1 /* Liveness for SSA trees.
2 Copyright (C) 2003-2015 Free Software Foundation, Inc.
3 Contributed by Andrew MacLeod <amacleod@redhat.com>
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
23 #include "coretypes.h"
28 #include "fold-const.h"
29 #include "gimple-pretty-print.h"
33 #include "hard-reg-set.h"
35 #include "dominance.h"
37 #include "basic-block.h"
38 #include "tree-ssa-alias.h"
39 #include "internal-fn.h"
40 #include "gimple-expr.h"
42 #include "gimple-iterator.h"
43 #include "gimple-ssa.h"
44 #include "tree-phinodes.h"
45 #include "ssa-iterators.h"
46 #include "stringpool.h"
47 #include "tree-ssanames.h"
50 #include "insn-config.h"
62 #include "tree-ssa-live.h"
63 #include "diagnostic-core.h"
66 #include "lto-streamer.h"
68 #include "ipa-utils.h"
70 #ifdef ENABLE_CHECKING
71 static void verify_live_on_entry (tree_live_info_p
);
75 /* VARMAP maintains a mapping from SSA version number to real variables.
77 All SSA_NAMES are divided into partitions. Initially each ssa_name is the
78 only member of it's own partition. Coalescing will attempt to group any
79 ssa_names which occur in a copy or in a PHI node into the same partition.
81 At the end of out-of-ssa, each partition becomes a "real" variable and is
82 rewritten as a compiler variable.
84 The var_map data structure is used to manage these partitions. It allows
85 partitions to be combined, and determines which partition belongs to what
86 ssa_name or variable, and vice versa. */
89 /* Hashtable helpers. */
91 struct tree_int_map_hasher
: nofree_ptr_hash
<tree_int_map
>
93 static inline hashval_t
hash (const tree_int_map
*);
94 static inline bool equal (const tree_int_map
*, const tree_int_map
*);
98 tree_int_map_hasher::hash (const tree_int_map
*v
)
100 return tree_map_base_hash (v
);
104 tree_int_map_hasher::equal (const tree_int_map
*v
, const tree_int_map
*c
)
106 return tree_int_map_eq (v
, c
);
110 /* This routine will initialize the basevar fields of MAP. */
113 var_map_base_init (var_map map
)
117 struct tree_int_map
*m
, *mapstorage
;
119 num_part
= num_var_partitions (map
);
120 hash_table
<tree_int_map_hasher
> tree_to_index (num_part
);
121 /* We can have at most num_part entries in the hash tables, so it's
122 enough to allocate so many map elements once, saving some malloc
124 mapstorage
= m
= XNEWVEC (struct tree_int_map
, num_part
);
126 /* If a base table already exists, clear it, otherwise create it. */
127 free (map
->partition_to_base_index
);
128 map
->partition_to_base_index
= (int *) xmalloc (sizeof (int) * num_part
);
130 /* Build the base variable list, and point partitions at their bases. */
131 for (x
= 0; x
< num_part
; x
++)
133 struct tree_int_map
**slot
;
135 var
= partition_to_var (map
, x
);
136 if (SSA_NAME_VAR (var
)
137 && (!VAR_P (SSA_NAME_VAR (var
))
138 || !DECL_IGNORED_P (SSA_NAME_VAR (var
))))
139 m
->base
.from
= SSA_NAME_VAR (var
);
141 /* This restricts what anonymous SSA names we can coalesce
142 as it restricts the sets we compute conflicts for.
143 Using TREE_TYPE to generate sets is the easies as
144 type equivalency also holds for SSA names with the same
147 Check gimple_can_coalesce_p when changing this code. */
148 m
->base
.from
= (TYPE_CANONICAL (TREE_TYPE (var
))
149 ? TYPE_CANONICAL (TREE_TYPE (var
))
151 /* If base variable hasn't been seen, set it up. */
152 slot
= tree_to_index
.find_slot (m
, INSERT
);
155 baseindex
= m
- mapstorage
;
161 baseindex
= (*slot
)->to
;
162 map
->partition_to_base_index
[x
] = baseindex
;
165 map
->num_basevars
= m
- mapstorage
;
171 /* Remove the base table in MAP. */
174 var_map_base_fini (var_map map
)
176 /* Free the basevar info if it is present. */
177 if (map
->partition_to_base_index
!= NULL
)
179 free (map
->partition_to_base_index
);
180 map
->partition_to_base_index
= NULL
;
181 map
->num_basevars
= 0;
184 /* Create a variable partition map of SIZE, initialize and return it. */
187 init_var_map (int size
)
191 map
= (var_map
) xmalloc (sizeof (struct _var_map
));
192 map
->var_partition
= partition_new (size
);
194 map
->partition_to_view
= NULL
;
195 map
->view_to_partition
= NULL
;
196 map
->num_partitions
= size
;
197 map
->partition_size
= size
;
198 map
->num_basevars
= 0;
199 map
->partition_to_base_index
= NULL
;
204 /* Free memory associated with MAP. */
207 delete_var_map (var_map map
)
209 var_map_base_fini (map
);
210 partition_delete (map
->var_partition
);
211 free (map
->partition_to_view
);
212 free (map
->view_to_partition
);
217 /* This function will combine the partitions in MAP for VAR1 and VAR2. It
218 Returns the partition which represents the new partition. If the two
219 partitions cannot be combined, NO_PARTITION is returned. */
222 var_union (var_map map
, tree var1
, tree var2
)
226 gcc_assert (TREE_CODE (var1
) == SSA_NAME
);
227 gcc_assert (TREE_CODE (var2
) == SSA_NAME
);
229 /* This is independent of partition_to_view. If partition_to_view is
230 on, then whichever one of these partitions is absorbed will never have a
231 dereference into the partition_to_view array any more. */
233 p1
= partition_find (map
->var_partition
, SSA_NAME_VERSION (var1
));
234 p2
= partition_find (map
->var_partition
, SSA_NAME_VERSION (var2
));
236 gcc_assert (p1
!= NO_PARTITION
);
237 gcc_assert (p2
!= NO_PARTITION
);
242 p3
= partition_union (map
->var_partition
, p1
, p2
);
244 if (map
->partition_to_view
)
245 p3
= map
->partition_to_view
[p3
];
