1 /* Alias analysis for trees.
2 Copyright (C) 2004, 2005, 2006, 2007, 2008, 2009, 2010
3 Free Software Foundation, Inc.
4 Contributed by Diego Novillo <dnovillo@redhat.com>
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
13 GCC is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
24 #include "coretypes.h"
28 #include "basic-block.h"
32 #include "langhooks.h"
35 #include "diagnostic.h"
36 #include "tree-pretty-print.h"
37 #include "tree-dump.h"
39 #include "tree-flow.h"
40 #include "tree-inline.h"
41 #include "tree-pass.h"
44 #include "ipa-type-escape.h"
48 #include "pointer-set.h"
49 #include "alloc-pool.h"
50 #include "tree-ssa-alias.h"
52 /* Broad overview of how alias analysis on gimple works:
54 Statements clobbering or using memory are linked through the
55 virtual operand factored use-def chain. The virtual operand
56 is unique per function, its symbol is accessible via gimple_vop (cfun).
57 Virtual operands are used for efficiently walking memory statements
58 in the gimple IL and are useful for things like value-numbering as
59 a generation count for memory references.
61 SSA_NAME pointers may have associated points-to information
62 accessible via the SSA_NAME_PTR_INFO macro. Flow-insensitive
63 points-to information is (re-)computed by the TODO_rebuild_alias
64 pass manager todo. Points-to information is also used for more
65 precise tracking of call-clobbered and call-used variables and
66 related disambiguations.
68 This file contains functions for disambiguating memory references,
69 the so called alias-oracle and tools for walking of the gimple IL.
71 The main alias-oracle entry-points are
73 bool stmt_may_clobber_ref_p (gimple, tree)
75 This function queries if a statement may invalidate (parts of)
76 the memory designated by the reference tree argument.
78 bool ref_maybe_used_by_stmt_p (gimple, tree)
80 This function queries if a statement may need (parts of) the
81 memory designated by the reference tree argument.
83 There are variants of these functions that only handle the call
84 part of a statement, call_may_clobber_ref_p and ref_maybe_used_by_call_p.
85 Note that these do not disambiguate against a possible call lhs.
87 bool refs_may_alias_p (tree, tree)
89 This function tries to disambiguate two reference trees.
91 bool ptr_deref_may_alias_global_p (tree)
93 This function queries if dereferencing a pointer variable may
96 More low-level disambiguators are available and documented in
97 this file. Low-level disambiguators dealing with points-to
98 information are in tree-ssa-structalias.c. */
101 /* Query statistics for the different low-level disambiguators.
102 A high-level query may trigger multiple of them. */
105 unsigned HOST_WIDE_INT refs_may_alias_p_may_alias
;
106 unsigned HOST_WIDE_INT refs_may_alias_p_no_alias
;
107 unsigned HOST_WIDE_INT ref_maybe_used_by_call_p_may_alias
;
108 unsigned HOST_WIDE_INT ref_maybe_used_by_call_p_no_alias
;
109 unsigned HOST_WIDE_INT call_may_clobber_ref_p_may_alias
;
110 unsigned HOST_WIDE_INT call_may_clobber_ref_p_no_alias
;
114 dump_alias_stats (FILE *s
)
116 fprintf (s
, "\nAlias oracle query stats:\n");
117 fprintf (s
, " refs_may_alias_p: "
118 HOST_WIDE_INT_PRINT_DEC
" disambiguations, "
119 HOST_WIDE_INT_PRINT_DEC
" queries\n",
120 alias_stats
.refs_may_alias_p_no_alias
,
121 alias_stats
.refs_may_alias_p_no_alias
122 + alias_stats
.refs_may_alias_p_may_alias
);
123 fprintf (s
, " ref_maybe_used_by_call_p: "
124 HOST_WIDE_INT_PRINT_DEC
" disambiguations, "
125 HOST_WIDE_INT_PRINT_DEC
" queries\n",
126 alias_stats
.ref_maybe_used_by_call_p_no_alias
,
127 alias_stats
.refs_may_alias_p_no_alias
128 + alias_stats
.ref_maybe_used_by_call_p_may_alias
);
129 fprintf (s
, " call_may_clobber_ref_p: "
130 HOST_WIDE_INT_PRINT_DEC
" disambiguations, "
131 HOST_WIDE_INT_PRINT_DEC
" queries\n",
132 alias_stats
.call_may_clobber_ref_p_no_alias
,
133 alias_stats
.call_may_clobber_ref_p_no_alias
134 + alias_stats
.call_may_clobber_ref_p_may_alias
);
138 /* Return true, if dereferencing PTR may alias with a global variable. */
141 ptr_deref_may_alias_global_p (tree ptr
)
143 struct ptr_info_def
*pi
;
145 /* If we end up with a pointer constant here that may point
147 if (TREE_CODE (ptr
) != SSA_NAME
)
150 pi
= SSA_NAME_PTR_INFO (ptr
);
152 /* If we do not have points-to information for this variable,
157 /* ??? This does not use TBAA to prune globals ptr may not access. */
158 return pt_solution_includes_global (&pi
->pt
);
161 /* Return true if dereferencing PTR may alias DECL.
162 The caller is responsible for applying TBAA to see if PTR
163 may access DECL at all. */
166 ptr_deref_may_alias_decl_p (tree ptr
, tree decl
)
168 struct ptr_info_def
*pi
;
170 gcc_assert ((TREE_CODE (ptr
) == SSA_NAME
171 || TREE_CODE (ptr
) == ADDR_EXPR
172 || TREE_CODE (ptr
) == INTEGER_CST
)
173 && (TREE_CODE (decl
) == VAR_DECL
174 || TREE_CODE (decl
) == PARM_DECL
175 || TREE_CODE (decl
) == RESULT_DECL
));
177 /* Non-aliased variables can not be pointed to. */
178 if (!may_be_aliased (decl
))
181 /* ADDR_EXPR pointers either just offset another pointer or directly
182 specify the pointed-to set. */
183 if (TREE_CODE (ptr
) == ADDR_EXPR
)
185 tree base
= get_base_address (TREE_OPERAND (ptr
, 0));
187 && INDIRECT_REF_P (base
))
188 ptr
= TREE_OPERAND (base
, 0);
193 && CONSTANT_CLASS_P (base
))
199 /* We can end up with dereferencing constant pointers.
