1 /* Top-level LTO routines.
2 Copyright (C) 2009-2014 Free Software Foundation, Inc.
3 Contributed by CodeSourcery, Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
23 #include "coretypes.h"
27 #include "stor-layout.h"
28 #include "diagnostic-core.h"
31 #include "basic-block.h"
34 #include "plugin-api.h"
39 #include "hard-reg-set.h"
44 #include "tree-ssa-operands.h"
45 #include "tree-pass.h"
46 #include "langhooks.h"
49 #include "alloc-pool.h"
53 #include "tree-ssa-alias.h"
54 #include "internal-fn.h"
55 #include "gimple-expr.h"
59 #include "lto-streamer.h"
60 #include "lto-section-names.h"
61 #include "tree-streamer.h"
62 #include "splay-tree.h"
63 #include "lto-partition.h"
64 #include "data-streamer.h"
66 #include "pass_manager.h"
67 #include "ipa-inline.h"
69 #include "ipa-utils.h"
72 /* Number of parallel tasks to run, -1 if we want to use GNU Make jobserver. */
73 static int lto_parallelism
;
75 static GTY(()) tree first_personality_decl
;
77 /* Returns a hash code for P. */
80 hash_name (const void *p
)
82 const struct lto_section_slot
*ds
= (const struct lto_section_slot
*) p
;
83 return (hashval_t
) htab_hash_string (ds
->name
);
87 /* Returns nonzero if P1 and P2 are equal. */
90 eq_name (const void *p1
, const void *p2
)
92 const struct lto_section_slot
*s1
=
93 (const struct lto_section_slot
*) p1
;
94 const struct lto_section_slot
*s2
=
95 (const struct lto_section_slot
*) p2
;
97 return strcmp (s1
->name
, s2
->name
) == 0;
100 /* Free lto_section_slot */
103 free_with_string (void *arg
)
105 struct lto_section_slot
*s
= (struct lto_section_slot
*)arg
;
107 free (CONST_CAST (char *, s
->name
));
111 /* Create section hash table */
114 lto_obj_create_section_hash_table (void)
116 return htab_create (37, hash_name
, eq_name
, free_with_string
);
119 /* Delete an allocated integer KEY in the splay tree. */
122 lto_splay_tree_delete_id (splay_tree_key key
)
127 /* Compare splay tree node ids A and B. */
130 lto_splay_tree_compare_ids (splay_tree_key a
, splay_tree_key b
)
132 unsigned HOST_WIDE_INT ai
;
133 unsigned HOST_WIDE_INT bi
;
135 ai
= *(unsigned HOST_WIDE_INT
*) a
;
136 bi
= *(unsigned HOST_WIDE_INT
*) b
;
145 /* Look up splay tree node by ID in splay tree T. */
147 static splay_tree_node
148 lto_splay_tree_lookup (splay_tree t
, unsigned HOST_WIDE_INT id
)
150 return splay_tree_lookup (t
, (splay_tree_key
) &id
);
153 /* Check if KEY has ID. */
156 lto_splay_tree_id_equal_p (splay_tree_key key
, unsigned HOST_WIDE_INT id
)
158 return *(unsigned HOST_WIDE_INT
*) key
== id
;
161 /* Insert a splay tree node into tree T with ID as key and FILE_DATA as value.
162 The ID is allocated separately because we need HOST_WIDE_INTs which may
163 be wider than a splay_tree_key. */
166 lto_splay_tree_insert (splay_tree t
, unsigned HOST_WIDE_INT id
,
167 struct lto_file_decl_data
*file_data
)
169 unsigned HOST_WIDE_INT
*idp
= XCNEW (unsigned HOST_WIDE_INT
);
171 splay_tree_insert (t
, (splay_tree_key
) idp
, (splay_tree_value
) file_data
);
174 /* Create a splay tree. */
177 lto_splay_tree_new (void)
179 return splay_tree_new (lto_splay_tree_compare_ids
,
180 lto_splay_tree_delete_id
,
184 /* Return true when NODE has a clone that is analyzed (i.e. we need
185 to load its body even if the node itself is not needed). */
188 has_analyzed_clone_p (struct cgraph_node
*node
)
190 struct cgraph_node
*orig
= node
;
199 else if (node
->next_sibling_clone
)
200 node
= node
->next_sibling_clone
;
203 while (node
!= orig
&& !node
->next_sibling_clone
)
204 node
= node
->clone_of
;
206 node
= node
->next_sibling_clone
;
212 /* Read the function body for the function associated with NODE. */
215 lto_materialize_function (struct cgraph_node
*node
)
220 /* Read in functions with body (analyzed nodes)
221 and also functions that are needed to produce virtual clones. */
222 if ((node
->has_gimple_body_p () && node
->analyzed
)
223 || node
->used_as_abstract_origin
224 || has_analyzed_clone_p (node
))
226 /* Clones don't need to be read. */
229 if (DECL_FUNCTION_PERSONALITY (decl
) && !first_personality_decl
)
230 first_personality_decl
= DECL_FUNCTION_PERSONALITY (decl
);
233 /* Let the middle end know about the function. */
234 rest_of_decl_compilation (decl
, 1, 0);
238 /* Decode the content of memory pointed to by DATA in the in decl
239 state object STATE. DATA_IN points to a data_in structure for
240 decoding. Return the address after the decoded object in the
243 static const uint32_t *
244 lto_read_in_decl_state (struct data_in
*data_in
, const uint32_t *data
,
245 struct lto_in_decl_state
*state
)
252 decl
= streamer_tree_cache_get_tree (data_in
->reader_cache
, ix
);
253 if (!VAR_OR_FUNCTION_DECL_P (decl
))
255 gcc_assert (decl
== void_type_node
);
258 state
->fn_decl
= decl
;
260 for (i
= 0; i
< LTO_N_DECL_STREAMS
; i
++)
262 uint32_t size
= *data
++;
263 tree
*decls
= ggc_vec_alloc
<tree
> (size
);
265 for (j
= 0; j
< size
; j
++)
266 decls
[j
] = streamer_tree_cache_get_tree (data_in
->reader_cache
, data
[j
]);
268 state
->streams
[i
].size
= size
;
269 state
->streams
[i
].trees
= decls
;
277 /* Global canonical type table. */
278 static htab_t gimple_canonical_types
;
279 static hash_map
<const_tree
, hashval_t
> *canonical_type_hash_cache
;
280 static unsigned long num_canonical_type_hash_entries
;
281 static unsigned long num_canonical_type_hash_queries
;
283 static void iterative_hash_canonical_type (tree type
, inchash::hash
&hstate
);
284 static hashval_t
gimple_canonical_type_hash (const void *p
);
285 static void gimple_register_canonical_type_1 (tree t
, hashval_t hash
);
287 /* Returning a hash value for gimple type TYPE.
289 The hash value returned is equal for types considered compatible
290 by gimple_canonical_types_compatible_p. */
293 hash_canonical_type (tree type
)
295 inchash::hash hstate
;
297 /* Combine a few common features of types so that types are grouped into
298 smaller sets; when searching for existing matching types to merge,
299 only existing types having the same features as the new type will be
301 hstate
.add_int (TREE_CODE (type
));
302 hstate
.add_int (TYPE_MODE (type
));
304 /* Incorporate common features of numerical types. */
305 if (INTEGRAL_TYPE_P (type
)
306 || SCALAR_FLOAT_TYPE_P (type
)
307 || FIXED_POINT_TYPE_P (type
)
308 || TREE_CODE (type
) == OFFSET_TYPE
309 || POINTER_TYPE_P (type
))
311 hstate
.add_int (TYPE_UNSIGNED (type
));
312 hstate
.add_int (TYPE_PRECISION (type
));
315 if (VECTOR_TYPE_P (type
))
317 hstate
.add_int (TYPE_VECTOR_SUBPARTS (type
));
318 hstate
.add_int (TYPE_UNSIGNED (type
));
321 if (TREE_CODE (type
) == COMPLEX_TYPE
)
322 hstate
.add_int (TYPE_UNSIGNED (type
));
324 /* For pointer and reference types, fold in information about the type
325 pointed to but do not recurse to the pointed-to type. */
326 if (POINTER_TYPE_P (type
))
328 hstate
.add_int (TYPE_ADDR_SPACE (TREE_TYPE (type
)));
329 hstate
.add_int (TREE_CODE (TREE_TYPE (type
)));
332 /* For integer types hash only the string flag. */
333 if (TREE_CODE (type
) == INTEGER_TYPE
)
334 hstate
.add_int (TYPE_STRING_FLAG (type
));
336 /* For array types hash the domain bounds and the string flag. */
337 if (TREE_CODE (type
) == ARRAY_TYPE
&& TYPE_DOMAIN (type
))
339 hstate
.add_int (TYPE_STRING_FLAG (type
));
340 /* OMP lowering can introduce error_mark_node in place of
341 random local decls in types. */
342 if (TYPE_MIN_VALUE (TYPE_DOMAIN (type
)) != error_mark_node
)
343 inchash::add_expr (TYPE_MIN_VALUE (TYPE_DOMAIN (type
)), hstate
);
344 if (TYPE_MAX_VALUE (TYPE_DOMAIN (type
)) != error_mark_node
)
345 inchash::add_expr (TYPE_MAX_VALUE (TYPE_DOMAIN (type
)), hstate
);
348 /* Recurse for aggregates with a single element type. */
349 if (TREE_CODE (type
) == ARRAY_TYPE
350 || TREE_CODE (type
) == COMPLEX_TYPE
351 || TREE_CODE (type
) == VECTOR_TYPE
)
352 iterative_hash_canonical_type (TREE_TYPE (type
), hstate
);
354 /* Incorporate function return and argument types. */
355 if (TREE_CODE (type
) == FUNCTION_TYPE
|| TREE_CODE (type
) == METHOD_TYPE
)
360 /* For method types also incorporate their parent class. */
361 if (TREE_CODE (type
) == METHOD_TYPE
)
362 iterative_hash_canonical_type (TYPE_METHOD_BASETYPE (type
), hstate
);
364 iterative_hash_canonical_type (TREE_TYPE (type
), hstate
);
366 for (p
= TYPE_ARG_TYPES (type
), na
= 0; p
; p
= TREE_CHAIN (p
))
368 iterative_hash_canonical_type (TREE_VALUE (p
), hstate
);
375 if (RECORD_OR_UNION_TYPE_P (type
))
380 for (f
= TYPE_FIELDS (type
), nf
= 0; f
; f
= TREE_CHAIN (f
))
381 if (TREE_CODE (f
) == FIELD_DECL
)
383 iterative_hash_canonical_type (TREE_TYPE (f
), hstate
);
393 /* Returning a hash value for gimple type TYPE combined with VAL. */
396 iterative_hash_canonical_type (tree type
, inchash::hash
&hstate
)
399 /* An already processed type. */
400 if (TYPE_CANONICAL (type
))
402 type
= TYPE_CANONICAL (type
);
403 v
= gimple_canonical_type_hash (type
);
407 /* Canonical types should not be able to form SCCs by design, this
408 recursion is just because we do not register canonical types in
409 optimal order. To avoid quadratic behavior also register the
411 v
= hash_canonical_type (type
);
412 gimple_register_canonical_type_1 (type
, v
);
417 /* Returns the hash for a canonical type P. */
420 gimple_canonical_type_hash (const void *p
)
422 num_canonical_type_hash_queries
++;
423 hashval_t
*slot
= canonical_type_hash_cache
->get ((const_tree
) p
);
424 gcc_assert (slot
!= NULL
);
429 /* The TYPE_CANONICAL merging machinery. It should closely resemble
430 the middle-end types_compatible_p function. It needs to avoid
431 claiming types are different for types that should be treated
432 the same with respect to TBAA. Canonical types are also used
433 for IL consistency checks via the useless_type_conversion_p
434 predicate which does not handle all type kinds itself but falls
435 back to pointer-comparison of TYPE_CANONICAL for aggregates
438 /* Return true iff T1 and T2 are structurally identical for what
439 TBAA is concerned. */
442 gimple_canonical_types_compatible_p (tree t1
, tree t2
)
444 /* Before starting to set up the SCC machinery handle simple cases. */
446 /* Check first for the obvious case of pointer identity. */
450 /* Check that we have two types to compare. */
451 if (t1
== NULL_TREE
|| t2
== NULL_TREE
)
454 /* If the types have been previously registered and found equal
456 if (TYPE_CANONICAL (t1
)
457 && TYPE_CANONICAL (t1
) == TYPE_CANONICAL (t2
))
460 /* Can't be the same type if the types don't have the same code. */
461 if (TREE_CODE (t1
) != TREE_CODE (t2
))
464 /* Qualifiers do not matter for canonical type comparison purposes. */
466 /* Void types and nullptr types are always the same. */
467 if (TREE_CODE (t1
) == VOID_TYPE
468 || TREE_CODE (t1
) == NULLPTR_TYPE
)
471 /* Can't be the same type if they have different mode. */
472 if (TYPE_MODE (t1
) != TYPE_MODE (t2
))
475 /* Non-aggregate types can be handled cheaply. */
476 if (INTEGRAL_TYPE_P (t1
)
477 || SCALAR_FLOAT_TYPE_P (t1
)
478 || FIXED_POINT_TYPE_P (t1
)
479 || TREE_CODE (t1
) == VECTOR_TYPE
480 || TREE_CODE (t1
) == COMPLEX_TYPE
481 || TREE_CODE (t1
) == OFFSET_TYPE
482 || POINTER_TYPE_P (t1
))
484 /* Can't be the same type if they have different sign or precision. */
485 if (TYPE_PRECISION (t1
) != TYPE_PRECISION (t2
)
486 || TYPE_UNSIGNED (t1
) != TYPE_UNSIGNED (t2
))
489 if (TREE_CODE (t1
) == INTEGER_TYPE
490 && TYPE_STRING_FLAG (t1
) != TYPE_STRING_FLAG (t2
))
493 /* For canonical type comparisons we do not want to build SCCs
494 so we cannot compare pointed-to types. But we can, for now,
495 require the same pointed-to type kind and match what
496 useless_type_conversion_p would do. */
497 if (POINTER_TYPE_P (t1
))
499 if (TYPE_ADDR_SPACE (TREE_TYPE (t1
))
500 != TYPE_ADDR_SPACE (TREE_TYPE (t2
)))
503 if (TREE_CODE (TREE_TYPE (t1
)) != TREE_CODE (TREE_TYPE (t2
)))
507 /* Tail-recurse to components. */
508 if (TREE_CODE (t1
) == VECTOR_TYPE
509 || TREE_CODE (t1
) == COMPLEX_TYPE
)
510 return gimple_canonical_types_compatible_p (TREE_TYPE (t1
),
516 /* Do type-specific comparisons. */
517 switch (TREE_CODE (t1
))
520 /* Array types are the same if the element types are the same and
521 the number of elements are the same. */
522 if (!gimple_canonical_types_compatible_p (TREE_TYPE (t1
), TREE_TYPE (t2
))
523 || TYPE_STRING_FLAG (t1
) != TYPE_STRING_FLAG (t2
)
524 || TYPE_NONALIASED_COMPONENT (t1
) != TYPE_NONALIASED_COMPONENT (t2
))
528 tree i1
= TYPE_DOMAIN (t1
);
529 tree i2
= TYPE_DOMAIN (t2
);
531 /* For an incomplete external array, the type domain can be
532 NULL_TREE. Check this condition also. */
533 if (i1
== NULL_TREE
&& i2
== NULL_TREE
)
535 else if (i1
== NULL_TREE
|| i2
== NULL_TREE
)
539 tree min1
= TYPE_MIN_VALUE (i1
);
540 tree min2
= TYPE_MIN_VALUE (i2
);
541 tree max1
= TYPE_MAX_VALUE (i1
);
542 tree max2
= TYPE_MAX_VALUE (i2
);
544 /* The minimum/maximum values have to be the same. */
547 && ((TREE_CODE (min1
) == PLACEHOLDER_EXPR
548 && TREE_CODE (min2
) == PLACEHOLDER_EXPR
)
549 || operand_equal_p (min1
, min2
, 0))))
552 && ((TREE_CODE (max1
) == PLACEHOLDER_EXPR
553 && TREE_CODE (max2
) == PLACEHOLDER_EXPR
)
554 || operand_equal_p (max1
, max2
, 0)))))
563 /* Function types are the same if the return type and arguments types
565 if (!gimple_canonical_types_compatible_p (TREE_TYPE (t1
), TREE_TYPE (t2
)))
568 if (!comp_type_attributes (t1
, t2
))
571 if (TYPE_ARG_TYPES (t1
) == TYPE_ARG_TYPES (t2
))
577 for (parms1
= TYPE_ARG_TYPES (t1
), parms2
= TYPE_ARG_TYPES (t2
);
579 parms1
= TREE_CHAIN (parms1
), parms2
= TREE_CHAIN (parms2
))
581 if (!gimple_canonical_types_compatible_p
582 (TREE_VALUE (parms1
), TREE_VALUE (parms2
)))
586 if (parms1
|| parms2
)
594 case QUAL_UNION_TYPE
:
598 /* For aggregate types, all the fields must be the same. */
599 for (f1
= TYPE_FIELDS (t1
), f2
= TYPE_FIELDS (t2
);
601 f1
= TREE_CHAIN (f1
), f2
= TREE_CHAIN (f2
))
603 /* Skip non-fields. */
604 while (f1
&& TREE_CODE (f1
) != FIELD_DECL
)
605 f1
= TREE_CHAIN (f1
);
606 while (f2
&& TREE_CODE (f2
) != FIELD_DECL
)
607 f2
= TREE_CHAIN (f2
);
610 /* The fields must have the same name, offset and type. */
611 if (DECL_NONADDRESSABLE_P (f1
) != DECL_NONADDRESSABLE_P (f2
)
612 || !gimple_compare_field_offset (f1
, f2
)
613 || !gimple_canonical_types_compatible_p
614 (TREE_TYPE (f1
), TREE_TYPE (f2
)))
618 /* If one aggregate has more fields than the other, they
632 /* Returns nonzero if P1 and P2 are equal. */
635 gimple_canonical_type_eq (const void *p1
, const void *p2
)
637 const_tree t1
= (const_tree
) p1
;
638 const_tree t2
= (const_tree
) p2
;
639 return gimple_canonical_types_compatible_p (CONST_CAST_TREE (t1
),
640 CONST_CAST_TREE (t2
));
643 /* Main worker for gimple_register_canonical_type. */
646 gimple_register_canonical_type_1 (tree t
, hashval_t hash
)
650 gcc_checking_assert (TYPE_P (t
) && !TYPE_CANONICAL (t
));
652 slot
= htab_find_slot_with_hash (gimple_canonical_types
, t
, hash
, INSERT
);
655 tree new_type
= (tree
)(*slot
);
656 gcc_checking_assert (new_type
!= t
);
657 TYPE_CANONICAL (t
) = new_type
;
661 TYPE_CANONICAL (t
) = t
;
663 /* Cache the just computed hash value. */
664 num_canonical_type_hash_entries
++;
665 bool existed_p
= canonical_type_hash_cache
->put (t
, hash
);
666 gcc_assert (!existed_p
);
