1 /* Control flow graph manipulation code for GNU compiler.
2 Copyright (C) 1987, 1988, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002 Free Software Foundation, Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 2, or (at your option) any later
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
22 /* This file contains low level functions to manipulate the CFG and analyze it
23 that are aware of the RTL intermediate language.
25 Available functionality:
26 - CFG-aware instruction chain manipulation
27 delete_insn, delete_insn_chain
28 - Basic block manipulation
29 create_basic_block, flow_delete_block, split_block,
31 - Infrastructure to determine quickly basic block for insn
32 compute_bb_for_insn, update_bb_for_insn, set_block_for_insn,
33 - Edge redirection with updating and optimizing of insn chain
34 block_label, redirect_edge_and_branch,
35 redirect_edge_and_branch_force, tidy_fallthru_edge, force_nonfallthru
36 - Edge splitting and commiting to edges
37 split_edge, insert_insn_on_edge, commit_edge_insertions
38 - Dumping and debugging
39 print_rtl_with_bb, dump_bb, debug_bb, debug_bb_n
40 - Consistency checking
42 - CFG updating after constant propagation
43 purge_dead_edges, purge_all_dead_edges */
49 #include "hard-reg-set.h"
50 #include "basic-block.h"
59 #include "insn-config.h"
61 /* Stubs in case we don't have a return insn. */
64 #define gen_return() NULL_RTX
67 /* The labels mentioned in non-jump rtl. Valid during find_basic_blocks. */
68 /* ??? Should probably be using LABEL_NUSES instead. It would take a
69 bit of surgery to be able to use or co-opt the routines in jump. */
71 rtx tail_recursion_label_list
;
73 static int can_delete_note_p
PARAMS ((rtx
));
74 static int can_delete_label_p
PARAMS ((rtx
));
75 static void commit_one_edge_insertion
PARAMS ((edge
, int));
76 static bool try_redirect_by_replacing_jump
PARAMS ((edge
, basic_block
));
77 static rtx last_loop_beg_note
PARAMS ((rtx
));
78 static bool back_edge_of_syntactic_loop_p
PARAMS ((basic_block
, basic_block
));
79 static basic_block force_nonfallthru_and_redirect
PARAMS ((edge
, basic_block
));
81 /* Return true if NOTE is not one of the ones that must be kept paired,
82 so that we may simply delete it. */
85 can_delete_note_p (note
)
88 return (NOTE_LINE_NUMBER (note
) == NOTE_INSN_DELETED
89 || NOTE_LINE_NUMBER (note
) == NOTE_INSN_BASIC_BLOCK
90 || NOTE_LINE_NUMBER (note
) == NOTE_INSN_PREDICTION
);
93 /* True if a given label can be deleted. */
96 can_delete_label_p (label
)
99 return (!LABEL_PRESERVE_P (label
)
100 /* User declared labels must be preserved. */
101 && LABEL_NAME (label
) == 0
102 && !in_expr_list_p (forced_labels
, label
)
103 && !in_expr_list_p (label_value_list
, label
));
106 /* Delete INSN by patching it out. Return the next insn. */
112 rtx next
= NEXT_INSN (insn
);
114 bool really_delete
= true;
116 if (GET_CODE (insn
) == CODE_LABEL
)
118 /* Some labels can't be directly removed from the INSN chain, as they
119 might be references via variables, constant pool etc.
120 Convert them to the special NOTE_INSN_DELETED_LABEL note. */
121 if (! can_delete_label_p (insn
))
123 const char *name
= LABEL_NAME (insn
);
125 really_delete
= false;
126 PUT_CODE (insn
, NOTE
);
127 NOTE_LINE_NUMBER (insn
) = NOTE_INSN_DELETED_LABEL
;
128 NOTE_SOURCE_FILE (insn
) = name
;
131 remove_node_from_expr_list (insn
, &nonlocal_goto_handler_labels
);
136 /* If this insn has already been deleted, something is very wrong. */
137 if (INSN_DELETED_P (insn
))
140 INSN_DELETED_P (insn
) = 1;
143 /* If deleting a jump, decrement the use count of the label. Deleting
144 the label itself should happen in the normal course of block merging. */
145 if (GET_CODE (insn
) == JUMP_INSN
147 && GET_CODE (JUMP_LABEL (insn
)) == CODE_LABEL
)
148 LABEL_NUSES (JUMP_LABEL (insn
))--;
150 /* Also if deleting an insn that references a label. */
151 else if ((note
= find_reg_note (insn
, REG_LABEL
, NULL_RTX
)) != NULL_RTX
152 && GET_CODE (XEXP (note
, 0)) == CODE_LABEL
)
153 LABEL_NUSES (XEXP (note
, 0))--;
155 if (GET_CODE (insn
) == JUMP_INSN
156 && (GET_CODE (PATTERN (insn
)) == ADDR_VEC
157 || GET_CODE (PATTERN (insn
)) == ADDR_DIFF_VEC
))
159 rtx pat
= PATTERN (insn
);
160 int diff_vec_p
= GET_CODE (PATTERN (insn
)) == ADDR_DIFF_VEC
;
161 int len
= XVECLEN (pat
, diff_vec_p
);
164 for (i
= 0; i
< len
; i
++)
166 rtx label
= XEXP (XVECEXP (pat
, diff_vec_p
, i
), 0);
168 /* When deleting code in bulk (e.g. removing many unreachable
169 blocks) we can delete a label that's a target of the vector
170 before deleting the vector itself. */
171 if (GET_CODE (label
) != NOTE
)
172 LABEL_NUSES (label
)--;
179 /* Like delete_insn but also purge dead edges from BB. */
181 delete_insn_and_edges (insn
)
188 && BLOCK_FOR_INSN (insn
)
189 && BLOCK_FOR_INSN (insn
)->end
== insn
)
191 x
= delete_insn (insn
);
193 purge_dead_edges (BLOCK_FOR_INSN (insn
));
197 /* Unlink a chain of insns between START and FINISH, leaving notes
198 that must be paired. */
201 delete_insn_chain (start
, finish
)
206 /* Unchain the insns one by one. It would be quicker to delete all of these
207 with a single unchaining, rather than one at a time, but we need to keep
211 next
= NEXT_INSN (start
);
212 if (GET_CODE (start
) == NOTE
&& !can_delete_note_p (start
))
215 next
= delete_insn (start
);
223 /* Like delete_insn but also purge dead edges from BB. */
225 delete_insn_chain_and_edges (first
, last
)
231 && BLOCK_FOR_INSN (last
)
232 && BLOCK_FOR_INSN (last
)->end
== last
)
234 delete_insn_chain (first
, last
);
236 purge_dead_edges (BLOCK_FOR_INSN (last
));
239 /* Create a new basic block consisting of the instructions between HEAD and END
240 inclusive. This function is designed to allow fast BB construction - reuses
241 the note and basic block struct in BB_NOTE, if any and do not grow
242 BASIC_BLOCK chain and should be used directly only by CFG construction code.
243 END can be NULL in to create new empty basic block before HEAD. Both END
244 and HEAD can be NULL to create basic block at the end of INSN chain.
245 AFTER is the basic block we should be put after. */
248 create_basic_block_structure (index
, head
, end
, bb_note
, after
)
250 rtx head
, end
, bb_note
;
256 && ! RTX_INTEGRATED_P (bb_note
)
257 && (bb
= NOTE_BASIC_BLOCK (bb_note
)) != NULL
260 /* If we found an existing note, thread it back onto the chain. */
264 if (GET_CODE (head
) == CODE_LABEL
)
268 after
= PREV_INSN (head
);
272 if (after
!= bb_note
&& NEXT_INSN (after
) != bb_note
)
273 reorder_insns_nobb (bb_note
, bb_note
, after
);
277 /* Otherwise we must create a note and a basic block structure. */
283 = emit_note_after (NOTE_INSN_BASIC_BLOCK
, get_last_insn ());
284 else if (GET_CODE (head
) == CODE_LABEL
&& end
)
286 bb_note
= emit_note_after (NOTE_INSN_BASIC_BLOCK
, head
);
292 bb_note
= emit_note_before (NOTE_INSN_BASIC_BLOCK
, head
);
298 NOTE_BASIC_BLOCK (bb_note
) = bb
;
301 /* Always include the bb note in the block. */
302 if (NEXT_INSN (end
) == bb_note
)
309 link_block (bb
, after
);
310 BASIC_BLOCK (index
) = bb
;
311 update_bb_for_insn (bb
);
313 /* Tag the block so that we know it has been used when considering
314 other basic block notes. */
320 /* Create new basic block consisting of instructions in between HEAD and END
321 and place it to the BB chain after block AFTER. END can be NULL in to
322 create new empty basic block before HEAD. Both END and HEAD can be NULL to
323 create basic block at the end of INSN chain. */
326 create_basic_block (head
, end
, after
)
331 int index
= last_basic_block
++;
333 /* Place the new block just after the end. */
334 VARRAY_GROW (basic_block_info
, last_basic_block
);
338 bb
= create_basic_block_structure (index
, head
, end
, NULL
, after
);
343 /* Delete the insns in a (non-live) block. We physically delete every
344 non-deleted-note insn, and update the flow graph appropriately.
