1 /* Basic block reordering routines for the GNU compiler.
2 Copyright (C) 2000, 2001 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 2, 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 COPYING. If not, write to the Free
18 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
25 #include "hard-reg-set.h"
26 #include "basic-block.h"
27 #include "insn-config.h"
31 #include "cfglayout.h"
33 /* The contents of the current function definition are allocated
34 in this obstack, and all are freed at the end of the function. */
35 extern struct obstack flow_obstack
;
37 /* Holds the interesting trailing notes for the function. */
38 static rtx function_footer
;
40 static rtx skip_insns_after_block
PARAMS ((basic_block
));
41 static void record_effective_endpoints
PARAMS ((void));
42 static rtx label_for_bb
PARAMS ((basic_block
));
43 static void fixup_reorder_chain
PARAMS ((void));
45 static void set_block_levels
PARAMS ((tree
, int));
46 static void change_scope
PARAMS ((rtx
, tree
, tree
));
48 void verify_insn_chain
PARAMS ((void));
49 static void cleanup_unconditional_jumps
PARAMS ((void));
50 static void fixup_fallthru_exit_predecessor
PARAMS ((void));
51 static rtx unlink_insn_chain
PARAMS ((rtx
, rtx
));
52 static rtx duplicate_insn_chain
PARAMS ((rtx
, rtx
));
55 unlink_insn_chain (first
, last
)
59 rtx prevfirst
= PREV_INSN (first
);
60 rtx nextlast
= NEXT_INSN (last
);
62 PREV_INSN (first
) = NULL
;
63 NEXT_INSN (last
) = NULL
;
65 NEXT_INSN (prevfirst
) = nextlast
;
67 PREV_INSN (nextlast
) = prevfirst
;
69 set_last_insn (prevfirst
);
71 set_first_insn (nextlast
);
75 /* Skip over inter-block insns occurring after BB which are typically
76 associated with BB (e.g., barriers). If there are any such insns,
77 we return the last one. Otherwise, we return the end of BB. */
80 skip_insns_after_block (bb
)
83 rtx insn
, last_insn
, next_head
, prev
;
86 if (bb
->next_bb
!= EXIT_BLOCK_PTR
)
87 next_head
= bb
->next_bb
->head
;
89 for (last_insn
= insn
= bb
->end
; (insn
= NEXT_INSN (insn
)) != 0; )
91 if (insn
== next_head
)
94 switch (GET_CODE (insn
))
101 switch (NOTE_LINE_NUMBER (insn
))
103 case NOTE_INSN_LOOP_END
:
104 case NOTE_INSN_BLOCK_END
:
107 case NOTE_INSN_DELETED
:
108 case NOTE_INSN_DELETED_LABEL
:
119 && GET_CODE (NEXT_INSN (insn
)) == JUMP_INSN
120 && (GET_CODE (PATTERN (NEXT_INSN (insn
))) == ADDR_VEC
121 || GET_CODE (PATTERN (NEXT_INSN (insn
))) == ADDR_DIFF_VEC
))
123 insn
= NEXT_INSN (insn
);
136 /* It is possible to hit contradictory sequence. For instance:
142 Where barrier belongs to jump_insn, but the note does not. This can be
143 created by removing the basic block originally following
144 NOTE_INSN_LOOP_BEG. In such case reorder the notes. */
146 for (insn
= last_insn
; insn
!= bb
->end
; insn
= prev
)