670 /* Register type T in the global type table gimple_types and set
671 TYPE_CANONICAL of T accordingly.
672 This is used by LTO to merge structurally equivalent types for
673 type-based aliasing purposes across different TUs and languages.
675 ??? This merging does not exactly match how the tree.c middle-end
676 functions will assign TYPE_CANONICAL when new types are created
677 during optimization (which at least happens for pointer and array
681 gimple_register_canonical_type (tree t
)
683 if (TYPE_CANONICAL (t
))
686 gimple_register_canonical_type_1 (t
, hash_canonical_type (t
));
689 /* Re-compute TYPE_CANONICAL for NODE and related types. */
692 lto_register_canonical_types (tree node
, bool first_p
)
699 TYPE_CANONICAL (node
) = NULL_TREE
;
701 if (POINTER_TYPE_P (node
)
702 || TREE_CODE (node
) == COMPLEX_TYPE
703 || TREE_CODE (node
) == ARRAY_TYPE
)
704 lto_register_canonical_types (TREE_TYPE (node
), first_p
);
707 gimple_register_canonical_type (node
);
711 /* Remember trees that contains references to declarations. */
712 static GTY(()) vec
<tree
, va_gc
> *tree_with_vars
;
714 #define CHECK_VAR(tt) \
717 if ((tt) && VAR_OR_FUNCTION_DECL_P (tt) \
718 && (TREE_PUBLIC (tt) || DECL_EXTERNAL (tt))) \
722 #define CHECK_NO_VAR(tt) \
723 gcc_checking_assert (!(tt) || !VAR_OR_FUNCTION_DECL_P (tt))
725 /* Check presence of pointers to decls in fields of a tree_typed T. */
728 mentions_vars_p_typed (tree t
)
730 CHECK_NO_VAR (TREE_TYPE (t
));
734 /* Check presence of pointers to decls in fields of a tree_common T. */
737 mentions_vars_p_common (tree t
)
739 if (mentions_vars_p_typed (t
))
741 CHECK_NO_VAR (TREE_CHAIN (t
));
745 /* Check presence of pointers to decls in fields of a decl_minimal T. */
748 mentions_vars_p_decl_minimal (tree t
)
750 if (mentions_vars_p_common (t
))
752 CHECK_NO_VAR (DECL_NAME (t
));
753 CHECK_VAR (DECL_CONTEXT (t
));
757 /* Check presence of pointers to decls in fields of a decl_common T. */
760 mentions_vars_p_decl_common (tree t
)
762 if (mentions_vars_p_decl_minimal (t
))
764 CHECK_VAR (DECL_SIZE (t
));
765 CHECK_VAR (DECL_SIZE_UNIT (t
));
766 CHECK_VAR (DECL_INITIAL (t
));
767 CHECK_NO_VAR (DECL_ATTRIBUTES (t
));
768 CHECK_VAR (DECL_ABSTRACT_ORIGIN (t
));
772 /* Check presence of pointers to decls in fields of a decl_with_vis T. */
775 mentions_vars_p_decl_with_vis (tree t
)
777 if (mentions_vars_p_decl_common (t
))
780 /* Accessor macro has side-effects, use field-name here. */
781 CHECK_NO_VAR (t
->decl_with_vis
.assembler_name
);
785 /* Check presence of pointers to decls in fields of a decl_non_common T. */
788 mentions_vars_p_decl_non_common (tree t
)
790 if (mentions_vars_p_decl_with_vis (t
))
792 CHECK_NO_VAR (DECL_RESULT_FLD (t
));
796 /* Check presence of pointers to decls in fields of a decl_non_common T. */
799 mentions_vars_p_function (tree t
)
801 if (mentions_vars_p_decl_non_common (t
))
803 CHECK_NO_VAR (DECL_ARGUMENTS (t
));
804 CHECK_NO_VAR (DECL_VINDEX (t
));
805 CHECK_VAR (DECL_FUNCTION_PERSONALITY (t
));
809 /* Check presence of pointers to decls in fields of a field_decl T. */
812 mentions_vars_p_field_decl (tree t
)
814 if (mentions_vars_p_decl_common (t
))
816 CHECK_VAR (DECL_FIELD_OFFSET (t
));
817 CHECK_NO_VAR (DECL_BIT_FIELD_TYPE (t
));
818 CHECK_NO_VAR (DECL_QUALIFIER (t
));
819 CHECK_NO_VAR (DECL_FIELD_BIT_OFFSET (t
));
820 CHECK_NO_VAR (DECL_FCONTEXT (t
));
824 /* Check presence of pointers to decls in fields of a type T. */
827 mentions_vars_p_type (tree t
)
829 if (mentions_vars_p_common (t
))
831 CHECK_NO_VAR (TYPE_CACHED_VALUES (t
));
832 CHECK_VAR (TYPE_SIZE (t
));
833 CHECK_VAR (TYPE_SIZE_UNIT (t
));
834 CHECK_NO_VAR (TYPE_ATTRIBUTES (t
));
835 CHECK_NO_VAR (TYPE_NAME (t
));
837 CHECK_VAR (TYPE_MINVAL (t
));
838 CHECK_VAR (TYPE_MAXVAL (t
));
840 /* Accessor is for derived node types only. */
841 CHECK_NO_VAR (t
->type_non_common
.binfo
);
843 CHECK_VAR (TYPE_CONTEXT (t
));
844 CHECK_NO_VAR (TYPE_CANONICAL (t
));
845 CHECK_NO_VAR (TYPE_MAIN_VARIANT (t
));
846 CHECK_NO_VAR (TYPE_NEXT_VARIANT (t
));
850 /* Check presence of pointers to decls in fields of a BINFO T. */
853 mentions_vars_p_binfo (tree t
)
855 unsigned HOST_WIDE_INT i
, n
;
857 if (mentions_vars_p_common (t
))
859 CHECK_VAR (BINFO_VTABLE (t
));
860 CHECK_NO_VAR (BINFO_OFFSET (t
));
861 CHECK_NO_VAR (BINFO_VIRTUALS (t
));
862 CHECK_NO_VAR (BINFO_VPTR_FIELD (t
));
863 n
= vec_safe_length (BINFO_BASE_ACCESSES (t
));
864 for (i
= 0; i
< n
; i
++)
865 CHECK_NO_VAR (BINFO_BASE_ACCESS (t
, i
));
866 /* Do not walk BINFO_INHERITANCE_CHAIN, BINFO_SUBVTT_INDEX
867 and BINFO_VPTR_INDEX; these are used by C++ FE only. */
868 n
= BINFO_N_BASE_BINFOS (t
);
869 for (i
= 0; i
< n
; i
++)
870 CHECK_NO_VAR (BINFO_BASE_BINFO (t
, i
));
874 /* Check presence of pointers to decls in fields of a CONSTRUCTOR T. */
877 mentions_vars_p_constructor (tree t
)
879 unsigned HOST_WIDE_INT idx
;
882 if (mentions_vars_p_typed (t
))
885 for (idx
= 0; vec_safe_iterate (CONSTRUCTOR_ELTS (t
), idx
, &ce
); idx
++)
887 CHECK_NO_VAR (ce
->index
);
888 CHECK_VAR (ce
->value
);
893 /* Check presence of pointers to decls in fields of an expression tree T. */
896 mentions_vars_p_expr (tree t
)
899 if (mentions_vars_p_typed (t
))
901 for (i
= TREE_OPERAND_LENGTH (t
) - 1; i
>= 0; --i
)
902 CHECK_VAR (TREE_OPERAND (t
, i
));
906 /* Check presence of pointers to decls in fields of an OMP_CLAUSE T. */
909 mentions_vars_p_omp_clause (tree t
)
912 if (mentions_vars_p_common (t
))
914 for (i
= omp_clause_num_ops
[OMP_CLAUSE_CODE (t
)] - 1; i
>= 0; --i
)
915 CHECK_VAR (OMP_CLAUSE_OPERAND (t
, i
));
919 /* Check presence of pointers to decls that needs later fixup in T. */
922 mentions_vars_p (tree t
)
924 switch (TREE_CODE (t
))
926 case IDENTIFIER_NODE
:
930 CHECK_VAR (TREE_VALUE (t
));
931 CHECK_VAR (TREE_PURPOSE (t
));
932 CHECK_NO_VAR (TREE_CHAIN (t
));
936 return mentions_vars_p_field_decl (t
);
945 return mentions_vars_p_decl_common (t
);
948 return mentions_vars_p_decl_with_vis (t
);
951 return mentions_vars_p_decl_non_common (t
);
954 return mentions_vars_p_function (t
);
957 return mentions_vars_p_binfo (t
);
959 case PLACEHOLDER_EXPR
:
960 return mentions_vars_p_common (t
);
963 case TRANSLATION_UNIT_DECL
:
964 case OPTIMIZATION_NODE
:
965 case TARGET_OPTION_NODE
:
969 return mentions_vars_p_constructor (t
);
972 return mentions_vars_p_omp_clause (t
);
977 if (mentions_vars_p_type (t
))
982 if (mentions_vars_p_expr (t
))
985 else if (CONSTANT_CLASS_P (t
))
986 CHECK_NO_VAR (TREE_TYPE (t
));
994 /* Return the resolution for the decl with index INDEX from DATA_IN. */
996 static enum ld_plugin_symbol_resolution
997 get_resolution (struct data_in
*data_in
, unsigned index
)
999 if (data_in
->globals_resolution
.exists ())
1001 ld_plugin_symbol_resolution_t ret
;
1002 /* We can have references to not emitted functions in
1003 DECL_FUNCTION_PERSONALITY at least. So we can and have
1004 to indeed return LDPR_UNKNOWN in some cases. */
1005 if (data_in
->globals_resolution
.length () <= index
)
1006 return LDPR_UNKNOWN
;
1007 ret
= data_in
->globals_resolution
[index
];
1011 /* Delay resolution finding until decl merging. */
1012 return LDPR_UNKNOWN
;
1015 /* We need to record resolutions until symbol table is read. */
1017 register_resolution (struct lto_file_decl_data
*file_data
, tree decl
,
1018 enum ld_plugin_symbol_resolution resolution
)
1020 if (resolution
== LDPR_UNKNOWN
)
1022 if (!file_data
->resolution_map
)
1023 file_data
->resolution_map
1024 = new hash_map
<tree
, ld_plugin_symbol_resolution
>;
1025 file_data
->resolution_map
->put (decl
, resolution
);
1028 /* Register DECL with the global symbol table and change its
1029 name if necessary to avoid name clashes for static globals across
1033 lto_register_var_decl_in_symtab (struct data_in
*data_in
, tree decl
,
1038 /* Variable has file scope, not local. */
1039 if (!TREE_PUBLIC (decl
)
1040 && !((context
= decl_function_context (decl
))
1041 && auto_var_in_fn_p (decl
, context
)))
1042 rest_of_decl_compilation (decl
, 1, 0);
1044 /* If this variable has already been declared, queue the
1045 declaration for merging. */
1046 if (TREE_PUBLIC (decl
))
1047 register_resolution (data_in
->file_data
,
1048 decl
, get_resolution (data_in
, ix
));
1052 /* Register DECL with the global symbol table and change its
1053 name if necessary to avoid name clashes for static globals across
1054 different files. DATA_IN contains descriptors and tables for the
1058 lto_register_function_decl_in_symtab (struct data_in
*data_in
, tree decl
,
1061 /* If this variable has already been declared, queue the
1062 declaration for merging. */
1063 if (TREE_PUBLIC (decl
) && !DECL_ABSTRACT_P (decl
))
1064 register_resolution (data_in
->file_data
,
1065 decl
, get_resolution (data_in
, ix
));
1069 /* For the type T re-materialize it in the type variant list and
1070 the pointer/reference-to chains. */
1073 lto_fixup_prevailing_type (tree t
)
1075 /* The following re-creates proper variant lists while fixing up
1076 the variant leaders. We do not stream TYPE_NEXT_VARIANT so the
1077 variant list state before fixup is broken. */
1079 /* If we are not our own variant leader link us into our new leaders
1081 if (TYPE_MAIN_VARIANT (t
) != t
)
1083 tree mv
= TYPE_MAIN_VARIANT (t
);
1084 TYPE_NEXT_VARIANT (t
) = TYPE_NEXT_VARIANT (mv
);
1085 TYPE_NEXT_VARIANT (mv
) = t
;
1088 /* The following reconstructs the pointer chains
1089 of the new pointed-to type if we are a main variant. We do
1090 not stream those so they are broken before fixup. */
1091 if (TREE_CODE (t
) == POINTER_TYPE
1092 && TYPE_MAIN_VARIANT (t
) == t
)
1094 TYPE_NEXT_PTR_TO (t
) = TYPE_POINTER_TO (TREE_TYPE (t
));
1095 TYPE_POINTER_TO (TREE_TYPE (t
)) = t
;
1097 else if (TREE_CODE (t
) == REFERENCE_TYPE
1098 && TYPE_MAIN_VARIANT (t
) == t
)
1100 TYPE_NEXT_REF_TO (t
) = TYPE_REFERENCE_TO (TREE_TYPE (t
));
1101 TYPE_REFERENCE_TO (TREE_TYPE (t
)) = t
;
1106 /* We keep prevailing tree SCCs in a hashtable with manual collision
1107 handling (in case all hashes compare the same) and keep the colliding
1108 entries in the tree_scc->next chain. */
1113 /* Hash of the whole SCC. */
1115 /* Number of trees in the SCC. */
1117 /* Number of possible entries into the SCC (tree nodes [0..entry_len-1]
1118 which share the same individual tree hash). */
1120 /* The members of the SCC.
