1 /* Analysis of polymorphic call context.
2 Copyright (C) 2013-2015 Free Software Foundation, Inc.
3 Contributed by Jan Hubicka
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"
28 #include "double-int.h"
35 #include "fold-const.h"
36 #include "print-tree.h"
39 #include "hard-reg-set.h"
43 #include "statistics.h"
45 #include "fixed-value.h"
46 #include "insn-config.h"
54 #include "tree-pass.h"
56 #include "tree-pretty-print.h"
58 #include "basic-block.h"
61 #include "plugin-api.h"
64 #include "ipa-utils.h"
65 #include "tree-ssa-alias.h"
66 #include "internal-fn.h"
67 #include "gimple-fold.h"
68 #include "gimple-expr.h"
70 #include "alloc-pool.h"
71 #include "symbol-summary.h"
73 #include "ipa-inline.h"
74 #include "diagnostic.h"
78 #include "gimple-pretty-print.h"
79 #include "stor-layout.h"
81 #include "data-streamer.h"
82 #include "lto-streamer.h"
83 #include "streamer-hooks.h"
84 #include "tree-ssa-operands.h"
85 #include "tree-into-ssa.h"
87 /* Return true when TYPE contains an polymorphic type and thus is interesting
88 for devirtualization machinery. */
90 static bool contains_type_p (tree
, HOST_WIDE_INT
, tree
,
91 bool consider_placement_new
= true,
92 bool consider_bases
= true);
95 contains_polymorphic_type_p (const_tree type
)
97 type
= TYPE_MAIN_VARIANT (type
);
99 if (RECORD_OR_UNION_TYPE_P (type
))
101 if (TYPE_BINFO (type
)
102 && polymorphic_type_binfo_p (TYPE_BINFO (type
)))
104 for (tree fld
= TYPE_FIELDS (type
); fld
; fld
= DECL_CHAIN (fld
))
105 if (TREE_CODE (fld
) == FIELD_DECL
106 && !DECL_ARTIFICIAL (fld
)
107 && contains_polymorphic_type_p (TREE_TYPE (fld
)))
111 if (TREE_CODE (type
) == ARRAY_TYPE
)
112 return contains_polymorphic_type_p (TREE_TYPE (type
));
116 /* Return true if it seems valid to use placement new to build EXPECTED_TYPE
117 at possition CUR_OFFSET within TYPE.
119 POD can be changed to an instance of a polymorphic type by
120 placement new. Here we play safe and assume that any
121 non-polymorphic type is POD. */
123 possible_placement_new (tree type
, tree expected_type
,
124 HOST_WIDE_INT cur_offset
)
126 return ((TREE_CODE (type
) != RECORD_TYPE
127 || !TYPE_BINFO (type
)
128 || cur_offset
>= POINTER_SIZE
129 || !polymorphic_type_binfo_p (TYPE_BINFO (type
)))
130 && (!TYPE_SIZE (type
)
131 || !tree_fits_shwi_p (TYPE_SIZE (type
))
133 + (expected_type
? tree_to_uhwi (TYPE_SIZE (expected_type
))
135 <= tree_to_uhwi (TYPE_SIZE (type
)))));
138 /* THIS->OUTER_TYPE is a type of memory object where object of OTR_TYPE
139 is contained at THIS->OFFSET. Walk the memory representation of
140 THIS->OUTER_TYPE and find the outermost class type that match
141 OTR_TYPE or contain OTR_TYPE as a base. Update THIS
144 If OTR_TYPE is NULL, just find outermost polymorphic type with
145 virtual table present at possition OFFSET.
147 For example when THIS represents type
153 and we look for type at offset sizeof(int), we end up with B and offset 0.
154 If the same is produced by multiple inheritance, we end up with A and offset
157 If we can not find corresponding class, give up by setting
158 THIS->OUTER_TYPE to OTR_TYPE and THIS->OFFSET to NULL.
159 Return true when lookup was sucesful.
161 When CONSIDER_PLACEMENT_NEW is false, reject contexts that may be made
162 valid only via alocation of new polymorphic type inside by means
165 When CONSIDER_BASES is false, only look for actual fields, not base types
169 ipa_polymorphic_call_context::restrict_to_inner_class (tree otr_type
,
170 bool consider_placement_new
,
173 tree type
= outer_type
;
174 HOST_WIDE_INT cur_offset
= offset
;
175 bool speculative
= false;
176 bool size_unknown
= false;
177 unsigned HOST_WIDE_INT otr_type_size
= POINTER_SIZE
;
179 /* Update OUTER_TYPE to match EXPECTED_TYPE if it is not set. */
182 clear_outer_type (otr_type
);
186 /* See if OFFSET points inside OUTER_TYPE. If it does not, we know
187 that the context is either invalid, or the instance type must be
188 derived from OUTER_TYPE.
190 Because the instance type may contain field whose type is of OUTER_TYPE,
191 we can not derive any effective information about it.
193 TODO: In the case we know all derrived types, we can definitely do better
195 else if (TYPE_SIZE (outer_type
)
196 && tree_fits_shwi_p (TYPE_SIZE (outer_type
))
197 && tree_to_shwi (TYPE_SIZE (outer_type
)) >= 0
198 && tree_to_shwi (TYPE_SIZE (outer_type
)) <= offset
)
200 clear_outer_type (otr_type
);
204 /* If derived type is not allowed, we know that the context is invalid.
205 For dynamic types, we really do not have information about
206 size of the memory location. It is possible that completely
207 different type is stored after outer_type. */
208 if (!maybe_derived_type
&& !dynamic
)
210 clear_speculation ();
216 if (otr_type
&& TYPE_SIZE (otr_type
)
217 && tree_fits_shwi_p (TYPE_SIZE (otr_type
)))
218 otr_type_size
= tree_to_uhwi (TYPE_SIZE (otr_type
));
220 if (!type
|| offset
< 0)
221 goto no_useful_type_info
;
223 /* Find the sub-object the constant actually refers to and mark whether it is
224 an artificial one (as opposed to a user-defined one).
226 This loop is performed twice; first time for outer_type and second time
227 for speculative_outer_type. The second run has SPECULATIVE set. */
230 unsigned HOST_WIDE_INT pos
, size
;
233 /* If we do not know size of TYPE, we need to be more conservative
234 about accepting cases where we can not find EXPECTED_TYPE.
235 Generally the types that do matter here are of constant size.
236 Size_unknown case should be very rare. */
238 && tree_fits_shwi_p (TYPE_SIZE (type
))
239 && tree_to_shwi (TYPE_SIZE (type
)) >= 0)
240 size_unknown
= false;
244 /* On a match, just return what we found. */
246 && types_odr_comparable (type
, otr_type
)
247 && types_same_for_odr (type
, otr_type
))
249 && TREE_CODE (type
) == RECORD_TYPE
251 && polymorphic_type_binfo_p (TYPE_BINFO (type
))))
255 /* If we did not match the offset, just give up on speculation. */
257 /* Also check if speculation did not end up being same as
259 || (types_must_be_same_for_odr (speculative_outer_type
,
261 && (maybe_derived_type
262 == speculative_maybe_derived_type
)))
263 clear_speculation ();
268 /* If type is known to be final, do not worry about derived
269 types. Testing it here may help us to avoid speculation. */
270 if (otr_type
&& TREE_CODE (outer_type
) == RECORD_TYPE
271 && (!in_lto_p
|| odr_type_p (outer_type
))
272 && type_known_to_have_no_deriavations_p (outer_type
))
273 maybe_derived_type
= false;
275 /* Type can not contain itself on an non-zero offset. In that case
276 just give up. Still accept the case where size is now known.
277 Either the second copy may appear past the end of type or within
278 the non-POD buffer located inside the variably sized type
281 goto no_useful_type_info
;
282 /* If we determined type precisely or we have no clue on
283 speuclation, we are done. */
284 if (!maybe_derived_type
|| !speculative_outer_type
285 || !speculation_consistent_p (speculative_outer_type
,
287 speculative_maybe_derived_type
,
290 clear_speculation ();
293 /* Otherwise look into speculation now. */
297 type
= speculative_outer_type
;
298 cur_offset
= speculative_offset
;
304 /* Walk fields and find corresponding on at OFFSET. */
305 if (TREE_CODE (type
) == RECORD_TYPE
)
307 for (fld
= TYPE_FIELDS (type
); fld
; fld
= DECL_CHAIN (fld
))
309 if (TREE_CODE (fld
) != FIELD_DECL
)
312 pos
= int_bit_position (fld
);
313 if (pos
> (unsigned HOST_WIDE_INT
)cur_offset
)
316 /* Do not consider vptr itself. Not even for placement new. */
317 if (!pos
&& DECL_ARTIFICIAL (fld
)
318 && POINTER_TYPE_P (TREE_TYPE (fld
))
320 && polymorphic_type_binfo_p (TYPE_BINFO (type
)))
323 if (!DECL_SIZE (fld
) || !tree_fits_uhwi_p (DECL_SIZE (fld
)))
324 goto no_useful_type_info
;
325 size
= tree_to_uhwi (DECL_SIZE (fld
));
327 /* We can always skip types smaller than pointer size:
328 those can not contain a virtual table pointer.
330 Disqualifying fields that are too small to fit OTR_TYPE
331 saves work needed to walk them for no benefit.