346 Return nonzero if we deleted an exception handler. */
348 /* ??? Preserving all such notes strikes me as wrong. It would be nice
349 to post-process the stream to remove empty blocks, loops, ranges, etc. */
352 flow_delete_block_noexpunge (b
)
355 int deleted_handler
= 0;
358 /* If the head of this block is a CODE_LABEL, then it might be the
359 label for an exception handler which can't be reached.
361 We need to remove the label from the exception_handler_label list
362 and remove the associated NOTE_INSN_EH_REGION_BEG and
363 NOTE_INSN_EH_REGION_END notes. */
365 /* Get rid of all NOTE_INSN_PREDICTIONs hanging before the block. */
367 for (insn
= PREV_INSN (b
->head
); insn
; insn
= PREV_INSN (insn
))
369 if (GET_CODE (insn
) != NOTE
)
371 if (NOTE_LINE_NUMBER (insn
) == NOTE_INSN_PREDICTION
)
372 NOTE_LINE_NUMBER (insn
) = NOTE_INSN_DELETED
;
377 never_reached_warning (insn
, b
->end
);
379 if (GET_CODE (insn
) == CODE_LABEL
)
380 maybe_remove_eh_handler (insn
);
382 /* Include any jump table following the basic block. */
384 if (GET_CODE (end
) == JUMP_INSN
385 && (tmp
= JUMP_LABEL (end
)) != NULL_RTX
386 && (tmp
= NEXT_INSN (tmp
)) != NULL_RTX
387 && GET_CODE (tmp
) == JUMP_INSN
388 && (GET_CODE (PATTERN (tmp
)) == ADDR_VEC
389 || GET_CODE (PATTERN (tmp
)) == ADDR_DIFF_VEC
))
392 /* Include any barrier that may follow the basic block. */
393 tmp
= next_nonnote_insn (end
);
394 if (tmp
&& GET_CODE (tmp
) == BARRIER
)
397 /* Selectively delete the entire chain. */
399 delete_insn_chain (insn
, end
);
401 /* Remove the edges into and out of this block. Note that there may
402 indeed be edges in, if we are removing an unreachable loop. */
403 while (b
->pred
!= NULL
)
404 remove_edge (b
->pred
);
405 while (b
->succ
!= NULL
)
406 remove_edge (b
->succ
);
411 return deleted_handler
;
415 flow_delete_block (b
)
418 int deleted_handler
= flow_delete_block_noexpunge (b
);
420 /* Remove the basic block from the array. */
423 return deleted_handler
;
426 /* Records the basic block struct in BB_FOR_INSN, for every instruction
427 indexed by INSN_UID. MAX is the size of the array. */
430 compute_bb_for_insn (max
)
440 for (insn
= bb
->head
; ; insn
= NEXT_INSN (insn
))
442 BLOCK_FOR_INSN (insn
) = bb
;
449 /* Release the basic_block_for_insn array. */
455 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
456 if (GET_CODE (insn
) != BARRIER
)
457 BLOCK_FOR_INSN (insn
) = NULL
;
460 /* Update insns block within BB. */
463 update_bb_for_insn (bb
)
468 for (insn
= bb
->head
; ; insn
= NEXT_INSN (insn
))
470 set_block_for_insn (insn
, bb
);
476 /* Split a block BB after insn INSN creating a new fallthru edge.
477 Return the new edge. Note that to keep other parts of the compiler happy,
478 this function renumbers all the basic blocks so that the new
479 one has a number one greater than the block split. */
482 split_block (bb
, insn
)
490 /* There is no point splitting the block after its end. */
494 /* Create the new basic block. */
495 new_bb
= create_basic_block (NEXT_INSN (insn
), bb
->end
, bb
);
496 new_bb
->count
= bb
->count
;
497 new_bb
->frequency
= bb
->frequency
;
498 new_bb
->loop_depth
= bb
->loop_depth
;
501 /* Redirect the outgoing edges. */
502 new_bb
->succ
= bb
->succ
;
504 for (e
= new_bb
->succ
; e
; e
= e
->succ_next
)
507 new_edge
= make_single_succ_edge (bb
, new_bb
, EDGE_FALLTHRU
);
509 if (bb
->global_live_at_start
)
511 new_bb
->global_live_at_start
= OBSTACK_ALLOC_REG_SET (&flow_obstack
);
512 new_bb
->global_live_at_end
= OBSTACK_ALLOC_REG_SET (&flow_obstack
);
513 COPY_REG_SET (new_bb
->global_live_at_end
, bb
->global_live_at_end
);
515 /* We now have to calculate which registers are live at the end
516 of the split basic block and at the start of the new basic
517 block. Start with those registers that are known to be live
518 at the end of the original basic block and get
519 propagate_block to determine which registers are live. */
520 COPY_REG_SET (new_bb
->global_live_at_start
, bb
->global_live_at_end
);
521 propagate_block (new_bb
, new_bb
->global_live_at_start
, NULL
, NULL
, 0);
522 COPY_REG_SET (bb
->global_live_at_end
,
523 new_bb
->global_live_at_start
);
524 #ifdef HAVE_conditional_execution
525 /* In the presence of conditional execution we are not able to update
526 liveness precisely. */
527 if (reload_completed
)
529 bb
->flags
|= BB_DIRTY
;
530 new_bb
->flags
|= BB_DIRTY
;
538 /* Blocks A and B are to be merged into a single block A. The insns
539 are already contiguous, hence `nomove'. */
542 merge_blocks_nomove (a
, b
)
545 rtx b_head
= b
->head
, b_end
= b
->end
, a_end
= a
->end
;
546 rtx del_first
= NULL_RTX
, del_last
= NULL_RTX
;
550 /* If there was a CODE_LABEL beginning B, delete it. */
551 if (GET_CODE (b_head
) == CODE_LABEL
)
553 /* Detect basic blocks with nothing but a label. This can happen
554 in particular at the end of a function. */
558 del_first
= del_last
= b_head
;
559 b_head
= NEXT_INSN (b_head
);
562 /* Delete the basic block note and handle blocks containing just that
564 if (NOTE_INSN_BASIC_BLOCK_P (b_head
))
572 b_head
= NEXT_INSN (b_head
);
575 /* If there was a jump out of A, delete it. */
576 if (GET_CODE (a_end
) == JUMP_INSN
)
580 for (prev
= PREV_INSN (a_end
); ; prev
= PREV_INSN (prev
))
581 if (GET_CODE (prev
) != NOTE
582 || NOTE_LINE_NUMBER (prev
) == NOTE_INSN_BASIC_BLOCK
589 /* If this was a conditional jump, we need to also delete
590 the insn that set cc0. */
591 if (only_sets_cc0_p (prev