1121 We only need to remember the first entry node candidate for prevailing
1122 SCCs (but of course have access to all entries for SCCs we are
1124 ??? For prevailing SCCs we really only need hash and the first
1125 entry candidate, but that's too awkward to implement. */
1129 struct tree_scc_hasher
: typed_noop_remove
<tree_scc
>
1131 typedef tree_scc value_type
;
1132 typedef tree_scc compare_type
;
1133 static inline hashval_t
hash (const value_type
*);
1134 static inline bool equal (const value_type
*, const compare_type
*);
1138 tree_scc_hasher::hash (const value_type
*scc
)
1144 tree_scc_hasher::equal (const value_type
*scc1
, const compare_type
*scc2
)
1146 if (scc1
->hash
!= scc2
->hash
1147 || scc1
->len
!= scc2
->len
1148 || scc1
->entry_len
!= scc2
->entry_len
)
1153 static hash_table
<tree_scc_hasher
> *tree_scc_hash
;
1154 static struct obstack tree_scc_hash_obstack
;
1156 static unsigned long num_merged_types
;
1157 static unsigned long num_prevailing_types
;
1158 static unsigned long num_type_scc_trees
;
1159 static unsigned long total_scc_size
;
1160 static unsigned long num_sccs_read
;
1161 static unsigned long total_scc_size_merged
;
1162 static unsigned long num_sccs_merged
;
1163 static unsigned long num_scc_compares
;
1164 static unsigned long num_scc_compare_collisions
;
1167 /* Compare the two entries T1 and T2 of two SCCs that are possibly equal,
1168 recursing through in-SCC tree edges. Returns true if the SCCs entered
1169 through T1 and T2 are equal and fills in *MAP with the pairs of
1170 SCC entries we visited, starting with (*MAP)[0] = T1 and (*MAP)[1] = T2. */
1173 compare_tree_sccs_1 (tree t1
, tree t2
, tree
**map
)
1175 enum tree_code code
;
1177 /* Mark already visited nodes. */
1178 TREE_ASM_WRITTEN (t2
) = 1;
1180 /* Push the pair onto map. */
1185 /* Compare value-fields. */
1186 #define compare_values(X) \
1188 if (X(t1) != X(t2)) \
1192 compare_values (TREE_CODE
);
1193 code
= TREE_CODE (t1
);
1197 compare_values (TREE_SIDE_EFFECTS
);
1198 compare_values (TREE_CONSTANT
);
1199 compare_values (TREE_READONLY
);
1200 compare_values (TREE_PUBLIC
);
1202 compare_values (TREE_ADDRESSABLE
);
1203 compare_values (TREE_THIS_VOLATILE
);
1205 compare_values (DECL_UNSIGNED
);
1206 else if (TYPE_P (t1
))
1207 compare_values (TYPE_UNSIGNED
);
1209 compare_values (TYPE_ARTIFICIAL
);
1211 compare_values (TREE_NO_WARNING
);
1212 compare_values (TREE_NOTHROW
);
1213 compare_values (TREE_STATIC
);
1214 if (code
!= TREE_BINFO
)
1215 compare_values (TREE_PRIVATE
);
1216 compare_values (TREE_PROTECTED
);
1217 compare_values (TREE_DEPRECATED
);
1220 compare_values (TYPE_SATURATING
);
1221 compare_values (TYPE_ADDR_SPACE
);
1223 else if (code
== SSA_NAME
)
1224 compare_values (SSA_NAME_IS_DEFAULT_DEF
);
1226 if (CODE_CONTAINS_STRUCT (code
, TS_INT_CST
))
1228 if (!wi::eq_p (t1
, t2
))
1232 if (CODE_CONTAINS_STRUCT (code
, TS_REAL_CST
))
1234 /* ??? No suitable compare routine available. */
1235 REAL_VALUE_TYPE r1
= TREE_REAL_CST (t1
);
1236 REAL_VALUE_TYPE r2
= TREE_REAL_CST (t2
);
1238 || r1
.decimal
!= r2
.decimal
1239 || r1
.sign
!= r2
.sign
1240 || r1
.signalling
!= r2
.signalling
1241 || r1
.canonical
!= r2
.canonical
1242 || r1
.uexp
!= r2
.uexp
)
1244 for (unsigned i
= 0; i
< SIGSZ
; ++i
)
1245 if (r1
.sig
[i
] != r2
.sig
[i
])
1249 if (CODE_CONTAINS_STRUCT (code
, TS_FIXED_CST
))
1250 if (!fixed_compare (EQ_EXPR
,
1251 TREE_FIXED_CST_PTR (t1
), TREE_FIXED_CST_PTR (t2
)))
1255 /* We don't want to compare locations, so there is nothing do compare
1256 for TS_DECL_MINIMAL. */
1258 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_COMMON
))
1260 compare_values (DECL_MODE
);
1261 compare_values (DECL_NONLOCAL
);
1262 compare_values (DECL_VIRTUAL_P
);
1263 compare_values (DECL_IGNORED_P
);
1264 compare_values (DECL_ABSTRACT_P
);
1265 compare_values (DECL_ARTIFICIAL
);
1266 compare_values (DECL_USER_ALIGN
);
1267 compare_values (DECL_PRESERVE_P
);
1268 compare_values (DECL_EXTERNAL
);
1269 compare_values (DECL_GIMPLE_REG_P
);
1270 compare_values (DECL_ALIGN
);
1271 if (code
== LABEL_DECL
)
1273 compare_values (EH_LANDING_PAD_NR
);
1274 compare_values (LABEL_DECL_UID
);
1276 else if (code
== FIELD_DECL
)
1278 compare_values (DECL_PACKED
);
1279 compare_values (DECL_NONADDRESSABLE_P
);
1280 compare_values (DECL_OFFSET_ALIGN
);
1282 else if (code
== VAR_DECL
)
1284 compare_values (DECL_HAS_DEBUG_EXPR_P
);
1285 compare_values (DECL_NONLOCAL_FRAME
);
1287 if (code
== RESULT_DECL
1288 || code
== PARM_DECL
1289 || code
== VAR_DECL
)
1291 compare_values (DECL_BY_REFERENCE
);
1292 if (code
== VAR_DECL
1293 || code
== PARM_DECL
)
1294 compare_values (DECL_HAS_VALUE_EXPR_P
);
1298 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_WRTL
))
1299 compare_values (DECL_REGISTER
);
1301 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_WITH_VIS
))
1303 compare_values (DECL_COMMON
);
1304 compare_values (DECL_DLLIMPORT_P
);
1305 compare_values (DECL_WEAK
);
1306 compare_values (DECL_SEEN_IN_BIND_EXPR_P
);
1307 compare_values (DECL_COMDAT
);
1308 compare_values (DECL_VISIBILITY
);
1309 compare_values (DECL_VISIBILITY_SPECIFIED
);
1310 if (code
== VAR_DECL
)
1312 compare_values (DECL_HARD_REGISTER
);
1313 /* DECL_IN_TEXT_SECTION is set during final asm output only. */
1314 compare_values (DECL_IN_CONSTANT_POOL
);
1318 if (CODE_CONTAINS_STRUCT (code
, TS_FUNCTION_DECL
))
1320 compare_values (DECL_BUILT_IN_CLASS
);
1321 compare_values (DECL_STATIC_CONSTRUCTOR
);
1322 compare_values (DECL_STATIC_DESTRUCTOR
);
1323 compare_values (DECL_UNINLINABLE
);
1324 compare_values (DECL_POSSIBLY_INLINED
);
1325 compare_values (DECL_IS_NOVOPS
);
1326 compare_values (DECL_IS_RETURNS_TWICE
);
1327 compare_values (DECL_IS_MALLOC
);
1328 compare_values (DECL_IS_OPERATOR_NEW
);
1329 compare_values (DECL_DECLARED_INLINE_P
);
1330 compare_values (DECL_STATIC_CHAIN
);
1331 compare_values (DECL_NO_INLINE_WARNING_P
);
1332 compare_values (DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT
);
1333 compare_values (DECL_NO_LIMIT_STACK
);
1334 compare_values (DECL_DISREGARD_INLINE_LIMITS
);
1335 compare_values (DECL_PURE_P
);
1336 compare_values (DECL_LOOPING_CONST_OR_PURE_P
);
1337 compare_values (DECL_FINAL_P
);
1338 compare_values (DECL_CXX_CONSTRUCTOR_P
);
1339 compare_values (DECL_CXX_DESTRUCTOR_P
);
1340 if (DECL_BUILT_IN_CLASS (t1
) != NOT_BUILT_IN
)
1341 compare_values (DECL_FUNCTION_CODE
);
1344 if (CODE_CONTAINS_STRUCT (code
, TS_TYPE_COMMON
))
1346 compare_values (TYPE_MODE
);
1347 compare_values (TYPE_STRING_FLAG
);
1348 compare_values (TYPE_NO_FORCE_BLK
);
1349 compare_values (TYPE_NEEDS_CONSTRUCTING
);
1350 if (RECORD_OR_UNION_TYPE_P (t1
))
1352 compare_values (TYPE_TRANSPARENT_AGGR
);
1353 compare_values (TYPE_FINAL_P
);
1355 else if (code
== ARRAY_TYPE
)
1356 compare_values (TYPE_NONALIASED_COMPONENT
);
1357 compare_values (TYPE_PACKED
);
1358 compare_values (TYPE_RESTRICT
);
1359 compare_values (TYPE_USER_ALIGN
);
1360 compare_values (TYPE_READONLY
);
1361 compare_values (TYPE_PRECISION
);
1362 compare_values (TYPE_ALIGN
);
1363 compare_values (TYPE_ALIAS_SET
);
1366 /* We don't want to compare locations, so there is nothing do compare
1369 /* BLOCKs are function local and we don't merge anything there, so
1370 simply refuse to merge. */
1371 if (CODE_CONTAINS_STRUCT (code
, TS_BLOCK
))
1374 if (CODE_CONTAINS_STRUCT (code
, TS_TRANSLATION_UNIT_DECL
))
1375 if (strcmp (TRANSLATION_UNIT_LANGUAGE (t1
),
1376 TRANSLATION_UNIT_LANGUAGE (t2
)) != 0)
1379 if (CODE_CONTAINS_STRUCT (code
, TS_TARGET_OPTION
))
1382 if (CODE_CONTAINS_STRUCT (code
, TS_OPTIMIZATION
))
1383 if (memcmp (TREE_OPTIMIZATION (t1
), TREE_OPTIMIZATION (t2
),
1384 sizeof (struct cl_optimization
)) != 0)
1387 if (CODE_CONTAINS_STRUCT (code
, TS_BINFO
))
1388 if (vec_safe_length (BINFO_BASE_ACCESSES (t1
))
1389 != vec_safe_length (BINFO_BASE_ACCESSES (t2
)))
1392 if (CODE_CONTAINS_STRUCT (code
, TS_CONSTRUCTOR
))
1393 compare_values (CONSTRUCTOR_NELTS
);
1395 if (CODE_CONTAINS_STRUCT (code
, TS_IDENTIFIER
))
1396 if (IDENTIFIER_LENGTH (t1
) != IDENTIFIER_LENGTH (t2
)
1397 || memcmp (IDENTIFIER_POINTER (t1
), IDENTIFIER_POINTER (t2
),
1398 IDENTIFIER_LENGTH (t1
)) != 0)
1401 if (CODE_CONTAINS_STRUCT (code
, TS_STRING
))
1402 if (TREE_STRING_LENGTH (t1
) != TREE_STRING_LENGTH (t2
)
1403 || memcmp (TREE_STRING_POINTER (t1
), TREE_STRING_POINTER (t2
),
1404 TREE_STRING_LENGTH (t1
)) != 0)
1407 if (code
== OMP_CLAUSE
)
1409 compare_values (OMP_CLAUSE_CODE
);
1410 switch (OMP_CLAUSE_CODE (t1
))
1412 case OMP_CLAUSE_DEFAULT
:
1413 compare_values (OMP_CLAUSE_DEFAULT_KIND
);
1415 case OMP_CLAUSE_SCHEDULE
:
1416 compare_values (OMP_CLAUSE_SCHEDULE_KIND
);
1418 case OMP_CLAUSE_DEPEND
:
1419 compare_values (OMP_CLAUSE_DEPEND_KIND
);
1421 case OMP_CLAUSE_MAP
:
1422 compare_values (OMP_CLAUSE_MAP_KIND
);
1424 case OMP_CLAUSE_PROC_BIND
:
1425 compare_values (OMP_CLAUSE_PROC_BIND_KIND
);
1427 case OMP_CLAUSE_REDUCTION
:
1428 compare_values (OMP_CLAUSE_REDUCTION_CODE
);
1429 compare_values (OMP_CLAUSE_REDUCTION_GIMPLE_INIT
);
1430 compare_values (OMP_CLAUSE_REDUCTION_GIMPLE_MERGE
);
1437 #undef compare_values
1440 /* Compare pointer fields. */
1442 /* Recurse. Search & Replaced from DFS_write_tree_body.