332 Because of the way the bases are packed into a class, the
333 field's size may be smaller than type size, so it needs
334 to be done with a care. */
336 if (pos
<= (unsigned HOST_WIDE_INT
)cur_offset
337 && (pos
+ size
) >= (unsigned HOST_WIDE_INT
)cur_offset
340 || !TYPE_SIZE (TREE_TYPE (fld
))
341 || !tree_fits_shwi_p (TYPE_SIZE (TREE_TYPE (fld
)))
342 || (pos
+ tree_to_uhwi (TYPE_SIZE (TREE_TYPE (fld
))))
343 >= cur_offset
+ otr_type_size
))
348 goto no_useful_type_info
;
350 type
= TYPE_MAIN_VARIANT (TREE_TYPE (fld
));
352 /* DECL_ARTIFICIAL represents a basetype. */
353 if (!DECL_ARTIFICIAL (fld
))
359 /* As soon as we se an field containing the type,
360 we know we are not looking for derivations. */
361 maybe_derived_type
= false;
365 speculative_outer_type
= type
;
366 speculative_offset
= cur_offset
;
367 speculative_maybe_derived_type
= false;
370 else if (!consider_bases
)
371 goto no_useful_type_info
;
373 else if (TREE_CODE (type
) == ARRAY_TYPE
)
375 tree subtype
= TYPE_MAIN_VARIANT (TREE_TYPE (type
));
377 /* Give up if we don't know array field size.
378 Also give up on non-polymorphic types as they are used
379 as buffers for placement new. */
380 if (!TYPE_SIZE (subtype
)
381 || !tree_fits_shwi_p (TYPE_SIZE (subtype
))
382 || tree_to_shwi (TYPE_SIZE (subtype
)) <= 0
383 || !contains_polymorphic_type_p (subtype
))
384 goto no_useful_type_info
;
386 HOST_WIDE_INT new_offset
= cur_offset
% tree_to_shwi (TYPE_SIZE (subtype
));
388 /* We may see buffer for placement new. In this case the expected type
389 can be bigger than the subtype. */
390 if (TYPE_SIZE (subtype
)
391 && (cur_offset
+ otr_type_size
392 > tree_to_uhwi (TYPE_SIZE (subtype
))))
393 goto no_useful_type_info
;
395 cur_offset
= new_offset
;
401 maybe_derived_type
= false;
405 speculative_outer_type
= type
;
406 speculative_offset
= cur_offset
;
407 speculative_maybe_derived_type
= false;
410 /* Give up on anything else. */
414 if (maybe_derived_type
&& !speculative
415 && TREE_CODE (outer_type
) == RECORD_TYPE
416 && TREE_CODE (otr_type
) == RECORD_TYPE
417 && TYPE_BINFO (otr_type
)
419 && get_binfo_at_offset (TYPE_BINFO (otr_type
), 0, outer_type
))
421 clear_outer_type (otr_type
);
422 if (!speculative_outer_type
423 || !speculation_consistent_p (speculative_outer_type
,
425 speculative_maybe_derived_type
,
427 clear_speculation ();
428 if (speculative_outer_type
)
431 type
= speculative_outer_type
;
432 cur_offset
= speculative_offset
;
437 /* We found no way to embedd EXPECTED_TYPE in TYPE.
438 We still permit two special cases - placement new and
439 the case of variadic types containing themselves. */
441 && consider_placement_new
442 && (size_unknown
|| !type
|| maybe_derived_type
443 || possible_placement_new (type
, otr_type
, cur_offset
)))
445 /* In these weird cases we want to accept the context.
446 In non-speculative run we have no useful outer_type info
447 (TODO: we may eventually want to record upper bound on the
448 type size that can be used to prune the walk),
449 but we still want to consider speculation that may
453 clear_outer_type (otr_type
);
454 if (!speculative_outer_type
455 || !speculation_consistent_p (speculative_outer_type
,
457 speculative_maybe_derived_type
,
459 clear_speculation ();
460 if (speculative_outer_type
)
463 type
= speculative_outer_type
;
464 cur_offset
= speculative_offset
;
470 clear_speculation ();
475 clear_speculation ();
478 clear_outer_type (otr_type
);
486 /* Return true if OUTER_TYPE contains OTR_TYPE at OFFSET.
487 CONSIDER_PLACEMENT_NEW makes function to accept cases where OTR_TYPE can
488 be built within OUTER_TYPE by means of placement new. CONSIDER_BASES makes
489 function to accept cases where OTR_TYPE appears as base of OUTER_TYPE or as
490 base of one of fields of OUTER_TYPE. */
493 contains_type_p (tree outer_type
, HOST_WIDE_INT offset
,
495 bool consider_placement_new
,
498 ipa_polymorphic_call_context context
;
500 /* Check that type is within range. */
503 if (TYPE_SIZE (outer_type
) && TYPE_SIZE (otr_type
)
504 && TREE_CODE (outer_type
) == INTEGER_CST
505 && TREE_CODE (otr_type
) == INTEGER_CST
506 && wi::ltu_p (wi::to_offset (outer_type
), (wi::to_offset (otr_type
) + offset
)))
509 context
.offset
= offset
;
510 context
.outer_type
= TYPE_MAIN_VARIANT (outer_type
);
511 context
.maybe_derived_type
= false;
512 return context
.restrict_to_inner_class (otr_type
, consider_placement_new
, consider_bases
);
516 /* We know that the instance is stored in variable or parameter
517 (not dynamically allocated) and we want to disprove the fact
518 that it may be in construction at invocation of CALL.
520 BASE represents memory location where instance is stored.
521 If BASE is NULL, it is assumed to be global memory.
522 OUTER_TYPE is known type of the instance or NULL if not
525 For the variable to be in construction we actually need to
526 be in constructor of corresponding global variable or
527 the inline stack of CALL must contain the constructor.
528 Check this condition. This check works safely only before
529 IPA passes, because inline stacks may become out of date
533 decl_maybe_in_construction_p (tree base
, tree outer_type
,
534 gimple call
, tree function
)
537 outer_type
= TYPE_MAIN_VARIANT (outer_type
);
538 gcc_assert (!base
|| DECL_P (base
));
540 /* After inlining the code unification optimizations may invalidate
541 inline stacks. Also we need to give up on global variables after
542 IPA, because addresses of these may have been propagated to their
544 if (DECL_STRUCT_FUNCTION (function
)->after_inlining
)
547 /* Pure functions can not do any changes on the dynamic type;
548 that require writting to memory. */
549 if ((!base
|| !auto_var_in_fn_p (base
, function
))
550 && flags_from_decl_or_type (function
) & (ECF_PURE
| ECF_CONST
))
553 for (tree block
= gimple_block (call
); block
&& TREE_CODE (block
) == BLOCK
;
554 block
= BLOCK_SUPERCONTEXT (block
))
555 if (BLOCK_ABSTRACT_ORIGIN (block
)
556 && TREE_CODE (BLOCK_ABSTRACT_ORIGIN (block
)) == FUNCTION_DECL
)
558 tree fn
= BLOCK_ABSTRACT_ORIGIN (block
);
560 if (TREE_CODE (TREE_TYPE (fn
)) != METHOD_TYPE
561 || (!DECL_CXX_CONSTRUCTOR_P (fn
)
562 && !DECL_CXX_DESTRUCTOR_P (fn
)))
564 /* Watch for clones where we constant propagated the first
565 argument (pointer to the instance). */
566 fn
= DECL_ABSTRACT_ORIGIN (fn
);
568 || (base
&& !is_global_var (base
))
569 || TREE_CODE (TREE_TYPE (fn
)) != METHOD_TYPE
570 || (!DECL_CXX_CONSTRUCTOR_P (fn
)
571 && !DECL_CXX_DESTRUCTOR_P (fn
)))
574 if (flags_from_decl_or_type (fn
) & (ECF_PURE
| ECF_CONST
))
577 tree type
= TYPE_MAIN_VARIANT (method_class_type (TREE_TYPE (fn
)));
579 if (!outer_type
|| !types_odr_comparable (type
, outer_type
))
581 if (TREE_CODE (type
) == RECORD_TYPE
583 && polymorphic_type_binfo_p (TYPE_BINFO (type
)))
586 else if (types_same_for_odr (type
, outer_type
))
590 if (!base
|| (TREE_CODE (base
) == VAR_DECL
&& is_global_var (base
)))
592 if (TREE_CODE (TREE_TYPE (function
)) != METHOD_TYPE
593 || (!DECL_CXX_CONSTRUCTOR_P (function
