameters and
1038 return values are equivalent to redirect_edge_and_branch. */
1041 try_redirect_by_replacing_jump (edge e
, basic_block target
, bool in_cfglayout
)
1043 basic_block src
= e
->src
;
1044 rtx_insn
*insn
= BB_END (src
), *kill_from
;
1048 /* If we are partitioning hot/cold basic blocks, we don't want to
1049 mess up unconditional or indirect jumps that cross between hot
1052 Basic block partitioning may result in some jumps that appear to
1053 be optimizable (or blocks that appear to be mergeable), but which really
1054 must be left untouched (they are required to make it safely across
1055 partition boundaries). See the comments at the top of
1056 bb-reorder.c:partition_hot_cold_basic_blocks for complete details. */
1058 if (BB_PARTITION (src
) != BB_PARTITION (target
))
1061 /* We can replace or remove a complex jump only when we have exactly
1062 two edges. Also, if we have exactly one outgoing edge, we can
1064 if (EDGE_COUNT (src
->succs
) >= 3
1065 /* Verify that all targets will be TARGET. Specifically, the
1066 edge that is not E must also go to TARGET. */
1067 || (EDGE_COUNT (src
->succs
) == 2
1068 && EDGE_SUCC (src
, EDGE_SUCC (src
, 0) == e
)->dest
!= target
))
1071 if (!onlyjump_p (insn
))
1073 if ((!optimize
|| reload_completed
) && tablejump_p (insn
, NULL
, NULL
))
1076 /* Avoid removing branch with side effects. */
1077 set
= single_set (insn
);
1078 if (!set
|| side_effects_p (set
))
1081 /* In case we zap a conditional jump, we'll need to kill
1082 the cc0 setter too. */
1084 if (HAVE_cc0
&& reg_mentioned_p (cc0_rtx
, PATTERN (insn
))
1085 && only_sets_cc0_p (PREV_INSN (insn
)))
1086 kill_from
= PREV_INSN (insn
);
1088 /* See if we can create the fallthru edge. */
1089 if (in_cfglayout
|| can_fallthru (src
, target
))
1092 fprintf (dump_file
, "Removing jump %i.\n", INSN_UID (insn
));
1095 /* Selectively unlink whole insn chain. */
1098 delete_insn_chain (kill_from
, BB_END (src
), false);
1099 remove_barriers_from_footer (src
);
1102 delete_insn_chain (kill_from
, PREV_INSN (BB_HEAD (target
)),
1106 /* If this already is simplejump, redirect it. */
1107 else if (simplejump_p (insn
))
1109 if (e
->dest
== target
)
1112 fprintf (dump_file
, "Redirecting jump %i from %i to %i.\n",
1113 INSN_UID (insn
), e
->dest
->index
, target
->index
);
1114 if (!redirect_jump (as_a
<rtx_jump_insn
*> (insn
),
1115 block_label (target
), 0))
1117 gcc_assert (target
== EXIT_BLOCK_PTR_FOR_FN (cfun
));
1122 /* Cannot do anything for target exit block. */
1123 else if (target
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1126 /* Or replace possibly complicated jump insn by simple jump insn. */
1129 rtx_code_label
*target_label
= block_label (target
);
1132 rtx_jump_table_data
*table
;
1134 emit_jump_insn_after_noloc (targetm
.gen_jump (target_label
), insn
);
1135 JUMP_LABEL (BB_END (src
)) = target_label
;
1136 LABEL_NUSES (target_label
)++;
1138 fprintf (dump_file
, "Replacing insn %i by jump %i\n",
1139 INSN_UID (insn
), INSN_UID (BB_END (src
)));
1142 delete_insn_chain (kill_from
, insn
, false);
1144 /* Recognize a tablejump that we are converting to a
1145 simple jump and remove its associated CODE_LABEL
1146 and ADDR_VEC or ADDR_DIFF_VEC. */
1147 if (tablejump_p (insn
, &label
, &table
))
1148 delete_insn_chain (label
, table
, false);
1150 barrier
= next_nonnote_nondebug_insn (BB_END (src
));
1151 if (!barrier
|| !BARRIER_P (barrier
))
1152 emit_barrier_after (BB_END (src
));
1155 if (barrier
!= NEXT_INSN (BB_END (src
)))
1157 /* Move the jump before barrier so that the notes
1158 which originally were or were created before jump table are
1159 inside the basic block. */
1160 rtx_insn
*new_insn
= BB_END (src
);
1162 update_bb_for_insn_chain (NEXT_INSN (BB_END (src
)),
1163 PREV_INSN (barrier
), src
);
1165 SET_NEXT_INSN (PREV_INSN (new_insn
)) = NEXT_INSN (new_insn
);
1166 SET_PREV_INSN (NEXT_INSN (new_insn
)) = PREV_INSN (new_insn
);
1168 SET_NEXT_INSN (new_insn
) = barrier
;
1169 SET_NEXT_INSN (PREV_INSN (barrier
)) = new_insn
;
1171 SET_PREV_INSN (new_insn
) = PREV_INSN (barrier
);
1172 SET_PREV_INSN (barrier
) = new_insn
;
1177 /* Keep only one edge out and set proper flags. */
1178 if (!single_succ_p (src
))
1180 gcc_assert (single_succ_p (src
));
1182 e
= single_succ_edge (src
);
1184 e
->flags
= EDGE_FALLTHRU
;
1188 e
->probability
= profile_probability::always ();
1190 if (e
->dest
!= target
)
1191 redirect_edge_succ (e
, target
);
1195 /* Subroutine of redirect_branch_edge that tries to patch the jump
1196 instruction INSN so that it reaches block NEW. Do this
1197 only when it originally reached block OLD. Return true if this
1198 worked or the original target wasn't OLD, return false if redirection
1202 patch_jump_insn (rtx_insn
*insn
, rtx_insn
*old_label
, basic_block new_bb
)
1204 rtx_jump_table_data
*table
;
1206 /* Recognize a tablejump and adjust all matching cases. */
1207 if (tablejump_p (insn
, NULL
, &table
))
1211 rtx_code_label
*new_label
= block_label (new_bb
);
1213 if (new_bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1215 vec
= table
->get_labels ();
1217 for (j
= GET_NUM_ELEM (vec
) - 1; j
>= 0; --j
)
1218 if (XEXP (RTVEC_ELT (vec
, j
), 0) == old_label
)
1220 RTVEC_ELT (vec
, j
) = gen_rtx_LABEL_REF (Pmode
, new_label
);
1221 --LABEL_NUSES (old_label
);
1222 ++LABEL_NUSES (new_label
);
1225 /* Handle casesi dispatch insns. */
1226 if ((tmp
= tablejump_casesi_pattern (insn
)) != NULL_RTX
1227 && label_ref_label (XEXP (SET_SRC (tmp
), 2)) == old_label
)
1229 XEXP (SET_SRC (tmp
), 2) = gen_rtx_LABEL_REF (Pmode
,
1231 --LABEL_NUSES (old_label
);
1232 ++LABEL_NUSES (new_label
);
1235 else if ((tmp
= extract_asm_operands (PATTERN (insn
))) != NULL
)
1237 int i
, n
= ASM_OPERANDS_LABEL_LENGTH (tmp
);
1240 if (new_bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1242 rtx_code_label
*new_label
= block_label (new_bb
);
1244 for (i
= 0; i
< n
; ++i
)
1246 rtx old_ref
= ASM_OPERANDS_LABEL (tmp
, i
);
1247 gcc_assert (GET_CODE (old_ref
) == LABEL_REF
);
1248 if (XEXP (old_ref
, 0) == old_label
)
1250 ASM_OPERANDS_LABEL (tmp
, i
)
1251 = gen_rtx_LABEL_REF (Pmode
, new_label
);
1252 --LABEL_NUSES (old_label
);
1253 ++LABEL_NUSES (new_label
);
1257 if (JUMP_LABEL (insn
) == old_label
)
1259 JUMP_LABEL (insn
) = new_label
;
1260 note
= find_reg_note (insn
, REG_LABEL_TARGET
, new_label
);
1262 remove_note (insn
, note
);
1266 note
= find_reg_note (insn
, REG_LABEL_TARGET
, old_label
);
1268 remove_note (insn
, note
);
1269 if (JUMP_LABEL (insn
) != new_label
1270 && !find_reg_note (insn
, REG_LABEL_TARGET
, new_label
))
1271 add_reg_note (insn
, REG_LABEL_TARGET
, new_label
);
1273 while ((note
= find_reg_note (insn
, REG_LABEL_OPERAND
, old_label
))
1275 XEXP (note
, 0) = new_label
;
1279 /* ?? We may play the games with moving the named labels from
1280 one basic block to the other in case only one computed_jump is
1282 if (computed_jump_p (insn
)
1283 /* A return instruction can't be redirected. */
1284 || returnjump_p (insn
))
1287 if (!currently_expanding_to_rtl
|| JUMP_LABEL (insn
) == old_label
)
1289 /* If the insn doesn't go where we think, we're confused. */
1290 gcc_assert (JUMP_LABEL (insn
) == old_label
);
1292 /* If the substitution doesn't succeed, die. This can happen
1293 if the back end emitted unrecognizable instructions or if
1294 target is exit block on some arches. Or for crossing
1296 if (!redirect_jump (as_a
<rtx_jump_insn
*> (insn
),
1297 block_label (new_bb
), 0))
1299 gcc_assert (new_bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
1300 || CROSSING_JUMP_P (insn
));
1309 /* Redirect edge representing branch of (un)conditional jump or tablejump,
1312 redirect_branch_edge (edge e
, basic_block target
)
1314 rtx_insn
*old_label
= BB_HEAD (e
->dest
);
1315 basic_block src
= e
->src
;
1316 rtx_insn
*insn
= BB_END (src
);
1318 /* We can only redirect non-fallthru edges of jump insn. */
1319 if (e
->flags
& EDGE_FALLTHRU
)
1321 else if (!JUMP_P (insn
) && !currently_expanding_to_rtl
)
1324 if (!currently_expanding_to_rtl
)
1326 if (!patch_jump_insn (as_a
<rtx_jump_insn
*> (insn
), old_label
, target
))
1330 /* When expanding this BB might actually contain multiple
1331 jumps (i.e. not yet split by find_many_sub_basic_blocks).
1332 Redirect all of those that match our label. */
1333 FOR_BB_INSNS (src
, insn
)
1334 if (JUMP_P (insn
) && !patch_jump_insn (as_a
<rtx_jump_insn
*> (insn
),
1339 fprintf (dump_file
, "Edge %i->%i redirected to %i\n",
1340 e
->src
->index
, e
->dest
->index
, target
->index
);
1342 if (e
->dest
!= target
)
1343 e
= redirect_edge_succ_nodup (e
, target
);
1348 /* Called when edge E has been redirected to a new destination,
1349 in order to update the region crossing flag on the edge and
1353 fixup_partition_crossing (edge e
)
1355 if (e
->src
== ENTRY_BLOCK_PTR_FOR_FN (cfun
) || e
->dest
1356 == EXIT_BLOCK_PTR_FOR_FN (cfun
))
1358 /* If we redirected an existing edge, it may already be marked
1359 crossing, even though the new src is missing a reg crossing note.
1360 But make sure reg crossing note doesn't already exist before
1362 if (BB_PARTITION (e
->src
) != BB_PARTITION (e
->dest
))
1364 e
->flags
|= EDGE_CROSSING
;
1365 if (JUMP_P (BB_END (e
->src
)))
1366 CROSSING_JUMP_P (BB_END (e
->src
)) = 1;
1368 else if (BB_PARTITION (e
->src
) == BB_PARTITION (e
->dest
))
1370 e
->flags
&= ~EDGE_CROSSING
;
1371 /* Remove the section crossing note from jump at end of
1372 src if it exists, and if no other successors are
1374 if (JUMP_P (BB_END (e
->src
)) && CROSSING_JUMP_P (BB_END (e
->src
)))
1376 bool has_crossing_succ
= false;
1379 FOR_EACH_EDGE (e2
, ei
, e
->src
->succs
)
1381 has_crossing_succ
|= (e2
->flags
& EDGE_CROSSING
);
1382 if (has_crossing_succ
)
1385 if (!has_crossing_succ
)
1386 CROSSING_JUMP_P (BB_END (e
->src
)) = 0;
1391 /* Called when block BB has been reassigned to the cold partition,
1392 because it is now dominated by another cold block,
1393 to ensure that the region crossing attributes are updated. */
1396 fixup_new_cold_bb (basic_block bb
)
1401 /* This is called when a hot bb is found to now be dominated
1402 by a cold bb and therefore needs to become cold. Therefore,
1403 its preds will no longer be region crossing. Any non-dominating
1404 preds that were previously hot would also have become cold
1405 in the caller for the same region. Any preds that were previously
1406 region-crossing will be adjusted in fixup_partition_crossing. */
1407 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
1409 fixup_partition_crossing (e
);
1412 /* Possibly need to make bb's successor edges region crossing,
1413 or remove stale region crossing. */
1414 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
1416 /* We can't have fall-through edges across partition boundaries.
1417 Note that force_nonfallthru will do any necessary partition
1418 boundary fixup by calling fixup_partition_crossing itself. */
1419 if ((e
->flags
& EDGE_FALLTHRU
)
1420 && BB_PARTITION (bb
) != BB_PARTITION (e
->dest
)
1421 && e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
1422 force_nonfallthru (e
);
1424 fixup_partition_crossing (e
);
1428 /* Attempt to change code to redirect edge E to TARGET. Don't do that on
1429 expense of adding new instructions or reordering basic blocks.
1431 Function can be also called with edge destination equivalent to the TARGET.
1432 Then it should try the simplifications and do nothing if none is possible.
1434 Return edge representing the branch if transformation succeeded. Return NULL
1436 We still return NULL in case E already destinated TARGET and we didn't
1437 managed to simplify instruction stream. */
1440 rtl_redirect_edge_and_branch (edge e
, basic_block target
)
1443 basic_block src
= e
->src
;
1444 basic_block dest
= e
->dest
;
1446 if (e
->flags
& (EDGE_ABNORMAL_CALL
| EDGE_EH
))
1452 if ((ret
= try_redirect_by_replacing_jump (e
, target
, false)) != NULL
)
1454 df_set_bb_dirty (src
);
1455 fixup_partition_crossing (ret
);
1459 ret
= redirect_branch_edge (e
, target
);
1463 df_set_bb_dirty (src
);
1464 fixup_partition_crossing (ret
);
1468 /* Emit a barrier after BB, into the footer if we are in CFGLAYOUT mode. */
1471 emit_barrier_after_bb (basic_block bb
)
1473 rtx_barrier
*barrier
= emit_barrier_after (BB_END (bb
));
1474 gcc_assert (current_ir_type () == IR_RTL_CFGRTL
1475 || current_ir_type () == IR_RTL_CFGLAYOUT
);
1476 if (current_ir_type () == IR_RTL_CFGLAYOUT
)
1478 rtx_insn
*insn
= unlink_insn_chain (barrier
, barrier
);
1482 rtx_insn
*footer_tail
= BB_FOOTER (bb
);
1484 while (NEXT_INSN (footer_tail
))
1485 footer_tail
= NEXT_INSN (footer_tail
);
1486 if (!BARRIER_P (footer_tail
))
1488 SET_NEXT_INSN (footer_tail
) = insn
;
1489 SET_PREV_INSN (insn
) = footer_tail
;
1493 BB_FOOTER (bb
) = insn
;
1497 /* Like force_nonfallthru below, but additionally performs redirection
1498 Used by redirect_edge_and_branch_force. JUMP_LABEL is used only
1499 when redirecting to the EXIT_BLOCK, it is either ret_rtx or
1500 simple_return_rtx, indicating which kind of returnjump to create.
1501 It should be NULL otherwise. */
1504 force_nonfallthru_and_redirect (edge e
, basic_block target
, rtx jump_label
)
1506 basic_block jump_block
, new_bb
= NULL
, src
= e
->src
;
1509 int abnormal_edge_flags
= 0;
1510 bool asm_goto_edge
= false;
1513 /* In the case the last instruction is conditional jump to the next
1514 instruction, first redirect the jump itself and then continue
1515 by creating a basic block afterwards to redirect fallthru edge. */
1516 if (e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
1517 && e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
1518 && any_condjump_p (BB_END (e
->src
))
1519 && JUMP_LABEL (BB_END (e
->src
)) == BB_HEAD (e
->dest
))
1522 edge b
= unchecked_make_edge (e
->src
, target
, 0);
1525 redirected
= redirect_jump (as_a
<rtx_jump_insn
*> (BB_END (e
->src
)),
1526 block_label (target
), 0);
1527 gcc_assert (redirected
);
1529 note
= find_reg_note (BB_END (e
->src
), REG_BR_PROB
, NULL_RTX
);
1532 int prob
= XINT (note
, 0);
1534 b
->probability
= profile_probability::from_reg_br_prob_note (prob
);
1535 e
->probability
-= e
->probability
;
1539 if (e
->flags
& EDGE_ABNORMAL
)
1541 /* Irritating special case - fallthru edge to the same block as abnormal
1543 We can't redirect abnormal edge, but we still can split the fallthru
1544 one and create separate abnormal edge to original destination.