1443 Folding the early checks into the compare_tree_edges recursion
1444 macro makes debugging way quicker as you are able to break on
1445 compare_tree_sccs_1 and simply finish until a call returns false
1446 to spot the SCC members with the difference. */
1447 #define compare_tree_edges(E1, E2) \
1449 tree t1_ = (E1), t2_ = (E2); \
1452 || !TREE_VISITED (t2_) \
1453 || (!TREE_ASM_WRITTEN (t2_) \
1454 && !compare_tree_sccs_1 (t1_, t2_, map)))) \
1456 /* Only non-NULL trees outside of the SCC may compare equal. */ \
1457 gcc_checking_assert (t1_ != t2_ || (!t2_ || !TREE_VISITED (t2_))); \
1460 if (CODE_CONTAINS_STRUCT (code
, TS_TYPED
))
1462 if (code
!= IDENTIFIER_NODE
)
1463 compare_tree_edges (TREE_TYPE (t1
), TREE_TYPE (t2
));
1466 if (CODE_CONTAINS_STRUCT (code
, TS_VECTOR
))
1469 /* Note that the number of elements for EXPR has already been emitted
1470 in EXPR's header (see streamer_write_tree_header). */
1471 for (i
= 0; i
< VECTOR_CST_NELTS (t1
); ++i
)
1472 compare_tree_edges (VECTOR_CST_ELT (t1
, i
), VECTOR_CST_ELT (t2
, i
));
1475 if (CODE_CONTAINS_STRUCT (code
, TS_COMPLEX
))
1477 compare_tree_edges (TREE_REALPART (t1
), TREE_REALPART (t2
));
1478 compare_tree_edges (TREE_IMAGPART (t1
), TREE_IMAGPART (t2
));
1481 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_MINIMAL
))
1483 compare_tree_edges (DECL_NAME (t1
), DECL_NAME (t2
));
1484 /* ??? Global decls from different TUs have non-matching
1485 TRANSLATION_UNIT_DECLs. Only consider a small set of
1486 decls equivalent, we should not end up merging others. */
1487 if ((code
== TYPE_DECL
1488 || code
== NAMESPACE_DECL
1489 || code
== IMPORTED_DECL
1490 || code
== CONST_DECL
1491 || (VAR_OR_FUNCTION_DECL_P (t1
)
1492 && (TREE_PUBLIC (t1
) || DECL_EXTERNAL (t1
))))
1493 && DECL_FILE_SCOPE_P (t1
) && DECL_FILE_SCOPE_P (t2
))
1496 compare_tree_edges (DECL_CONTEXT (t1
), DECL_CONTEXT (t2
));
1499 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_COMMON
))
1501 compare_tree_edges (DECL_SIZE (t1
), DECL_SIZE (t2
));
1502 compare_tree_edges (DECL_SIZE_UNIT (t1
), DECL_SIZE_UNIT (t2
));
1503 compare_tree_edges (DECL_ATTRIBUTES (t1
), DECL_ATTRIBUTES (t2
));
1504 if ((code
== VAR_DECL
1505 || code
== PARM_DECL
)
1506 && DECL_HAS_VALUE_EXPR_P (t1
))
1507 compare_tree_edges (DECL_VALUE_EXPR (t1
), DECL_VALUE_EXPR (t2
));
1508 if (code
== VAR_DECL
1509 && DECL_HAS_DEBUG_EXPR_P (t1
))
1510 compare_tree_edges (DECL_DEBUG_EXPR (t1
), DECL_DEBUG_EXPR (t2
));
1511 /* LTO specific edges. */
1512 if (code
!= FUNCTION_DECL
1513 && code
!= TRANSLATION_UNIT_DECL
)
1514 compare_tree_edges (DECL_INITIAL (t1
), DECL_INITIAL (t2
));
1517 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_NON_COMMON
))
1519 if (code
== FUNCTION_DECL
)
1522 for (a1
= DECL_ARGUMENTS (t1
), a2
= DECL_ARGUMENTS (t2
);
1524 a1
= TREE_CHAIN (a1
), a2
= TREE_CHAIN (a2
))
1525 compare_tree_edges (a1
, a2
);
1526 compare_tree_edges (DECL_RESULT (t1
), DECL_RESULT (t2
));
1528 else if (code
== TYPE_DECL
)
1529 compare_tree_edges (DECL_ORIGINAL_TYPE (t1
), DECL_ORIGINAL_TYPE (t2
));
1532 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_WITH_VIS
))
1534 /* Make sure we don't inadvertently set the assembler name. */
1535 if (DECL_ASSEMBLER_NAME_SET_P (t1
))
1536 compare_tree_edges (DECL_ASSEMBLER_NAME (t1
),
1537 DECL_ASSEMBLER_NAME (t2
));
1540 if (CODE_CONTAINS_STRUCT (code
, TS_FIELD_DECL
))
1542 compare_tree_edges (DECL_FIELD_OFFSET (t1
), DECL_FIELD_OFFSET (t2
));
1543 compare_tree_edges (DECL_BIT_FIELD_TYPE (t1
), DECL_BIT_FIELD_TYPE (t2
));
1544 compare_tree_edges (DECL_BIT_FIELD_REPRESENTATIVE (t1
),
1545 DECL_BIT_FIELD_REPRESENTATIVE (t2
));
1546 compare_tree_edges (DECL_FIELD_BIT_OFFSET (t1
),
1547 DECL_FIELD_BIT_OFFSET (t2
));
1548 compare_tree_edges (DECL_FCONTEXT (t1
), DECL_FCONTEXT (t2
));
1551 if (CODE_CONTAINS_STRUCT (code
, TS_FUNCTION_DECL
))
1553 compare_tree_edges (DECL_FUNCTION_PERSONALITY (t1
),
1554 DECL_FUNCTION_PERSONALITY (t2
));
1555 compare_tree_edges (DECL_VINDEX (t1
), DECL_VINDEX (t2
));
1556 /* DECL_FUNCTION_SPECIFIC_TARGET is not yet created. We compare
1557 the attribute list instead. */
1558 compare_tree_edges (DECL_FUNCTION_SPECIFIC_OPTIMIZATION (t1
),
1559 DECL_FUNCTION_SPECIFIC_OPTIMIZATION (t2
));
1562 if (CODE_CONTAINS_STRUCT (code
, TS_TYPE_COMMON
))
1564 compare_tree_edges (TYPE_SIZE (t1
), TYPE_SIZE (t2
));
1565 compare_tree_edges (TYPE_SIZE_UNIT (t1
), TYPE_SIZE_UNIT (t2
));
1566 compare_tree_edges (TYPE_ATTRIBUTES (t1
), TYPE_ATTRIBUTES (t2
));
1567 compare_tree_edges (TYPE_NAME (t1
), TYPE_NAME (t2
));
1568 /* Do not compare TYPE_POINTER_TO or TYPE_REFERENCE_TO. They will be
1569 reconstructed during fixup. */
1570 /* Do not compare TYPE_NEXT_VARIANT, we reconstruct the variant lists
1572 compare_tree_edges (TYPE_MAIN_VARIANT (t1
), TYPE_MAIN_VARIANT (t2
));
1573 /* ??? Global types from different TUs have non-matching
1574 TRANSLATION_UNIT_DECLs. Still merge them if they are otherwise
1576 if (TYPE_FILE_SCOPE_P (t1
) && TYPE_FILE_SCOPE_P (t2
))
1579 compare_tree_edges (TYPE_CONTEXT (t1
), TYPE_CONTEXT (t2
));
1580 /* TYPE_CANONICAL is re-computed during type merging, so do not
1582 compare_tree_edges (TYPE_STUB_DECL (t1
), TYPE_STUB_DECL (t2
));
1585 if (CODE_CONTAINS_STRUCT (code
, TS_TYPE_NON_COMMON
))
1587 if (code
== ENUMERAL_TYPE
)
1588 compare_tree_edges (TYPE_VALUES (t1
), TYPE_VALUES (t2
));
1589 else if (code
== ARRAY_TYPE
)
1590 compare_tree_edges (TYPE_DOMAIN (t1
), TYPE_DOMAIN (t2
));
1591 else if (RECORD_OR_UNION_TYPE_P (t1
))
1594 for (f1
= TYPE_FIELDS (t1
), f2
= TYPE_FIELDS (t2
);
1596 f1
= TREE_CHAIN (f1
), f2
= TREE_CHAIN (f2
))
1597 compare_tree_edges (f1
, f2
);
1598 compare_tree_edges (TYPE_BINFO (t1
), TYPE_BINFO (t2
));
1600 else if (code
== FUNCTION_TYPE
1601 || code
== METHOD_TYPE
)
1602 compare_tree_edges (TYPE_ARG_TYPES (t1
), TYPE_ARG_TYPES (t2
));
1603 if (!POINTER_TYPE_P (t1
))
1604 compare_tree_edges (TYPE_MINVAL (t1
), TYPE_MINVAL (t2
));
1605 compare_tree_edges (TYPE_MAXVAL (t1
), TYPE_MAXVAL (t2
));
1608 if (CODE_CONTAINS_STRUCT (code
, TS_LIST
))
1610 compare_tree_edges (TREE_PURPOSE (t1
), TREE_PURPOSE (t2
));
1611 compare_tree_edges (TREE_VALUE (t1
), TREE_VALUE (t2
));
1612 compare_tree_edges (TREE_CHAIN (t1
), TREE_CHAIN (t2
));
1615 if (CODE_CONTAINS_STRUCT (code
, TS_VEC
))
1616 for (int i
= 0; i
< TREE_VEC_LENGTH (t1
); i
++)
1617 compare_tree_edges (TREE_VEC_ELT (t1
, i
), TREE_VEC_ELT (t2
, i
));
1619 if (CODE_CONTAINS_STRUCT (code
, TS_EXP
))
1621 for (int i
= 0; i
< TREE_OPERAND_LENGTH (t1
); i
++)
1622 compare_tree_edges (TREE_OPERAND (t1
, i
),
1623 TREE_OPERAND (t2
, i
));
1625 /* BLOCKs are function local and we don't merge anything there. */
1626 if (TREE_BLOCK (t1
) || TREE_BLOCK (t2
))
1630 if (CODE_CONTAINS_STRUCT (code
, TS_BINFO
))
1634 /* Lengths have already been compared above. */
1635 FOR_EACH_VEC_ELT (*BINFO_BASE_BINFOS (t1
), i
, t
)
1636 compare_tree_edges (t
, BINFO_BASE_BINFO (t2
, i
));
1637 FOR_EACH_VEC_SAFE_ELT (BINFO_BASE_ACCESSES (t1
), i
, t
)
1638 compare_tree_edges (t
, BINFO_BASE_ACCESS (t2
, i
));
1639 compare_tree_edges (BINFO_OFFSET (t1
), BINFO_OFFSET (t2
));
1640 compare_tree_edges (BINFO_VTABLE (t1
), BINFO_VTABLE (t2
));
1641 compare_tree_edges (BINFO_VPTR_FIELD (t1
), BINFO_VPTR_FIELD (t2
));
1642 /* Do not walk BINFO_INHERITANCE_CHAIN, BINFO_SUBVTT_INDEX
1643 and BINFO_VPTR_INDEX; these are used by C++ FE only. */
1646 if (CODE_CONTAINS_STRUCT (code
, TS_CONSTRUCTOR
))
1650 /* Lengths have already been compared above. */
1651 FOR_EACH_CONSTRUCTOR_ELT (CONSTRUCTOR_ELTS (t1
), i
, index
, value
)
1653 compare_tree_edges (index
, CONSTRUCTOR_ELT (t2
, i
)->index
);
1654 compare_tree_edges (value
, CONSTRUCTOR_ELT (t2
, i
)->value
);
1658 if (code
== OMP_CLAUSE
)
1662 for (i
= 0; i
< omp_clause_num_ops
[OMP_CLAUSE_CODE (t1
)]; i
++)
1663 compare_tree_edges (OMP_CLAUSE_OPERAND (t1
, i
),
1664 OMP_CLAUSE_OPERAND (t2
, i
));
1665 compare_tree_edges (OMP_CLAUSE_CHAIN (t1
), OMP_CLAUSE_CHAIN (t2
));
1668 #undef compare_tree_edges
1673 /* Compare the tree scc SCC to the prevailing candidate PSCC, filling
1674 out MAP if they are equal. */
1677 compare_tree_sccs (tree_scc
*pscc
, tree_scc
*scc
,
1680 /* Assume SCC entry hashes are sorted after their cardinality. Which
1681 means we can simply take the first n-tuple of equal hashes
1682 (which is recorded as entry_len) and do n SCC entry candidate
1684 for (unsigned i
= 0; i
< pscc
->entry_len
; ++i
)
1687 num_scc_compare_collisions
++;
1688 if (compare_tree_sccs_1 (pscc
->entries
[0], scc
->entries
[i
], &mapp
))
1690 /* Equal - no need to reset TREE_VISITED or TREE_ASM_WRITTEN
1691 on the scc as all trees will be freed. */
1694 /* Reset TREE_ASM_WRITTEN on scc for the next compare or in case
1695 the SCC prevails. */
1696 for (unsigned j
= 0; j
< scc
->len
; ++j
)
1697 TREE_ASM_WRITTEN (scc
->entries
[j
]) = 0;
1703 /* QSort sort function to sort a map of two pointers after the 2nd
1707 cmp_tree (const void *p1_
, const void *p2_
)
1709 tree
*p1
= (tree
*)(const_cast<void *>(p1_
));
1710 tree
*p2
= (tree
*)(const_cast<void *>(p2_
));
1713 return ((uintptr_t)p1
[1] < (uintptr_t)p2
[1]) ? -1 : 1;
1716 /* Try to unify the SCC with nodes FROM to FROM + LEN in CACHE and
1717 hash value SCC_HASH with an already recorded SCC. Return true if
1718 that was successful, otherwise return false. */
1721 unify_scc (struct streamer_tree_cache_d
*cache
, unsigned from
,
1722 unsigned len
, unsigned scc_entry_len
, hashval_t scc_hash
)
1724 bool unified_p
= false;
1726 = (tree_scc
*) alloca (sizeof (tree_scc
) + (len
- 1) * sizeof (tree
));
1728 scc
->hash
= scc_hash
;
1730 scc
->entry_len
= scc_entry_len
;
1731 for (unsigned i
= 0; i
< len
; ++i
)
1733 tree t
= streamer_tree_cache_get_tree (cache
, from
+ i
);
1734 scc
->entries
[i
] = t
;
1735 /* Do not merge SCCs with local entities inside them. Also do
1736 not merge TRANSLATION_UNIT_DECLs. */
1737 if (TREE_CODE (t
) == TRANSLATION_UNIT_DECL
1738 || (VAR_OR_FUNCTION_DECL_P (t
)
1739 && !(TREE_PUBLIC (t
) || DECL_EXTERNAL (t
)))
1740 || TREE_CODE (t
) == LABEL_DECL
)
1742 /* Avoid doing any work for these cases and do not worry to
1743 record the SCCs for further merging. */
1748 /* Look for the list of candidate SCCs to compare against. */
1750 slot
= tree_scc_hash
->find_slot_with_hash (scc
, scc_hash
, INSERT
);
1753 /* Try unifying against each candidate. */
1756 /* Set TREE_VISITED on the scc so we can easily identify tree nodes
1757 outside of the scc when following tree edges. Make sure
1758 that TREE_ASM_WRITTEN is unset so we can use it as 2nd bit
1759 to track whether we visited the SCC member during the compare.