))
595 prev
= prev_nonnote_insn (prev
);
602 a_end
= PREV_INSN (del_first
);
604 else if (GET_CODE (NEXT_INSN (a_end
)) == BARRIER
)
605 del_first
= NEXT_INSN (a_end
);
607 /* Normally there should only be one successor of A and that is B, but
608 partway though the merge of blocks for conditional_execution we'll
609 be merging a TEST block with THEN and ELSE successors. Free the
610 whole lot of them and hope the caller knows what they're doing. */
612 remove_edge (a
->succ
);
614 /* Adjust the edges out of B for the new owner. */
615 for (e
= b
->succ
; e
; e
= e
->succ_next
)
618 a
->flags
|= b
->flags
;
620 /* B hasn't quite yet ceased to exist. Attempt to prevent mishap. */
621 b
->pred
= b
->succ
= NULL
;
622 a
->global_live_at_end
= b
->global_live_at_end
;
626 /* Delete everything marked above as well as crap that might be
627 hanging out between the two blocks. */
628 delete_insn_chain (del_first
, del_last
);
630 /* Reassociate the insns of B with A. */
635 for (x
= a_end
; x
!= b_end
; x
= NEXT_INSN (x
))
636 set_block_for_insn (x
, a
);
638 set_block_for_insn (b_end
, a
);
646 /* Return the label in the head of basic block BLOCK. Create one if it doesn't
653 if (block
== EXIT_BLOCK_PTR
)
656 if (GET_CODE (block
->head
) != CODE_LABEL
)
658 block
->head
= emit_label_before (gen_label_rtx (), block
->head
);
664 /* Attempt to perform edge redirection by replacing possibly complex jump
665 instruction by unconditional jump or removing jump completely. This can
666 apply only if all edges now point to the same block. The parameters and
667 return values are equivalent to redirect_edge_and_branch. */
670 try_redirect_by_replacing_jump (e
, target
)
674 basic_block src
= e
->src
;
675 rtx insn
= src
->end
, kill_from
;
680 /* Verify that all targets will be TARGET. */
681 for (tmp
= src
->succ
; tmp
; tmp
= tmp
->succ_next
)
682 if (tmp
->dest
!= target
&& tmp
!= e
)
685 if (tmp
|| !onlyjump_p (insn
))
687 if (reload_completed
&& JUMP_LABEL (insn
)
688 && (table
= NEXT_INSN (JUMP_LABEL (insn
))) != NULL_RTX
689 && GET_CODE (table
) == JUMP_INSN
690 && (GET_CODE (PATTERN (table
)) == ADDR_VEC
691 || GET_CODE (PATTERN (table
)) == ADDR_DIFF_VEC
))
694 /* Avoid removing branch with side effects. */
695 set
= single_set (insn
);
696 if (!set
|| side_effects_p (set
))
699 /* In case we zap a conditional jump, we'll need to kill
700 the cc0 setter too. */
703 if (reg_mentioned_p (cc0_rtx
, PATTERN (insn
)))
704 kill_from
= PREV_INSN (insn
);
707 /* See if we can create the fallthru edge. */
708 if (can_fallthru (src
, target
))
711 fprintf (rtl_dump_file
, "Removing jump %i.\n", INSN_UID (insn
));
714 /* Selectively unlink whole insn chain. */
715 delete_insn_chain (kill_from
, PREV_INSN (target
->head
));
718 /* If this already is simplejump, redirect it. */
719 else if (simplejump_p (insn
))
721 if (e
->dest
== target
)
724 fprintf (rtl_dump_file
, "Redirecting jump %i from %i to %i.\n",
725 INSN_UID (insn
), e
->dest
->index
, target
->index
);
726 if (!redirect_jump (insn
, block_label (target
), 0))
728 if (target
== EXIT_BLOCK_PTR
)
734 /* Cannot do anything for target exit block. */
735 else if (target
== EXIT_BLOCK_PTR
)
738 /* Or replace possibly complicated jump insn by simple jump insn. */
741 rtx target_label
= block_label (target
);
744 emit_jump_insn_after (gen_jump (target_label
), insn
);
745 JUMP_LABEL (src
->end
) = target_label
;
746 LABEL_NUSES (target_label
)++;
748 fprintf (rtl_dump_file
, "Replacing insn %i by jump %i\n",
749 INSN_UID (insn
), INSN_UID (src
->end
));
752 delete_insn_chain (kill_from
, insn
);
754 /* Recognize a tablejump that we are converting to a
755 simple jump and remove its associated CODE_LABEL
756 and ADDR_VEC or ADDR_DIFF_VEC. */
757 if ((tmp
= JUMP_LABEL (insn
)) != NULL_RTX
758 && (tmp
= NEXT_INSN (tmp
)) != NULL_RTX
759 && GET_CODE (tmp
) == JUMP_INSN
760 && (GET_CODE (PATTERN (tmp
)) == ADDR_VEC
761 || GET_CODE (PATTERN (tmp
)) == ADDR_DIFF_VEC
))
763 delete_insn_chain (JUMP_LABEL (insn
), tmp
);
766 barrier
= next_nonnote_insn (src
->end
);
767 if (!barrier
|| GET_CODE (barrier
) != BARRIER
)
768 emit_barrier_after (src
->end
);
771 /* Keep only one edge out and set proper flags. */
772 while (src
->succ
->succ_next
)
773 remove_edge (src
->succ
);
776 e
->flags
= EDGE_FALLTHRU
;
780 e
->probability
= REG_BR_PROB_BASE
;
781 e
->count
= src
->count
;
783 /* We don't want a block to end on a line-number note since that has
784 the potential of changing the code between -g and not -g. */
785 while (GET_CODE (e
->src
->end
) == NOTE
786 && NOTE_LINE_NUMBER (e
->src
->end
) >= 0)
787 delete_insn (e
->src
->end
);
789 if (e
->dest
!= target
)
790 redirect_edge_succ (e
, target
);
795 /* Return last loop_beg note appearing after INSN, before start of next
796 basic block. Return INSN if there are no such notes.
798 When emitting jump to redirect an fallthru edge, it should always appear
799 after the LOOP_BEG notes, as loop optimizer expect loop to either start by
800 fallthru edge or jump following the LOOP_BEG note jumping to the loop exit
804 last_loop_beg_note (insn
)
809 for (insn
= NEXT_INSN (insn
); insn
&& GET_CODE (insn
) == NOTE
810 && NOTE_LINE_NUMBER (insn
) != NOTE_INSN_BASIC_BLOCK
;
811 insn
= NEXT_INSN (insn
))
812 if (NOTE_LINE_NUMBER (insn
) == NOTE_INSN_LOOP_BEG
)
818 /* Attempt to change code to redirect edge E to TARGET. Don't do that on
819 expense of adding new instructions or reordering basic blocks.