148 prev
= PREV_INSN (insn
);
149 if (GET_CODE (insn
) == NOTE
)
150 switch (NOTE_LINE_NUMBER (insn
))
152 case NOTE_INSN_LOOP_END
:
153 case NOTE_INSN_BLOCK_END
:
154 case NOTE_INSN_DELETED
:
155 case NOTE_INSN_DELETED_LABEL
:
158 reorder_insns (insn
, insn
, last_insn
);
165 /* Locate or create a label for a given basic block. */
171 rtx label
= bb
->head
;
173 if (GET_CODE (label
) != CODE_LABEL
)
176 fprintf (rtl_dump_file
, "Emitting label for block %d\n", bb
->index
);
178 label
= block_label (bb
);
184 /* Locate the effective beginning and end of the insn chain for each
185 block, as defined by skip_insns_after_block above. */
188 record_effective_endpoints ()
190 rtx next_insn
= get_insns ();
197 if (PREV_INSN (bb
->head
) && next_insn
!= bb
->head
)
198 RBI (bb
)->header
= unlink_insn_chain (next_insn
,
199 PREV_INSN (bb
->head
));
200 end
= skip_insns_after_block (bb
);
201 if (NEXT_INSN (bb
->end
) && bb
->end
!= end
)
202 RBI (bb
)->footer
= unlink_insn_chain (NEXT_INSN (bb
->end
), end
);
203 next_insn
= NEXT_INSN (bb
->end
);
206 function_footer
= next_insn
;
208 function_footer
= unlink_insn_chain (function_footer
, get_last_insn ());
211 /* Build a varray mapping INSN_UID to lexical block. Return it. */
214 scope_to_insns_initialize ()
219 for (insn
= get_insns (); insn
; insn
= next
)
221 next
= NEXT_INSN (insn
);
223 if (active_insn_p (insn
)
224 && GET_CODE (PATTERN (insn
)) != ADDR_VEC
225 && GET_CODE (PATTERN (insn
)) != ADDR_DIFF_VEC
)
226 INSN_SCOPE (insn
) = block
;
227 else if (GET_CODE (insn
) == NOTE
)
229 switch (NOTE_LINE_NUMBER (insn
))
231 case NOTE_INSN_BLOCK_BEG
:
232 block
= NOTE_BLOCK (insn
);
235 case NOTE_INSN_BLOCK_END
:
236 block
= BLOCK_SUPERCONTEXT (block
);
246 /* For each lexical block, set BLOCK_NUMBER to the depth at which it is
247 found in the block tree. */
250 set_block_levels (block
, level
)
256 BLOCK_NUMBER (block
) = level
;
257 set_block_levels (BLOCK_SUBBLOCKS (block
), level
+ 1);
258 block
= BLOCK_CHAIN (block
);
262 /* Emit lexical block notes needed to change scope from S1 to S2. */
265 change_scope (orig_insn
, s1
, s2
)
269 rtx insn
= orig_insn
;
270 tree com
= NULL_TREE
;
271 tree ts1
= s1
, ts2
= s2
;
276 if (ts1
== NULL
|| ts2
== NULL
)
278 if (BLOCK_NUMBER (ts1
) > BLOCK_NUMBER (ts2
))
279 ts1
= BLOCK_SUPERCONTEXT (ts1
);
280 else if (BLOCK_NUMBER (ts1
) < BLOCK_NUMBER (ts2
))
281 ts2
= BLOCK_SUPERCONTEXT (ts2
);
284 ts1
= BLOCK_SUPERCONTEXT (ts1
);
285 ts2
= BLOCK_SUPERCONTEXT (ts2
);
294 rtx note
= emit_note_before (NOTE_INSN_BLOCK_END
, insn
);
295 NOTE_BLOCK (note
) = s
;
296 s
= BLOCK_SUPERCONTEXT (s
);
303 insn
= emit_note_before (NOTE_INSN_BLOCK_BEG
, insn
);
304 NOTE_BLOCK (insn
) = s
;
305 s
= BLOCK_SUPERCONTEXT (s
);
309 /* Rebuild all the NOTE_INSN_BLOCK_BEG and NOTE_INSN_BLOCK_END notes based