251 /* Compress the partition numbers in MAP such that they fall in the range
252 0..(num_partitions-1) instead of wherever they turned out during
253 the partitioning exercise. This removes any references to unused
254 partitions, thereby allowing bitmaps and other vectors to be much
257 This is implemented such that compaction doesn't affect partitioning.
258 Ie., once partitions are created and possibly merged, running one
259 or more different kind of compaction will not affect the partitions
260 themselves. Their index might change, but all the same variables will
261 still be members of the same partition group. This allows work on reduced
262 sets, and no loss of information when a larger set is later desired.
264 In particular, coalescing can work on partitions which have 2 or more
265 definitions, and then 'recompact' later to include all the single
266 definitions for assignment to program variables. */
269 /* Set MAP back to the initial state of having no partition view. Return a
270 bitmap which has a bit set for each partition number which is in use in the
274 partition_view_init (var_map map
)
280 used
= BITMAP_ALLOC (NULL
);
282 /* Already in a view? Abandon the old one. */
283 if (map
->partition_to_view
)
285 free (map
->partition_to_view
);
286 map
->partition_to_view
= NULL
;
288 if (map
->view_to_partition
)
290 free (map
->view_to_partition
);
291 map
->view_to_partition
= NULL
;
294 /* Find out which partitions are actually referenced. */
295 for (x
= 0; x
< map
->partition_size
; x
++)
297 tmp
= partition_find (map
->var_partition
, x
);
298 if (ssa_name (tmp
) != NULL_TREE
&& !virtual_operand_p (ssa_name (tmp
))
299 && (!has_zero_uses (ssa_name (tmp
))
300 || !SSA_NAME_IS_DEFAULT_DEF (ssa_name (tmp
))))
301 bitmap_set_bit (used
, tmp
);
304 map
->num_partitions
= map
->partition_size
;
309 /* This routine will finalize the view data for MAP based on the partitions
310 set in SELECTED. This is either the same bitmap returned from
311 partition_view_init, or a trimmed down version if some of those partitions
312 were not desired in this view. SELECTED is freed before returning. */
315 partition_view_fini (var_map map
, bitmap selected
)
318 unsigned count
, i
, x
, limit
;
320 gcc_assert (selected
);
322 count
= bitmap_count_bits (selected
);
323 limit
= map
->partition_size
;
325 /* If its a one-to-one ratio, we don't need any view compaction. */
328 map
->partition_to_view
= (int *)xmalloc (limit
* sizeof (int));
329 memset (map
->partition_to_view
, 0xff, (limit
* sizeof (int)));
330 map
->view_to_partition
= (int *)xmalloc (count
* sizeof (int));
333 /* Give each selected partition an index. */
334 EXECUTE_IF_SET_IN_BITMAP (selected
, 0, x
, bi
)
336 map
->partition_to_view
[x
] = i
;
337 map
->view_to_partition
[i
] = x
;
340 gcc_assert (i
== count
);
341 map
->num_partitions
= i
;
344 BITMAP_FREE (selected
);
348 /* Create a partition view which includes all the used partitions in MAP. If
349 WANT_BASES is true, create the base variable map as well. */
352 partition_view_normal (var_map map
, bool want_bases
)
356 used
= partition_view_init (map
);
357 partition_view_fini (map
, used
);
360 var_map_base_init (map
);
362 var_map_base_fini (map
);
366 /* Create a partition view in MAP which includes just partitions which occur in
367 the bitmap ONLY. If WANT_BASES is true, create the base variable map
371 partition_view_bitmap (var_map map
, bitmap only
, bool want_bases
)
374 bitmap new_partitions
= BITMAP_ALLOC (NULL
);
378 used
= partition_view_init (map
);
379 EXECUTE_IF_SET_IN_BITMAP (only
, 0, x
, bi
)
381 p
= partition_find (map
->var_partition
, x
);
382 gcc_assert (bitmap_bit_p (used
, p
));
383 bitmap_set_bit (new_partitions
, p
);
385 partition_view_fini (map
, new_partitions
);
388 var_map_base_init (map
);
390 var_map_base_fini (map
);
394 static bitmap usedvars
;
396 /* Mark VAR as used, so that it'll be preserved during rtl expansion.