821 Function can be also called with edge destination equivalent to the TARGET.
822 Then it should try the simplifications and do nothing if none is possible.
824 Return true if transformation succeeded. We still return false in case E
825 already destinated TARGET and we didn't managed to simplify instruction
829 redirect_edge_and_branch (e
, target
)
834 rtx old_label
= e
->dest
->head
;
835 basic_block src
= e
->src
;
838 if (e
->flags
& (EDGE_ABNORMAL_CALL
| EDGE_EH
))
841 if (try_redirect_by_replacing_jump (e
, target
))
844 /* Do this fast path late, as we want above code to simplify for cases
845 where called on single edge leaving basic block containing nontrivial
847 else if (e
->dest
== target
)
850 /* We can only redirect non-fallthru edges of jump insn. */
851 if (e
->flags
& EDGE_FALLTHRU
)
853 else if (GET_CODE (insn
) != JUMP_INSN
)
856 /* Recognize a tablejump and adjust all matching cases. */
857 if ((tmp
= JUMP_LABEL (insn
)) != NULL_RTX
858 && (tmp
= NEXT_INSN (tmp
)) != NULL_RTX
859 && GET_CODE (tmp
) == JUMP_INSN
860 && (GET_CODE (PATTERN (tmp
)) == ADDR_VEC
861 || GET_CODE (PATTERN (tmp
)) == ADDR_DIFF_VEC
))
865 rtx new_label
= block_label (target
);
867 if (target
== EXIT_BLOCK_PTR
)
869 if (GET_CODE (PATTERN (tmp
)) == ADDR_VEC
)
870 vec
= XVEC (PATTERN (tmp
), 0);
872 vec
= XVEC (PATTERN (tmp
), 1);
874 for (j
= GET_NUM_ELEM (vec
) - 1; j
>= 0; --j
)
875 if (XEXP (RTVEC_ELT (vec
, j
), 0) == old_label
)
877 RTVEC_ELT (vec
, j
) = gen_rtx_LABEL_REF (Pmode
, new_label
);
878 --LABEL_NUSES (old_label
);
879 ++LABEL_NUSES (new_label
);
882 /* Handle casesi dispatch insns */
883 if ((tmp
= single_set (insn
)) != NULL
884 && SET_DEST (tmp
) == pc_rtx
885 && GET_CODE (SET_SRC (tmp
)) == IF_THEN_ELSE
886 && GET_CODE (XEXP (SET_SRC (tmp
), 2)) == LABEL_REF
887 && XEXP (XEXP (SET_SRC (tmp
), 2), 0) == old_label
)
889 XEXP (SET_SRC (tmp
), 2) = gen_rtx_LABEL_REF (VOIDmode
,
891 --LABEL_NUSES (old_label
);
892 ++LABEL_NUSES (new_label
);
897 /* ?? We may play the games with moving the named labels from
898 one basic block to the other in case only one computed_jump is
900 if (computed_jump_p (insn
)
901 /* A return instruction can't be redirected. */
902 || returnjump_p (insn
))
905 /* If the insn doesn't go where we think, we're confused. */
906 if (JUMP_LABEL (insn
) != old_label
)
909 /* If the substitution doesn't succeed, die. This can happen
910 if the back end emitted unrecognizable instructions or if
911 target is exit block on some arches. */
912 if (!redirect_jump (insn
, block_label (target
), 0))
914 if (target
== EXIT_BLOCK_PTR
)
921 fprintf (rtl_dump_file
, "Edge %i->%i redirected to %i\n",
922 e
->src
->index
, e
->dest
->index
, target
->index
);
924 if (e
->dest
!= target
)
925 redirect_edge_succ_nodup (e
, target
);
930 /* Like force_nonfallthru below, but additionally performs redirection
931 Used by redirect_edge_and_branch_force. */
934 force_nonfallthru_and_redirect (e
, target
)
938 basic_block jump_block
, new_bb
= NULL
;
942 if (e
->flags
& EDGE_ABNORMAL
)
944 else if (!(e
->flags
& EDGE_FALLTHRU
))
946 else if (e
->src
== ENTRY_BLOCK_PTR
)
948 /* We can't redirect the entry block. Create an empty block at the
949 start of the function which we use to add the new jump. */
951 basic_block bb
= create_basic_block (e
->dest
->head
, NULL
, ENTRY_BLOCK_PTR
);
953 /* Change the existing edge's source to be the new block, and add
954 a new edge from the entry block to the new block. */
956 for (pe1
= &ENTRY_BLOCK_PTR
->succ
; *pe1
; pe1
= &(*pe1
)->succ_next
)
964 make_single_succ_edge (ENTRY_BLOCK_PTR
, bb
, EDGE_FALLTHRU
);
967 if (e
->src
->succ
->succ_next
)
969 /* Create the new structures. */
970 note
= last_loop_beg_note (e
->src
->end
);
972 = create_basic_block (NEXT_INSN (note
), NULL
, e
->src
);
973 jump_block
->count
= e
->count
;
974 jump_block
->frequency
= EDGE_FREQUENCY (e
);
975 jump_block
->loop_depth
= target
->loop_depth
;
977 if (target
->global_live_at_start
)
979 jump_block
->global_live_at_start
980 = OBSTACK_ALLOC_REG_SET (&flow_obstack
);
981 jump_block
->global_live_at_end
982 = OBSTACK_ALLOC_REG_SET (&flow_obstack
);
983 COPY_REG_SET (jump_block
->global_live_at_start
,
984 target
->global_live_at_start
);
985 COPY_REG_SET (jump_block
->global_live_at_end
,
986 target
->global_live_at_start
);
990 new_edge
= make_edge (e
->src
, jump_block
, EDGE_FALLTHRU
);
991 new_edge
->probability
= e
->probability
;
992 new_edge
->count
= e
->count
;
994 /* Redirect old edge. */
995 redirect_edge_pred (e
, jump_block
);
996 e
->probability
= REG_BR_PROB_BASE
;
1001 jump_block
= e
->src
;
1003 e
->flags
&= ~EDGE_FALLTHRU
;
1004 if (target
== EXIT_BLOCK_PTR
)
1007 emit_jump_insn_after (gen_return (), jump_block
->end
);
1013 rtx label
= block_label (target
);
1014 emit_jump_insn_after (gen_jump (label
), jump_block
->end
);
1015 JUMP_LABEL (jump_block
->end
) = label
;
1016 LABEL_NUSES (label
)++;
1019 emit_barrier_after (jump_block
->end
);
1020 redirect_edge_succ_nodup (e
, target
);
1025 /* Edge E is assumed to be fallthru edge. Emit needed jump instruction
1026 (and possibly create new basic block) to make edge non-fallthru.
1027 Return newly created BB or NULL if none. */
1030 force_nonfallthru (e
)
1033 return force_nonfallthru_and_redirect (e
, e
->dest
);
1036 /* Redirect edge even at the expense of creating new jump insn or
1037 basic block. Return new basic block if created, NULL otherwise.
1038 Abort if conversion is impossible. */
1041 redirect_edge_and_branch_force (e
, target
)
1045 if (redirect_edge_and_branch (e
, target
)
1046 || e
->dest
== target
)
1049 /* In case the edge redirection failed, try to force it to be non-fallthru
1050 and redirect newly created simplejump. */
1051 return force_nonfallthru_and_redirect (e
, target
);
1054 /* The given edge should potentially be a fallthru edge. If that is in
1055 fact true, delete the jump and barriers that are in the way. */
1058 tidy_fallthru_edge (e
, b
, c
)
1064 /* ??? In a late-running flow pass, other folks may have deleted basic
1065 blocks by nopping out blocks, leaving multiple BARRIERs between here
1066 and the target label. They ought to be chastized and fixed.
1068 We can also wind up with a sequence of undeletable labels between
1069 one block and the next.
1071 So search through a sequence of barriers, labels, and notes for
1072 the head of block C and assert that we really do fall through. */
1074 for (q
= NEXT_INSN (b
->end
); q
!= c
->head
; q
= NEXT_INSN (q
))
1078 /* Remove what will soon cease being the jump insn from the source block.
1079 If block B consisted only of this single jump, turn it into a deleted
1082 if (GET_CODE (q
) == JUMP_INSN
1084 && (any_uncondjump_p (q
)
1085 || (b
->succ
== e
&& e
->succ_next
== NULL
)))
1088 /* If this was a conditional jump, we need to also delete
1089 the insn that set cc0. */
1090 if (any_condjump_p (q
) && only_sets_cc0_p (PREV_INSN (q
)))
1096 /* We don't want a block to end on a line-number note since that has
1097 the potential of changing the code between -g and not -g. */
1098 while (GET_CODE (q
) == NOTE
&& NOTE_LINE_NUMBER (q
) >= 0)
1102 /* Selectively unlink the sequence. */
1103 if (q
!= PREV_INSN (c
->head
))
1104 delete_insn_chain (NEXT_INSN (q
), PREV_INSN (c
->head
));
1106 e
->flags
|= EDGE_FALLTHRU
;
1109 /* Fix up edges that now fall through, or rather should now fall through
1110 but previously required a jump around now deleted blocks. Simplify
1111 the search by only examining blocks numerically adjacent, since this
1112 is how find_basic_blocks created them. */
1115 tidy_fallthru_edges ()
1119 if (ENTRY_BLOCK_PTR
->next_bb
== EXIT_BLOCK_PTR
)
1122 FOR_BB_BETWEEN (b
, ENTRY_BLOCK_PTR
->next_bb
, EXIT_BLOCK_PTR
->prev_bb
, next_bb
)
1128 /* We care about simple conditional or unconditional jumps with
1131 If we had a conditional branch to the next instruction when
1132 find_basic_blocks was called, then there will only be one
1133 out edge for the block which ended with the conditional
1134 branch (since we do not create duplicate edges).
1136 Furthermore, the edge will be marked as a fallthru because we
1137 merge the flags for the duplicate edges. So we do not want to
1138 check that the edge is not a FALLTHRU edge. */
1140 if ((s
= b
->succ
) != NULL
1141 && ! (s
->flags
& EDGE_COMPLEX
)
1142 && s
->succ_next
== NULL
1144 /* If the jump insn has side effects, we can't tidy the edge. */
1145 && (GET_CODE (b
->end
) != JUMP_INSN
1146 || onlyjump_p (b
->end
)))
1147 tidy_fallthru_edge (s
, b
, c
);
1151 /* Helper function for split_edge. Return true in case edge BB2 to BB1
1152 is back edge of syntactic loop. */
1155 back_edge_of_syntactic_loop_p (bb1
, bb2
)
1156 basic_block bb1
, bb2
;
1165 /* ??? Could we guarantee that bb indices are monotone, so that we could
1166 just compare them? */
1167 for (bb
= bb1
; bb
&& bb
!= bb2
; bb
= bb
->next_bb
)
1173 for (insn
= bb1
->end
; insn
!= bb2
->head
&& count
>= 0;
1174 insn
= NEXT_INSN (insn
))
1175 if (GET_CODE (insn
) == NOTE
)
1177 if (NOTE_LINE_NUMBER (insn
) == NOTE_INSN_LOOP_BEG
)
1179 else if (NOTE_LINE_NUMBER (insn
) == NOTE_INSN_LOOP_END
)
1186 /* Split a (typically critical) edge. Return the new block.