)
594 && !DECL_CXX_DESTRUCTOR_P (function
)))
596 if (!DECL_ABSTRACT_ORIGIN (function
))
598 /* Watch for clones where we constant propagated the first
599 argument (pointer to the instance). */
600 function
= DECL_ABSTRACT_ORIGIN (function
);
602 || TREE_CODE (TREE_TYPE (function
)) != METHOD_TYPE
603 || (!DECL_CXX_CONSTRUCTOR_P (function
)
604 && !DECL_CXX_DESTRUCTOR_P (function
)))
607 tree type
= TYPE_MAIN_VARIANT (method_class_type (TREE_TYPE (function
)));
608 if (!outer_type
|| !types_odr_comparable (type
, outer_type
))
610 if (TREE_CODE (type
) == RECORD_TYPE
612 && polymorphic_type_binfo_p (TYPE_BINFO (type
)))
615 else if (types_same_for_odr (type
, outer_type
))
621 /* Dump human readable context to F. If NEWLINE is true, it will be terminated
625 ipa_polymorphic_call_context::dump (FILE *f
, bool newline
) const
629 fprintf (f
, "Call is known to be undefined");
633 fprintf (f
, "nothing known");
634 if (outer_type
|| offset
)
636 fprintf (f
, "Outer type%s:", dynamic
? " (dynamic)":"");
637 print_generic_expr (f
, outer_type
, TDF_SLIM
);
638 if (maybe_derived_type
)
639 fprintf (f
, " (or a derived type)");
640 if (maybe_in_construction
)
641 fprintf (f
, " (maybe in construction)");
642 fprintf (f
, " offset "HOST_WIDE_INT_PRINT_DEC
,
645 if (speculative_outer_type
)
647 if (outer_type
|| offset
)
649 fprintf (f
, "Speculative outer type:");
650 print_generic_expr (f
, speculative_outer_type
, TDF_SLIM
);
651 if (speculative_maybe_derived_type
)
652 fprintf (f
, " (or a derived type)");
653 fprintf (f
, " at offset "HOST_WIDE_INT_PRINT_DEC
,
661 /* Print context to stderr. */
664 ipa_polymorphic_call_context::debug () const
669 /* Stream out the context to OB. */
672 ipa_polymorphic_call_context::stream_out (struct output_block
*ob
) const
674 struct bitpack_d bp
= bitpack_create (ob
->main_stream
);
676 bp_pack_value (&bp
, invalid
, 1);
677 bp_pack_value (&bp
, maybe_in_construction
, 1);
678 bp_pack_value (&bp
, maybe_derived_type
, 1);
679 bp_pack_value (&bp
, speculative_maybe_derived_type
, 1);
680 bp_pack_value (&bp
, dynamic
, 1);
681 bp_pack_value (&bp
, outer_type
!= NULL
, 1);
682 bp_pack_value (&bp
, offset
!= 0, 1);
683 bp_pack_value (&bp
, speculative_outer_type
!= NULL
, 1);
684 streamer_write_bitpack (&bp
);
686 if (outer_type
!= NULL
)
687 stream_write_tree (ob
, outer_type
, true);
689 streamer_write_hwi (ob
, offset
);
690 if (speculative_outer_type
!= NULL
)
692 stream_write_tree (ob
, speculative_outer_type
, true);
693 streamer_write_hwi (ob
, speculative_offset
);
696 gcc_assert (!speculative_offset
);
699 /* Stream in the context from IB and DATA_IN. */
702 ipa_polymorphic_call_context::stream_in (struct lto_input_block
*ib
,
703 struct data_in
*data_in
)
705 struct bitpack_d bp
= streamer_read_bitpack (ib
);
707 invalid
= bp_unpack_value (&bp
, 1);
708 maybe_in_construction
= bp_unpack_value (&bp
, 1);
709 maybe_derived_type
= bp_unpack_value (&bp
, 1);
710 speculative_maybe_derived_type
= bp_unpack_value (&bp
, 1);
711 dynamic
= bp_unpack_value (&bp
, 1);
712 bool outer_type_p
= bp_unpack_value (&bp
, 1);
713 bool offset_p
= bp_unpack_value (&bp
, 1);
714 bool speculative_outer_type_p
= bp_unpack_value (&bp
, 1);
717 outer_type
= stream_read_tree (ib
, data_in
);
721 offset
= (HOST_WIDE_INT
) streamer_read_hwi (ib
);
724 if (speculative_outer_type_p
)
726 speculative_outer_type
= stream_read_tree (ib
, data_in
);
727 speculative_offset
= (HOST_WIDE_INT
) streamer_read_hwi (ib
);
731 speculative_outer_type
= NULL
;
732 speculative_offset
= 0;
736 /* Proudce polymorphic call context for call method of instance
737 that is located within BASE (that is assumed to be a decl) at offset OFF. */
740 ipa_polymorphic_call_context::set_by_decl (tree base
, HOST_WIDE_INT off
)
742 gcc_assert (DECL_P (base
));
743 clear_speculation ();
745 if (!contains_polymorphic_type_p (TREE_TYPE (base
)))
751 outer_type
= TYPE_MAIN_VARIANT (TREE_TYPE (base
));
753 /* Make very conservative assumption that all objects
754 may be in construction.
756 It is up to caller to revisit this via
757 get_dynamic_type or decl_maybe_in_construction_p. */
758 maybe_in_construction
= true;
759 maybe_derived_type
= false;
763 /* CST is an invariant (address of decl), try to get meaningful
764 polymorphic call context for polymorphic call of method
765 if instance of OTR_TYPE that is located at offset OFF of this invariant.
766 Return FALSE if nothing meaningful can be found. */
769 ipa_polymorphic_call_context::set_by_invariant (tree cst
,
773 HOST_WIDE_INT offset2
, size
, max_size
;
778 clear_outer_type (otr_type
);
780 if (TREE_CODE (cst
) != ADDR_EXPR
)
783 cst
= TREE_OPERAND (cst
, 0);
784 base
= get_ref_base_and_extent (cst
, &offset2
, &size
, &max_size
);
785 if (!DECL_P (base
) || max_size
== -1 || max_size
!= size
)
788 /* Only type inconsistent programs can have otr_type that is
789 not part of outer type. */
790 if (otr_type
&& !contains_type_p (TREE_TYPE (base
), off
, otr_type
))
793 set_by_decl (base
, off
);
797 /* See if OP is SSA name initialized as a copy or by single assignment.
798 If so, walk the SSA graph up. Because simple PHI conditional is considered
799 copy, GLOBAL_VISITED may be used to avoid infinite loop walking the SSA
803 walk_ssa_copies (tree op
, hash_set
<tree
> **global_visited
= NULL
)
805 hash_set
<tree
> *visited
= NULL
;
807 while (TREE_CODE (op
) == SSA_NAME
808 && !SSA_NAME_IS_DEFAULT_DEF (op
)
809 /* We might be called via fold_stmt during cfgcleanup where
810 SSA form need not be up-to-date. */
811 && !name_registered_for_update_p (op
)
812 && (gimple_assign_single_p (SSA_NAME_DEF_STMT (op
))
813 || gimple_code (SSA_NAME_DEF_STMT (op
)) == GIMPLE_PHI
))
817 if (!*global_visited
)
818 *global_visited
= new hash_set
<tree
>;
819 if ((*global_visited
)->add (op
))
825 visited
= new hash_set
<tree
>;
826 if (visited
->add (op
))
834 This pattern is implicitly produced for casts to non-primary
835 bases. When doing context analysis, we do not really care
836 about the case pointer is NULL, becuase the call will be
838 if (gimple_code (SSA_NAME_DEF_STMT (op
)) == GIMPLE_PHI
)
840 gimple phi
= SSA_NAME_DEF_STMT (op
);
842 if (gimple_phi_num_args (phi
) > 2)
844 if (gimple_phi_num_args (phi
) == 1)
845 op
= gimple_phi_arg_def (phi
, 0);
846 else if (integer_zerop (gimple_phi_arg_def (phi
, 0)))
847 op
= gimple_phi_arg_def (phi
, 1);
848 else if (integer_zerop (gimple_phi_arg_def (phi
, 1)))
849 op
= gimple_phi_arg_def (phi
, 0);
855 if (gimple_assign_load_p (SSA_NAME_DEF_STMT (op
)))
857 op
= gimple_assign_rhs1 (SSA_NAME_DEF_STMT (op
));
867 /* Create polymorphic call context from IP invariant CST.
868 This is typically &global_var.
869 OTR_TYPE specify type of polymorphic call or NULL if unknown, OFF
870 is offset of call. */
872 ipa_polymorphic_call_context::ipa_polymorphic_call_context (tree cst
,
876 clear_speculation ();
877 set_by_invariant (cst
, otr_type
, off
);
880 /* Build context for pointer REF contained in FNDECL at statement STMT.