397 Returns true if VAR wasn't marked before. */
400 set_is_used (tree var
)
402 return bitmap_set_bit (usedvars
, DECL_UID (var
));
405 /* Return true if VAR is marked as used. */
410 return bitmap_bit_p (usedvars
, DECL_UID (var
));
413 static inline void mark_all_vars_used (tree
*);
415 /* Helper function for mark_all_vars_used, called via walk_tree. */
418 mark_all_vars_used_1 (tree
*tp
, int *walk_subtrees
, void *data ATTRIBUTE_UNUSED
)
421 enum tree_code_class c
= TREE_CODE_CLASS (TREE_CODE (t
));
424 if (TREE_CODE (t
) == SSA_NAME
)
427 t
= SSA_NAME_VAR (t
);
432 if (IS_EXPR_CODE_CLASS (c
)
433 && (b
= TREE_BLOCK (t
)) != NULL
)
434 TREE_USED (b
) = true;
436 /* Ignore TMR_OFFSET and TMR_STEP for TARGET_MEM_REFS, as those
437 fields do not contain vars. */
438 if (TREE_CODE (t
) == TARGET_MEM_REF
)
440 mark_all_vars_used (&TMR_BASE (t
));
441 mark_all_vars_used (&TMR_INDEX (t
));
442 mark_all_vars_used (&TMR_INDEX2 (t
));
447 /* Only need to mark VAR_DECLS; parameters and return results are not
448 eliminated as unused. */
449 if (TREE_CODE (t
) == VAR_DECL
)
451 /* When a global var becomes used for the first time also walk its
452 initializer (non global ones don't have any). */
453 if (set_is_used (t
) && is_global_var (t
)
454 && DECL_CONTEXT (t
) == current_function_decl
)
455 mark_all_vars_used (&DECL_INITIAL (t
));
457 /* remove_unused_scope_block_p requires information about labels
458 which are not DECL_IGNORED_P to tell if they might be used in the IL. */
459 else if (TREE_CODE (t
) == LABEL_DECL
)
460 /* Although the TREE_USED values that the frontend uses would be
461 acceptable (albeit slightly over-conservative) for our purposes,
462 init_vars_expansion clears TREE_USED for LABEL_DECLs too, so we
463 must re-compute it here. */
466 if (IS_TYPE_OR_DECL_P (t
))
472 /* Mark the scope block SCOPE and its subblocks unused when they can be
473 possibly eliminated if dead. */
476 mark_scope_block_unused (tree scope
)
479 TREE_USED (scope
) = false;
480 if (!(*debug_hooks
->ignore_block
) (scope
))
481 TREE_USED (scope
) = true;
482 for (t
= BLOCK_SUBBLOCKS (scope
); t
; t
= BLOCK_CHAIN (t
))
483 mark_scope_block_unused (t
);
486 /* Look if the block is dead (by possibly eliminating its dead subblocks)
487 and return true if so.
488 Block is declared dead if:
489 1) No statements are associated with it.
490 2) Declares no live variables
491 3) All subblocks are dead
492 or there is precisely one subblocks and the block
493 has same abstract origin as outer block and declares
494 no variables, so it is pure wrapper.
495 When we are not outputting full debug info, we also eliminate dead variables
496 out of scope blocks to let them to be recycled by GGC and to save copying work
497 done by the inliner. */
500 remove_unused_scope_block_p (tree scope
, bool in_ctor_dtor_block
)
503 bool unused
= !TREE_USED (scope
);
506 /* For ipa-polymorphic-call.c purposes, preserve blocks:
507 1) with BLOCK_ABSTRACT_ORIGIN of a ctor/dtor or their clones */
508 if (inlined_polymorphic_ctor_dtor_block_p (scope
, true))
510 in_ctor_dtor_block
= true;
513 /* 2) inside such blocks, the outermost block with BLOCK_ABSTRACT_ORIGIN
514 being a FUNCTION_DECL. */
515 else if (in_ctor_dtor_block
516 && BLOCK_ABSTRACT_ORIGIN (scope
)
517 && TREE_CODE (BLOCK_ABSTRACT_ORIGIN (scope
)) == FUNCTION_DECL
)
519 in_ctor_dtor_block
= false;
523 for (t
= &BLOCK_VARS (scope
); *t
; t
= next
)
525 next
= &DECL_CHAIN (*t
);
527 /* Debug info of nested function refers to the block of the
528 function. We might stil call it even if all statements
529 of function it was nested into was elliminated.
531 TODO: We can actually look into cgraph to see if function
532 will be output to file. */
533 if (TREE_CODE (*t
) == FUNCTION_DECL
)
536 /* If a decl has a value expr, we need to instantiate it
537 regardless of debug info generation, to avoid codegen
538 differences in memory overlap tests. update_equiv_regs() may
539 indirectly call validate_equiv_mem() to test whether a
540 SET_DEST overlaps with others, and if the value expr changes
541 by virtual register instantiation, we may get end up with
542 different results. */
543 else if (TREE_CODE (*t
) == VAR_DECL
&& DECL_HAS_VALUE_EXPR_P (*t
))
546 /* Remove everything we don't generate debug info for. */
547 else if (DECL_IGNORED_P (*t
))
549 *t
= DECL_CHAIN (*t
);
553 /* When we are outputting debug info, we usually want to output
554 info about optimized-out variables in the scope blocks.
555 Exception are the scope blocks not containing any instructions
556 at all so user can't get into the scopes at first place. */
557 else if (is_used_p (*t
))
559 else if (TREE_CODE (*t
) == LABEL_DECL
&& TREE_USED (*t
))
560 /* For labels that are still used in the IL, the decision to
561 preserve them must not depend DEBUG_INFO_LEVEL, otherwise we
562 risk having different ordering in debug vs. non-debug builds
563 during inlining or versioning.