1187 Abort on abnormal edges.
1189 ??? The code generally expects to be called on critical edges.
1190 The case of a block ending in an unconditional jump to a
1191 block with multiple predecessors is not handled optimally. */
1194 split_edge (edge_in
)
1201 /* Abnormal edges cannot be split. */
1202 if ((edge_in
->flags
& EDGE_ABNORMAL
) != 0)
1205 /* We are going to place the new block in front of edge destination.
1206 Avoid existence of fallthru predecessors. */
1207 if ((edge_in
->flags
& EDGE_FALLTHRU
) == 0)
1211 for (e
= edge_in
->dest
->pred
; e
; e
= e
->pred_next
)
1212 if (e
->flags
& EDGE_FALLTHRU
)
1216 force_nonfallthru (e
);
1219 /* Create the basic block note.
1221 Where we place the note can have a noticeable impact on the generated
1222 code. Consider this cfg:
1232 If we need to insert an insn on the edge from block 0 to block 1,
1233 we want to ensure the instructions we insert are outside of any
1234 loop notes that physically sit between block 0 and block 1. Otherwise
1235 we confuse the loop optimizer into thinking the loop is a phony. */
1237 if (edge_in
->dest
!= EXIT_BLOCK_PTR
1238 && PREV_INSN (edge_in
->dest
->head
)
1239 && GET_CODE (PREV_INSN (edge_in
->dest
->head
)) == NOTE
1240 && (NOTE_LINE_NUMBER (PREV_INSN (edge_in
->dest
->head
))
1241 == NOTE_INSN_LOOP_BEG
)
1242 && !back_edge_of_syntactic_loop_p (edge_in
->dest
, edge_in
->src
))
1243 before
= PREV_INSN (edge_in
->dest
->head
);
1244 else if (edge_in
->dest
!= EXIT_BLOCK_PTR
)
1245 before
= edge_in
->dest
->head
;
1249 bb
= create_basic_block (before
, NULL
, edge_in
->dest
->prev_bb
);
1250 bb
->count
= edge_in
->count
;
1251 bb
->frequency
= EDGE_FREQUENCY (edge_in
);
1253 /* ??? This info is likely going to be out of date very soon. */
1254 if (edge_in
->dest
->global_live_at_start
)
1256 bb
->global_live_at_start
= OBSTACK_ALLOC_REG_SET (&flow_obstack
);
1257 bb
->global_live_at_end
= OBSTACK_ALLOC_REG_SET (&flow_obstack
);
1258 COPY_REG_SET (bb
->global_live_at_start
,
1259 edge_in
->dest
->global_live_at_start
);
1260 COPY_REG_SET (bb
->global_live_at_end
,
1261 edge_in
->dest
->global_live_at_start
);
1264 edge_out
= make_single_succ_edge (bb
, edge_in
->dest
, EDGE_FALLTHRU
);
1266 /* For non-fallthry edges, we must adjust the predecessor's
1267 jump instruction to target our new block. */
1268 if ((edge_in
->flags
& EDGE_FALLTHRU
) == 0)
1270 if (!redirect_edge_and_branch (edge_in
, bb
))
1274 redirect_edge_succ (edge_in
, bb
);
1279 /* Queue instructions for insertion on an edge between two basic blocks.
1280 The new instructions and basic blocks (if any) will not appear in the
1281 CFG until commit_edge_insertions is called. */
1284 insert_insn_on_edge (pattern
, e
)
1288 /* We cannot insert instructions on an abnormal critical edge.
1289 It will be easier to find the culprit if we die now. */
1290 if ((e
->flags
& EDGE_ABNORMAL
) && EDGE_CRITICAL_P (e
))
1293 if (e
->insns
== NULL_RTX
)
1296 push_to_sequence (e
->insns
);
1298 emit_insn (pattern
);
1300 e
->insns
= get_insns ();
1304 /* Update the CFG for the instructions queued on edge E. */
1307 commit_one_edge_insertion (e
, watch_calls
)
1311 rtx before
= NULL_RTX
, after
= NULL_RTX
, insns
, tmp
, last
;
1312 basic_block bb
= NULL
;
1314 /* Pull the insns off the edge now since the edge might go away. */
1316 e
->insns
= NULL_RTX
;
1318 /* Special case -- avoid inserting code between call and storing
1319 its return value. */
1320 if (watch_calls
&& (e
->flags
& EDGE_FALLTHRU
) && !e
->dest
->pred
->pred_next
1321 && e
->src
!= ENTRY_BLOCK_PTR
1322 && GET_CODE (e
->src
->end
) == CALL_INSN
)
1324 rtx next
= next_nonnote_insn (e
->src
->end
);
1326 after
= e
->dest
->head
;
1327 /* The first insn after the call may be a stack pop, skip it. */
1329 && keep_with_call_p (next
))
1332 next
= next_nonnote_insn (next
);
1336 if (!before
&& !after
)
1338 /* Figure out where to put these things. If the destination has
1339 one predecessor, insert there. Except for the exit block. */
1340 if (e
->dest
->pred
->pred_next
== NULL
&& e
->dest
!= EXIT_BLOCK_PTR
)
1344 /* Get the location correct wrt a code label, and "nice" wrt
1345 a basic block note, and before everything else. */
1347 if (GET_CODE (tmp
) == CODE_LABEL
)
1348 tmp
= NEXT_INSN (tmp
);
1349 if (NOTE_INSN_BASIC_BLOCK_P (tmp
))
1350 tmp
= NEXT_INSN (tmp
);
1351 if (tmp
== bb
->head
)
1354 after
= PREV_INSN (tmp
);
1356 after
= get_last_insn ();
1359 /* If the source has one successor and the edge is not abnormal,
1360 insert there. Except for the entry block. */
1361 else if ((e
->flags
& EDGE_ABNORMAL
) == 0
1362 && e
->src
->succ
->succ_next
== NULL
1363 && e
->src
!= ENTRY_BLOCK_PTR
)
1367 /* It is possible to have a non-simple jump here. Consider a target
1368 where some forms of unconditional jumps clobber a register. This
1369 happens on the fr30 for example.
1371 We know this block has a single successor, so we can just emit
1372 the queued insns before the jump. */
1373 if (GET_CODE (bb
->end
) == JUMP_INSN
)
1374 for (before
= bb
->end
;
1375 GET_CODE (PREV_INSN (before
)) == NOTE
1376 && NOTE_LINE_NUMBER (PREV_INSN (before
)) ==
1377 NOTE_INSN_LOOP_BEG
; before
= PREV_INSN (before
))
1381 /* We'd better be fallthru, or we've lost track of what's what. */
1382 if ((e
->flags
& EDGE_FALLTHRU
) == 0)
1388 /* Otherwise we must split the edge. */
1391 bb
= split_edge (e
);
1396 /* Now that we've found the spot, do the insertion. */
1400 emit_insns_before (insns
, before
);
1401 last
= prev_nonnote_insn (before
);
1404 last
= emit_insns_after (insns
, after
);
1406 if (returnjump_p (last
))
1408 /* ??? Remove all outgoing edges from BB and add one for EXIT.
