1 /* Standard problems for dataflow support routines.
2 Copyright (C) 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,
3 2008, 2009, 2010 Free Software Foundation, Inc.
4 Originally contributed by Michael P. Hayes
5 (m.hayes@elec.canterbury.ac.nz, mhayes@redhat.com)
6 Major rewrite contributed by Danny Berlin (dberlin@dberlin.org)
7 and Kenneth Zadeck (zadeck@naturalbridge.com).
9 This file is part of GCC.
11 GCC is free software; you can redistribute it and/or modify it under
12 the terms of the GNU General Public License as published by the Free
13 Software Foundation; either version 3, or (at your option) any later
16 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
17 WARRANTY; without even the implied warranty of MERCHANTABILITY or
18 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
21 You should have received a copy of the GNU General Public License
22 along with GCC; see the file COPYING3. If not see
23 <http://www.gnu.org/licenses/>. */
27 #include "coretypes.h"
31 #include "insn-config.h"
36 #include "alloc-pool.h"
38 #include "hard-reg-set.h"
39 #include "basic-block.h"
48 /* Note that turning REG_DEAD_DEBUGGING on will cause
49 gcc.c-torture/unsorted/dump-noaddr.c to fail because it prints
50 addresses in the dumps. */
52 #define REG_DEAD_DEBUGGING
55 #define DF_SPARSE_THRESHOLD 32
57 static bitmap seen_in_block
= NULL
;
58 static bitmap seen_in_insn
= NULL
;
61 /*----------------------------------------------------------------------------
62 Public functions access functions for the dataflow problems.
63 ----------------------------------------------------------------------------*/
64 /* Get the live at out set for BB no matter what problem happens to be
65 defined. This function is used by the register allocators who
66 choose different dataflow problems depending on the optimization
70 df_get_live_out (basic_block bb
)
75 return DF_LIVE_OUT (bb
);
77 return DF_LR_OUT (bb
);
80 /* Get the live at in set for BB no matter what problem happens to be
81 defined. This function is used by the register allocators who
82 choose different dataflow problems depending on the optimization
86 df_get_live_in (basic_block bb
)
91 return DF_LIVE_IN (bb
);
96 /*----------------------------------------------------------------------------
98 ----------------------------------------------------------------------------*/
100 /* Generic versions to get the void* version of the block info. Only
101 used inside the problem instance vectors. */
103 /* Grow the bb_info array. */
106 df_grow_bb_info (struct dataflow
*dflow
)
108 unsigned int new_size
= last_basic_block
+ 1;
109 if (dflow
->block_info_size
< new_size
)
111 new_size
+= new_size
/ 4;
112 dflow
->block_info
= XRESIZEVEC (void *, dflow
->block_info
, new_size
);
113 memset (dflow
->block_info
+ dflow
->block_info_size
, 0,
114 (new_size
- dflow
->block_info_size
) *sizeof (void *));
115 dflow
->block_info_size
= new_size
;
119 /* Dump a def-use or use-def chain for REF to FILE. */
122 df_chain_dump (struct df_link
*link
, FILE *file
)
124 fprintf (file
, "{ ");
125 for (; link
; link
= link
->next
)
127 fprintf (file
, "%c%d(bb %d insn %d) ",
128 DF_REF_REG_DEF_P (link
->ref
) ? 'd' : 'u',
129 DF_REF_ID (link
->ref
),
130 DF_REF_BBNO (link
->ref
),
131 DF_REF_IS_ARTIFICIAL (link
->ref
) ? -1 : DF_REF_INSN_UID (link
->ref
));
137 /* Print some basic block info as part of df_dump. */
140 df_print_bb_index (basic_block bb
, FILE *file
)
145 fprintf (file
, "\n( ");
146 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
148 basic_block pred
= e
->src
;
149 fprintf (file
, "%d%s ", pred
->index
, e
->flags
& EDGE_EH
? "(EH)" : "");
151 fprintf (file
, ")->[%d]->( ", bb
->index
);
152 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
154 basic_block succ
= e
->dest
;
155 fprintf (file
, "%d%s ", succ
->index
, e
->flags
& EDGE_EH
? "(EH)" : "");
157 fprintf (file
, ")\n");
161 /*----------------------------------------------------------------------------
164 Find the locations in the function where each definition site for a
165 pseudo reaches. In and out bitvectors are built for each basic
166 block. The id field in the ref is used to index into these sets.
167 See df.h for details.
168 ----------------------------------------------------------------------------*/
170 /* This problem plays a large number of games for the sake of
173 1) The order of the bits in the bitvectors. After the scanning
174 phase, all of the defs are sorted. All of the defs for the reg 0
175 are first, followed by all defs for reg 1 and so on.
177 2) There are two kill sets, one if the number of defs is less or
178 equal to DF_SPARSE_THRESHOLD and another if the number of defs is
181 <= : Data is built directly in the kill set.
183 > : One level of indirection is used to keep from generating long
184 strings of 1 bits in the kill sets. Bitvectors that are indexed
185 by the regnum are used to represent that there is a killing def
186 for the register. The confluence and transfer functions use
187 these along with the bitmap_clear_range call to remove ranges of
188 bits without actually generating a knockout vector.
190 The kill and sparse_kill and the dense_invalidated_by_call and
191 sparse_invalidated_by_call both play this game. */
193 /* Private data used to compute the solution for this problem. These
194 data structures are not accessible outside of this module. */
195 struct df_rd_problem_data
197 /* The set of defs to regs invalidated by call. */
198 bitmap sparse_invalidated_by_call
;
199 /* The set of defs to regs invalidate by call for rd. */
200 bitmap dense_invalidated_by_call
;
201 /* An obstack for the bitmaps we need for this problem. */
202 bitmap_obstack rd_bitmaps
;
205 /* Set basic block info. */
208 df_rd_set_bb_info (unsigned int index
,
209 struct df_rd_bb_info
*bb_info
)
212 gcc_assert (index
< df_rd
->block_info_size
);
213 df_rd
->block_info
[index
] = bb_info
;
217 /* Free basic block info. */
220 df_rd_free_bb_info (basic_block bb ATTRIBUTE_UNUSED
,
223 struct df_rd_bb_info
*bb_info
= (struct df_rd_bb_info
*) vbb_info
;
226 BITMAP_FREE (bb_info
->kill
);
227 BITMAP_FREE (bb_info
->sparse_kill
);
228 BITMAP_FREE (bb_info
->gen
);
229 BITMAP_FREE (bb_info
->in
);
230 BITMAP_FREE (bb_info
->out
);
231 pool_free (df_rd
->block_pool
, bb_info
);
236 /* Allocate or reset bitmaps for DF_RD blocks. The solution bits are
237 not touched unless the block is new. */
240 df_rd_alloc (bitmap all_blocks
)
242 unsigned int bb_index
;
244 struct df_rd_problem_data
*problem_data
;
246 if (!df_rd
->block_pool
)
247 df_rd
->block_pool
= create_alloc_pool ("df_rd_block pool",
248 sizeof (struct df_rd_bb_info
), 50);
250 if (df_rd
->problem_data
)
252 problem_data
= (struct df_rd_problem_data
*) df_rd
->problem_data
;
253 bitmap_clear (problem_data
->sparse_invalidated_by_call
);
254 bitmap_clear (problem_data
->dense_invalidated_by_call
);
258 problem_data
= XNEW (struct df_rd_problem_data
);
259 df_rd
->problem_data
= problem_data
;
261 bitmap_obstack_initialize (&problem_data
->rd_bitmaps
);
262 problem_data
->sparse_invalidated_by_call
263 = BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
264 problem_data
->dense_invalidated_by_call
265 = BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
268 df_grow_bb_info (df_rd
);
270 /* Because of the clustering of all use sites for the same pseudo,
271 we have to process all of the blocks before doing the
274 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
276 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb_index
);
279 bitmap_clear (bb_info
->kill
);
280 bitmap_clear (bb_info
->sparse_kill
);
281 bitmap_clear (bb_info
->gen
);
285 bb_info
= (struct df_rd_bb_info
*) pool_alloc (df_rd
->block_pool
);
286 df_rd_set_bb_info (bb_index
, bb_info
);
287 bb_info
->kill
= BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
288 bb_info
->sparse_kill
= BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
289 bb_info
->gen
= BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
290 bb_info
->in
= BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
291 bb_info
->out
= BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
294 df_rd
->optional_p
= true;
298 /* Add the effect of the top artificial defs of BB to the reaching definitions
302 df_rd_simulate_artificial_defs_at_top (basic_block bb
, bitmap local_rd
)
304 int bb_index
= bb
->index
;
306 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
308 df_ref def
= *def_rec
;
309 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
311 unsigned int dregno
= DF_REF_REGNO (def
);
312 if (!(DF_REF_FLAGS (def
) & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
)))
313 bitmap_clear_range (local_rd
,
314 DF_DEFS_BEGIN (dregno
),
315 DF_DEFS_COUNT (dregno
));
316 bitmap_set_bit (local_rd
, DF_REF_ID (def
));
321 /* Add the effect of the defs of INSN to the reaching definitions bitmap
325 df_rd_simulate_one_insn (basic_block bb ATTRIBUTE_UNUSED
, rtx insn
,
328 unsigned uid
= INSN_UID (insn
);
331 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
333 df_ref def
= *def_rec
;
334 unsigned int dregno
= DF_REF_REGNO (def
);
335 if ((!(df
->changeable_flags
& DF_NO_HARD_REGS
))
336 || (dregno
>= FIRST_PSEUDO_REGISTER
))
338 if (!(DF_REF_FLAGS (def
) & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
)))
339 bitmap_clear_range (local_rd
,
340 DF_DEFS_BEGIN (dregno
),
341 DF_DEFS_COUNT (dregno
));
342 if (!(DF_REF_FLAGS (def
)
343 & (DF_REF_MUST_CLOBBER
| DF_REF_MAY_CLOBBER
)))
344 bitmap_set_bit (local_rd
, DF_REF_ID (def
));
349 /* Process a list of DEFs for df_rd_bb_local_compute. This is a bit
350 more complicated than just simulating, because we must produce the
351 gen and kill sets and hence deal with the two possible representations
355 df_rd_bb_local_compute_process_def (struct df_rd_bb_info
*bb_info
,
361 df_ref def
= *def_rec
;
362 if (top_flag
== (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
))
364 unsigned int regno
= DF_REF_REGNO (def
);
365 unsigned int begin
= DF_DEFS_BEGIN (regno
);
366 unsigned int n_defs
= DF_DEFS_COUNT (regno
);
368 if ((!(df
->changeable_flags
& DF_NO_HARD_REGS
))
369 || (regno
>= FIRST_PSEUDO_REGISTER
))
371 /* Only the last def(s) for a regno in the block has any
373 if (!bitmap_bit_p (seen_in_block
, regno
))
375 /* The first def for regno in insn gets to knock out the
376 defs from other instructions. */
377 if ((!bitmap_bit_p (seen_in_insn
, regno
))
378 /* If the def is to only part of the reg, it does
379 not kill the other defs that reach here. */
380 && (!(DF_REF_FLAGS (def
) &
381 (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
| DF_REF_MAY_CLOBBER
))))
383 if (n_defs
> DF_SPARSE_THRESHOLD
)
385 bitmap_set_bit (bb_info
->sparse_kill
, regno
);
386 bitmap_clear_range(bb_info
->gen
, begin
, n_defs
);
390 bitmap_set_range (bb_info
->kill
, begin
, n_defs
);
391 bitmap_clear_range (bb_info
->gen
, begin
, n_defs
);
395 bitmap_set_bit (seen_in_insn
, regno
);
396 /* All defs for regno in the instruction may be put into
398 if (!(DF_REF_FLAGS (def
)
399 & (DF_REF_MUST_CLOBBER
| DF_REF_MAY_CLOBBER
)))
400 bitmap_set_bit (bb_info
->gen
, DF_REF_ID (def
));
408 /* Compute local reaching def info for basic block BB. */
411 df_rd_bb_local_compute (unsigned int bb_index
)
413 basic_block bb
= BASIC_BLOCK (bb_index
);
414 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb_index
);
417 bitmap_clear (seen_in_block
);
418 bitmap_clear (seen_in_insn
);
420 /* Artificials are only hard regs. */
421 if (!(df
->changeable_flags
& DF_NO_HARD_REGS
))
422 df_rd_bb_local_compute_process_def (bb_info
,
423 df_get_artificial_defs (bb_index
),
426 FOR_BB_INSNS_REVERSE (bb
, insn
)
428 unsigned int uid
= INSN_UID (insn
);
433 df_rd_bb_local_compute_process_def (bb_info
,
434 DF_INSN_UID_DEFS (uid
), 0);
436 /* This complex dance with the two bitmaps is required because
437 instructions can assign twice to the same pseudo. This
438 generally happens with calls that will have one def for the
439 result and another def for the clobber. If only one vector
440 is used and the clobber goes first, the result will be
442 bitmap_ior_into (seen_in_block
, seen_in_insn
);
443 bitmap_clear (seen_in_insn
);
446 /* Process the artificial defs at the top of the block last since we
447 are going backwards through the block and these are logically at
449 if (!(df
->changeable_flags
& DF_NO_HARD_REGS
))
450 df_rd_bb_local_compute_process_def (bb_info
,
451 df_get_artificial_defs (bb_index
),
456 /* Compute local reaching def info for each basic block within BLOCKS. */
459 df_rd_local_compute (bitmap all_blocks
)
461 unsigned int bb_index
;
464 struct df_rd_problem_data
*problem_data
465 = (struct df_rd_problem_data
*) df_rd
->problem_data
;
466 bitmap sparse_invalidated
= problem_data
->sparse_invalidated_by_call
;
467 bitmap dense_invalidated
= problem_data
->dense_invalidated_by_call
;
469 seen_in_block
= BITMAP_ALLOC (&df_bitmap_obstack
);
470 seen_in_insn
= BITMAP_ALLOC (&df_bitmap_obstack
);
472 df_maybe_reorganize_def_refs (DF_REF_ORDER_BY_REG
);
474 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
476 df_rd_bb_local_compute (bb_index
);
479 /* Set up the knockout bit vectors to be applied across EH_EDGES. */
480 EXECUTE_IF_SET_IN_BITMAP (regs_invalidated_by_call_regset
, 0, regno
, bi
)
482 if (DF_DEFS_COUNT (regno
) > DF_SPARSE_THRESHOLD
)
483 bitmap_set_bit (sparse_invalidated
, regno
);
485 bitmap_set_range (dense_invalidated
,
486 DF_DEFS_BEGIN (regno
),
487 DF_DEFS_COUNT (regno
));
490 BITMAP_FREE (seen_in_block
);
491 BITMAP_FREE (seen_in_insn
);
495 /* Initialize the solution bit vectors for problem. */
498 df_rd_init_solution (bitmap all_blocks
)
500 unsigned int bb_index
;
503 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
505 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb_index
);
507 bitmap_copy (bb_info
->out
, bb_info
->gen
);
508 bitmap_clear (bb_info
->in
);
512 /* In of target gets or of out of source. */
515 df_rd_confluence_n (edge e
)
517 bitmap op1
= df_rd_get_bb_info (e
->dest
->index
)->in
;
518 bitmap op2
= df_rd_get_bb_info (e
->src
->index
)->out
;
520 if (e
->flags
& EDGE_FAKE
)
523 if (e
->flags
& EDGE_EH
)
525 struct df_rd_problem_data
*problem_data
526 = (struct df_rd_problem_data
*) df_rd
->problem_data
;
527 bitmap sparse_invalidated
= problem_data
->sparse_invalidated_by_call
;
528 bitmap dense_invalidated
= problem_data
->dense_invalidated_by_call
;
531 bitmap tmp
= BITMAP_ALLOC (&df_bitmap_obstack
);
533 bitmap_copy (tmp
, op2
);
534 bitmap_and_compl_into (tmp
, dense_invalidated
);
536 EXECUTE_IF_SET_IN_BITMAP (sparse_invalidated
, 0, regno
, bi
)
538 bitmap_clear_range (tmp
,
539 DF_DEFS_BEGIN (regno
),
540 DF_DEFS_COUNT (regno
));
542 bitmap_ior_into (op1
, tmp
);
546 bitmap_ior_into (op1
, op2
);
550 /* Transfer function. */
553 df_rd_transfer_function (int bb_index
)
555 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb_index
);
558 bitmap in
= bb_info
->in
;
559 bitmap out
= bb_info
->out
;
560 bitmap gen
= bb_info
->gen
;
561 bitmap kill
= bb_info
->kill
;
562 bitmap sparse_kill
= bb_info
->sparse_kill
;
564 if (bitmap_empty_p (sparse_kill
))
565 return bitmap_ior_and_compl (out
, gen
, in
, kill
);
568 struct df_rd_problem_data
*problem_data
;
569 bool changed
= false;
572 /* Note that TMP is _not_ a temporary bitmap if we end up replacing
573 OUT with TMP. Therefore, allocate TMP in the RD bitmaps obstack. */
574 problem_data
= (struct df_rd_problem_data
*) df_rd
->problem_data
;
575 tmp
= BITMAP_ALLOC (&problem_data
->rd_bitmaps
);
577 bitmap_copy (tmp
, in
);
578 EXECUTE_IF_SET_IN_BITMAP (sparse_kill
, 0, regno
, bi
)
580 bitmap_clear_range (tmp
,
581 DF_DEFS_BEGIN (regno
),
582 DF_DEFS_COUNT (regno
));
584 bitmap_and_compl_into (tmp
, kill
);
585 bitmap_ior_into (tmp
, gen
);
586 changed
= !bitmap_equal_p (tmp
, out
);
599 /* Free all storage associated with the problem. */
604 struct df_rd_problem_data
*problem_data
605 = (struct df_rd_problem_data
*) df_rd
->problem_data
;
609 free_alloc_pool (df_rd
->block_pool
);
610 bitmap_obstack_release (&problem_data
->rd_bitmaps
);
612 df_rd
->block_info_size
= 0;
613 free (df_rd
->block_info
);
614 free (df_rd
->problem_data
);
620 /* Debugging info. */
623 df_rd_start_dump (FILE *file
)
625 struct df_rd_problem_data
*problem_data
626 = (struct df_rd_problem_data
*) df_rd
->problem_data
;
627 unsigned int m
= DF_REG_SIZE(df
);
630 if (!df_rd
->block_info
)
633 fprintf (file
, ";; Reaching defs:\n\n");
635 fprintf (file
, " sparse invalidated \t");
636 dump_bitmap (file
, problem_data
->sparse_invalidated_by_call
);
637 fprintf (file
, " dense invalidated \t");
638 dump_bitmap (file
, problem_data
->dense_invalidated_by_call
);
640 for (regno
= 0; regno
< m
; regno
++)
641 if (DF_DEFS_COUNT (regno
))
642 fprintf (file
, "%d[%d,%d] ", regno
,
643 DF_DEFS_BEGIN (regno
),
644 DF_DEFS_COUNT (regno
));
645 fprintf (file
, "\n");
650 /* Debugging info at top of bb. */
653 df_rd_top_dump (basic_block bb
, FILE *file
)
655 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb
->index
);
656 if (!bb_info
|| !bb_info
->in
)
659 fprintf (file
, ";; rd in \t(%d)\n", (int) bitmap_count_bits (bb_info
->in
));
660 dump_bitmap (file
, bb_info
->in
);
661 fprintf (file
, ";; rd gen \t(%d)\n", (int) bitmap_count_bits (bb_info
->gen
));
662 dump_bitmap (file
, bb_info
->gen
);
663 fprintf (file
, ";; rd kill\t(%d)\n", (int) bitmap_count_bits (bb_info
->kill
));
664 dump_bitmap (file
, bb_info
->kill
);
668 /* Debugging info at top of bb. */
671 df_rd_bottom_dump (basic_block bb
, FILE *file
)
673 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb
->index
);
674 if (!bb_info
|| !bb_info
->out
)
677 fprintf (file
, ";; rd out \t(%d)\n", (int) bitmap_count_bits (bb_info
->out
));
678 dump_bitmap (file
, bb_info
->out
);
681 /* All of the information associated with every instance of the problem. */
683 static struct df_problem problem_RD
=
685 DF_RD
, /* Problem id. */
686 DF_FORWARD
, /* Direction. */
687 df_rd_alloc
, /* Allocate the problem specific data. */
688 NULL
, /* Reset global information. */
689 df_rd_free_bb_info
, /* Free basic block info. */
690 df_rd_local_compute
, /* Local compute function. */
691 df_rd_init_solution
, /* Init the solution specific data. */
692 df_worklist_dataflow
, /* Worklist solver. */
693 NULL
, /* Confluence operator 0. */
694 df_rd_confluence_n
, /* Confluence operator n. */
695 df_rd_transfer_function
, /* Transfer function. */
696 NULL
, /* Finalize function. */
697 df_rd_free
, /* Free all of the problem information. */
698 df_rd_free
, /* Remove this problem from the stack of dataflow problems. */
699 df_rd_start_dump
, /* Debugging. */
700 df_rd_top_dump
, /* Debugging start block. */
701 df_rd_bottom_dump
, /* Debugging end block. */
702 NULL
, /* Incremental solution verify start. */
703 NULL
, /* Incremental solution verify end. */
704 NULL
, /* Dependent problem. */
705 TV_DF_RD
, /* Timing variable. */
706 true /* Reset blocks on dropping out of blocks_to_analyze. */
711 /* Create a new RD instance and add it to the existing instance
715 df_rd_add_problem (void)
717 df_add_problem (&problem_RD
);
722 /*----------------------------------------------------------------------------
725 Find the locations in the function where any use of a pseudo can
726 reach in the backwards direction. In and out bitvectors are built
727 for each basic block. The regno is used to index into these sets.