881 if INSTANCE is non-NULL, return pointer to the object described by
882 the context or DECL where context is contained in. */
884 ipa_polymorphic_call_context::ipa_polymorphic_call_context (tree fndecl
,
889 tree otr_type
= NULL
;
891 hash_set
<tree
> *visited
= NULL
;
893 if (TREE_CODE (ref
) == OBJ_TYPE_REF
)
895 otr_type
= obj_type_ref_class (ref
);
896 base_pointer
= OBJ_TYPE_REF_OBJECT (ref
);
901 /* Set up basic info in case we find nothing interesting in the analysis. */
902 clear_speculation ();
903 clear_outer_type (otr_type
);
906 /* Walk SSA for outer object. */
909 base_pointer
= walk_ssa_copies (base_pointer
, &visited
);
910 if (TREE_CODE (base_pointer
) == ADDR_EXPR
)
912 HOST_WIDE_INT size
, max_size
;
913 HOST_WIDE_INT offset2
;
914 tree base
= get_ref_base_and_extent (TREE_OPERAND (base_pointer
, 0),
915 &offset2
, &size
, &max_size
);
917 if (max_size
!= -1 && max_size
== size
)
918 combine_speculation_with (TYPE_MAIN_VARIANT (TREE_TYPE (base
)),
921 NULL
/* Do not change outer type. */);
923 /* If this is a varying address, punt. */
924 if ((TREE_CODE (base
) == MEM_REF
|| DECL_P (base
))
928 /* We found dereference of a pointer. Type of the pointer
929 and MEM_REF is meaningless, but we can look futher. */
930 if (TREE_CODE (base
) == MEM_REF
)
932 base_pointer
= TREE_OPERAND (base
, 0);
934 += offset2
+ mem_ref_offset (base
).to_short_addr () * BITS_PER_UNIT
;
937 /* We found base object. In this case the outer_type
939 else if (DECL_P (base
))
943 /* Only type inconsistent programs can have otr_type that is
944 not part of outer type. */
946 && !contains_type_p (TREE_TYPE (base
),
947 offset
+ offset2
, otr_type
))
951 *instance
= base_pointer
;
954 set_by_decl (base
, offset
+ offset2
);
955 if (outer_type
&& maybe_in_construction
&& stmt
)
956 maybe_in_construction
957 = decl_maybe_in_construction_p (base
,
971 else if (TREE_CODE (base_pointer
) == POINTER_PLUS_EXPR
972 && tree_fits_uhwi_p (TREE_OPERAND (base_pointer
, 1)))
974 offset
+= tree_to_shwi (TREE_OPERAND (base_pointer
, 1))
976 base_pointer
= TREE_OPERAND (base_pointer
, 0);
985 /* Try to determine type of the outer object. */
986 if (TREE_CODE (base_pointer
) == SSA_NAME
987 && SSA_NAME_IS_DEFAULT_DEF (base_pointer
)
988 && TREE_CODE (SSA_NAME_VAR (base_pointer
)) == PARM_DECL
)
990 /* See if parameter is THIS pointer of a method. */
991 if (TREE_CODE (TREE_TYPE (fndecl
)) == METHOD_TYPE
992 && SSA_NAME_VAR (base_pointer
) == DECL_ARGUMENTS (fndecl
))
995 = TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (base_pointer
)));
996 gcc_assert (TREE_CODE (outer_type
) == RECORD_TYPE
997 || TREE_CODE (outer_type
) == UNION_TYPE
);
999 /* Dynamic casting has possibly upcasted the type
1000 in the hiearchy. In this case outer type is less
1001 informative than inner type and we should forget
1004 && !contains_type_p (outer_type
, offset
,
1006 || !contains_polymorphic_type_p (outer_type
))
1010 *instance
= base_pointer
;
1016 /* If the function is constructor or destructor, then
1017 the type is possibly in construction, but we know
1018 it is not derived type. */
1019 if (DECL_CXX_CONSTRUCTOR_P (fndecl
)
1020 || DECL_CXX_DESTRUCTOR_P (fndecl
))
1022 maybe_in_construction
= true;
1023 maybe_derived_type
= false;
1027 maybe_derived_type
= true;
1028 maybe_in_construction
= false;
1031 *instance
= base_pointer
;
1034 /* Non-PODs passed by value are really passed by invisible
1035 reference. In this case we also know the type of the
1037 if (DECL_BY_REFERENCE (SSA_NAME_VAR (base_pointer
)))
1040 = TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (base_pointer
)));
1041 /* Only type inconsistent programs can have otr_type that is
1042 not part of outer type. */
1043 if (otr_type
&& !contains_type_p (outer_type
, offset
,
1048 *instance
= base_pointer
;
1051 /* Non-polymorphic types have no interest for us. */
1052 else if (!otr_type
&& !contains_polymorphic_type_p (outer_type
))
1056 *instance
= base_pointer
;
1059 maybe_derived_type
= false;
1060 maybe_in_construction
= false;
1062 *instance
= base_pointer
;
1067 tree base_type
= TREE_TYPE (base_pointer
);
1069 if (TREE_CODE (base_pointer
) == SSA_NAME
1070 && SSA_NAME_IS_DEFAULT_DEF (base_pointer
)
1071 && !(TREE_CODE (SSA_NAME_VAR (base_pointer
)) == PARM_DECL
1072 || TREE_CODE (SSA_NAME_VAR (base_pointer
)) == RESULT_DECL
))
1076 *instance
= base_pointer
;
1079 if (TREE_CODE (base_pointer
) == SSA_NAME
1080 && SSA_NAME_DEF_STMT (base_pointer
)
1081 && gimple_assign_single_p (SSA_NAME_DEF_STMT (base_pointer
)))
1082 base_type
= TREE_TYPE (gimple_assign_rhs1
1083 (SSA_NAME_DEF_STMT (base_pointer
)));
1085 if (base_type
&& POINTER_TYPE_P (base_type
))
1086 combine_speculation_with (TYPE_MAIN_VARIANT (TREE_TYPE (base_type
)),
1088 true, NULL
/* Do not change type here */);
1089 /* TODO: There are multiple ways to derive a type. For instance
1090 if BASE_POINTER is passed to an constructor call prior our refernece.
1091 We do not make this type of flow sensitive analysis yet. */
1093 *instance
= base_pointer
;
1097 /* Structure to be passed in between detect_type_change and
1098 check_stmt_for_type_change. */
1100 struct type_change_info
1102 /* Offset into the object where there is the virtual method pointer we are
1104 HOST_WIDE_INT offset
;
1105 /* The declaration or SSA_NAME pointer of the base that we are checking for
1108 /* The reference to virtual table pointer used. */
1111 /* If we actually can tell the type that the object has changed to, it is
1112 stored in this field. Otherwise it remains NULL_TREE. */
1113 tree known_current_type
;
1114 HOST_WIDE_INT known_current_offset
;
1116 /* Set to true if dynamic type change has been detected. */
1117 bool type_maybe_changed
;
1118 /* Set to true if multiple types have been encountered. known_current_type
1119 must be disregarded in that case. */
1120 bool multiple_types_encountered
;
1121 /* Set to true if we possibly missed some dynamic type changes and we should
1122 consider the set to be speculative. */
1124 bool seen_unanalyzed_store
;
1127 /* Return true if STMT is not call and can modify a virtual method table pointer.
1128 We take advantage of fact that vtable stores must appear within constructor
1129 and destructor functions. */
1132 noncall_stmt_may_be_vtbl_ptr_store (gimple stmt
)
1134 if (is_gimple_assign (stmt
))
1136 tree lhs
= gimple_assign_lhs (stmt
);
1138 if (gimple_clobber_p (stmt
))
1140 if (!AGGREGATE_TYPE_P (TREE_TYPE (lhs
)))
1142 if (flag_strict_aliasing
1143 && !POINTER_TYPE_P (TREE_TYPE (lhs
)))
1146 if (TREE_CODE (lhs
) == COMPONENT_REF
1147 && !DECL_VIRTUAL_P (TREE_OPERAND (lhs
, 1)))
1149 /* In the future we might want to use get_base_ref_and_offset to find
1150 if there is a field corresponding to the offset and if so, proceed
1151 almost like if it was a component ref. */
1155 /* Code unification may mess with inline stacks. */
1156 if (cfun
->after_inlining
)
1159 /* Walk the inline stack and watch out for ctors/dtors.
1160 TODO: Maybe we can require the store to appear in toplevel
1161 block of CTOR/DTOR. */
1162 for (tree block
= gimple_block (stmt
); block
&& TREE_CODE (block
) == BLOCK
;
1163 block
= BLOCK_SUPERCONTEXT (block
))
1164 if (BLOCK_ABSTRACT_ORIGIN (block
)
1165 && TREE_CODE (BLOCK_ABSTRACT_ORIGIN (block
)) == FUNCTION_DECL
)
1167 tree fn
= BLOCK_ABSTRACT_ORIGIN (block
);
1169 if (flags_from_decl_or_type (fn
) & (ECF_PURE
| ECF_CONST
))
1171 return (TREE_CODE (TREE_TYPE (fn
)) == METHOD_TYPE
1172 && (DECL_CXX_CONSTRUCTOR_P (fn
)
1173 || DECL_CXX_DESTRUCTOR_P (fn
)));
1175 return (TREE_CODE (TREE_TYPE (current_function_decl
)) == METHOD_TYPE
1176 && (DECL_CXX_CONSTRUCTOR_P (current_function_decl
)
1177 || DECL_CXX_DESTRUCTOR_P (current_function_decl
)));
1180 /* If STMT can be proved to be an assignment to the virtual method table
1181 pointer of ANALYZED_OBJ and the type associated with the new table
1182 identified, return the type. Otherwise return NULL_TREE if type changes
1183 in unknown way or ERROR_MARK_NODE if type is unchanged. */
1186 extr_type_from_vtbl_ptr_store (gimple stmt
, struct type_change_info
*tci
,
1187 HOST_WIDE_INT
*type_offset
)
1189 HOST_WIDE_INT offset
, size
, max_size
;
1190 tree lhs
, rhs
, base
;
1192 if (!gimple_assign_single_p (stmt
))
1195 lhs
= gimple_assign_lhs (stmt
);
1196 rhs
= gimple_assign_rhs1 (stmt
);
1197 if (TREE_CODE (lhs
) != COMPONENT_REF
1198 || !DECL_VIRTUAL_P (TREE_OPERAND (lhs