1760 We cannot use TREE_VISITED on the pscc members as the extended
1761 scc and pscc can overlap. */
1762 for (unsigned i
= 0; i
< scc
->len
; ++i
)
1764 TREE_VISITED (scc
->entries
[i
]) = 1;
1765 gcc_checking_assert (!TREE_ASM_WRITTEN (scc
->entries
[i
]));
1768 tree
*map
= XALLOCAVEC (tree
, 2 * len
);
1769 for (tree_scc
*pscc
= *slot
; pscc
; pscc
= pscc
->next
)
1771 if (!compare_tree_sccs (pscc
, scc
, map
))
1774 /* Found an equal SCC. */
1776 num_scc_compare_collisions
--;
1778 total_scc_size_merged
+= len
;
1780 #ifdef ENABLE_CHECKING
1781 for (unsigned i
= 0; i
< len
; ++i
)
1783 tree t
= map
[2*i
+1];
1784 enum tree_code code
= TREE_CODE (t
);
1785 /* IDENTIFIER_NODEs should be singletons and are merged by the
1786 streamer. The others should be singletons, too, and we
1787 should not merge them in any way. */
1788 gcc_assert (code
!= TRANSLATION_UNIT_DECL
1789 && code
!= IDENTIFIER_NODE
1790 && !streamer_handle_as_builtin_p (t
));
1794 /* Fixup the streamer cache with the prevailing nodes according
1795 to the tree node mapping computed by compare_tree_sccs. */
1797 streamer_tree_cache_replace_tree (cache
, pscc
->entries
[0], from
);
1800 tree
*map2
= XALLOCAVEC (tree
, 2 * len
);
1801 for (unsigned i
= 0; i
< len
; ++i
)
1803 map2
[i
*2] = (tree
)(uintptr_t)(from
+ i
);
1804 map2
[i
*2+1] = scc
->entries
[i
];
1806 qsort (map2
, len
, 2 * sizeof (tree
), cmp_tree
);
1807 qsort (map
, len
, 2 * sizeof (tree
), cmp_tree
);
1808 for (unsigned i
= 0; i
< len
; ++i
)
1809 streamer_tree_cache_replace_tree (cache
, map
[2*i
],
1810 (uintptr_t)map2
[2*i
]);
1813 /* Free the tree nodes from the read SCC. */
1814 for (unsigned i
= 0; i
< len
; ++i
)
1816 enum tree_code code
;
1817 if (TYPE_P (scc
->entries
[i
]))
1819 code
= TREE_CODE (scc
->entries
[i
]);
1820 if (CODE_CONTAINS_STRUCT (code
, TS_CONSTRUCTOR
))
1821 vec_free (CONSTRUCTOR_ELTS (scc
->entries
[i
]));
1822 ggc_free (scc
->entries
[i
]);
1828 /* Reset TREE_VISITED if we didn't unify the SCC with another. */
1830 for (unsigned i
= 0; i
< scc
->len
; ++i
)
1831 TREE_VISITED (scc
->entries
[i
]) = 0;
1834 /* If we didn't unify it to any candidate duplicate the relevant
1835 pieces to permanent storage and link it into the chain. */
1839 = XOBNEWVAR (&tree_scc_hash_obstack
, tree_scc
, sizeof (tree_scc
));
1840 memcpy (pscc
, scc
, sizeof (tree_scc
));
1841 pscc
->next
= (*slot
);
1848 /* Read all the symbols from buffer DATA, using descriptors in DECL_DATA.
1849 RESOLUTIONS is the set of symbols picked by the linker (read from the
1850 resolution file when the linker plugin is being used). */
1853 lto_read_decls (struct lto_file_decl_data
*decl_data
, const void *data
,
1854 vec
<ld_plugin_symbol_resolution_t
> resolutions
)
1856 const struct lto_decl_header
*header
= (const struct lto_decl_header
*) data
;
1857 const int decl_offset
= sizeof (struct lto_decl_header
);
1858 const int main_offset
= decl_offset
+ header
->decl_state_size
;
1859 const int string_offset
= main_offset
+ header
->main_size
;
1860 struct data_in
*data_in
;
1862 const uint32_t *data_ptr
, *data_end
;
1863 uint32_t num_decl_states
;
1865 lto_input_block
ib_main ((const char *) data
+ main_offset
,
1868 data_in
= lto_data_in_create (decl_data
, (const char *) data
+ string_offset
,
1869 header
->string_size
, resolutions
);
1871 /* We do not uniquify the pre-loaded cache entries, those are middle-end
1872 internal types that should not be merged. */
1874 /* Read the global declarations and types. */
1875 while (ib_main
.p
< ib_main
.len
)
1878 unsigned from
= data_in
->reader_cache
->nodes
.length ();
1879 /* Read and uniquify SCCs as in the input stream. */
1880 enum LTO_tags tag
= streamer_read_record_start (&ib_main
);
1881 if (tag
== LTO_tree_scc
)
1884 unsigned scc_entry_len
;
1885 hashval_t scc_hash
= lto_input_scc (&ib_main
, data_in
, &len_
,
1887 unsigned len
= data_in
->reader_cache
->nodes
.length () - from
;
1888 gcc_assert (len
== len_
);
1890 total_scc_size
+= len
;
1893 /* We have the special case of size-1 SCCs that are pre-merged
1894 by means of identifier and string sharing for example.
1895 ??? Maybe we should avoid streaming those as SCCs. */
1896 tree first
= streamer_tree_cache_get_tree (data_in
->reader_cache
,
1899 && (TREE_CODE (first
) == IDENTIFIER_NODE
1900 || TREE_CODE (first
) == INTEGER_CST
1901 || TREE_CODE (first
) == TRANSLATION_UNIT_DECL
1902 || streamer_handle_as_builtin_p (first
)))
1905 /* Try to unify the SCC with already existing ones. */
1907 && unify_scc (data_in
->reader_cache
, from
,
1908 len
, scc_entry_len
, scc_hash
))
1911 bool seen_type
= false;
1912 for (unsigned i
= 0; i
< len
; ++i
)
1914 tree t
= streamer_tree_cache_get_tree (data_in
->reader_cache
,
1916 /* Reconstruct the type variant and pointer-to/reference-to
1921 num_prevailing_types
++;
1922 lto_fixup_prevailing_type (t
);
1924 /* Compute the canonical type of all types.
1925 ??? Should be able to assert that !TYPE_CANONICAL. */
1926 if (TYPE_P (t
) && !TYPE_CANONICAL (t
))
1928 gimple_register_canonical_type (t
);
1930 register_odr_type (t
);
1932 /* Link shared INTEGER_CSTs into TYPE_CACHED_VALUEs of its
1933 type which is also member of this SCC. */
1934 if (TREE_CODE (t
) == INTEGER_CST
1935 && !TREE_OVERFLOW (t
))
1936 cache_integer_cst (t
);
1937 /* Re-build DECL_FUNCTION_SPECIFIC_TARGET, we need that
1938 for both WPA and LTRANS stage. */
1939 if (TREE_CODE (t
) == FUNCTION_DECL
)
1941 tree attr
= lookup_attribute ("target", DECL_ATTRIBUTES (t
));
1943 targetm
.target_option
.valid_attribute_p
1944 (t
, NULL_TREE
, TREE_VALUE (attr
), 0);
1946 /* Register TYPE_DECLs with the debuginfo machinery. */
1948 && TREE_CODE (t
) == TYPE_DECL
)
1949 debug_hooks
->type_decl (t
, !DECL_FILE_SCOPE_P (t
));
1952 /* Register variables and functions with the
1954 if (TREE_CODE (t
) == VAR_DECL
)
1955 lto_register_var_decl_in_symtab (data_in
, t
, from
+ i
);
1956 else if (TREE_CODE (t
) == FUNCTION_DECL
1957 && !DECL_BUILT_IN (t
))
1958 lto_register_function_decl_in_symtab (data_in
, t
, from
+ i
);
1959 /* Scan the tree for references to global functions or
1960 variables and record those for later fixup. */
1961 if (mentions_vars_p (t
))
1962 vec_safe_push (tree_with_vars
, t
);
1966 num_type_scc_trees
+= len
;
1970 /* Pickle stray references. */
1971 t
= lto_input_tree_1 (&ib_main
, data_in
, tag
, 0);
1972 gcc_assert (t
&& data_in
->reader_cache
->nodes
.length () == from
);
1976 /* Read in lto_in_decl_state objects. */
1977 data_ptr
= (const uint32_t *) ((const char*) data
+ decl_offset
);
1979 (const uint32_t *) ((const char*) data_ptr
+ header
->decl_state_size
);
1980 num_decl_states
= *data_ptr
++;
1982 gcc_assert (num_decl_states
> 0);
1983 decl_data
->global_decl_state
= lto_new_in_decl_state ();
1984 data_ptr
= lto_read_in_decl_state (data_in
, data_ptr
,
1985 decl_data
->global_decl_state
);
1987 /* Read in per-function decl states and enter them in hash table. */
1988 decl_data
->function_decl_states
=
1989 htab_create_ggc (37, lto_hash_in_decl_state
, lto_eq_in_decl_state
, NULL
);
1991 for (i
= 1; i
< num_decl_states
; i
++)
1993 struct lto_in_decl_state
*state
= lto_new_in_decl_state ();
1996 data_ptr
= lto_read_in_decl_state (data_in
, data_ptr
, state
);
1997 slot
= htab_find_slot (decl_data
->function_decl_states
, state
, INSERT
);
1998 gcc_assert (*slot
== NULL
);
2002 if (data_ptr
!= data_end
)
2003 internal_error ("bytecode stream: garbage at the end of symbols section");
2005 /* Set the current decl state to be the global state. */
2006 decl_data
->current_decl_state
= decl_data
->global_decl_state
;
2008 lto_data_in_delete (data_in
);
2011 /* Custom version of strtoll, which is not portable. */
2014 lto_parse_hex (const char *p
)
2018 for (; *p
!= '\0'; ++p
)
2023 if (c
>= '0' && c
<= '9')
2025 else if (c
>= 'a' && c
<= 'f')
2026 part
= c
- 'a' + 10;
2027 else if (c
>= 'A' && c
<= 'F')
2028 part
= c
- 'A' + 10;
2030 internal_error ("could not parse hex number");
2037 /* Read resolution for file named FILE_NAME. The resolution is read from
2041 lto_resolution_read (splay_tree file_ids
, FILE *resolution
, lto_file
*file
)
2043 /* We require that objects in the resolution file are in the same
2044 order as the lto1 command line. */
2045 unsigned int name_len
;
2047 unsigned int num_symbols
;
2049 struct lto_file_decl_data
*file_data
;
2050 splay_tree_node nd
= NULL
;
2055 name_len
= strlen (file
->filename
);
2056 obj_name
= XNEWVEC (char, name_len
+ 1);
2057 fscanf (resolution
, " "); /* Read white space. */
2059 fread (obj_name
, sizeof (char), name_len
, resolution
);
2060 obj_name
[name_len
] = '\0';
2061 if (filename_cmp (obj_name
, file
->filename
) != 0)
2062 internal_error ("unexpected file name %s in linker resolution file. "
2063 "Expected %s", obj_name
, file
->filename
);
2064 if (file
->offset
!= 0)
2069 t
= fscanf (resolution
, "@0x%16s", offset_p
);
2071 internal_error ("could not parse file offset");
2072 offset
= lto_parse_hex (offset_p
);
2073 if (offset
!= file
->offset
)
2074 internal_error ("unexpected offset");
2079 fscanf (resolution
, "%u", &num_symbols
);
2081 for (i
= 0; i
< num_symbols
; i
++)
2085 unsigned HOST_WIDE_INT id
;
2087 enum ld_plugin_symbol_resolution r
= (enum ld_plugin_symbol_resolution
) 0;
2089 unsigned int lto_resolution_str_len
=
2090 sizeof (lto_resolution_str
) / sizeof (char *);
2093 t
= fscanf (resolution
, "%u " HOST_WIDE_INT_PRINT_HEX_PURE
" %26s %*[^\n]\n",
2094 &index
, &id
, r_str
);
2096 internal_error ("invalid line in the resolution file");
2098 for (j
= 0; j
< lto_resolution_str_len
; j
++)
2100 if (strcmp (lto_resolution_str
[j
], r_str
) == 0)
2102 r
= (enum ld_plugin_symbol_resolution
) j
;
2106 if (j
== lto_resolution_str_len
)
2107 internal_error ("invalid resolution in the resolution file");
2109 if (!(nd
&& lto_splay_tree_id_equal_p (nd
->key
, id
)))
2111 nd
= lto_splay_tree_lookup (file_ids
, id
);
2113 internal_error ("resolution sub id %wx not in object file", id
);
2116 file_data
= (struct lto_file_decl_data
*)nd
->value
;
2117 /* The indexes are very sparse. To save memory save them in a compact
2118 format that is only unpacked later when the subfile is processed. */
2121 file_data
->respairs
.safe_push (rp
);
2122 if (file_data
->max_index
< index
)
2123 file_data
->max_index
= index
;
2127 /* List of file_decl_datas */
2128 struct file_data_list
2130 struct lto_file_decl_data
*first
, *last
;
2133 /* Is the name for a id'ed LTO section? */
2136 lto_section_with_id (const char *name
, unsigned HOST_WIDE_INT
*id
)
2140 if (strncmp (name
, LTO_SECTION_NAME_PREFIX
, strlen (LTO_SECTION_NAME_PREFIX
)))
2142 s
= strrchr (name
, '.');
2143 return s
&& sscanf (s
, "." HOST_WIDE_INT_PRINT_HEX_PURE
, id
) == 1;
2146 /* Create file_data of each sub file id */
2149 create_subid_section_table (struct lto_section_slot
*ls
, splay_tree file_ids
,
2150 struct file_data_list
*list
)
2152 struct lto_section_slot s_slot
, *new_slot
;
2153 unsigned HOST_WIDE_INT id
;
2157 struct lto_file_decl_data
*file_data
;
2159 if (!lto_section_with_id (ls
->name
, &id
))
2162 /* Find hash table of sub module id */
2163 nd
= lto_splay_tree_lookup (file_ids
, id
);
2166 file_data