200 Just bail out in this case. */
201 if (TREE_CODE (ptr
) == INTEGER_CST
)
204 /* If we do not have useful points-to information for this pointer
205 we cannot disambiguate anything else. */
206 pi
= SSA_NAME_PTR_INFO (ptr
);
210 /* If the decl can be used as a restrict tag and we have a restrict
211 pointer and that pointers points-to set doesn't contain this decl
212 then they can't alias. */
213 if (DECL_RESTRICTED_P (decl
)
214 && TYPE_RESTRICT (TREE_TYPE (ptr
))
215 && pi
->pt
.vars_contains_restrict
)
216 return bitmap_bit_p (pi
->pt
.vars
, DECL_PT_UID (decl
));
218 return pt_solution_includes (&pi
->pt
, decl
);
221 /* Return true if dereferenced PTR1 and PTR2 may alias.
222 The caller is responsible for applying TBAA to see if accesses
223 through PTR1 and PTR2 may conflict at all. */
226 ptr_derefs_may_alias_p (tree ptr1
, tree ptr2
)
228 struct ptr_info_def
*pi1
, *pi2
;
230 gcc_assert ((TREE_CODE (ptr1
) == SSA_NAME
231 || TREE_CODE (ptr1
) == ADDR_EXPR
232 || TREE_CODE (ptr1
) == INTEGER_CST
)
233 && (TREE_CODE (ptr2
) == SSA_NAME
234 || TREE_CODE (ptr2
) == ADDR_EXPR
235 || TREE_CODE (ptr2
) == INTEGER_CST
));
237 /* ADDR_EXPR pointers either just offset another pointer or directly
238 specify the pointed-to set. */
239 if (TREE_CODE (ptr1
) == ADDR_EXPR
)
241 tree base
= get_base_address (TREE_OPERAND (ptr1
, 0));
243 && INDIRECT_REF_P (base
))
244 ptr1
= TREE_OPERAND (base
, 0);
247 return ptr_deref_may_alias_decl_p (ptr2
, base
);
251 if (TREE_CODE (ptr2
) == ADDR_EXPR
)
253 tree base
= get_base_address (TREE_OPERAND (ptr2
, 0));
255 && INDIRECT_REF_P (base
))
256 ptr2
= TREE_OPERAND (base
, 0);
259 return ptr_deref_may_alias_decl_p (ptr1
, base
);
264 /* We can end up with dereferencing constant pointers.
265 Just bail out in this case. */
266 if (TREE_CODE (ptr1
) == INTEGER_CST
267 || TREE_CODE (ptr2
) == INTEGER_CST
)
270 /* We may end up with two empty points-to solutions for two same pointers.
271 In this case we still want to say both pointers alias, so shortcut
276 /* If we do not have useful points-to information for either pointer
277 we cannot disambiguate anything else. */
278 pi1
= SSA_NAME_PTR_INFO (ptr1
);
279 pi2
= SSA_NAME_PTR_INFO (ptr2
);
283 /* If both pointers are restrict-qualified try to disambiguate
284 with restrict information. */
285 if (TYPE_RESTRICT (TREE_TYPE (ptr1
))
286 && TYPE_RESTRICT (TREE_TYPE (ptr2
))
287 && !pt_solutions_same_restrict_base (&pi1
->pt
, &pi2
->pt
))
290 /* ??? This does not use TBAA to prune decls from the intersection
291 that not both pointers may access. */
292 return pt_solutions_intersect (&pi1
->pt
, &pi2
->pt
);
295 /* Return true if dereferencing PTR may alias *REF.
296 The caller is responsible for applying TBAA to see if PTR
297 may access *REF at all. */
300 ptr_deref_may_alias_ref_p_1 (tree ptr
, ao_ref
*ref
)
302 tree base
= ao_ref_base (ref
);
304 if (INDIRECT_REF_P (base
))
305 return ptr_derefs_may_alias_p (ptr
, TREE_OPERAND (base
, 0));
306 else if (SSA_VAR_P (base
))
307 return ptr_deref_may_alias_decl_p (ptr
, base
);
313 /* Dump alias information on FILE. */
316 dump_alias_info (FILE *file
)
320 = lang_hooks
.decl_printable_name (current_function_decl
, 2);
321 referenced_var_iterator rvi
;
324 fprintf (file
, "\n\nAlias information for %s\n\n", funcname
);
326 fprintf (file
, "Aliased symbols\n\n");
328 FOR_EACH_REFERENCED_VAR (var
, rvi
)
330 if (may_be_aliased (var
))
331 dump_variable (file
, var
);
334 fprintf (file
, "\nCall clobber information\n");
336 fprintf (file
, "\nESCAPED");
337 dump_points_to_solution (file
, &cfun
->gimple_df
->escaped
);
339 fprintf (file
, "\n\nFlow-insensitive points-to information\n\n");
341 for (i
= 1; i
< num_ssa_names
; i
++)
343 tree ptr
= ssa_name (i
);
344 struct ptr_info_def
*pi
;
347 || SSA_NAME_IN_FREE_LIST (ptr
))
350 pi
= SSA_NAME_PTR_INFO (ptr
);
352 dump_points_to_info_for (file
, ptr
);
355 fprintf (file
, "\n");
359 /* Dump alias information on stderr. */
362 debug_alias_info (void)
364 dump_alias_info (stderr
);
368 /* Return the alias information associated with pointer T. It creates a
369 new instance if none existed. */
371 struct ptr_info_def
*
372 get_ptr_info (tree t
)
374 struct ptr_info_def
*pi
;
376 gcc_assert (POINTER_TYPE_P (TREE_TYPE (t
)));
378 pi
= SSA_NAME_PTR_INFO (t
);
381 pi
= GGC_CNEW (struct ptr_info_def
);
382 pt_solution_reset (&pi
->pt
);
383 SSA_NAME_PTR_INFO (t
) = pi
;
389 /* Dump the points-to set *PT into FILE. */
392 dump_points_to_solution (FILE *file
, struct pt_solution
*pt
)