728 See df.h for details.
729 ----------------------------------------------------------------------------*/
731 /* Private data used to verify the solution for this problem. */
732 struct df_lr_problem_data
739 /* Set basic block info. */
742 df_lr_set_bb_info (unsigned int index
,
743 struct df_lr_bb_info
*bb_info
)
746 gcc_assert (index
< df_lr
->block_info_size
);
747 df_lr
->block_info
[index
] = bb_info
;
751 /* Free basic block info. */
754 df_lr_free_bb_info (basic_block bb ATTRIBUTE_UNUSED
,
757 struct df_lr_bb_info
*bb_info
= (struct df_lr_bb_info
*) vbb_info
;
760 BITMAP_FREE (bb_info
->use
);
761 BITMAP_FREE (bb_info
->def
);
762 BITMAP_FREE (bb_info
->in
);
763 BITMAP_FREE (bb_info
->out
);
764 pool_free (df_lr
->block_pool
, bb_info
);
769 /* Allocate or reset bitmaps for DF_LR blocks. The solution bits are
770 not touched unless the block is new. */
773 df_lr_alloc (bitmap all_blocks ATTRIBUTE_UNUSED
)
775 unsigned int bb_index
;
778 if (!df_lr
->block_pool
)
779 df_lr
->block_pool
= create_alloc_pool ("df_lr_block pool",
780 sizeof (struct df_lr_bb_info
), 50);
782 df_grow_bb_info (df_lr
);
784 EXECUTE_IF_SET_IN_BITMAP (df_lr
->out_of_date_transfer_functions
, 0, bb_index
, bi
)
786 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb_index
);
789 bitmap_clear (bb_info
->def
);
790 bitmap_clear (bb_info
->use
);
794 bb_info
= (struct df_lr_bb_info
*) pool_alloc (df_lr
->block_pool
);
795 df_lr_set_bb_info (bb_index
, bb_info
);
796 bb_info
->use
= BITMAP_ALLOC (NULL
);
797 bb_info
->def
= BITMAP_ALLOC (NULL
);
798 bb_info
->in
= BITMAP_ALLOC (NULL
);
799 bb_info
->out
= BITMAP_ALLOC (NULL
);
803 df_lr
->optional_p
= false;
807 /* Reset the global solution for recalculation. */
810 df_lr_reset (bitmap all_blocks
)
812 unsigned int bb_index
;
815 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
817 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb_index
);
818 gcc_assert (bb_info
);
819 bitmap_clear (bb_info
->in
);
820 bitmap_clear (bb_info
->out
);
825 /* Compute local live register info for basic block BB. */
828 df_lr_bb_local_compute (unsigned int bb_index
)
830 basic_block bb
= BASIC_BLOCK (bb_index
);
831 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb_index
);
836 /* Process the registers set in an exception handler. */
837 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
839 df_ref def
= *def_rec
;
840 if ((DF_REF_FLAGS (def
) & DF_REF_AT_TOP
) == 0)
842 unsigned int dregno
= DF_REF_REGNO (def
);
843 bitmap_set_bit (bb_info
->def
, dregno
);
844 bitmap_clear_bit (bb_info
->use
, dregno
);
848 /* Process the hardware registers that are always live. */
849 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
851 df_ref use
= *use_rec
;
852 /* Add use to set of uses in this BB. */
853 if ((DF_REF_FLAGS (use
) & DF_REF_AT_TOP
) == 0)
854 bitmap_set_bit (bb_info
->use
, DF_REF_REGNO (use
));
857 FOR_BB_INSNS_REVERSE (bb
, insn
)
859 unsigned int uid
= INSN_UID (insn
);
861 if (!NONDEBUG_INSN_P (insn
))
864 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
866 df_ref def
= *def_rec
;
867 /* If the def is to only part of the reg, it does
868 not kill the other defs that reach here. */
869 if (!(DF_REF_FLAGS (def
) & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
)))
871 unsigned int dregno
= DF_REF_REGNO (def
);
872 bitmap_set_bit (bb_info
->def
, dregno
);
873 bitmap_clear_bit (bb_info
->use
, dregno
);
877 for (use_rec
= DF_INSN_UID_USES (uid
); *use_rec
; use_rec
++)
879 df_ref use
= *use_rec
;
880 /* Add use to set of uses in this BB. */
881 bitmap_set_bit (bb_info
->use
, DF_REF_REGNO (use
));
885 /* Process the registers set in an exception handler or the hard
886 frame pointer if this block is the target of a non local
888 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
890 df_ref def
= *def_rec
;
891 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
893 unsigned int dregno
= DF_REF_REGNO (def
);
894 bitmap_set_bit (bb_info
->def
, dregno
);
895 bitmap_clear_bit (bb_info
->use
, dregno
);
900 /* Process the uses that are live into an exception handler. */
901 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
903 df_ref use
= *use_rec
;
904 /* Add use to set of uses in this BB. */
905 if (DF_REF_FLAGS (use
) & DF_REF_AT_TOP
)
906 bitmap_set_bit (bb_info
->use
, DF_REF_REGNO (use
));
910 /* If the df_live problem is not defined, such as at -O0 and -O1, we
911 still need to keep the luids up to date. This is normally done
912 in the df_live problem since this problem has a forwards
915 df_recompute_luids (bb
);
919 /* Compute local live register info for each basic block within BLOCKS. */
922 df_lr_local_compute (bitmap all_blocks ATTRIBUTE_UNUSED
)
924 unsigned int bb_index
;
927 bitmap_clear (df
->hardware_regs_used
);
929 /* The all-important stack pointer must always be live. */
930 bitmap_set_bit (df
->hardware_regs_used
, STACK_POINTER_REGNUM
);
932 /* Before reload, there are a few registers that must be forced
933 live everywhere -- which might not already be the case for
934 blocks within infinite loops. */
935 if (!reload_completed
)
937 /* Any reference to any pseudo before reload is a potential
938 reference of the frame pointer. */
939 bitmap_set_bit (df
->hardware_regs_used
, FRAME_POINTER_REGNUM
);
941 #if FRAME_POINTER_REGNUM != ARG_POINTER_REGNUM
942 /* Pseudos with argument area equivalences may require
943 reloading via the argument pointer. */
944 if (fixed_regs
[ARG_POINTER_REGNUM
])
945 bitmap_set_bit (df
->hardware_regs_used
, ARG_POINTER_REGNUM
);
948 /* Any constant, or pseudo with constant equivalences, may
949 require reloading from memory using the pic register. */
950 if ((unsigned) PIC_OFFSET_TABLE_REGNUM
!= INVALID_REGNUM
951 && fixed_regs
[PIC_OFFSET_TABLE_REGNUM
])
952 bitmap_set_bit (df
->hardware_regs_used
, PIC_OFFSET_TABLE_REGNUM
);
955 EXECUTE_IF_SET_IN_BITMAP (df_lr
->out_of_date_transfer_functions
, 0, bb_index
, bi
)
957 if (bb_index
== EXIT_BLOCK
)
959 /* The exit block is special for this problem and its bits are
960 computed from thin air. */
961 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (EXIT_BLOCK
);
962 bitmap_copy (bb_info
->use
, df
->exit_block_uses
);
965 df_lr_bb_local_compute (bb_index
);
968 bitmap_clear (df_lr
->out_of_date_transfer_functions
);
972 /* Initialize the solution vectors. */
975 df_lr_init (bitmap all_blocks
)
977 unsigned int bb_index
;
980 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
982 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb_index
);
983 bitmap_copy (bb_info
->in
, bb_info
->use
);
984 bitmap_clear (bb_info
->out
);
989 /* Confluence function that processes infinite loops. This might be a
990 noreturn function that throws. And even if it isn't, getting the
991 unwind info right helps debugging. */
993 df_lr_confluence_0 (basic_block bb
)
995 bitmap op1
= df_lr_get_bb_info (bb
->index
)->out
;
996 if (bb
!= EXIT_BLOCK_PTR
)
997 bitmap_copy (op1
, df
->hardware_regs_used
);
1001 /* Confluence function that ignores fake edges. */
1004 df_lr_confluence_n (edge e
)
1006 bitmap op1
= df_lr_get_bb_info (e
->src
->index
)->out
;
1007 bitmap op2
= df_lr_get_bb_info (e
->dest
->index
)->in
;
1009 /* Call-clobbered registers die across exception and call edges. */
1010 /* ??? Abnormal call edges ignored for the moment, as this gets
1011 confused by sibling call edges, which crashes reg-stack. */
1012 if (e
->flags
& EDGE_EH
)
1013 bitmap_ior_and_compl_into (op1
, op2
, regs_invalidated_by_call_regset
);
1015 bitmap_ior_into (op1
, op2
);
1017 bitmap_ior_into (op1
, df
->hardware_regs_used
);
1021 /* Transfer function. */
1024 df_lr_transfer_function (int bb_index
)
1026 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb_index
);
1027 bitmap in
= bb_info
->in
;
1028 bitmap out
= bb_info
->out
;
1029 bitmap use
= bb_info
->use
;
1030 bitmap def
= bb_info
->def
;
1032 return bitmap_ior_and_compl (in
, use
, out
, def
);
1036 /* Run the fast dce as a side effect of building LR. */
1039 df_lr_finalize (bitmap all_blocks
)
1041 df_lr
->solutions_dirty
= false;
1042 if (df
->changeable_flags
& DF_LR_RUN_DCE
)
1046 /* If dce deletes some instructions, we need to recompute the lr
1047 solution before proceeding further. The problem is that fast
1048 dce is a pessimestic dataflow algorithm. In the case where
1049 it deletes a statement S inside of a loop, the uses inside of
1050 S may not be deleted from the dataflow solution because they
1051 were carried around the loop. While it is conservatively
1052 correct to leave these extra bits, the standards of df
1053 require that we maintain the best possible (least fixed
1054 point) solution. The only way to do that is to redo the
1055 iteration from the beginning. See PR35805 for an
1057 if (df_lr
->solutions_dirty
)
1059 df_clear_flags (DF_LR_RUN_DCE
);
1060 df_lr_alloc (all_blocks
);
1061 df_lr_local_compute (all_blocks
);
1062 df_worklist_dataflow (df_lr
, all_blocks
, df
->postorder
, df
->n_blocks
);
1063 df_lr_finalize (all_blocks
);
1064 df_set_flags (DF_LR_RUN_DCE
);
1070 /* Free all storage associated with the problem. */
1075 if (df_lr
->block_info
)
1078 for (i
= 0; i
< df_lr
->block_info_size
; i
++)
1080 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (i
);
1083 BITMAP_FREE (bb_info
->use
);
1084 BITMAP_FREE (bb_info
->def
);
1085 BITMAP_FREE (bb_info
->in
);
1086 BITMAP_FREE (bb_info
->out
);
1089 free_alloc_pool (df_lr
->block_pool
);
1091 df_lr
->block_info_size
= 0;
1092 free (df_lr
->block_info
);
1095 BITMAP_FREE (df_lr
->out_of_date_transfer_functions
);
1100 /* Debugging info at top of bb. */
1103 df_lr_top_dump (basic_block bb
, FILE *file
)
1105 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb
->index
);
1106 struct df_lr_problem_data
*problem_data
;
1107 if (!bb_info
|| !bb_info
->in
)
1110 fprintf (file
, ";; lr in \t");
1111 df_print_regset (file
, bb_info
->in
);
1112 if (df_lr
->problem_data
)
1114 problem_data
= (struct df_lr_problem_data
*)df_lr
->problem_data
;
1115 fprintf (file
, ";; old in \t");
1116 df_print_regset (file
, problem_data
->in
[bb
->index
]);
1118 fprintf (file
, ";; lr use \t");
1119 df_print_regset (file
, bb_info
->use
);
1120 fprintf (file
, ";; lr def \t");
1121 df_print_regset (file
, bb_info
->def
);
1125 /* Debugging info at bottom of bb. */
1128 df_lr_bottom_dump (basic_block bb
, FILE *file
)
1130 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb
->index
);
1131 struct df_lr_problem_data
*problem_data
;
1132 if (!bb_info
|| !bb_info
->out
)
1135 fprintf (file
, ";; lr out \t");
1136 df_print_regset (file
, bb_info
->out
);
1137 if (df_lr
->problem_data
)
1139 problem_data
= (struct df_lr_problem_data
*)df_lr
->problem_data
;
1140 fprintf (file
, ";; old out \t");
1141 df_print_regset (file
, problem_data
->out
[bb
->index
]);
1146 /* Build the datastructure to verify that the solution to the dataflow
1147 equations is not dirty. */
1150 df_lr_verify_solution_start (void)
1153 struct df_lr_problem_data
*problem_data
;
1154 if (df_lr
->solutions_dirty
)
1156 df_lr
->problem_data
= NULL
;
1160 /* Set it true so that the solution is recomputed. */
1161 df_lr
->solutions_dirty
= true;
1163 problem_data
= XNEW (struct df_lr_problem_data
);
1164 df_lr
->problem_data
= problem_data
;
1165 problem_data
->in
= XNEWVEC (bitmap
, last_basic_block
);
1166 problem_data
->out
= XNEWVEC (bitmap
, last_basic_block
);
1170 problem_data
->in
[bb
->index
] = BITMAP_ALLOC (NULL
);
1171 problem_data
->out
[bb
->index
] = BITMAP_ALLOC (NULL
);
1172 bitmap_copy (problem_data
->in
[bb
->index
], DF_LR_IN (bb
));
1173 bitmap_copy (problem_data
->out
[bb
->index
], DF_LR_OUT (bb
));
1178 /* Compare the saved datastructure and the new solution to the dataflow
1182 df_lr_verify_solution_end (void)
1184 struct df_lr_problem_data
*problem_data
;
1187 if (df_lr
->problem_data
== NULL
)
1190 problem_data
= (struct df_lr_problem_data
*)df_lr
->problem_data
;
1192 if (df_lr
->solutions_dirty
)
1193 /* Do not check if the solution is still dirty. See the comment
1194 in df_lr_finalize for details. */
1195 df_lr
->solutions_dirty
= false;
1199 if ((!bitmap_equal_p (problem_data
->in
[bb
->index
], DF_LR_IN (bb
)))
1200 || (!bitmap_equal_p (problem_data
->out
[bb
->index
], DF_LR_OUT (bb
))))
1202 /*df_dump (stderr);*/
1207 /* Cannot delete them immediately because you may want to dump them
1208 if the comparison fails. */
1211 BITMAP_FREE (problem_data
->in
[bb
->index
]);
1212 BITMAP_FREE (problem_data
->out
[bb
->index
]);
1215 free (problem_data
->in
);
1216 free (problem_data
->out
);
1217 free (problem_data
);
1218 df_lr
->problem_data
= NULL
;
1222 /* All of the information associated with every instance of the problem. */
1224 static struct df_problem problem_LR
=
1226 DF_LR
, /* Problem id. */
1227 DF_BACKWARD
, /* Direction. */
1228 df_lr_alloc
, /* Allocate the problem specific data. */
1229 df_lr_reset
, /* Reset global information. */
1230 df_lr_free_bb_info
, /* Free basic block info. */
1231 df_lr_local_compute
, /* Local compute function. */
1232 df_lr_init
, /* Init the solution specific data. */
1233 df_worklist_dataflow
, /* Worklist solver. */
1234 df_lr_confluence_0
, /* Confluence operator 0. */
1235 df_lr_confluence_n
, /* Confluence operator n. */
1236 df_lr_transfer_function
, /* Transfer function. */
1237 df_lr_finalize
, /* Finalize function. */
1238 df_lr_free
, /* Free all of the problem information. */
1239 NULL
, /* Remove this problem from the stack of dataflow problems. */
1240 NULL
, /* Debugging. */
1241 df_lr_top_dump
, /* Debugging start block. */
1242 df_lr_bottom_dump
, /* Debugging end block. */
1243 df_lr_verify_solution_start
,/* Incremental solution verify start. */
1244 df_lr_verify_solution_end
, /* Incremental solution verify end. */
1245 NULL
, /* Dependent problem. */
1246 TV_DF_LR
, /* Timing variable. */
1247 false /* Reset blocks on dropping out of blocks_to_analyze. */
1251 /* Create a new DATAFLOW instance and add it to an existing instance
1252 of DF. The returned structure is what is used to get at the
1256 df_lr_add_problem (void)
1258 df_add_problem (&problem_LR
);
1259 /* These will be initialized when df_scan_blocks processes each
1261 df_lr
->out_of_date_transfer_functions
= BITMAP_ALLOC (NULL
);
1265 /* Verify that all of the lr related info is consistent and
1269 df_lr_verify_transfer_functions (void)
1281 saved_def
= BITMAP_ALLOC (NULL
);
1282 saved_use
= BITMAP_ALLOC (NULL
);
1283 saved_adef
= BITMAP_ALLOC (NULL
);
1284 saved_ause
= BITMAP_ALLOC (NULL
);
1285 all_blocks
= BITMAP_ALLOC (NULL
);
1289 struct df_lr_bb_info
*bb_info
= df_lr_get_bb_info (bb
->index
);
1290 bitmap_set_bit (all_blocks
, bb
->index
);
1294 /* Make a copy of the transfer functions and then compute
1295 new ones to see if the transfer functions have
1297 if (!bitmap_bit_p (df_lr
->out_of_date_transfer_functions
,
1300 bitmap_copy (saved_def
, bb_info
->def
);
1301 bitmap_copy (saved_use
, bb_info
->use
);
1302 bitmap_clear (bb_info
->def
);
1303 bitmap_clear (bb_info
->use
);
1305 df_lr_bb_local_compute (bb
->index
);
1306 gcc_assert (bitmap_equal_p (saved_def
, bb_info
->def
));
1307 gcc_assert (bitmap_equal_p (saved_use