1545 This allows bb-reorder to make such edge non-fallthru. */
1546 gcc_assert (e
->dest
== target
);
1547 abnormal_edge_flags
= e
->flags
& ~EDGE_FALLTHRU
;
1548 e
->flags
&= EDGE_FALLTHRU
;
1552 gcc_assert (e
->flags
& EDGE_FALLTHRU
);
1553 if (e
->src
== ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1555 /* We can't redirect the entry block. Create an empty block
1556 at the start of the function which we use to add the new
1562 basic_block bb
= create_basic_block (BB_HEAD (e
->dest
), NULL
,
1563 ENTRY_BLOCK_PTR_FOR_FN (cfun
));
1564 bb
->count
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->count
;
1566 /* Make sure new block ends up in correct hot/cold section. */
1567 BB_COPY_PARTITION (bb
, e
->dest
);
1569 /* Change the existing edge's source to be the new block, and add
1570 a new edge from the entry block to the new block. */
1572 for (ei
= ei_start (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->succs
);
1573 (tmp
= ei_safe_edge (ei
)); )
1577 ENTRY_BLOCK_PTR_FOR_FN (cfun
)->succs
->unordered_remove (ei
.index
);
1587 vec_safe_push (bb
->succs
, e
);
1588 make_single_succ_edge (ENTRY_BLOCK_PTR_FOR_FN (cfun
), bb
,
1593 /* If e->src ends with asm goto, see if any of the ASM_OPERANDS_LABELs
1594 don't point to the target or fallthru label. */
1595 if (JUMP_P (BB_END (e
->src
))
1596 && target
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
1597 && (e
->flags
& EDGE_FALLTHRU
)
1598 && (note
= extract_asm_operands (PATTERN (BB_END (e
->src
)))))
1600 int i
, n
= ASM_OPERANDS_LABEL_LENGTH (note
);
1601 bool adjust_jump_target
= false;
1603 for (i
= 0; i
< n
; ++i
)
1605 if (XEXP (ASM_OPERANDS_LABEL (note
, i
), 0) == BB_HEAD (e
->dest
))
1607 LABEL_NUSES (XEXP (ASM_OPERANDS_LABEL (note
, i
), 0))--;
1608 XEXP (ASM_OPERANDS_LABEL (note
, i
), 0) = block_label (target
);
1609 LABEL_NUSES (XEXP (ASM_OPERANDS_LABEL (note
, i
), 0))++;
1610 adjust_jump_target
= true;
1612 if (XEXP (ASM_OPERANDS_LABEL (note
, i
), 0) == BB_HEAD (target
))
1613 asm_goto_edge
= true;
1615 if (adjust_jump_target
)
1617 rtx_insn
*insn
= BB_END (e
->src
);
1619 rtx_insn
*old_label
= BB_HEAD (e
->dest
);
1620 rtx_insn
*new_label
= BB_HEAD (target
);
1622 if (JUMP_LABEL (insn
) == old_label
)
1624 JUMP_LABEL (insn
) = new_label
;
1625 note
= find_reg_note (insn
, REG_LABEL_TARGET
, new_label
);
1627 remove_note (insn
, note
);
1631 note
= find_reg_note (insn
, REG_LABEL_TARGET
, old_label
);
1633 remove_note (insn
, note
);
1634 if (JUMP_LABEL (insn
) != new_label
1635 && !find_reg_note (insn
, REG_LABEL_TARGET
, new_label
))
1636 add_reg_note (insn
, REG_LABEL_TARGET
, new_label
);
1638 while ((note
= find_reg_note (insn
, REG_LABEL_OPERAND
, old_label
))
1640 XEXP (note
, 0) = new_label
;
1644 if (EDGE_COUNT (e
->src
->succs
) >= 2 || abnormal_edge_flags
|| asm_goto_edge
)
1647 profile_count count
= e
->count ();
1648 profile_probability probability
= e
->probability
;
1649 /* Create the new structures. */
1651 /* If the old block ended with a tablejump, skip its table
1652 by searching forward from there. Otherwise start searching
1653 forward from the last instruction of the old block. */
1654 rtx_jump_table_data
*table
;
1655 if (tablejump_p (BB_END (e
->src
), NULL
, &table
))
1658 new_head
= BB_END (e
->src
);
1659 new_head
= NEXT_INSN (new_head
);
1661 jump_block
= create_basic_block (new_head
, NULL
, e
->src
);
1662 jump_block
->count
= count
;
1664 /* Make sure new block ends up in correct hot/cold section. */
1666 BB_COPY_PARTITION (jump_block
, e
->src
);
1669 new_edge
= make_edge (e
->src
, jump_block
, EDGE_FALLTHRU
);
1670 new_edge
->probability
= probability
;
1672 /* Redirect old edge. */
1673 redirect_edge_pred (e
, jump_block
);
1674 e
->probability
= profile_probability::always ();
1676 /* If e->src was previously region crossing, it no longer is
1677 and the reg crossing note should be removed. */
1678 fixup_partition_crossing (new_edge
);
1680 /* If asm goto has any label refs to target's label,
1681 add also edge from asm goto bb to target. */
1684 new_edge
->probability
= new_edge
->probability
.apply_scale (1, 2);
1685 jump_block
->count
= jump_block
->count
.apply_scale (1, 2);
1686 edge new_edge2
= make_edge (new_edge
->src
, target
,
1687 e
->flags
& ~EDGE_FALLTHRU
);
1688 new_edge2
->probability
= probability
- new_edge
->probability
;
1691 new_bb
= jump_block
;
1694 jump_block
= e
->src
;
1696 loc
= e
->goto_locus
;
1697 e
->flags
&= ~EDGE_FALLTHRU
;
1698 if (target
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1700 if (jump_label
== ret_rtx
)
1701 emit_jump_insn_after_setloc (targetm
.gen_return (),
1702 BB_END (jump_block
), loc
);
1705 gcc_assert (jump_label
== simple_return_rtx
);
1706 emit_jump_insn_after_setloc (targetm
.gen_simple_return (),
1707 BB_END (jump_block
), loc
);
1709 set_return_jump_label (BB_END (jump_block
));
1713 rtx_code_label
*label
= block_label (target
);
1714 emit_jump_insn_after_setloc (targetm
.gen_jump (label
),
1715 BB_END (jump_block
), loc
);
1716 JUMP_LABEL (BB_END (jump_block
)) = label
;
1717 LABEL_NUSES (label
)++;
1720 /* We might be in cfg layout mode, and if so, the following routine will
1721 insert the barrier correctly. */
1722 emit_barrier_after_bb (jump_block
);
1723 redirect_edge_succ_nodup (e
, target
);
1725 if (abnormal_edge_flags
)
1726 make_edge (src
, target
, abnormal_edge_flags
);
1728 df_mark_solutions_dirty ();
1729 fixup_partition_crossing (e
);
1733 /* Edge E is assumed to be fallthru edge. Emit needed jump instruction
1734 (and possibly create new basic block) to make edge non-fallthru.
1735 Return newly created BB or NULL if none. */
1738 rtl_force_nonfallthru (edge e
)
1740 return force_nonfallthru_and_redirect (e
, e
->dest
, NULL_RTX
);
1743 /* Redirect edge even at the expense of creating new jump insn or
1744 basic block. Return new basic block if created, NULL otherwise.
1745 Conversion must be possible. */
1748 rtl_redirect_edge_and_branch_force (edge e
, basic_block target
)
1750 if (redirect_edge_and_branch (e
, target
)
1751 || e
->dest
== target
)
1754 /* In case the edge redirection failed, try to force it to be non-fallthru
1755 and redirect newly created simplejump. */
1756 df_set_bb_dirty (e
->src
);
1757 return force_nonfallthru_and_redirect (e
, target
, NULL_RTX
);
1760 /* The given edge should potentially be a fallthru edge. If that is in
1761 fact true, delete the jump and barriers that are in the way. */
1764 rtl_tidy_fallthru_edge (edge e
)
1767 basic_block b
= e
->src
, c
= b
->next_bb
;
1769 /* ??? In a late-running flow pass, other folks may have deleted basic
1770 blocks by nopping out blocks, leaving multiple BARRIERs between here
1771 and the target label. They ought to be chastised and fixed.
1773 We can also wind up with a sequence of undeletable labels between
1774 one block and the next.
1776 So search through a sequence of barriers, labels, and notes for
1777 the head of block C and assert that we really do fall through. */
1779 for (q
= NEXT_INSN (BB_END (b
)); q
!= BB_HEAD (c
); q
= NEXT_INSN (q
))
1780 if (NONDEBUG_INSN_P (q
))
1783 /* Remove what will soon cease being the jump insn from the source block.
1784 If block B consisted only of this single jump, turn it into a deleted
1789 && (any_uncondjump_p (q
)
1790 || single_succ_p (b
)))
1793 rtx_jump_table_data
*table
;
1795 if (tablejump_p (q
, &label
, &table
))
1797 /* The label is likely mentioned in some instruction before
1798 the tablejump and might not be DCEd, so turn it into
1799 a note instead and move before the tablejump that is going to
1801 const char *name
= LABEL_NAME (label
);
1802 PUT_CODE (label
, NOTE
);
1803 NOTE_KIND (label
) = NOTE_INSN_DELETED_LABEL
;
1804 NOTE_DELETED_LABEL_NAME (label
) = name
;
1805 reorder_insns (label
, label
, PREV_INSN (q
));
1806 delete_insn (table
);
1809 /* If this was a conditional jump, we need to also delete
1810 the insn that set cc0. */
1811 if (HAVE_cc0
&& any_condjump_p (q
) && only_sets_cc0_p (PREV_INSN (q
)))
1816 /* Unconditional jumps with side-effects (i.e. which we can't just delete
1817 together with the barrier) should never have a fallthru edge. */
1818 else if (JUMP_P (q
) && any_uncondjump_p (q
))
1821 /* Selectively unlink the sequence. */
1822 if (q
!= PREV_INSN (BB_HEAD (c
)))
1823 delete_insn_chain (NEXT_INSN (q
), PREV_INSN (BB_HEAD (c
)), false);
1825 e
->flags
|= EDGE_FALLTHRU
;
1828 /* Should move basic block BB after basic block AFTER. NIY. */
1831 rtl_move_block_after (basic_block bb ATTRIBUTE_UNUSED
,
1832 basic_block after ATTRIBUTE_UNUSED
)
1837 /* Locate the last bb in the same partition as START_BB. */
1840 last_bb_in_partition (basic_block start_bb
)
1843 FOR_BB_BETWEEN (bb
, start_bb
, EXIT_BLOCK_PTR_FOR_FN (cfun
), next_bb
)
1845 if (BB_PARTITION (start_bb
) != BB_PARTITION (bb
->next_bb
))
1848 /* Return bb before the exit block. */
1852 /* Split a (typically critical) edge. Return the new block.
1853 The edge must not be abnormal.
1855 ??? The code generally expects to be called on critical edges.
1856 The case of a block ending in an unconditional jump to a
1857 block with multiple predecessors is not handled optimally. */
1860 rtl_split_edge (edge edge_in
)
1862 basic_block bb
, new_bb
;
1865 /* Abnormal edges cannot be split. */
1866 gcc_assert (!(edge_in
->flags
& EDGE_ABNORMAL
));
1868 /* We are going to place the new block in front of edge destination.
1869 Avoid existence of fallthru predecessors. */
1870 if ((edge_in
->flags
& EDGE_FALLTHRU
) == 0)
1872 edge e
= find_fallthru_edge (edge_in
->dest
->preds
);
1875 force_nonfallthru (e
);
1878 /* Create the basic block note. */
1879 if (edge_in
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
1880 before
= BB_HEAD (edge_in
->dest
);
1884 /* If this is a fall through edge to the exit block, the blocks might be
1885 not adjacent, and the right place is after the source. */
1886 if ((edge_in
->flags
& EDGE_FALLTHRU
)
1887 && edge_in
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1889 before
= NEXT_INSN (BB_END (edge_in
->src
));
1890 bb
= create_basic_block (before
, NULL
, edge_in
->src
);
1891 BB_COPY_PARTITION (bb
, edge_in
->src
);
1895 if (edge_in
->src
== ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1897 bb
= create_basic_block (before
, NULL
, edge_in
->dest
->prev_bb
);
1898 BB_COPY_PARTITION (bb
, edge_in
->dest
);
1902 basic_block after
= edge_in
->dest
->prev_bb
;
1903 /* If this is post-bb reordering, and the edge crosses a partition
1904 boundary, the new block needs to be inserted in the bb chain
1905 at the end of the src partition (since we put the new bb into
1906 that partition, see below). Otherwise we may end up creating
1907 an extra partition crossing in the chain, which is illegal.
1908 It can't go after the src, because src may have a fall-through
1909 to a different block. */
1910 if (crtl
->bb_reorder_complete
1911 && (edge_in
->flags
& EDGE_CROSSING
))
1913 after
= last_bb_in_partition (edge_in
->src
);
1914 before
= get_last_bb_insn (after
);
1915 /* The instruction following the last bb in partition should
1916 be a barrier, since it cannot end in a fall-through. */
1917 gcc_checking_assert (BARRIER_P (before
));
1918 before
= NEXT_INSN (before
);
1920 bb
= create_basic_block (before
, NULL
, after
);
1921 /* Put the split bb into the src partition, to avoid creating
1922 a situation where a cold bb dominates a hot bb, in the case
1923 where src is cold and dest is hot. The src will dominate
1924 the new bb (whereas it might not have dominated dest). */
1925 BB_COPY_PARTITION (bb
, edge_in
->src
);
1929 make_single_succ_edge (bb
, edge_in
->dest
, EDGE_FALLTHRU
);
1931 /* Can't allow a region crossing edge to be fallthrough. */
1932 if (BB_PARTITION (bb
) != BB_PARTITION (edge_in
->dest
)
1933 && edge_in
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
1935 new_bb
= force_nonfallthru (single_succ_edge (bb
));
1936 gcc_assert (!new_bb
);
1939 /* For non-fallthru edges, we must adjust the predecessor's
1940 jump instruction to target our new block. */
1941 if ((edge_in
->flags
& EDGE_FALLTHRU
) == 0)
1943 edge redirected
= redirect_edge_and_branch (edge_in
, bb
);
1944 gcc_assert (redirected
);
1948 if (edge_in
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1950 /* For asm goto even splitting of fallthru edge might
1951 need insn patching, as other labels might point to the
1953 rtx_insn
*last
= BB_END (edge_in
->src
);
1956 && edge_in
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
1957 && (extract_asm_operands (PATTERN (last
))
1958 || JUMP_LABEL (last
) == before
)
1959 && patch_jump_insn (last
, before
, bb
))
1960 df_set_bb_dirty (edge_in
->src
);
1962 redirect_edge_succ (edge_in
, bb
);
1968 /* Queue instructions for insertion on an edge between two basic blocks.
1969 The new instructions and basic blocks (if any) will not appear in the
1970 CFG until commit_edge_insertions is called. */
1973 insert_insn_on_edge (rtx pattern
, edge e
)
1975 /* We cannot insert instructions on an abnormal critical edge.
1976 It will be easier to find the culprit if we die now. */
1977 gcc_assert (!((e
->flags
& EDGE_ABNORMAL
) && EDGE_CRITICAL_P (e
)));
1979 if (e
->insns
.r
== NULL_RTX
)
1982 push_to_sequence (e
->insns
.r
);
1984 emit_insn (pattern
);
1986 e
->insns
.r
= get_insns ();
1990 /* Update the CFG for the instructions queued on edge E. */
1993 commit_one_edge_insertion (edge e
)
1995 rtx_insn
*before
= NULL
, *after
= NULL
, *insns
, *tmp
, *last
;
1998 /* Pull the insns off the edge now since the edge might go away. */
2002 /* Figure out where to put these insns. If the destination has
2003 one predecessor, insert there. Except for the exit block. */
2004 if (single_pred_p (e
->dest
) && e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
2008 /* Get the location correct wrt a code label, and "nice" wrt
2009 a basic block note, and before everything else. */
2012 tmp
= NEXT_INSN (tmp
);
2013 if (NOTE_INSN_BASIC_BLOCK_P (tmp
))
2014 tmp
= NEXT_INSN (tmp
);
2015 if (tmp
== BB_HEAD (bb
))
2018 after
= PREV_INSN (tmp
);
2020 after
= get_last_insn ();
2023 /* If the source has one successor and the edge is not abnormal,
2024 insert there. Except for the entry block.