395 fprintf (file
, ", points-to anything");
398 fprintf (file
, ", points-to non-local");
401 fprintf (file
, ", points-to escaped");
404 fprintf (file
, ", points-to unit escaped");
407 fprintf (file
, ", points-to NULL");
411 fprintf (file
, ", points-to vars: ");
412 dump_decl_set (file
, pt
->vars
);
413 if (pt
->vars_contains_global
)
414 fprintf (file
, " (includes global vars)");
415 if (pt
->vars_contains_restrict
)
416 fprintf (file
, " (includes restrict tags)");
420 /* Dump points-to information for SSA_NAME PTR into FILE. */
423 dump_points_to_info_for (FILE *file
, tree ptr
)
425 struct ptr_info_def
*pi
= SSA_NAME_PTR_INFO (ptr
);
427 print_generic_expr (file
, ptr
, dump_flags
);
430 dump_points_to_solution (file
, &pi
->pt
);
432 fprintf (file
, ", points-to anything");
434 fprintf (file
, "\n");
438 /* Dump points-to information for VAR into stderr. */
441 debug_points_to_info_for (tree var
)
443 dump_points_to_info_for (stderr
, var
);
447 /* Initializes the alias-oracle reference representation *R from REF. */
450 ao_ref_init (ao_ref
*r
, tree ref
)
457 r
->ref_alias_set
= -1;
458 r
->base_alias_set
= -1;
461 /* Returns the base object of the memory reference *REF. */
464 ao_ref_base (ao_ref
*ref
)
468 ref
->base
= get_ref_base_and_extent (ref
->ref
, &ref
->offset
, &ref
->size
,
473 /* Returns the base object alias set of the memory reference *REF. */
475 static alias_set_type ATTRIBUTE_UNUSED
476 ao_ref_base_alias_set (ao_ref
*ref
)
478 if (ref
->base_alias_set
!= -1)
479 return ref
->base_alias_set
;
480 ref
->base_alias_set
= get_alias_set (ao_ref_base (ref
));
481 return ref
->base_alias_set
;
484 /* Returns the reference alias set of the memory reference *REF. */
487 ao_ref_alias_set (ao_ref
*ref
)
489 if (ref
->ref_alias_set
!= -1)
490 return ref
->ref_alias_set
;
491 ref
->ref_alias_set
= get_alias_set (ref
->ref
);
492 return ref
->ref_alias_set
;
495 /* Init an alias-oracle reference representation from a gimple pointer
496 PTR and a gimple size SIZE in bytes. If SIZE is NULL_TREE the the
497 size is assumed to be unknown. The access is assumed to be only
498 to or after of the pointer target, not before it. */
501 ao_ref_init_from_ptr_and_size (ao_ref
*ref
, tree ptr
, tree size
)
503 HOST_WIDE_INT t1
, t2
;
504 ref
->ref
= NULL_TREE
;
505 if (TREE_CODE (ptr
) == ADDR_EXPR
)
506 ref
->base
= get_ref_base_and_extent (TREE_OPERAND (ptr
, 0),
507 &ref
->offset
, &t1
, &t2
);
510 ref
->base
= build1 (INDIRECT_REF
, char_type_node
, ptr
);
514 && host_integerp (size
, 0)
515 && TREE_INT_CST_LOW (size
) * 8 / 8 == TREE_INT_CST_LOW (size
))
516 ref
->max_size
= ref
->size
= TREE_INT_CST_LOW (size
) * 8;
518 ref
->max_size
= ref
->size
= -1;
519 ref
->ref_alias_set
= 0;
520 ref
->base_alias_set
= 0;
523 /* Return 1 if TYPE1 and TYPE2 are to be considered equivalent for the
524 purpose of TBAA. Return 0 if they are distinct and -1 if we cannot
528 same_type_for_tbaa (tree type1
, tree type2
)
530 type1
= TYPE_MAIN_VARIANT (type1
);
531 type2
= TYPE_MAIN_VARIANT (type2
);
533 /* If we would have to do structural comparison bail out. */
534 if (TYPE_STRUCTURAL_EQUALITY_P (type1
)
535 || TYPE_STRUCTURAL_EQUALITY_P (type2
))
538 /* Compare the canonical types. */
539 if (TYPE_CANONICAL (type1
) == TYPE_CANONICAL (type2
))
542 /* ??? Array types are not properly unified in all cases as we have
543 spurious changes in the index types for example. Removing this
544 causes all sorts of problems with the Fortran frontend. */
545 if (TREE_CODE (type1
) == ARRAY_TYPE
546 && TREE_CODE (type2
) == ARRAY_TYPE
)
549 /* ??? In Ada, an lvalue of an unconstrained type can be used to access an
550 object of one of its constrained subtypes, e.g. when a function with an
551 unconstrained parameter passed by reference is called on an object and
552 inlined. But, even in the case of a fixed size, type and subtypes are
553 not equivalent enough as to share the same TYPE_CANONICAL, since this
554 would mean that conversions between them are useless, whereas they are
555 not (e.g. type and subtypes can have different modes). So, in the end,
556 they are only guaranteed to have the same alias set. */
557 if (get_alias_set (type1
) == get_alias_set (type2
))
560 /* The types are known to be not equal. */
564 /* Determine if the two component references REF1 and REF2 which are
565 based on access types TYPE1 and TYPE2 and of which at least one is based
566 on an indirect reference may alias. REF2 is the only one that can
567 be a decl in which case REF2_IS_DECL is true.