, bb_info
->use
));
1312 /* If we do not have basic block info, the block must be in
1313 the list of dirty blocks or else some one has added a
1314 block behind our backs. */
1315 gcc_assert (bitmap_bit_p (df_lr
->out_of_date_transfer_functions
,
1318 /* Make sure no one created a block without following
1320 gcc_assert (df_scan_get_bb_info (bb
->index
));
1323 /* Make sure there are no dirty bits in blocks that have been deleted. */
1324 gcc_assert (!bitmap_intersect_compl_p (df_lr
->out_of_date_transfer_functions
,
1327 BITMAP_FREE (saved_def
);
1328 BITMAP_FREE (saved_use
);
1329 BITMAP_FREE (saved_adef
);
1330 BITMAP_FREE (saved_ause
);
1331 BITMAP_FREE (all_blocks
);
1336 /*----------------------------------------------------------------------------
1337 LIVE AND MUST-INITIALIZED REGISTERS.
1339 This problem first computes the IN and OUT bitvectors for the
1340 must-initialized registers problems, which is a forward problem.
1341 It gives the set of registers for which we MUST have an available
1342 definition on any path from the entry block to the entry/exit of
1343 a basic block. Sets generate a definition, while clobbers kill
1346 In and out bitvectors are built for each basic block and are indexed by
1347 regnum (see df.h for details). In and out bitvectors in struct
1348 df_live_bb_info actually refers to the must-initialized problem;
1350 Then, the in and out sets for the LIVE problem itself are computed.
1351 These are the logical AND of the IN and OUT sets from the LR problem
1352 and the must-initialized problem.
1353 ----------------------------------------------------------------------------*/
1355 /* Private data used to verify the solution for this problem. */
1356 struct df_live_problem_data
1362 /* Scratch var used by transfer functions. This is used to implement
1363 an optimization to reduce the amount of space used to compute the
1364 combined lr and live analysis. */
1365 static bitmap df_live_scratch
;
1367 /* Set basic block info. */
1370 df_live_set_bb_info (unsigned int index
,
1371 struct df_live_bb_info
*bb_info
)
1373 gcc_assert (df_live
);
1374 gcc_assert (index
< df_live
->block_info_size
);
1375 df_live
->block_info
[index
] = bb_info
;
1379 /* Free basic block info. */
1382 df_live_free_bb_info (basic_block bb ATTRIBUTE_UNUSED
,
1385 struct df_live_bb_info
*bb_info
= (struct df_live_bb_info
*) vbb_info
;
1388 BITMAP_FREE (bb_info
->gen
);
1389 BITMAP_FREE (bb_info
->kill
);
1390 BITMAP_FREE (bb_info
->in
);
1391 BITMAP_FREE (bb_info
->out
);
1392 pool_free (df_live
->block_pool
, bb_info
);
1397 /* Allocate or reset bitmaps for DF_LIVE blocks. The solution bits are
1398 not touched unless the block is new. */
1401 df_live_alloc (bitmap all_blocks ATTRIBUTE_UNUSED
)
1403 unsigned int bb_index
;
1406 if (!df_live
->block_pool
)
1407 df_live
->block_pool
= create_alloc_pool ("df_live_block pool",
1408 sizeof (struct df_live_bb_info
), 100);
1409 if (!df_live_scratch
)
1410 df_live_scratch
= BITMAP_ALLOC (NULL
);
1412 df_grow_bb_info (df_live
);
1414 EXECUTE_IF_SET_IN_BITMAP (df_live
->out_of_date_transfer_functions
, 0, bb_index
, bi
)
1416 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb_index
);
1419 bitmap_clear (bb_info
->kill
);
1420 bitmap_clear (bb_info
->gen
);
1424 bb_info
= (struct df_live_bb_info
*) pool_alloc (df_live
->block_pool
);
1425 df_live_set_bb_info (bb_index
, bb_info
);
1426 bb_info
->kill
= BITMAP_ALLOC (NULL
);
1427 bb_info
->gen
= BITMAP_ALLOC (NULL
);
1428 bb_info
->in
= BITMAP_ALLOC (NULL
);
1429 bb_info
->out
= BITMAP_ALLOC (NULL
);
1432 df_live
->optional_p
= (optimize
<= 1);
1436 /* Reset the global solution for recalculation. */
1439 df_live_reset (bitmap all_blocks
)
1441 unsigned int bb_index
;
1444 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
1446 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb_index
);
1447 gcc_assert (bb_info
);
1448 bitmap_clear (bb_info
->in
);
1449 bitmap_clear (bb_info
->out
);
1454 /* Compute local uninitialized register info for basic block BB. */
1457 df_live_bb_local_compute (unsigned int bb_index
)
1459 basic_block bb
= BASIC_BLOCK (bb_index
);
1460 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb_index
);
1465 FOR_BB_INSNS (bb
, insn
)
1467 unsigned int uid
= INSN_UID (insn
);
1468 struct df_insn_info
*insn_info
= DF_INSN_UID_GET (uid
);
1470 /* Inserting labels does not always trigger the incremental
1474 gcc_assert (!INSN_P (insn
));
1475 insn_info
= df_insn_create_insn_record (insn
);
1478 DF_INSN_INFO_LUID (insn_info
) = luid
;
1483 for (def_rec
= DF_INSN_INFO_DEFS (insn_info
); *def_rec
; def_rec
++)
1485 df_ref def
= *def_rec
;
1486 unsigned int regno
= DF_REF_REGNO (def
);
1488 if (DF_REF_FLAGS_IS_SET (def
,
1489 DF_REF_PARTIAL
| DF_REF_CONDITIONAL
))
1490 /* All partial or conditional def
1491 seen are included in the gen set. */
1492 bitmap_set_bit (bb_info
->gen
, regno
);
1493 else if (DF_REF_FLAGS_IS_SET (def
, DF_REF_MUST_CLOBBER
))
1494 /* Only must clobbers for the entire reg destroy the
1496 bitmap_set_bit (bb_info
->kill
, regno
);
1497 else if (! DF_REF_FLAGS_IS_SET (def
, DF_REF_MAY_CLOBBER
))
1498 bitmap_set_bit (bb_info
->gen
, regno
);
1502 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
1504 df_ref def
= *def_rec
;
1505 bitmap_set_bit (bb_info
->gen
, DF_REF_REGNO (def
));
1510 /* Compute local uninitialized register info. */
1513 df_live_local_compute (bitmap all_blocks ATTRIBUTE_UNUSED
)
1515 unsigned int bb_index
;
1518 df_grow_insn_info ();
1520 EXECUTE_IF_SET_IN_BITMAP (df_live
->out_of_date_transfer_functions
,
1523 df_live_bb_local_compute (bb_index
);
1526 bitmap_clear (df_live
->out_of_date_transfer_functions
);
1530 /* Initialize the solution vectors. */
1533 df_live_init (bitmap all_blocks
)
1535 unsigned int bb_index
;
1538 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
1540 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb_index
);
1541 struct df_lr_bb_info
*bb_lr_info
= df_lr_get_bb_info (bb_index
);
1543 /* No register may reach a location where it is not used. Thus
1544 we trim the rr result to the places where it is used. */
1545 bitmap_and (bb_info
->out
, bb_info
->gen
, bb_lr_info
->out
);
1546 bitmap_clear (bb_info
->in
);
1550 /* Forward confluence function that ignores fake edges. */
1553 df_live_confluence_n (edge e
)
1555 bitmap op1
= df_live_get_bb_info (e
->dest
->index
)->in
;
1556 bitmap op2
= df_live_get_bb_info (e
->src
->index
)->out
;
1558 if (e
->flags
& EDGE_FAKE
)
1561 bitmap_ior_into (op1
, op2
);
1565 /* Transfer function for the forwards must-initialized problem. */
1568 df_live_transfer_function (int bb_index
)
1570 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb_index
);
1571 struct df_lr_bb_info
*bb_lr_info
= df_lr_get_bb_info (bb_index
);
1572 bitmap in
= bb_info
->in
;
1573 bitmap out
= bb_info
->out
;
1574 bitmap gen
= bb_info
->gen
;
1575 bitmap kill
= bb_info
->kill
;
1577 /* We need to use a scratch set here so that the value returned from this
1578 function invocation properly reflects whether the sets changed in a
1579 significant way; i.e. not just because the lr set was anded in. */
1580 bitmap_and (df_live_scratch
, gen
, bb_lr_info
->out
);
1581 /* No register may reach a location where it is not used. Thus
1582 we trim the rr result to the places where it is used. */
1583 bitmap_and_into (in
, bb_lr_info
->in
);
1585 return bitmap_ior_and_compl (out
, df_live_scratch
, in
, kill
);
1589 /* And the LR info with the must-initialized registers, to produce the LIVE info. */
1592 df_live_finalize (bitmap all_blocks
)
1595 if (df_live
->solutions_dirty
)
1598 unsigned int bb_index
;
1600 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
1602 struct df_lr_bb_info
*bb_lr_info
= df_lr_get_bb_info (bb_index
);
1603 struct df_live_bb_info
*bb_live_info
= df_live_get_bb_info (bb_index
);
1605 /* No register may reach a location where it is not used. Thus
1606 we trim the rr result to the places where it is used. */
1607 bitmap_and_into (bb_live_info
->in
, bb_lr_info
->in
);
1608 bitmap_and_into (bb_live_info
->out
, bb_lr_info
->out
);
1611 df_live
->solutions_dirty
= false;
1616 /* Free all storage associated with the problem. */
1621 if (df_live
->block_info
)
1625 for (i
= 0; i
< df_live
->block_info_size
; i
++)
1627 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (i
);
1630 BITMAP_FREE (bb_info
->gen
);
1631 BITMAP_FREE (bb_info
->kill
);
1632 BITMAP_FREE (bb_info
->in
);
1633 BITMAP_FREE (bb_info
->out
);
1637 free_alloc_pool (df_live
->block_pool
);
1638 df_live
->block_info_size
= 0;
1639 free (df_live
->block_info
);
1641 if (df_live_scratch
)
1642 BITMAP_FREE (df_live_scratch
);
1644 BITMAP_FREE (df_live
->out_of_date_transfer_functions
);
1649 /* Debugging info at top of bb. */
1652 df_live_top_dump (basic_block bb
, FILE *file
)
1654 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb
->index
);
1655 struct df_live_problem_data
*problem_data
;
1657 if (!bb_info
|| !bb_info
->in
)
1660 fprintf (file
, ";; live in \t");
1661 df_print_regset (file
, bb_info
->in
);
1662 if (df_live
->problem_data
)
1664 problem_data
= (struct df_live_problem_data
*)df_live
->problem_data
;
1665 fprintf (file
, ";; old in \t");
1666 df_print_regset (file
, problem_data
->in
[bb
->index
]);
1668 fprintf (file
, ";; live gen \t");
1669 df_print_regset (file
, bb_info
->gen
);
1670 fprintf (file
, ";; live kill\t");
1671 df_print_regset (file
, bb_info
->kill
);
1675 /* Debugging info at bottom of bb. */
1678 df_live_bottom_dump (basic_block bb
, FILE *file
)
1680 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb
->index
);
1681 struct df_live_problem_data
*problem_data
;
1683 if (!bb_info
|| !bb_info
->out
)
1686 fprintf (file
, ";; live out \t");
1687 df_print_regset (file
, bb_info
->out
);
1688 if (df_live
->problem_data
)
1690 problem_data
= (struct df_live_problem_data
*)df_live
->problem_data
;
1691 fprintf (file
, ";; old out \t");
1692 df_print_regset (file
, problem_data
->out
[bb
->index
]);
1697 /* Build the datastructure to verify that the solution to the dataflow
1698 equations is not dirty. */
1701 df_live_verify_solution_start (void)
1704 struct df_live_problem_data
*problem_data
;
1705 if (df_live
->solutions_dirty
)
1707 df_live
->problem_data
= NULL
;
1711 /* Set it true so that the solution is recomputed. */
1712 df_live
->solutions_dirty
= true;
1714 problem_data
= XNEW (struct df_live_problem_data
);
1715 df_live
->problem_data
= problem_data
;
1716 problem_data
->in
= XNEWVEC (bitmap
, last_basic_block
);
1717 problem_data
->out
= XNEWVEC (bitmap
, last_basic_block
);
1721 problem_data
->in
[bb
->index
] = BITMAP_ALLOC (NULL
);
1722 problem_data
->out
[bb
->index
] = BITMAP_ALLOC (NULL
);
1723 bitmap_copy (problem_data
->in
[bb
->index
], DF_LIVE_IN (bb
));
1724 bitmap_copy (problem_data
->out
[bb
->index
], DF_LIVE_OUT (bb
));
1729 /* Compare the saved datastructure and the new solution to the dataflow
1733 df_live_verify_solution_end (void)
1735 struct df_live_problem_data
*problem_data
;
1738 if (df_live
->problem_data
== NULL
)
1741 problem_data
= (struct df_live_problem_data
*)df_live
->problem_data
;
1745 if ((!bitmap_equal_p (problem_data
->in
[bb
->index
], DF_LIVE_IN (bb
)))
1746 || (!bitmap_equal_p (problem_data
->out
[bb
->index
], DF_LIVE_OUT (bb
))))
1748 /*df_dump (stderr);*/
1753 /* Cannot delete them immediately because you may want to dump them
1754 if the comparison fails. */
1757 BITMAP_FREE (problem_data
->in
[bb
->index
]);
1758 BITMAP_FREE (problem_data
->out
[bb
->index
]);
1761 free (problem_data
->in
);
1762 free (problem_data
->out
);
1763 free (problem_data
);
1764 df_live
->problem_data
= NULL
;
1768 /* All of the information associated with every instance of the problem. */
1770 static struct df_problem problem_LIVE
=
1772 DF_LIVE
, /* Problem id. */
1773 DF_FORWARD
, /* Direction. */
1774 df_live_alloc
, /* Allocate the problem specific data. */
1775 df_live_reset
, /* Reset global information. */
1776 df_live_free_bb_info
, /* Free basic block info. */
1777 df_live_local_compute
, /* Local compute function. */
1778 df_live_init
, /* Init the solution specific data. */
1779 df_worklist_dataflow
, /* Worklist solver. */
1780 NULL
, /* Confluence operator 0. */
1781 df_live_confluence_n
, /* Confluence operator n. */
1782 df_live_transfer_function
, /* Transfer function. */
1783 df_live_finalize
, /* Finalize function. */
1784 df_live_free
, /* Free all of the problem information. */
1785 df_live_free
, /* Remove this problem from the stack of dataflow problems. */
1786 NULL
, /* Debugging. */
1787 df_live_top_dump
, /* Debugging start block. */
1788 df_live_bottom_dump
, /* Debugging end block. */
1789 df_live_verify_solution_start
,/* Incremental solution verify start. */
1790 df_live_verify_solution_end
, /* Incremental solution verify end. */
1791 &problem_LR
, /* Dependent problem. */
1792 TV_DF_LIVE
, /* Timing variable. */
1793 false /* Reset blocks on dropping out of blocks_to_analyze. */
1797 /* Create a new DATAFLOW instance and add it to an existing instance
1798 of DF. The returned structure is what is used to get at the
1802 df_live_add_problem (void)
1804 df_add_problem (&problem_LIVE
);
1805 /* These will be initialized when df_scan_blocks processes each
1807 df_live
->out_of_date_transfer_functions
= BITMAP_ALLOC (NULL
);
1811 /* Set all of the blocks as dirty. This needs to be done if this
1812 problem is added after all of the insns have been scanned. */
1815 df_live_set_all_dirty (void)
1819 bitmap_set_bit (df_live
->out_of_date_transfer_functions
,
1824 /* Verify that all of the lr related info is consistent and
1828 df_live_verify_transfer_functions (void)
1838 saved_gen
= BITMAP_ALLOC (NULL
);
1839 saved_kill
= BITMAP_ALLOC (NULL
);
1840 all_blocks
= BITMAP_ALLOC (NULL
);
1842 df_grow_insn_info ();
1846 struct df_live_bb_info
*bb_info
= df_live_get_bb_info (bb
->index
);
1847 bitmap_set_bit (all_blocks
, bb
->index
);
1851 /* Make a copy of the transfer functions and then compute
1852 new ones to see if the transfer functions have
1854 if (!bitmap_bit_p (df_live
->out_of_date_transfer_functions
,
1857 bitmap_copy (saved_gen
, bb_info
->gen
);
1858 bitmap_copy (saved_kill
, bb_info
->kill
);
1859 bitmap_clear (bb_info
->gen
);
1860 bitmap_clear (bb_info
->kill
);
1862 df_live_bb_local_compute (bb
->index
);
1863 gcc_assert (bitmap_equal_p (saved_gen
, bb_info
->gen
));
1864 gcc_assert (bitmap_equal_p (saved_kill
, bb_info
->kill
));
1869 /* If we do not have basic block info, the block must be in
1870 the list of dirty blocks or else some one has added a
1871 block behind our backs. */
1872 gcc_assert (bitmap_bit_p (df_live
->out_of_date_transfer_functions
,
1875 /* Make sure no one created a block without following
1877 gcc_assert (df_scan_get_bb_info (bb
->index
));
1880 /* Make sure there are no dirty bits in blocks that have been deleted. */
1881 gcc_assert (!bitmap_intersect_compl_p (df_live
->out_of_date_transfer_functions
,
1883 BITMAP_FREE (saved_gen
);
1884 BITMAP_FREE (saved_kill
);
1885 BITMAP_FREE (all_blocks
);
1888 /*----------------------------------------------------------------------------