2025 Don't do this if the predecessor ends in a jump other than
2026 unconditional simple jump. E.g. for asm goto that points all
2027 its labels at the fallthru basic block, we can't insert instructions
2028 before the asm goto, as the asm goto can have various of side effects,
2029 and can't emit instructions after the asm goto, as it must end
2031 else if ((e
->flags
& EDGE_ABNORMAL
) == 0
2032 && single_succ_p (e
->src
)
2033 && e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
2034 && (!JUMP_P (BB_END (e
->src
))
2035 || simplejump_p (BB_END (e
->src
))))
2039 /* It is possible to have a non-simple jump here. Consider a target
2040 where some forms of unconditional jumps clobber a register. This
2041 happens on the fr30 for example.
2043 We know this block has a single successor, so we can just emit
2044 the queued insns before the jump. */
2045 if (JUMP_P (BB_END (bb
)))
2046 before
= BB_END (bb
);
2049 /* We'd better be fallthru, or we've lost track of what's what. */
2050 gcc_assert (e
->flags
& EDGE_FALLTHRU
);
2052 after
= BB_END (bb
);
2056 /* Otherwise we must split the edge. */
2059 bb
= split_edge (e
);
2061 /* If E crossed a partition boundary, we needed to make bb end in
2062 a region-crossing jump, even though it was originally fallthru. */
2063 if (JUMP_P (BB_END (bb
)))
2064 before
= BB_END (bb
);
2066 after
= BB_END (bb
);
2069 /* Now that we've found the spot, do the insertion. */
2072 emit_insn_before_noloc (insns
, before
, bb
);
2073 last
= prev_nonnote_insn (before
);
2076 last
= emit_insn_after_noloc (insns
, after
, bb
);
2078 if (returnjump_p (last
))
2080 /* ??? Remove all outgoing edges from BB and add one for EXIT.
2081 This is not currently a problem because this only happens
2082 for the (single) epilogue, which already has a fallthru edge
2085 e
= single_succ_edge (bb
);
2086 gcc_assert (e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
2087 && single_succ_p (bb
) && (e
->flags
& EDGE_FALLTHRU
));
2089 e
->flags
&= ~EDGE_FALLTHRU
;
2090 emit_barrier_after (last
);
2093 delete_insn (before
);
2096 gcc_assert (!JUMP_P (last
));
2099 /* Update the CFG for all queued instructions. */
2102 commit_edge_insertions (void)
2106 /* Optimization passes that invoke this routine can cause hot blocks
2107 previously reached by both hot and cold blocks to become dominated only
2108 by cold blocks. This will cause the verification below to fail,
2109 and lead to now cold code in the hot section. In some cases this
2110 may only be visible after newly unreachable blocks are deleted,
2111 which will be done by fixup_partitions. */
2112 fixup_partitions ();
2114 if (!currently_expanding_to_rtl
)
2115 checking_verify_flow_info ();
2117 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR_FOR_FN (cfun
),
2118 EXIT_BLOCK_PTR_FOR_FN (cfun
), next_bb
)
2123 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
2126 if (currently_expanding_to_rtl
)
2127 rebuild_jump_labels_chain (e
->insns
.r
);
2128 commit_one_edge_insertion (e
);
2134 /* Print out RTL-specific basic block information (live information
2135 at start and end with TDF_DETAILS). FLAGS are the TDF_* masks
2136 documented in dumpfile.h. */
2139 rtl_dump_bb (FILE *outf
, basic_block bb
, int indent
, dump_flags_t flags
)
2143 s_indent
= (char *) alloca ((size_t) indent
+ 1);
2144 memset (s_indent
, ' ', (size_t) indent
);
2145 s_indent
[indent
] = '\0';
2147 if (df
&& (flags
& TDF_DETAILS
))
2149 df_dump_top (bb
, outf
);
2153 if (bb
->index
!= ENTRY_BLOCK
&& bb
->index
!= EXIT_BLOCK
2154 && rtl_bb_info_initialized_p (bb
))
2156 rtx_insn
*last
= BB_END (bb
);
2158 last
= NEXT_INSN (last
);
2159 for (rtx_insn
*insn
= BB_HEAD (bb
); insn
!= last
; insn
= NEXT_INSN (insn
))
2161 if (flags
& TDF_DETAILS
)
2162 df_dump_insn_top (insn
, outf
);
2163 if (! (flags
& TDF_SLIM
))
2164 print_rtl_single (outf
, insn
);
2166 dump_insn_slim (outf
, insn
);
2167 if (flags
& TDF_DETAILS
)
2168 df_dump_insn_bottom (insn
, outf
);
2172 if (df
&& (flags
& TDF_DETAILS
))
2174 df_dump_bottom (bb
, outf
);
2180 /* Like dump_function_to_file, but for RTL. Print out dataflow information
2181 for the start of each basic block. FLAGS are the TDF_* masks documented
2185 print_rtl_with_bb (FILE *outf
, const rtx_insn
*rtx_first
, dump_flags_t flags
)
2187 const rtx_insn
*tmp_rtx
;
2189 fprintf (outf
, "(nil)\n");
2192 enum bb_state
{ NOT_IN_BB
, IN_ONE_BB
, IN_MULTIPLE_BB
};
2193 int max_uid
= get_max_uid ();
2194 basic_block
*start
= XCNEWVEC (basic_block
, max_uid
);
2195 basic_block
*end
= XCNEWVEC (basic_block
, max_uid
);
2196 enum bb_state
*in_bb_p
= XCNEWVEC (enum bb_state
, max_uid
);
2199 /* After freeing the CFG, we still have BLOCK_FOR_INSN set on most
2200 insns, but the CFG is not maintained so the basic block info
2201 is not reliable. Therefore it's omitted from the dumps. */
2202 if (! (cfun
->curr_properties
& PROP_cfg
))
2203 flags
&= ~TDF_BLOCKS
;
2206 df_dump_start (outf
);
2208 if (cfun
->curr_properties
& PROP_cfg
)
2210 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
2214 start
[INSN_UID (BB_HEAD (bb
))] = bb
;
2215 end
[INSN_UID (BB_END (bb
))] = bb
;
2216 if (flags
& TDF_BLOCKS
)
2218 for (x
= BB_HEAD (bb
); x
!= NULL_RTX
; x
= NEXT_INSN (x
))
2220 enum bb_state state
= IN_MULTIPLE_BB
;
2222 if (in_bb_p
[INSN_UID (x
)] == NOT_IN_BB
)
2224 in_bb_p
[INSN_UID (x
)] = state
;
2226 if (x
== BB_END (bb
))
2233 for (tmp_rtx
= rtx_first
; tmp_rtx
!= NULL
; tmp_rtx
= NEXT_INSN (tmp_rtx
))
2235 if (flags
& TDF_BLOCKS
)
2237 bb
= start
[INSN_UID (tmp_rtx
)];
2240 dump_bb_info (outf
, bb
, 0, dump_flags
, true, false);
2241 if (df
&& (flags
& TDF_DETAILS
))
2242 df_dump_top (bb
, outf
);
2245 if (in_bb_p
[INSN_UID (tmp_rtx
)] == NOT_IN_BB
2246 && !NOTE_P (tmp_rtx
)
2247 && !BARRIER_P (tmp_rtx
))
2248 fprintf (outf
, ";; Insn is not within a basic block\n");
2249 else if (in_bb_p
[INSN_UID (tmp_rtx
)] == IN_MULTIPLE_BB
)
2250 fprintf (outf
, ";; Insn is in multiple basic blocks\n");
2253 if (flags
& TDF_DETAILS
)
2254 df_dump_insn_top (tmp_rtx
, outf
);
2255 if (! (flags
& TDF_SLIM
))
2256 print_rtl_single (outf
, tmp_rtx
);
2258 dump_insn_slim (outf
, tmp_rtx
);
2259 if (flags
& TDF_DETAILS
)
2260 df_dump_insn_bottom (tmp_rtx
, outf
);
2262 bb
= end
[INSN_UID (tmp_rtx
)];
2265 if (flags
& TDF_BLOCKS
)
2267 dump_bb_info (outf
, bb
, 0, dump_flags
, false, true);
2268 if (df
&& (flags
& TDF_DETAILS
))
2269 df_dump_bottom (bb
, outf
);
2272 /* Emit a hint if the fallthrough target of current basic block
2273 isn't the one placed right next. */
2274 else if (EDGE_COUNT (bb
->succs
) > 0)
2276 gcc_assert (BB_END (bb
) == tmp_rtx
);
2277 const rtx_insn
*ninsn
= NEXT_INSN (tmp_rtx
);
2278 /* Bypass intervening deleted-insn notes and debug insns. */
2280 && !NONDEBUG_INSN_P (ninsn
)
2281 && !start
[INSN_UID (ninsn
)])
2282 ninsn
= NEXT_INSN (ninsn
);
2283 edge e
= find_fallthru_edge (bb
->succs
);
2286 basic_block dest
= e
->dest
;
2287 if (start
[INSN_UID (ninsn
)] != dest
)
2288 fprintf (outf
, "%s ; pc falls through to BB %d\n",
2289 print_rtx_head
, dest
->index
);
2301 /* Update the branch probability of BB if a REG_BR_PROB is present. */
2304 update_br_prob_note (basic_block bb
)
2307 note
= find_reg_note (BB_END (bb
), REG_BR_PROB
, NULL_RTX
);
2308 if (!JUMP_P (BB_END (bb
)) || !BRANCH_EDGE (bb
)->probability
.initialized_p ())
2312 rtx
*note_link
, this_rtx
;
2314 note_link
= ®_NOTES (BB_END (bb
));
2315 for (this_rtx
= *note_link
; this_rtx
; this_rtx
= XEXP (this_rtx
, 1))
2316 if (this_rtx
== note
)
2318 *note_link
= XEXP (this_rtx
, 1);
2325 || XINT (note
, 0) == BRANCH_EDGE (bb
)->probability
.to_reg_br_prob_note ())
2327 XINT (note
, 0) = BRANCH_EDGE (bb
)->probability
.to_reg_br_prob_note ();
2330 /* Get the last insn associated with block BB (that includes barriers and
2331 tablejumps after BB). */
2333 get_last_bb_insn (basic_block bb
)
2335 rtx_jump_table_data
*table
;
2337 rtx_insn
*end
= BB_END (bb
);
2339 /* Include any jump table following the basic block. */
2340 if (tablejump_p (end
, NULL
, &table
))
2343 /* Include any barriers that may follow the basic block. */
2344 tmp
= next_nonnote_nondebug_insn_bb (end
);
2345 while (tmp
&& BARRIER_P (tmp
))
2348 tmp
= next_nonnote_nondebug_insn_bb (end
);
2354 /* Add all BBs reachable from entry via hot paths into the SET. */
2357 find_bbs_reachable_by_hot_paths (hash_set
<basic_block
> *set
)
2359 auto_vec
<basic_block
, 64> worklist
;
2361 set
->add (ENTRY_BLOCK_PTR_FOR_FN (cfun
));
2362 worklist
.safe_push (ENTRY_BLOCK_PTR_FOR_FN (cfun
));
2364 while (worklist
.length () > 0)
2366 basic_block bb
= worklist
.pop ();
2370 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
2371 if (BB_PARTITION (e
->dest
) != BB_COLD_PARTITION
2372 && !set
->add (e
->dest
))
2373 worklist
.safe_push (e
->dest
);
2377 /* Sanity check partition hotness to ensure that basic blocks in
2378 Â the cold partition don't dominate basic blocks in the hot partition.
2379 If FLAG_ONLY is true, report violations as errors. Otherwise
2380 re-mark the dominated blocks as cold, since this is run after
2381 cfg optimizations that may make hot blocks previously reached
2382 by both hot and cold blocks now only reachable along cold paths. */
2384 static auto_vec
<basic_block
>
2385 find_partition_fixes (bool flag_only
)
2388 auto_vec
<basic_block
> bbs_to_fix
;
2389 hash_set
<basic_block
> set
;
2391 /* Callers check this. */
2392 gcc_checking_assert (crtl
->has_bb_partition
);
2394 find_bbs_reachable_by_hot_paths (&set
);
2396 FOR_EACH_BB_FN (bb
, cfun
)
2397 if (!set
.contains (bb
)
2398 && BB_PARTITION (bb
) != BB_COLD_PARTITION
)
2401 error ("non-cold basic block %d reachable only "
2402 "by paths crossing the cold partition", bb
->index
);
2404 BB_SET_PARTITION (bb
, BB_COLD_PARTITION
);
2405 bbs_to_fix
.safe_push (bb
);
2411 /* Perform cleanup on the hot/cold bb partitioning after optimization
2412 passes that modify the cfg. */
2415 fixup_partitions (void)
2419 if (!crtl
->has_bb_partition
)
2422 /* Delete any blocks that became unreachable and weren't
2423 already cleaned up, for example during edge forwarding
2424 and convert_jumps_to_returns. This will expose more
2425 opportunities for fixing the partition boundaries here.
2426 Also, the calculation of the dominance graph during verification
2427 will assert if there are unreachable nodes. */
2428 delete_unreachable_blocks ();
2430 /* If there are partitions, do a sanity check on them: A basic block in
2431 Â a cold partition cannot dominate a basic block in a hot partition.