568 REF1_ALIAS_SET, BASE1_ALIAS_SET, REF2_ALIAS_SET and BASE2_ALIAS_SET
569 are the respective alias sets. */
572 aliasing_component_refs_p (tree ref1
, tree type1
,
573 alias_set_type ref1_alias_set
,
574 alias_set_type base1_alias_set
,
575 HOST_WIDE_INT offset1
, HOST_WIDE_INT max_size1
,
576 tree ref2
, tree type2
,
577 alias_set_type ref2_alias_set
,
578 alias_set_type base2_alias_set
,
579 HOST_WIDE_INT offset2
, HOST_WIDE_INT max_size2
,
582 /* If one reference is a component references through pointers try to find a
583 common base and apply offset based disambiguation. This handles
585 struct A { int i; int j; } *q;
586 struct B { struct A a; int k; } *p;
587 disambiguating q->i and p->a.j. */
591 /* Now search for the type1 in the access path of ref2. This
592 would be a common base for doing offset based disambiguation on. */
594 while (handled_component_p (*refp
)
595 && same_type_for_tbaa (TREE_TYPE (*refp
), type1
) == 0)
596 refp
= &TREE_OPERAND (*refp
, 0);
597 same_p
= same_type_for_tbaa (TREE_TYPE (*refp
), type1
);
598 /* If we couldn't compare types we have to bail out. */
601 else if (same_p
== 1)
603 HOST_WIDE_INT offadj
, sztmp
, msztmp
;
604 get_ref_base_and_extent (*refp
, &offadj
, &sztmp
, &msztmp
);
606 return ranges_overlap_p (offset1
, max_size1
, offset2
, max_size2
);
608 /* If we didn't find a common base, try the other way around. */
610 while (handled_component_p (*refp
)
611 && same_type_for_tbaa (TREE_TYPE (*refp
), type2
) == 0)
612 refp
= &TREE_OPERAND (*refp
, 0);
613 same_p
= same_type_for_tbaa (TREE_TYPE (*refp
), type2
);
614 /* If we couldn't compare types we have to bail out. */
617 else if (same_p
== 1)
619 HOST_WIDE_INT offadj
, sztmp
, msztmp
;
620 get_ref_base_and_extent (*refp
, &offadj
, &sztmp
, &msztmp
);
622 return ranges_overlap_p (offset1
, max_size1
, offset2
, max_size2
);
625 /* If we have two type access paths B1.path1 and B2.path2 they may
626 only alias if either B1 is in B2.path2 or B2 is in B1.path1.
627 But we can still have a path that goes B1.path1...B2.path2 with
628 a part that we do not see. So we can only disambiguate now
629 if there is no B2 in the tail of path1 and no B1 on the
631 if (base1_alias_set
== ref2_alias_set
632 || alias_set_subset_of (base1_alias_set
, ref2_alias_set
))
634 /* If this is ptr vs. decl then we know there is no ptr ... decl path. */
636 return (base2_alias_set
== ref1_alias_set
637 || alias_set_subset_of (base2_alias_set
, ref1_alias_set
));
641 /* Return true if two memory references based on the variables BASE1
642 and BASE2 constrained to [OFFSET1, OFFSET1 + MAX_SIZE1) and
643 [OFFSET2, OFFSET2 + MAX_SIZE2) may alias. */
646 decl_refs_may_alias_p (tree base1
,
647 HOST_WIDE_INT offset1
, HOST_WIDE_INT max_size1
,
649 HOST_WIDE_INT offset2
, HOST_WIDE_INT max_size2
)
651 gcc_assert (SSA_VAR_P (base1
) && SSA_VAR_P (base2
));
653 /* If both references are based on different variables, they cannot alias. */
657 /* If both references are based on the same variable, they cannot alias if
658 the accesses do not overlap. */
659 return ranges_overlap_p (offset1
, max_size1
, offset2
, max_size2
);
662 /* Return true if an indirect reference based on *PTR1 constrained
663 to [OFFSET1, OFFSET1 + MAX_SIZE1) may alias a variable based on BASE2
664 constrained to [OFFSET2, OFFSET2 + MAX_SIZE2). *PTR1 and BASE2 have
665 the alias sets BASE1_ALIAS_SET and BASE2_ALIAS_SET which can be -1
666 in which case they are computed on-demand. REF1 and REF2
667 if non-NULL are the complete memory reference trees. */
670 indirect_ref_may_alias_decl_p (tree ref1
, tree ptr1
,
671 HOST_WIDE_INT offset1
, HOST_WIDE_INT max_size1
,
672 alias_set_type ref1_alias_set
,
673 alias_set_type base1_alias_set
,
674 tree ref2
, tree base2
,
675 HOST_WIDE_INT offset2
, HOST_WIDE_INT max_size2
,
676 alias_set_type ref2_alias_set
,
677 alias_set_type base2_alias_set
)
679 /* If only one reference is based on a variable, they cannot alias if
680 the pointer access is beyond the extent of the variable access.