, 1)))
1201 fprintf (dump_file
, " LHS is not virtual table.\n");
1205 if (tci
->vtbl_ptr_ref
&& operand_equal_p (lhs
, tci
->vtbl_ptr_ref
, 0))
1209 base
= get_ref_base_and_extent (lhs
, &offset
, &size
, &max_size
);
1210 if (DECL_P (tci
->instance
))
1212 if (base
!= tci
->instance
)
1216 fprintf (dump_file
, " base:");
1217 print_generic_expr (dump_file
, base
, TDF_SLIM
);
1218 fprintf (dump_file
, " does not match instance:");
1219 print_generic_expr (dump_file
, tci
->instance
, TDF_SLIM
);
1220 fprintf (dump_file
, "\n");
1225 else if (TREE_CODE (base
) == MEM_REF
)
1227 if (!operand_equal_p (tci
->instance
, TREE_OPERAND (base
, 0), 0))
1231 fprintf (dump_file
, " base mem ref:");
1232 print_generic_expr (dump_file
, base
, TDF_SLIM
);
1233 fprintf (dump_file
, " does not match instance:");
1234 print_generic_expr (dump_file
, tci
->instance
, TDF_SLIM
);
1235 fprintf (dump_file
, "\n");
1239 if (!integer_zerop (TREE_OPERAND (base
, 1)))
1241 if (!tree_fits_shwi_p (TREE_OPERAND (base
, 1)))
1245 fprintf (dump_file
, " base mem ref:");
1246 print_generic_expr (dump_file
, base
, TDF_SLIM
);
1247 fprintf (dump_file
, " has non-representable offset:");
1248 print_generic_expr (dump_file
, tci
->instance
, TDF_SLIM
);
1249 fprintf (dump_file
, "\n");
1254 offset
+= tree_to_shwi (TREE_OPERAND (base
, 1)) * BITS_PER_UNIT
;
1257 else if (!operand_equal_p (tci
->instance
, base
, 0)
1262 fprintf (dump_file
, " base:");
1263 print_generic_expr (dump_file
, base
, TDF_SLIM
);
1264 fprintf (dump_file
, " does not match instance:");
1265 print_generic_expr (dump_file
, tci
->instance
, TDF_SLIM
);
1266 fprintf (dump_file
, " with offset %i\n", (int)tci
->offset
);
1268 return tci
->offset
> POINTER_SIZE
? error_mark_node
: NULL_TREE
;
1270 if (offset
!= tci
->offset
1271 || size
!= POINTER_SIZE
1272 || max_size
!= POINTER_SIZE
)
1275 fprintf (dump_file
, " wrong offset %i!=%i or size %i\n",
1276 (int)offset
, (int)tci
->offset
, (int)size
);
1277 return offset
+ POINTER_SIZE
<= tci
->offset
1279 && tci
->offset
+ POINTER_SIZE
> offset
+ max_size
)
1280 ? error_mark_node
: NULL
;
1285 unsigned HOST_WIDE_INT offset2
;
1287 if (!vtable_pointer_value_to_vtable (rhs
, &vtable
, &offset2
))
1290 fprintf (dump_file
, " Failed to lookup binfo\n");
1294 tree binfo
= subbinfo_with_vtable_at_offset (TYPE_BINFO (DECL_CONTEXT (vtable
)),
1299 fprintf (dump_file
, " Construction vtable used\n");
1300 /* FIXME: We should suport construction contexts. */
1304 *type_offset
= tree_to_shwi (BINFO_OFFSET (binfo
)) * BITS_PER_UNIT
;
1305 return DECL_CONTEXT (vtable
);
1308 /* Record dynamic type change of TCI to TYPE. */
1311 record_known_type (struct type_change_info
*tci
, tree type
, HOST_WIDE_INT offset
)
1317 fprintf (dump_file
, " Recording type: ");
1318 print_generic_expr (dump_file
, type
, TDF_SLIM
);
1319 fprintf (dump_file
, " at offset %i\n", (int)offset
);
1322 fprintf (dump_file
, " Recording unknown type\n");
1325 /* If we found a constructor of type that is not polymorphic or
1326 that may contain the type in question as a field (not as base),
1327 restrict to the inner class first to make type matching bellow
1331 || (TREE_CODE (type
) != RECORD_TYPE
1332 || !TYPE_BINFO (type
)
1333 || !polymorphic_type_binfo_p (TYPE_BINFO (type
)))))
1335 ipa_polymorphic_call_context context
;
1337 context
.offset
= offset
;
1338 context
.outer_type
= type
;
1339 context
.maybe_in_construction
= false;
1340 context
.maybe_derived_type
= false;
1341 context
.dynamic
= true;
1342 /* If we failed to find the inner type, we know that the call
1343 would be undefined for type produced here. */
1344 if (!context
.restrict_to_inner_class (tci
->otr_type
))
1347 fprintf (dump_file
, " Ignoring; does not contain otr_type\n");
1350 /* Watch for case we reached an POD type and anticipate placement
1352 if (!context
.maybe_derived_type
)
1354 type
= context
.outer_type
;
1355 offset
= context
.offset
;
1358 if (tci
->type_maybe_changed
1359 && (!types_same_for_odr (type
, tci
->known_current_type
)
1360 || offset
!= tci
->known_current_offset
))
1361 tci
->multiple_types_encountered
= true;
1362 tci
->known_current_type
= TYPE_MAIN_VARIANT (type
);
1363 tci
->known_current_offset
= offset
;
1364 tci
->type_maybe_changed
= true;
1367 /* Callback of walk_aliased_vdefs and a helper function for
1368 detect_type_change to check whether a particular statement may modify
1369 the virtual table pointer, and if possible also determine the new type of
1370 the (sub-)object. It stores its result into DATA, which points to a
1371 type_change_info structure. */
1374 check_stmt_for_type_change (ao_ref
*ao ATTRIBUTE_UNUSED
, tree vdef
, void *data
)
1376 gimple stmt
= SSA_NAME_DEF_STMT (vdef
);
1377 struct type_change_info
*tci
= (struct type_change_info
*) data
;
1380 /* If we already gave up, just terminate the rest of walk. */
1381 if (tci
->multiple_types_encountered
)
1384 if (is_gimple_call (stmt
))
1386 if (gimple_call_flags (stmt
) & (ECF_CONST
| ECF_PURE
))
1389 /* Check for a constructor call. */
1390 if ((fn
= gimple_call_fndecl (stmt
)) != NULL_TREE
1391 && DECL_CXX_CONSTRUCTOR_P (fn
)
1392 && TREE_CODE (TREE_TYPE (fn
)) == METHOD_TYPE
1393 && gimple_call_num_args (stmt
))
1395 tree op
= walk_ssa_copies (gimple_call_arg (stmt
, 0));
1396 tree type
= method_class_type (TREE_TYPE (fn
));
1397 HOST_WIDE_INT offset
= 0, size
, max_size
;
1401 fprintf (dump_file
, " Checking constructor call: ");
1402 print_gimple_stmt (dump_file
, stmt
, 0, 0);
1405 /* See if THIS parameter seems like instance pointer. */
1406 if (TREE_CODE (op
) == ADDR_EXPR
)
1408 op
= get_ref_base_and_extent (TREE_OPERAND (op
, 0),
1409 &offset
, &size
, &max_size
);
1410 if (size
!= max_size
|| max_size
== -1)
1412 tci
->speculative
= true;
1415 if (op
&& TREE_CODE (op
) == MEM_REF
)
1417 if (!tree_fits_shwi_p (TREE_OPERAND (op
, 1)))
1419 tci
->speculative
= true;
1422 offset
+= tree_to_shwi (TREE_OPERAND (op
, 1))
1424 op
= TREE_OPERAND (op
, 0);
1426 else if (DECL_P (op
))
1430 tci
->speculative
= true;
1433 op
= walk_ssa_copies (op
);
1435 if (operand_equal_p (op
, tci
->instance
, 0)
1437 && TREE_CODE (TYPE_SIZE (type
)) == INTEGER_CST
1438 && tree_fits_shwi_p (TYPE_SIZE (type
))
1439 && tree_to_shwi (TYPE_SIZE (type
)) + offset
> tci
->offset
)
1441 record_known_type (tci
, type
, tci
->offset
- offset
);
1445 /* Calls may possibly change dynamic type by placement new. Assume
1446 it will not happen, but make result speculative only. */
1449 fprintf (dump_file
, " Function call may change dynamic type:");
1450 print_gimple_stmt (dump_file
, stmt
, 0, 0);
1452 tci
->speculative
= true;
1455 /* Check for inlined virtual table store. */
1456 else if (noncall_stmt_may_be_vtbl_ptr_store (stmt
))
1459 HOST_WIDE_INT offset
= 0;
1462 fprintf (dump_file
, " Checking vtbl store: ");
1463 print_gimple_stmt (dump_file
, stmt
, 0, 0);
1466 type
= extr_type_from_vtbl_ptr_store (stmt
, tci
, &offset
);
1467 if (type
== error_mark_node
)
1469 gcc_assert (!type
|| TYPE_MAIN_VARIANT (type
) == type
);
1473 fprintf (dump_file
, " Unanalyzed store may change type.\n");
1474 tci
->seen_unanalyzed_store
= true;
1475 tci
->speculative
= true;
1478 record_known_type (tci
, type
, offset
);
1485 /* THIS is polymorphic call context obtained from get_polymorphic_context.
1486 OTR_OBJECT is pointer to the instance returned by OBJ_TYPE_REF_OBJECT.
1487 INSTANCE is pointer to the outer instance as returned by
1488 get_polymorphic_context. To avoid creation of temporary expressions,
1489 INSTANCE may also be an declaration of get_polymorphic_context found the
1490 value to be in static storage.
1492 If the type of instance is not fully determined
1493 (either OUTER_TYPE is unknown or MAYBE_IN_CONSTRUCTION/INCLUDE_DERIVED_TYPES
1494 is set), try to walk memory writes and find the actual construction of the
1497 Return true if memory is unchanged from function entry.
1499 We do not include this analysis in the context analysis itself, because
1500 it needs memory SSA to be fully built and the walk may be expensive.
1501 So it is not suitable for use withing fold_stmt and similar uses. */
1504 ipa_polymorphic_call_context::get_dynamic_type (tree instance
,
1509 struct type_change_info tci
;
1511 bool function_entry_reached
= false;
1512 tree instance_ref
= NULL
;
1514 /* Remember OFFSET before it is modified by restrict_to_inner_class.