2432 Fixup any that now violate this requirement, as a result of edge
2433 forwarding and unreachable block deletion. Â */
2434 auto_vec
<basic_block
> bbs_to_fix
= find_partition_fixes (false);
2436 /* Do the partition fixup after all necessary blocks have been converted to
2437 cold, so that we only update the region crossings the minimum number of
2438 places, which can require forcing edges to be non fallthru. */
2439 while (! bbs_to_fix
.is_empty ())
2441 bb
= bbs_to_fix
.pop ();
2442 fixup_new_cold_bb (bb
);
2446 /* Verify, in the basic block chain, that there is at most one switch
2447 between hot/cold partitions. This condition will not be true until
2448 after reorder_basic_blocks is called. */
2451 verify_hot_cold_block_grouping (void)
2455 bool switched_sections
= false;
2456 int current_partition
= BB_UNPARTITIONED
;
2458 /* Even after bb reordering is complete, we go into cfglayout mode
2459 again (in compgoto). Ensure we don't call this before going back
2460 into linearized RTL when any layout fixes would have been committed. */
2461 if (!crtl
->bb_reorder_complete
2462 || current_ir_type () != IR_RTL_CFGRTL
)
2465 FOR_EACH_BB_FN (bb
, cfun
)
2467 if (current_partition
!= BB_UNPARTITIONED
2468 && BB_PARTITION (bb
) != current_partition
)
2470 if (switched_sections
)
2472 error ("multiple hot/cold transitions found (bb %i)",
2477 switched_sections
= true;
2479 if (!crtl
->has_bb_partition
)
2480 error ("partition found but function partition flag not set");
2482 current_partition
= BB_PARTITION (bb
);
2489 /* Perform several checks on the edges out of each block, such as
2490 the consistency of the branch probabilities, the correctness
2491 of hot/cold partition crossing edges, and the number of expected
2492 successor edges. Also verify that the dominance relationship
2493 between hot/cold blocks is sane. */
2496 rtl_verify_edges (void)
2501 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
2503 int n_fallthru
= 0, n_branch
= 0, n_abnormal_call
= 0, n_sibcall
= 0;
2504 int n_eh
= 0, n_abnormal
= 0;
2505 edge e
, fallthru
= NULL
;
2508 bool has_crossing_edge
= false;
2510 if (JUMP_P (BB_END (bb
))
2511 && (note
= find_reg_note (BB_END (bb
), REG_BR_PROB
, NULL_RTX
))
2512 && EDGE_COUNT (bb
->succs
) >= 2
2513 && any_condjump_p (BB_END (bb
)))
2515 if (!BRANCH_EDGE (bb
)->probability
.initialized_p ())
2517 if (profile_status_for_fn (cfun
) != PROFILE_ABSENT
)
2519 error ("verify_flow_info: "
2520 "REG_BR_PROB is set but cfg probability is not");
2524 else if (XINT (note
, 0)
2525 != BRANCH_EDGE (bb
)->probability
.to_reg_br_prob_note ()
2526 && profile_status_for_fn (cfun
) != PROFILE_ABSENT
)
2528 error ("verify_flow_info: REG_BR_PROB does not match cfg %i %i",
2530 BRANCH_EDGE (bb
)->probability
.to_reg_br_prob_note ());
2535 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
2539 if (e
->flags
& EDGE_FALLTHRU
)
2540 n_fallthru
++, fallthru
= e
;
2542 is_crossing
= (BB_PARTITION (e
->src
) != BB_PARTITION (e
->dest
)
2543 && e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
2544 && e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
));
2545 has_crossing_edge
|= is_crossing
;
2546 if (e
->flags
& EDGE_CROSSING
)
2550 error ("EDGE_CROSSING incorrectly set across same section");
2553 if (e
->flags
& EDGE_FALLTHRU
)
2555 error ("fallthru edge crosses section boundary in bb %i",
2559 if (e
->flags
& EDGE_EH
)
2561 error ("EH edge crosses section boundary in bb %i",
2565 if (JUMP_P (BB_END (bb
)) && !CROSSING_JUMP_P (BB_END (bb
)))
2567 error ("No region crossing jump at section boundary in bb %i",
2572 else if (is_crossing
)
2574 error ("EDGE_CROSSING missing across section boundary");
2578 if ((e
->flags
& ~(EDGE_DFS_BACK
2580 | EDGE_IRREDUCIBLE_LOOP
2583 | EDGE_PRESERVE
)) == 0)
2586 if (e
->flags
& EDGE_ABNORMAL_CALL
)
2589 if (e
->flags
& EDGE_SIBCALL
)
2592 if (e
->flags
& EDGE_EH
)
2595 if (e
->flags
& EDGE_ABNORMAL
)
2599 if (!has_crossing_edge
2600 && JUMP_P (BB_END (bb
))
2601 && CROSSING_JUMP_P (BB_END (bb
)))
2603 print_rtl_with_bb (stderr
, get_insns (), TDF_BLOCKS
| TDF_DETAILS
);
2604 error ("Region crossing jump across same section in bb %i",
2609 if (n_eh
&& !find_reg_note (BB_END (bb
), REG_EH_REGION
, NULL_RTX
))
2611 error ("missing REG_EH_REGION note at the end of bb %i", bb
->index
);
2616 error ("too many exception handling edges in bb %i", bb
->index
);
2620 && (!JUMP_P (BB_END (bb
))
2621 || (n_branch
> 1 && (any_uncondjump_p (BB_END (bb
))
2622 || any_condjump_p (BB_END (bb
))))))
2624 error ("too many outgoing branch edges from bb %i", bb
->index
);
2627 if (n_fallthru
&& any_uncondjump_p (BB_END (bb
)))
2629 error ("fallthru edge after unconditional jump in bb %i", bb
->index
);
2632 if (n_branch
!= 1 && any_uncondjump_p (BB_END (bb
)))
2634 error ("wrong number of branch edges after unconditional jump"
2635 " in bb %i", bb
->index
);
2638 if (n_branch
!= 1 && any_condjump_p (BB_END (bb
))
2639 && JUMP_LABEL (BB_END (bb
)) != BB_HEAD (fallthru
->dest
))
2641 error ("wrong amount of branch edges after conditional jump"
2642 " in bb %i", bb
->index
);
2645 if (n_abnormal_call
&& !CALL_P (BB_END (bb
)))
2647 error ("abnormal call edges for non-call insn in bb %i", bb
->index
);
2650 if (n_sibcall
&& !CALL_P (BB_END (bb
)))
2652 error ("sibcall edges for non-call insn in bb %i", bb
->index
);
2655 if (n_abnormal
> n_eh
2656 && !(CALL_P (BB_END (bb
))
2657 && n_abnormal
== n_abnormal_call
+ n_sibcall
)
2658 && (!JUMP_P (BB_END (bb
))
2659 || any_condjump_p (BB_END (bb
))
2660 || any_uncondjump_p (BB_END (bb
))))
2662 error ("abnormal edges for no purpose in bb %i", bb
->index
);
2667 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
2670 has_eh
= (e
->flags
& EDGE_EH
);
2671 if ((e
->flags
& EDGE_EH
) == has_eh
)
2673 error ("EH incoming edge mixed with non-EH incoming edges "
2674 "in bb %i", bb
->index
);
2680 /* If there are partitions, do a sanity check on them: A basic block in
2681 Â a cold partition cannot dominate a basic block in a hot partition. Â */
2682 if (crtl
->has_bb_partition
&& !err
2683 && current_ir_type () == IR_RTL_CFGLAYOUT
)
2685 auto_vec
<basic_block
> bbs_to_fix
= find_partition_fixes (true);
2686 err
= !bbs_to_fix
.is_empty ();
2693 /* Checks on the instructions within blocks. Currently checks that each
2694 block starts with a basic block note, and that basic block notes and
2695 control flow jumps are not found in the middle of the block. */
2698 rtl_verify_bb_insns (void)
2704 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
2706 /* Now check the header of basic
2707 block. It ought to contain optional CODE_LABEL followed
2708 by NOTE_BASIC_BLOCK. */
2712 if (BB_END (bb
) == x
)
2714 error ("NOTE_INSN_BASIC_BLOCK is missing for block %d",
2722 if (!NOTE_INSN_BASIC_BLOCK_P (x
) || NOTE_BASIC_BLOCK (x
) != bb
)
2724 error ("NOTE_INSN_BASIC_BLOCK is missing for block %d",
2729 if (BB_END (bb
) == x
)
2730 /* Do checks for empty blocks here. */
2733 for (x
= NEXT_INSN (x
); x
; x
= NEXT_INSN (x
))
2735 if (NOTE_INSN_BASIC_BLOCK_P (x
))
2737 error ("NOTE_INSN_BASIC_BLOCK %d in middle of basic block %d",
2738 INSN_UID (x
), bb
->index
);
2742 if (x
== BB_END (bb
))
2745 if (control_flow_insn_p (x
))
2747 error ("in basic block %d:", bb
->index
);
2748 fatal_insn ("flow control insn inside a basic block", x
);
2757 /* Verify that block pointers for instructions in basic blocks, headers and
2758 footers are set appropriately. */
2761 rtl_verify_bb_pointers (void)
2766 /* Check the general integrity of the basic blocks. */
2767 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
2771 if (!(bb
->flags
& BB_RTL
))
2773 error ("BB_RTL flag not set for block %d", bb
->index
);
2777 FOR_BB_INSNS (bb
, insn
)
2778 if (BLOCK_FOR_INSN (insn
) != bb
)
2780 error ("insn %d basic block pointer is %d, should be %d",
2782 BLOCK_FOR_INSN (insn
) ? BLOCK_FOR_INSN (insn
)->index
: 0,
2787 for (insn
= BB_HEADER (bb
); insn
; insn
= NEXT_INSN (insn
))
2788 if (!BARRIER_P (insn
)
2789 && BLOCK_FOR_INSN (insn
) != NULL
)
2791 error ("insn %d in header of bb %d has non-NULL basic block",
2792 INSN_UID (insn
), bb
->index
);
2795 for (insn
= BB_FOOTER (bb
); insn
; insn
= NEXT_INSN (insn
))
2796 if (!BARRIER_P (insn
)
2797 && BLOCK_FOR_INSN (insn
) != NULL
)
2799 error ("insn %d in footer of bb %d has non-NULL basic block",
2800 INSN_UID (insn
), bb
->index
);
2809 /* Verify the CFG and RTL consistency common for both underlying RTL and
2812 Currently it does following checks:
2814 - overlapping of basic blocks
2815 - insns with wrong BLOCK_FOR_INSN pointers
2816 - headers of basic blocks (the NOTE_INSN_BASIC_BLOCK note)
2817 - tails of basic blocks (ensure that boundary is necessary)
2818 - scans body of the basic block for JUMP_INSN, CODE_LABEL
2819 and NOTE_INSN_BASIC_BLOCK
2820 - verify that no fall_thru edge crosses hot/cold partition boundaries
2821 - verify that there are no pending RTL branch predictions
2822 - verify that hot blocks are not dominated by cold blocks
2824 In future it can be extended check a lot of other stuff as well
2825 (reachability of basic blocks, life information, etc. etc.). */
2828 rtl_verify_flow_info_1 (void)
2832 err
|= rtl_verify_bb_pointers ();
2834 err
|= rtl_verify_bb_insns ();
2836 err
|= rtl_verify_edges ();
2841 /* Walk the instruction chain and verify that bb head/end pointers
2842 are correct, and that instructions are in exactly one bb and have
2843 correct block pointers. */
2846 rtl_verify_bb_insn_chain (void)
2851 rtx_insn
*last_head
= get_last_insn ();
2852 basic_block
*bb_info
;
2853 const int max_uid
= get_max_uid ();
2855 bb_info
= XCNEWVEC (basic_block
, max_uid
);
2857 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
2859 rtx_insn
*head
= BB_HEAD (bb
);
2860 rtx_insn
*end
= BB_END (bb
);
2862 for (x
= last_head
; x
!= NULL_RTX
; x
= PREV_INSN (x
))
2864 /* Verify the end of the basic block is in the INSN chain. */
2868 /* And that the code outside of basic blocks has NULL bb field. */
2870 && BLOCK_FOR_INSN (x
) != NULL
)
2872 error ("insn %d outside of basic blocks has non-NULL bb field",
2880 error ("end insn %d for block %d not found in the insn stream",
2881 INSN_UID (end
), bb
->index
);
2885 /* Work backwards from the end to the head of the basic block
2886 to verify the head is in the RTL chain. */
2887 for (; x
!= NULL_RTX
; x
= PREV_INSN (x
))
2889 /* While walking over the insn chain, verify insns appear
2890 in only one basic block. */
2891 if (bb_info
[INSN_UID (x
)] != NULL
)
2893 error ("insn %d is in multiple basic blocks (%d and %d)",
2894 INSN_UID (x
), bb
->index
, bb_info
[INSN_UID (x
)]->index
);
2898 bb_info
[INSN_UID (x
)] = bb
;
2905 error ("head insn %d for block %d not found in the insn stream",
2906 INSN_UID (head
), bb
->index
);
2910 last_head
= PREV_INSN (x
);
2913 for (x
= last_head
; x
!= NULL_RTX
; x
= PREV_INSN (x
))
2915 /* Check that the code before the first basic block has NULL
2918 && BLOCK_FOR_INSN (x
) != NULL
)
2920 error ("insn %d outside of basic blocks has non-NULL bb field",
2930 /* Verify that fallthru edges point to adjacent blocks in layout order and
2931 that barriers exist after non-fallthru blocks. */
2934 rtl_verify_fallthru (void)
2939 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
2943 e
= find_fallthru_edge (bb
->succs
);
2948 /* Ensure existence of barrier in BB with no fallthru edges. */
2949 for (insn
= NEXT_INSN (BB_END (bb
)); ; insn
= NEXT_INSN (insn
))
2951 if (!insn
|| NOTE_INSN_BASIC_BLOCK_P (insn
))
2953 error ("missing barrier after block %i", bb
->index
);
2957 if (BARRIER_P (insn
))
2961 else if (e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
2962 && e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
2966 if (e
->src
->next_bb
!= e
->dest
)
2969 ("verify_flow_info: Incorrect blocks for fallthru %i->%i",
2970 e
->src
->index
, e
->dest
->index
);
2974 for (insn
= NEXT_INSN (BB_END (e
->src
)); insn
!= BB_HEAD (e
->dest
);
2975 insn
= NEXT_INSN (insn
))
2976 if (BARRIER_P (insn
) || NONDEBUG_INSN_P (insn
))
2978 error ("verify_flow_info: Incorrect fallthru %i->%i",
2979 e
->src
->index
, e
->dest
->index
);
2980 fatal_insn ("wrong insn in the fallthru edge", insn
);
2989 /* Verify that blocks are laid out in consecutive order. While walking the
2990 instructions, verify that all expected instructions are inside the basic
2991 blocks, and that all returns are followed by barriers. */
2994 rtl_verify_bb_layout (void)
3000 rtx_insn
* const rtx_first
= get_insns ();
3001 basic_block last_bb_seen
= ENTRY_BLOCK_PTR_FOR_FN (cfun
), curr_bb
= NULL
;
3005 for (x
= rtx_first
; x
; x
= NEXT_INSN (x
))
3007 if (NOTE_INSN_BASIC_BLOCK_P (x
))
3009 bb
= NOTE_BASIC_BLOCK (x
);
3012 if (bb
!= last_bb_seen
->next_bb
)
3013 internal_error ("basic blocks not laid down consecutively");
3015 curr_bb
= last_bb_seen
= bb
;
3020 switch (GET_CODE (x
))
3027 /* An ADDR_VEC is placed outside any basic block. */
3029 && JUMP_TABLE_DATA_P (NEXT_INSN (x
)))
3032 /* But in any case, non-deletable labels can appear anywhere. */
3036 fatal_insn ("insn outside basic block", x
);
3041 && returnjump_p (x
) && ! condjump_p (x
)
3042 && ! ((y
= next_nonnote_nondebug_insn (x
))
3044 fatal_insn ("return not followed by barrier", x
);
3046 if (curr_bb
&& x
== BB_END (curr_bb
))
3050 if (num_bb_notes
!= n_basic_blocks_for_fn (cfun
) - NUM_FIXED_BLOCKS
)
3052 ("number of bb notes in insn chain (%d) != n_basic_blocks (%d)",
3053 num_bb_notes
, n_basic_blocks_for_fn (cfun
));
3058 /* Verify the CFG and RTL consistency common for both underlying RTL and
3059 cfglayout RTL, plus consistency checks specific to linearized RTL mode.
3061 Currently it does following checks:
3062 - all checks of rtl_verify_flow_info_1
3063 - test head/end pointers
3064 - check that blocks are laid out in consecutive order
3065 - check that all insns are in the basic blocks
3066 (except the switch handling code, barriers and notes)
3067 - check that all returns are followed by barriers
3068 - check that all fallthru edge points to the adjacent blocks
3069 - verify that there is a single hot/cold partition boundary after bbro */
3072 rtl_verify_flow_info (void)
3076 err
|= rtl_verify_flow_info_1 ();
3078 err
|= rtl_verify_bb_insn_chain ();
3080 err
|= rtl_verify_fallthru ();
3082 err
|= rtl_verify_bb_layout ();
3084 err
|= verify_hot_cold_block_grouping ();
3089 /* Assume that the preceding pass has possibly eliminated jump instructions
3090 or converted the unconditional jumps. Eliminate the edges from CFG.