681 (the pointer base cannot validly point to an offset less than zero
683 They also cannot alias if the pointer may not point to the decl. */
685 && !ranges_overlap_p (offset1
, max_size1
, 0, offset2
+ max_size2
))
687 if (!ptr_deref_may_alias_decl_p (ptr1
, base2
))
690 /* Disambiguations that rely on strict aliasing rules follow. */
691 if (!flag_strict_aliasing
)
694 /* If the alias set for a pointer access is zero all bets are off. */
695 if (base1_alias_set
== -1)
696 base1_alias_set
= get_deref_alias_set (ptr1
);
697 if (base1_alias_set
== 0)
699 if (base2_alias_set
== -1)
700 base2_alias_set
= get_alias_set (base2
);
702 /* If both references are through the same type, they do not alias
703 if the accesses do not overlap. This does extra disambiguation
704 for mixed/pointer accesses but requires strict aliasing. */
705 if (same_type_for_tbaa (TREE_TYPE (TREE_TYPE (ptr1
)),
706 TREE_TYPE (base2
)) == 1)
707 return ranges_overlap_p (offset1
, max_size1
, offset2
, max_size2
);
709 /* The only way to access a variable is through a pointer dereference
710 of the same alias set or a subset of it. */
711 if (base1_alias_set
!= base2_alias_set
712 && !alias_set_subset_of (base1_alias_set
, base2_alias_set
))
715 /* Do access-path based disambiguation. */
717 && handled_component_p (ref1
)
718 && handled_component_p (ref2
))
719 return aliasing_component_refs_p (ref1
, TREE_TYPE (TREE_TYPE (ptr1
)),
720 ref1_alias_set
, base1_alias_set
,
722 ref2
, TREE_TYPE (base2
),
723 ref2_alias_set
, base2_alias_set
,
724 offset2
, max_size2
, true);
729 /* Return true if two indirect references based on *PTR1
730 and *PTR2 constrained to [OFFSET1, OFFSET1 + MAX_SIZE1) and
731 [OFFSET2, OFFSET2 + MAX_SIZE2) may alias. *PTR1 and *PTR2 have
732 the alias sets BASE1_ALIAS_SET and BASE2_ALIAS_SET which can be -1
733 in which case they are computed on-demand. REF1 and REF2
734 if non-NULL are the complete memory reference trees. */
737 indirect_refs_may_alias_p (tree ref1
, tree ptr1
,
738 HOST_WIDE_INT offset1
, HOST_WIDE_INT max_size1
,
739 alias_set_type ref1_alias_set
,
740 alias_set_type base1_alias_set
,
741 tree ref2
, tree ptr2
,
742 HOST_WIDE_INT offset2
, HOST_WIDE_INT max_size2
,
743 alias_set_type ref2_alias_set
,
744 alias_set_type base2_alias_set
)
746 /* If both bases are based on pointers they cannot alias if they may not
747 point to the same memory object or if they point to the same object
748 and the accesses do not overlap. */
749 if (operand_equal_p (ptr1
, ptr2
, 0))
750 return ranges_overlap_p (offset1
, max_size1
, offset2
, max_size2
);
751 if (!ptr_derefs_may_alias_p (ptr1
, ptr2
))
754 /* Disambiguations that rely on strict aliasing rules follow. */
755 if (!flag_strict_aliasing
)
758 /* If the alias set for a pointer access is zero all bets are off. */
759 if (base1_alias_set
== -1)
760 base1_alias_set
= get_deref_alias_set (ptr1
);
761 if (base1_alias_set
== 0)
763 if (base2_alias_set
== -1)
764 base2_alias_set
= get_deref_alias_set (ptr2
);
765 if (base2_alias_set
== 0)
768 /* If both references are through the same type, they do not alias
769 if the accesses do not overlap. This does extra disambiguation
770 for mixed/pointer accesses but requires strict aliasing. */
771 if (same_type_for_tbaa (TREE_TYPE (TREE_TYPE (ptr1
)),
772 TREE_TYPE (TREE_TYPE (ptr2
))) == 1)
773 return ranges_overlap_p (offset1
, max_size1
, offset2
, max_size2
);
775 /* Do type-based disambiguation. */
776 if (base1_alias_set
!= base2_alias_set
777 && !alias_sets_conflict_p (base1_alias_set
, base2_alias_set
))
780 /* Do access-path based disambiguation. */
782 && handled_component_p (ref1
)
783 && handled_component_p (ref2
))
784 return aliasing_component_refs_p (ref1
, TREE_TYPE (TREE_TYPE (ptr1
)),
785 ref1_alias_set
, base1_alias_set
,
787 ref2
, TREE_TYPE (TREE_TYPE (ptr2
)),
788 ref2_alias_set
, base2_alias_set
,
789 offset2
, max_size2
, false);
794 /* Return true, if the two memory references REF1 and REF2 may alias. */
797 refs_may_alias_p_1 (ao_ref
*ref1
, ao_ref
*ref2
, bool tbaa_p
)
800 HOST_WIDE_INT offset1
= 0, offset2
= 0;
801 HOST_WIDE_INT max_size1
= -1, max_size2
= -1;
802 bool var1_p
, var2_p
, ind1_p
, ind2_p
;
805 gcc_assert ((!ref1
->ref
806 || SSA_VAR_P (ref1
->ref
)
807 || handled_component_p (ref1
->ref
)
808 || INDIRECT_REF_P (ref1
->ref
)
809 || TREE_CODE (ref1
->ref
) == TARGET_MEM_REF
810 || TREE_CODE (ref1
->ref
) == CONST_DECL
)
812 || SSA_VAR_P (ref2
->ref
)
813 || handled_component_p (ref2
->ref
)
814 || INDIRECT_REF_P (ref2
->ref
)
815 || TREE_CODE (ref2
->ref
) == TARGET_MEM_REF
816 || TREE_CODE (ref2
->ref
) == CONST_DECL
));
818 /* Decompose the references into their base objects and the access. */
819 base1
= ao_ref_base (ref1
);
820 offset1
= ref1
->offset
;
821 max_size1
= ref1
->max_size
;
822 base2
= ao_ref_base (ref2
);
823 offset2
= ref2
->offset
;
824 max_size2
= ref2
->max_size
;
826 /* We can end up with registers or constants as bases for example from
827 *D.1663_44 = VIEW_CONVERT_EXPR<struct DB_LSN>(__tmp$B0F64_59);
828 which is seen as a struct copy. */
829 if (TREE_CODE (base1
) == SSA_NAME
830 || TREE_CODE (base2
) == SSA_NAME
831 || TREE_CODE (base1
) == CONST_DECL
832 || TREE_CODE (base2
) == CONST_DECL
833 || is_gimple_min_invariant (base1
)
834 || is_gimple_min_invariant (base2
))
837 /* We can end up refering to code via function decls. As we likely
838 do not properly track code aliases conservatively bail out. */
839 if (TREE_CODE (base1
) == FUNCTION_DECL
840 || TREE_CODE (base2
) == FUNCTION_DECL
)
843 /* Defer to simple offset based disambiguation if we have
844 references based on two decls. Do this before defering to
845 TBAA to handle must-alias cases in conformance with the
846 GCC extension of allowing type-punning through unions. */
847 var1_p
= SSA_VAR_P (base1
);
848 var2_p
= SSA_VAR_P (base2
);
849 if (var1_p
&& var2_p
)
850 return decl_refs_may_alias_p (base1
, offset1
, max_size1
,
851 base2
, offset2
, max_size2
);
853 ind1_p
= INDIRECT_REF_P (base1
);
854 ind2_p
= INDIRECT_REF_P (base2
);
855 /* Canonicalize the pointer-vs-decl case. */
856 if (ind1_p
&& var2_p
)
861 tmp1
= offset1
; offset1
= offset2
; offset2
= tmp1
;
862 tmp1
= max_size1
; max_size1
= max_size2
; max_size2
= tmp1
;
863 tmp2
= base1
; base1
= base2
; base2
= tmp2
;
864 tmp3
= ref1
; ref1
= ref2
; ref2
= tmp3
;
871 /* If we are about to disambiguate pointer-vs-decl try harder to
872 see must-aliases and give leeway to some invalid cases.