564 A label appearing here (we have already checked DECL_IGNORED_P)
565 should not be used in the IL unless it has been explicitly used
566 before, so we use TREE_USED as an approximation. */
567 /* In principle, we should do the same here as for the debug case
568 below, however, when debugging, there might be additional nested
569 levels that keep an upper level with a label live, so we have to
570 force this block to be considered used, too. */
573 /* When we are not doing full debug info, we however can keep around
574 only the used variables for cfgexpand's memory packing saving quite
577 For sake of -g3, we keep around those vars but we don't count this as
578 use of block, so innermost block with no used vars and no instructions
579 can be considered dead. We only want to keep around blocks user can
580 breakpoint into and ask about value of optimized out variables.
582 Similarly we need to keep around types at least until all
583 variables of all nested blocks are gone. We track no
584 information on whether given type is used or not, so we have
585 to keep them even when not emitting debug information,
586 otherwise we may end up remapping variables and their (local)
587 types in different orders depending on whether debug
588 information is being generated. */
590 else if (TREE_CODE (*t
) == TYPE_DECL
591 || debug_info_level
== DINFO_LEVEL_NORMAL
592 || debug_info_level
== DINFO_LEVEL_VERBOSE
)
596 *t
= DECL_CHAIN (*t
);
601 for (t
= &BLOCK_SUBBLOCKS (scope
); *t
;)
602 if (remove_unused_scope_block_p (*t
, in_ctor_dtor_block
))
604 if (BLOCK_SUBBLOCKS (*t
))
606 tree next
= BLOCK_CHAIN (*t
);
607 tree supercontext
= BLOCK_SUPERCONTEXT (*t
);
609 *t
= BLOCK_SUBBLOCKS (*t
);
610 while (BLOCK_CHAIN (*t
))
612 BLOCK_SUPERCONTEXT (*t
) = supercontext
;
613 t
= &BLOCK_CHAIN (*t
);
615 BLOCK_CHAIN (*t
) = next
;
616 BLOCK_SUPERCONTEXT (*t
) = supercontext
;
617 t
= &BLOCK_CHAIN (*t
);
621 *t
= BLOCK_CHAIN (*t
);
625 t
= &BLOCK_CHAIN (*t
);
632 /* Outer scope is always used. */
633 else if (!BLOCK_SUPERCONTEXT (scope
)
634 || TREE_CODE (BLOCK_SUPERCONTEXT (scope
)) == FUNCTION_DECL
)
636 /* Innermost blocks with no live variables nor statements can be always
638 else if (!nsubblocks
)
640 /* When not generating debug info we can eliminate info on unused
642 else if (!flag_auto_profile
&& debug_info_level
== DINFO_LEVEL_NONE
)
644 /* Even for -g0 don't prune outer scopes from artificial
645 functions, otherwise diagnostics using tree_nonartificial_location
646 will not be emitted properly. */
647 if (inlined_function_outer_scope_p (scope
))
652 && TREE_CODE (ao
) == BLOCK
653 && BLOCK_ABSTRACT_ORIGIN (ao
) != ao
)
654 ao
= BLOCK_ABSTRACT_ORIGIN (ao
);
656 && TREE_CODE (ao
) == FUNCTION_DECL
657 && DECL_DECLARED_INLINE_P (ao
)
658 && lookup_attribute ("artificial", DECL_ATTRIBUTES (ao
)))
662 else if (BLOCK_VARS (scope
) || BLOCK_NUM_NONLOCALIZED_VARS (scope
))
664 /* See if this block is important for representation of inlined function.
665 Inlined functions are always represented by block with
666 block_ultimate_origin being set to FUNCTION_DECL and DECL_SOURCE_LOCATION
668 else if (inlined_function_outer_scope_p (scope
))
671 /* Verfify that only blocks with source location set
672 are entry points to the inlined functions. */
673 gcc_assert (LOCATION_LOCUS (BLOCK_SOURCE_LOCATION (scope
))
674 == UNKNOWN_LOCATION
);
676 TREE_USED (scope
) = !unused
;
680 /* Mark all VAR_DECLS under *EXPR_P as used, so that they won't be
681 eliminated during the tree->rtl conversion process. */
684 mark_all_vars_used (tree
*expr_p
)
686 walk_tree (expr_p
, mark_all_vars_used_1
, NULL
, NULL
);
689 /* Helper function for clear_unused_block_pointer, called via walk_tree. */
692 clear_unused_block_pointer_1 (tree
*tp
, int *, void *)
694 if (EXPR_P (*tp
) && TREE_BLOCK (*tp
)
695 && !TREE_USED (TREE_BLOCK (*tp
)))
696 TREE_SET_BLOCK (*tp
, NULL
);
700 /* Set all block pointer in debug or clobber stmt to NULL if the block
701 is unused, so that they will not be streamed out. */
704 clear_unused_block_pointer (void)
707 gimple_stmt_iterator gsi
;
709 FOR_EACH_BB_FN (bb
, cfun
)
710 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
714 gimple stmt
= gsi_stmt (gsi
);