1409 This is not currently a problem because this only happens
1410 for the (single) epilogue, which already has a fallthru edge
1414 if (e
->dest
!= EXIT_BLOCK_PTR
1415 || e
->succ_next
!= NULL
|| (e
->flags
& EDGE_FALLTHRU
) == 0)
1418 e
->flags
&= ~EDGE_FALLTHRU
;
1419 emit_barrier_after (last
);
1422 delete_insn (before
);
1424 else if (GET_CODE (last
) == JUMP_INSN
)
1427 find_sub_basic_blocks (bb
);
1430 /* Update the CFG for all queued instructions. */
1433 commit_edge_insertions ()
1437 #ifdef ENABLE_CHECKING
1438 verify_flow_info ();
1441 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR
, EXIT_BLOCK_PTR
, next_bb
)
1445 for (e
= bb
->succ
; e
; e
= next
)
1447 next
= e
->succ_next
;
1449 commit_one_edge_insertion (e
, false);
1454 /* Update the CFG for all queued instructions, taking special care of inserting
1455 code on edges between call and storing its return value. */
1458 commit_edge_insertions_watch_calls ()
1462 #ifdef ENABLE_CHECKING
1463 verify_flow_info ();
1466 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR
, EXIT_BLOCK_PTR
, next_bb
)
1470 for (e
= bb
->succ
; e
; e
= next
)
1472 next
= e
->succ_next
;
1474 commit_one_edge_insertion (e
, true);
1479 /* Print out one basic block with live information at start and end. */
1490 fprintf (outf
, ";; Basic block %d, loop depth %d, count ",
1491 bb
->index
, bb
->loop_depth
);
1492 fprintf (outf
, HOST_WIDEST_INT_PRINT_DEC
, (HOST_WIDEST_INT
) bb
->count
);
1495 fputs (";; Predecessors: ", outf
);
1496 for (e
= bb
->pred
; e
; e
= e
->pred_next
)
1497 dump_edge_info (outf
, e
, 0);
1500 fputs (";; Registers live at start:", outf
);
1501 dump_regset (bb
->global_live_at_start
, outf
);
1504 for (insn
= bb
->head
, last
= NEXT_INSN (bb
->end
); insn
!= last
;
1505 insn
= NEXT_INSN (insn
))
1506 print_rtl_single (outf
, insn
);
1508 fputs (";; Registers live at end:", outf
);
1509 dump_regset (bb
->global_live_at_end
, outf
);
1512 fputs (";; Successors: ", outf
);
1513 for (e
= bb
->succ
; e
; e
= e
->succ_next
)
1514 dump_edge_info (outf
, e
, 1);
1522 dump_bb (bb
, stderr
);
1529 dump_bb (BASIC_BLOCK (n
), stderr
);
1532 /* Like print_rtl, but also print out live information for the start of each
1536 print_rtl_with_bb (outf
, rtx_first
)
1543 fprintf (outf
, "(nil)\n");
1546 enum bb_state
{ NOT_IN_BB
, IN_ONE_BB
, IN_MULTIPLE_BB
};
1547 int max_uid
= get_max_uid ();
1549 = (basic_block
*) xcalloc (max_uid
, sizeof (basic_block
));
1551 = (basic_block
*) xcalloc (max_uid
, sizeof (basic_block
));
1552 enum bb_state
*in_bb_p
1553 = (enum bb_state
*) xcalloc (max_uid
, sizeof (enum bb_state
));
1557 FOR_EACH_BB_REVERSE (bb
)
1561 start
[INSN_UID (bb
->head
)] = bb
;
1562 end
[INSN_UID (bb
->end
)] = bb
;
1563 for (x
= bb
->head
; x
!= NULL_RTX
; x
= NEXT_INSN (x
))
1565 enum bb_state state
= IN_MULTIPLE_BB
;
1567 if (in_bb_p
[INSN_UID (x
)] == NOT_IN_BB
)
1569 in_bb_p
[INSN_UID (x
)] = state
;
1576 for (tmp_rtx
= rtx_first
; NULL
!= tmp_rtx
; tmp_rtx
= NEXT_INSN (tmp_rtx
))
1580 if ((bb
= start
[INSN_UID (tmp_rtx
)]) != NULL
)
1582 fprintf (outf
, ";; Start of basic block %d, registers live:",
1584 dump_regset (bb
->global_live_at_start
, outf
);
1588 if (in_bb_p
[INSN_UID (tmp_rtx
)] == NOT_IN_BB
1589 && GET_CODE (tmp_rtx
) != NOTE
1590 && GET_CODE (tmp_rtx
) != BARRIER
)
1591 fprintf (outf
, ";; Insn is not within a basic block\n");
1592 else if (in_bb_p
[INSN_UID (tmp_rtx
)] == IN_MULTIPLE_BB
)
1593 fprintf (outf
, ";; Insn is in multiple basic blocks\n");
1595 did_output
= print_rtl_single (outf
, tmp_rtx
);
1597 if ((bb
= end
[INSN_UID (tmp_rtx
)]) != NULL
)
1599 fprintf (outf
, ";; End of basic block %d, registers live:\n",
1601 dump_regset (bb
->global_live_at_end
, outf
);
1614 if (current_function_epilogue_delay_list
!= 0)
1616 fprintf (outf
, "\n;; Insns in epilogue delay list:\n\n");
1617 for (tmp_rtx
= current_function_epilogue_delay_list
; tmp_rtx
!= 0;
1618 tmp_rtx
= XEXP (tmp_rtx
, 1))
1619 print_rtl_single (outf
, XEXP (tmp_rtx
, 0));
1624 update_br_prob_note (bb
)
1628 if (GET_CODE (bb
->end
) != JUMP_INSN
)
1630 note
= find_reg_note (bb
->end
, REG_BR_PROB
, NULL_RTX
);
1631 if (!note
|| INTVAL (XEXP (note
, 0)) == BRANCH_EDGE (bb
)->probability
)
1633 XEXP (note
, 0) = GEN_INT (BRANCH_EDGE (bb
)->probability
);
1636 /* Verify the CFG consistency. This function check some CFG invariants and
1637 aborts when something is wrong. Hope that this function will help to
1638 convert many optimization passes to preserve CFG consistent.
1640 Currently it does following checks:
1642 - test head/end pointers
1643 - overlapping of basic blocks
1644 - edge list correctness
1645 - headers of basic blocks (the NOTE_INSN_BASIC_BLOCK note)
1646 - tails of basic blocks (ensure that boundary is necessary)
1647 - scans body of the basic block for JUMP_INSN, CODE_LABEL
1648 and NOTE_INSN_BASIC_BLOCK
1649 - check that all insns are in the basic blocks
1650 (except the switch handling code, barriers and notes)
1651 - check that all returns are followed by barriers
1653 In future it can be extended check a lot of other stuff as well
1654 (reachability of basic blocks, life information, etc. etc.). */
1659 const int max_uid
= get_max_uid ();
1660 const rtx rtx_first
= get_insns ();
1661 rtx last_head
= get_last_insn ();
1662 basic_block
*bb_info
, *last_visited
;
1663 size_t *edge_checksum
;
1665 int num_bb_notes
, err
= 0;
1666 basic_block bb
, last_bb_seen
;
1668 bb_info
= (basic_block
*) xcalloc (max_uid
, sizeof (basic_block
));
1669 last_visited
= (basic_block
*) xcalloc (last_basic_block
+ 2,
1670 sizeof (basic_block
));
1671 edge_checksum
= (size_t *) xcalloc (last_basic_block
+ 2, sizeof (size_t));
1673 /* Check bb chain & numbers. */
1674 last_bb_seen
= ENTRY_BLOCK_PTR
;
1675 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR
->next_bb
, NULL
, next_bb
)
1677 if (bb
!= EXIT_BLOCK_PTR
1678 && bb
!= BASIC_BLOCK (bb
->index
))
1680 error ("bb %d on wrong place", bb
->index
);
1684 if (bb
->prev_bb
!= last_bb_seen
)
1686 error ("prev_bb of %d should be %d, not %d",
1687 bb
->index
, last_bb_seen
->index
, bb
->prev_bb
->index
);
1694 FOR_EACH_BB_REVERSE (bb
)
1696 rtx head
= bb
->head
;
1699 /* Verify the end of the basic block is in the INSN chain. */
1700 for (x
= last_head
; x
!= NULL_RTX
; x
= PREV_INSN (x
))
1706 error ("end insn %d for block %d not found in the insn stream",
1707 INSN_UID (end
), bb
->index
);
1711 /* Work backwards from the end to the head of the basic block
1712 to verify the head is in the RTL chain. */
1713 for (; x
!= NULL_RTX
; x
= PREV_INSN (x
))
1715 /* While walking over the insn chain, verify insns appear
1716 in only one basic block and initialize the BB_INFO array
1717 used by other passes. */
1718 if (bb_info
[INSN_UID (x
)] != NULL
)
1720 error ("insn %d is in multiple basic blocks (%d and %d)",
1721 INSN_UID (x
), bb
->index
, bb_info
[INSN_UID (x
)]->index
);
1725 bb_info
[INSN_UID (x
)] = bb
;
1732 error ("head insn %d for block %d not found in the insn stream",
1733 INSN_UID (head
), bb
->index
);
1740 /* Now check the basic blocks (boundaries etc.) */
1741 FOR_EACH_BB_REVERSE (bb
)
1743 int n_fallthru
= 0, n_eh
= 0, n_call
= 0, n_abnormal
= 0, n_branch
= 0;
1747 if (INSN_P (bb