873 This covers a pretty minimal set of cases only and does not
874 when called from the RTL oracle. It handles cases like
879 and also fixes gfortran.dg/lto/pr40725. */
882 && gimple_in_ssa_p (cfun
)
883 && TREE_CODE (TREE_OPERAND (base2
, 0)) == SSA_NAME
)
885 gimple def_stmt
= SSA_NAME_DEF_STMT (TREE_OPERAND (base2
, 0));
886 while (is_gimple_assign (def_stmt
)
887 && (gimple_assign_rhs_code (def_stmt
) == SSA_NAME
888 || CONVERT_EXPR_CODE_P (gimple_assign_rhs_code (def_stmt
))))
890 tree rhs
= gimple_assign_rhs1 (def_stmt
);
891 HOST_WIDE_INT offset
, size
, max_size
;
893 /* Look through SSA name copies and pointer conversions. */
894 if (TREE_CODE (rhs
) == SSA_NAME
895 && POINTER_TYPE_P (TREE_TYPE (rhs
)))
897 def_stmt
= SSA_NAME_DEF_STMT (rhs
);
900 if (TREE_CODE (rhs
) != ADDR_EXPR
)
903 /* If the pointer is defined as an address based on a decl
904 use plain offset disambiguation and ignore TBAA. */
905 rhs
= TREE_OPERAND (rhs
, 0);
906 rhs
= get_ref_base_and_extent (rhs
, &offset
, &size
, &max_size
);
914 return decl_refs_may_alias_p (base1
, offset1
, max_size1
,
915 base2
, offset2
, max_size2
);
918 /* Do not continue looking through &p->x to limit time
924 /* First defer to TBAA if possible. */
926 && flag_strict_aliasing
927 && !alias_sets_conflict_p (ao_ref_alias_set (ref1
),
928 ao_ref_alias_set (ref2
)))
931 /* If one reference is a TARGET_MEM_REF weird things are allowed. Still
932 TBAA disambiguation based on the access type is possible, so bail
933 out only after that check. */
934 if ((ref1
->ref
&& TREE_CODE (ref1
->ref
) == TARGET_MEM_REF
)
935 || (ref2
->ref
&& TREE_CODE (ref2
->ref
) == TARGET_MEM_REF
))
938 /* Dispatch to the pointer-vs-decl or pointer-vs-pointer disambiguators. */
939 set
= tbaa_p
? -1 : 0;
940 if (var1_p
&& ind2_p
)
941 return indirect_ref_may_alias_decl_p (ref2
->ref
, TREE_OPERAND (base2
, 0),
943 ao_ref_alias_set (ref2
), set
,
946 ao_ref_alias_set (ref1
), set
);
947 else if (ind1_p
&& ind2_p
)
948 return indirect_refs_may_alias_p (ref1
->ref
, TREE_OPERAND (base1
, 0),
950 ao_ref_alias_set (ref1
), set
,
951 ref2
->ref
, TREE_OPERAND (base2
, 0),
953 ao_ref_alias_set (ref2
), set
);
959 refs_may_alias_p (tree ref1
, tree ref2
)
963 ao_ref_init (&r1
, ref1
);
964 ao_ref_init (&r2
, ref2
);
965 res
= refs_may_alias_p_1 (&r1
, &r2
, true);
967 ++alias_stats
.refs_may_alias_p_may_alias
;
969 ++alias_stats
.refs_may_alias_p_no_alias
;
973 /* Returns true if there is a anti-dependence for the STORE that
974 executes after the LOAD. */
977 refs_anti_dependent_p (tree load
, tree store
)
980 ao_ref_init (&r1
, load
);
981 ao_ref_init (&r2
, store
);
982 return refs_may_alias_p_1 (&r1
, &r2
, false);
985 /* Returns true if there is a output dependence for the stores
986 STORE1 and STORE2. */
989 refs_output_dependent_p (tree store1
, tree store2
)
992 ao_ref_init (&r1
, store1
);
993 ao_ref_init (&r2
, store2
);
994 return refs_may_alias_p_1 (&r1
, &r2
, false);
997 /* If the call CALL may use the memory reference REF return true,
998 otherwise return false. */
1001 ref_maybe_used_by_call_p_1 (gimple call
, ao_ref
*ref
)
1005 int flags
= gimple_call_flags (call
);
1007 /* Const functions without a static chain do not implicitly use memory. */
1008 if (!gimple_call_chain (call
)
1009 && (flags
& (ECF_CONST
|ECF_NOVOPS
)))
1012 base
= ao_ref_base (ref
);
1016 /* If the reference is based on a decl that is not aliased the call
1017 cannot possibly use it. */
1019 && !may_be_aliased (base
)
1020 /* But local statics can be used through recursion. */
1021 && !is_global_var (base
))
1024 callee
= gimple_call_fndecl (call
);
1026 /* Handle those builtin functions explicitly that do not act as
1027 escape points. See tree-ssa-structalias.c:find_func_aliases
1028 for the list of builtins we might need to handle here. */
1029 if (callee
!= NULL_TREE
1030 && DECL_BUILT_IN_CLASS (callee
) == BUILT_IN_NORMAL
)
1031 switch (DECL_FUNCTION_CODE (callee
))
1033 /* All the following functions clobber memory pointed to by
1034 their first argument. */
1035 case BUILT_IN_STRCPY
:
1036 case BUILT_IN_STRNCPY
:
1037 case BUILT_IN_MEMCPY
:
1038 case BUILT_IN_MEMMOVE
:
1039 case BUILT_IN_MEMPCPY
:
1040 case BUILT_IN_STPCPY