716 if (!is_gimple_debug (stmt
) && !gimple_clobber_p (stmt
))
718 b
= gimple_block (stmt
);
719 if (b
&& !TREE_USED (b
))
720 gimple_set_block (stmt
, NULL
);
721 for (i
= 0; i
< gimple_num_ops (stmt
); i
++)
722 walk_tree (gimple_op_ptr (stmt
, i
), clear_unused_block_pointer_1
,
727 /* Dump scope blocks starting at SCOPE to FILE. INDENT is the
728 indentation level and FLAGS is as in print_generic_expr. */
731 dump_scope_block (FILE *file
, int indent
, tree scope
, int flags
)
736 fprintf (file
, "\n%*s{ Scope block #%i%s%s",indent
, "" , BLOCK_NUMBER (scope
),
737 TREE_USED (scope
) ? "" : " (unused)",
738 BLOCK_ABSTRACT (scope
) ? " (abstract)": "");
739 if (LOCATION_LOCUS (BLOCK_SOURCE_LOCATION (scope
)) != UNKNOWN_LOCATION
)
741 expanded_location s
= expand_location (BLOCK_SOURCE_LOCATION (scope
));
742 fprintf (file
, " %s:%i", s
.file
, s
.line
);
744 if (BLOCK_ABSTRACT_ORIGIN (scope
))
746 tree origin
= block_ultimate_origin (scope
);
749 fprintf (file
, " Originating from :");
751 print_generic_decl (file
, origin
, flags
);
753 fprintf (file
, "#%i", BLOCK_NUMBER (origin
));
756 fprintf (file
, " \n");
757 for (var
= BLOCK_VARS (scope
); var
; var
= DECL_CHAIN (var
))
759 fprintf (file
, "%*s", indent
, "");
760 print_generic_decl (file
, var
, flags
);
761 fprintf (file
, "\n");
763 for (i
= 0; i
< BLOCK_NUM_NONLOCALIZED_VARS (scope
); i
++)
765 fprintf (file
, "%*s",indent
, "");
766 print_generic_decl (file
, BLOCK_NONLOCALIZED_VAR (scope
, i
),
768 fprintf (file
, " (nonlocalized)\n");
770 for (t
= BLOCK_SUBBLOCKS (scope
); t
; t
= BLOCK_CHAIN (t
))
771 dump_scope_block (file
, indent
+ 2, t
, flags
);
772 fprintf (file
, "\n%*s}\n",indent
, "");
775 /* Dump the tree of lexical scopes starting at SCOPE to stderr. FLAGS
776 is as in print_generic_expr. */
779 debug_scope_block (tree scope
, int flags
)
781 dump_scope_block (stderr
, 0, scope
, flags
);
785 /* Dump the tree of lexical scopes of current_function_decl to FILE.
786 FLAGS is as in print_generic_expr. */
789 dump_scope_blocks (FILE *file
, int flags
)
791 dump_scope_block (file
, 0, DECL_INITIAL (current_function_decl
), flags
);
795 /* Dump the tree of lexical scopes of current_function_decl to stderr.
796 FLAGS is as in print_generic_expr. */
799 debug_scope_blocks (int flags
)
801 dump_scope_blocks (stderr
, flags
);
804 /* Remove local variables that are not referenced in the IL. */
807 remove_unused_locals (void)
811 unsigned srcidx
, dstidx
, num
;
812 bool have_local_clobbers
= false;
814 /* Removing declarations from lexical blocks when not optimizing is
815 not only a waste of time, it actually causes differences in stack
820 timevar_push (TV_REMOVE_UNUSED
);
822 mark_scope_block_unused (DECL_INITIAL (current_function_decl
));
824 usedvars
= BITMAP_ALLOC (NULL
);
826 /* Walk the CFG marking all referenced symbols. */
827 FOR_EACH_BB_FN (bb
, cfun
)
829 gimple_stmt_iterator gsi
;
834 /* Walk the statements. */
835 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
837 gimple stmt
= gsi_stmt (gsi
);
838 tree b
= gimple_block (stmt
);
840 if (is_gimple_debug (stmt
))
843 if (gimple_clobber_p (stmt
))
845 have_local_clobbers
= true;
850 TREE_USED (b
) = true;
852 for (i
= 0; i
< gimple_num_ops (stmt
); i
++)
853 mark_all_vars_used (gimple_op_ptr (gsi_stmt (gsi
), i
));
856 for (gphi_iterator gpi
= gsi_start_phis (bb
);
863 gphi
*phi
= gpi
.phi ();
865 if (virtual_operand_p (gimple_phi_result (phi
)))
868 def
= gimple_phi_result (phi
);
869 mark_all_vars_used (&def
);
871 FOR_EACH_PHI_ARG (arg_p
, phi
, i
, SSA_OP_ALL_USES
)
873 tree arg
= USE_FROM_PTR (arg_p
);
874 int index
= PHI_ARG_INDEX_FROM_USE (arg_p
);
876 LOCATION_BLOCK (gimple_phi_arg_location (phi
, index
));
878 TREE_USED (block
) = true;
879 mark_all_vars_used (&arg
);
883 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
884 if (LOCATION_BLOCK (e
->goto_locus
) != NULL
)
885 TREE_USED (LOCATION_BLOCK (e
->goto_locus
)) = true;
888 /* We do a two-pass approach about the out-of-scope clobbers. We want
889 to remove them if they are the only references to a local variable,
890 but we want to retain them when there's any other. So the first pass
891 ignores them, and the second pass (if there were any) tries to remove