310 on the scope tree and the newly reordered instructions. */
313 scope_to_insns_finalize ()
315 tree cur_block
= DECL_INITIAL (cfun
->decl
);
318 /* Tag the blocks with a depth number so that change_scope can find
319 the common parent easily. */
320 set_block_levels (cur_block
, 0);
323 if (!active_insn_p (insn
))
324 insn
= next_active_insn (insn
);
325 for (; insn
; insn
= next_active_insn (insn
))
329 this_block
= INSN_SCOPE (insn
);
333 if (this_block
!= cur_block
)
335 change_scope (insn
, cur_block
, this_block
);
336 cur_block
= this_block
;
340 /* change_scope emits before the insn, not after. */
341 note
= emit_note (NULL
, NOTE_INSN_DELETED
);
342 change_scope (note
, cur_block
, DECL_INITIAL (cfun
->decl
));
348 /* Given a reorder chain, rearrange the code to match. */
351 fixup_reorder_chain ()
353 basic_block bb
, prev_bb
;
357 /* First do the bulk reordering -- rechain the blocks without regard to
358 the needed changes to jumps and labels. */
360 for (bb
= ENTRY_BLOCK_PTR
->next_bb
, index
= 0;
362 bb
= RBI (bb
)->next
, index
++)
364 if (RBI (bb
)->header
)
367 NEXT_INSN (insn
) = RBI (bb
)->header
;
369 set_first_insn (RBI (bb
)->header
);
370 PREV_INSN (RBI (bb
)->header
) = insn
;
371 insn
= RBI (bb
)->header
;
372 while (NEXT_INSN (insn
))
373 insn
= NEXT_INSN (insn
);
376 NEXT_INSN (insn
) = bb
->head
;
378 set_first_insn (bb
->head
);
379 PREV_INSN (bb
->head
) = insn
;
381 if (RBI (bb
)->footer
)
383 NEXT_INSN (insn
) = RBI (bb
)->footer
;
384 PREV_INSN (RBI (bb
)->footer
) = insn
;
385 while (NEXT_INSN (insn
))
386 insn
= NEXT_INSN (insn
);
390 if (index
!= n_basic_blocks
)
393 NEXT_INSN (insn
) = function_footer
;
395 PREV_INSN (function_footer
) = insn
;
397 while (NEXT_INSN (insn
))
398 insn
= NEXT_INSN (insn
);
400 set_last_insn (insn
);
401 #ifdef ENABLE_CHECKING
402 verify_insn_chain ();
405 /* Now add jumps and labels as needed to match the blocks new
408 for (bb
= ENTRY_BLOCK_PTR
->next_bb
; bb
; bb
= RBI (bb
)->next
)
410 edge e_fall
, e_taken
, e
;
414 if (bb
->succ
== NULL
)
417 /* Find the old fallthru edge, and another non-EH edge for
419 e_taken
= e_fall
= NULL
;
420 for (e
= bb
->succ
; e
; e
= e
->succ_next
)
421 if (e
->flags
& EDGE_FALLTHRU
)
423 else if (! (e
->flags
& EDGE_EH
))
426 bb_end_insn
= bb
->end
;
427 if (GET_CODE (bb_end_insn
) == JUMP_INSN
)
429 if (any_condjump_p (bb_end_insn
))
431 /* If the old fallthru is still next, nothing to do. */
432 if (RBI (bb
)->next
== e_fall
->dest
434 && e_fall
->dest
== EXIT_BLOCK_PTR
))
437 /* There is one special case: if *neither* block is next,
438 such as happens at the very end of a function, then we'll
439 need to add a new unconditional jump. Choose the taken
440 edge based on known or assumed probability. */
441 if (RBI (bb