1889 CREATE DEF_USE (DU) and / or USE_DEF (UD) CHAINS
1891 Link either the defs to the uses and / or the uses to the defs.
1893 These problems are set up like the other dataflow problems so that
1894 they nicely fit into the framework. They are much simpler and only
1895 involve a single traversal of instructions and an examination of
1896 the reaching defs information (the dependent problem).
1897 ----------------------------------------------------------------------------*/
1899 #define df_chain_problem_p(FLAG) (((enum df_chain_flags)df_chain->local_flags)&(FLAG))
1901 /* Create a du or ud chain from SRC to DST and link it into SRC. */
1904 df_chain_create (df_ref src
, df_ref dst
)
1906 struct df_link
*head
= DF_REF_CHAIN (src
);
1907 struct df_link
*link
= (struct df_link
*) pool_alloc (df_chain
->block_pool
);
1909 DF_REF_CHAIN (src
) = link
;
1916 /* Delete any du or ud chains that start at REF and point to
1919 df_chain_unlink_1 (df_ref ref
, df_ref target
)
1921 struct df_link
*chain
= DF_REF_CHAIN (ref
);
1922 struct df_link
*prev
= NULL
;
1926 if (chain
->ref
== target
)
1929 prev
->next
= chain
->next
;
1931 DF_REF_CHAIN (ref
) = chain
->next
;
1932 pool_free (df_chain
->block_pool
, chain
);
1936 chain
= chain
->next
;
1941 /* Delete a du or ud chain that leave or point to REF. */
1944 df_chain_unlink (df_ref ref
)
1946 struct df_link
*chain
= DF_REF_CHAIN (ref
);
1949 struct df_link
*next
= chain
->next
;
1950 /* Delete the other side if it exists. */
1951 df_chain_unlink_1 (chain
->ref
, ref
);
1952 pool_free (df_chain
->block_pool
, chain
);
1955 DF_REF_CHAIN (ref
) = NULL
;
1959 /* Copy the du or ud chain starting at FROM_REF and attach it to
1963 df_chain_copy (df_ref to_ref
,
1964 struct df_link
*from_ref
)
1968 df_chain_create (to_ref
, from_ref
->ref
);
1969 from_ref
= from_ref
->next
;
1974 /* Remove this problem from the stack of dataflow problems. */
1977 df_chain_remove_problem (void)
1980 unsigned int bb_index
;
1982 /* Wholesale destruction of the old chains. */
1983 if (df_chain
->block_pool
)
1984 free_alloc_pool (df_chain
->block_pool
);
1986 EXECUTE_IF_SET_IN_BITMAP (df_chain
->out_of_date_transfer_functions
, 0, bb_index
, bi
)
1991 basic_block bb
= BASIC_BLOCK (bb_index
);
1993 if (df_chain_problem_p (DF_DU_CHAIN
))
1994 for (def_rec
= df_get_artificial_defs (bb
->index
); *def_rec
; def_rec
++)
1995 DF_REF_CHAIN (*def_rec
) = NULL
;
1996 if (df_chain_problem_p (DF_UD_CHAIN
))
1997 for (use_rec
= df_get_artificial_uses (bb
->index
); *use_rec
; use_rec
++)
1998 DF_REF_CHAIN (*use_rec
) = NULL
;
2000 FOR_BB_INSNS (bb
, insn
)
2002 unsigned int uid
= INSN_UID (insn
);
2006 if (df_chain_problem_p (DF_DU_CHAIN
))
2007 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
2008 DF_REF_CHAIN (*def_rec
) = NULL
;
2009 if (df_chain_problem_p (DF_UD_CHAIN
))
2011 for (use_rec
= DF_INSN_UID_USES (uid
); *use_rec
; use_rec
++)
2012 DF_REF_CHAIN (*use_rec
) = NULL
;
2013 for (use_rec
= DF_INSN_UID_EQ_USES (uid
); *use_rec
; use_rec
++)
2014 DF_REF_CHAIN (*use_rec
) = NULL
;
2020 bitmap_clear (df_chain
->out_of_date_transfer_functions
);
2021 df_chain
->block_pool
= NULL
;
2025 /* Remove the chain problem completely. */
2028 df_chain_fully_remove_problem (void)
2030 df_chain_remove_problem ();
2031 BITMAP_FREE (df_chain
->out_of_date_transfer_functions
);
2036 /* Create def-use or use-def chains. */
2039 df_chain_alloc (bitmap all_blocks ATTRIBUTE_UNUSED
)
2041 df_chain_remove_problem ();
2042 df_chain
->block_pool
= create_alloc_pool ("df_chain_block pool",
2043 sizeof (struct df_link
), 50);
2044 df_chain
->optional_p
= true;
2048 /* Reset all of the chains when the set of basic blocks changes. */
2051 df_chain_reset (bitmap blocks_to_clear ATTRIBUTE_UNUSED
)
2053 df_chain_remove_problem ();
2057 /* Create the chains for a list of USEs. */
2060 df_chain_create_bb_process_use (bitmap local_rd
,
2065 unsigned int def_index
;
2069 df_ref use
= *use_rec
;
2070 unsigned int uregno
= DF_REF_REGNO (use
);
2071 if ((!(df
->changeable_flags
& DF_NO_HARD_REGS
))
2072 || (uregno
>= FIRST_PSEUDO_REGISTER
))
2074 /* Do not want to go through this for an uninitialized var. */
2075 int count
= DF_DEFS_COUNT (uregno
);
2078 if (top_flag
== (DF_REF_FLAGS (use
) & DF_REF_AT_TOP
))
2080 unsigned int first_index
= DF_DEFS_BEGIN (uregno
);
2081 unsigned int last_index
= first_index
+ count
- 1;
2083 EXECUTE_IF_SET_IN_BITMAP (local_rd
, first_index
, def_index
, bi
)
2086 if (def_index
> last_index
)
2089 def
= DF_DEFS_GET (def_index
);
2090 if (df_chain_problem_p (DF_DU_CHAIN
))
2091 df_chain_create (def
, use
);
2092 if (df_chain_problem_p (DF_UD_CHAIN
))
2093 df_chain_create (use
, def
);
2104 /* Create chains from reaching defs bitmaps for basic block BB. */
2107 df_chain_create_bb (unsigned int bb_index
)
2109 basic_block bb
= BASIC_BLOCK (bb_index
);
2110 struct df_rd_bb_info
*bb_info
= df_rd_get_bb_info (bb_index
);
2112 bitmap cpy
= BITMAP_ALLOC (NULL
);
2114 bitmap_copy (cpy
, bb_info
->in
);
2115 bitmap_set_bit (df_chain
->out_of_date_transfer_functions
, bb_index
);
2117 /* Since we are going forwards, process the artificial uses first
2118 then the artificial defs second. */
2121 /* Create the chains for the artificial uses from the EH_USES at the
2122 beginning of the block. */
2124 /* Artificials are only hard regs. */
2125 if (!(df
->changeable_flags
& DF_NO_HARD_REGS
))
2126 df_chain_create_bb_process_use (cpy
,
2127 df_get_artificial_uses (bb
->index
),
2131 df_rd_simulate_artificial_defs_at_top (bb
, cpy
);
2133 /* Process the regular instructions next. */
2134 FOR_BB_INSNS (bb
, insn
)
2137 unsigned int uid
= INSN_UID (insn
);
2139 /* First scan the uses and link them up with the defs that remain
2140 in the cpy vector. */
2141 df_chain_create_bb_process_use (cpy
, DF_INSN_UID_USES (uid
), 0);
2142 if (df
->changeable_flags
& DF_EQ_NOTES
)
2143 df_chain_create_bb_process_use (cpy
, DF_INSN_UID_EQ_USES (uid
), 0);
2145 /* Since we are going forwards, process the defs second. */
2146 df_rd_simulate_one_insn (bb
, insn
, cpy
);
2149 /* Create the chains for the artificial uses of the hard registers
2150 at the end of the block. */
2151 if (!(df
->changeable_flags
& DF_NO_HARD_REGS
))
2152 df_chain_create_bb_process_use (cpy
,
2153 df_get_artificial_uses (bb
->index
),
2159 /* Create def-use chains from reaching use bitmaps for basic blocks
2163 df_chain_finalize (bitmap all_blocks
)
2165 unsigned int bb_index
;
2168 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
2170 df_chain_create_bb (bb_index
);
2175 /* Free all storage associated with the problem. */
2178 df_chain_free (void)
2180 free_alloc_pool (df_chain
->block_pool
);
2181 BITMAP_FREE (df_chain
->out_of_date_transfer_functions
);
2186 /* Debugging info. */
2189 df_chain_top_dump (basic_block bb
, FILE *file
)
2191 if (df_chain_problem_p (DF_DU_CHAIN
))
2194 df_ref
*def_rec
= df_get_artificial_defs (bb
->index
);
2198 fprintf (file
, ";; DU chains for artificial defs\n");
2201 df_ref def
= *def_rec
;
2202 fprintf (file
, ";; reg %d ", DF_REF_REGNO (def
));
2203 df_chain_dump (DF_REF_CHAIN (def
), file
);
2204 fprintf (file
, "\n");
2209 FOR_BB_INSNS (bb
, insn
)
2213 struct df_insn_info
*insn_info
= DF_INSN_INFO_GET (insn
);
2214 def_rec
= DF_INSN_INFO_DEFS (insn_info
);
2217 fprintf (file
, ";; DU chains for insn luid %d uid %d\n",
2218 DF_INSN_INFO_LUID (insn_info
), INSN_UID (insn
));
2222 df_ref def
= *def_rec
;
2223 fprintf (file
, ";; reg %d ", DF_REF_REGNO (def
));
2224 if (DF_REF_FLAGS (def
) & DF_REF_READ_WRITE
)
2225 fprintf (file
, "read/write ");
2226 df_chain_dump (DF_REF_CHAIN (def
), file
);
2227 fprintf (file
, "\n");
2238 df_chain_bottom_dump (basic_block bb
, FILE *file
)
2240 if (df_chain_problem_p (DF_UD_CHAIN
))
2243 df_ref
*use_rec
= df_get_artificial_uses (bb
->index
);
2247 fprintf (file
, ";; UD chains for artificial uses\n");
2250 df_ref use
= *use_rec
;
2251 fprintf (file
, ";; reg %d ", DF_REF_REGNO (use
));
2252 df_chain_dump (DF_REF_CHAIN (use
), file
);
2253 fprintf (file
, "\n");
2258 FOR_BB_INSNS (bb
, insn
)
2262 struct df_insn_info
*insn_info
= DF_INSN_INFO_GET (insn
);
2263 df_ref
*eq_use_rec
= DF_INSN_INFO_EQ_USES (insn_info
);
2264 use_rec
= DF_INSN_INFO_USES (insn_info
);
2265 if (*use_rec
|| *eq_use_rec
)
2267 fprintf (file
, ";; UD chains for insn luid %d uid %d\n",
2268 DF_INSN_INFO_LUID (insn_info
), INSN_UID (insn
));
2272 df_ref use
= *use_rec
;
2273 fprintf (file
, ";; reg %d ", DF_REF_REGNO (use
));
2274 if (DF_REF_FLAGS (use
) & DF_REF_READ_WRITE
)
2275 fprintf (file
, "read/write ");
2276 df_chain_dump (DF_REF_CHAIN (use
), file
);
2277 fprintf (file
, "\n");
2282 df_ref use
= *eq_use_rec
;
2283 fprintf (file
, ";; eq_note reg %d ", DF_REF_REGNO (use
));
2284 df_chain_dump (DF_REF_CHAIN (use
), file
);
2285 fprintf (file
, "\n");
2295 static struct df_problem problem_CHAIN
=
2297 DF_CHAIN
, /* Problem id. */
2298 DF_NONE
, /* Direction. */
2299 df_chain_alloc
, /* Allocate the problem specific data. */
2300 df_chain_reset
, /* Reset global information. */
2301 NULL
, /* Free basic block info. */
2302 NULL
, /* Local compute function. */
2303 NULL
, /* Init the solution specific data. */
2304 NULL
, /* Iterative solver. */
2305 NULL
, /* Confluence operator 0. */
2306 NULL
, /* Confluence operator n. */
2307 NULL
, /* Transfer function. */
2308 df_chain_finalize
, /* Finalize function. */
2309 df_chain_free
, /* Free all of the problem information. */
2310 df_chain_fully_remove_problem
,/* Remove this problem from the stack of dataflow problems. */
2311 NULL
, /* Debugging. */
2312 df_chain_top_dump
, /* Debugging start block. */
2313 df_chain_bottom_dump
, /* Debugging end block. */
2314 NULL
, /* Incremental solution verify start. */
2315 NULL
, /* Incremental solution verify end. */
2316 &problem_RD
, /* Dependent problem. */
2317 TV_DF_CHAIN
, /* Timing variable. */
2318 false /* Reset blocks on dropping out of blocks_to_analyze. */
2322 /* Create a new DATAFLOW instance and add it to an existing instance
2323 of DF. The returned structure is what is used to get at the
2327 df_chain_add_problem (unsigned int chain_flags
)
2329 df_add_problem (&problem_CHAIN
);
2330 df_chain
->local_flags
= chain_flags
;
2331 df_chain
->out_of_date_transfer_functions
= BITMAP_ALLOC (NULL
);
2334 #undef df_chain_problem_p
2337 /*----------------------------------------------------------------------------
2338 BYTE LEVEL LIVE REGISTERS
2340 Find the locations in the function where any use of a pseudo can
2341 reach in the backwards direction. In and out bitvectors are built
2342 for each basic block. There are two mapping functions,
2343 df_byte_lr_get_regno_start and df_byte_lr_get_regno_len that are
2344 used to map regnos into bit vector positions.