= (struct lto_file_decl_data
*)nd
->value
;
2170 file_data
= ggc_alloc
<lto_file_decl_data
> ();
2171 memset(file_data
, 0, sizeof (struct lto_file_decl_data
));
2173 file_data
->section_hash_table
= lto_obj_create_section_hash_table ();;
2174 lto_splay_tree_insert (file_ids
, id
, file_data
);
2176 /* Maintain list in linker order */
2178 list
->first
= file_data
;
2180 list
->last
->next
= file_data
;
2181 list
->last
= file_data
;
2184 /* Copy section into sub module hash table */
2185 new_name
= XDUPVEC (char, ls
->name
, strlen (ls
->name
) + 1);
2186 s_slot
.name
= new_name
;
2187 hash_slot
= htab_find_slot (file_data
->section_hash_table
, &s_slot
, INSERT
);
2188 gcc_assert (*hash_slot
== NULL
);
2190 new_slot
= XDUP (struct lto_section_slot
, ls
);
2191 new_slot
->name
= new_name
;
2192 *hash_slot
= new_slot
;
2196 /* Read declarations and other initializations for a FILE_DATA. */
2199 lto_file_finalize (struct lto_file_decl_data
*file_data
, lto_file
*file
)
2203 vec
<ld_plugin_symbol_resolution_t
>
2204 resolutions
= vNULL
;
2208 /* Create vector for fast access of resolution. We do this lazily
2210 resolutions
.safe_grow_cleared (file_data
->max_index
+ 1);
2211 for (i
= 0; file_data
->respairs
.iterate (i
, &rp
); i
++)
2212 resolutions
[rp
->index
] = rp
->res
;
2213 file_data
->respairs
.release ();
2215 file_data
->renaming_hash_table
= lto_create_renaming_table ();
2216 file_data
->file_name
= file
->filename
;
2217 data
= lto_get_section_data (file_data
, LTO_section_decls
, NULL
, &len
);
2220 internal_error ("cannot read LTO decls from %s", file_data
->file_name
);
2223 /* Frees resolutions */
2224 lto_read_decls (file_data
, data
, resolutions
);
2225 lto_free_section_data (file_data
, LTO_section_decls
, NULL
, data
, len
);
2228 /* Finalize FILE_DATA in FILE and increase COUNT. */
2231 lto_create_files_from_ids (lto_file
*file
, struct lto_file_decl_data
*file_data
,
2234 lto_file_finalize (file_data
, file
);
2235 if (symtab
->dump_file
)
2236 fprintf (symtab
->dump_file
,
2237 "Creating file %s with sub id " HOST_WIDE_INT_PRINT_HEX
"\n",
2238 file_data
->file_name
, file_data
->id
);
2243 /* Generate a TREE representation for all types and external decls
2246 Read all of the globals out of the file. Then read the cgraph
2247 and process the .o index into the cgraph nodes so that it can open
2248 the .o file to load the functions and ipa information. */
2250 static struct lto_file_decl_data
*
2251 lto_file_read (lto_file
*file
, FILE *resolution_file
, int *count
)
2253 struct lto_file_decl_data
*file_data
= NULL
;
2254 splay_tree file_ids
;
2255 htab_t section_hash_table
;
2256 struct lto_section_slot
*section
;
2257 struct file_data_list file_list
;
2258 struct lto_section_list section_list
;
2260 memset (§ion_list
, 0, sizeof (struct lto_section_list
));
2261 section_hash_table
= lto_obj_build_section_table (file
, §ion_list
);
2263 /* Find all sub modules in the object and put their sections into new hash
2264 tables in a splay tree. */
2265 file_ids
= lto_splay_tree_new ();
2266 memset (&file_list
, 0, sizeof (struct file_data_list
));
2267 for (section
= section_list
.first
; section
!= NULL
; section
= section
->next
)
2268 create_subid_section_table (section
, file_ids
, &file_list
);
2270 /* Add resolutions to file ids */
2271 lto_resolution_read (file_ids
, resolution_file
, file
);
2273 /* Finalize each lto file for each submodule in the merged object */
2274 for (file_data
= file_list
.first
; file_data
!= NULL
; file_data
= file_data
->next
)
2275 lto_create_files_from_ids (file
, file_data
, count
);
2277 splay_tree_delete (file_ids
);
2278 htab_delete (section_hash_table
);
2280 return file_list
.first
;
2283 #if HAVE_MMAP_FILE && HAVE_SYSCONF && defined _SC_PAGE_SIZE
2284 #define LTO_MMAP_IO 1
2288 /* Page size of machine is used for mmap and munmap calls. */
2289 static size_t page_mask
;
2292 /* Get the section data of length LEN from FILENAME starting at
2293 OFFSET. The data segment must be freed by the caller when the
2294 caller is finished. Returns NULL if all was not well. */
2297 lto_read_section_data (struct lto_file_decl_data
*file_data
,
2298 intptr_t offset
, size_t len
)
2302 static char *fd_name
;
2304 intptr_t computed_len
;
2305 intptr_t computed_offset
;
2309 /* Keep a single-entry file-descriptor cache. The last file we
2310 touched will get closed at exit.
2311 ??? Eventually we want to add a more sophisticated larger cache
2312 or rather fix function body streaming to not stream them in
2313 practically random order. */
2315 && filename_cmp (fd_name
, file_data
->file_name
) != 0)
2323 fd
= open (file_data
->file_name
, O_RDONLY
|O_BINARY
);
2326 fatal_error ("Cannot open %s", file_data
->file_name
);
2329 fd_name
= xstrdup (file_data
->file_name
);
2335 size_t page_size
= sysconf (_SC_PAGE_SIZE
);
2336 page_mask
= ~(page_size
- 1);
2339 computed_offset
= offset
& page_mask
;
2340 diff
= offset
- computed_offset
;
2341 computed_len
= len
+ diff
;
2343 result
= (char *) mmap (NULL
, computed_len
, PROT_READ
, MAP_PRIVATE
,
2344 fd
, computed_offset
);
2345 if (result
== MAP_FAILED
)
2347 fatal_error ("Cannot map %s", file_data
->file_name
);
2351 return result
+ diff
;
2353 result
= (char *) xmalloc (len
);
2354 if (lseek (fd
, offset
, SEEK_SET
) != offset
2355 || read (fd
, result
, len
) != (ssize_t
) len
)
2358 fatal_error ("Cannot read %s", file_data
->file_name
);
2362 /* Native windows doesn't supports delayed unlink on opened file. So
2363 we close file here again. This produces higher I/O load, but at least
2364 it prevents to have dangling file handles preventing unlink. */
2375 /* Get the section data from FILE_DATA of SECTION_TYPE with NAME.
2376 NAME will be NULL unless the section type is for a function
2380 get_section_data (struct lto_file_decl_data
*file_data
,
2381 enum lto_section_type section_type
,
2385 htab_t section_hash_table
= file_data
->section_hash_table
;
2386 struct lto_section_slot
*f_slot
;
2387 struct lto_section_slot s_slot
;
2388 const char *section_name
= lto_get_section_name (section_type
, name
, file_data
);
2392 s_slot
.name
= section_name
;
2393 f_slot
= (struct lto_section_slot
*) htab_find (section_hash_table
, &s_slot
);
2396 data
= lto_read_section_data (file_data
, f_slot
->start
, f_slot
->len
);
2400 free (CONST_CAST (char *, section_name
));
2405 /* Free the section data from FILE_DATA of SECTION_TYPE with NAME that
2406 starts at OFFSET and has LEN bytes. */
2409 free_section_data (struct lto_file_decl_data
*file_data ATTRIBUTE_UNUSED
,
2410 enum lto_section_type section_type ATTRIBUTE_UNUSED
,
2411 const char *name ATTRIBUTE_UNUSED
,
2412 const char *offset
, size_t len ATTRIBUTE_UNUSED
)
2415 intptr_t computed_len
;
2416 intptr_t computed_offset
;
2421 computed_offset
= ((intptr_t) offset
) & page_mask
;
2422 diff
= (intptr_t) offset
- computed_offset
;
2423 computed_len
= len
+ diff
;
2425 munmap ((caddr_t
) computed_offset
, computed_len
);
2427 free (CONST_CAST(char *, offset
));
2431 static lto_file
*current_lto_file
;
2433 /* Helper for qsort; compare partitions and return one with smaller size.
2434 We sort from greatest to smallest so parallel build doesn't stale on the
2435 longest compilation being executed too late. */
2438 cmp_partitions_size (const void *a
, const void *b
)
2440 const struct ltrans_partition_def
*pa
2441 = *(struct ltrans_partition_def
*const *)a
;
2442 const struct ltrans_partition_def
*pb
2443 = *(struct ltrans_partition_def
*const *)b
;
2444 return pb
->insns
- pa
->insns
;
2447 /* Helper for qsort; compare partitions and return one with smaller order. */
2450 cmp_partitions_order (const void *a
, const void *b
)
2452 const struct ltrans_partition_def
*pa
2453 = *(struct ltrans_partition_def
*const *)a
;
2454 const struct ltrans_partition_def
*pb
2455 = *(struct ltrans_partition_def
*const *)b
;
2456 int ordera
= -1, orderb
= -1;
2458 if (lto_symtab_encoder_size (pa
->encoder
))
2459 ordera
= lto_symtab_encoder_deref (pa
->encoder
, 0)->order
;
2460 if (lto_symtab_encoder_size (pb
->encoder
))
2461 orderb
= lto_symtab_encoder_deref (pb
->encoder
, 0)->order
;
2462 return orderb
- ordera
;
2465 /* Actually stream out ENCODER into TEMP_FILENAME. */
2468 do_stream_out (char *temp_filename
, lto_symtab_encoder_t encoder
)
2470 lto_file
*file
= lto_obj_file_open (temp_filename
, true);
2472 fatal_error ("lto_obj_file_open() failed");
2473 lto_set_current_out_file (file
);
2475 ipa_write_optimization_summaries (encoder
);
2477 lto_set_current_out_file (NULL
);
2478 lto_obj_file_close (file
);
2482 /* Wait for forked process and signal errors. */
2483 #ifdef HAVE_WORKING_FORK
2491 #define WCONTINUED 0
2493 int w
= waitpid (0, &status
, WUNTRACED
| WCONTINUED
);
2495 fatal_error ("waitpid failed");
2497 if (WIFEXITED (status
) && WEXITSTATUS (status
))
2498 fatal_error ("streaming subprocess failed");
2499 else if (WIFSIGNALED (status
))
2500 fatal_error ("streaming subprocess was killed by signal");
2502 while (!WIFEXITED (status
) && !WIFSIGNALED (status
));
2506 /* Stream out ENCODER into TEMP_FILENAME
2507 Fork if that seems to help. */
2510 stream_out (char *temp_filename
, lto_symtab_encoder_t encoder
,
2511 bool ARG_UNUSED (last
))
2513 #ifdef HAVE_WORKING_FORK
2516 if (lto_parallelism
<= 1)
2518 do_stream_out (temp_filename
, encoder
);
2522 /* Do not run more than LTO_PARALLELISM streamings
2523 FIXME: we ignore limits on jobserver. */
2524 if (lto_parallelism
> 0 && nruns
>= lto_parallelism
)
2529 /* If this is not the last parallel partition, execute new
2530 streaming process. */
2533 pid_t cpid
= fork ();
2537 setproctitle ("lto1-wpa-streaming");
2538 do_stream_out (temp_filename
, encoder
);
2541 /* Fork failed; lets do the job ourseleves. */
2542 else if (cpid
== -1)
2543 do_stream_out (temp_filename
, encoder
);
2547 /* Last partition; stream it and wait for all children to die. */
2551 do_stream_out (temp_filename
, encoder
);
2552 for (i
= 0; i
< nruns
; i
++)
2555 asm_nodes_output
= true;
2557 do_stream_out (temp_filename
, encoder
);
2561 /* Write all output files in WPA mode and the file with the list of
2565 lto_wpa_write_files (void)
2568 ltrans_partition part
;
2569 FILE *ltrans_output_list_stream
;
2570 char *temp_filename
;
2571 vec
<char *>temp_filenames
= vNULL
;
2574 /* Open the LTRANS output list. */
2575 if (!ltrans_output_list
)
2576 fatal_error ("no LTRANS output list filename provided");
2578 timevar_push (TV_WHOPR_WPA
);
2580 FOR_EACH_VEC_ELT (ltrans_partitions
, i
, part
)
2581 lto_stats
.num_output_symtab_nodes
+= lto_symtab_encoder_size (part
->encoder
);
2583 timevar_pop (TV_WHOPR_WPA
);
2585 timevar_push (TV_WHOPR_WPA_IO
);
2587 /* Generate a prefix for the LTRANS unit files. */
2588 blen
= strlen (ltrans_output_list
);
2589 temp_filename
= (char *) xmalloc (blen
+ sizeof ("2147483648.o"));
2590 strcpy (temp_filename
, ltrans_output_list
);
2591 if (blen
> sizeof (".out")
2592 && strcmp (temp_filename
+ blen
- sizeof (".out") + 1,
2594 temp_filename
[blen
- sizeof (".out") + 1] = '\0';
2595 blen
= strlen (temp_filename
);
2597 n_sets
= ltrans_partitions
.length ();
2599 /* Sort partitions by size so small ones are compiled last.
