1 /* Hooks for cfg representation specific functions.
2 Copyright (C) 2003-2015 Free Software Foundation, Inc.
3 Contributed by Sebastian Pop <s.pop@laposte.net>
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
23 #include "coretypes.h"
28 #include "pretty-print.h"
29 #include "diagnostic-core.h"
35 /* A pointer to one of the hooks containers. */
36 static struct cfg_hooks
*cfg_hooks
;
38 /* Initialization of functions specific to the rtl IR. */
40 rtl_register_cfg_hooks (void)
42 cfg_hooks
= &rtl_cfg_hooks
;
45 /* Initialization of functions specific to the rtl IR. */
47 cfg_layout_rtl_register_cfg_hooks (void)
49 cfg_hooks
= &cfg_layout_rtl_cfg_hooks
;
52 /* Initialization of functions specific to the tree IR. */
55 gimple_register_cfg_hooks (void)
57 cfg_hooks
= &gimple_cfg_hooks
;
67 set_cfg_hooks (struct cfg_hooks new_cfg_hooks
)
69 *cfg_hooks
= new_cfg_hooks
;
72 /* Returns current ir type. */
75 current_ir_type (void)
77 if (cfg_hooks
== &gimple_cfg_hooks
)
79 else if (cfg_hooks
== &rtl_cfg_hooks
)
81 else if (cfg_hooks
== &cfg_layout_rtl_cfg_hooks
)
82 return IR_RTL_CFGLAYOUT
;
87 /* Verify the CFG consistency.
89 Currently it does following: checks edge and basic block list correctness
90 and calls into IL dependent checking then. */
93 verify_flow_info (void)
95 size_t *edge_checksum
;
97 basic_block bb
, last_bb_seen
;
98 basic_block
*last_visited
;
100 timevar_push (TV_CFG_VERIFY
);
101 last_visited
= XCNEWVEC (basic_block
, last_basic_block_for_fn (cfun
));
102 edge_checksum
= XCNEWVEC (size_t, last_basic_block_for_fn (cfun
));
104 /* Check bb chain & numbers. */
105 last_bb_seen
= ENTRY_BLOCK_PTR_FOR_FN (cfun
);
106 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
, NULL
, next_bb
)
108 if (bb
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
109 && bb
!= BASIC_BLOCK_FOR_FN (cfun
, bb
->index
))
111 error ("bb %d on wrong place", bb
->index
);
115 if (bb
->prev_bb
!= last_bb_seen
)
117 error ("prev_bb of %d should be %d, not %d",
118 bb
->index
, last_bb_seen
->index
, bb
->prev_bb
->index
);
125 /* Now check the basic blocks (boundaries etc.) */
126 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
132 if (bb
->loop_father
!= NULL
&& current_loops
== NULL
)
134 error ("verify_flow_info: Block %i has loop_father, but there are no loops",
138 if (bb
->loop_father
== NULL
&& current_loops
!= NULL
)
140 error ("verify_flow_info: Block %i lacks loop_father", bb
->index
);
146 error ("verify_flow_info: Wrong count of block %i %i",
147 bb
->index
, (int)bb
->count
);
150 if (bb
->frequency
< 0)
152 error ("verify_flow_info: Wrong frequency of block %i %i",
153 bb
->index
, bb
->frequency
);
156 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
158 if (last_visited
[e
->dest
->index
] == bb
)
160 error ("verify_flow_info: Duplicate edge %i->%i",
161 e
->src
->index
, e
->dest
->index
);
164 if (e
->probability
< 0 || e
->probability
> REG_BR_PROB_BASE
)
166 error ("verify_flow_info: Wrong probability of edge %i->%i %i",
167 e
->src
->index
, e
->dest
->index
, e
->probability
);
172 error ("verify_flow_info: Wrong count of edge %i->%i %i",
173 e
->src
->index
, e
->dest
->index
, (int)e
->count
);
177 last_visited
[e
->dest
->index
] = bb
;
179 if (e
->flags
& EDGE_FALLTHRU
)
184 error ("verify_flow_info: Basic block %d succ edge is corrupted",
186 fprintf (stderr
, "Predecessor: ");
187 dump_edge_info (stderr
, e
, TDF_DETAILS
, 0);
188 fprintf (stderr
, "\nSuccessor: ");
189 dump_edge_info (stderr
, e
, TDF_DETAILS
, 1);
190 fprintf (stderr
, "\n");
194 edge_checksum
[e
->dest
->index
] += (size_t) e
;
198 error ("wrong amount of branch edges after unconditional jump %i", bb
->index
);
202 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
206 error ("basic block %d pred edge is corrupted", bb
->index
);
207 fputs ("Predecessor: ", stderr
);
208 dump_edge_info (stderr
, e
, TDF_DETAILS
, 0);
209 fputs ("\nSuccessor: ", stderr
);
210 dump_edge_info (stderr
, e
, TDF_DETAILS
, 1);
211 fputc ('\n', stderr
);
215 if (ei
.index
!= e
->dest_idx
)
217 error ("basic block %d pred edge is corrupted", bb
->index
);
218 error ("its dest_idx should be %d, not %d",
219 ei
.index
, e
->dest_idx
);
220 fputs ("Predecessor: ", stderr
);
221 dump_edge_info (stderr
, e
, TDF_DETAILS
, 0);
222 fputs ("\nSuccessor: ", stderr
);
223 dump_edge_info (stderr
, e
, TDF_DETAILS
, 1);
224 fputc ('\n', stderr
);
228 edge_checksum
[e
->dest
->index
] -= (size_t) e
;
232 /* Complete edge checksumming for ENTRY and EXIT. */
237 FOR_EACH_EDGE (e
, ei
, ENTRY_BLOCK_PTR_FOR_FN (cfun
)->succs
)
238 edge_checksum
[e
->dest
->index
] += (size_t) e
;
240 FOR_EACH_EDGE (e
, ei
, EXIT_BLOCK_PTR_FOR_FN (cfun
)->preds
)
241 edge_checksum
[e
->dest
->index
] -= (size_t) e
;
244 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR_FOR_FN (cfun
), NULL
, next_bb
)
245 if (edge_checksum
[bb
->index
])
247 error ("basic block %i edge lists are corrupted", bb
->index
);
251 last_bb_seen
= ENTRY_BLOCK_PTR_FOR_FN (cfun
);
255 free (edge_checksum
);
257 if (cfg_hooks
->verify_flow_info
)
258 err
|= cfg_hooks
->verify_flow_info ();
260 internal_error ("verify_flow_info failed");
261 timevar_pop (TV_CFG_VERIFY
);
264 /* Print out one basic block BB to file OUTF. INDENT is printed at the
265 start of each new line. FLAGS are the TDF_* flags in dumpfile.h.