2346 This problem differs from the regular df_lr function in the way
2347 that subregs, *_extracts and strict_low_parts are handled. In lr
2348 these are consider partial kills, here, the exact set of bytes is
2349 modeled. Note that any reg that has none of these operations is
2350 only modeled with a single bit since all operations access the
2353 This problem is more brittle that the regular lr. It currently can
2354 be used in dce incrementally, but cannot be used in an environment
2355 where insns are created or modified. The problem is that the
2356 mapping of regnos to bitmap positions is relatively compact, in
2357 that if a pseudo does not do any of the byte wise operations, only
2358 one slot is allocated, rather than a slot for each byte. If insn
2359 are created, where a subreg is used for a reg that had no subregs,
2360 the mapping would be wrong. Likewise, there are no checks to see
2361 that new pseudos have been added. These issues could be addressed
2362 by adding a problem specific flag to not use the compact mapping,
2363 if there was a need to do so.
2365 ----------------------------------------------------------------------------*/
2367 /* Private data used to verify the solution for this problem. */
2368 struct df_byte_lr_problem_data
2370 /* Expanded versions of bitvectors used in lr. */
2371 bitmap invalidated_by_call
;
2372 bitmap hardware_regs_used
;
2374 /* Indexed by regno, this is true if there are subregs, extracts or
2375 strict_low_parts for this regno. */
2376 bitmap needs_expansion
;
2378 /* The start position and len for each regno in the various bit
2380 unsigned int* regno_start
;
2381 unsigned int* regno_len
;
2382 /* An obstack for the bitmaps we need for this problem. */
2383 bitmap_obstack byte_lr_bitmaps
;
2387 /* Get the starting location for REGNO in the df_byte_lr bitmaps. */
2390 df_byte_lr_get_regno_start (unsigned int regno
)
2392 struct df_byte_lr_problem_data
*problem_data
2393 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;;
2394 return problem_data
->regno_start
[regno
];
2398 /* Get the len for REGNO in the df_byte_lr bitmaps. */
2401 df_byte_lr_get_regno_len (unsigned int regno
)
2403 struct df_byte_lr_problem_data
*problem_data
2404 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;;
2405 return problem_data
->regno_len
[regno
];
2409 /* Set basic block info. */
2412 df_byte_lr_set_bb_info (unsigned int index
,
2413 struct df_byte_lr_bb_info
*bb_info
)
2415 gcc_assert (df_byte_lr
);
2416 gcc_assert (index
< df_byte_lr
->block_info_size
);
2417 df_byte_lr
->block_info
[index
] = bb_info
;
2421 /* Free basic block info. */
2424 df_byte_lr_free_bb_info (basic_block bb ATTRIBUTE_UNUSED
,
2427 struct df_byte_lr_bb_info
*bb_info
= (struct df_byte_lr_bb_info
*) vbb_info
;
2430 BITMAP_FREE (bb_info
->use
);
2431 BITMAP_FREE (bb_info
->def
);
2432 BITMAP_FREE (bb_info
->in
);
2433 BITMAP_FREE (bb_info
->out
);
2434 pool_free (df_byte_lr
->block_pool
, bb_info
);
2439 /* Check all of the refs in REF_REC to see if any of them are
2440 extracts, subregs or strict_low_parts. */
2443 df_byte_lr_check_regs (df_ref
*ref_rec
)
2445 struct df_byte_lr_problem_data
*problem_data
2446 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2448 for (; *ref_rec
; ref_rec
++)
2450 df_ref ref
= *ref_rec
;
2451 if (DF_REF_FLAGS_IS_SET (ref
, DF_REF_SIGN_EXTRACT
2452 | DF_REF_ZERO_EXTRACT
2453 | DF_REF_STRICT_LOW_PART
)
2454 || GET_CODE (DF_REF_REG (ref
)) == SUBREG
)
2455 bitmap_set_bit (problem_data
->needs_expansion
, DF_REF_REGNO (ref
));
2460 /* Expand bitmap SRC which is indexed by regno to DEST which is indexed by
2461 regno_start and regno_len. */
2464 df_byte_lr_expand_bitmap (bitmap dest
, bitmap src
)
2466 struct df_byte_lr_problem_data
*problem_data
2467 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2471 bitmap_clear (dest
);
2472 EXECUTE_IF_SET_IN_BITMAP (src
, 0, i
, bi
)
2474 bitmap_set_range (dest
, problem_data
->regno_start
[i
],
2475 problem_data
->regno_len
[i
]);
2480 /* Allocate or reset bitmaps for DF_BYTE_LR blocks. The solution bits are
2481 not touched unless the block is new. */
2484 df_byte_lr_alloc (bitmap all_blocks ATTRIBUTE_UNUSED
)
2486 unsigned int bb_index
;
2490 unsigned int index
= 0;
2491 unsigned int max_reg
= max_reg_num();
2492 struct df_byte_lr_problem_data
*problem_data
2493 = XNEW (struct df_byte_lr_problem_data
);
2495 df_byte_lr
->problem_data
= problem_data
;
2497 if (!df_byte_lr
->block_pool
)
2498 df_byte_lr
->block_pool
= create_alloc_pool ("df_byte_lr_block pool",
2499 sizeof (struct df_byte_lr_bb_info
), 50);
2501 df_grow_bb_info (df_byte_lr
);
2503 /* Create the mapping from regnos to slots. This does not change
2504 unless the problem is destroyed and recreated. In particular, if
2505 we end up deleting the only insn that used a subreg, we do not
2506 want to redo the mapping because this would invalidate everything
2509 bitmap_obstack_initialize (&problem_data
->byte_lr_bitmaps
);
2510 problem_data
->regno_start
= XNEWVEC (unsigned int, max_reg
);
2511 problem_data
->regno_len
= XNEWVEC (unsigned int, max_reg
);
2512 problem_data
->hardware_regs_used
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2513 problem_data
->invalidated_by_call
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2514 problem_data
->needs_expansion
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2516 /* Discover which regno's use subregs, extracts or
2517 strict_low_parts. */
2521 FOR_BB_INSNS (bb
, insn
)
2525 struct df_insn_info
*insn_info
= DF_INSN_INFO_GET (insn
);
2526 df_byte_lr_check_regs (DF_INSN_INFO_DEFS (insn_info
));
2527 df_byte_lr_check_regs (DF_INSN_INFO_USES (insn_info
));
2530 bitmap_set_bit (df_byte_lr
->out_of_date_transfer_functions
, bb
->index
);
2533 bitmap_set_bit (df_byte_lr
->out_of_date_transfer_functions
, ENTRY_BLOCK
);
2534 bitmap_set_bit (df_byte_lr
->out_of_date_transfer_functions
, EXIT_BLOCK
);
2536 /* Allocate the slots for each regno. */
2537 for (regno
= 0; regno
< max_reg
; regno
++)
2540 problem_data
->regno_start
[regno
] = index
;
2541 if (bitmap_bit_p (problem_data
->needs_expansion
, regno
))
2542 len
= GET_MODE_SIZE (GET_MODE (regno_reg_rtx
[regno
]));
2546 problem_data
->regno_len
[regno
] = len
;
2550 df_byte_lr_expand_bitmap (problem_data
->hardware_regs_used
,
2551 df
->hardware_regs_used
);
2552 df_byte_lr_expand_bitmap (problem_data
->invalidated_by_call
,
2553 regs_invalidated_by_call_regset
);
2555 EXECUTE_IF_SET_IN_BITMAP (df_byte_lr
->out_of_date_transfer_functions
, 0, bb_index
, bi
)
2557 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb_index
);
2560 bitmap_clear (bb_info
->def
);
2561 bitmap_clear (bb_info
->use
);
2565 bb_info
= (struct df_byte_lr_bb_info
*) pool_alloc (df_byte_lr
->block_pool
);
2566 df_byte_lr_set_bb_info (bb_index
, bb_info
);
2567 bb_info
->use
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2568 bb_info
->def
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2569 bb_info
->in
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2570 bb_info
->out
= BITMAP_ALLOC (&problem_data
->byte_lr_bitmaps
);
2574 df_byte_lr
->optional_p
= true;
2578 /* Reset the global solution for recalculation. */
2581 df_byte_lr_reset (bitmap all_blocks
)
2583 unsigned int bb_index
;
2586 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
2588 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb_index
);
2589 gcc_assert (bb_info
);
2590 bitmap_clear (bb_info
->in
);
2591 bitmap_clear (bb_info
->out
);
2596 /* Compute local live register info for basic block BB. */
2599 df_byte_lr_bb_local_compute (unsigned int bb_index
)
2601 struct df_byte_lr_problem_data
*problem_data
2602 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2603 basic_block bb
= BASIC_BLOCK (bb_index
);
2604 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb_index
);
2609 /* Process the registers set in an exception handler. */
2610 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
2612 df_ref def
= *def_rec
;
2613 if ((DF_REF_FLAGS (def
) & DF_REF_AT_TOP
) == 0)
2615 unsigned int dregno
= DF_REF_REGNO (def
);
2616 unsigned int start
= problem_data
->regno_start
[dregno
];
2617 unsigned int len
= problem_data
->regno_len
[dregno
];
2618 bitmap_set_range (bb_info
->def
, start
, len
);
2619 bitmap_clear_range (bb_info
->use
, start
, len
);
2623 /* Process the hardware registers that are always live. */
2624 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
2626 df_ref use
= *use_rec
;
2627 /* Add use to set of uses in this BB. */
2628 if ((DF_REF_FLAGS (use
) & DF_REF_AT_TOP
) == 0)
2630 unsigned int uregno
= DF_REF_REGNO (use
);
2631 unsigned int start
= problem_data
->regno_start
[uregno
];
2632 unsigned int len
= problem_data
->regno_len
[uregno
];
2633 bitmap_set_range (bb_info
->use
, start
, len
);
2637 FOR_BB_INSNS_REVERSE (bb
, insn
)
2639 unsigned int uid
= INSN_UID (insn
);
2644 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
2646 df_ref def
= *def_rec
;
2647 /* If the def is to only part of the reg, it does
2648 not kill the other defs that reach here. */
2649 if (!(DF_REF_FLAGS (def
) & (DF_REF_CONDITIONAL
)))
2651 unsigned int dregno
= DF_REF_REGNO (def
);
2652 unsigned int start
= problem_data
->regno_start
[dregno
];
2653 unsigned int len
= problem_data
->regno_len
[dregno
];
2656 if (!df_compute_accessed_bytes (def
, DF_MM_MUST
, &sb
, &lb
))
2663 bitmap_set_range (bb_info
->def
, start
, len
);
2664 bitmap_clear_range (bb_info
->use
, start
, len
);
2669 for (use_rec
= DF_INSN_UID_USES (uid
); *use_rec
; use_rec
++)
2671 df_ref use
= *use_rec
;
2672 unsigned int uregno
= DF_REF_REGNO (use
);
2673 unsigned int start
= problem_data
->regno_start
[uregno
];
2674 unsigned int len
= problem_data
->regno_len
[uregno
];
2677 if (!df_compute_accessed_bytes (use
, DF_MM_MAY
, &sb
, &lb
))
2682 /* Add use to set of uses in this BB. */
2684 bitmap_set_range (bb_info
->use
, start
, len
);
2688 /* Process the registers set in an exception handler or the hard
2689 frame pointer if this block is the target of a non local
2691 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
2693 df_ref def
= *def_rec
;
2694 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
2696 unsigned int dregno
= DF_REF_REGNO (def
);
2697 unsigned int start
= problem_data
->regno_start
[dregno
];
2698 unsigned int len
= problem_data
->regno_len
[dregno
];
2699 bitmap_set_range (bb_info
->def
, start
, len
);
2700 bitmap_clear_range (bb_info
->use
, start
, len
);
2705 /* Process the uses that are live into an exception handler. */
2706 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
2708 df_ref use
= *use_rec
;
2709 /* Add use to set of uses in this BB. */
2710 if (DF_REF_FLAGS (use
) & DF_REF_AT_TOP
)
2712 unsigned int uregno
= DF_REF_REGNO (use
);
2713 unsigned int start
= problem_data
->regno_start
[uregno
];
2714 unsigned int len
= problem_data
->regno_len
[uregno
];
2715 bitmap_set_range (bb_info
->use
, start
, len
);
2722 /* Compute local live register info for each basic block within BLOCKS. */
2725 df_byte_lr_local_compute (bitmap all_blocks ATTRIBUTE_UNUSED
)
2727 unsigned int bb_index
;
2730 EXECUTE_IF_SET_IN_BITMAP (df_byte_lr
->out_of_date_transfer_functions
, 0, bb_index
, bi
)
2732 if (bb_index
== EXIT_BLOCK
)
2734 /* The exit block is special for this problem and its bits are
2735 computed from thin air. */
2736 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (EXIT_BLOCK
);
2737 df_byte_lr_expand_bitmap (bb_info
->use
, df
->exit_block_uses
);
2740 df_byte_lr_bb_local_compute (bb_index
);
2743 bitmap_clear (df_byte_lr
->out_of_date_transfer_functions
);
2747 /* Initialize the solution vectors. */
2750 df_byte_lr_init (bitmap all_blocks
)
2752 unsigned int bb_index
;
2755 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
2757 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb_index
);
2758 bitmap_copy (bb_info
->in
, bb_info
->use
);
2759 bitmap_clear (bb_info
->out
);
2764 /* Confluence function that processes infinite loops. This might be a
2765 noreturn function that throws. And even if it isn't, getting the
2766 unwind info right helps debugging. */
2768 df_byte_lr_confluence_0 (basic_block bb
)
2770 struct df_byte_lr_problem_data
*problem_data
2771 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2772 bitmap op1
= df_byte_lr_get_bb_info (bb
->index
)->out
;
2773 if (bb
!= EXIT_BLOCK_PTR
)
2774 bitmap_copy (op1
, problem_data
->hardware_regs_used
);
2778 /* Confluence function that ignores fake edges. */
2781 df_byte_lr_confluence_n (edge e
)
2783 struct df_byte_lr_problem_data
*problem_data
2784 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2785 bitmap op1
= df_byte_lr_get_bb_info (e
->src
->index
)->out
;
2786 bitmap op2
= df_byte_lr_get_bb_info (e
->dest
->index
)->in
;
2788 /* Call-clobbered registers die across exception and call edges. */
2789 /* ??? Abnormal call edges ignored for the moment, as this gets
2790 confused by sibling call edges, which crashes reg-stack. */
2791 if (e
->flags
& EDGE_EH
)
2792 bitmap_ior_and_compl_into (op1
, op2
, problem_data
->invalidated_by_call
);
2794 bitmap_ior_into (op1
, op2
);
2796 bitmap_ior_into (op1
, problem_data
->hardware_regs_used
);
2800 /* Transfer function. */
2803 df_byte_lr_transfer_function (int bb_index
)
2805 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb_index
);
2806 bitmap in
= bb_info
->in
;
2807 bitmap out
= bb_info
->out
;
2808 bitmap use
= bb_info
->use
;
2809 bitmap def
= bb_info
->def
;
2811 return bitmap_ior_and_compl (in
, use
, out
, def
);
2815 /* Free all storage associated with the problem. */
2818 df_byte_lr_free (void)
2820 struct df_byte_lr_problem_data
*problem_data
2821 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2824 if (df_byte_lr
->block_info
)
2826 free_alloc_pool (df_byte_lr
->block_pool
);
2827 df_byte_lr
->block_info_size
= 0;
2828 free (df_byte_lr
->block_info
);
2831 BITMAP_FREE (df_byte_lr
->out_of_date_transfer_functions
);
2832 bitmap_obstack_release (&problem_data
->byte_lr_bitmaps
);
2833 free (problem_data
->regno_start
);
2834 free (problem_data
->regno_len
);
2835 free (problem_data
);
2840 /* Debugging info at top of bb. */
2843 df_byte_lr_top_dump (basic_block bb
, FILE *file
)
2845 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb
->index
);
2846 if (!bb_info
|| !bb_info
->in
)
2849 fprintf (file
, ";; blr in \t");
2850 df_print_byte_regset (file
, bb_info
->in
);
2851 fprintf (file
, ";; blr use \t");
2852 df_print_byte_regset (file
, bb_info
->use
);
2853 fprintf (file
, ";; blr def \t");
2854 df_print_byte_regset (file
, bb_info
->def
);
2858 /* Debugging info at bottom of bb. */
2861 df_byte_lr_bottom_dump (basic_block bb
, FILE *file
)
2863 struct df_byte_lr_bb_info
*bb_info
= df_byte_lr_get_bb_info (bb