3091 Return true if any edges are eliminated. */
3094 purge_dead_edges (basic_block bb
)
3097 rtx_insn
*insn
= BB_END (bb
);
3099 bool purged
= false;
3103 if ((DEBUG_INSN_P (insn
) || NOTE_P (insn
)) && insn
!= BB_HEAD (bb
))
3105 insn
= PREV_INSN (insn
);
3106 while ((DEBUG_INSN_P (insn
) || NOTE_P (insn
)) && insn
!= BB_HEAD (bb
));
3108 /* If this instruction cannot trap, remove REG_EH_REGION notes. */
3109 if (NONJUMP_INSN_P (insn
)
3110 && (note
= find_reg_note (insn
, REG_EH_REGION
, NULL
)))
3114 if (! may_trap_p (PATTERN (insn
))
3115 || ((eqnote
= find_reg_equal_equiv_note (insn
))
3116 && ! may_trap_p (XEXP (eqnote
, 0))))
3117 remove_note (insn
, note
);
3120 /* Cleanup abnormal edges caused by exceptions or non-local gotos. */
3121 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
3123 bool remove
= false;
3125 /* There are three types of edges we need to handle correctly here: EH
3126 edges, abnormal call EH edges, and abnormal call non-EH edges. The
3127 latter can appear when nonlocal gotos are used. */
3128 if (e
->flags
& EDGE_ABNORMAL_CALL
)
3132 else if (can_nonlocal_goto (insn
))
3134 else if ((e
->flags
& EDGE_EH
) && can_throw_internal (insn
))
3136 else if (flag_tm
&& find_reg_note (insn
, REG_TM
, NULL
))
3141 else if (e
->flags
& EDGE_EH
)
3142 remove
= !can_throw_internal (insn
);
3147 df_set_bb_dirty (bb
);
3160 /* We do care only about conditional jumps and simplejumps. */
3161 if (!any_condjump_p (insn
)
3162 && !returnjump_p (insn
)
3163 && !simplejump_p (insn
))
3166 /* Branch probability/prediction notes are defined only for
3167 condjumps. We've possibly turned condjump into simplejump. */
3168 if (simplejump_p (insn
))
3170 note
= find_reg_note (insn
, REG_BR_PROB
, NULL
);
3172 remove_note (insn
, note
);
3173 while ((note
= find_reg_note (insn
, REG_BR_PRED
, NULL
)))
3174 remove_note (insn
, note
);
3177 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
3179 /* Avoid abnormal flags to leak from computed jumps turned
3180 into simplejumps. */
3182 e
->flags
&= ~EDGE_ABNORMAL
;
3184 /* See if this edge is one we should keep. */
3185 if ((e
->flags
& EDGE_FALLTHRU
) && any_condjump_p (insn
))
3186 /* A conditional jump can fall through into the next
3187 block, so we should keep the edge. */
3192 else if (e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
3193 && BB_HEAD (e
->dest
) == JUMP_LABEL (insn
))
3194 /* If the destination block is the target of the jump,
3200 else if (e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
3201 && returnjump_p (insn
))
3202 /* If the destination block is the exit block, and this
3203 instruction is a return, then keep the edge. */
3208 else if ((e
->flags
& EDGE_EH
) && can_throw_internal (insn
))
3209 /* Keep the edges that correspond to exceptions thrown by
3210 this instruction and rematerialize the EDGE_ABNORMAL
3211 flag we just cleared above. */
3213 e
->flags
|= EDGE_ABNORMAL
;
3218 /* We do not need this edge. */
3219 df_set_bb_dirty (bb
);
3224 if (EDGE_COUNT (bb
->succs
) == 0 || !purged
)
3228 fprintf (dump_file
, "Purged edges from bb %i\n", bb
->index
);
3233 /* Redistribute probabilities. */
3234 if (single_succ_p (bb
))
3236 single_succ_edge (bb
)->probability
= profile_probability::always ();
3240 note
= find_reg_note (insn
, REG_BR_PROB
, NULL
);
3244 b
= BRANCH_EDGE (bb
);
3245 f
= FALLTHRU_EDGE (bb
);
3246 b
->probability
= profile_probability::from_reg_br_prob_note
3248 f
->probability
= b
->probability
.invert ();
3253 else if (CALL_P (insn
) && SIBLING_CALL_P (insn
))
3255 /* First, there should not be any EH or ABCALL edges resulting
3256 from non-local gotos and the like. If there were, we shouldn't
3257 have created the sibcall in the first place. Second, there
3258 should of course never have been a fallthru edge. */
3259 gcc_assert (single_succ_p (bb
));
3260 gcc_assert (single_succ_edge (bb
)->flags
3261 == (EDGE_SIBCALL
| EDGE_ABNORMAL
));
3266 /* If we don't see a jump insn, we don't know exactly why the block would
3267 have been broken at this point. Look for a simple, non-fallthru edge,
3268 as these are only created by conditional branches. If we find such an
3269 edge we know that there used to be a jump here and can then safely
3270 remove all non-fallthru edges. */
3272 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
3273 if (! (e
->flags
& (EDGE_COMPLEX
| EDGE_FALLTHRU
)))
3282 /* Remove all but the fake and fallthru edges. The fake edge may be
3283 the only successor for this block in the case of noreturn
3285 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
3287 if (!(e
->flags
& (EDGE_FALLTHRU
| EDGE_FAKE
)))
3289 df_set_bb_dirty (bb
);
3297 gcc_assert (single_succ_p (bb
));
3299 single_succ_edge (bb
)->probability
= profile_probability::always ();
3302 fprintf (dump_file
, "Purged non-fallthru edges from bb %i\n",
3307 /* Search all basic blocks for potentially dead edges and purge them. Return
3308 true if some edge has been eliminated. */
3311 purge_all_dead_edges (void)
3316 FOR_EACH_BB_FN (bb
, cfun
)
3318 bool purged_here
= purge_dead_edges (bb
);
3320 purged
|= purged_here
;
3326 /* This is used by a few passes that emit some instructions after abnormal
3327 calls, moving the basic block's end, while they in fact do want to emit
3328 them on the fallthru edge. Look for abnormal call edges, find backward
3329 the call in the block and insert the instructions on the edge instead.
3331 Similarly, handle instructions throwing exceptions internally.
3333 Return true when instructions have been found and inserted on edges. */
3336 fixup_abnormal_edges (void)
3338 bool inserted
= false;
3341 FOR_EACH_BB_FN (bb
, cfun
)
3346 /* Look for cases we are interested in - calls or instructions causing
3348 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
3349 if ((e
->flags
& EDGE_ABNORMAL_CALL
)
3350 || ((e
->flags
& (EDGE_ABNORMAL
| EDGE_EH
))
3351 == (EDGE_ABNORMAL
| EDGE_EH
)))
3354 if (e
&& !CALL_P (BB_END (bb
)) && !can_throw_internal (BB_END (bb
)))
3358 /* Get past the new insns generated. Allow notes, as the insns
3359 may be already deleted. */
3361 while ((NONJUMP_INSN_P (insn
) || NOTE_P (insn
))
3362 && !can_throw_internal (insn
)
3363 && insn
!= BB_HEAD (bb
))
3364 insn
= PREV_INSN (insn
);
3366 if (CALL_P (insn
) || can_throw_internal (insn
))
3368 rtx_insn
*stop
, *next
;
3370 e
= find_fallthru_edge (bb
->succs
);
3372 stop
= NEXT_INSN (BB_END (bb
));
3375 for (insn
= NEXT_INSN (insn
); insn
!= stop
; insn
= next
)
3377 next
= NEXT_INSN (insn
);
3382 /* Sometimes there's still the return value USE.
3383 If it's placed after a trapping call (i.e. that
3384 call is the last insn anyway), we have no fallthru
3385 edge. Simply delete this use and don't try to insert
3386 on the non-existent edge.
3387 Similarly, sometimes a call that can throw is
3388 followed in the source with __builtin_unreachable (),
3389 meaning that there is UB if the call returns rather
3390 than throws. If there weren't any instructions
3391 following such calls before, supposedly even the ones
3392 we've deleted aren't significant and can be
3396 /* We're not deleting it, we're moving it. */
3397 insn
->set_undeleted ();
3398 SET_PREV_INSN (insn
) = NULL_RTX
;
3399 SET_NEXT_INSN (insn
) = NULL_RTX
;
3401 insert_insn_on_edge (insn
, e
);
3405 else if (!BARRIER_P (insn
))
3406 set_block_for_insn (insn
, NULL
);
3410 /* It may be that we don't find any trapping insn. In this
3411 case we discovered quite late that the insn that had been
3412 marked as can_throw_internal in fact couldn't trap at all.
3413 So we should in fact delete the EH edges out of the block. */
3415 purge_dead_edges (bb
);
3422 /* Delete the unconditional jump INSN and adjust the CFG correspondingly.
3423 Note that the INSN should be deleted *after* removing dead edges, so
3424 that the kept edge is the fallthrough edge for a (set (pc) (pc))
3425 but not for a (set (pc) (label_ref FOO)). */
3428 update_cfg_for_uncondjump (rtx_insn
*insn
)
3430 basic_block bb
= BLOCK_FOR_INSN (insn
);
3431 gcc_assert (BB_END (bb
) == insn
);
3433 purge_dead_edges (bb
);
3435 if (current_ir_type () != IR_RTL_CFGLAYOUT
)
3437 if (!find_fallthru_edge (bb
->succs
))
3439 auto barrier
= next_nonnote_nondebug_insn (insn
);
3440 if (!barrier
|| !BARRIER_P (barrier
))
3441 emit_barrier_after (insn
);
3447 if (EDGE_COUNT (bb
->succs
) == 1)
3451 single_succ_edge (bb
)->flags
|= EDGE_FALLTHRU
;
3453 /* Remove barriers from the footer if there are any. */
3454 for (insn
= BB_FOOTER (bb
); insn
; insn
= NEXT_INSN (insn
))
3455 if (BARRIER_P (insn
))
3457 if (PREV_INSN (insn
))
3458 SET_NEXT_INSN (PREV_INSN (insn
)) = NEXT_INSN (insn
);
3460 BB_FOOTER (bb
) = NEXT_INSN (insn
);
3461 if (NEXT_INSN (insn
))
3462 SET_PREV_INSN (NEXT_INSN (insn
)) = PREV_INSN (insn
);
3464 else if (LABEL_P (insn
))
3469 /* Cut the insns from FIRST to LAST out of the insns stream. */
3472 unlink_insn_chain (rtx_insn
*first
, rtx_insn
*last
)
3474 rtx_insn
*prevfirst
= PREV_INSN (first
);
3475 rtx_insn
*nextlast
= NEXT_INSN (last
);
3477 SET_PREV_INSN (first
) = NULL
;
3478 SET_NEXT_INSN (last
) = NULL
;
3480 SET_NEXT_INSN (prevfirst
) = nextlast
;
3482 SET_PREV_INSN (nextlast
) = prevfirst
;
3484 set_last_insn (prevfirst
);
3486 set_first_insn (nextlast
);
3490 /* Skip over inter-block insns occurring after BB which are typically
3491 associated with BB (e.g., barriers). If there are any such insns,
3492 we return the last one. Otherwise, we return the end of BB. */
3495 skip_insns_after_block (basic_block bb
)
3497 rtx_insn
*insn
, *last_insn
, *next_head
, *prev
;
3500 if (bb
->next_bb
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
3501 next_head
= BB_HEAD (bb
->next_bb
);
3503 for (last_insn
= insn
= BB_END (bb
); (insn
= NEXT_INSN (insn
)) != 0; )
3505 if (insn
== next_head
)
3508 switch (GET_CODE (insn
))
3515 switch (NOTE_KIND (insn
))
3517 case NOTE_INSN_BLOCK_END
:
3527 if (NEXT_INSN (insn
)
3528 && JUMP_TABLE_DATA_P (NEXT_INSN (insn
)))
3530 insn
= NEXT_INSN (insn
);
3543 /* It is possible to hit contradictory sequence. For instance:
3549 Where barrier belongs to jump_insn, but the note does not. This can be
3550 created by removing the basic block originally following
3551 NOTE_INSN_BLOCK_BEG. In such case reorder the notes. */
3553 for (insn
= last_insn
; insn
!= BB_END (bb
); insn
= prev
)
3555 prev
= PREV_INSN (insn
);
3557 switch (NOTE_KIND (insn
))
3559 case NOTE_INSN_BLOCK_END
:
3562 case NOTE_INSN_DELETED
:
3563 case NOTE_INSN_DELETED_LABEL
:
3564 case NOTE_INSN_DELETED_DEBUG_LABEL
:
3567 reorder_insns (insn
, insn
, last_insn
);
3574 /* Locate or create a label for a given basic block. */
3577 label_for_bb (basic_block bb
)
3579 rtx_insn
*label
= BB_HEAD (bb
);
3581 if (!LABEL_P (label
))
3584 fprintf (dump_file
, "Emitting label for block %d\n", bb
->index
);
3586 label
= block_label (bb
);
3592 /* Locate the effective beginning and end of the insn chain for each
3593 block, as defined by skip_insns_after_block above. */
3596 record_effective_endpoints (void)
3598 rtx_insn
*next_insn
;
3602 for (insn
= get_insns ();
3605 && NOTE_KIND (insn
) != NOTE_INSN_BASIC_BLOCK
;
3606 insn
= NEXT_INSN (insn
))
3608 /* No basic blocks at all? */
3611 if (PREV_INSN (insn
))
3612 cfg_layout_function_header
=
3613 unlink_insn_chain (get_insns (), PREV_INSN (insn
));
3615 cfg_layout_function_header
= NULL
;
3617 next_insn
= get_insns ();
3618 FOR_EACH_BB_FN (bb
, cfun
)
3622 if (PREV_INSN (BB_HEAD (bb
)) && next_insn
!= BB_HEAD (bb
))
3623 BB_HEADER (bb
) = unlink_insn_chain (next_insn
,
3624 PREV_INSN (BB_HEAD (bb
)));
3625 end
= skip_insns_after_block (bb
);
3626 if (NEXT_INSN (BB_END (bb
)) && BB_END (bb
) != end
)
3627 BB_FOOTER (bb
) = unlink_insn_chain (NEXT_INSN (BB_END (bb
)), end
);
3628 next_insn
= NEXT_INSN (BB_END (bb
));
3631 cfg_layout_function_footer
= next_insn
;
3632 if (cfg_layout_function_footer
)
3633 cfg_layout_function_footer
= unlink_insn_chain (cfg_layout_function_footer
, get_last_insn ());
3638 const pass_data pass_data_into_cfg_layout_mode
=
3640 RTL_PASS
, /* type */
3641 "into_cfglayout", /* name */
3642 OPTGROUP_NONE
, /* optinfo_flags */
3644 0, /* properties_required */
3645 PROP_cfglayout
, /* properties_provided */
3646 0, /* properties_destroyed */
3647 0, /* todo_flags_start */
3648 0, /* todo_flags_finish */
3651 class pass_into_cfg_layout_mode
: public rtl_opt_pass
3654 pass_into_cfg_layout_mode (gcc::context
*ctxt
)
3655 : rtl_opt_pass (pass_data_into_cfg_layout_mode
, ctxt
)
3658 /* opt_pass methods: */
3659 virtual unsigned int execute (function
*)
3661 cfg_layout_initialize (0);
3665 }; // class pass_into_cfg_layout_mode
3670 make_pass_into_cfg_layout_mode (gcc::context
*ctxt
)
3672 return new pass_into_cfg_layout_mode (ctxt
);
3677 const pass_data pass_data_outof_cfg_layout_mode
=
3679 RTL_PASS
, /* type */
3680 "outof_cfglayout", /* name */
3681 OPTGROUP_NONE
, /* optinfo_flags */
3683 0, /* properties_required */
3684 0, /* properties_provided */
3685 PROP_cfglayout
, /* properties_destroyed */
3686 0, /* todo_flags_start */
3687 0, /* todo_flags_finish */
3690 class pass_outof_cfg_layout_mode
: public rtl_opt_pass
3693 pass_outof_cfg_layout_mode (gcc::context
*ctxt
)
3694 : rtl_opt_pass (pass_data_outof_cfg_layout_mode
, ctxt
)
3697 /* opt_pass methods: */
3698 virtual unsigned int execute (function
*);
3700 }; // class pass_outof_cfg_layout_mode
3703 pass_outof_cfg_layout_mode::execute (function
*fun
)
3707 FOR_EACH_BB_FN (bb
, fun
)
3708 if (bb
->next_bb
!= EXIT_BLOCK_PTR_FOR_FN (fun
))
3709 bb
->aux
= bb
->next_bb
;
3711 cfg_layout_finalize ();
3719 make_pass_outof_cfg_layout_mode (gcc::context
*ctxt
)
3721 return new pass_outof_cfg_layout_mode (ctxt
);
3725 /* Link the basic blocks in the correct order, compacting the basic
3726 block queue while at it. If STAY_IN_CFGLAYOUT_MODE is false, this
3727 function also clears the basic block header and footer fields.
3729 This function is usually called after a pass (e.g. tracer) finishes
3730 some transformations while in cfglayout mode. The required sequence
3731 of the basic blocks is in a linked list along the bb->aux field.
3732 This functions re-links the basic block prev_bb and next_bb pointers
3733 accordingly, and it compacts and renumbers the blocks.