267 This function takes care of the purely graph related information.
268 The cfg hook for the active representation should dump
269 representation-specific information. */
272 dump_bb (FILE *outf
, basic_block bb
, int indent
, int flags
)
274 if (flags
& TDF_BLOCKS
)
275 dump_bb_info (outf
, bb
, indent
, flags
, true, false);
276 if (cfg_hooks
->dump_bb
)
277 cfg_hooks
->dump_bb (outf
, bb
, indent
, flags
);
278 if (flags
& TDF_BLOCKS
)
279 dump_bb_info (outf
, bb
, indent
, flags
, false, true);
284 debug (basic_block_def
&ref
)
286 dump_bb (stderr
, &ref
, 0, 0);
290 debug (basic_block_def
*ptr
)
295 fprintf (stderr
, "<nil>\n");
299 /* Dumps basic block BB to pretty-printer PP, for use as a label of
300 a DOT graph record-node. The implementation of this hook is
301 expected to write the label to the stream that is attached to PP.
302 Field separators between instructions are pipe characters printed
303 verbatim. Instructions should be written with some characters
304 escaped, using pp_write_text_as_dot_label_to_stream(). */
307 dump_bb_for_graph (pretty_printer
*pp
, basic_block bb
)
309 if (!cfg_hooks
->dump_bb_for_graph
)
310 internal_error ("%s does not support dump_bb_for_graph",
313 pp_printf (pp
, "COUNT:" "%" PRId64
, bb
->count
);
314 pp_printf (pp
, " FREQ:%i |", bb
->frequency
);
315 pp_write_text_to_stream (pp
);
316 if (!(dump_flags
& TDF_SLIM
))
317 cfg_hooks
->dump_bb_for_graph (pp
, bb
);
320 /* Dump the complete CFG to FILE. FLAGS are the TDF_* flags in dumpfile.h. */
322 dump_flow_info (FILE *file
, int flags
)
326 fprintf (file
, "\n%d basic blocks, %d edges.\n", n_basic_blocks_for_fn (cfun
),
327 n_edges_for_fn (cfun
));
328 FOR_ALL_BB_FN (bb
, cfun
)
329 dump_bb (file
, bb
, 0, flags
);
334 /* Like above, but dump to stderr. To be called from debuggers. */
335 void debug_flow_info (void);
337 debug_flow_info (void)
339 dump_flow_info (stderr
, TDF_DETAILS
);
342 /* Redirect edge E to the given basic block DEST and update underlying program
343 representation. Returns edge representing redirected branch (that may not
344 be equivalent to E in the case of duplicate edges being removed) or NULL
345 if edge is not easily redirectable for whatever reason. */
348 redirect_edge_and_branch (edge e
, basic_block dest
)
352 if (!cfg_hooks
->redirect_edge_and_branch
)
353 internal_error ("%s does not support redirect_edge_and_branch",
356 ret
= cfg_hooks
->redirect_edge_and_branch (e
, dest
);
358 /* If RET != E, then either the redirection failed, or the edge E
359 was removed since RET already lead to the same destination. */
360 if (current_loops
!= NULL
&& ret
== e
)
361 rescan_loop_exit (e
, false, false);
366 /* Returns true if it is possible to remove the edge E by redirecting it
367 to the destination of the other edge going from its source. */
370 can_remove_branch_p (const_edge e
)
372 if (!cfg_hooks
->can_remove_branch_p
)
373 internal_error ("%s does not support can_remove_branch_p",
376 if (EDGE_COUNT (e
->src
->succs
) != 2)
379 return cfg_hooks
->can_remove_branch_p (e
);
382 /* Removes E, by redirecting it to the destination of the other edge going
383 from its source. Can_remove_branch_p must be true for E, hence this
384 operation cannot fail. */
387 remove_branch (edge e
)
390 basic_block src
= e
->src
;
393 gcc_assert (EDGE_COUNT (e
->src
->succs
) == 2);
395 other
= EDGE_SUCC (src
, EDGE_SUCC (src
, 0) == e
);
396 irr
= other
->flags
& EDGE_IRREDUCIBLE_LOOP
;
398 e
= redirect_edge_and_branch (e
, other
->dest
);
399 gcc_assert (e
!= NULL
);
401 e
->flags
&= ~EDGE_IRREDUCIBLE_LOOP
;
405 /* Removes edge E from cfg. Unlike remove_branch, it does not update IL. */
410 if (current_loops
!= NULL
)
411 rescan_loop_exit (e
, false, true);
413 /* This is probably not needed, but it doesn't hurt. */
414 /* FIXME: This should be called via a remove_edge hook. */
415 if (current_ir_type () == IR_GIMPLE
)
416 redirect_edge_var_map_clear (e
);
421 /* Like redirect_edge_succ but avoid possible duplicate edge. */
424 redirect_edge_succ_nodup (edge e
, basic_block new_succ
)
428 s
= find_edge (e
->src
, new_succ
);
431 s
->flags
|= e
->flags
;
432 s
->probability
+= e
->probability
;
433 if (s
->probability
> REG_BR_PROB_BASE
)
434 s
->probability
= REG_BR_PROB_BASE
;
435 s
->count
+= e
->count
;
436 /* FIXME: This should be called via a hook and only for IR_GIMPLE. */
437 redirect_edge_var_map_dup (s
, e
);
442 redirect_edge_succ (e
, new_succ
);
447 /* Redirect the edge E to basic block DEST even if it requires creating
448 of a new basic block; then it returns the newly created basic block.