893 if (have_local_clobbers
)
894 FOR_EACH_BB_FN (bb
, cfun
)
896 gimple_stmt_iterator gsi
;
898 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
);)
900 gimple stmt
= gsi_stmt (gsi
);
901 tree b
= gimple_block (stmt
);
903 if (gimple_clobber_p (stmt
))
905 tree lhs
= gimple_assign_lhs (stmt
);
906 tree base
= get_base_address (lhs
);
907 /* Remove clobbers referencing unused vars, or clobbers
908 with MEM_REF lhs referencing uninitialized pointers. */
909 if ((TREE_CODE (base
) == VAR_DECL
&& !is_used_p (base
))
910 || (TREE_CODE (lhs
) == MEM_REF
911 && TREE_CODE (TREE_OPERAND (lhs
, 0)) == SSA_NAME
912 && SSA_NAME_IS_DEFAULT_DEF (TREE_OPERAND (lhs
, 0))
913 && (TREE_CODE (SSA_NAME_VAR (TREE_OPERAND (lhs
, 0)))
916 unlink_stmt_vdef (stmt
);
917 gsi_remove (&gsi
, true);
922 TREE_USED (b
) = true;
928 cfun
->has_local_explicit_reg_vars
= false;
930 /* Remove unmarked local and global vars from local_decls. */
931 num
= vec_safe_length (cfun
->local_decls
);
932 for (srcidx
= 0, dstidx
= 0; srcidx
< num
; srcidx
++)
934 var
= (*cfun
->local_decls
)[srcidx
];
935 if (TREE_CODE (var
) == VAR_DECL
)
937 if (!is_used_p (var
))
940 if (cfun
->nonlocal_goto_save_area
941 && TREE_OPERAND (cfun
->nonlocal_goto_save_area
, 0) == var
)
942 cfun
->nonlocal_goto_save_area
= NULL
;
943 /* Release any default def associated with var. */
944 if ((def
= ssa_default_def (cfun
, var
)) != NULL_TREE
)
946 set_ssa_default_def (cfun
, var
, NULL_TREE
);
947 release_ssa_name (def
);
952 if (TREE_CODE (var
) == VAR_DECL
953 && DECL_HARD_REGISTER (var
)
954 && !is_global_var (var
))
955 cfun
->has_local_explicit_reg_vars
= true;
957 if (srcidx
!= dstidx
)
958 (*cfun
->local_decls
)[dstidx
] = var
;
963 statistics_counter_event (cfun
, "unused VAR_DECLs removed", num
- dstidx
);
964 cfun
->local_decls
->truncate (dstidx
);
967 remove_unused_scope_block_p (DECL_INITIAL (current_function_decl
), false);
968 clear_unused_block_pointer ();
970 BITMAP_FREE (usedvars
);
972 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
974 fprintf (dump_file
, "Scope blocks after cleanups:\n");
975 dump_scope_blocks (dump_file
, dump_flags
);
978 timevar_pop (TV_REMOVE_UNUSED
);
981 /* Allocate and return a new live range information object base on MAP. */
983 static tree_live_info_p
984 new_tree_live_info (var_map map
)
986 tree_live_info_p live
;
989 live
= XNEW (struct tree_live_info_d
);
991 live
->num_blocks
= last_basic_block_for_fn (cfun
);
993 bitmap_obstack_initialize (&live
->livein_obstack
);
994 bitmap_obstack_initialize (&live
->liveout_obstack
);
995 live
->livein
= XNEWVEC (bitmap_head
, last_basic_block_for_fn (cfun
));
996 FOR_EACH_BB_FN (bb
, cfun
)
997 bitmap_initialize (&live
->livein
[bb
->index
], &live
->livein_obstack
);
999 live
->liveout
= XNEWVEC (bitmap_head
, last_basic_block_for_fn (cfun
));
1000 FOR_EACH_BB_FN (bb
, cfun
)
1001 bitmap_initialize (&live
->liveout
[bb
->index
], &live
->liveout_obstack
);
1003 live
->work_stack
= XNEWVEC (int, last_basic_block_for_fn (cfun
));
1004 live
->stack_top
= live
->work_stack
;
1006 live
->global
= BITMAP_ALLOC (NULL
);
1011 /* Free storage for live range info object LIVE. */
1014 delete_tree_live_info (tree_live_info_p live
)
1018 bitmap_obstack_release (&live
->livein_obstack
);
1019 free (live
->livein
);
1023 bitmap_obstack_release (&live
->liveout_obstack
);
1024 free (live
->liveout
);
1026 BITMAP_FREE (live
->global
);
1027 free (live
->work_stack
);
1032 /* Visit basic block BB and propagate any required live on entry bits from
1033 LIVE into the predecessors. VISITED is the bitmap of visited blocks.
1034 TMP is a temporary work bitmap which is passed in to avoid reallocating
1038 loe_visit_block (tree_live_info_p live
, basic_block bb
, sbitmap visited
)
1043 basic_block pred_bb
;
1046 gcc_checking_assert (!bitmap_bit_p (visited
, bb
->index
));
1047 bitmap_set_bit (visited
, bb
->index
);
1049 loe
= live_on_entry (live
, bb
);
1051 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
1054 if (pred_bb
== ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1056 /* Variables live-on-entry from BB that aren't defined in the
1057 predecessor block. This should be the live on entry vars to pred.