)->next
!= e_taken
->dest
)
443 rtx note
= find_reg_note (bb_end_insn
, REG_BR_PROB
, 0);
446 && INTVAL (XEXP (note
, 0)) < REG_BR_PROB_BASE
/ 2
447 && invert_jump (bb_end_insn
,
448 label_for_bb (e_fall
->dest
), 0))
450 e_fall
->flags
&= ~EDGE_FALLTHRU
;
451 e_taken
->flags
|= EDGE_FALLTHRU
;
452 update_br_prob_note (bb
);
453 e
= e_fall
, e_fall
= e_taken
, e_taken
= e
;
457 /* Otherwise we can try to invert the jump. This will
458 basically never fail, however, keep up the pretense. */
459 else if (invert_jump (bb_end_insn
,
460 label_for_bb (e_fall
->dest
), 0))
462 e_fall
->flags
&= ~EDGE_FALLTHRU
;
463 e_taken
->flags
|= EDGE_FALLTHRU
;
464 update_br_prob_note (bb
);
468 else if (returnjump_p (bb_end_insn
))
472 /* Otherwise we have some switch or computed jump. In the
473 99% case, there should not have been a fallthru edge. */
477 #ifdef CASE_DROPS_THROUGH
478 /* Except for VAX. Since we didn't have predication for the
479 tablejump, the fallthru block should not have moved. */
480 if (RBI (bb
)->next
== e_fall
->dest
)
482 bb_end_insn
= skip_insns_after_block (bb
);
490 /* No fallthru implies a noreturn function with EH edges, or
491 something similarly bizarre. In any case, we don't need to
496 /* If the fallthru block is still next, nothing to do. */
497 if (RBI (bb
)->next
== e_fall
->dest
)
500 /* A fallthru to exit block. */
501 if (!RBI (bb
)->next
&& e_fall
->dest
== EXIT_BLOCK_PTR
)
505 /* We got here if we need to add a new jump insn. */
506 nb
= force_nonfallthru (e_fall
);
509 alloc_aux_for_block (nb
, sizeof (struct reorder_block_def
));
510 RBI (nb
)->visited
= 1;
511 RBI (nb
)->next
= RBI (bb
)->next
;
513 /* Don't process this new block. */
518 /* Put basic_block_info in the new order. */
522 fprintf (rtl_dump_file
, "Reordered sequence:\n");
523 for (bb
= ENTRY_BLOCK_PTR
->next_bb
, index
= 0; bb
; bb
= RBI (bb
)->next
, index
++)
525 fprintf (rtl_dump_file
, " %i ", index
);
526 if (RBI (bb
)->original
)
527 fprintf (rtl_dump_file
, "duplicate of %i ",
528 RBI (bb
)->original
->index
);
529 else if (forwarder_block_p (bb
) && GET_CODE (bb
->head
) != CODE_LABEL
)
530 fprintf (rtl_dump_file
, "compensation ");
532 fprintf (rtl_dump_file
, "bb %i ", bb
->index
);
533 fprintf (rtl_dump_file
, " [%i]\n", bb
->frequency
);
537 prev_bb
= ENTRY_BLOCK_PTR
;
538 bb
= ENTRY_BLOCK_PTR
->next_bb
;
541 for (; bb
; prev_bb
= bb
, bb
= RBI (bb
)->next
, index
++)
544 BASIC_BLOCK (index
) = bb
;
546 bb
->prev_bb
= prev_bb
;
547 prev_bb
->next_bb
= bb
;
549 prev_bb
->next_bb
= EXIT_BLOCK_PTR
;
550 EXIT_BLOCK_PTR
->prev_bb
= prev_bb
;
553 /* Perform sanity checks on the insn chain.
554 1. Check that next/prev pointers are consistent in both the forward and
556 2. Count insns in chain, going both directions, and check if equal.