3735 FIXME: This currently works only for RTL, but the only RTL-specific
3736 bits are the STAY_IN_CFGLAYOUT_MODE bits. The tracer pass was moved
3737 to GIMPLE a long time ago, but it doesn't relink the basic block
3738 chain. It could do that (to give better initial RTL) if this function
3739 is made IR-agnostic (and moved to cfganal.c or cfg.c while at it). */
3742 relink_block_chain (bool stay_in_cfglayout_mode
)
3744 basic_block bb
, prev_bb
;
3747 /* Maybe dump the re-ordered sequence. */
3750 fprintf (dump_file
, "Reordered sequence:\n");
3751 for (bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
, index
=
3754 bb
= (basic_block
) bb
->aux
, index
++)
3756 fprintf (dump_file
, " %i ", index
);
3757 if (get_bb_original (bb
))
3758 fprintf (dump_file
, "duplicate of %i\n",
3759 get_bb_original (bb
)->index
);
3760 else if (forwarder_block_p (bb
)
3761 && !LABEL_P (BB_HEAD (bb
)))
3762 fprintf (dump_file
, "compensation\n");
3764 fprintf (dump_file
, "bb %i\n", bb
->index
);
3768 /* Now reorder the blocks. */
3769 prev_bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
);
3770 bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
;
3771 for (; bb
; prev_bb
= bb
, bb
= (basic_block
) bb
->aux
)
3773 bb
->prev_bb
= prev_bb
;
3774 prev_bb
->next_bb
= bb
;
3776 prev_bb
->next_bb
= EXIT_BLOCK_PTR_FOR_FN (cfun
);
3777 EXIT_BLOCK_PTR_FOR_FN (cfun
)->prev_bb
= prev_bb
;
3779 /* Then, clean up the aux fields. */
3780 FOR_ALL_BB_FN (bb
, cfun
)
3783 if (!stay_in_cfglayout_mode
)
3784 BB_HEADER (bb
) = BB_FOOTER (bb
) = NULL
;
3787 /* Maybe reset the original copy tables, they are not valid anymore
3788 when we renumber the basic blocks in compact_blocks. If we are
3789 are going out of cfglayout mode, don't re-allocate the tables. */
3790 if (original_copy_tables_initialized_p ())
3791 free_original_copy_tables ();
3792 if (stay_in_cfglayout_mode
)
3793 initialize_original_copy_tables ();
3795 /* Finally, put basic_block_info in the new order. */
3800 /* Given a reorder chain, rearrange the code to match. */
3803 fixup_reorder_chain (void)
3806 rtx_insn
*insn
= NULL
;
3808 if (cfg_layout_function_header
)
3810 set_first_insn (cfg_layout_function_header
);
3811 insn
= cfg_layout_function_header
;
3812 while (NEXT_INSN (insn
))
3813 insn
= NEXT_INSN (insn
);
3816 /* First do the bulk reordering -- rechain the blocks without regard to
3817 the needed changes to jumps and labels. */
3819 for (bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
; bb
; bb
= (basic_block
)
3825 SET_NEXT_INSN (insn
) = BB_HEADER (bb
);
3827 set_first_insn (BB_HEADER (bb
));
3828 SET_PREV_INSN (BB_HEADER (bb
)) = insn
;
3829 insn
= BB_HEADER (bb
);
3830 while (NEXT_INSN (insn
))
3831 insn
= NEXT_INSN (insn
);
3834 SET_NEXT_INSN (insn
) = BB_HEAD (bb
);
3836 set_first_insn (BB_HEAD (bb
));
3837 SET_PREV_INSN (BB_HEAD (bb
)) = insn
;
3841 SET_NEXT_INSN (insn
) = BB_FOOTER (bb
);
3842 SET_PREV_INSN (BB_FOOTER (bb
)) = insn
;
3843 while (NEXT_INSN (insn
))
3844 insn
= NEXT_INSN (insn
);
3848 SET_NEXT_INSN (insn
) = cfg_layout_function_footer
;
3849 if (cfg_layout_function_footer
)
3850 SET_PREV_INSN (cfg_layout_function_footer
) = insn
;
3852 while (NEXT_INSN (insn
))
3853 insn
= NEXT_INSN (insn
);
3855 set_last_insn (insn
);
3857 verify_insn_chain ();
3859 /* Now add jumps and labels as needed to match the blocks new
3862 for (bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
; bb
; bb
= (basic_block
)
3865 edge e_fall
, e_taken
, e
;
3866 rtx_insn
*bb_end_insn
;
3867 rtx ret_label
= NULL_RTX
;
3871 if (EDGE_COUNT (bb
->succs
) == 0)
3874 /* Find the old fallthru edge, and another non-EH edge for
3876 e_taken
= e_fall
= NULL
;
3878 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
3879 if (e
->flags
& EDGE_FALLTHRU
)
3881 else if (! (e
->flags
& EDGE_EH
))
3884 bb_end_insn
= BB_END (bb
);
3885 if (rtx_jump_insn
*bb_end_jump
= dyn_cast
<rtx_jump_insn
*> (bb_end_insn
))
3887 ret_label
= JUMP_LABEL (bb_end_jump
);
3888 if (any_condjump_p (bb_end_jump
))
3890 /* This might happen if the conditional jump has side
3891 effects and could therefore not be optimized away.
3892 Make the basic block to end with a barrier in order
3893 to prevent rtl_verify_flow_info from complaining. */
3896 gcc_assert (!onlyjump_p (bb_end_jump
)
3897 || returnjump_p (bb_end_jump
)
3898 || (e_taken
->flags
& EDGE_CROSSING
));
3899 emit_barrier_after (bb_end_jump
);
3903 /* If the old fallthru is still next, nothing to do. */
3904 if (bb
->aux
== e_fall
->dest
3905 || e_fall
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
3908 /* The degenerated case of conditional jump jumping to the next
3909 instruction can happen for jumps with side effects. We need
3910 to construct a forwarder block and this will be done just
3911 fine by force_nonfallthru below. */
3915 /* There is another special case: if *neither* block is next,
3916 such as happens at the very end of a function, then we'll
3917 need to add a new unconditional jump. Choose the taken
3918 edge based on known or assumed probability. */
3919 else if (bb
->aux
!= e_taken
->dest
)
3921 rtx note
= find_reg_note (bb_end_jump
, REG_BR_PROB
, 0);
3924 && profile_probability::from_reg_br_prob_note
3925 (XINT (note
, 0)) < profile_probability::even ()
3926 && invert_jump (bb_end_jump
,
3928 == EXIT_BLOCK_PTR_FOR_FN (cfun
)
3930 : label_for_bb (e_fall
->dest
)), 0))
3932 e_fall
->flags
&= ~EDGE_FALLTHRU
;
3933 gcc_checking_assert (could_fall_through
3934 (e_taken
->src
, e_taken
->dest
));
3935 e_taken
->flags
|= EDGE_FALLTHRU
;
3936 update_br_prob_note (bb
);
3937 e
= e_fall
, e_fall
= e_taken
, e_taken
= e
;
3941 /* If the "jumping" edge is a crossing edge, and the fall
3942 through edge is non-crossing, leave things as they are. */
3943 else if ((e_taken
->flags
& EDGE_CROSSING
)
3944 && !(e_fall
->flags
& EDGE_CROSSING
))
3947 /* Otherwise we can try to invert the jump. This will
3948 basically never fail, however, keep up the pretense. */
3949 else if (invert_jump (bb_end_jump
,
3951 == EXIT_BLOCK_PTR_FOR_FN (cfun
)
3953 : label_for_bb (e_fall
->dest
)), 0))
3955 e_fall
->flags
&= ~EDGE_FALLTHRU
;
3956 gcc_checking_assert (could_fall_through
3957 (e_taken
->src
, e_taken
->dest
));
3958 e_taken
->flags
|= EDGE_FALLTHRU
;
3959 update_br_prob_note (bb
);
3960 if (LABEL_NUSES (ret_label
) == 0
3961 && single_pred_p (e_taken
->dest
))
3962 delete_insn (as_a
<rtx_insn
*> (ret_label
));
3966 else if (extract_asm_operands (PATTERN (bb_end_insn
)) != NULL
)
3968 /* If the old fallthru is still next or if
3969 asm goto doesn't have a fallthru (e.g. when followed by
3970 __builtin_unreachable ()), nothing to do. */
3972 || bb
->aux
== e_fall
->dest
3973 || e_fall
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
3976 /* Otherwise we'll have to use the fallthru fixup below. */
3980 /* Otherwise we have some return, switch or computed
3981 jump. In the 99% case, there should not have been a
3983 gcc_assert (returnjump_p (bb_end_insn
) || !e_fall
);
3989 /* No fallthru implies a noreturn function with EH edges, or
3990 something similarly bizarre. In any case, we don't need to
3995 /* If the fallthru block is still next, nothing to do. */
3996 if (bb
->aux
== e_fall
->dest
)
3999 /* A fallthru to exit block. */
4000 if (e_fall
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
4004 /* We got here if we need to add a new jump insn.
4005 Note force_nonfallthru can delete E_FALL and thus we have to
4006 save E_FALL->src prior to the call to force_nonfallthru. */
4007 nb
= force_nonfallthru_and_redirect (e_fall
, e_fall
->dest
, ret_label
);
4012 /* Don't process this new block. */
4017 relink_block_chain (/*stay_in_cfglayout_mode=*/false);
4019 /* Annoying special case - jump around dead jumptables left in the code. */
4020 FOR_EACH_BB_FN (bb
, cfun
)
4022 edge e
= find_fallthru_edge (bb
->succs
);
4024 if (e
&& !can_fallthru (e
->src
, e
->dest
))
4025 force_nonfallthru (e
);
4028 /* Ensure goto_locus from edges has some instructions with that locus in RTL
4029 when not optimizing. */
4030 if (!optimize
&& !DECL_IGNORED_P (current_function_decl
))
4031 FOR_EACH_BB_FN (bb
, cfun
)
4036 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
4037 if (LOCATION_LOCUS (e
->goto_locus
) != UNKNOWN_LOCATION
4038 && !(e
->flags
& EDGE_ABNORMAL
))
4042 basic_block dest
, nb
;
4045 insn
= BB_END (e
->src
);
4046 end
= PREV_INSN (BB_HEAD (e
->src
));
4048 && (!NONDEBUG_INSN_P (insn
) || !INSN_HAS_LOCATION (insn
)))
4049 insn
= PREV_INSN (insn
);
4051 && INSN_LOCATION (insn
) == e
->goto_locus
)
4053 if (simplejump_p (BB_END (e
->src
))
4054 && !INSN_HAS_LOCATION (BB_END (e
->src
)))
4056 INSN_LOCATION (BB_END (e
->src
)) = e
->goto_locus
;
4060 if (dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
4062 /* Non-fallthru edges to the exit block cannot be split. */
4063 if (!(e
->flags
& EDGE_FALLTHRU
))
4068 insn
= BB_HEAD (dest
);
4069 end
= NEXT_INSN (BB_END (dest
));
4070 while (insn
!= end
&& !NONDEBUG_INSN_P (insn
))
4071 insn
= NEXT_INSN (insn
);
4072 if (insn
!= end
&& INSN_HAS_LOCATION (insn
)
4073 && INSN_LOCATION (insn
) == e
->goto_locus
)
4076 nb
= split_edge (e
);
4077 if (!INSN_P (BB_END (nb
)))
4078 BB_END (nb
) = emit_insn_after_noloc (gen_nop (), BB_END (nb
),
4080 INSN_LOCATION (BB_END (nb
)) = e
->goto_locus
;
4082 /* If there are other incoming edges to the destination block
4083 with the same goto locus, redirect them to the new block as
4084 well, this can prevent other such blocks from being created
4085 in subsequent iterations of the loop. */
4086 for (ei2
= ei_start (dest
->preds
); (e2
= ei_safe_edge (ei2
)); )
4087 if (LOCATION_LOCUS (e2
->goto_locus
) != UNKNOWN_LOCATION
4088 && !(e2
->flags
& (EDGE_ABNORMAL
| EDGE_FALLTHRU
))
4089 && e
->goto_locus
== e2
->goto_locus
)
4090 redirect_edge_and_branch (e2
, nb
);
4097 /* Perform sanity checks on the insn chain.
4098 1. Check that next/prev pointers are consistent in both the forward and
4100 2. Count insns in chain, going both directions, and check if equal.
4101 3. Check that get_last_insn () returns the actual end of chain. */
4104 verify_insn_chain (void)
4106 rtx_insn
*x
, *prevx
, *nextx
;
4107 int insn_cnt1
, insn_cnt2
;
4109 for (prevx
= NULL
, insn_cnt1
= 1, x
= get_insns ();
4111 prevx
= x
, insn_cnt1
++, x
= NEXT_INSN (x
))
4112 gcc_assert (PREV_INSN (x
) == prevx
);
4114 gcc_assert (prevx
== get_last_insn ());
4116 for (nextx
= NULL
, insn_cnt2
= 1, x
= get_last_insn ();
4118 nextx
= x
, insn_cnt2
++, x
= PREV_INSN (x
))
4119 gcc_assert (NEXT_INSN (x
) == nextx
);
4121 gcc_assert (insn_cnt1
== insn_cnt2
);
4124 /* If we have assembler epilogues, the block falling through to exit must
4125 be the last one in the reordered chain when we reach final. Ensure
4126 that this condition is met. */
4128 fixup_fallthru_exit_predecessor (void)
4131 basic_block bb
= NULL
;
4133 /* This transformation is not valid before reload, because we might
4134 separate a call from the instruction that copies the return
4136 gcc_assert (reload_completed
);
4138 e
= find_fallthru_edge (EXIT_BLOCK_PTR_FOR_FN (cfun
)->preds
);
4144 basic_block c
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
;
4146 /* If the very first block is the one with the fall-through exit
4147 edge, we have to split that block. */
4150 bb
= split_block_after_labels (bb
)->dest
;
4153 BB_FOOTER (bb
) = BB_FOOTER (c
);
4154 BB_FOOTER (c
) = NULL
;
4157 while (c
->aux
!= bb
)
4158 c
= (basic_block
) c
->aux
;
4162 c
= (basic_block
) c
->aux
;
4169 /* In case there are more than one fallthru predecessors of exit, force that
4170 there is only one. */
4173 force_one_exit_fallthru (void)
4175 edge e
, predecessor
= NULL
;
4178 basic_block forwarder
, bb
;
4180 FOR_EACH_EDGE (e
, ei
, EXIT_BLOCK_PTR_FOR_FN (cfun
)->preds
)
4181 if (e
->flags
& EDGE_FALLTHRU
)
4183 if (predecessor
== NULL
)
4195 /* Exit has several fallthru predecessors. Create a forwarder block for
4197 forwarder
= split_edge (predecessor
);
4198 for (ei
= ei_start (EXIT_BLOCK_PTR_FOR_FN (cfun
)->preds
);
4199 (e
= ei_safe_edge (ei
)); )
4201 if (e
->src
== forwarder
4202 || !(e
->flags
& EDGE_FALLTHRU
))
4205 redirect_edge_and_branch_force (e
, forwarder
);
4208 /* Fix up the chain of blocks -- make FORWARDER immediately precede the
4210 FOR_EACH_BB_FN (bb
, cfun
)
4212 if (bb
->aux
== NULL
&& bb
!= forwarder
)
4214 bb
->aux
= forwarder
;
4220 /* Return true in case it is possible to duplicate the basic block BB. */
4223 cfg_layout_can_duplicate_bb_p (const_basic_block bb
)
4225 /* Do not attempt to duplicate tablejumps, as we need to unshare
4226 the dispatch table. This is difficult to do, as the instructions
4227 computing jump destination may be hoisted outside the basic block. */
4228 if (tablejump_p (BB_END (bb
), NULL
, NULL
))
4231 /* Do not duplicate blocks containing insns that can't be copied. */
4232 if (targetm
.cannot_copy_insn_p
)
4234 rtx_insn
*insn
= BB_HEAD (bb
);
4237 if (INSN_P (insn
) && targetm
.cannot_copy_insn_p (insn
))
4239 if (insn
== BB_END (bb
))
4241 insn
= NEXT_INSN (insn
);
4249 duplicate_insn_chain (rtx_insn
*from
, rtx_insn
*to
,
4250 class loop
*loop
, copy_bb_data
*id
)
4252 rtx_insn
*insn
, *next
, *copy
;
4255 /* Avoid updating of boundaries of previous basic block. The
4256 note will get removed from insn stream in fixup. */
4257 last
= emit_note (NOTE_INSN_DELETED
);
4259 /* Create copy at the end of INSN chain. The chain will
4260 be reordered later. */
4261 for (insn
= from
; insn
!= NEXT_INSN (to
); insn
= NEXT_INSN (insn
))
4263 switch (GET_CODE (insn
))
4266 /* Don't duplicate label debug insns. */
4267 if (DEBUG_BIND_INSN_P (insn
)
4268 && TREE_CODE (INSN_VAR_LOCATION_DECL (insn
)) == LABEL_DECL
)
4274 copy
= emit_copy_of_insn_after (insn
, get_last_insn ());
4275 if (JUMP_P (insn
) && JUMP_LABEL (insn
) != NULL_RTX
4276 && ANY_RETURN_P (JUMP_LABEL (insn
)))
4277 JUMP_LABEL (copy
) = JUMP_LABEL (insn
);
4278 maybe_copy_prologue_epilogue_insn (insn
, copy
);
4279 /* If requested remap dependence info of cliques brought in
4283 subrtx_iterator::array_type array
;
4284 FOR_EACH_SUBRTX (iter
, array
, PATTERN (insn
), ALL
)
4285 if (MEM_P (*iter
) && MEM_EXPR (*iter
))
4287 tree op
= MEM_EXPR (*iter
);
4288 if (TREE_CODE (op
) == WITH_SIZE_EXPR
)
4289 op
= TREE_OPERAND (op
, 0);
4290 while (handled_component_p (op
))
4291 op
= TREE_OPERAND (op
, 0);
4292 if ((TREE_CODE (op
) == MEM_REF
4293 || TREE_CODE (op
) == TARGET_MEM_REF
)
4294 && MR_DEPENDENCE_CLIQUE (op
) > 1
4296 || (MR_DEPENDENCE_CLIQUE (op
)
4297 != loop
->owned_clique
)))
4299 if (!id
->dependence_map
)
4300 id
->dependence_map
= new hash_map
<dependence_hash
,
4303 unsigned short &newc
= id
->dependence_map
->get_or_insert
4304 (MR_DEPENDENCE_CLIQUE (op
), &existed
);
4308 (MR_DEPENDENCE_CLIQUE (op
) <= cfun
->last_clique
);
4309 newc
= ++cfun
->last_clique
;
4311 /* We cannot adjust MR_DEPENDENCE_CLIQUE in-place
4312 since MEM_EXPR is shared so make a copy and
4313 walk to the subtree again. */
4314 tree new_expr
= unshare_expr (MEM_EXPR (*iter
));
4315 if (TREE_CODE (new_expr
) == WITH_SIZE_EXPR
)
4316 new_expr
= TREE_OPERAND (new_expr
, 0);
4317 while (handled_component_p (new_expr
))
4318 new_expr
= TREE_OPERAND (new_expr
, 0);
4319 MR_DEPENDENCE_CLIQUE (new_expr
) = newc
;
4320 set_mem_expr (const_cast <rtx
> (*iter
), new_expr
);
4326 case JUMP_TABLE_DATA
:
4327 /* Avoid copying of dispatch tables. We never duplicate
4328 tablejumps, so this can hit only in case the table got
4329 moved far from original jump.