449 Aborts when redirection is impossible. */
452 redirect_edge_and_branch_force (edge e
, basic_block dest
)
454 basic_block ret
, src
= e
->src
;
456 if (!cfg_hooks
->redirect_edge_and_branch_force
)
457 internal_error ("%s does not support redirect_edge_and_branch_force",
460 if (current_loops
!= NULL
)
461 rescan_loop_exit (e
, false, true);
463 ret
= cfg_hooks
->redirect_edge_and_branch_force (e
, dest
);
465 if (ret
!= NULL
&& dom_info_available_p (CDI_DOMINATORS
))
466 set_immediate_dominator (CDI_DOMINATORS
, ret
, src
);
468 if (current_loops
!= NULL
)
473 = find_common_loop (single_pred (ret
)->loop_father
,
474 single_succ (ret
)->loop_father
);
475 add_bb_to_loop (ret
, loop
);
477 else if (find_edge (src
, dest
) == e
)
478 rescan_loop_exit (e
, true, false);
484 /* Splits basic block BB after the specified instruction I (but at least after
485 the labels). If I is NULL, splits just after labels. The newly created edge
486 is returned. The new basic block is created just after the old one. */
489 split_block_1 (basic_block bb
, void *i
)
494 if (!cfg_hooks
->split_block
)
495 internal_error ("%s does not support split_block", cfg_hooks
->name
);
497 new_bb
= cfg_hooks
->split_block (bb
, i
);
501 new_bb
->count
= bb
->count
;
502 new_bb
->frequency
= bb
->frequency
;
503 new_bb
->discriminator
= bb
->discriminator
;
505 if (dom_info_available_p (CDI_DOMINATORS
))
507 redirect_immediate_dominators (CDI_DOMINATORS
, bb
, new_bb
);
508 set_immediate_dominator (CDI_DOMINATORS
, new_bb
, bb
);
511 if (current_loops
!= NULL
)
515 add_bb_to_loop (new_bb
, bb
->loop_father
);
516 /* Identify all loops bb may have been the latch of and adjust them. */
517 FOR_EACH_EDGE (e
, ei
, new_bb
->succs
)
518 if (e
->dest
->loop_father
->latch
== bb
)
519 e
->dest
->loop_father
->latch
= new_bb
;
522 res
= make_single_succ_edge (bb
, new_bb
, EDGE_FALLTHRU
);
524 if (bb
->flags
& BB_IRREDUCIBLE_LOOP
)
526 new_bb
->flags
|= BB_IRREDUCIBLE_LOOP
;
527 res
->flags
|= EDGE_IRREDUCIBLE_LOOP
;
534 split_block (basic_block bb
, gimple
*i
)
536 return split_block_1 (bb
, i
);
540 split_block (basic_block bb
, rtx i
)
542 return split_block_1 (bb
, i
);
545 /* Splits block BB just after labels. The newly created edge is returned. */
548 split_block_after_labels (basic_block bb
)
550 return split_block_1 (bb
, NULL
);
553 /* Moves block BB immediately after block AFTER. Returns false if the
554 movement was impossible. */
557 move_block_after (basic_block bb
, basic_block after
)
561 if (!cfg_hooks
->move_block_after
)
562 internal_error ("%s does not support move_block_after", cfg_hooks
->name
);
564 ret
= cfg_hooks
->move_block_after (bb
, after
);
569 /* Deletes the basic block BB. */
572 delete_basic_block (basic_block bb
)
574 if (!cfg_hooks
->delete_basic_block
)
575 internal_error ("%s does not support delete_basic_block", cfg_hooks
->name
);
577 cfg_hooks
->delete_basic_block (bb
);
579 if (current_loops
!= NULL
)
581 struct loop
*loop
= bb
->loop_father
;
583 /* If we remove the header or the latch of a loop, mark the loop for
585 if (loop
->latch
== bb
586 || loop
->header
== bb
)
587 mark_loop_for_removal (loop
);
589 remove_bb_from_loops (bb
);
592 /* Remove the edges into and out of this block. Note that there may
593 indeed be edges in, if we are removing an unreachable loop. */
594 while (EDGE_COUNT (bb
->preds
) != 0)
595 remove_edge (EDGE_PRED (bb
, 0));
596 while (EDGE_COUNT (bb
->succs
) != 0)
597 remove_edge (EDGE_SUCC (bb
, 0));
599 if (dom_info_available_p (CDI_DOMINATORS
))
600 delete_from_dominance_info (CDI_DOMINATORS
, bb
);
601 if (dom_info_available_p (CDI_POST_DOMINATORS
))
602 delete_from_dominance_info (CDI_POST_DOMINATORS
, bb
);
604 /* Remove the basic block from the array. */
608 /* Splits edge E and returns the newly created basic block. */
614 gcov_type count
= e
->count
;
615 int freq
= EDGE_FREQUENCY (e
);
617 bool irr
= (e
->flags
& EDGE_IRREDUCIBLE_LOOP
) != 0;
619 basic_block src
= e
->src
, dest
= e
->dest
;
621 if (!cfg_hooks
->split_edge
)
622 internal_error ("%s does not support split_edge", cfg_hooks
->name
);
624 if (current_loops