->end
)
1748 && (note
= find_reg_note (bb
->end
, REG_BR_PROB
, NULL_RTX
))
1749 && bb
->succ
&& bb
->succ
->succ_next
1750 && any_condjump_p (bb
->end
))
1752 if (INTVAL (XEXP (note
, 0)) != BRANCH_EDGE (bb
)->probability
)
1754 error ("verify_flow_info: REG_BR_PROB does not match cfg %i %i",
1755 INTVAL (XEXP (note
, 0)), BRANCH_EDGE (bb
)->probability
);
1761 error ("verify_flow_info: Wrong count of block %i %i",
1762 bb
->index
, (int)bb
->count
);
1765 if (bb
->frequency
< 0)
1767 error ("verify_flow_info: Wrong frequency of block %i %i",
1768 bb
->index
, bb
->frequency
);
1771 for (e
= bb
->succ
; e
; e
= e
->succ_next
)
1773 if (last_visited
[e
->dest
->index
+ 2] == bb
)
1775 error ("verify_flow_info: Duplicate edge %i->%i",
1776 e
->src
->index
, e
->dest
->index
);
1779 if (e
->probability
< 0 || e
->probability
> REG_BR_PROB_BASE
)
1781 error ("verify_flow_info: Wrong probability of edge %i->%i %i",
1782 e
->src
->index
, e
->dest
->index
, e
->probability
);
1787 error ("verify_flow_info: Wrong count of edge %i->%i %i",
1788 e
->src
->index
, e
->dest
->index
, (int)e
->count
);
1792 last_visited
[e
->dest
->index
+ 2] = bb
;
1794 if (e
->flags
& EDGE_FALLTHRU
)
1797 if ((e
->flags
& ~EDGE_DFS_BACK
) == 0)
1800 if (e
->flags
& EDGE_ABNORMAL_CALL
)
1803 if (e
->flags
& EDGE_EH
)
1805 else if (e
->flags
& EDGE_ABNORMAL
)
1808 if ((e
->flags
& EDGE_FALLTHRU
)
1809 && e
->src
!= ENTRY_BLOCK_PTR
1810 && e
->dest
!= EXIT_BLOCK_PTR
)
1814 if (e
->src
->next_bb
!= e
->dest
)
1817 ("verify_flow_info: Incorrect blocks for fallthru %i->%i",
1818 e
->src
->index
, e
->dest
->index
);
1822 for (insn
= NEXT_INSN (e
->src
->end
); insn
!= e
->dest
->head
;
1823 insn
= NEXT_INSN (insn
))
1824 if (GET_CODE (insn
) == BARRIER
1825 #ifndef CASE_DROPS_THROUGH
1828 || (INSN_P (insn
) && ! JUMP_TABLE_DATA_P (insn
))
1832 error ("verify_flow_info: Incorrect fallthru %i->%i",
1833 e
->src
->index
, e
->dest
->index
);
1834 fatal_insn ("wrong insn in the fallthru edge", insn
);
1841 error ("verify_flow_info: Basic block %d succ edge is corrupted",
1843 fprintf (stderr
, "Predecessor: ");
1844 dump_edge_info (stderr
, e
, 0);
1845 fprintf (stderr
, "\nSuccessor: ");
1846 dump_edge_info (stderr
, e
, 1);
1847 fprintf (stderr
, "\n");
1851 edge_checksum
[e
->dest
->index
+ 2] += (size_t) e
;
1854 if (n_eh
&& GET_CODE (PATTERN (bb
->end
)) != RESX
1855 && !find_reg_note (bb
->end
, REG_EH_REGION
, NULL_RTX
))
1857 error ("Missing REG_EH_REGION note in the end of bb %i", bb
->index
);
1861 && (GET_CODE (bb
->end
) != JUMP_INSN
1862 || (n_branch
> 1 && (any_uncondjump_p (bb
->end
)
1863 || any_condjump_p (bb
->end
)))))
1865 error ("Too many outgoing branch edges from bb %i", bb
->index
);
1868 if (n_fallthru
&& any_uncondjump_p (bb
->end
))
1870 error ("Fallthru edge after unconditional jump %i", bb
->index
);
1873 if (n_branch
!= 1 && any_uncondjump_p (bb
->end
))
1875 error ("Wrong amount of branch edges after unconditional jump %i", bb
->index
);
1878 if (n_branch
!= 1 && any_condjump_p (bb
->end
)
1879 && JUMP_LABEL (bb
->end
) != bb
->next_bb
->head
)
1881 error ("Wrong amount of branch edges after conditional jump %i", bb
->index
);
1884 if (n_call
&& GET_CODE (bb
->end
) != CALL_INSN
)
1886 error ("Call edges for non-call insn in bb %i", bb
->index
);
1890 && (GET_CODE (bb
->end
) != CALL_INSN
&& n_call
!= n_abnormal
)
1891 && (GET_CODE (bb
->end
) != JUMP_INSN
1892 || any_condjump_p (bb
->end
)
1893 || any_uncondjump_p (bb
->end
)))
1895 error ("Abnormal edges for no purpose in bb %i", bb
->index
);
1903 /* Ensure existence of barrier in BB with no fallthru edges. */
1904 for (insn
= bb
->end
; !insn
|| GET_CODE (insn
) != BARRIER
;
1905 insn
= NEXT_INSN (insn
))
1907 || (GET_CODE (insn
) == NOTE
1908 && NOTE_LINE_NUMBER (insn
) == NOTE_INSN_BASIC_BLOCK
))
1910 error ("missing barrier after block %i", bb
->index
);
1916 for (e
= bb
->pred
; e
; e
= e
->pred_next
)
1920 error ("basic block %d pred edge is corrupted", bb
->index
);
1921 fputs ("Predecessor: ", stderr
);
1922 dump_edge_info (stderr
, e
, 0);
1923 fputs ("\nSuccessor: ", stderr
);
1924 dump_edge_info (stderr
, e
, 1);
1925 fputc ('\n', stderr
);
1928 edge_checksum
[e
->dest
->index
+ 2] -= (size_t) e
;
1931 for (x
= bb
->head
; x
!= NEXT_INSN (bb
->end
); x
= NEXT_INSN (x
))
1932 if (BLOCK_FOR_INSN (x
) != bb
)
1935 if (! BLOCK_FOR_INSN (x
))
1937 ("insn %d inside basic block %d but block_for_insn is NULL",
1938 INSN_UID (x
), bb
->index
);
1941 ("insn %d inside basic block %d but block_for_insn is %i",
1942 INSN_UID (x
), bb
->index
, BLOCK_FOR_INSN (x
)->index
);
1947 /* OK pointers are correct. Now check the header of basic
1948 block. It ought to contain optional CODE_LABEL followed
1949 by NOTE_BASIC_BLOCK. */
1951 if (GET_CODE (x
) == CODE_LABEL
)
1955 error ("NOTE_INSN_BASIC_BLOCK is missing for block %d",
1963 if (!NOTE_INSN_BASIC_BLOCK_P (x
) || NOTE_BASIC_BLOCK (x
) != bb
)
1965 error ("NOTE_INSN_BASIC_BLOCK is missing for block %d",
1971 /* Do checks for empty blocks her. e */
1974 for (x
= NEXT_INSN (x
); x
; x
= NEXT_INSN (x
))
1976 if (NOTE_INSN_BASIC_BLOCK_P (x
))
1978 error ("NOTE_INSN_BASIC_BLOCK %d in middle of basic block %d",
1979 INSN_UID (x
), bb
->index
);
1986 if (GET_CODE (x
) == JUMP_INSN
1987 || GET_CODE (x
) == CODE_LABEL
1988 || GET_CODE (x
) == BARRIER
)
1990 error ("in basic block %d:", bb
->index
);
1991 fatal_insn ("flow control insn inside a basic block", x
);
1996 /* Complete edge checksumming for ENTRY and EXIT. */
2000 for (e
= ENTRY_BLOCK_PTR
->succ
; e
; e
= e
->succ_next
)
2001 edge_checksum
[e
->dest
->index
+ 2] += (size_t) e
;
2003 for (e
= EXIT_BLOCK_PTR
->pred
; e
; e
= e
->pred_next
)
2004 edge_checksum
[e
->dest
->index
+ 2] -= (size_t) e
;
2007 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR
, NULL
, next_bb
)
2008 if (edge_checksum
[bb
->index
+ 2])
2010 error ("basic block %i edge lists are corrupted", bb
->index
);
2015 last_bb_seen
= ENTRY_BLOCK_PTR
;
2017 for (x
= rtx_first
; x
; x
= NEXT_INSN (x
))
2019 if (NOTE_INSN_BASIC_BLOCK_P (x
))
2021 bb
= NOTE_BASIC_BLOCK (x
);
2024 if (bb
!= last_bb_seen
->next_bb
)
2025 internal_error ("basic blocks not numbered consecutively");
2030 if (!bb_info
[INSN_UID (x
)])
2032 switch (GET_CODE (x
))
2039 /* An addr_vec is placed outside any block block. */
2041 && GET_CODE (NEXT_INSN (x
)) == JUMP_INSN
2042 && (GET_CODE (PATTERN (NEXT_INSN (x
))) == ADDR_DIFF_VEC
2043 || GET_CODE (PATTERN (NEXT_INSN (x
))) == ADDR_VEC
))
2046 /* But in any case, non-deletable labels can appear anywhere. */
2050 fatal_insn ("insn outside basic block", x
);
2055 && GET_CODE (x
) == JUMP_INSN
2056 && returnjump_p (x
) && ! condjump_p (x
)
2057 && ! (NEXT_INSN (x
) && GET_CODE (NEXT_INSN (x
)) == BARRIER
))
2058 fatal_insn ("return not followed by barrier", x
);
2061 if (num_bb_notes
!= n_basic_blocks
)
2063 ("number of bb notes in insn chain (%d) != n_basic_blocks (%d)",
2064 num_bb_notes
, n_basic_blocks
);
2067 internal_error ("verify_flow_info failed");
2071 free (last_visited
);
2072 free (edge_checksum
);
2075 /* Assume that the preceding pass has possibly eliminated jump instructions
2076 or converted the unconditional jumps. Eliminate the edges from CFG.