4330 Avoid copying following barrier as well if any
4331 (and debug insns in between). */
4332 for (next
= NEXT_INSN (insn
);
4333 next
!= NEXT_INSN (to
);
4334 next
= NEXT_INSN (next
))
4335 if (!DEBUG_INSN_P (next
))
4337 if (next
!= NEXT_INSN (to
) && BARRIER_P (next
))
4349 switch (NOTE_KIND (insn
))
4351 /* In case prologue is empty and function contain label
4352 in first BB, we may want to copy the block. */
4353 case NOTE_INSN_PROLOGUE_END
:
4355 case NOTE_INSN_DELETED
:
4356 case NOTE_INSN_DELETED_LABEL
:
4357 case NOTE_INSN_DELETED_DEBUG_LABEL
:
4358 /* No problem to strip these. */
4359 case NOTE_INSN_FUNCTION_BEG
:
4360 /* There is always just single entry to function. */
4361 case NOTE_INSN_BASIC_BLOCK
:
4362 /* We should only switch text sections once. */
4363 case NOTE_INSN_SWITCH_TEXT_SECTIONS
:
4366 case NOTE_INSN_EPILOGUE_BEG
:
4367 case NOTE_INSN_UPDATE_SJLJ_CONTEXT
:
4368 emit_note_copy (as_a
<rtx_note
*> (insn
));
4372 /* All other notes should have already been eliminated. */
4380 insn
= NEXT_INSN (last
);
4385 /* Create a duplicate of the basic block BB. */
4388 cfg_layout_duplicate_bb (basic_block bb
, copy_bb_data
*id
)
4393 class loop
*loop
= (id
&& current_loops
) ? bb
->loop_father
: NULL
;
4395 insn
= duplicate_insn_chain (BB_HEAD (bb
), BB_END (bb
), loop
, id
);
4396 new_bb
= create_basic_block (insn
,
4397 insn
? get_last_insn () : NULL
,
4398 EXIT_BLOCK_PTR_FOR_FN (cfun
)->prev_bb
);
4400 BB_COPY_PARTITION (new_bb
, bb
);
4403 insn
= BB_HEADER (bb
);
4404 while (NEXT_INSN (insn
))
4405 insn
= NEXT_INSN (insn
);
4406 insn
= duplicate_insn_chain (BB_HEADER (bb
), insn
, loop
, id
);
4408 BB_HEADER (new_bb
) = unlink_insn_chain (insn
, get_last_insn ());
4413 insn
= BB_FOOTER (bb
);
4414 while (NEXT_INSN (insn
))
4415 insn
= NEXT_INSN (insn
);
4416 insn
= duplicate_insn_chain (BB_FOOTER (bb
), insn
, loop
, id
);
4418 BB_FOOTER (new_bb
) = unlink_insn_chain (insn
, get_last_insn ());
4425 /* Main entry point to this module - initialize the datastructures for
4426 CFG layout changes. It keeps LOOPS up-to-date if not null.
4428 FLAGS is a set of additional flags to pass to cleanup_cfg(). */
4431 cfg_layout_initialize (int flags
)
4436 /* Once bb partitioning is complete, cfg layout mode should not be
4437 re-entered. Entering cfg layout mode may require fixups. As an
4438 example, if edge forwarding performed when optimizing the cfg
4439 layout required moving a block from the hot to the cold
4440 section. This would create an illegal partitioning unless some
4441 manual fixup was performed. */
4442 gcc_assert (!crtl
->bb_reorder_complete
|| !crtl
->has_bb_partition
);
4444 initialize_original_copy_tables ();
4446 cfg_layout_rtl_register_cfg_hooks ();
4448 record_effective_endpoints ();
4450 /* Make sure that the targets of non local gotos are marked. */
4451 for (x
= nonlocal_goto_handler_labels
; x
; x
= x
->next ())
4453 bb
= BLOCK_FOR_INSN (x
->insn ());
4454 bb
->flags
|= BB_NON_LOCAL_GOTO_TARGET
;
4457 cleanup_cfg (CLEANUP_CFGLAYOUT
| flags
);
4460 /* Splits superblocks. */
4462 break_superblocks (void)
4467 auto_sbitmap
superblocks (last_basic_block_for_fn (cfun
));
4468 bitmap_clear (superblocks
);
4470 FOR_EACH_BB_FN (bb
, cfun
)
4471 if (bb
->flags
& BB_SUPERBLOCK
)
4473 bb
->flags
&= ~BB_SUPERBLOCK
;
4474 bitmap_set_bit (superblocks
, bb
->index
);
4480 rebuild_jump_labels (get_insns ());
4481 find_many_sub_basic_blocks (superblocks
);
4485 /* Finalize the changes: reorder insn list according to the sequence specified
4486 by aux pointers, enter compensation code, rebuild scope forest. */
4489 cfg_layout_finalize (void)
4491 free_dominance_info (CDI_DOMINATORS
);
4492 force_one_exit_fallthru ();
4493 rtl_register_cfg_hooks ();
4494 if (reload_completed
&& !targetm
.have_epilogue ())
4495 fixup_fallthru_exit_predecessor ();
4496 fixup_reorder_chain ();
4498 rebuild_jump_labels (get_insns ());
4499 delete_dead_jumptables ();
4502 verify_insn_chain ();
4503 checking_verify_flow_info ();
4507 /* Same as split_block but update cfg_layout structures. */
4510 cfg_layout_split_block (basic_block bb
, void *insnp
)
4512 rtx insn
= (rtx
) insnp
;
4513 basic_block new_bb
= rtl_split_block (bb
, insn
);
4515 BB_FOOTER (new_bb
) = BB_FOOTER (bb
);
4516 BB_FOOTER (bb
) = NULL
;
4521 /* Redirect Edge to DEST. */
4523 cfg_layout_redirect_edge_and_branch (edge e
, basic_block dest
)
4525 basic_block src
= e
->src
;
4528 if (e
->flags
& (EDGE_ABNORMAL_CALL
| EDGE_EH
))
4531 if (e
->dest
== dest
)
4534 if (e
->flags
& EDGE_CROSSING
4535 && BB_PARTITION (e
->src
) == BB_PARTITION (dest
)
4536 && simplejump_p (BB_END (src
)))
4540 "Removing crossing jump while redirecting edge form %i to %i\n",
4541 e
->src
->index
, dest
->index
);
4542 delete_insn (BB_END (src
));
4543 remove_barriers_from_footer (src
);
4544 e
->flags
|= EDGE_FALLTHRU
;
4547 if (e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
4548 && (ret
= try_redirect_by_replacing_jump (e
, dest
, true)))
4550 df_set_bb_dirty (src
);
4554 if (e
->src
== ENTRY_BLOCK_PTR_FOR_FN (cfun
)
4555 && (e
->flags
& EDGE_FALLTHRU
) && !(e
->flags
& EDGE_COMPLEX
))
4558 fprintf (dump_file
, "Redirecting entry edge from bb %i to %i\n",
4559 e
->src
->index
, dest
->index
);
4561 df_set_bb_dirty (e
->src
);
4562 redirect_edge_succ (e
, dest
);
4566 /* Redirect_edge_and_branch may decide to turn branch into fallthru edge
4567 in the case the basic block appears to be in sequence. Avoid this
4570 if (e
->flags
& EDGE_FALLTHRU
)
4572 /* Redirect any branch edges unified with the fallthru one. */
4573 if (JUMP_P (BB_END (src
))
4574 && label_is_jump_target_p (BB_HEAD (e
->dest
),
4580 fprintf (dump_file
, "Fallthru edge unified with branch "
4581 "%i->%i redirected to %i\n",
4582 e
->src
->index
, e
->dest
->index
, dest
->index
);
4583 e
->flags
&= ~EDGE_FALLTHRU
;
4584 redirected
= redirect_branch_edge (e
, dest
);
4585 gcc_assert (redirected
);
4586 redirected
->flags
|= EDGE_FALLTHRU
;
4587 df_set_bb_dirty (redirected
->src
);
4590 /* In case we are redirecting fallthru edge to the branch edge
4591 of conditional jump, remove it. */
4592 if (EDGE_COUNT (src
->succs
) == 2)
4594 /* Find the edge that is different from E. */
4595 edge s
= EDGE_SUCC (src
, EDGE_SUCC (src
, 0) == e
);
4598 && any_condjump_p (BB_END (src
))
4599 && onlyjump_p (BB_END (src
)))
4600 delete_insn (BB_END (src
));
4603 fprintf (dump_file
, "Redirecting fallthru edge %i->%i to %i\n",
4604 e
->src
->index
, e
->dest
->index
, dest
->index
);
4605 ret
= redirect_edge_succ_nodup (e
, dest
);
4608 ret
= redirect_branch_edge (e
, dest
);
4613 fixup_partition_crossing (ret
);
4614 /* We don't want simplejumps in the insn stream during cfglayout. */
4615 gcc_assert (!simplejump_p (BB_END (src
)) || CROSSING_JUMP_P (BB_END (src
)));
4617 df_set_bb_dirty (src
);
4621 /* Simple wrapper as we always can redirect fallthru edges. */
4623 cfg_layout_redirect_edge_and_branch_force (edge e
, basic_block dest
)
4625 edge redirected
= cfg_layout_redirect_edge_and_branch (e
, dest
);
4627 gcc_assert (redirected
);
4631 /* Same as delete_basic_block but update cfg_layout structures. */
4634 cfg_layout_delete_block (basic_block bb
)
4636 rtx_insn
*insn
, *next
, *prev
= PREV_INSN (BB_HEAD (bb
)), *remaints
;
4641 next
= BB_HEAD (bb
);
4643 SET_NEXT_INSN (prev
) = BB_HEADER (bb
);
4645 set_first_insn (BB_HEADER (bb
));
4646 SET_PREV_INSN (BB_HEADER (bb
)) = prev
;
4647 insn
= BB_HEADER (bb
);
4648 while (NEXT_INSN (insn
))
4649 insn
= NEXT_INSN (insn
);
4650 SET_NEXT_INSN (insn
) = next
;
4651 SET_PREV_INSN (next
) = insn
;
4653 next
= NEXT_INSN (BB_END (bb
));
4656 insn
= BB_FOOTER (bb
);
4659 if (BARRIER_P (insn
))
4661 if (PREV_INSN (insn
))
4662 SET_NEXT_INSN (PREV_INSN (insn
)) = NEXT_INSN (insn
);
4664 BB_FOOTER (bb
) = NEXT_INSN (insn
);
4665 if (NEXT_INSN (insn
))
4666 SET_PREV_INSN (NEXT_INSN (insn
)) = PREV_INSN (insn
);
4670 insn
= NEXT_INSN (insn
);
4675 SET_NEXT_INSN (insn
) = BB_FOOTER (bb
);
4676 SET_PREV_INSN (BB_FOOTER (bb
)) = insn
;
4677 while (NEXT_INSN (insn
))
4678 insn
= NEXT_INSN (insn
);
4679 SET_NEXT_INSN (insn
) = next
;
4681 SET_PREV_INSN (next
) = insn
;
4683 set_last_insn (insn
);
4686 if (bb
->next_bb
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
4687 to
= &BB_HEADER (bb
->next_bb
);
4689 to
= &cfg_layout_function_footer
;
4691 rtl_delete_block (bb
);
4694 prev
= NEXT_INSN (prev
);
4696 prev
= get_insns ();
4698 next
= PREV_INSN (next
);
4700 next
= get_last_insn ();
4702 if (next
&& NEXT_INSN (next
) != prev
)
4704 remaints
= unlink_insn_chain (prev
, next
);
4706 while (NEXT_INSN (insn
))
4707 insn
= NEXT_INSN (insn
);
4708 SET_NEXT_INSN (insn
) = *to
;
4710 SET_PREV_INSN (*to
) = insn
;
4715 /* Return true when blocks A and B can be safely merged. */
4718 cfg_layout_can_merge_blocks_p (basic_block a
, basic_block b
)
4720 /* If we are partitioning hot/cold basic blocks, we don't want to
4721 mess up unconditional or indirect jumps that cross between hot
4724 Basic block partitioning may result in some jumps that appear to
4725 be optimizable (or blocks that appear to be mergeable), but which really
4726 must be left untouched (they are required to make it safely across
4727 partition boundaries). See the comments at the top of
4728 bb-reorder.c:partition_hot_cold_basic_blocks for complete details. */
4730 if (BB_PARTITION (a
) != BB_PARTITION (b
))
4733 /* Protect the loop latches. */
4734 if (current_loops
&& b
->loop_father
->latch
== b
)
4737 /* If we would end up moving B's instructions, make sure it doesn't fall
4738 through into the exit block, since we cannot recover from a fallthrough
4739 edge into the exit block occurring in the middle of a function. */
4740 if (NEXT_INSN (BB_END (a
)) != BB_HEAD (b
))
4742 edge e
= find_fallthru_edge (b
->succs
);
4743 if (e
&& e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
4747 /* There must be exactly one edge in between the blocks. */
4748 return (single_succ_p (a
)
4749 && single_succ (a
) == b
4750 && single_pred_p (b
) == 1
4752 /* Must be simple edge. */
4753 && !(single_succ_edge (a
)->flags
& EDGE_COMPLEX
)
4754 && a
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
4755 && b
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
4756 /* If the jump insn has side effects, we can't kill the edge.
4757 When not optimizing, try_redirect_by_replacing_jump will
4758 not allow us to redirect an edge by replacing a table jump. */
4759 && (!JUMP_P (BB_END (a
))
4760 || ((!optimize
|| reload_completed
)
4761 ? simplejump_p (BB_END (a
)) : onlyjump_p (BB_END (a
)))));
4764 /* Merge block A and B. The blocks must be mergeable. */
4767 cfg_layout_merge_blocks (basic_block a
, basic_block b
)
4769 /* If B is a forwarder block whose outgoing edge has no location, we'll
4770 propagate the locus of the edge between A and B onto it. */
4771 const bool forward_edge_locus
4772 = (b
->flags
& BB_FORWARDER_BLOCK
) != 0
4773 && LOCATION_LOCUS (EDGE_SUCC (b
, 0)->goto_locus
) == UNKNOWN_LOCATION
;
4776 gcc_checking_assert (cfg_layout_can_merge_blocks_p (a
, b
));
4779 fprintf (dump_file
, "Merging block %d into block %d...\n", b
->index
,
4782 /* If there was a CODE_LABEL beginning B, delete it. */
4783 if (LABEL_P (BB_HEAD (b
)))
4785 delete_insn (BB_HEAD (b
));
4788 /* We should have fallthru edge in a, or we can do dummy redirection to get
4790 if (JUMP_P (BB_END (a
)))
4791 try_redirect_by_replacing_jump (EDGE_SUCC (a
, 0), b
, true);
4792 gcc_assert (!JUMP_P (BB_END (a
)));
4794 /* If not optimizing, preserve the locus of the single edge between
4795 blocks A and B if necessary by emitting a nop. */
4797 && !forward_edge_locus
4798 && !DECL_IGNORED_P (current_function_decl
))
4799 emit_nop_for_unique_locus_between (a
, b
);
4801 /* Move things from b->footer after a->footer. */
4805 BB_FOOTER (a
) = BB_FOOTER (b
);
4808 rtx_insn
*last
= BB_FOOTER (a
);
4810 while (NEXT_INSN (last
))
4811 last
= NEXT_INSN (last
);
4812 SET_NEXT_INSN (last
) = BB_FOOTER (b
);
4813 SET_PREV_INSN (BB_FOOTER (b
)) = last
;
4815 BB_FOOTER (b
) = NULL
;
4818 /* Move things from b->header before a->footer.