->index
);
2864 if (!bb_info
|| !bb_info
->out
)
2867 fprintf (file
, ";; blr out \t");
2868 df_print_byte_regset (file
, bb_info
->out
);
2872 /* All of the information associated with every instance of the problem. */
2874 static struct df_problem problem_BYTE_LR
=
2876 DF_BYTE_LR
, /* Problem id. */
2877 DF_BACKWARD
, /* Direction. */
2878 df_byte_lr_alloc
, /* Allocate the problem specific data. */
2879 df_byte_lr_reset
, /* Reset global information. */
2880 df_byte_lr_free_bb_info
, /* Free basic block info. */
2881 df_byte_lr_local_compute
, /* Local compute function. */
2882 df_byte_lr_init
, /* Init the solution specific data. */
2883 df_worklist_dataflow
, /* Worklist solver. */
2884 df_byte_lr_confluence_0
, /* Confluence operator 0. */
2885 df_byte_lr_confluence_n
, /* Confluence operator n. */
2886 df_byte_lr_transfer_function
, /* Transfer function. */
2887 NULL
, /* Finalize function. */
2888 df_byte_lr_free
, /* Free all of the problem information. */
2889 df_byte_lr_free
, /* Remove this problem from the stack of dataflow problems. */
2890 NULL
, /* Debugging. */
2891 df_byte_lr_top_dump
, /* Debugging start block. */
2892 df_byte_lr_bottom_dump
, /* Debugging end block. */
2893 NULL
, /* Incremental solution verify start. */
2894 NULL
, /* Incremental solution verify end. */
2895 NULL
, /* Dependent problem. */
2896 TV_DF_BYTE_LR
, /* Timing variable. */
2897 false /* Reset blocks on dropping out of blocks_to_analyze. */
2901 /* Create a new DATAFLOW instance and add it to an existing instance
2902 of DF. The returned structure is what is used to get at the
2906 df_byte_lr_add_problem (void)
2908 df_add_problem (&problem_BYTE_LR
);
2909 /* These will be initialized when df_scan_blocks processes each
2911 df_byte_lr
->out_of_date_transfer_functions
= BITMAP_ALLOC (NULL
);
2915 /* Simulate the effects of the defs of INSN on LIVE. */
2918 df_byte_lr_simulate_defs (rtx insn
, bitmap live
)
2920 struct df_byte_lr_problem_data
*problem_data
2921 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2923 unsigned int uid
= INSN_UID (insn
);
2925 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
2927 df_ref def
= *def_rec
;
2929 /* If the def is to only part of the reg, it does
2930 not kill the other defs that reach here. */
2931 if (!(DF_REF_FLAGS (def
) & DF_REF_CONDITIONAL
))
2933 unsigned int dregno
= DF_REF_REGNO (def
);
2934 unsigned int start
= problem_data
->regno_start
[dregno
];
2935 unsigned int len
= problem_data
->regno_len
[dregno
];
2938 if (!df_compute_accessed_bytes (def
, DF_MM_MUST
, &sb
, &lb
))
2945 bitmap_clear_range (live
, start
, len
);
2951 /* Simulate the effects of the uses of INSN on LIVE. */
2954 df_byte_lr_simulate_uses (rtx insn
, bitmap live
)
2956 struct df_byte_lr_problem_data
*problem_data
2957 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2959 unsigned int uid
= INSN_UID (insn
);
2961 for (use_rec
= DF_INSN_UID_USES (uid
); *use_rec
; use_rec
++)
2963 df_ref use
= *use_rec
;
2964 unsigned int uregno
= DF_REF_REGNO (use
);
2965 unsigned int start
= problem_data
->regno_start
[uregno
];
2966 unsigned int len
= problem_data
->regno_len
[uregno
];
2970 if (!df_compute_accessed_bytes (use
, DF_MM_MAY
, &sb
, &lb
))
2976 /* Add use to set of uses in this BB. */
2978 bitmap_set_range (live
, start
, len
);
2983 /* Apply the artificial uses and defs at the top of BB in a forwards
2987 df_byte_lr_simulate_artificial_refs_at_top (basic_block bb
, bitmap live
)
2989 struct df_byte_lr_problem_data
*problem_data
2990 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
2995 int bb_index
= bb
->index
;
2998 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
3000 df_ref use
= *use_rec
;
3001 if (DF_REF_FLAGS (use
) & DF_REF_AT_TOP
)
3003 unsigned int uregno
= DF_REF_REGNO (use
);
3004 unsigned int start
= problem_data
->regno_start
[uregno
];
3005 unsigned int len
= problem_data
->regno_len
[uregno
];
3006 bitmap_set_range (live
, start
, len
);
3011 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
3013 df_ref def
= *def_rec
;
3014 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
3016 unsigned int dregno
= DF_REF_REGNO (def
);
3017 unsigned int start
= problem_data
->regno_start
[dregno
];
3018 unsigned int len
= problem_data
->regno_len
[dregno
];
3019 bitmap_clear_range (live
, start
, len
);
3025 /* Apply the artificial uses and defs at the end of BB in a backwards
3029 df_byte_lr_simulate_artificial_refs_at_end (basic_block bb
, bitmap live
)
3031 struct df_byte_lr_problem_data
*problem_data
3032 = (struct df_byte_lr_problem_data
*)df_byte_lr
->problem_data
;
3035 int bb_index
= bb
->index
;
3037 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
3039 df_ref def
= *def_rec
;
3040 if ((DF_REF_FLAGS (def
) & DF_REF_AT_TOP
) == 0)
3042 unsigned int dregno
= DF_REF_REGNO (def
);
3043 unsigned int start
= problem_data
->regno_start
[dregno
];
3044 unsigned int len
= problem_data
->regno_len
[dregno
];
3045 bitmap_clear_range (live
, start
, len
);
3049 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
3051 df_ref use
= *use_rec
;
3052 if ((DF_REF_FLAGS (use
) & DF_REF_AT_TOP
) == 0)
3054 unsigned int uregno
= DF_REF_REGNO (use
);
3055 unsigned int start
= problem_data
->regno_start
[uregno
];
3056 unsigned int len
= problem_data
->regno_len
[uregno
];
3057 bitmap_set_range (live
, start
, len
);
3064 /*----------------------------------------------------------------------------
3065 This problem computes REG_DEAD and REG_UNUSED notes.
3066 ----------------------------------------------------------------------------*/
3069 df_note_alloc (bitmap all_blocks ATTRIBUTE_UNUSED
)
3071 df_note
->optional_p
= true;
3074 #ifdef REG_DEAD_DEBUGGING
3076 df_print_note (const char *prefix
, rtx insn
, rtx note
)
3080 fprintf (dump_file
, "%s %d ", prefix
, INSN_UID (insn
));
3081 print_rtl (dump_file
, note
);
3082 fprintf (dump_file
, "\n");
3088 /* After reg-stack, the x86 floating point stack regs are difficult to
3089 analyze because of all of the pushes, pops and rotations. Thus, we
3090 just leave the notes alone. */
3094 df_ignore_stack_reg (int regno
)
3096 return regstack_completed
3097 && IN_RANGE (regno
, FIRST_STACK_REG
, LAST_STACK_REG
);
3101 df_ignore_stack_reg (int regno ATTRIBUTE_UNUSED
)
3108 /* Remove all of the REG_DEAD or REG_UNUSED notes from INSN and add
3109 them to OLD_DEAD_NOTES and OLD_UNUSED_NOTES. */
3112 df_kill_notes (rtx insn
, rtx
*old_dead_notes
, rtx
*old_unused_notes
)
3114 rtx
*pprev
= ®_NOTES (insn
);
3121 switch (REG_NOTE_KIND (link
))
3124 /* After reg-stack, we need to ignore any unused notes
3125 for the stack registers. */
3126 if (df_ignore_stack_reg (REGNO (XEXP (link
, 0))))
3128 pprev
= &XEXP (link
, 1);
3133 rtx next
= XEXP (link
, 1);
3134 #ifdef REG_DEAD_DEBUGGING
3135 df_print_note ("deleting: ", insn
, link
);
3137 XEXP (link
, 1) = dead
;
3139 *pprev
= link
= next
;
3144 /* After reg-stack, we need to ignore any unused notes
3145 for the stack registers. */
3146 if (df_ignore_stack_reg (REGNO (XEXP (link
, 0))))
3148 pprev
= &XEXP (link
, 1);
3153 rtx next
= XEXP (link
, 1);
3154 #ifdef REG_DEAD_DEBUGGING
3155 df_print_note ("deleting: ", insn
, link
);
3157 XEXP (link
, 1) = unused
;
3159 *pprev
= link
= next
;
3164 pprev
= &XEXP (link
, 1);
3170 *old_dead_notes
= dead
;
3171 *old_unused_notes
= unused
;
3175 /* Set a NOTE_TYPE note for REG in INSN. Try to pull it from the OLD
3176 list, otherwise create a new one. */
3179 df_set_note (enum reg_note note_type
, rtx insn
, rtx old
, rtx reg
)
3184 gcc_assert (!DEBUG_INSN_P (insn
));
3187 if (XEXP (curr
, 0) == reg
)
3190 XEXP (prev
, 1) = XEXP (curr
, 1);
3192 old
= XEXP (curr
, 1);
3193 XEXP (curr
, 1) = REG_NOTES (insn
);
3194 REG_NOTES (insn
) = curr
;
3200 curr
= XEXP (curr
, 1);
3203 /* Did not find the note. */
3204 add_reg_note (insn
, note_type
, reg
);
3208 /* A subroutine of df_set_unused_notes_for_mw, with a selection of its
3209 arguments. Return true if the register value described by MWS's
3210 mw_reg is known to be completely unused, and if mw_reg can therefore
3211 be used in a REG_UNUSED note. */
3214 df_whole_mw_reg_unused_p (struct df_mw_hardreg
*mws
,
3215 bitmap live
, bitmap artificial_uses
)
3219 /* If MWS describes a partial reference, create REG_UNUSED notes for
3220 individual hard registers. */
3221 if (mws
->flags
& DF_REF_PARTIAL
)
3224 /* Likewise if some part of the register is used. */
3225 for (r
= mws
->start_regno
; r
<= mws
->end_regno
; r
++)
3226 if (bitmap_bit_p (live
, r
)
3227 || bitmap_bit_p (artificial_uses
, r
))
3230 gcc_assert (REG_P (mws
->mw_reg
));
3234 /* Set the REG_UNUSED notes for the multiword hardreg defs in INSN
3235 based on the bits in LIVE. Do not generate notes for registers in
3236 artificial uses. DO_NOT_GEN is updated so that REG_DEAD notes are
3237 not generated if the reg is both read and written by the
3242 df_set_unused_notes_for_mw (rtx insn
, rtx old
, struct df_mw_hardreg
*mws
,
3243 bitmap live
, bitmap do_not_gen
,
3244 bitmap artificial_uses
)
3248 #ifdef REG_DEAD_DEBUGGING
3250 fprintf (dump_file
, "mw_set_unused looking at mws[%d..%d]\n",
3251 mws
->start_regno
, mws
->end_regno
);
3254 if (df_whole_mw_reg_unused_p (mws
, live
, artificial_uses
))
3256 unsigned int regno
= mws
->start_regno
;
3257 old
= df_set_note (REG_UNUSED
, insn
, old
, mws
->mw_reg
);
3259 #ifdef REG_DEAD_DEBUGGING
3260 df_print_note ("adding 1: ", insn
, REG_NOTES (insn
));
3262 bitmap_set_bit (do_not_gen
, regno
);
3263 /* Only do this if the value is totally dead. */
3266 for (r
= mws
->start_regno
; r
<= mws
->end_regno
; r
++)
3268 if (!bitmap_bit_p (live
, r
)
3269 && !bitmap_bit_p (artificial_uses
, r
))
3271 old
= df_set_note (REG_UNUSED
, insn
, old
, regno_reg_rtx
[r
]);
3272 #ifdef REG_DEAD_DEBUGGING
3273 df_print_note ("adding 2: ", insn
, REG_NOTES (insn
));
3276 bitmap_set_bit (do_not_gen
, r
);
3282 /* A subroutine of df_set_dead_notes_for_mw, with a selection of its
3283 arguments. Return true if the register value described by MWS's
3284 mw_reg is known to be completely dead, and if mw_reg can therefore
3285 be used in a REG_DEAD note. */
3288 df_whole_mw_reg_dead_p (struct df_mw_hardreg
*mws
,
3289 bitmap live
, bitmap artificial_uses
,
3294 /* If MWS describes a partial reference, create REG_DEAD notes for
3295 individual hard registers. */
3296 if (mws
->flags
& DF_REF_PARTIAL
)
3299 /* Likewise if some part of the register is not dead. */
3300 for (r
= mws
->start_regno
; r
<= mws
->end_regno
; r
++)
3301 if (bitmap_bit_p (live
, r
)
3302 || bitmap_bit_p (artificial_uses
, r
)
3303 || bitmap_bit_p (do_not_gen
, r
))
3306 gcc_assert (REG_P (mws
->mw_reg
));
3310 /* Set the REG_DEAD notes for the multiword hardreg use in INSN based
3311 on the bits in LIVE. DO_NOT_GEN is used to keep REG_DEAD notes
3312 from being set if the instruction both reads and writes the
3316 df_set_dead_notes_for_mw (rtx insn
, rtx old
, struct df_mw_hardreg
*mws
,
3317 bitmap live
, bitmap do_not_gen
,
3318 bitmap artificial_uses
, bool *added_notes_p
)
3321 bool is_debug
= *added_notes_p
;
3323 *added_notes_p
= false;
3325 #ifdef REG_DEAD_DEBUGGING
3328 fprintf (dump_file
, "mw_set_dead looking at mws[%d..%d]\n do_not_gen =",
3329 mws
->start_regno
, mws
->end_regno
);
3330 df_print_regset (dump_file
, do_not_gen
);
3331 fprintf (dump_file
, " live =");
3332 df_print_regset (dump_file
, live
);
3333 fprintf (dump_file
, " artificial uses =");
3334 df_print_regset (dump_file
, artificial_uses
);
3338 if (df_whole_mw_reg_dead_p (mws
, live
, artificial_uses
, do_not_gen
))
3340 /* Add a dead note for the entire multi word register. */
3343 *added_notes_p
= true;
3346 old
= df_set_note (REG_DEAD
, insn
, old
, mws
->mw_reg
);
3347 #ifdef REG_DEAD_DEBUGGING
3348 df_print_note ("adding 1: ", insn
, REG_NOTES (insn
));
3353 for (r
= mws
->start_regno
; r
<= mws
->end_regno
; r
++)
3354 if (!bitmap_bit_p (live
, r
)
3355 && !bitmap_bit_p (artificial_uses
, r
)
3356 && !bitmap_bit_p (do_not_gen
, r
))
3360 *added_notes_p
= true;
3363 old
= df_set_note (REG_DEAD
, insn
, old
, regno_reg_rtx
[r
]);
3364 #ifdef REG_DEAD_DEBUGGING
3365 df_print_note ("adding 2: ", insn
, REG_NOTES (insn
));
3373 /* Create a REG_UNUSED note if necessary for DEF in INSN updating
3374 LIVE. Do not generate notes for registers in ARTIFICIAL_USES. */
3377 df_create_unused_note (rtx insn
, rtx old
, df_ref def
,
3378 bitmap live
, bitmap artificial_uses
)
3380 unsigned int dregno
= DF_REF_REGNO (def
);
3382 #ifdef REG_DEAD_DEBUGGING
3385 fprintf (dump_file
, " regular looking at def ");
3386 df_ref_debug (def
, dump_file
);
3390 if (!(bitmap_bit_p (live
, dregno
)
3391 || (DF_REF_FLAGS (def
) & DF_REF_MW_HARDREG
)
3392 || bitmap_bit_p (artificial_uses
, dregno
)
3393 || df_ignore_stack_reg (dregno
)))
3395 rtx reg
= (DF_REF_LOC (def
))
3396 ? *DF_REF_REAL_LOC (def
): DF_REF_REG (def
);
3397 old
= df_set_note (REG_UNUSED
, insn
, old
, reg
);
3398 #ifdef REG_DEAD_DEBUGGING
3399 df_print_note ("adding 3: ", insn
, REG_NOTES (insn
));
3406 /* Node of a linked list of uses of dead REGs in debug insns. */
3407 struct dead_debug_use
3410 struct dead_debug_use
*next
;
3413 /* Linked list of the above, with a bitmap of the REGs in the
3417 struct dead_debug_use
*head
;
3422 /* Initialize DEBUG to an empty list, and clear USED, if given. */
3424 dead_debug_init (struct dead_debug
*debug
, bitmap used
)
3428 debug
->to_rescan
= NULL
;
3430 bitmap_clear (used
);
3433 /* Reset all debug insns with pending uses. Release the bitmap in it,
3434 unless it is USED. USED must be the same bitmap passed to
3437 dead_debug_finish (struct dead_debug
*debug
, bitmap used
)
3439 struct dead_debug_use
*head
;
3442 if (debug
->used
!= used
)
3443 BITMAP_FREE (debug
->used
);
3445 while ((head
= debug
->head
))
3447 insn
= DF_REF_INSN (head
->use
);
3448 if (!head
->next
|| DF_REF_INSN (head
->next
->use
) != insn
)
3450 INSN_VAR_LOCATION_LOC (insn
) = gen_rtx_UNKNOWN_VAR_LOC ();
3451 df_insn_rescan_debug_internal (insn
);
3452 if (debug
->to_rescan
)
3453 bitmap_clear_bit (debug
->to_rescan
, INSN_UID (insn
));
3455 debug
->head
= head
->next
;
3459 if (debug
->to_rescan
)
3464 EXECUTE_IF_SET_IN_BITMAP (debug
->to_rescan
, 0, uid
, bi
)
3466 struct df_insn_info
*insn_info
= DF_INSN_UID_SAFE_GET (uid
);
3468 df_insn_rescan (insn_info
->insn
);
3470 BITMAP_FREE (debug
->to_rescan
);
3474 /* Add USE to DEBUG. It must be a dead reference to UREGNO in a debug
3475 insn. Create a bitmap for DEBUG as needed. */
3477 dead_debug_add (struct dead_debug
*debug
, df_ref use
, unsigned int uregno
)
3479 struct dead_debug_use
*newddu
= XNEW (struct dead_debug_use
);
3482 newddu
->next
= debug
->head
;
3483 debug
->head
= newddu
;
3486 debug
->used
= BITMAP_ALLOC (NULL