1058 Note that liveout is the DEFs in a block while live on entry is
1060 Add these bits to live-on-entry for the pred. if there are any
1061 changes, and pred_bb has been visited already, add it to the
1063 change
= bitmap_ior_and_compl_into (live_on_entry (live
, pred_bb
),
1064 loe
, &live
->liveout
[pred_bb
->index
]);
1066 && bitmap_bit_p (visited
, pred_bb
->index
))
1068 bitmap_clear_bit (visited
, pred_bb
->index
);
1069 *(live
->stack_top
)++ = pred_bb
->index
;
1075 /* Using LIVE, fill in all the live-on-entry blocks between the defs and uses
1076 of all the variables. */
1079 live_worklist (tree_live_info_p live
)
1083 sbitmap visited
= sbitmap_alloc (last_basic_block_for_fn (cfun
) + 1);
1085 bitmap_clear (visited
);
1087 /* Visit all the blocks in reverse order and propagate live on entry values
1088 into the predecessors blocks. */
1089 FOR_EACH_BB_REVERSE_FN (bb
, cfun
)
1090 loe_visit_block (live
, bb
, visited
);
1092 /* Process any blocks which require further iteration. */
1093 while (live
->stack_top
!= live
->work_stack
)
1095 b
= *--(live
->stack_top
);
1096 loe_visit_block (live
, BASIC_BLOCK_FOR_FN (cfun
, b
), visited
);
1099 sbitmap_free (visited
);
1103 /* Calculate the initial live on entry vector for SSA_NAME using immediate_use
1104 links. Set the live on entry fields in LIVE. Def's are marked temporarily
1105 in the liveout vector. */
1108 set_var_live_on_entry (tree ssa_name
, tree_live_info_p live
)
1113 basic_block def_bb
= NULL
;
1114 imm_use_iterator imm_iter
;
1115 bool global
= false;
1117 p
= var_to_partition (live
->map
, ssa_name
);
1118 if (p
== NO_PARTITION
)
1121 stmt
= SSA_NAME_DEF_STMT (ssa_name
);
1124 def_bb
= gimple_bb (stmt
);
1125 /* Mark defs in liveout bitmap temporarily. */
1127 bitmap_set_bit (&live
->liveout
[def_bb
->index
], p
);
1130 def_bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
);
1132 /* An undefined local variable does not need to be very alive. */
1133 if (ssa_undefined_value_p (ssa_name
, false))
1136 /* Visit each use of SSA_NAME and if it isn't in the same block as the def,
1137 add it to the list of live on entry blocks. */
1138 FOR_EACH_IMM_USE_FAST (use
, imm_iter
, ssa_name
)
1140 gimple use_stmt
= USE_STMT (use
);
1141 basic_block add_block
= NULL
;
1143 if (gimple_code (use_stmt
) == GIMPLE_PHI
)
1145 /* Uses in PHI's are considered to be live at exit of the SRC block
1146 as this is where a copy would be inserted. Check to see if it is
1147 defined in that block, or whether its live on entry. */
1148 int index
= PHI_ARG_INDEX_FROM_USE (use
);
1149 edge e
= gimple_phi_arg_edge (as_a
<gphi
*> (use_stmt
), index
);
1150 if (e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1152 if (e
->src
!= def_bb
)
1156 else if (is_gimple_debug (use_stmt
))
1160 /* If its not defined in this block, its live on entry. */
1161 basic_block use_bb
= gimple_bb (use_stmt
);
1162 if (use_bb
!= def_bb
)
1166 /* If there was a live on entry use, set the bit. */
1170 bitmap_set_bit (&live
->livein
[add_block
->index
], p
);
1174 /* If SSA_NAME is live on entry to at least one block, fill in all the live
1175 on entry blocks between the def and all the uses. */
1177 bitmap_set_bit (live
->global
, p
);
1181 /* Calculate the live on exit vectors based on the entry info in LIVEINFO. */
1184 calculate_live_on_exit (tree_live_info_p liveinfo
)
1190 /* live on entry calculations used liveout vectors for defs, clear them. */
1191 FOR_EACH_BB_FN (bb
, cfun
)
1192 bitmap_clear (&liveinfo
->liveout
[bb
->index
]);
1194 /* Set all the live-on-exit bits for uses in PHIs. */
1195 FOR_EACH_BB_FN (bb
, cfun
)
1200 /* Mark the PHI arguments which are live on exit to the pred block. */
1201 for (gsi
= gsi_start_phis (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
1203 gphi
*phi
= gsi
.phi ();
1204 for (i
= 0; i
< gimple_phi_num_args (phi
); i
++)
1206 tree t
= PHI_ARG_DEF (phi
, i
);
1209 if (TREE_CODE (t
) != SSA_NAME
)
1212 p
= var_to_partition (liveinfo
->map
, t
);
1213 if (p
== NO_PARTITION
)
1215 e
= gimple_phi_arg_edge (phi
, i
);
1216 if (e
->src
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
))
1217 bitmap_set_bit (&liveinfo
->liveout
[e
->src
->index
], p
);
1221 /* Add each successors live on entry to this bock live on exit. */
1222 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
1223 if (e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
1224 bitmap_ior_into (&liveinfo
->liveout
[bb
->index
],
1225 live_on_entry (liveinfo
, e
->dest
));
1230 /* Given partition map MAP, calculate all the live on entry bitmaps for
1231 each partition. Return a new live info object. */
1234 calculate_live_ranges (var_map map
, bool want_livein
)
1238 tree_live_info_p live
;
1240 live
= new_tree_live_info (map
);
1241 for (i
= 0; i