!= NULL
)
625 rescan_loop_exit (e
, false, true);
627 ret
= cfg_hooks
->split_edge (e
);
629 ret
->frequency
= freq
;
630 single_succ_edge (ret
)->probability
= REG_BR_PROB_BASE
;
631 single_succ_edge (ret
)->count
= count
;
635 ret
->flags
|= BB_IRREDUCIBLE_LOOP
;
636 single_pred_edge (ret
)->flags
|= EDGE_IRREDUCIBLE_LOOP
;
637 single_succ_edge (ret
)->flags
|= EDGE_IRREDUCIBLE_LOOP
;
640 if (dom_info_available_p (CDI_DOMINATORS
))
641 set_immediate_dominator (CDI_DOMINATORS
, ret
, single_pred (ret
));
643 if (dom_info_state (CDI_DOMINATORS
) >= DOM_NO_FAST_QUERY
)
645 /* There are two cases:
647 If the immediate dominator of e->dest is not e->src, it
650 If immediate dominator of e->dest is e->src, it may become
651 ret, provided that all other predecessors of e->dest are
652 dominated by e->dest. */
654 if (get_immediate_dominator (CDI_DOMINATORS
, single_succ (ret
))
655 == single_pred (ret
))
658 FOR_EACH_EDGE (f
, ei
, single_succ (ret
)->preds
)
660 if (f
== single_succ_edge (ret
))
663 if (!dominated_by_p (CDI_DOMINATORS
, f
->src
,
669 set_immediate_dominator (CDI_DOMINATORS
, single_succ (ret
), ret
);
673 if (current_loops
!= NULL
)
675 loop
= find_common_loop (src
->loop_father
, dest
->loop_father
);
676 add_bb_to_loop (ret
, loop
);
678 /* If we split the latch edge of loop adjust the latch block. */
679 if (loop
->latch
== src
680 && loop
->header
== dest
)
687 /* Creates a new basic block just after the basic block AFTER.
688 HEAD and END are the first and the last statement belonging
689 to the block. If both are NULL, an empty block is created. */
692 create_basic_block_1 (void *head
, void *end
, basic_block after
)
696 if (!cfg_hooks
->create_basic_block
)
697 internal_error ("%s does not support create_basic_block", cfg_hooks
->name
);
699 ret
= cfg_hooks
->create_basic_block (head
, end
, after
);
701 if (dom_info_available_p (CDI_DOMINATORS
))
702 add_to_dominance_info (CDI_DOMINATORS
, ret
);
703 if (dom_info_available_p (CDI_POST_DOMINATORS
))
704 add_to_dominance_info (CDI_POST_DOMINATORS
, ret
);
710 create_basic_block (gimple_seq seq
, basic_block after
)
712 return create_basic_block_1 (seq
, NULL
, after
);
716 create_basic_block (rtx head
, rtx end
, basic_block after
)
718 return create_basic_block_1 (head
, end
, after
);
722 /* Creates an empty basic block just after basic block AFTER. */
725 create_empty_bb (basic_block after
)
727 return create_basic_block_1 (NULL
, NULL
, after
);
730 /* Checks whether we may merge blocks BB1 and BB2. */
733 can_merge_blocks_p (basic_block bb1
, basic_block bb2
)
737 if (!cfg_hooks
->can_merge_blocks_p
)
738 internal_error ("%s does not support can_merge_blocks_p", cfg_hooks
->name
);
740 ret
= cfg_hooks
->can_merge_blocks_p (bb1
, bb2
);
746 predict_edge (edge e
, enum br_predictor predictor
, int probability
)
748 if (!cfg_hooks
->predict_edge
)
749 internal_error ("%s does not support predict_edge", cfg_hooks
->name
);
751 cfg_hooks
->predict_edge (e
, predictor
, probability
);
755 predicted_by_p (const_basic_block bb
, enum br_predictor predictor
)
757 if (!cfg_hooks
->predict_edge
)
758 internal_error ("%s does not support predicted_by_p", cfg_hooks
->name
);
760 return cfg_hooks
->predicted_by_p (bb
, predictor
);
763 /* Merges basic block B into basic block A. */
766 merge_blocks (basic_block a
, basic_block b
)
771 if (!cfg_hooks
->merge_blocks
)
772 internal_error ("%s does not support merge_blocks", cfg_hooks
->name
);
774 cfg_hooks
->merge_blocks (a
, b
);
776 if (current_loops
!= NULL
)
778 /* If the block we merge into is a loop header do nothing unless ... */
779 if (a
->loop_father
->header
== a
)
781 /* ... we merge two loop headers, in which case we kill
783 if (b
->loop_father
->header
== b
)
784 mark_loop_for_removal (b
->loop_father
);
786 /* If we merge a loop header into its predecessor, update the loop
788 else if (b
->loop_father
->header
== b
)
790 remove_bb_from_loops (a
);
791 add_bb_to_loop (a
, b
->loop_father
);
792 a
->loop_father
->header
= a
;
794 /* If we merge a loop latch into its predecessor, update the loop
796 if (b
->loop_father
->latch
797 && b
->loop_father