1515 This is because we do not update INSTANCE when walking inwards. */
1516 HOST_WIDE_INT instance_offset
= offset
;
1519 otr_type
= TYPE_MAIN_VARIANT (otr_type
);
1521 /* Walk into inner type. This may clear maybe_derived_type and save us
1522 from useless work. It also makes later comparsions with static type
1524 if (outer_type
&& otr_type
)
1526 if (!restrict_to_inner_class (otr_type
))
1530 if (!maybe_in_construction
&& !maybe_derived_type
)
1533 /* We need to obtain refernce to virtual table pointer. It is better
1534 to look it up in the code rather than build our own. This require bit
1535 of pattern matching, but we end up verifying that what we found is
1538 What we pattern match is:
1540 tmp = instance->_vptr.A; // vtbl ptr load
1541 tmp2 = tmp[otr_token]; // vtable lookup
1542 OBJ_TYPE_REF(tmp2;instance->0) (instance);
1544 We want to start alias oracle walk from vtbl pointer load,
1545 but we may not be able to identify it, for example, when PRE moved the
1548 if (gimple_code (call
) == GIMPLE_CALL
)
1550 tree ref
= gimple_call_fn (call
);
1551 HOST_WIDE_INT offset2
, size
, max_size
;
1553 if (TREE_CODE (ref
) == OBJ_TYPE_REF
)
1555 ref
= OBJ_TYPE_REF_EXPR (ref
);
1556 ref
= walk_ssa_copies (ref
);
1558 /* Check if definition looks like vtable lookup. */
1559 if (TREE_CODE (ref
) == SSA_NAME
1560 && !SSA_NAME_IS_DEFAULT_DEF (ref
)
1561 && gimple_assign_load_p (SSA_NAME_DEF_STMT (ref
))
1562 && TREE_CODE (gimple_assign_rhs1
1563 (SSA_NAME_DEF_STMT (ref
))) == MEM_REF
)
1565 ref
= get_base_address
1566 (TREE_OPERAND (gimple_assign_rhs1
1567 (SSA_NAME_DEF_STMT (ref
)), 0));
1568 ref
= walk_ssa_copies (ref
);
1569 /* Find base address of the lookup and see if it looks like
1571 if (TREE_CODE (ref
) == SSA_NAME
1572 && !SSA_NAME_IS_DEFAULT_DEF (ref
)
1573 && gimple_assign_load_p (SSA_NAME_DEF_STMT (ref
)))
1575 tree ref_exp
= gimple_assign_rhs1 (SSA_NAME_DEF_STMT (ref
));
1576 tree base_ref
= get_ref_base_and_extent
1577 (ref_exp
, &offset2
, &size
, &max_size
);
1579 /* Finally verify that what we found looks like read from OTR_OBJECT
1580 or from INSTANCE with offset OFFSET. */
1582 && ((TREE_CODE (base_ref
) == MEM_REF
1583 && ((offset2
== instance_offset
1584 && TREE_OPERAND (base_ref
, 0) == instance
)
1585 || (!offset2
&& TREE_OPERAND (base_ref
, 0) == otr_object
)))
1586 || (DECL_P (instance
) && base_ref
== instance
1587 && offset2
== instance_offset
)))
1589 stmt
= SSA_NAME_DEF_STMT (ref
);
1590 instance_ref
= ref_exp
;
1597 /* If we failed to look up the refernece in code, build our own. */
1600 /* If the statement in question does not use memory, we can't tell
1602 if (!gimple_vuse (stmt
))
1604 ao_ref_init_from_ptr_and_size (&ao
, otr_object
, NULL
);
1607 /* Otherwise use the real reference. */
1608 ao_ref_init (&ao
, instance_ref
);
1610 /* We look for vtbl pointer read. */
1611 ao
.size
= POINTER_SIZE
;
1612 ao
.max_size
= ao
.size
;
1615 = get_deref_alias_set (TREE_TYPE (BINFO_VTABLE (TYPE_BINFO (otr_type
))));
1619 fprintf (dump_file
, "Determining dynamic type for call: ");
1620 print_gimple_stmt (dump_file
, call
, 0, 0);
1621 fprintf (dump_file
, " Starting walk at: ");
1622 print_gimple_stmt (dump_file
, stmt
, 0, 0);
1623 fprintf (dump_file
, " instance pointer: ");
1624 print_generic_expr (dump_file
, otr_object
, TDF_SLIM
);
1625 fprintf (dump_file
, " Outer instance pointer: ");
1626 print_generic_expr (dump_file
, instance
, TDF_SLIM
);
1627 fprintf (dump_file
, " offset: %i (bits)", (int)offset
);
1628 fprintf (dump_file
, " vtbl reference: ");
1629 print_generic_expr (dump_file
, instance_ref
, TDF_SLIM
);
1630 fprintf (dump_file
, "\n");
1633 tci
.offset
= offset
;
1634 tci
.instance
= instance
;
1635 tci
.vtbl_ptr_ref
= instance_ref
;
1636 gcc_assert (TREE_CODE (instance
) != MEM_REF
);
1637 tci
.known_current_type
= NULL_TREE
;
1638 tci
.known_current_offset
= 0;
1639 tci
.otr_type
= otr_type
;
1640 tci
.type_maybe_changed
= false;
1641 tci
.multiple_types_encountered
= false;
1642 tci
.speculative
= false;
1643 tci
.seen_unanalyzed_store
= false;
1645 walk_aliased_vdefs (&ao
, gimple_vuse (stmt
), check_stmt_for_type_change
,
1646 &tci
, NULL
, &function_entry_reached
);
1648 /* If we did not find any type changing statements, we may still drop
1649 maybe_in_construction flag if the context already have outer type.
1651 Here we make special assumptions about both constructors and
1652 destructors which are all the functions that are allowed to alter the
1653 VMT pointers. It assumes that destructors begin with assignment into
1654 all VMT pointers and that constructors essentially look in the
1657 1) The very first thing they do is that they call constructors of
1658 ancestor sub-objects that have them.
1660 2) Then VMT pointers of this and all its ancestors is set to new
1661 values corresponding to the type corresponding to the constructor.
1663 3) Only afterwards, other stuff such as constructor of member
1664 sub-objects and the code written by the user is run. Only this may
1665 include calling virtual functions, directly or indirectly.
1667 4) placement new can not be used to change type of non-POD statically
1668 allocated variables.
1670 There is no way to call a constructor of an ancestor sub-object in any
1673 This means that we do not have to care whether constructors get the
1674 correct type information because they will always change it (in fact,
1675 if we define the type to be given by the VMT pointer, it is undefined).
1677 The most important fact to derive from the above is that if, for some
1678 statement in the section 3, we try to detect whether the dynamic type
1679 has changed, we can safely ignore all calls as we examine the function
1680 body backwards until we reach statements in section 2 because these
1681 calls cannot be ancestor constructors or destructors (if the input is
1682 not bogus) and so do not change the dynamic type (this holds true only
1683 for automatically allocated objects but at the moment we devirtualize
1684 only these). We then must detect that statements in section 2 change
1685 the dynamic type and can try to derive the new type. That is enough
1686 and we can stop, we will never see the calls into constructors of
1687 sub-objects in this code.
1689 Therefore if the static outer type was found (outer_type)
1690 we can safely ignore tci.speculative that is set on calls and give up
1691 only if there was dyanmic type store that may affect given variable
1692 (seen_unanalyzed_store) */
1694 if (!tci
.type_maybe_changed
1697 && !tci
.seen_unanalyzed_store
1698 && !tci
.multiple_types_encountered
1699 && offset
== tci
.offset
1700 && types_same_for_odr (tci
.known_current_type
,
1703 if (!outer_type
|| tci
.seen_unanalyzed_store
)
1705 if (maybe_in_construction
)
1706 maybe_in_construction
= false;
1708 fprintf (dump_file
, " No dynamic type change found.\n");
1712 if (tci
.known_current_type
1713 && !function_entry_reached
1714 && !tci
.multiple_types_encountered
)
1716 if (!tci
.speculative
)
1718 outer_type
= TYPE_MAIN_VARIANT (tci
.known_current_type
);
1719 offset
= tci
.known_current_offset
;
1721 maybe_in_construction
= false;
1722 maybe_derived_type
= false;
1724 fprintf (dump_file
, " Determined dynamic type.\n");
1726 else if (!speculative_outer_type
1727 || speculative_maybe_derived_type
)
1729 speculative_outer_type
= TYPE_MAIN_VARIANT (tci
.known_current_type
);
1730 speculative_offset
= tci
.known_current_offset
;
1731 speculative_maybe_derived_type
= false;
1733 fprintf (dump_file
, " Determined speculative dynamic type.\n");
1738 fprintf (dump_file
, " Found multiple types%s%s\n",
1739 function_entry_reached
? " (function entry reached)" : "",
1740 function_entry_reached
? " (multiple types encountered)" : "");
1746 /* See if speculation given by SPEC_OUTER_TYPE, SPEC_OFFSET and SPEC_MAYBE_DERIVED_TYPE
1747 seems consistent (and useful) with what we already have in the non-speculative context. */
1750 ipa_polymorphic_call_context::speculation_consistent_p (tree spec_outer_type
,
1751 HOST_WIDE_INT spec_offset
,
1752 bool spec_maybe_derived_type
,
1753 tree otr_type
) const
1755 if (!flag_devirtualize_speculatively
)
1758 /* Non-polymorphic types are useless for deriving likely polymorphic
1760 if (!spec_outer_type
|| !contains_polymorphic_type_p (spec_outer_type
))
1763 /* If we know nothing, speculation is always good. */
1767 /* Speculation is only useful to avoid derived types.
1768 This is not 100% true for placement new, where the outer context may
1769 turn out to be useless, but ignore these for now. */
1770 if (!maybe_derived_type
)
1773 /* If types agrees, speculation is consistent, but it makes sense only
1774 when it says something new. */
1775 if (types_must_be_same_for_odr (spec_outer_type
, outer_type
))
1776 return maybe_derived_type
&& !spec_maybe_derived_type
;
1778 /* If speculation does not contain the type in question, ignore it. */
1780 && !contains_type_p (spec_outer_type
, spec_offset
, otr_type
, false, true))
1783 /* If outer type already contains speculation as a filed,
1784 it is useless. We already know from OUTER_TYPE
1785 SPEC_TYPE and that it is not in the construction. */
1786 if (contains_type_p (outer_type
, offset
- spec_offset
,
1787 spec_outer_type
, false, false))