:
1041 case BUILT_IN_STPNCPY
:
1042 case BUILT_IN_STRCAT
:
1043 case BUILT_IN_STRNCAT
:
1046 tree size
= NULL_TREE
;
1047 if (gimple_call_num_args (call
) == 3)
1048 size
= gimple_call_arg (call
, 2);
1049 ao_ref_init_from_ptr_and_size (&dref
,
1050 gimple_call_arg (call
, 1),
1052 return refs_may_alias_p_1 (&dref
, ref
, false);
1054 case BUILT_IN_BCOPY
:
1057 tree size
= gimple_call_arg (call
, 2);
1058 ao_ref_init_from_ptr_and_size (&dref
,
1059 gimple_call_arg (call
, 0),
1061 return refs_may_alias_p_1 (&dref
, ref
, false);
1063 /* The following builtins do not read from memory. */
1065 case BUILT_IN_MALLOC
:
1066 case BUILT_IN_CALLOC
:
1067 case BUILT_IN_MEMSET
:
1068 case BUILT_IN_FREXP
:
1069 case BUILT_IN_FREXPF
:
1070 case BUILT_IN_FREXPL
:
1071 case BUILT_IN_GAMMA_R
:
1072 case BUILT_IN_GAMMAF_R
:
1073 case BUILT_IN_GAMMAL_R
:
1074 case BUILT_IN_LGAMMA_R
:
1075 case BUILT_IN_LGAMMAF_R
:
1076 case BUILT_IN_LGAMMAL_R
:
1078 case BUILT_IN_MODFF
:
1079 case BUILT_IN_MODFL
:
1080 case BUILT_IN_REMQUO
:
1081 case BUILT_IN_REMQUOF
:
1082 case BUILT_IN_REMQUOL
:
1083 case BUILT_IN_SINCOS
:
1084 case BUILT_IN_SINCOSF
:
1085 case BUILT_IN_SINCOSL
:
1089 /* Fallthru to general call handling. */;
1092 /* Check if base is a global static variable that is not read
1094 if (TREE_CODE (base
) == VAR_DECL
1095 && TREE_STATIC (base
))
1099 if (callee
!= NULL_TREE
1101 = ipa_reference_get_not_read_global (cgraph_node (callee
)))
1102 && bitmap_bit_p (not_read
, DECL_UID (base
)))
1106 /* Check if the base variable is call-used. */
1109 if (pt_solution_includes (gimple_call_use_set (call
), base
))
1112 else if (INDIRECT_REF_P (base
)
1113 && TREE_CODE (TREE_OPERAND (base
, 0)) == SSA_NAME
)
1115 struct ptr_info_def
*pi
= SSA_NAME_PTR_INFO (TREE_OPERAND (base
, 0));
1119 if (pt_solutions_intersect (gimple_call_use_set (call
), &pi
->pt
))
1125 /* Inspect call arguments for passed-by-value aliases. */
1127 for (i
= 0; i
< gimple_call_num_args (call
); ++i
)
1129 tree op
= gimple_call_arg (call
, i
);
1130 int flags
= gimple_call_arg_flags (call
, i
);
1132 if (flags
& EAF_UNUSED
)
1135 if (TREE_CODE (op
) == WITH_SIZE_EXPR
)
1136 op
= TREE_OPERAND (op
, 0);
1138 if (TREE_CODE (op
) != SSA_NAME
1139 && !is_gimple_min_invariant (op
))
1142 ao_ref_init (&r
, op
);
1143 if (refs_may_alias_p_1 (&r
, ref
, true))
1152 ref_maybe_used_by_call_p (gimple call
, tree ref
)
1156 ao_ref_init (&r
, ref
);
1157 res
= ref_maybe_used_by_call_p_1 (call
, &r
);
1159 ++alias_stats
.ref_maybe_used_by_call_p_may_alias
;
1161 ++alias_stats
.ref_maybe_used_by_call_p_no_alias
;
1166 /* If the statement STMT may use the memory reference REF return
1167 true, otherwise return false. */
1170 ref_maybe_used_by_stmt_p (gimple stmt
, tree ref
)
1172 if (is_gimple_assign (stmt
))
1176 /* All memory assign statements are single. */
1177 if (!gimple_assign_single_p (stmt
))
1180 rhs
= gimple_assign_rhs1 (stmt
);
1181 if (is_gimple_reg (rhs
)
1182 || is_gimple_min_invariant (rhs
)
1183 || gimple_assign_rhs_code (stmt
) == CONSTRUCTOR
)
1186 return refs_may_alias_p (rhs
, ref
);
1188 else if (is_gimple_call (stmt
))
1189 return ref_maybe_used_by_call_p (stmt
, ref
);
1194 /* If the call in statement CALL may clobber the memory reference REF
1195 return true, otherwise return false. */
1198 call_may_clobber_ref_p_1 (gimple call
, ao_ref
*ref
)
1203 /* If the call is pure or const it cannot clobber anything. */
1204 if (gimple_call_flags (call
)
1205 & (ECF_PURE
|ECF_CONST
|ECF_LOOPING_CONST_OR_PURE
|ECF_NOVOPS
))
1208 base
= ao_ref_base (ref
);
1212 if (TREE_CODE (base
) == SSA_NAME
1213 || CONSTANT_CLASS_P (base
))
1216 /* If the reference is based on a decl that is not aliased the call
1217 cannot possibly clobber it. */
1219 && !may_be_aliased (base
)
1220 /* But local non-readonly statics can be modified through recursion
1221 or the call may implement a threading barrier which we must
1222 treat as may-def. */
1223 && (TREE_READONLY (base
)
1224 || !is_global_var (base
)))
1227 callee
= gimple_call_fndecl (call
);
1229 /* Handle those builtin functions explicitly that do not act as
1230 escape points. See tree-ssa-structalias.c:find_func_aliases