->latch
== b
)
798 b
->loop_father
->latch
= a
;
799 remove_bb_from_loops (b
);
802 /* Normally there should only be one successor of A and that is B, but
803 partway though the merge of blocks for conditional_execution we'll
804 be merging a TEST block with THEN and ELSE successors. Free the
805 whole lot of them and hope the caller knows what they're doing. */
807 while (EDGE_COUNT (a
->succs
) != 0)
808 remove_edge (EDGE_SUCC (a
, 0));
810 /* Adjust the edges out of B for the new owner. */
811 FOR_EACH_EDGE (e
, ei
, b
->succs
)
814 if (current_loops
!= NULL
)
816 /* If b was a latch, a now is. */
817 if (e
->dest
->loop_father
->latch
== b
)
818 e
->dest
->loop_father
->latch
= a
;
819 rescan_loop_exit (e
, true, false);
823 a
->flags
|= b
->flags
;
825 /* B hasn't quite yet ceased to exist. Attempt to prevent mishap. */
826 b
->preds
= b
->succs
= NULL
;
828 if (dom_info_available_p (CDI_DOMINATORS
))
829 redirect_immediate_dominators (CDI_DOMINATORS
, b
, a
);
831 if (dom_info_available_p (CDI_DOMINATORS
))
832 delete_from_dominance_info (CDI_DOMINATORS
, b
);
833 if (dom_info_available_p (CDI_POST_DOMINATORS
))
834 delete_from_dominance_info (CDI_POST_DOMINATORS
, b
);
839 /* Split BB into entry part and the rest (the rest is the newly created block).
840 Redirect those edges for that REDIRECT_EDGE_P returns true to the entry
841 part. Returns the edge connecting the entry part to the rest. */
844 make_forwarder_block (basic_block bb
, bool (*redirect_edge_p
) (edge
),
845 void (*new_bb_cbk
) (basic_block
))
849 basic_block dummy
, jump
;
850 struct loop
*loop
, *ploop
, *cloop
;
852 if (!cfg_hooks
->make_forwarder_block
)
853 internal_error ("%s does not support make_forwarder_block",
856 fallthru
= split_block_after_labels (bb
);
857 dummy
= fallthru
->src
;
859 dummy
->frequency
= 0;
863 /* Redirect back edges we want to keep. */
864 for (ei
= ei_start (dummy
->preds
); (e
= ei_safe_edge (ei
)); )
868 if (redirect_edge_p (e
))
870 dummy
->frequency
+= EDGE_FREQUENCY (e
);
871 if (dummy
->frequency
> BB_FREQ_MAX
)
872 dummy
->frequency
= BB_FREQ_MAX
;
874 dummy
->count
+= e
->count
;
875 fallthru
->count
+= e
->count
;
881 jump
= redirect_edge_and_branch_force (e
, bb
);
884 /* If we redirected the loop latch edge, the JUMP block now acts like
885 the new latch of the loop. */
886 if (current_loops
!= NULL
887 && dummy
->loop_father
!= NULL
888 && dummy
->loop_father
->header
== dummy
889 && dummy
->loop_father
->latch
== e_src
)
890 dummy
->loop_father
->latch
= jump
;
892 if (new_bb_cbk
!= NULL
)
897 if (dom_info_available_p (CDI_DOMINATORS
))
899 vec
<basic_block
> doms_to_fix
;
900 doms_to_fix
.create (2);
901 doms_to_fix
.quick_push (dummy
);
902 doms_to_fix
.quick_push (bb
);
903 iterate_fix_dominators (CDI_DOMINATORS
, doms_to_fix
, false);
904 doms_to_fix
.release ();
907 if (current_loops
!= NULL
)
909 /* If we do not split a loop header, then both blocks belong to the
910 same loop. In case we split loop header and do not redirect the
911 latch edge to DUMMY, then DUMMY belongs to the outer loop, and
912 BB becomes the new header. If latch is not recorded for the loop,
913 we leave this updating on the caller (this may only happen during
915 loop
= dummy
->loop_father
;
916 if (loop
->header
== dummy
917 && loop
->latch
!= NULL
918 && find_edge (loop
->latch
, dummy
) == NULL
)
920 remove_bb_from_loops (dummy
);
924 FOR_EACH_EDGE (e
, ei
, dummy
->preds
)
926 cloop
= find_common_loop (cloop
, e
->src
->loop_father
);
928 add_bb_to_loop (dummy
, cloop
);
931 /* In case we split loop latch, update it. */
932 for (ploop
= loop
; ploop
; ploop
= loop_outer (ploop
))
933 if (ploop
->latch
== dummy
)
937 cfg_hooks
->make_forwarder_block (fallthru
);
942 /* Try to make the edge fallthru. */
945 tidy_fallthru_edge (edge e
)
947 if (cfg_hooks
->tidy_fallthru_edge
)
948 cfg_hooks
->tidy_fallthru_edge (e
);
951 /* Fix up edges that now fall through, or rather should now fall through
952 but previously required a jump around now deleted blocks. Simplify
953 the search by only examining blocks numerically adjacent, since this
954 is how they were created.