1790 /* If speculative outer type is not more specified than outer
1792 We can only decide this safely if we can compare types with OUTER_TYPE.
1794 if ((!in_lto_p
|| odr_type_p (outer_type
))
1795 && !contains_type_p (spec_outer_type
,
1796 spec_offset
- offset
,
1802 /* Improve THIS with speculation described by NEW_OUTER_TYPE, NEW_OFFSET,
1803 NEW_MAYBE_DERIVED_TYPE
1804 If OTR_TYPE is set, assume the context is used with OTR_TYPE. */
1807 ipa_polymorphic_call_context::combine_speculation_with
1808 (tree new_outer_type
, HOST_WIDE_INT new_offset
, bool new_maybe_derived_type
,
1811 if (!new_outer_type
)
1814 /* restrict_to_inner_class may eliminate wrong speculation making our job
1817 restrict_to_inner_class (otr_type
);
1819 if (!speculation_consistent_p (new_outer_type
, new_offset
,
1820 new_maybe_derived_type
, otr_type
))
1823 /* New speculation is a win in case we have no speculation or new
1824 speculation does not consider derivations. */
1825 if (!speculative_outer_type
1826 || (speculative_maybe_derived_type
1827 && !new_maybe_derived_type
))
1829 speculative_outer_type
= new_outer_type
;
1830 speculative_offset
= new_offset
;
1831 speculative_maybe_derived_type
= new_maybe_derived_type
;
1834 else if (types_must_be_same_for_odr (speculative_outer_type
,
1837 if (speculative_offset
!= new_offset
)
1839 /* OK we have two contexts that seems valid but they disagree,
1842 This is not a lattice operation, so we may want to drop it later. */
1843 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
1845 "Speculative outer types match, "
1846 "offset mismatch -> invalid speculation\n");
1847 clear_speculation ();
1852 if (speculative_maybe_derived_type
&& !new_maybe_derived_type
)
1854 speculative_maybe_derived_type
= false;
1861 /* Choose type that contains the other. This one either contains the outer
1862 as a field (thus giving exactly one target) or is deeper in the type
1864 else if (speculative_outer_type
1865 && speculative_maybe_derived_type
1866 && (new_offset
> speculative_offset
1867 || (new_offset
== speculative_offset
1868 && contains_type_p (new_outer_type
,
1869 0, speculative_outer_type
, false))))
1871 tree old_outer_type
= speculative_outer_type
;
1872 HOST_WIDE_INT old_offset
= speculative_offset
;
1873 bool old_maybe_derived_type
= speculative_maybe_derived_type
;
1875 speculative_outer_type
= new_outer_type
;
1876 speculative_offset
= new_offset
;
1877 speculative_maybe_derived_type
= new_maybe_derived_type
;
1880 restrict_to_inner_class (otr_type
);
1882 /* If the speculation turned out to make no sense, revert to sensible
1884 if (!speculative_outer_type
)
1886 speculative_outer_type
= old_outer_type
;
1887 speculative_offset
= old_offset
;
1888 speculative_maybe_derived_type
= old_maybe_derived_type
;
1891 return (old_offset
!= speculative_offset
1892 || old_maybe_derived_type
!= speculative_maybe_derived_type
1893 || types_must_be_same_for_odr (speculative_outer_type
,
1899 /* Make speculation less specific so
1900 NEW_OUTER_TYPE, NEW_OFFSET, NEW_MAYBE_DERIVED_TYPE is also included.
1901 If OTR_TYPE is set, assume the context is used with OTR_TYPE. */
1904 ipa_polymorphic_call_context::meet_speculation_with
1905 (tree new_outer_type
, HOST_WIDE_INT new_offset
, bool new_maybe_derived_type
,
1908 if (!new_outer_type
&& speculative_outer_type
)
1910 clear_speculation ();
1914 /* restrict_to_inner_class may eliminate wrong speculation making our job
1917 restrict_to_inner_class (otr_type
);
1919 if (!speculative_outer_type
1920 || !speculation_consistent_p (speculative_outer_type
,
1922 speculative_maybe_derived_type
,
1926 if (!speculation_consistent_p (new_outer_type
, new_offset
,
1927 new_maybe_derived_type
, otr_type
))
1929 clear_speculation ();
1933 else if (types_must_be_same_for_odr (speculative_outer_type
,
1936 if (speculative_offset
!= new_offset
)
1938 clear_speculation ();
1943 if (!speculative_maybe_derived_type
&& new_maybe_derived_type
)
1945 speculative_maybe_derived_type
= true;
1952 /* See if one type contains the other as a field (not base). */
1953 else if (contains_type_p (new_outer_type
, new_offset
- speculative_offset
,
1954 speculative_outer_type
, false, false))
1956 else if (contains_type_p (speculative_outer_type
,
1957 speculative_offset
- new_offset
,
1958 new_outer_type
, false, false))
1960 speculative_outer_type
= new_outer_type
;
1961 speculative_offset
= new_offset
;
1962 speculative_maybe_derived_type
= new_maybe_derived_type
;
1965 /* See if OUTER_TYPE is base of CTX.OUTER_TYPE. */
1966 else if (contains_type_p (new_outer_type
,
1967 new_offset
- speculative_offset
,
1968 speculative_outer_type
, false, true))
1970 if (!speculative_maybe_derived_type
)
1972 speculative_maybe_derived_type
= true;
1977 /* See if CTX.OUTER_TYPE is base of OUTER_TYPE. */
1978 else if (contains_type_p (speculative_outer_type
,
1979 speculative_offset
- new_offset
, new_outer_type
, false, true))
1981 speculative_outer_type
= new_outer_type
;
1982 speculative_offset
= new_offset
;
1983 speculative_maybe_derived_type
= true;
1988 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
1989 fprintf (dump_file
, "Giving up on speculative meet\n");
1990 clear_speculation ();
1995 /* Assume that both THIS and a given context is valid and strenghten THIS
1996 if possible. Return true if any strenghtening was made.
1997 If actual type the context is being used in is known, OTR_TYPE should be
1998 set accordingly. This improves quality of combined result. */
2001 ipa_polymorphic_call_context::combine_with (ipa_polymorphic_call_context ctx
,
2004 bool updated
= false;
2006 if (ctx
.useless_p () || invalid
)
2009 /* Restricting context to inner type makes merging easier, however do not
2010 do that unless we know how the context is used (OTR_TYPE is non-NULL) */
2011 if (otr_type
&& !invalid
&& !ctx
.invalid
)
2013 restrict_to_inner_class (otr_type
);
2014 ctx
.restrict_to_inner_class (otr_type
);
2019 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2021 fprintf (dump_file
, "Polymorphic call context combine:");
2023 fprintf (dump_file
, "With context: ");
2024 ctx
.dump (dump_file
);
2027 fprintf (dump_file
, "To be used with type: ");
2028 print_generic_expr (dump_file
, otr_type
, TDF_SLIM
);
2029 fprintf (dump_file
, "\n");
2033 /* If call is known to be invalid, we are done. */
2036 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2037 fprintf (dump_file
, "-> Invalid context\n");
2041 if (!ctx
.outer_type
)
2043 else if (!outer_type
)
2045 outer_type
= ctx
.outer_type
;
2046 offset
= ctx
.offset
;
2047 dynamic
= ctx
.dynamic
;
2048 maybe_in_construction
= ctx
.maybe_in_construction
;
2049 maybe_derived_type
= ctx
.maybe_derived_type
;
2052 /* If types are known to be same, merging is quite easy. */
2053 else if (types_must_be_same_for_odr (outer_type
, ctx
.outer_type
))
2055 if (offset
!= ctx
.offset
2056 && TYPE_SIZE (outer_type
)
2057 && TREE_CODE (TYPE_SIZE (outer_type
)) == INTEGER_CST
)
2059 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2060 fprintf (dump_file
, "Outer types match, offset mismatch -> invalid\n");
2061 clear_speculation ();
2062 clear_outer_type ();
2066 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2067 fprintf (dump_file
, "Outer types match, merging flags\n");
2068 if (maybe_in_construction
&& !ctx
.maybe_in_construction
)
2071 maybe_in_construction
= false;
2073 if (maybe_derived_type
&& !ctx
.maybe_derived_type
)
2076 maybe_derived_type
= false;
2078 if (dynamic
&& !ctx
.dynamic
)
2084 /* If we know the type precisely, there is not much to improve. */
2085 else if (!maybe_derived_type
&& !maybe_in_construction
2086 && !ctx
.maybe_derived_type
&& !ctx
.maybe_in_construction
)
2088 /* It may be easy to check if second context permits the first
2089 and set INVALID otherwise. This is not easy to do in general;
2090 contains_type_p may return false negatives for non-comparable
2093 If OTR_TYPE is known, we however can expect that
2094 restrict_to_inner_class should have discovered the same base
2096 if (otr_type
&& !ctx
.maybe_in_construction
&& !ctx
.maybe_derived_type
)
2098 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2099 fprintf (dump_file
, "Contextes disagree -> invalid\n");
2103 /* See if one type contains the other as a field (not base).