4819 Note that this may include dead tablejump data, but we don't clean
4820 those up until we go out of cfglayout mode. */
4823 if (! BB_FOOTER (a
))
4824 BB_FOOTER (a
) = BB_HEADER (b
);
4827 rtx_insn
*last
= BB_HEADER (b
);
4829 while (NEXT_INSN (last
))
4830 last
= NEXT_INSN (last
);
4831 SET_NEXT_INSN (last
) = BB_FOOTER (a
);
4832 SET_PREV_INSN (BB_FOOTER (a
)) = last
;
4833 BB_FOOTER (a
) = BB_HEADER (b
);
4835 BB_HEADER (b
) = NULL
;
4838 /* In the case basic blocks are not adjacent, move them around. */
4839 if (NEXT_INSN (BB_END (a
)) != BB_HEAD (b
))
4841 insn
= unlink_insn_chain (BB_HEAD (b
), BB_END (b
));
4843 emit_insn_after_noloc (insn
, BB_END (a
), a
);
4845 /* Otherwise just re-associate the instructions. */
4849 BB_END (a
) = BB_END (b
);
4852 /* emit_insn_after_noloc doesn't call df_insn_change_bb.
4853 We need to explicitly call. */
4854 update_bb_for_insn_chain (insn
, BB_END (b
), a
);
4856 /* Skip possible DELETED_LABEL insn. */
4857 if (!NOTE_INSN_BASIC_BLOCK_P (insn
))
4858 insn
= NEXT_INSN (insn
);
4859 gcc_assert (NOTE_INSN_BASIC_BLOCK_P (insn
));
4860 BB_HEAD (b
) = BB_END (b
) = NULL
;
4863 df_bb_delete (b
->index
);
4865 if (forward_edge_locus
)
4866 EDGE_SUCC (b
, 0)->goto_locus
= EDGE_SUCC (a
, 0)->goto_locus
;
4869 fprintf (dump_file
, "Merged blocks %d and %d.\n", a
->index
, b
->index
);
4875 cfg_layout_split_edge (edge e
)
4877 basic_block new_bb
=
4878 create_basic_block (e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
4879 ? NEXT_INSN (BB_END (e
->src
)) : get_insns (),
4882 if (e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
4883 BB_COPY_PARTITION (new_bb
, e
->src
);
4885 BB_COPY_PARTITION (new_bb
, e
->dest
);
4886 make_edge (new_bb
, e
->dest
, EDGE_FALLTHRU
);
4887 redirect_edge_and_branch_force (e
, new_bb
);
4892 /* Do postprocessing after making a forwarder block joined by edge FALLTHRU. */
4895 rtl_make_forwarder_block (edge fallthru ATTRIBUTE_UNUSED
)
4899 /* Return true if BB contains only labels or non-executable
4903 rtl_block_empty_p (basic_block bb
)
4907 if (bb
== ENTRY_BLOCK_PTR_FOR_FN (cfun
)
4908 || bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
4911 FOR_BB_INSNS (bb
, insn
)
4912 if (NONDEBUG_INSN_P (insn
)
4913 && (!any_uncondjump_p (insn
) || !onlyjump_p (insn
)))
4919 /* Split a basic block if it ends with a conditional branch and if
4920 the other part of the block is not empty. */
4923 rtl_split_block_before_cond_jump (basic_block bb
)
4926 rtx_insn
*split_point
= NULL
;
4927 rtx_insn
*last
= NULL
;
4928 bool found_code
= false;
4930 FOR_BB_INSNS (bb
, insn
)
4932 if (any_condjump_p (insn
))
4934 else if (NONDEBUG_INSN_P (insn
))
4939 /* Did not find everything. */
4940 if (found_code
&& split_point
)
4941 return split_block (bb
, split_point
)->dest
;
4946 /* Return 1 if BB ends with a call, possibly followed by some
4947 instructions that must stay with the call, 0 otherwise. */
4950 rtl_block_ends_with_call_p (basic_block bb
)
4952 rtx_insn
*insn
= BB_END (bb
);
4954 while (!CALL_P (insn
)
4955 && insn
!= BB_HEAD (bb
)
4956 && (keep_with_call_p (insn
)
4958 || DEBUG_INSN_P (insn
)))
4959 insn
= PREV_INSN (insn
);
4960 return (CALL_P (insn
));
4963 /* Return 1 if BB ends with a conditional branch, 0 otherwise. */
4966 rtl_block_ends_with_condjump_p (const_basic_block bb
)
4968 return any_condjump_p (BB_END (bb
));
4971 /* Return true if we need to add fake edge to exit.
4972 Helper function for rtl_flow_call_edges_add. */
4975 need_fake_edge_p (const rtx_insn
*insn
)
4981 && !SIBLING_CALL_P (insn
)
4982 && !find_reg_note (insn
, REG_NORETURN
, NULL
)
4983 && !(RTL_CONST_OR_PURE_CALL_P (insn
))))
4986 return ((GET_CODE (PATTERN (insn
)) == ASM_OPERANDS
4987 && MEM_VOLATILE_P (PATTERN (insn
)))
4988 || (GET_CODE (PATTERN (insn
)) == PARALLEL
4989 && asm_noperands (insn
) != -1
4990 && MEM_VOLATILE_P (XVECEXP (PATTERN (insn
), 0, 0)))
4991 || GET_CODE (PATTERN (insn
)) == ASM_INPUT
);
4994 /* Add fake edges to the function exit for any non constant and non noreturn
4995 calls, volatile inline assembly in the bitmap of blocks specified by
4996 BLOCKS or to the whole CFG if BLOCKS is zero. Return the number of blocks
4999 The goal is to expose cases in which entering a basic block does not imply
5000 that all subsequent instructions must be executed. */
5003 rtl_flow_call_edges_add (sbitmap blocks
)
5006 int blocks_split
= 0;
5007 int last_bb
= last_basic_block_for_fn (cfun
);
5008 bool check_last_block
= false;
5010 if (n_basic_blocks_for_fn (cfun
) == NUM_FIXED_BLOCKS
)
5014 check_last_block
= true;
5016 check_last_block
= bitmap_bit_p (blocks
,
5017 EXIT_BLOCK_PTR_FOR_FN (cfun
)->prev_bb
->index
);
5019 /* In the last basic block, before epilogue generation, there will be
5020 a fallthru edge to EXIT. Special care is required if the last insn
5021 of the last basic block is a call because make_edge folds duplicate
5022 edges, which would result in the fallthru edge also being marked
5023 fake, which would result in the fallthru edge being removed by
5024 remove_fake_edges, which would result in an invalid CFG.
5026 Moreover, we can't elide the outgoing fake edge, since the block
5027 profiler needs to take this into account in order to solve the minimal
5028 spanning tree in the case that the call doesn't return.
5030 Handle this by adding a dummy instruction in a new last basic block. */
5031 if (check_last_block
)
5033 basic_block bb
= EXIT_BLOCK_PTR_FOR_FN (cfun
)->prev_bb
;
5034 rtx_insn
*insn
= BB_END (bb
);
5036 /* Back up past insns that must be kept in the same block as a call. */
5037 while (insn
!= BB_HEAD (bb
)
5038 && keep_with_call_p (insn
))
5039 insn
= PREV_INSN (insn
);
5041 if (need_fake_edge_p (insn
))
5045 e
= find_edge (bb
, EXIT_BLOCK_PTR_FOR_FN (cfun
));
5048 insert_insn_on_edge (gen_use (const0_rtx
), e
);
5049 commit_edge_insertions ();
5054 /* Now add fake edges to the function exit for any non constant
5055 calls since there is no way that we can determine if they will
5058 for (i
= NUM_FIXED_BLOCKS
; i
< last_bb
; i
++)
5060 basic_block bb
= BASIC_BLOCK_FOR_FN (cfun
, i
);
5062 rtx_insn
*prev_insn
;
5067 if (blocks
&& !bitmap_bit_p (blocks
, i
))
5070 for (insn
= BB_END (bb
); ; insn
= prev_insn
)
5072 prev_insn
= PREV_INSN (insn
);
5073 if (need_fake_edge_p (insn
))
5076 rtx_insn
*split_at_insn
= insn
;
5078 /* Don't split the block between a call and an insn that should
5079 remain in the same block as the call. */
5081 while (split_at_insn
!= BB_END (bb
)
5082 && keep_with_call_p (NEXT_INSN (split_at_insn
)))
5083 split_at_insn
= NEXT_INSN (split_at_insn
);
5085 /* The handling above of the final block before the epilogue
5086 should be enough to verify that there is no edge to the exit
5087 block in CFG already. Calling make_edge in such case would
5088 cause us to mark that edge as fake and remove it later. */
5090 if (flag_checking
&& split_at_insn
== BB_END (bb
))
5092 e
= find_edge (bb
, EXIT_BLOCK_PTR_FOR_FN (cfun
));
5093 gcc_assert (e
== NULL
);
5096 /* Note that the following may create a new basic block
5097 and renumber the existing basic blocks. */
5098 if (split_at_insn
!= BB_END (bb
))
5100 e
= split_block (bb
, split_at_insn
);
5105 edge ne
= make_edge (bb
, EXIT_BLOCK_PTR_FOR_FN (cfun
), EDGE_FAKE
);
5106 ne
->probability
= profile_probability::guessed_never ();
5109 if (insn
== BB_HEAD (bb
))
5115 verify_flow_info ();
5117 return blocks_split
;
5120 /* Add COMP_RTX as a condition at end of COND_BB. FIRST_HEAD is
5121 the conditional branch target, SECOND_HEAD should be the fall-thru
5122 there is no need to handle this here the loop versioning code handles
5123 this. the reason for SECON_HEAD is that it is needed for condition
5124 in trees, and this should be of the same type since it is a hook. */
5126 rtl_lv_add_condition_to_bb (basic_block first_head
,
5127 basic_block second_head ATTRIBUTE_UNUSED
,
5128 basic_block cond_bb
, void *comp_rtx
)
5130 rtx_code_label
*label
;
5131 rtx_insn
*seq
, *jump
;
5132 rtx op0
= XEXP ((rtx
)comp_rtx
, 0);
5133 rtx op1
= XEXP ((rtx
)comp_rtx
, 1);
5134 enum rtx_code comp
= GET_CODE ((rtx
)comp_rtx
);
5138 label
= block_label (first_head
);
5139 mode
= GET_MODE (op0
);
5140 if (mode
== VOIDmode
)
5141 mode
= GET_MODE (op1
);
5144 op0
= force_operand (op0
, NULL_RTX
);
5145 op1
= force_operand (op1
, NULL_RTX
);
5146 do_compare_rtx_and_jump (op0
, op1
, comp
, 0, mode
, NULL_RTX
, NULL
, label
,
5147 profile_probability::uninitialized ());
5148 jump
= get_last_insn ();
5149 JUMP_LABEL (jump
) = label
;
5150 LABEL_NUSES (label
)++;
5154 /* Add the new cond, in the new head. */
5155 emit_insn_after (seq
, BB_END (cond_bb
));
5159 /* Given a block B with unconditional branch at its end, get the
5160 store the return the branch edge and the fall-thru edge in
5161 BRANCH_EDGE and FALLTHRU_EDGE respectively. */
5163 rtl_extract_cond_bb_edges (basic_block b
, edge
*branch_edge
,
5164 edge
*fallthru_edge
)
5166 edge e
= EDGE_SUCC (b
, 0);
5168 if (e
->flags
& EDGE_FALLTHRU
)
5171 *branch_edge
= EDGE_SUCC (b
, 1);
5176 *fallthru_edge
= EDGE_SUCC (b
, 1);
5181 init_rtl_bb_info (basic_block bb
)
5183 gcc_assert (!bb
->il
.x
.rtl
);
5184 bb
->il
.x
.head_
= NULL
;
5185 bb
->il
.x
.rtl
= ggc_cleared_alloc
<rtl_bb_info
> ();
5189 rtl_bb_info_initialized_p (basic_block bb
)
5191 return bb
->il
.x
.rtl
;
5194 /* Returns true if it is possible to remove edge E by redirecting
5195 it to the destination of the other edge from E->src. */
5198 rtl_can_remove_branch_p (const_edge e
)
5200 const_basic_block src
= e
->src
;
5201 const_basic_block target
= EDGE_SUCC (src
, EDGE_SUCC (src
, 0) == e
)->dest
;
5202 const rtx_insn
*insn
= BB_END (src
);
5205 /* The conditions are taken from try_redirect_by_replacing_jump. */
5206 if (target
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
5209 if (e
->flags
& (EDGE_ABNORMAL_CALL
| EDGE_EH
))
5212 if (BB_PARTITION (src
) != BB_PARTITION (target
))
5215 if (!onlyjump_p (insn
)
5216 || tablejump_p (insn
, NULL
, NULL
))
5219 set
= single_set (insn
);
5220 if (!set
|| side_effects_p (set
))
5227 rtl_duplicate_bb (basic_block bb
, copy_bb_data
*id
)
5229 bb
= cfg_layout_duplicate_bb (bb
, id
);
5234 /* Do book-keeping of basic block BB for the profile consistency checker.
5235 Store the counting in RECORD. */
5237 rtl_account_profile_record (basic_block bb
, struct profile_record
*record
)
5240 FOR_BB_INSNS (bb
, insn
)
5243 record
->size
+= insn_cost (insn
, false);
5244 if (bb
->count
.initialized_p ())
5246 += insn_cost (insn
, true) * bb
->count
.to_gcov_type ();
5247 else if (profile_status_for_fn (cfun
) == PROFILE_GUESSED
)
5249 += insn_cost (insn
, true) * bb
->count
.to_frequency (cfun
);
5253 /* Implementation of CFG manipulation for linearized RTL. */
5254 struct cfg_hooks rtl_cfg_hooks
= {
5256 rtl_verify_flow_info
,
5258 rtl_dump_bb_for_graph
,
5259 rtl_create_basic_block
,
5260 rtl_redirect_edge_and_branch
,
5261 rtl_redirect_edge_and_branch_force
,
5262 rtl_can_remove_branch_p
,
5265 rtl_move_block_after
,
5266 rtl_can_merge_blocks
, /* can_merge_blocks_p */
5270 cfg_layout_can_duplicate_bb_p
,
5273 rtl_make_forwarder_block
,
5274 rtl_tidy_fallthru_edge
,
5275 rtl_force_nonfallthru
,
5276 rtl_block_ends_with_call_p
,
5277 rtl_block_ends_with_condjump_p
,
5278 rtl_flow_call_edges_add
,
5279 NULL
, /* execute_on_growing_pred */
5280 NULL
, /* execute_on_shrinking_pred */
5281 NULL
, /* duplicate loop for trees */
5282 NULL
, /* lv_add_condition_to_bb */
5283 NULL
, /* lv_adjust_loop_header_phi*/
5284 NULL
, /* extract_cond_bb_edges */
5285 NULL
, /* flush_pending_stmts */
5286 rtl_block_empty_p
, /* block_empty_p */
5287 rtl_split_block_before_cond_jump
, /* split_block_before_cond_jump */
5288 rtl_account_profile_record
,
5291 /* Implementation of CFG manipulation for cfg layout RTL, where
5292 basic block connected via fallthru edges does not have to be adjacent.
5293 This representation will hopefully become the default one in future
5294 version of the compiler. */
5296 struct cfg_hooks cfg_layout_rtl_cfg_hooks
= {
5298 rtl_verify_flow_info_1
,
5300 rtl_dump_bb_for_graph
,
5301 cfg_layout_create_basic_block
,
5302 cfg_layout_redirect_edge_and_branch
,
5303 cfg_layout_redirect_edge_and_branch_force
,
5304 rtl_can_remove_branch_p
,
5305 cfg_layout_delete_block
,
5306 cfg_layout_split_block
,
5307 rtl_move_block_after
,
5308 cfg_layout_can_merge_blocks_p
,
5309 cfg_layout_merge_blocks
,
5312 cfg_layout_can_duplicate_bb_p
,
5313 cfg_layout_duplicate_bb
,
5314 cfg_layout_split_edge
,
5315 rtl_make_forwarder_block
,
5316 NULL
, /* tidy_fallthru_edge */
5317 rtl_force_nonfallthru
,
5318 rtl_block_ends_with_call_p
,
5319 rtl_block_ends_with_condjump_p
,
5320 rtl_flow_call_edges_add
,
5321 NULL
, /* execute_on_growing_pred */
5322 NULL
, /* execute_on_shrinking_pred */
5323 duplicate_loop_to_header_edge
, /* duplicate loop for trees */
5324 rtl_lv_add_condition_to_bb
, /* lv_add_condition_to_bb */
5325 NULL
, /* lv_adjust_loop_header_phi*/
5326 rtl_extract_cond_bb_edges
, /* extract_cond_bb_edges */
5327 NULL
, /* flush_pending_stmts */
5328 rtl_block_empty_p
, /* block_empty_p */
5329 rtl_split_block_before_cond_jump
, /* split_block_before_cond_jump */
5330 rtl_account_profile_record
,
5333 #include "gt-cfgrtl.h"
5336 # pragma GCC diagnostic pop