2077 Return true if any edges are eliminated. */
2080 purge_dead_edges (bb
)
2084 rtx insn
= bb
->end
, note
;
2085 bool purged
= false;
2087 /* If this instruction cannot trap, remove REG_EH_REGION notes. */
2088 if (GET_CODE (insn
) == INSN
2089 && (note
= find_reg_note (insn
, REG_EH_REGION
, NULL
)))
2093 if (! may_trap_p (PATTERN (insn
))
2094 || ((eqnote
= find_reg_equal_equiv_note (insn
))
2095 && ! may_trap_p (XEXP (eqnote
, 0))))
2096 remove_note (insn
, note
);
2099 /* Cleanup abnormal edges caused by exceptions or non-local gotos. */
2100 for (e
= bb
->succ
; e
; e
= next
)
2102 next
= e
->succ_next
;
2103 if (e
->flags
& EDGE_EH
)
2105 if (can_throw_internal (bb
->end
))
2108 else if (e
->flags
& EDGE_ABNORMAL_CALL
)
2110 if (GET_CODE (bb
->end
) == CALL_INSN
2111 && (! (note
= find_reg_note (insn
, REG_EH_REGION
, NULL
))
2112 || INTVAL (XEXP (note
, 0)) >= 0))
2119 bb
->flags
|= BB_DIRTY
;
2123 if (GET_CODE (insn
) == JUMP_INSN
)
2128 /* We do care only about conditional jumps and simplejumps. */
2129 if (!any_condjump_p (insn
)
2130 && !returnjump_p (insn
)
2131 && !simplejump_p (insn
))
2134 /* Branch probability/prediction notes are defined only for
2135 condjumps. We've possibly turned condjump into simplejump. */
2136 if (simplejump_p (insn
))
2138 note
= find_reg_note (insn
, REG_BR_PROB
, NULL
);
2140 remove_note (insn
, note
);
2141 while ((note
= find_reg_note (insn
, REG_BR_PRED
, NULL
)))
2142 remove_note (insn
, note
);
2145 for (e
= bb
->succ
; e
; e
= next
)
2147 next
= e
->succ_next
;
2149 /* Avoid abnormal flags to leak from computed jumps turned
2150 into simplejumps. */
2152 e
->flags
&= ~EDGE_ABNORMAL
;
2154 /* See if this edge is one we should keep. */
2155 if ((e
->flags
& EDGE_FALLTHRU
) && any_condjump_p (insn
))
2156 /* A conditional jump can fall through into the next
2157 block, so we should keep the edge. */
2159 else if (e
->dest
!= EXIT_BLOCK_PTR
2160 && e
->dest
->head
== JUMP_LABEL (insn
))
2161 /* If the destination block is the target of the jump,
2164 else if (e
->dest
== EXIT_BLOCK_PTR
&& returnjump_p (insn
))
2165 /* If the destination block is the exit block, and this
2166 instruction is a return, then keep the edge. */
2168 else if ((e
->flags
& EDGE_EH
) && can_throw_internal (insn
))
2169 /* Keep the edges that correspond to exceptions thrown by
2170 this instruction. */
2173 /* We do not need this edge. */
2174 bb
->flags
|= BB_DIRTY
;
2179 if (!bb
->succ
|| !purged
)
2183 fprintf (rtl_dump_file
, "Purged edges from bb %i\n", bb
->index
);
2188 /* Redistribute probabilities. */
2189 if (!bb
->succ
->succ_next
)
2191 bb
->succ
->probability
= REG_BR_PROB_BASE
;
2192 bb
->succ
->count
= bb
->count
;
2196 note
= find_reg_note (insn
, REG_BR_PROB
, NULL
);
2200 b
= BRANCH_EDGE (bb
);
2201 f
= FALLTHRU_EDGE (bb
);
2202 b
->probability
= INTVAL (XEXP (note
, 0));
2203 f
->probability
= REG_BR_PROB_BASE
- b
->probability
;
2204 b
->count
= bb
->count
* b
->probability
/ REG_BR_PROB_BASE
;
2205 f
->count
= bb
->count
* f
->probability
/ REG_BR_PROB_BASE
;
2211 /* If we don't see a jump insn, we don't know exactly why the block would
2212 have been broken at this point. Look for a simple, non-fallthru edge,
2213 as these are only created by conditional branches. If we find such an
2214 edge we know that there used to be a jump here and can then safely
2215 remove all non-fallthru edges. */
2216 for (e
= bb
->succ
; e
&& (e
->flags
& (EDGE_COMPLEX
| EDGE_FALLTHRU
));
2223 for (e
= bb
->succ
; e
; e
= next
)
2225 next
= e
->succ_next
;
2226 if (!(e
->flags
& EDGE_FALLTHRU
))
2228 bb
->flags
|= BB_DIRTY
;
2234 if (!bb
->succ
|| bb
->succ
->succ_next
)
2237 bb
->succ
->probability
= REG_BR_PROB_BASE
;
2238 bb
->succ
->count
= bb
->count
;
2241 fprintf (rtl_dump_file
, "Purged non-fallthru edges from bb %i\n",
2246 /* Search all basic blocks for potentially dead edges and purge them. Return
2247 true if some edge has been eliminated. */
2250 purge_all_dead_edges (update_life_p
)
2259 blocks
= sbitmap_alloc (last_basic_block
);
2260 sbitmap_zero (blocks
);
2265 bool purged_here
= purge_dead_edges (bb
);
2267 purged
|= purged_here
;
2268 if (purged_here
&& update_life_p
)
2269 SET_BIT (blocks
, bb
->index
);
2272 if (update_life_p
&& purged
)
2273 update_life_info (blocks
, UPDATE_LIFE_GLOBAL
,
2274 PROP_DEATH_NOTES
| PROP_SCAN_DEAD_CODE
2275 | PROP_KILL_DEAD_CODE
);
2278 sbitmap_free (blocks
);