);
3488 bitmap_set_bit (debug
->used
, uregno
);
3491 /* If UREGNO is referenced by any entry in DEBUG, emit a debug insn
3492 before INSN that binds the REG to a debug temp, and replace all
3493 uses of UREGNO in DEBUG with uses of the debug temp. INSN must be
3494 the insn where UREGNO dies. */
3496 dead_debug_insert_before (struct dead_debug
*debug
, unsigned int uregno
,
3499 struct dead_debug_use
**tailp
= &debug
->head
;
3500 struct dead_debug_use
*cur
;
3501 struct dead_debug_use
*uses
= NULL
;
3502 struct dead_debug_use
**usesp
= &uses
;
3507 if (!debug
->used
|| !bitmap_clear_bit (debug
->used
, uregno
))
3510 /* Move all uses of uregno from debug->head to uses, setting mode to
3511 the widest referenced mode. */
3512 while ((cur
= *tailp
))
3514 if (DF_REF_REGNO (cur
->use
) == uregno
)
3521 || (GET_MODE_BITSIZE (GET_MODE (reg
))
3522 < GET_MODE_BITSIZE (GET_MODE (*DF_REF_REAL_LOC (cur
->use
)))))
3523 reg
= *DF_REF_REAL_LOC (cur
->use
);
3526 tailp
= &(*tailp
)->next
;
3531 /* Create DEBUG_EXPR (and DEBUG_EXPR_DECL). */
3532 dval
= make_debug_expr_from_rtl (reg
);
3534 /* Emit a debug bind insn before the insn in which reg dies. */
3535 bind
= gen_rtx_VAR_LOCATION (GET_MODE (reg
),
3536 DEBUG_EXPR_TREE_DECL (dval
), reg
,
3537 VAR_INIT_STATUS_INITIALIZED
);
3539 bind
= emit_debug_insn_before (bind
, insn
);
3540 df_insn_rescan (bind
);
3542 /* Adjust all uses. */
3543 while ((cur
= uses
))
3545 if (GET_MODE (*DF_REF_REAL_LOC (cur
->use
)) == GET_MODE (reg
))
3546 *DF_REF_REAL_LOC (cur
->use
) = dval
;
3548 *DF_REF_REAL_LOC (cur
->use
)
3549 = gen_lowpart_SUBREG (GET_MODE (*DF_REF_REAL_LOC (cur
->use
)), dval
);
3550 /* ??? Should we simplify subreg of subreg? */
3551 if (debug
->to_rescan
== NULL
)
3552 debug
->to_rescan
= BITMAP_ALLOC (NULL
);
3553 bitmap_set_bit (debug
->to_rescan
, INSN_UID (DF_REF_INSN (cur
->use
)));
3559 /* Recompute the REG_DEAD and REG_UNUSED notes and compute register
3560 info: lifetime, bb, and number of defs and uses for basic block
3561 BB. The three bitvectors are scratch regs used here. */
3564 df_note_bb_compute (unsigned int bb_index
,
3565 bitmap live
, bitmap do_not_gen
, bitmap artificial_uses
)
3567 basic_block bb
= BASIC_BLOCK (bb_index
);
3571 struct dead_debug debug
;
3573 dead_debug_init (&debug
, NULL
);
3575 bitmap_copy (live
, df_get_live_out (bb
));
3576 bitmap_clear (artificial_uses
);
3578 #ifdef REG_DEAD_DEBUGGING
3581 fprintf (dump_file
, "live at bottom ");
3582 df_print_regset (dump_file
, live
);
3586 /* Process the artificial defs and uses at the bottom of the block
3587 to begin processing. */
3588 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
3590 df_ref def
= *def_rec
;
3591 #ifdef REG_DEAD_DEBUGGING
3593 fprintf (dump_file
, "artificial def %d\n", DF_REF_REGNO (def
));
3596 if ((DF_REF_FLAGS (def
) & DF_REF_AT_TOP
) == 0)
3597 bitmap_clear_bit (live
, DF_REF_REGNO (def
));
3600 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
3602 df_ref use
= *use_rec
;
3603 if ((DF_REF_FLAGS (use
) & DF_REF_AT_TOP
) == 0)
3605 unsigned int regno
= DF_REF_REGNO (use
);
3606 bitmap_set_bit (live
, regno
);
3608 /* Notes are not generated for any of the artificial registers
3609 at the bottom of the block. */
3610 bitmap_set_bit (artificial_uses
, regno
);
3614 #ifdef REG_DEAD_DEBUGGING
3617 fprintf (dump_file
, "live before artificials out ");
3618 df_print_regset (dump_file
, live
);
3622 FOR_BB_INSNS_REVERSE (bb
, insn
)
3624 unsigned int uid
= INSN_UID (insn
);
3625 struct df_mw_hardreg
**mws_rec
;
3627 rtx old_unused_notes
;
3633 debug_insn
= DEBUG_INSN_P (insn
);
3635 bitmap_clear (do_not_gen
);
3636 df_kill_notes (insn
, &old_dead_notes
, &old_unused_notes
);
3638 /* Process the defs. */
3641 #ifdef REG_DEAD_DEBUGGING
3644 fprintf (dump_file
, "processing call %d\n live =", INSN_UID (insn
));
3645 df_print_regset (dump_file
, live
);
3648 /* We only care about real sets for calls. Clobbers cannot
3649 be depended on to really die. */
3650 mws_rec
= DF_INSN_UID_MWS (uid
);
3653 struct df_mw_hardreg
*mws
= *mws_rec
;
3654 if ((DF_MWS_REG_DEF_P (mws
))
3655 && !df_ignore_stack_reg (mws
->start_regno
))
3657 = df_set_unused_notes_for_mw (insn
, old_unused_notes
,
3658 mws
, live
, do_not_gen
,
3663 /* All of the defs except the return value are some sort of
3664 clobber. This code is for the return. */
3665 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
3667 df_ref def
= *def_rec
;
3668 unsigned int dregno
= DF_REF_REGNO (def
);
3669 if (!DF_REF_FLAGS_IS_SET (def
, DF_REF_MUST_CLOBBER
| DF_REF_MAY_CLOBBER
))
3672 = df_create_unused_note (insn
, old_unused_notes
,
3673 def
, live
, artificial_uses
);
3674 bitmap_set_bit (do_not_gen
, dregno
);
3677 if (!DF_REF_FLAGS_IS_SET (def
, DF_REF_PARTIAL
| DF_REF_CONDITIONAL
))
3678 bitmap_clear_bit (live
, dregno
);
3684 mws_rec
= DF_INSN_UID_MWS (uid
);
3687 struct df_mw_hardreg
*mws
= *mws_rec
;
3688 if (DF_MWS_REG_DEF_P (mws
))
3690 = df_set_unused_notes_for_mw (insn
, old_unused_notes
,
3691 mws
, live
, do_not_gen
,
3696 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
3698 df_ref def
= *def_rec
;
3699 unsigned int dregno
= DF_REF_REGNO (def
);
3701 = df_create_unused_note (insn
, old_unused_notes
,
3702 def
, live
, artificial_uses
);
3704 if (!DF_REF_FLAGS_IS_SET (def
, DF_REF_MUST_CLOBBER
| DF_REF_MAY_CLOBBER
))
3705 bitmap_set_bit (do_not_gen
, dregno
);
3707 if (!DF_REF_FLAGS_IS_SET (def
, DF_REF_PARTIAL
| DF_REF_CONDITIONAL
))
3708 bitmap_clear_bit (live
, dregno
);
3712 /* Process the uses. */
3713 mws_rec
= DF_INSN_UID_MWS (uid
);
3716 struct df_mw_hardreg
*mws
= *mws_rec
;
3717 if ((DF_MWS_REG_DEF_P (mws
))
3718 && !df_ignore_stack_reg (mws
->start_regno
))
3720 bool really_add_notes
= debug_insn
!= 0;
3723 = df_set_dead_notes_for_mw (insn
, old_dead_notes
,
3724 mws
, live
, do_not_gen
,
3728 if (really_add_notes
)
3734 for (use_rec
= DF_INSN_UID_USES (uid
); *use_rec
; use_rec
++)
3736 df_ref use
= *use_rec
;
3737 unsigned int uregno
= DF_REF_REGNO (use
);
3739 #ifdef REG_DEAD_DEBUGGING
3740 if (dump_file
&& !debug_insn
)
3742 fprintf (dump_file
, " regular looking at use ");
3743 df_ref_debug (use
, dump_file
);
3746 if (!bitmap_bit_p (live
, uregno
))
3752 dead_debug_add (&debug
, use
, uregno
);
3758 dead_debug_insert_before (&debug
, uregno
, insn
);
3760 if ( (!(DF_REF_FLAGS (use
) & DF_REF_MW_HARDREG
))
3761 && (!bitmap_bit_p (do_not_gen
, uregno
))
3762 && (!bitmap_bit_p (artificial_uses
, uregno
))
3763 && (!(DF_REF_FLAGS (use
) & DF_REF_READ_WRITE
))
3764 && (!df_ignore_stack_reg (uregno
)))
3766 rtx reg
= (DF_REF_LOC (use
))
3767 ? *DF_REF_REAL_LOC (use
) : DF_REF_REG (use
);
3768 old_dead_notes
= df_set_note (REG_DEAD
, insn
, old_dead_notes
, reg
);
3770 #ifdef REG_DEAD_DEBUGGING
3771 df_print_note ("adding 4: ", insn
, REG_NOTES (insn
));
3774 /* This register is now live. */
3775 bitmap_set_bit (live
, uregno
);
3779 while (old_unused_notes
)
3781 rtx next
= XEXP (old_unused_notes
, 1);
3782 free_EXPR_LIST_node (old_unused_notes
);
3783 old_unused_notes
= next
;
3785 while (old_dead_notes
)
3787 rtx next
= XEXP (old_dead_notes
, 1);
3788 free_EXPR_LIST_node (old_dead_notes
);
3789 old_dead_notes
= next
;
3792 if (debug_insn
== -1)
3794 /* ??? We could probably do better here, replacing dead
3795 registers with their definitions. */
3796 INSN_VAR_LOCATION_LOC (insn
) = gen_rtx_UNKNOWN_VAR_LOC ();
3797 df_insn_rescan_debug_internal (insn
);
3801 dead_debug_finish (&debug
, NULL
);
3805 /* Compute register info: lifetime, bb, and number of defs and uses. */
3807 df_note_compute (bitmap all_blocks
)
3809 unsigned int bb_index
;
3811 bitmap live
= BITMAP_ALLOC (&df_bitmap_obstack
);
3812 bitmap do_not_gen
= BITMAP_ALLOC (&df_bitmap_obstack
);
3813 bitmap artificial_uses
= BITMAP_ALLOC (&df_bitmap_obstack
);
3815 #ifdef REG_DEAD_DEBUGGING
3817 print_rtl_with_bb (dump_file
, get_insns());
3820 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
3822 df_note_bb_compute (bb_index
, live
, do_not_gen
, artificial_uses
);
3826 BITMAP_FREE (do_not_gen
);
3827 BITMAP_FREE (artificial_uses
);
3831 /* Free all storage associated with the problem. */
3840 /* All of the information associated every instance of the problem. */
3842 static struct df_problem problem_NOTE
=
3844 DF_NOTE
, /* Problem id. */
3845 DF_NONE
, /* Direction. */
3846 df_note_alloc
, /* Allocate the problem specific data. */
3847 NULL
, /* Reset global information. */
3848 NULL
, /* Free basic block info. */
3849 df_note_compute
, /* Local compute function. */
3850 NULL
, /* Init the solution specific data. */
3851 NULL
, /* Iterative solver. */
3852 NULL
, /* Confluence operator 0. */
3853 NULL
, /* Confluence operator n. */
3854 NULL
, /* Transfer function. */
3855 NULL
, /* Finalize function. */
3856 df_note_free
, /* Free all of the problem information. */
3857 df_note_free
, /* Remove this problem from the stack of dataflow problems. */
3858 NULL
, /* Debugging. */
3859 NULL
, /* Debugging start block. */
3860 NULL
, /* Debugging end block. */
3861 NULL
, /* Incremental solution verify start. */
3862 NULL
, /* Incremental solution verify end. */
3863 &problem_LR
, /* Dependent problem. */
3864 TV_DF_NOTE
, /* Timing variable. */
3865 false /* Reset blocks on dropping out of blocks_to_analyze. */
3869 /* Create a new DATAFLOW instance and add it to an existing instance
3870 of DF. The returned structure is what is used to get at the
3874 df_note_add_problem (void)
3876 df_add_problem (&problem_NOTE
);
3882 /*----------------------------------------------------------------------------
3883 Functions for simulating the effects of single insns.
3885 You can either simulate in the forwards direction, starting from
3886 the top of a block or the backwards direction from the end of the
3887 block. If you go backwards, defs are examined first to clear bits,
3888 then uses are examined to set bits. If you go forwards, defs are
3889 examined first to set bits, then REG_DEAD and REG_UNUSED notes
3890 are examined to clear bits. In either case, the result of examining
3891 a def can be undone (respectively by a use or a REG_UNUSED note).
3893 If you start at the top of the block, use one of DF_LIVE_IN or
3894 DF_LR_IN. If you start at the bottom of the block use one of
3895 DF_LIVE_OUT or DF_LR_OUT. BE SURE TO PASS A COPY OF THESE SETS,
3896 THEY WILL BE DESTROYED.
3897 ----------------------------------------------------------------------------*/
3900 /* Find the set of DEFs for INSN. */
3903 df_simulate_find_defs (rtx insn
, bitmap defs
)
3906 unsigned int uid
= INSN_UID (insn
);
3908 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
3910 df_ref def
= *def_rec
;
3911 bitmap_set_bit (defs
, DF_REF_REGNO (def
));
3915 /* Find the set of real DEFs, which are not clobbers, for INSN. */
3918 df_simulate_find_noclobber_defs (rtx insn
, bitmap defs
)
3921 unsigned int uid
= INSN_UID (insn
);
3923 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
3925 df_ref def
= *def_rec
;
3926 if (!(DF_REF_FLAGS (def
) & (DF_REF_MUST_CLOBBER
| DF_REF_MAY_CLOBBER
)))
3927 bitmap_set_bit (defs
, DF_REF_REGNO (def
));
3932 /* Simulate the effects of the defs of INSN on LIVE. */
3935 df_simulate_defs (rtx insn
, bitmap live
)
3938 unsigned int uid
= INSN_UID (insn
);
3940 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
3942 df_ref def
= *def_rec
;
3943 unsigned int dregno
= DF_REF_REGNO (def
);
3945 /* If the def is to only part of the reg, it does
3946 not kill the other defs that reach here. */
3947 if (!(DF_REF_FLAGS (def
) & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
)))
3948 bitmap_clear_bit (live
, dregno
);
3953 /* Simulate the effects of the uses of INSN on LIVE. */
3956 df_simulate_uses (rtx insn
, bitmap live
)
3959 unsigned int uid
= INSN_UID (insn
);
3961 if (DEBUG_INSN_P (insn
))
3964 for (use_rec
= DF_INSN_UID_USES (uid
); *use_rec
; use_rec
++)
3966 df_ref use
= *use_rec
;
3967 /* Add use to set of uses in this BB. */
3968 bitmap_set_bit (live
, DF_REF_REGNO (use
));
3973 /* Add back the always live regs in BB to LIVE. */
3976 df_simulate_fixup_sets (basic_block bb
, bitmap live
)
3978 /* These regs are considered always live so if they end up dying
3979 because of some def, we need to bring the back again. */
3980 if (bb_has_eh_pred (bb
))
3981 bitmap_ior_into (live
, df
->eh_block_artificial_uses
);
3983 bitmap_ior_into (live
, df
->regular_block_artificial_uses
);
3987 /*----------------------------------------------------------------------------
3988 The following three functions are used only for BACKWARDS scanning:
3989 i.e. they process the defs before the uses.
3991 df_simulate_initialize_backwards should be called first with a
3992 bitvector copyied from the DF_LIVE_OUT or DF_LR_OUT. Then
3993 df_simulate_one_insn_backwards should be called for each insn in
3994 the block, starting with the last one. Finally,
3995 df_simulate_finalize_backwards can be called to get a new value
3996 of the sets at the top of the block (this is rarely used).
3997 ----------------------------------------------------------------------------*/
3999 /* Apply the artificial uses and defs at the end of BB in a backwards
4003 df_simulate_initialize_backwards (basic_block bb
, bitmap live
)
4007 int bb_index
= bb
->index
;
4009 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
4011 df_ref def
= *def_rec
;
4012 if ((DF_REF_FLAGS (def
) & DF_REF_AT_TOP
) == 0)
4013 bitmap_clear_bit (live
, DF_REF_REGNO (def
));
4016 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
4018 df_ref use
= *use_rec
;
4019 if ((DF_REF_FLAGS (use
) & DF_REF_AT_TOP
) == 0)
4020 bitmap_set_bit (live
, DF_REF_REGNO (use
));
4025 /* Simulate the backwards effects of INSN on the bitmap LIVE. */
4028 df_simulate_one_insn_backwards (basic_block bb
, rtx insn
, bitmap live
)
4030 if (!NONDEBUG_INSN_P (insn
))
4033 df_simulate_defs (insn
, live
);
4034 df_simulate_uses (insn
, live
);
4035 df_simulate_fixup_sets (bb
, live
);
4039 /* Apply the artificial uses and defs at the top of BB in a backwards
4043 df_simulate_finalize_backwards (basic_block bb
, bitmap live
)
4049 int bb_index
= bb
->index
;
4051 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
4053 df_ref def
= *def_rec
;
4054 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
4055 bitmap_clear_bit (live
, DF_REF_REGNO (def
));
4059 for (use_rec
= df_get_artificial_uses (bb_index
); *use_rec
; use_rec
++)
4061 df_ref use
= *use_rec
;
4062 if (DF_REF_FLAGS (use
) & DF_REF_AT_TOP
)
4063 bitmap_set_bit (live
, DF_REF_REGNO (use
));
4067 /*----------------------------------------------------------------------------
4068 The following three functions are used only for FORWARDS scanning:
4069 i.e. they process the defs and the REG_DEAD and REG_UNUSED notes.