557 3. Check that get_last_insn () returns the actual end of chain. */
563 int insn_cnt1
, insn_cnt2
;
565 for (prevx
= NULL
, insn_cnt1
= 1, x
= get_insns ();
567 prevx
= x
, insn_cnt1
++, x
= NEXT_INSN (x
))
568 if (PREV_INSN (x
) != prevx
)
571 if (prevx
!= get_last_insn ())
574 for (nextx
= NULL
, insn_cnt2
= 1, x
= get_last_insn ();
576 nextx
= x
, insn_cnt2
++, x
= PREV_INSN (x
))
577 if (NEXT_INSN (x
) != nextx
)
580 if (insn_cnt1
!= insn_cnt2
)
584 /* Remove any unconditional jumps and forwarder block creating fallthru
585 edges instead. During BB reordering fallthru edges are not required
586 to target next basic block in the linear CFG layout, so the unconditional
587 jumps are not needed. If LOOPS is not null, also update loop structure &
591 cleanup_unconditional_jumps ()
599 if (bb
->succ
->flags
& EDGE_FALLTHRU
)
601 if (!bb
->succ
->succ_next
)
604 if (GET_CODE (bb
->head
) != CODE_LABEL
&& forwarder_block_p (bb
)
605 && bb
->prev_bb
!= ENTRY_BLOCK_PTR
)
607 basic_block prev
= bb
->prev_bb
;
610 fprintf (rtl_dump_file
, "Removing forwarder BB %i\n",
613 redirect_edge_succ (bb
->pred
, bb
->succ
->dest
);
614 flow_delete_block (bb
);
617 else if (simplejump_p (bb
->end
))
622 fprintf (rtl_dump_file
, "Removing jump %i in BB %i\n",
623 INSN_UID (jump
), bb
->index
);
625 bb
->succ
->flags
|= EDGE_FALLTHRU
;
630 /* Cleanup barriers and delete ADDR_VECs in a way as they are belonging
631 to removed tablejump anyway. */
632 insn
= NEXT_INSN (bb
->end
);
634 && (GET_CODE (insn
) != NOTE
635 || NOTE_LINE_NUMBER (insn
) != NOTE_INSN_BASIC_BLOCK
))
637 rtx next
= NEXT_INSN (insn
);
639 if (GET_CODE (insn
) == BARRIER
)
640 delete_barrier (insn
);
641 else if (GET_CODE (insn
) == JUMP_INSN
)
642 delete_insn_chain (PREV_INSN (insn
), insn
);
643 else if (GET_CODE (insn
) == CODE_LABEL
)
645 else if (GET_CODE (insn
) != NOTE
)
654 /* The block falling through to exit must be the last one in the
655 reordered chain. Ensure that this condition is met. */
657 fixup_fallthru_exit_predecessor ()
660 basic_block bb
= NULL
;
662 for (e
= EXIT_BLOCK_PTR
->pred
; e
; e
= e
->pred_next
)
663 if (e
->flags
& EDGE_FALLTHRU
)
666 if (bb
&& RBI (bb
)->next
)
668 basic_block c
= ENTRY_BLOCK_PTR
->next_bb
;
670 while (RBI (c
)->next
!= bb
)
673 RBI (c
)->next
= RBI (bb
)->next
;
674 while (RBI (c
)->next
)
678 RBI (bb
)->next
= NULL
;
682 /* Return true in case it is possible to duplicate the basic block BB. */
685 cfg_layout_can_duplicate_bb_p (bb
)
691 if (bb
== EXIT_BLOCK_PTR
|| bb
== ENTRY_BLOCK_PTR
)
694 /* Duplicating fallthru block to exit would require adding an jump
695 and splitting the real last BB. */
696 for (s
= bb
->succ
; s
; s
= s
->succ_next
)
697 if (s
->dest
== EXIT_BLOCK_PTR
&& s
->flags
& EDGE_FALLTHRU
)
700 /* Do not attempt to duplicate tablejumps, as we need to unshare
701 the dispatch table. This is dificult to do, as the instructions
702 computing jump destination may be hoisted outside the basic block. */
703 if (GET_CODE (bb
->end
) == JUMP_INSN
&& JUMP_LABEL (bb
->end
)
704 && (next