< num_var_partitions (map
); i
++)
1243 var
= partition_to_var (map
, i
);
1244 if (var
!= NULL_TREE
)
1245 set_var_live_on_entry (var
, live
);
1248 live_worklist (live
);
1250 #ifdef ENABLE_CHECKING
1251 verify_live_on_entry (live
);
1254 calculate_live_on_exit (live
);
1258 bitmap_obstack_release (&live
->livein_obstack
);
1259 free (live
->livein
);
1260 live
->livein
= NULL
;
1267 /* Output partition map MAP to file F. */
1270 dump_var_map (FILE *f
, var_map map
)
1276 fprintf (f
, "\nPartition map \n\n");
1278 for (x
= 0; x
< map
->num_partitions
; x
++)
1280 if (map
->view_to_partition
!= NULL
)
1281 p
= map
->view_to_partition
[x
];
1285 if (ssa_name (p
) == NULL_TREE
1286 || virtual_operand_p (ssa_name (p
)))
1290 for (y
= 1; y
< num_ssa_names
; y
++)
1292 p
= partition_find (map
->var_partition
, y
);
1293 if (map
->partition_to_view
)
1294 p
= map
->partition_to_view
[p
];
1299 fprintf (f
, "Partition %d (", x
);
1300 print_generic_expr (f
, partition_to_var (map
, p
), TDF_SLIM
);
1303 fprintf (f
, "%d ", y
);
1313 /* Generic dump for the above. */
1316 debug (_var_map
&ref
)
1318 dump_var_map (stderr
, &ref
);
1322 debug (_var_map
*ptr
)
1327 fprintf (stderr
, "<nil>\n");
1331 /* Output live range info LIVE to file F, controlled by FLAG. */
1334 dump_live_info (FILE *f
, tree_live_info_p live
, int flag
)
1338 var_map map
= live
->map
;
1341 if ((flag
& LIVEDUMP_ENTRY
) && live
->livein
)
1343 FOR_EACH_BB_FN (bb
, cfun
)
1345 fprintf (f
, "\nLive on entry to BB%d : ", bb
->index
);
1346 EXECUTE_IF_SET_IN_BITMAP (&live
->livein
[bb
->index
], 0, i
, bi
)
1348 print_generic_expr (f
, partition_to_var (map
, i
), TDF_SLIM
);
1355 if ((flag
& LIVEDUMP_EXIT
) && live
->liveout
)
1357 FOR_EACH_BB_FN (bb
, cfun
)
1359 fprintf (f
, "\nLive on exit from BB%d : ", bb
->index
);
1360 EXECUTE_IF_SET_IN_BITMAP (&live
->liveout
[bb
->index
], 0, i
, bi
)
1362 print_generic_expr (f
, partition_to_var (map
, i
), TDF_SLIM
);
1371 /* Generic dump for the above. */
1374 debug (tree_live_info_d
&ref
)
1376 dump_live_info (stderr
, &ref
, 0);
1380 debug (tree_live_info_d
*ptr
)
1385 fprintf (stderr
, "<nil>\n");
1389 #ifdef ENABLE_CHECKING
1390 /* Verify that SSA_VAR is a non-virtual SSA_NAME. */
1393 register_ssa_partition_check (tree ssa_var
)
1395 gcc_assert (TREE_CODE (ssa_var
) == SSA_NAME
);
1396 if (virtual_operand_p (ssa_var
))
1398 fprintf (stderr
, "Illegally registering a virtual SSA name :");
1399 print_generic_expr (stderr
, ssa_var
, TDF_SLIM
);
1400 fprintf (stderr
, " in the SSA->Normal phase.\n");
1401 internal_error ("SSA corruption");
1406 /* Verify that the info in LIVE matches the current cfg. */
1409 verify_live_on_entry (tree_live_info_p live
)
1418 var_map map
= live
->map
;
1420 /* Check for live on entry partitions and report those with a DEF in
1421 the program. This will typically mean an optimization has done
1423 bb
= ENTRY_BLOCK_PTR_FOR_FN (cfun
);
1425 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
1427 int entry_block
= e
->dest
->index
;
1428 if (e
->dest
== EXIT_BLOCK_PTR_FOR_FN (cfun
))
1430 for (i
= 0; i
< (unsigned)num_var_partitions (map
); i
++)
1435 var
= partition_to_var (map
, i
);
1436 stmt
= SSA_NAME_DEF_STMT (var
);
1437 tmp
= gimple_bb (stmt
);
1438 if (SSA_NAME_VAR (var
))
1439 d
= ssa_default_def (cfun
, SSA_NAME_VAR (var
));
1441 loe
= live_on_entry (live
, e
->dest
);
1442 if (loe
&& bitmap_bit_p (loe
, i
))
1444 if (!gimple_nop_p (stmt
))
1447 print_generic_expr (stderr
, var
, TDF_SLIM
);
1448 fprintf (stderr
, " is defined ");
1450 fprintf (stderr
, " in BB%d, ", tmp
->index
);
1451 fprintf (stderr
, "by:\n");
1452 print_gimple_stmt (stderr
, stmt
, 0, TDF_SLIM
);
1453 fprintf (stderr
, "\nIt is also live-on-entry to entry BB %d",
1455 fprintf (stderr
, " So it appears to have multiple defs.\n");
1462 print_generic_expr (stderr
, var
, TDF_SLIM
);
1463 fprintf (stderr
, " is live-on-entry to BB%d ",
1467 fprintf (stderr
, " but is not the default def of ");
1468 print_generic_expr (stderr
, d
, TDF_SLIM
);
1469 fprintf (stderr
, "\n");
1472 fprintf (stderr
, " and there is no default def.\n");
1479 /* An undefined local variable does not need to be very
1481 if (ssa_undefined_value_p (var
, false))
1484 /* The only way this var shouldn't be marked live on entry is
1485 if it occurs in a PHI argument of the block. */
1489 for (gsi
= gsi_start_phis (e
->dest
);
1490 !gsi_end_p (gsi
) && !ok
;
1493 gphi
*phi
= gsi
.phi ();
1494 for (z
= 0; z
< gimple_phi_num_args (phi
); z
++)
1495 if (var
== gimple_phi_arg_def (phi
, z
))
1504 print_generic_expr (stderr
, var
, TDF_SLIM
);
1505 fprintf (stderr
, " is not marked live-on-entry to entry BB%d ",
1507 fprintf (stderr
, "but it is a default def so it should be.\n");
1511 gcc_assert (num
<= 0);