4070 Thus it is important to add the DF_NOTES problem to the stack of
4071 problems computed before using these functions.
4073 df_simulate_initialize_forwards should be called first with a
4074 bitvector copyied from the DF_LIVE_IN or DF_LR_IN. Then
4075 df_simulate_one_insn_forwards should be called for each insn in
4076 the block, starting with the first one.
4077 ----------------------------------------------------------------------------*/
4079 /* Initialize the LIVE bitmap, which should be copied from DF_LIVE_IN or
4080 DF_LR_IN for basic block BB, for forward scanning by marking artificial
4084 df_simulate_initialize_forwards (basic_block bb
, bitmap live
)
4087 int bb_index
= bb
->index
;
4089 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
4091 df_ref def
= *def_rec
;
4092 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
4093 bitmap_set_bit (live
, DF_REF_REGNO (def
));
4097 /* Simulate the forwards effects of INSN on the bitmap LIVE. */
4100 df_simulate_one_insn_forwards (basic_block bb
, rtx insn
, bitmap live
)
4103 if (! INSN_P (insn
))
4106 /* Make sure that DF_NOTE really is an active df problem. */
4107 gcc_assert (df_note
);
4109 /* Note that this is the opposite as how the problem is defined, because
4110 in the LR problem defs _kill_ liveness. However, they do so backwards,
4111 while here the scan is performed forwards! So, first assume that the
4112 def is live, and if this is not true REG_UNUSED notes will rectify the
4114 df_simulate_find_noclobber_defs (insn
, live
);
4116 /* Clear all of the registers that go dead. */
4117 for (link
= REG_NOTES (insn
); link
; link
= XEXP (link
, 1))
4119 switch (REG_NOTE_KIND (link
))
4124 rtx reg
= XEXP (link
, 0);
4125 int regno
= REGNO (reg
);
4126 if (regno
< FIRST_PSEUDO_REGISTER
)
4128 int n
= hard_regno_nregs
[regno
][GET_MODE (reg
)];
4130 bitmap_clear_bit (live
, regno
+ n
);
4133 bitmap_clear_bit (live
, regno
);
4140 df_simulate_fixup_sets (bb
, live
);
4145 /*----------------------------------------------------------------------------
4146 MULTIPLE DEFINITIONS
4148 Find the locations in the function reached by multiple definition sites
4149 for a live pseudo. In and out bitvectors are built for each basic
4150 block. They are restricted for efficiency to live registers.
4152 The gen and kill sets for the problem are obvious. Together they
4153 include all defined registers in a basic block; the gen set includes
4154 registers where a partial or conditional or may-clobber definition is
4155 last in the BB, while the kill set includes registers with a complete
4156 definition coming last. However, the computation of the dataflow
4157 itself is interesting.
4159 The idea behind it comes from SSA form's iterated dominance frontier
4160 criterion for inserting PHI functions. Just like in that case, we can use
4161 the dominance frontier to find places where multiple definitions meet;
4162 a register X defined in a basic block BB1 has multiple definitions in
4163 basic blocks in BB1's dominance frontier.
4165 So, the in-set of a basic block BB2 is not just the union of the
4166 out-sets of BB2's predecessors, but includes some more bits that come
4167 from the basic blocks of whose dominance frontier BB2 is part (BB1 in
4168 the previous paragraph). I called this set the init-set of BB2.
4170 (Note: I actually use the kill-set only to build the init-set.
4171 gen bits are anyway propagated from BB1 to BB2 by dataflow).
4173 For example, if you have
4177 if <...> goto BB2 else goto BB3;
4185 you have BB3 in BB2's dominance frontier but not in BB1's, so that the
4186 init-set of BB3 includes r10 and r12, but not r11. Note that we do
4187 not need to iterate the dominance frontier, because we do not insert
4188 anything like PHI functions there! Instead, dataflow will take care of
4189 propagating the information to BB3's successors.
4190 ---------------------------------------------------------------------------*/
4192 /* Scratch var used by transfer functions. This is used to do md analysis
4193 only for live registers. */
4194 static bitmap df_md_scratch
;
4196 /* Set basic block info. */
4199 df_md_set_bb_info (unsigned int index
,
4200 struct df_md_bb_info
*bb_info
)
4203 gcc_assert (index
< df_md
->block_info_size
);
4204 df_md
->block_info
[index
] = bb_info
;
4209 df_md_free_bb_info (basic_block bb ATTRIBUTE_UNUSED
,
4212 struct df_md_bb_info
*bb_info
= (struct df_md_bb_info
*) vbb_info
;
4215 BITMAP_FREE (bb_info
->kill
);
4216 BITMAP_FREE (bb_info
->gen
);
4217 BITMAP_FREE (bb_info
->init
);
4218 BITMAP_FREE (bb_info
->in
);
4219 BITMAP_FREE (bb_info
->out
);
4220 pool_free (df_md
->block_pool
, bb_info
);
4225 /* Allocate or reset bitmaps for DF_MD. The solution bits are
4226 not touched unless the block is new. */
4229 df_md_alloc (bitmap all_blocks
)
4231 unsigned int bb_index
;
4234 if (!df_md
->block_pool
)
4235 df_md
->block_pool
= create_alloc_pool ("df_md_block pool",
4236 sizeof (struct df_md_bb_info
), 50);
4238 df_grow_bb_info (df_md
);
4239 df_md_scratch
= BITMAP_ALLOC (NULL
);
4241 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
4243 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb_index
);
4246 bitmap_clear (bb_info
->init
);
4247 bitmap_clear (bb_info
->gen
);
4248 bitmap_clear (bb_info
->kill
);
4249 bitmap_clear (bb_info
->in
);
4250 bitmap_clear (bb_info
->out
);
4254 bb_info
= (struct df_md_bb_info
*) pool_alloc (df_md
->block_pool
);
4255 df_md_set_bb_info (bb_index
, bb_info
);
4256 bb_info
->init
= BITMAP_ALLOC (NULL
);
4257 bb_info
->gen
= BITMAP_ALLOC (NULL
);
4258 bb_info
->kill
= BITMAP_ALLOC (NULL
);
4259 bb_info
->in
= BITMAP_ALLOC (NULL
);
4260 bb_info
->out
= BITMAP_ALLOC (NULL
);
4264 df_md
->optional_p
= true;
4267 /* Add the effect of the top artificial defs of BB to the multiple definitions
4271 df_md_simulate_artificial_defs_at_top (basic_block bb
, bitmap local_md
)
4273 int bb_index
= bb
->index
;
4275 for (def_rec
= df_get_artificial_defs (bb_index
); *def_rec
; def_rec
++)
4277 df_ref def
= *def_rec
;
4278 if (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
)
4280 unsigned int dregno
= DF_REF_REGNO (def
);
4281 if (DF_REF_FLAGS (def
)
4282 & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
| DF_REF_MAY_CLOBBER
))
4283 bitmap_set_bit (local_md
, dregno
);
4285 bitmap_clear_bit (local_md
, dregno
);
4291 /* Add the effect of the defs of INSN to the reaching definitions bitmap
4295 df_md_simulate_one_insn (basic_block bb ATTRIBUTE_UNUSED
, rtx insn
,
4298 unsigned uid
= INSN_UID (insn
);
4301 for (def_rec
= DF_INSN_UID_DEFS (uid
); *def_rec
; def_rec
++)
4303 df_ref def
= *def_rec
;
4304 unsigned int dregno
= DF_REF_REGNO (def
);
4305 if ((!(df
->changeable_flags
& DF_NO_HARD_REGS
))
4306 || (dregno
>= FIRST_PSEUDO_REGISTER
))
4308 if (DF_REF_FLAGS (def
)
4309 & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
| DF_REF_MAY_CLOBBER
))
4310 bitmap_set_bit (local_md
, DF_REF_ID (def
));
4312 bitmap_clear_bit (local_md
, DF_REF_ID (def
));
4318 df_md_bb_local_compute_process_def (struct df_md_bb_info
*bb_info
,
4323 bitmap_clear (seen_in_insn
);
4325 while ((def
= *def_rec
++) != NULL
)
4327 unsigned int dregno
= DF_REF_REGNO (def
);
4328 if (((!(df
->changeable_flags
& DF_NO_HARD_REGS
))
4329 || (dregno
>= FIRST_PSEUDO_REGISTER
))
4330 && top_flag
== (DF_REF_FLAGS (def
) & DF_REF_AT_TOP
))
4332 if (!bitmap_bit_p (seen_in_insn
, dregno
))
4334 if (DF_REF_FLAGS (def
)
4335 & (DF_REF_PARTIAL
| DF_REF_CONDITIONAL
| DF_REF_MAY_CLOBBER
))
4337 bitmap_set_bit (bb_info
->gen
, dregno
);
4338 bitmap_clear_bit (bb_info
->kill
, dregno
);
4342 /* When we find a clobber and a regular def,
4343 make sure the regular def wins. */
4344 bitmap_set_bit (seen_in_insn
, dregno
);
4345 bitmap_set_bit (bb_info
->kill
, dregno
);
4346 bitmap_clear_bit (bb_info
->gen
, dregno
);
4354 /* Compute local multiple def info for basic block BB. */
4357 df_md_bb_local_compute (unsigned int bb_index
)
4359 basic_block bb
= BASIC_BLOCK (bb_index
);
4360 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb_index
);
4363 /* Artificials are only hard regs. */
4364 if (!(df
->changeable_flags
& DF_NO_HARD_REGS
))
4365 df_md_bb_local_compute_process_def (bb_info
,
4366 df_get_artificial_defs (bb_index
),
4369 FOR_BB_INSNS (bb
, insn
)
4371 unsigned int uid
= INSN_UID (insn
);
4375 df_md_bb_local_compute_process_def (bb_info
, DF_INSN_UID_DEFS (uid
), 0);
4378 if (!(df
->changeable_flags
& DF_NO_HARD_REGS
))
4379 df_md_bb_local_compute_process_def (bb_info
,
4380 df_get_artificial_defs (bb_index
),
4384 /* Compute local reaching def info for each basic block within BLOCKS. */
4387 df_md_local_compute (bitmap all_blocks
)
4389 unsigned int bb_index
, df_bb_index
;
4390 bitmap_iterator bi1
, bi2
;
4394 seen_in_insn
= BITMAP_ALLOC (NULL
);
4396 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi1
)
4398 df_md_bb_local_compute (bb_index
);
4401 BITMAP_FREE (seen_in_insn
);
4403 frontiers
= XNEWVEC (bitmap
, last_basic_block
);
4405 frontiers
[bb
->index
] = BITMAP_ALLOC (NULL
);
4407 compute_dominance_frontiers (frontiers
);
4409 /* Add each basic block's kills to the nodes in the frontier of the BB. */
4410 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi1
)
4412 bitmap kill
= df_md_get_bb_info (bb_index
)->kill
;
4413 EXECUTE_IF_SET_IN_BITMAP (frontiers
[bb_index
], 0, df_bb_index
, bi2
)
4415 basic_block bb
= BASIC_BLOCK (df_bb_index
);
4416 if (bitmap_bit_p (all_blocks
, df_bb_index
))
4417 bitmap_ior_and_into (df_md_get_bb_info (df_bb_index
)->init
, kill
,
4418 df_get_live_in (bb
));
4423 BITMAP_FREE (frontiers
[bb
->index
]);
4428 /* Reset the global solution for recalculation. */
4431 df_md_reset (bitmap all_blocks
)
4433 unsigned int bb_index
;
4436 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
4438 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb_index
);
4439 gcc_assert (bb_info
);
4440 bitmap_clear (bb_info
->in
);
4441 bitmap_clear (bb_info
->out
);
4446 df_md_transfer_function (int bb_index
)
4448 basic_block bb
= BASIC_BLOCK (bb_index
);
4449 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb_index
);
4450 bitmap in
= bb_info
->in
;
4451 bitmap out
= bb_info
->out
;
4452 bitmap gen
= bb_info
->gen
;
4453 bitmap kill
= bb_info
->kill
;
4455 /* We need to use a scratch set here so that the value returned from this
4456 function invocation properly reflects whether the sets changed in a
4457 significant way; i.e. not just because the live set was anded in. */
4458 bitmap_and (df_md_scratch
, gen
, df_get_live_out (bb
));
4460 /* Multiple definitions of a register are not relevant if it is not
4461 live. Thus we trim the result to the places where it is live. */
4462 bitmap_and_into (in
, df_get_live_in (bb
));
4464 return bitmap_ior_and_compl (out
, df_md_scratch
, in
, kill
);
4467 /* Initialize the solution bit vectors for problem. */
4470 df_md_init (bitmap all_blocks
)
4472 unsigned int bb_index
;
4475 EXECUTE_IF_SET_IN_BITMAP (all_blocks
, 0, bb_index
, bi
)
4477 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb_index
);
4479 bitmap_copy (bb_info
->in
, bb_info
->init
);
4480 df_md_transfer_function (bb_index
);
4485 df_md_confluence_0 (basic_block bb
)
4487 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb
->index
);
4488 bitmap_copy (bb_info
->in
, bb_info
->init
);
4491 /* In of target gets or of out of source. */
4494 df_md_confluence_n (edge e
)
4496 bitmap op1
= df_md_get_bb_info (e
->dest
->index
)->in
;
4497 bitmap op2
= df_md_get_bb_info (e
->src
->index
)->out
;
4499 if (e
->flags
& EDGE_FAKE
)
4502 if (e
->flags
& EDGE_EH
)
4503 bitmap_ior_and_compl_into (op1
, op2
, regs_invalidated_by_call_regset
);
4505 bitmap_ior_into (op1
, op2
);
4508 /* Free all storage associated with the problem. */
4514 for (i
= 0; i
< df_md
->block_info_size
; i
++)
4516 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (i
);
4519 BITMAP_FREE (bb_info
->kill
);
4520 BITMAP_FREE (bb_info
->gen
);
4521 BITMAP_FREE (bb_info
->init
);
4522 BITMAP_FREE (bb_info
->in
);
4523 BITMAP_FREE (bb_info
->out
);
4527 BITMAP_FREE (df_md_scratch
);
4528 free_alloc_pool (df_md
->block_pool
);
4530 df_md
->block_info_size
= 0;
4531 free (df_md
->block_info
);
4536 /* Debugging info at top of bb. */
4539 df_md_top_dump (basic_block bb
, FILE *file
)
4541 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb
->index
);
4542 if (!bb_info
|| !bb_info
->in
)
4545 fprintf (file
, ";; md in \t");
4546 df_print_regset (file
, bb_info
->in
);
4547 fprintf (file
, ";; md init \t");
4548 df_print_regset (file
, bb_info
->init
);
4549 fprintf (file
, ";; md gen \t");
4550 df_print_regset (file
, bb_info
->gen
);
4551 fprintf (file
, ";; md kill \t");
4552 df_print_regset (file
, bb_info
->kill
);
4555 /* Debugging info at bottom of bb. */
4558 df_md_bottom_dump (basic_block bb
, FILE *file
)
4560 struct df_md_bb_info
*bb_info
= df_md_get_bb_info (bb
->index
);
4561 if (!bb_info
|| !bb_info
->out
)
4564 fprintf (file
, ";; md out \t");
4565 df_print_regset (file
, bb_info
->out
);
4568 static struct df_problem problem_MD
=
4570 DF_MD
, /* Problem id. */
4571 DF_FORWARD
, /* Direction. */
4572 df_md_alloc
, /* Allocate the problem specific data. */
4573 df_md_reset
, /* Reset global information. */
4574 df_md_free_bb_info
, /* Free basic block info. */
4575 df_md_local_compute
, /* Local compute function. */
4576 df_md_init
, /* Init the solution specific data. */
4577 df_worklist_dataflow
, /* Worklist solver. */
4578 df_md_confluence_0
, /* Confluence operator 0. */
4579 df_md_confluence_n
, /* Confluence operator n. */
4580 df_md_transfer_function
, /* Transfer function. */
4581 NULL
, /* Finalize function. */
4582 df_md_free
, /* Free all of the problem information. */
4583 df_md_free
, /* Remove this problem from the stack of dataflow problems. */
4584 NULL
, /* Debugging. */
4585 df_md_top_dump
, /* Debugging start block. */
4586 df_md_bottom_dump
, /* Debugging end block. */
4587 NULL
, /* Incremental solution verify start. */
4588 NULL
, /* Incremental solution verify end. */
4589 NULL
, /* Dependent problem. */
4590 TV_DF_MD
, /* Timing variable. */
4591 false /* Reset blocks on dropping out of blocks_to_analyze. */
4594 /* Create a new MD instance and add it to the existing instance
4598 df_md_add_problem (void)
4600 df_add_problem (&problem_MD
);