956 ??? This routine is currently RTL specific. */
959 tidy_fallthru_edges (void)
963 if (!cfg_hooks
->tidy_fallthru_edge
)
966 if (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
969 FOR_BB_BETWEEN (b
, ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
,
970 EXIT_BLOCK_PTR_FOR_FN (cfun
)->prev_bb
, next_bb
)
976 /* We care about simple conditional or unconditional jumps with
979 If we had a conditional branch to the next instruction when
980 CFG was built, then there will only be one out edge for the
981 block which ended with the conditional branch (since we do
982 not create duplicate edges).
984 Furthermore, the edge will be marked as a fallthru because we
985 merge the flags for the duplicate edges. So we do not want to
986 check that the edge is not a FALLTHRU edge. */
988 if (single_succ_p (b
))
990 s
= single_succ_edge (b
);
991 if (! (s
->flags
& EDGE_COMPLEX
)
993 && !(JUMP_P (BB_END (b
)) && CROSSING_JUMP_P (BB_END (b
))))
994 tidy_fallthru_edge (s
);
999 /* Edge E is assumed to be fallthru edge. Emit needed jump instruction
1000 (and possibly create new basic block) to make edge non-fallthru.
1001 Return newly created BB or NULL if none. */
1004 force_nonfallthru (edge e
)
1006 basic_block ret
, src
= e
->src
;
1008 if (!cfg_hooks
->force_nonfallthru
)
1009 internal_error ("%s does not support force_nonfallthru",
1012 ret
= cfg_hooks
->force_nonfallthru (e
);
1015 if (dom_info_available_p (CDI_DOMINATORS
))
1016 set_immediate_dominator (CDI_DOMINATORS
, ret
, src
);
1018 if (current_loops
!= NULL
)
1021 = find_common_loop (single_pred (ret
)->loop_father
,
1022 single_succ (ret
)->loop_father
);
1023 rescan_loop_exit (e
, false, true);
1024 add_bb_to_loop (ret
, loop
);
1031 /* Returns true if we can duplicate basic block BB. */
1034 can_duplicate_block_p (const_basic_block bb
)
1036 if (!cfg_hooks
->can_duplicate_block_p
)
1037 internal_error ("%s does not support can_duplicate_block_p",
1040 if (bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
) || bb
== ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1043 return cfg_hooks
->can_duplicate_block_p (bb
);
1046 /* Duplicates basic block BB and redirects edge E to it. Returns the
1047 new basic block. The new basic block is placed after the basic block
1051 duplicate_block (basic_block bb
, edge e
, basic_block after
)
1055 gcov_type new_count
= e
? e
->count
: 0;
1058 if (!cfg_hooks
->duplicate_block
)
1059 internal_error ("%s does not support duplicate_block",
1062 if (bb
->count
< new_count
)
1063 new_count
= bb
->count
;
1065 gcc_checking_assert (can_duplicate_block_p (bb
));
1067 new_bb
= cfg_hooks
->duplicate_block (bb
);
1069 move_block_after (new_bb
, after
);
1071 new_bb
->flags
= bb
->flags
;
1072 FOR_EACH_EDGE (s
, ei
, bb
->succs
)
1074 /* Since we are creating edges from a new block to successors
1075 of another block (which therefore are known to be disjoint), there
1076 is no need to actually check for duplicated edges. */
1077 n
= unchecked_make_edge (new_bb
, s
->dest
, s
->flags
);
1078 n
->probability
= s
->probability
;
1081 /* Take care for overflows! */
1082 n
->count
= s
->count
* (new_count
* 10000 / bb
->count
) / 10000;
1083 s
->count
-= n
->count
;
1086 n
->count
= s
->count
;
1092 new_bb
->count
= new_count
;
1093 bb
->count
-= new_count
;
1095 new_bb
->frequency
= EDGE_FREQUENCY (e
);
1096 bb
->frequency
-= EDGE_FREQUENCY (e
);
1098 redirect_edge_and_branch_force (e
, new_bb
);
1102 if (bb
->frequency
< 0)
1107 new_bb
->count
= bb
->count
;
1108 new_bb
->frequency
= bb
->frequency
;
1111 set_bb_original (new_bb
, bb
);
1112 set_bb_copy (bb
, new_bb
);
1114 /* Add the new block to the copy of the loop of BB, or directly to the loop
1115 of BB if the loop is not being copied. */
1116 if (current_loops
!= NULL
)
1118 struct loop
*cloop
= bb
->loop_father
;
1119 struct loop
*copy
= get_loop_copy (cloop
);
1120 /* If we copied the loop header block but not the loop
1121 we have created a loop with multiple entries. Ditch the loop,
1122 add the new block to the outer loop and arrange for a fixup. */
1124 && cloop
->header
== bb
)
1126 add_bb_to_loop (new_bb
, loop_outer (cloop
));
1127 mark_loop_for_removal (cloop
);
1131 add_bb_to_loop (new_bb
, copy
? copy
: cloop
);
1132 /* If we copied the loop latch block but not the loop, adjust
1135 && cloop
->latch
== bb
)
1137 cloop
->latch
= NULL
;
1138 loops_state_set (LOOPS_MAY_HAVE_MULTIPLE_LATCHES
);
1146 /* Return 1 if BB ends with a call, possibly followed by some
1147 instructions that must stay with the call, 0 otherwise. */
1150 block_ends_with_call_p (basic_block bb
)
1152 if (!cfg_hooks
->block_ends_with_call_p
)
1153 internal_error ("%s does not support block_ends_with_call_p", cfg_hooks
->name
);
1155 return (cfg_hooks
->block_ends_with_call_p
) (bb
);
1158 /* Return 1 if BB ends with a conditional branch, 0 otherwise. */
1161 block_ends_with_condjump_p (const_basic_block bb