2600 FIXME: Even when not reordering we may want to output one list for parallel make
2601 and other for final link command. */
2603 if (!flag_profile_reorder_functions
|| !flag_profile_use
)
2604 ltrans_partitions
.qsort (flag_toplevel_reorder
2605 ? cmp_partitions_size
2606 : cmp_partitions_order
);
2608 for (i
= 0; i
< n_sets
; i
++)
2610 ltrans_partition part
= ltrans_partitions
[i
];
2612 /* Write all the nodes in SET. */
2613 sprintf (temp_filename
+ blen
, "%u.o", i
);
2616 fprintf (stderr
, " %s (%s %i insns)", temp_filename
, part
->name
, part
->insns
);
2617 if (symtab
->dump_file
)
2619 lto_symtab_encoder_iterator lsei
;
2621 fprintf (symtab
->dump_file
, "Writing partition %s to file %s, %i insns\n",
2622 part
->name
, temp_filename
, part
->insns
);
2623 fprintf (symtab
->dump_file
, " Symbols in partition: ");
2624 for (lsei
= lsei_start_in_partition (part
->encoder
); !lsei_end_p (lsei
);
2625 lsei_next_in_partition (&lsei
))
2627 symtab_node
*node
= lsei_node (lsei
);
2628 fprintf (symtab
->dump_file
, "%s ", node
->asm_name ());
2630 fprintf (symtab
->dump_file
, "\n Symbols in boundary: ");
2631 for (lsei
= lsei_start (part
->encoder
); !lsei_end_p (lsei
);
2634 symtab_node
*node
= lsei_node (lsei
);
2635 if (!lto_symtab_encoder_in_partition_p (part
->encoder
, node
))
2637 fprintf (symtab
->dump_file
, "%s ", node
->asm_name ());
2638 cgraph_node
*cnode
= dyn_cast
<cgraph_node
*> (node
);
2640 && lto_symtab_encoder_encode_body_p (part
->encoder
, cnode
))
2641 fprintf (symtab
->dump_file
, "(body included)");
2644 varpool_node
*vnode
= dyn_cast
<varpool_node
*> (node
);
2646 && lto_symtab_encoder_encode_initializer_p (part
->encoder
, vnode
))
2647 fprintf (symtab
->dump_file
, "(initializer included)");
2651 fprintf (symtab
->dump_file
, "\n");
2653 gcc_checking_assert (lto_symtab_encoder_size (part
->encoder
) || !i
);
2655 stream_out (temp_filename
, part
->encoder
, i
== n_sets
- 1);
2657 part
->encoder
= NULL
;
2659 temp_filenames
.safe_push (xstrdup (temp_filename
));
2661 ltrans_output_list_stream
= fopen (ltrans_output_list
, "w");
2662 if (ltrans_output_list_stream
== NULL
)
2663 fatal_error ("opening LTRANS output list %s: %m", ltrans_output_list
);
2664 for (i
= 0; i
< n_sets
; i
++)
2666 unsigned int len
= strlen (temp_filenames
[i
]);
2667 if (fwrite (temp_filenames
[i
], 1, len
, ltrans_output_list_stream
) < len
2668 || fwrite ("\n", 1, 1, ltrans_output_list_stream
) < 1)
2669 fatal_error ("writing to LTRANS output list %s: %m",
2670 ltrans_output_list
);
2671 free (temp_filenames
[i
]);
2673 temp_filenames
.release();
2675 lto_stats
.num_output_files
+= n_sets
;
2677 /* Close the LTRANS output list. */
2678 if (fclose (ltrans_output_list_stream
))
2679 fatal_error ("closing LTRANS output list %s: %m", ltrans_output_list
);
2681 free_ltrans_partitions();
2682 free (temp_filename
);
2684 timevar_pop (TV_WHOPR_WPA_IO
);
2688 /* If TT is a variable or function decl replace it with its
2689 prevailing variant. */
2690 #define LTO_SET_PREVAIL(tt) \
2692 if ((tt) && VAR_OR_FUNCTION_DECL_P (tt) \
2693 && (TREE_PUBLIC (tt) || DECL_EXTERNAL (tt))) \
2695 tt = lto_symtab_prevailing_decl (tt); \
2700 /* Ensure that TT isn't a replacable var of function decl. */
2701 #define LTO_NO_PREVAIL(tt) \
2702 gcc_assert (!(tt) || !VAR_OR_FUNCTION_DECL_P (tt))
2704 /* Given a tree T replace all fields referring to variables or functions
2705 with their prevailing variant. */
2707 lto_fixup_prevailing_decls (tree t
)
2709 enum tree_code code
= TREE_CODE (t
);
2712 gcc_checking_assert (code
!= TREE_BINFO
);
2713 LTO_NO_PREVAIL (TREE_TYPE (t
));
2714 if (CODE_CONTAINS_STRUCT (code
, TS_COMMON
))
2715 LTO_NO_PREVAIL (TREE_CHAIN (t
));
2718 LTO_NO_PREVAIL (DECL_NAME (t
));
2719 LTO_SET_PREVAIL (DECL_CONTEXT (t
));
2720 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_COMMON
))
2722 LTO_SET_PREVAIL (DECL_SIZE (t
));
2723 LTO_SET_PREVAIL (DECL_SIZE_UNIT (t
));
2724 LTO_SET_PREVAIL (DECL_INITIAL (t
));
2725 LTO_NO_PREVAIL (DECL_ATTRIBUTES (t
));
2726 LTO_SET_PREVAIL (DECL_ABSTRACT_ORIGIN (t
));
2728 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_WITH_VIS
))
2730 LTO_NO_PREVAIL (t
->decl_with_vis
.assembler_name
);
2732 if (CODE_CONTAINS_STRUCT (code
, TS_DECL_NON_COMMON
))
2734 LTO_NO_PREVAIL (DECL_RESULT_FLD (t
));
2736 if (CODE_CONTAINS_STRUCT (code
, TS_FUNCTION_DECL
))
2738 LTO_NO_PREVAIL (DECL_ARGUMENTS (t
));
2739 LTO_SET_PREVAIL (DECL_FUNCTION_PERSONALITY (t
));
2740 LTO_NO_PREVAIL (DECL_VINDEX (t
));
2742 if (CODE_CONTAINS_STRUCT (code
, TS_FIELD_DECL
))
2744 LTO_SET_PREVAIL (DECL_FIELD_OFFSET (t
));
2745 LTO_NO_PREVAIL (DECL_BIT_FIELD_TYPE (t
));
2746 LTO_NO_PREVAIL (DECL_QUALIFIER (t
));
2747 LTO_NO_PREVAIL (DECL_FIELD_BIT_OFFSET (t
));
2748 LTO_NO_PREVAIL (DECL_FCONTEXT (t
));
2751 else if (TYPE_P (t
))
2753 LTO_NO_PREVAIL (TYPE_CACHED_VALUES (t
));
2754 LTO_SET_PREVAIL (TYPE_SIZE (t
));
2755 LTO_SET_PREVAIL (TYPE_SIZE_UNIT (t
));
2756 LTO_NO_PREVAIL (TYPE_ATTRIBUTES (t
));
2757 LTO_NO_PREVAIL (TYPE_NAME (t
));
2759 LTO_SET_PREVAIL (TYPE_MINVAL (t
));
2760 LTO_SET_PREVAIL (TYPE_MAXVAL (t
));
2761 LTO_NO_PREVAIL (t
->type_non_common
.binfo
);
2763 LTO_SET_PREVAIL (TYPE_CONTEXT (t
));
2765 LTO_NO_PREVAIL (TYPE_CANONICAL (t
));
2766 LTO_NO_PREVAIL (TYPE_MAIN_VARIANT (t
));
2767 LTO_NO_PREVAIL (TYPE_NEXT_VARIANT (t
));
2769 else if (EXPR_P (t
))
2772 for (i
= TREE_OPERAND_LENGTH (t
) - 1; i
>= 0; --i
)
2773 LTO_SET_PREVAIL (TREE_OPERAND (t
, i
));
2775 else if (TREE_CODE (t
) == CONSTRUCTOR
)
2779 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (t
), i
, val
)
2780 LTO_SET_PREVAIL (val
);
2787 LTO_SET_PREVAIL (TREE_VALUE (t
));
2788 LTO_SET_PREVAIL (TREE_PURPOSE (t
));
2789 LTO_NO_PREVAIL (TREE_PURPOSE (t
));
2795 /* If we fixed nothing, then we missed something seen by
2797 gcc_checking_assert (fixed
);
2799 #undef LTO_SET_PREVAIL
2800 #undef LTO_NO_PREVAIL
2802 /* Helper function of lto_fixup_decls. Walks the var and fn streams in STATE,
2803 replaces var and function decls with the corresponding prevailing def. */
2806 lto_fixup_state (struct lto_in_decl_state
*state
)
2809 struct lto_tree_ref_table
*table
;
2811 /* Although we only want to replace FUNCTION_DECLs and VAR_DECLs,
2812 we still need to walk from all DECLs to find the reachable
2813 FUNCTION_DECLs and VAR_DECLs. */
2814 for (si
= 0; si
< LTO_N_DECL_STREAMS
; si
++)
2816 table
= &state
->streams
[si
];
2817 for (i
= 0; i
< table
->size
; i
++)
2819 tree
*tp
= table
->trees
+ i
;
2820 if (VAR_OR_FUNCTION_DECL_P (*tp
)
2821 && (TREE_PUBLIC (*tp
) || DECL_EXTERNAL (*tp
)))
2822 *tp
= lto_symtab_prevailing_decl (*tp
);
2827 /* A callback of htab_traverse. Just extracts a state from SLOT
2828 and calls lto_fixup_state. */
2831 lto_fixup_state_aux (void **slot
, void *aux ATTRIBUTE_UNUSED
)
2833 struct lto_in_decl_state
*state
= (struct lto_in_decl_state
*) *slot
;
2834 lto_fixup_state (state
);
2838 /* Fix the decls from all FILES. Replaces each decl with the corresponding
2842 lto_fixup_decls (struct lto_file_decl_data
**files
)
2848 FOR_EACH_VEC_ELT ((*tree_with_vars
), i
, t
)
2849 lto_fixup_prevailing_decls (t
);
2851 for (i
= 0; files
[i
]; i
++)
2853 struct lto_file_decl_data
*file
= files
[i
];
2854 struct lto_in_decl_state
*state
= file
->global_decl_state
;
2855 lto_fixup_state (state
);
2857 htab_traverse (file
->function_decl_states
, lto_fixup_state_aux
, NULL
);
2861 static GTY((length ("lto_stats.num_input_files + 1"))) struct lto_file_decl_data
**all_file_decl_data
;
2863 /* Turn file datas for sub files into a single array, so that they look
2864 like separate files for further passes. */
2867 lto_flatten_files (struct lto_file_decl_data
**orig
, int count
, int last_file_ix
)
2869 struct lto_file_decl_data
*n
, *next
;
2872 lto_stats
.num_input_files
= count
;
2874 = ggc_cleared_vec_alloc
<lto_file_decl_data_ptr
> (count
+ 1);
2875 /* Set the hooks so that all of the ipa passes can read in their data. */
2876 lto_set_in_hooks (all_file_decl_data
, get_section_data
, free_section_data
);
2877 for (i
= 0, k
= 0; i
< last_file_ix
; i
++)
2879 for (n
= orig
[i
]; n
!= NULL
; n
= next
)
2881 all_file_decl_data
[k
++] = n
;
2886 all_file_decl_data
[k
] = NULL
;
2887 gcc_assert (k
== count
);
2890 /* Input file data before flattening (i.e. splitting them to subfiles to support
2891 incremental linking. */
2892 static int real_file_count
;
2893 static GTY((length ("real_file_count + 1"))) struct lto_file_decl_data
**real_file_decl_data
;
2895 static void print_lto_report_1 (void);
2897 /* Read all the symbols from the input files FNAMES. NFILES is the
2898 number of files requested in the command line. Instantiate a
2899 global call graph by aggregating all the sub-graphs found in each
2903 read_cgraph_and_symbols (unsigned nfiles
, const char **fnames
)
2905 unsigned int i
, last_file_ix
;
2908 struct lto_file_decl_data
**decl_data
;
2911 symtab
->initialize ();
2913 timevar_push (TV_IPA_LTO_DECL_IN
);
2916 = decl_data
= ggc_cleared_vec_alloc
<lto_file_decl_data_ptr
> (nfiles
+ 1);
2917 real_file_count
= nfiles
;
2919 /* Read the resolution file. */
2921 if (resolution_file_name
)
2924 unsigned num_objects
;
2926 resolution
= fopen (resolution_file_name
, "r");
2927 if (resolution
== NULL
)
2928 fatal_error ("could not open symbol resolution file: %m");
2930 t
= fscanf (resolution
, "%u", &num_objects
);
2931 gcc_assert (t
== 1);
2933 /* True, since the plugin splits the archives. */
2934 gcc_assert (num_objects
== nfiles
);
2936 symtab
->state
= LTO_STREAMING
;
2938 canonical_type_hash_cache
= new hash_map
<const_tree
, hashval_t
> (251);
2939 gimple_canonical_types
= htab_create_ggc (16381, gimple_canonical_type_hash
,
2940 gimple_canonical_type_eq
, 0);
2941 gcc_obstack_init (&tree_scc_hash_obstack
);
2942 tree_scc_hash
= new hash_table
<tree_scc_hasher
> (4096);
2944 /* Register the common node types with the canonical type machinery so
2945 we properly share alias-sets across languages and TUs. Do not
2946 expose the common nodes as type merge target - those that should be
2947 are already exposed so by pre-loading the LTO streamer caches.
2948 Do two passes - first clear TYPE_CANONICAL and then re-compute it. */
2949 for (i
= 0; i
< itk_none
; ++i
)
2950 lto_register_canonical_types (integer_types
[i
], true);
2951 for (i
= 0; i
< stk_type_kind_last
; ++i
)
2952 lto_register_canonical_types (sizetype_tab
[i
], true);
2953 for (i
= 0; i
< TI_MAX
; ++i
)
2954 lto_register_canonical_types (global_trees
[i
], true);
2955 for (i
= 0; i
< itk_none
; ++i
)
2956 lto_register_canonical_types (integer_types
[i
], false);
2957 for (i
= 0; i
< stk_type_kind_last
; ++i
)
2958 lto_register_canonical_types (sizetype_tab
[i
], false);
2959 for (i
= 0; i
< TI_MAX
; ++i
)
2960 lto_register_canonical_types (global_trees
[i
], false);
2963 fprintf (stderr
, "Reading object files:");
2965 /* Read all of the object files specified on the command line. */
2966 for (i
= 0, last_file_ix
= 0; i
< nfiles
; ++i
)
2968 struct lto_file_decl_data
*file_data
= NULL
;
2971 fprintf (stderr
, " %s", fnames
[i
]);
2975 current_lto_file
= lto_obj_file_open (fnames
[i
], false);
2976 if (!current_lto_file
)
2979 file_data
= lto_file_read (current_lto_file
, resolution
, &count
);
2982 lto_obj_file_close (current_lto_file
);
2983 free (current_lto_file
);
2984 current_lto_file
= NULL
;
2988 decl_data
[last_file_ix
++] = file_data
;
2990 lto_obj_file_close (current_lto_file
);
2991 free (current_lto_file
);
2992 current_lto_file
= NULL
;
2995 lto_flatten_files (decl_data
, count
, last_file_ix
);
2996 lto_stats
.num_input_files
= count
;
2997 ggc_free(decl_data
);
2998 real_file_decl_data
= NULL
;
3000 if (resolution_file_name
)
3001 fclose (resolution
);
3003 /* Show the LTO report before launching LTRANS. */
3004 if (flag_lto_report
|| (flag_wpa
&& flag_lto_report_wpa
))
3005 print_lto_report_1 ();
3007 /* Free gimple type merging datastructures. */
3008 delete tree_scc_hash
;
3009 tree_scc_hash
= NULL
;
3010 obstack_free (&tree_scc_hash_obstack
, NULL
);
3011 htab_delete (gimple_canonical_types
);
3012 gimple_canonical_types
= NULL
;
3013 delete canonical_type_hash_cache
;
3014 canonical_type_hash_cache
= NULL
;
3016 /* At this stage we know that majority of GGC memory is reachable.