= next_nonnote_insn (JUMP_LABEL (bb
->end
)))
705 && GET_CODE (next
) == JUMP_INSN
706 && (GET_CODE (PATTERN (next
)) == ADDR_VEC
707 || GET_CODE (PATTERN (next
)) == ADDR_DIFF_VEC
))
713 duplicate_insn_chain (from
, to
)
718 /* Avoid updating of boundaries of previous basic block. The
719 note will get removed from insn stream in fixup. */
720 last
= emit_note (NULL
, NOTE_INSN_DELETED
);
722 /* Create copy at the end of INSN chain. The chain will
723 be reordered later. */
724 for (insn
= from
; insn
!= NEXT_INSN (to
); insn
= NEXT_INSN (insn
))
727 switch (GET_CODE (insn
))
732 /* Avoid copying of dispatch tables. We never duplicate
733 tablejumps, so this can hit only in case the table got
734 moved far from original jump. */
735 if (GET_CODE (PATTERN (insn
)) == ADDR_VEC
736 || GET_CODE (PATTERN (insn
)) == ADDR_DIFF_VEC
)
738 new = emit_copy_of_insn_after (insn
, get_last_insn ());
749 switch (NOTE_LINE_NUMBER (insn
))
751 /* In case prologue is empty and function contain label
752 in first BB, we may want to copy the block. */
753 case NOTE_INSN_PROLOGUE_END
:
755 case NOTE_INSN_LOOP_VTOP
:
756 case NOTE_INSN_LOOP_CONT
:
757 case NOTE_INSN_LOOP_BEG
:
758 case NOTE_INSN_LOOP_END
:
759 /* Strip down the loop notes - we don't really want to keep
760 them consistent in loop copies. */
761 case NOTE_INSN_DELETED
:
762 case NOTE_INSN_DELETED_LABEL
:
763 /* No problem to strip these. */
764 case NOTE_INSN_EPILOGUE_BEG
:
765 case NOTE_INSN_FUNCTION_END
:
766 /* Debug code expect these notes to exist just once.
767 Keep them in the master copy.
768 ??? It probably makes more sense to duplicate them for each
770 case NOTE_INSN_FUNCTION_BEG
:
771 /* There is always just single entry to function. */
772 case NOTE_INSN_BASIC_BLOCK
:
775 /* There is no purpose to duplicate prologue. */
776 case NOTE_INSN_BLOCK_BEG
:
777 case NOTE_INSN_BLOCK_END
:
778 /* The BLOCK_BEG/BLOCK_END notes should be eliminated when BB
779 reordering is in the progress. */
780 case NOTE_INSN_EH_REGION_BEG
:
781 case NOTE_INSN_EH_REGION_END
:
782 /* Should never exist at BB duplication time. */
785 case NOTE_INSN_REPEATED_LINE_NUMBER
:
786 emit_note (NOTE_SOURCE_FILE (insn
), NOTE_LINE_NUMBER (insn
));
790 if (NOTE_LINE_NUMBER (insn
) < 0)
792 /* It is possible that no_line_number is set and the note
794 emit_note (NOTE_SOURCE_FILE (insn
), NOTE_LINE_NUMBER (insn
));
801 insn
= NEXT_INSN (last
);
806 /* Redirect Edge to DEST. */
808 cfg_layout_redirect_edge (e
, dest
)
812 basic_block src
= e
->src
;
813 basic_block old_next_bb
= src
->next_bb
;
815 /* Redirect_edge_and_branch may decide to turn branch into fallthru edge
816 in the case the basic block appears to be in sequence. Avoid this
820 if (e
->flags
& EDGE_FALLTHRU
)
822 /* In case we are redirecting fallthru edge to the branch edge
823 of conditional jump, remove it. */
824 if (src
->succ
->succ_next
825 && !src
->succ
->succ_next
->succ_next
)
827 edge s
= e
->succ_next
? e
->succ_next
: src
->succ
;
829 && any_condjump_p (src
->end
)
830 && onlyjump_p (src
->end
))
831 delete_insn (src