)
1163 if (!cfg_hooks
->block_ends_with_condjump_p
)
1164 internal_error ("%s does not support block_ends_with_condjump_p",
1167 return (cfg_hooks
->block_ends_with_condjump_p
) (bb
);
1170 /* Add fake edges to the function exit for any non constant and non noreturn
1171 calls, volatile inline assembly in the bitmap of blocks specified by
1172 BLOCKS or to the whole CFG if BLOCKS is zero. Return the number of blocks
1175 The goal is to expose cases in which entering a basic block does not imply
1176 that all subsequent instructions must be executed. */
1179 flow_call_edges_add (sbitmap blocks
)
1181 if (!cfg_hooks
->flow_call_edges_add
)
1182 internal_error ("%s does not support flow_call_edges_add",
1185 return (cfg_hooks
->flow_call_edges_add
) (blocks
);
1188 /* This function is called immediately after edge E is added to the
1189 edge vector E->dest->preds. */
1192 execute_on_growing_pred (edge e
)
1194 if (cfg_hooks
->execute_on_growing_pred
)
1195 cfg_hooks
->execute_on_growing_pred (e
);
1198 /* This function is called immediately before edge E is removed from
1199 the edge vector E->dest->preds. */
1202 execute_on_shrinking_pred (edge e
)
1204 if (cfg_hooks
->execute_on_shrinking_pred
)
1205 cfg_hooks
->execute_on_shrinking_pred (e
);
1208 /* This is used inside loop versioning when we want to insert
1209 stmts/insns on the edges, which have a different behavior
1210 in tree's and in RTL, so we made a CFG hook. */
1212 lv_flush_pending_stmts (edge e
)
1214 if (cfg_hooks
->flush_pending_stmts
)
1215 cfg_hooks
->flush_pending_stmts (e
);
1218 /* Loop versioning uses the duplicate_loop_to_header_edge to create
1219 a new version of the loop basic-blocks, the parameters here are
1220 exactly the same as in duplicate_loop_to_header_edge or
1221 tree_duplicate_loop_to_header_edge; while in tree-ssa there is
1222 additional work to maintain ssa information that's why there is
1223 a need to call the tree_duplicate_loop_to_header_edge rather
1224 than duplicate_loop_to_header_edge when we are in tree mode. */
1226 cfg_hook_duplicate_loop_to_header_edge (struct loop
*loop
, edge e
,
1228 sbitmap wont_exit
, edge orig
,
1229 vec
<edge
> *to_remove
,
1232 gcc_assert (cfg_hooks
->cfg_hook_duplicate_loop_to_header_edge
);
1233 return cfg_hooks
->cfg_hook_duplicate_loop_to_header_edge (loop
, e
,
1239 /* Conditional jumps are represented differently in trees and RTL,
1240 this hook takes a basic block that is known to have a cond jump
1241 at its end and extracts the taken and not taken edges out of it
1242 and store it in E1 and E2 respectively. */
1244 extract_cond_bb_edges (basic_block b
, edge
*e1
, edge
*e2
)
1246 gcc_assert (cfg_hooks
->extract_cond_bb_edges
);
1247 cfg_hooks
->extract_cond_bb_edges (b
, e1
, e2
);
1250 /* Responsible for updating the ssa info (PHI nodes) on the
1251 new condition basic block that guards the versioned loop. */
1253 lv_adjust_loop_header_phi (basic_block first
, basic_block second
,
1254 basic_block new_block
, edge e
)
1256 if (cfg_hooks
->lv_adjust_loop_header_phi
)
1257 cfg_hooks
->lv_adjust_loop_header_phi (first
, second
, new_block
, e
);
1260 /* Conditions in trees and RTL are different so we need
1261 a different handling when we add the condition to the
1264 lv_add_condition_to_bb (basic_block first
, basic_block second
,
1265 basic_block new_block
, void *cond
)
1267 gcc_assert (cfg_hooks
->lv_add_condition_to_bb
);
1268 cfg_hooks
->lv_add_condition_to_bb (first
, second
, new_block
, cond
);
1271 /* Checks whether all N blocks in BBS array can be copied. */
1273 can_copy_bbs_p (basic_block
*bbs
, unsigned n
)
1279 for (i
= 0; i
< n
; i
++)
1280 bbs
[i
]->flags
|= BB_DUPLICATED
;
1282 for (i
= 0; i
< n
; i
++)
1284 /* In case we should redirect abnormal edge during duplication, fail. */
1286 FOR_EACH_EDGE (e
, ei
, bbs
[i
]->succs
)
1287 if ((e
->flags
& EDGE_ABNORMAL
)
1288 && (e
->dest
->flags
& BB_DUPLICATED
))
1294 if (!can_duplicate_block_p (bbs
[i
]))
1302 for (i
= 0; i
< n
; i
++)
1303 bbs
[i
]->flags
&= ~BB_DUPLICATED
;
1308 /* Duplicates N basic blocks stored in array BBS. Newly created basic blocks
1309 are placed into array NEW_BBS in the same order. Edges from basic blocks
1310 in BBS are also duplicated and copies of those that lead into BBS are
1311 redirected to appropriate newly created block. The function assigns bbs
1312 into loops (copy of basic block bb is assigned to bb->loop_father->copy
1313 loop, so this must be set up correctly in advance)
1315 If UPDATE_DOMINANCE is true then this function updates dominators locally
1316 (LOOPS structure that contains the information about dominators is passed
1317 to enable this), otherwise it does not update the dominator information
1318 and it assumed that the caller will do this, perhaps by destroying and
1319 recreating it instead of trying to do an incremental update like this
1320 function does when update_dominance is true.