3017 Growing the limits prevents unnecesary invocation of GGC. */
3021 /* Set the hooks so that all of the ipa passes can read in their data. */
3022 lto_set_in_hooks (all_file_decl_data
, get_section_data
, free_section_data
);
3024 timevar_pop (TV_IPA_LTO_DECL_IN
);
3027 fprintf (stderr
, "\nReading the callgraph\n");
3029 timevar_push (TV_IPA_LTO_CGRAPH_IO
);
3030 /* Read the symtab. */
3033 /* Store resolutions into the symbol table. */
3035 ld_plugin_symbol_resolution_t
*res
;
3036 FOR_EACH_SYMBOL (snode
)
3037 if (snode
->real_symbol_p ()
3038 && snode
->lto_file_data
3039 && snode
->lto_file_data
->resolution_map
3040 && (res
= snode
->lto_file_data
->resolution_map
->get (snode
->decl
)))
3041 snode
->resolution
= *res
;
3042 for (i
= 0; all_file_decl_data
[i
]; i
++)
3043 if (all_file_decl_data
[i
]->resolution_map
)
3045 delete all_file_decl_data
[i
]->resolution_map
;
3046 all_file_decl_data
[i
]->resolution_map
= NULL
;
3049 timevar_pop (TV_IPA_LTO_CGRAPH_IO
);
3052 fprintf (stderr
, "Merging declarations\n");
3054 timevar_push (TV_IPA_LTO_DECL_MERGE
);
3055 /* Merge global decls. In ltrans mode we read merged cgraph, we do not
3056 need to care about resolving symbols again, we only need to replace
3057 duplicated declarations read from the callgraph and from function
3061 lto_symtab_merge_decls ();
3063 /* If there were errors during symbol merging bail out, we have no
3064 good way to recover here. */
3066 fatal_error ("errors during merging of translation units");
3068 /* Fixup all decls. */
3069 lto_fixup_decls (all_file_decl_data
);
3072 ggc_free (tree_with_vars
);
3073 tree_with_vars
= NULL
;
3076 timevar_pop (TV_IPA_LTO_DECL_MERGE
);
3077 /* Each pass will set the appropriate timer. */
3080 fprintf (stderr
, "Reading summaries\n");
3082 /* Read the IPA summary data. */
3084 ipa_read_optimization_summaries ();
3086 ipa_read_summaries ();
3088 for (i
= 0; all_file_decl_data
[i
]; i
++)
3090 gcc_assert (all_file_decl_data
[i
]->symtab_node_encoder
);
3091 lto_symtab_encoder_delete (all_file_decl_data
[i
]->symtab_node_encoder
);
3092 all_file_decl_data
[i
]->symtab_node_encoder
= NULL
;
3093 lto_free_function_in_decl_state (all_file_decl_data
[i
]->global_decl_state
);
3094 all_file_decl_data
[i
]->global_decl_state
= NULL
;
3095 all_file_decl_data
[i
]->current_decl_state
= NULL
;
3098 /* Finally merge the cgraph according to the decl merging decisions. */
3099 timevar_push (TV_IPA_LTO_CGRAPH_MERGE
);
3100 if (symtab
->dump_file
)
3102 fprintf (symtab
->dump_file
, "Before merging:\n");
3103 symtab_node::dump_table (symtab
->dump_file
);
3105 lto_symtab_merge_symbols ();
3106 /* Removal of unreachable symbols is needed to make verify_symtab to pass;
3107 we are still having duplicated comdat groups containing local statics.
3108 We could also just remove them while merging. */
3109 symtab
->remove_unreachable_nodes (true, dump_file
);
3111 symtab
->state
= IPA_SSA
;
3113 timevar_pop (TV_IPA_LTO_CGRAPH_MERGE
);
3115 /* Indicate that the cgraph is built and ready. */
3116 symtab
->function_flags_ready
= true;
3118 ggc_free (all_file_decl_data
);
3119 all_file_decl_data
= NULL
;
3123 /* Materialize all the bodies for all the nodes in the callgraph. */
3126 materialize_cgraph (void)
3128 struct cgraph_node
*node
;
3129 timevar_id_t lto_timer
;
3133 flag_wpa
? "Materializing decls:" : "Reading function bodies:");
3136 FOR_EACH_FUNCTION (node
)
3138 if (node
->lto_file_data
)
3140 lto_materialize_function (node
);
3141 lto_stats
.num_input_cgraph_nodes
++;
3146 /* Start the appropriate timer depending on the mode that we are
3148 lto_timer
= (flag_wpa
) ? TV_WHOPR_WPA
3149 : (flag_ltrans
) ? TV_WHOPR_LTRANS
3151 timevar_push (lto_timer
);
3153 current_function_decl
= NULL
;
3157 fprintf (stderr
, "\n");
3159 timevar_pop (lto_timer
);
3163 /* Show various memory usage statistics related to LTO. */
3165 print_lto_report_1 (void)
3167 const char *pfx
= (flag_lto
) ? "LTO" : (flag_wpa
) ? "WPA" : "LTRANS";
3168 fprintf (stderr
, "%s statistics\n", pfx
);
3170 fprintf (stderr
, "[%s] read %lu SCCs of average size %f\n",
3171 pfx
, num_sccs_read
, total_scc_size
/ (double)num_sccs_read
);
3172 fprintf (stderr
, "[%s] %lu tree bodies read in total\n", pfx
, total_scc_size
);
3173 if (flag_wpa
&& tree_scc_hash
)
3175 fprintf (stderr
, "[%s] tree SCC table: size %ld, %ld elements, "
3176 "collision ratio: %f\n", pfx
,
3177 (long) tree_scc_hash
->size (),
3178 (long) tree_scc_hash
->elements (),
3179 tree_scc_hash
->collisions ());
3180 hash_table
<tree_scc_hasher
>::iterator hiter
;
3181 tree_scc
*scc
, *max_scc
= NULL
;
3182 unsigned max_length
= 0;
3183 FOR_EACH_HASH_TABLE_ELEMENT (*tree_scc_hash
, scc
, x
, hiter
)
3185 unsigned length
= 0;
3187 for (; s
; s
= s
->next
)
3189 if (length
> max_length
)
3191 max_length
= length
;
3195 fprintf (stderr
, "[%s] tree SCC max chain length %u (size %u)\n",
3196 pfx
, max_length
, max_scc
->len
);
3197 fprintf (stderr
, "[%s] Compared %lu SCCs, %lu collisions (%f)\n", pfx
,
3198 num_scc_compares
, num_scc_compare_collisions
,
3199 num_scc_compare_collisions
/ (double) num_scc_compares
);
3200 fprintf (stderr
, "[%s] Merged %lu SCCs\n", pfx
, num_sccs_merged
);
3201 fprintf (stderr
, "[%s] Merged %lu tree bodies\n", pfx
,
3202 total_scc_size_merged
);
3203 fprintf (stderr
, "[%s] Merged %lu types\n", pfx
, num_merged_types
);
3204 fprintf (stderr
, "[%s] %lu types prevailed (%lu associated trees)\n",
3205 pfx
, num_prevailing_types
, num_type_scc_trees
);
3206 fprintf (stderr
, "[%s] GIMPLE canonical type table: size %ld, "
3207 "%ld elements, %ld searches, %ld collisions (ratio: %f)\n", pfx
,
3208 (long) htab_size (gimple_canonical_types
),
3209 (long) htab_elements (gimple_canonical_types
),
3210 (long) gimple_canonical_types
->searches
,
3211 (long) gimple_canonical_types
->collisions
,
3212 htab_collisions (gimple_canonical_types
));
3213 fprintf (stderr
, "[%s] GIMPLE canonical type pointer-map: "
3214 "%lu elements, %ld searches\n", pfx
,
3215 num_canonical_type_hash_entries
,
3216 num_canonical_type_hash_queries
);
3219 print_lto_report (pfx
);
3222 /* Perform whole program analysis (WPA) on the callgraph and write out the
3223 optimization plan. */
3226 do_whole_program_analysis (void)
3230 lto_parallelism
= 1;
3232 /* TODO: jobserver communicatoin is not supported, yet. */
3233 if (!strcmp (flag_wpa
, "jobserver"))
3234 lto_parallelism
= -1;
3237 lto_parallelism
= atoi (flag_wpa
);
3238 if (lto_parallelism
<= 0)
3239 lto_parallelism
= 0;
3242 timevar_start (TV_PHASE_OPT_GEN
);
3244 /* Note that since we are in WPA mode, materialize_cgraph will not
3245 actually read in all the function bodies. It only materializes
3246 the decls and cgraph nodes so that analysis can be performed. */
3247 materialize_cgraph ();
3249 /* Reading in the cgraph uses different timers, start timing WPA now. */
3250 timevar_push (TV_WHOPR_WPA
);
3252 if (pre_ipa_mem_report
)
3254 fprintf (stderr
, "Memory consumption before IPA\n");
3255 dump_memory_report (false);
3258 symtab
->function_flags_ready
= true;
3260 if (symtab
->dump_file
)
3261 symtab_node::dump_table (symtab
->dump_file
);
3262 bitmap_obstack_initialize (NULL
);
3263 symtab
->state
= IPA_SSA
;
3265 execute_ipa_pass_list (g
->get_passes ()->all_regular_ipa_passes
);
3266 symtab
->remove_unreachable_nodes (false, dump_file
);
3268 if (symtab
->dump_file
)
3270 fprintf (symtab
->dump_file
, "Optimized ");
3271 symtab_node::dump_table (symtab
->dump_file
);
3273 #ifdef ENABLE_CHECKING
3274 symtab_node::verify_symtab_nodes ();
3276 bitmap_obstack_release (NULL
);
3278 /* We are about to launch the final LTRANS phase, stop the WPA timer. */
3279 timevar_pop (TV_WHOPR_WPA
);
3281 timevar_push (TV_WHOPR_PARTITIONING
);
3282 if (flag_lto_partition
== LTO_PARTITION_1TO1
)
3284 else if (flag_lto_partition
== LTO_PARTITION_MAX
)
3286 else if (flag_lto_partition
== LTO_PARTITION_ONE
)
3287 lto_balanced_map (1);
3288 else if (flag_lto_partition
== LTO_PARTITION_BALANCED
)
3289 lto_balanced_map (PARAM_VALUE (PARAM_LTO_PARTITIONS
));
3293 /* Inline summaries are needed for balanced partitioning. Free them now so
3294 the memory can be used for streamer caches. */
3295 inline_free_summary ();
3297 /* AUX pointers are used by partitioning code to bookkeep number of
3298 partitions symbol is in. This is no longer needed. */
3299 FOR_EACH_SYMBOL (node
)
3302 lto_stats
.num_cgraph_partitions
+= ltrans_partitions
.length ();
3304 /* Find out statics that need to be promoted
3305 to globals with hidden visibility because they are accessed from multiple
3307 lto_promote_cross_file_statics ();
3308 timevar_pop (TV_WHOPR_PARTITIONING
);
3310 timevar_stop (TV_PHASE_OPT_GEN
);
3312 /* Collect a last time - in lto_wpa_write_files we may end up forking
3313 with the idea that this doesn't increase memory usage. So we
3314 absoultely do not want to collect after that. */
3317 timevar_start (TV_PHASE_STREAM_OUT
);
3320 fprintf (stderr
, "\nStreaming out");
3323 lto_wpa_write_files ();
3325 fprintf (stderr
, "\n");
3326 timevar_stop (TV_PHASE_STREAM_OUT
);
3328 if (post_ipa_mem_report
)
3330 fprintf (stderr
, "Memory consumption after IPA\n");
3331 dump_memory_report (false);
3334 /* Show the LTO report before launching LTRANS. */
3335 if (flag_lto_report
|| (flag_wpa
&& flag_lto_report_wpa
))
3336 print_lto_report_1 ();
3338 dump_memory_report (true);
3342 static GTY(()) tree lto_eh_personality_decl
;
3344 /* Return the LTO personality function decl. */
3347 lto_eh_personality (void)
3349 if (!lto_eh_personality_decl
)
3351 /* Use the first personality DECL for our personality if we don't
3352 support multiple ones. This ensures that we don't artificially
3353 create the need for them in a single-language program. */
3354 if (first_personality_decl
&& !dwarf2out_do_cfi_asm ())
3355 lto_eh_personality_decl
= first_personality_decl
;
3357 lto_eh_personality_decl
= lhd_gcc_personality ();
3360 return lto_eh_personality_decl
;
3363 /* Set the process name based on the LTO mode. */
3366 lto_process_name (void)
3369 setproctitle ("lto1-lto");
3371 setproctitle ("lto1-wpa");
3373 setproctitle ("lto1-ltrans");
3377 /* Initialize the LTO front end. */
3382 lto_process_name ();
3383 lto_streamer_hooks_init ();
3385 lto_set_in_hooks (NULL
, get_section_data
, free_section_data
);
3386 memset (<o_stats
, 0, sizeof (lto_stats
));
3387 bitmap_obstack_initialize (NULL
);
3388 gimple_register_cfg_hooks ();
3392 /* Main entry point for the GIMPLE front end. This front end has
3393 three main personalities:
3395 - LTO (-flto). All the object files on the command line are
3396 loaded in memory and processed as a single translation unit.
3397 This is the traditional link-time optimization behavior.
3399 - WPA (-fwpa). Only the callgraph and summary information for
3400 files in the command file are loaded. A single callgraph
3401 (without function bodies) is instantiated for the whole set of
3402 files. IPA passes are only allowed to analyze the call graph
3403 and make transformation decisions. The callgraph is
3404 partitioned, each partition is written to a new object file
3405 together with the transformation decisions.
3407 - LTRANS (-fltrans). Similar to -flto but it prevents the IPA
3408 summary files from running again. Since WPA computed summary
3409 information and decided what transformations to apply, LTRANS
3410 simply applies them. */
3415 /* LTO is called as a front end, even though it is not a front end.
3416 Because it is called as a front end, TV_PHASE_PARSING and
3417 TV_PARSE_GLOBAL are active, and we need to turn them off while
3418 doing LTO. Later we turn them back on so they are active up in
3420 timevar_pop (TV_PARSE_GLOBAL
);
3421 timevar_stop (TV_PHASE_PARSING
);
3423 timevar_start (TV_PHASE_SETUP
);
3425 /* Initialize the LTO front end. */
3428 timevar_stop (TV_PHASE_SETUP
);
3429 timevar_start (TV_PHASE_STREAM_IN
);
3431 /* Read all the symbols and call graph from all the files in the
3433 read_cgraph_and_symbols (num_in_fnames
, in_fnames
);
3435 timevar_stop (TV_PHASE_STREAM_IN
);
3439 /* If WPA is enabled analyze the whole call graph and create an
3440 optimization plan. Otherwise, read in all the function
3441 bodies and continue with optimization. */
3443 do_whole_program_analysis ();
3446 timevar_start (TV_PHASE_OPT_GEN
);
3448 materialize_cgraph ();
3450 lto_promote_statics_nonwpa ();
3452 /* Let the middle end know that we have read and merged all of
3456 timevar_stop (TV_PHASE_OPT_GEN
);
3458 /* FIXME lto, if the processes spawned by WPA fail, we miss
3459 the chance to print WPA's report, so WPA will call
3460 print_lto_report before launching LTRANS. If LTRANS was
3461 launched directly by the driver we would not need to do
3463 if (flag_lto_report
|| (flag_wpa
&& flag_lto_report_wpa
))
3464 print_lto_report_1 ();
3468 /* Here we make LTO pretend to be a parser. */
3469 timevar_start (TV_PHASE_PARSING
);
3470 timevar_push (TV_PARSE_GLOBAL
);
3473 #include "gt-lto-lto.h"