->end
);
833 redirect_edge_succ_nodup (e
, dest
);
836 redirect_edge_and_branch (e
, dest
);
838 /* We don't want simplejumps in the insn stream during cfglayout. */
839 if (simplejump_p (src
->end
))
841 delete_insn (src
->end
);
842 delete_barrier (NEXT_INSN (src
->end
));
843 src
->succ
->flags
|= EDGE_FALLTHRU
;
845 src
->next_bb
= old_next_bb
;
848 /* Create an duplicate of the basic block BB and redirect edge E into it. */
851 cfg_layout_duplicate_bb (bb
, e
)
858 gcov_type new_count
= e
? e
->count
: 0;
860 if (bb
->count
< new_count
)
861 new_count
= bb
->count
;
864 #ifdef ENABLE_CHECKING
865 if (!cfg_layout_can_duplicate_bb_p (bb
))
869 insn
= duplicate_insn_chain (bb
->head
, bb
->end
);
870 new_bb
= create_basic_block (insn
,
871 insn
? get_last_insn () : NULL
,
872 EXIT_BLOCK_PTR
->prev_bb
);
873 alloc_aux_for_block (new_bb
, sizeof (struct reorder_block_def
));
875 if (RBI (bb
)->header
)
877 insn
= RBI (bb
)->header
;
878 while (NEXT_INSN (insn
))
879 insn
= NEXT_INSN (insn
);
880 insn
= duplicate_insn_chain (RBI (bb
)->header
, insn
);
882 RBI (new_bb
)->header
= unlink_insn_chain (insn
, get_last_insn ());
885 if (RBI (bb
)->footer
)
887 insn
= RBI (bb
)->footer
;
888 while (NEXT_INSN (insn
))
889 insn
= NEXT_INSN (insn
);
890 insn
= duplicate_insn_chain (RBI (bb
)->footer
, insn
);
892 RBI (new_bb
)->footer
= unlink_insn_chain (insn
, get_last_insn ());
895 if (bb
->global_live_at_start
)
897 new_bb
->global_live_at_start
= OBSTACK_ALLOC_REG_SET (&flow_obstack
);
898 new_bb
->global_live_at_end
= OBSTACK_ALLOC_REG_SET (&flow_obstack
);
899 COPY_REG_SET (new_bb
->global_live_at_start
, bb
->global_live_at_start
);
900 COPY_REG_SET (new_bb
->global_live_at_end
, bb
->global_live_at_end
);
903 new_bb
->loop_depth
= bb
->loop_depth
;
904 new_bb
->flags
= bb
->flags
;
905 for (s
= bb
->succ
; s
; s
= s
->succ_next
)
907 n
= make_edge (new_bb
, s
->dest
, s
->flags
);
908 n
->probability
= s
->probability
;
910 /* Take care for overflows! */
911 n
->count
= s
->count
* (new_count
* 10000 / bb
->count
) / 10000;
914 s
->count
-= n
->count
;
917 new_bb
->count
= new_count
;
918 bb
->count
-= new_count
;
922 new_bb
->frequency
= EDGE_FREQUENCY (e
);
923 bb
->frequency
-= EDGE_FREQUENCY (e
);
925 cfg_layout_redirect_edge (e
, new_bb
);
930 if (bb
->frequency
< 0)
933 RBI (new_bb
)->original
= bb
;
937 /* Main entry point to this module - initialize the datastructures for
938 CFG layout changes. It keeps LOOPS up-to-date if not null. */
941 cfg_layout_initialize ()
943 /* Our algorithm depends on fact that there are now dead jumptables
945 alloc_aux_for_blocks (sizeof (struct reorder_block_def
));
947 cleanup_unconditional_jumps ();
949 record_effective_endpoints ();
952 /* Finalize the changes: reorder insn list according to the sequence, enter
953 compensation code, rebuild scope forest. */
956 cfg_layout_finalize ()
958 fixup_fallthru_exit_predecessor ();
959 fixup_reorder_chain ();
961 #ifdef ENABLE_CHECKING
962 verify_insn_chain ();
965 free_aux_for_blocks ();
967 #ifdef ENABLE_CHECKING