1322 BASE is the superloop to that basic block belongs; if its header or latch
1323 is copied, we do not set the new blocks as header or latch.
1325 Created copies of N_EDGES edges in array EDGES are stored in array NEW_EDGES,
1326 also in the same order.
1328 Newly created basic blocks are put after the basic block AFTER in the
1329 instruction stream, and the order of the blocks in BBS array is preserved. */
1332 copy_bbs (basic_block
*bbs
, unsigned n
, basic_block
*new_bbs
,
1333 edge
*edges
, unsigned num_edges
, edge
*new_edges
,
1334 struct loop
*base
, basic_block after
, bool update_dominance
)
1337 basic_block bb
, new_bb
, dom_bb
;
1340 /* Duplicate bbs, update dominators, assign bbs to loops. */
1341 for (i
= 0; i
< n
; i
++)
1345 new_bb
= new_bbs
[i
] = duplicate_block (bb
, NULL
, after
);
1347 bb
->flags
|= BB_DUPLICATED
;
1348 if (bb
->loop_father
)
1350 /* Possibly set loop header. */
1351 if (bb
->loop_father
->header
== bb
&& bb
->loop_father
!= base
)
1352 new_bb
->loop_father
->header
= new_bb
;
1354 if (bb
->loop_father
->latch
== bb
&& bb
->loop_father
!= base
)
1355 new_bb
->loop_father
->latch
= new_bb
;
1359 /* Set dominators. */
1360 if (update_dominance
)
1362 for (i
= 0; i
< n
; i
++)
1365 new_bb
= new_bbs
[i
];
1367 dom_bb
= get_immediate_dominator (CDI_DOMINATORS
, bb
);
1368 if (dom_bb
->flags
& BB_DUPLICATED
)
1370 dom_bb
= get_bb_copy (dom_bb
);
1371 set_immediate_dominator (CDI_DOMINATORS
, new_bb
, dom_bb
);
1376 /* Redirect edges. */
1377 for (j
= 0; j
< num_edges
; j
++)
1378 new_edges
[j
] = NULL
;
1379 for (i
= 0; i
< n
; i
++)
1382 new_bb
= new_bbs
[i
];
1385 FOR_EACH_EDGE (e
, ei
, new_bb
->succs
)
1387 for (j
= 0; j
< num_edges
; j
++)
1388 if (edges
[j
] && edges
[j
]->src
== bb
&& edges
[j
]->dest
== e
->dest
)
1391 if (!(e
->dest
->flags
& BB_DUPLICATED
))
1393 redirect_edge_and_branch_force (e
, get_bb_copy (e
->dest
));
1397 /* Clear information about duplicates. */
1398 for (i
= 0; i
< n
; i
++)
1399 bbs
[i
]->flags
&= ~BB_DUPLICATED
;
1402 /* Return true if BB contains only labels or non-executable
1405 empty_block_p (basic_block bb
)
1407 gcc_assert (cfg_hooks
->empty_block_p
);
1408 return cfg_hooks
->empty_block_p (bb
);
1411 /* Split a basic block if it ends with a conditional branch and if
1412 the other part of the block is not empty. */
1414 split_block_before_cond_jump (basic_block bb
)
1416 gcc_assert (cfg_hooks
->split_block_before_cond_jump
);
1417 return cfg_hooks
->split_block_before_cond_jump (bb
);
1420 /* Work-horse for passes.c:check_profile_consistency.
1421 Do book-keeping of the CFG for the profile consistency checker.
1422 If AFTER_PASS is 0, do pre-pass accounting, or if AFTER_PASS is 1
1423 then do post-pass accounting. Store the counting in RECORD. */
1426 account_profile_record (struct profile_record
*record
, int after_pass
)
1434 FOR_ALL_BB_FN (bb
, cfun
)
1436 if (bb
!= EXIT_BLOCK_PTR_FOR_FN (cfun
)
1437 && profile_status_for_fn (cfun
) != PROFILE_ABSENT
)
1440 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
1441 sum
+= e
->probability
;
1442 if (EDGE_COUNT (bb
->succs
) && abs (sum
- REG_BR_PROB_BASE
) > 100)
1443 record
->num_mismatched_freq_out
[after_pass
]++;
1445 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
1447 if (EDGE_COUNT (bb
->succs
)
1448 && (lsum
- bb
->count
> 100 || lsum
- bb
->count
< -100))
1449 record
->num_mismatched_count_out
[after_pass
]++;
1451 if (bb
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)
1452 && profile_status_for_fn (cfun
) != PROFILE_ABSENT
)
1455 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
1456 sum
+= EDGE_FREQUENCY (e
);
1457 if (abs (sum
- bb
->frequency
) > 100
1458 || (MAX (sum
, bb
->frequency
) > 10
1459 && abs ((sum
- bb
->frequency
) * 100 / (MAX (sum
, bb
->frequency
) + 1)) > 10))
1460 record
->num_mismatched_freq_in
[after_pass
]++;
1462 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
1464 if (lsum
- bb
->count
> 100 || lsum
- bb
->count
< -100)
1465 record
->num_mismatched_count_in
[after_pass
]++;
1467 if (bb
== ENTRY_BLOCK_PTR_FOR_FN (cfun
)
1468 || bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1470 gcc_assert (cfg_hooks
->account_profile_record
);
1471 cfg_hooks
->account_profile_record (bb
, after_pass
, record
);