2104 In this case we want to choose the wider type, because it contains
2105 more information. */
2106 else if (contains_type_p (ctx
.outer_type
, ctx
.offset
- offset
,
2107 outer_type
, false, false))
2109 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2110 fprintf (dump_file
, "Second type contain the first as a field\n");
2112 if (maybe_derived_type
)
2114 outer_type
= ctx
.outer_type
;
2115 maybe_derived_type
= ctx
.maybe_derived_type
;
2116 offset
= ctx
.offset
;
2117 dynamic
= ctx
.dynamic
;
2121 /* If we do not know how the context is being used, we can
2122 not clear MAYBE_IN_CONSTRUCTION because it may be offseted
2123 to other component of OUTER_TYPE later and we know nothing
2125 if (otr_type
&& maybe_in_construction
2126 && !ctx
.maybe_in_construction
)
2128 maybe_in_construction
= false;
2132 else if (contains_type_p (outer_type
, offset
- ctx
.offset
,
2133 ctx
.outer_type
, false, false))
2135 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2136 fprintf (dump_file
, "First type contain the second as a field\n");
2138 if (otr_type
&& maybe_in_construction
2139 && !ctx
.maybe_in_construction
)
2141 maybe_in_construction
= false;
2145 /* See if OUTER_TYPE is base of CTX.OUTER_TYPE. */
2146 else if (contains_type_p (ctx
.outer_type
,
2147 ctx
.offset
- offset
, outer_type
, false, true))
2149 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2150 fprintf (dump_file
, "First type is base of second\n");
2151 if (!maybe_derived_type
)
2153 if (!ctx
.maybe_in_construction
2154 && types_odr_comparable (outer_type
, ctx
.outer_type
))
2156 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2157 fprintf (dump_file
, "Second context does not permit base -> invalid\n");
2161 /* Pick variant deeper in the hiearchy. */
2164 outer_type
= ctx
.outer_type
;
2165 maybe_in_construction
= ctx
.maybe_in_construction
;
2166 maybe_derived_type
= ctx
.maybe_derived_type
;
2167 offset
= ctx
.offset
;
2168 dynamic
= ctx
.dynamic
;
2172 /* See if CTX.OUTER_TYPE is base of OUTER_TYPE. */
2173 else if (contains_type_p (outer_type
,
2174 offset
- ctx
.offset
, ctx
.outer_type
, false, true))
2176 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2177 fprintf (dump_file
, "Second type is base of first\n");
2178 if (!ctx
.maybe_derived_type
)
2180 if (!maybe_in_construction
2181 && types_odr_comparable (outer_type
, ctx
.outer_type
))
2183 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2184 fprintf (dump_file
, "First context does not permit base -> invalid\n");
2187 /* Pick the base type. */
2188 else if (maybe_in_construction
)
2190 outer_type
= ctx
.outer_type
;
2191 maybe_in_construction
= ctx
.maybe_in_construction
;
2192 maybe_derived_type
= ctx
.maybe_derived_type
;
2193 offset
= ctx
.offset
;
2194 dynamic
= ctx
.dynamic
;
2199 /* TODO handle merging using hiearchy. */
2200 else if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2201 fprintf (dump_file
, "Giving up on merge\n");
2203 updated
|= combine_speculation_with (ctx
.speculative_outer_type
,
2204 ctx
.speculative_offset
,
2205 ctx
.speculative_maybe_derived_type
,
2208 if (updated
&& dump_file
&& (dump_flags
& TDF_DETAILS
))
2210 fprintf (dump_file
, "Updated as: ");
2212 fprintf (dump_file
, "\n");
2218 clear_speculation ();
2219 clear_outer_type ();
2223 /* Take non-speculative info, merge it with speculative and clear speculation.
2224 Used when we no longer manage to keep track of actual outer type, but we
2225 think it is still there.
2227 If OTR_TYPE is set, the transformation can be done more effectively assuming
2228 that context is going to be used only that way. */
2231 ipa_polymorphic_call_context::make_speculative (tree otr_type
)
2233 tree spec_outer_type
= outer_type
;
2234 HOST_WIDE_INT spec_offset
= offset
;
2235 bool spec_maybe_derived_type
= maybe_derived_type
;
2240 clear_outer_type ();
2241 clear_speculation ();
2246 clear_outer_type ();
2247 combine_speculation_with (spec_outer_type
, spec_offset
,
2248 spec_maybe_derived_type
,
2252 /* Use when we can not track dynamic type change. This speculatively assume
2253 type change is not happening. */
2256 ipa_polymorphic_call_context::possible_dynamic_type_change (bool in_poly_cdtor
,
2260 make_speculative (otr_type
);
2261 else if (in_poly_cdtor
)
2262 maybe_in_construction
= true;
2265 /* Return TRUE if this context conveys the same information as OTHER. */
2268 ipa_polymorphic_call_context::equal_to
2269 (const ipa_polymorphic_call_context
&x
) const
2272 return x
.useless_p ();
2275 if (x
.useless_p () || x
.invalid
)
2281 || !types_odr_comparable (outer_type
, x
.outer_type
)
2282 || !types_same_for_odr (outer_type
, x
.outer_type
)
2283 || offset
!= x
.offset
2284 || maybe_in_construction
!= x
.maybe_in_construction
2285 || maybe_derived_type
!= x
.maybe_derived_type
2286 || dynamic
!= x
.dynamic
)
2289 else if (x
.outer_type
)
2293 if (speculative_outer_type
2294 && speculation_consistent_p (speculative_outer_type
, speculative_offset
,
2295 speculative_maybe_derived_type
, NULL_TREE
))
2297 if (!x
.speculative_outer_type
)
2300 if (!types_odr_comparable (speculative_outer_type
,
2301 x
.speculative_outer_type
)
2302 || !types_same_for_odr (speculative_outer_type
,
2303 x
.speculative_outer_type
)
2304 || speculative_offset
!= x
.speculative_offset
2305 || speculative_maybe_derived_type
!= x
.speculative_maybe_derived_type
)
2308 else if (x
.speculative_outer_type
2309 && x
.speculation_consistent_p (x
.speculative_outer_type
,
2310 x
.speculative_offset
,
2311 x
.speculative_maybe_derived_type
,
2318 /* Modify context to be strictly less restrictive than CTX. */
2321 ipa_polymorphic_call_context::meet_with (ipa_polymorphic_call_context ctx
,
2324 bool updated
= false;
2326 if (useless_p () || ctx
.invalid
)
2329 /* Restricting context to inner type makes merging easier, however do not
2330 do that unless we know how the context is used (OTR_TYPE is non-NULL) */
2331 if (otr_type
&& !useless_p () && !ctx
.useless_p ())
2333 restrict_to_inner_class (otr_type
);
2334 ctx
.restrict_to_inner_class (otr_type
);
2342 if (ctx
.useless_p () || invalid
)
2348 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2350 fprintf (dump_file
, "Polymorphic call context meet:");
2352 fprintf (dump_file
, "With context: ");
2353 ctx
.dump (dump_file
);
2356 fprintf (dump_file
, "To be used with type: ");
2357 print_generic_expr (dump_file
, otr_type
, TDF_SLIM
);
2358 fprintf (dump_file
, "\n");
2362 if (!dynamic
&& ctx
.dynamic
)
2368 /* If call is known to be invalid, we are done. */
2371 else if (!ctx
.outer_type
)
2373 clear_outer_type ();
2376 /* If types are known to be same, merging is quite easy. */
2377 else if (types_must_be_same_for_odr (outer_type
, ctx
.outer_type
))
2379 if (offset
!= ctx
.offset
2380 && TYPE_SIZE (outer_type
)
2381 && TREE_CODE (TYPE_SIZE (outer_type
)) == INTEGER_CST
)
2383 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2384 fprintf (dump_file
, "Outer types match, offset mismatch -> clearing\n");
2385 clear_outer_type ();
2388 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2389 fprintf (dump_file
, "Outer types match, merging flags\n");
2390 if (!maybe_in_construction
&& ctx
.maybe_in_construction
)
2393 maybe_in_construction
= true;
2395 if (!maybe_derived_type
&& ctx
.maybe_derived_type
)
2398 maybe_derived_type
= true;
2400 if (!dynamic
&& ctx
.dynamic
)
2406 /* See if one type contains the other as a field (not base). */
2407 else if (contains_type_p (ctx
.outer_type
, ctx
.offset
- offset
,
2408 outer_type
, false, false))
2410 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2411 fprintf (dump_file
, "Second type contain the first as a field\n");
2413 /* The second type is more specified, so we keep the first.
2414 We need to set DYNAMIC flag to avoid declaring context INVALID
2415 of OFFSET ends up being out of range. */
2419 && (!TYPE_SIZE (ctx
.outer_type
)
2420 || !TYPE_SIZE (outer_type
)
2421 || !operand_equal_p (TYPE_SIZE (ctx
.outer_type
),
2422 TYPE_SIZE (outer_type
), 0)))))
2428 else if (contains_type_p (outer_type
, offset
- ctx
.offset
,
2429 ctx
.outer_type
, false, false))
2431 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2432 fprintf (dump_file
, "First type contain the second as a field\n");
2437 && (!TYPE_SIZE (ctx
.outer_type
)
2438 || !TYPE_SIZE (outer_type
)
2439 || !operand_equal_p (TYPE_SIZE (ctx
.outer_type
),
2440 TYPE_SIZE (outer_type
), 0)))))
2442 outer_type
= ctx
.outer_type
;
2443 offset
= ctx
.offset
;
2444 dynamic
= ctx
.dynamic
;
2445 maybe_in_construction
= ctx
.maybe_in_construction
;
2446 maybe_derived_type
= ctx
.maybe_derived_type
;
2449 /* See if OUTER_TYPE is base of CTX.OUTER_TYPE. */
2450 else if (contains_type_p (ctx
.outer_type
,
2451 ctx
.offset
- offset
, outer_type
, false, true))
2453 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2454 fprintf (dump_file
, "First type is base of second\n");
2455 if (!maybe_derived_type
)
2457 maybe_derived_type
= true;
2460 if (!maybe_in_construction
&& ctx
.maybe_in_construction
)
2462 maybe_in_construction
= true;
2465 if (!dynamic
&& ctx
.dynamic
)
2471 /* See if CTX.OUTER_TYPE is base of OUTER_TYPE. */
2472 else if (contains_type_p (outer_type
,
2473 offset
- ctx
.offset
, ctx
.outer_type
, false, true))
2475 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2476 fprintf (dump_file
, "Second type is base of first\n");
2477 outer_type
= ctx
.outer_type
;
2478 offset
= ctx
.offset
;
2480 if (!maybe_derived_type
)
2481 maybe_derived_type
= true;
2482 if (!maybe_in_construction
&& ctx
.maybe_in_construction
)
2483 maybe_in_construction
= true;
2484 if (!dynamic
&& ctx
.dynamic
)
2487 /* TODO handle merging using hiearchy. */
2490 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2491 fprintf (dump_file
, "Giving up on meet\n");
2492 clear_outer_type ();
2496 updated
|= meet_speculation_with (ctx
.speculative_outer_type
,
2497 ctx
.speculative_offset
,
2498 ctx
.speculative_maybe_derived_type
,
2501 if (updated
&& dump_file
&& (dump_flags
& TDF_DETAILS
))
2503 fprintf (dump_file
, "Updated as: ");
2505 fprintf (dump_file
, "\n");