1231 for the list of builtins we might need to handle here. */
1232 if (callee
!= NULL_TREE
1233 && DECL_BUILT_IN_CLASS (callee
) == BUILT_IN_NORMAL
)
1234 switch (DECL_FUNCTION_CODE (callee
))
1236 /* All the following functions clobber memory pointed to by
1237 their first argument. */
1238 case BUILT_IN_STRCPY
:
1239 case BUILT_IN_STRNCPY
:
1240 case BUILT_IN_MEMCPY
:
1241 case BUILT_IN_MEMMOVE
:
1242 case BUILT_IN_MEMPCPY
:
1243 case BUILT_IN_STPCPY
:
1244 case BUILT_IN_STPNCPY
:
1245 case BUILT_IN_STRCAT
:
1246 case BUILT_IN_STRNCAT
:
1247 case BUILT_IN_MEMSET
:
1250 tree size
= NULL_TREE
;
1251 if (gimple_call_num_args (call
) == 3)
1252 size
= gimple_call_arg (call
, 2);
1253 ao_ref_init_from_ptr_and_size (&dref
,
1254 gimple_call_arg (call
, 0),
1256 return refs_may_alias_p_1 (&dref
, ref
, false);
1258 case BUILT_IN_BCOPY
:
1261 tree size
= gimple_call_arg (call
, 2);
1262 ao_ref_init_from_ptr_and_size (&dref
,
1263 gimple_call_arg (call
, 1),
1265 return refs_may_alias_p_1 (&dref
, ref
, false);
1267 /* Allocating memory does not have any side-effects apart from
1268 being the definition point for the pointer. */
1269 case BUILT_IN_MALLOC
:
1270 case BUILT_IN_CALLOC
:
1271 /* Unix98 specifies that errno is set on allocation failure.
1272 Until we properly can track the errno location assume it
1273 is not a local decl but external or anonymous storage in
1274 a different translation unit. Also assume it is of
1275 type int as required by the standard. */
1277 && TREE_TYPE (base
) == integer_type_node
)
1279 struct ptr_info_def
*pi
;
1281 && !TREE_STATIC (base
))
1283 else if (INDIRECT_REF_P (base
)
1284 && TREE_CODE (TREE_OPERAND (base
, 0)) == SSA_NAME
1285 && (pi
= SSA_NAME_PTR_INFO (TREE_OPERAND (base
, 0))))
1286 return pi
->pt
.anything
|| pi
->pt
.nonlocal
;
1289 /* Freeing memory kills the pointed-to memory. More importantly
1290 the call has to serve as a barrier for moving loads and stores
1294 tree ptr
= gimple_call_arg (call
, 0);
1295 return ptr_deref_may_alias_ref_p_1 (ptr
, ref
);
1297 case BUILT_IN_GAMMA_R
:
1298 case BUILT_IN_GAMMAF_R
:
1299 case BUILT_IN_GAMMAL_R
:
1300 case BUILT_IN_LGAMMA_R
:
1301 case BUILT_IN_LGAMMAF_R
:
1302 case BUILT_IN_LGAMMAL_R
:
1304 tree out
= gimple_call_arg (call
, 1);
1305 if (ptr_deref_may_alias_ref_p_1 (out
, ref
))
1307 if (flag_errno_math
)
1311 case BUILT_IN_FREXP
:
1312 case BUILT_IN_FREXPF
:
1313 case BUILT_IN_FREXPL
:
1315 case BUILT_IN_MODFF
:
1316 case BUILT_IN_MODFL
:
1318 tree out
= gimple_call_arg (call
, 1);
1319 return ptr_deref_may_alias_ref_p_1 (out
, ref
);
1321 case BUILT_IN_REMQUO
:
1322 case BUILT_IN_REMQUOF
:
1323 case BUILT_IN_REMQUOL
:
1325 tree out
= gimple_call_arg (call
, 2);
1326 if (ptr_deref_may_alias_ref_p_1 (out
, ref
))
1328 if (flag_errno_math
)
1332 case BUILT_IN_SINCOS
:
1333 case BUILT_IN_SINCOSF
:
1334 case BUILT_IN_SINCOSL
:
1336 tree sin
= gimple_call_arg (call
, 1);
1337 tree cos
= gimple_call_arg (call
, 2);
1338 return (ptr_deref_may_alias_ref_p_1 (sin
, ref
)
1339 || ptr_deref_may_alias_ref_p_1 (cos
, ref
));
1342 /* Fallthru to general call handling. */;
1345 /* Check if base is a global static variable that is not written
1347 if (callee
!= NULL_TREE
1348 && TREE_CODE (base
) == VAR_DECL
1349 && TREE_STATIC (base
))
1354 = ipa_reference_get_not_written_global (cgraph_node (callee
)))
1355 && bitmap_bit_p (not_written
, DECL_UID (base
)))
1359 /* Check if the base variable is call-clobbered. */
1361 return pt_solution_includes (gimple_call_clobber_set (call
), base
);
1362 else if (INDIRECT_REF_P (base
)
1363 && TREE_CODE (TREE_OPERAND (base
, 0)) == SSA_NAME
)
1365 struct ptr_info_def
*pi
= SSA_NAME_PTR_INFO (TREE_OPERAND (base
, 0));
1369 return pt_solutions_intersect (gimple_call_clobber_set (call
), &pi
->pt
);
1375 /* If the call in statement CALL may clobber the memory reference REF
1376 return true, otherwise return false. */
1379 call_may_clobber_ref_p (gimple call
, tree ref
)
1383 ao_ref_init (&r
, ref
);
1384 res
= call_may_clobber_ref_p_1 (call
, &r
);
1386 ++alias_stats
.call_may_clobber_ref_p_may_alias
;
1388 ++alias_stats
.call_may_clobber_ref_p_no_alias
;
1393 /* If the statement STMT may clobber the memory reference REF return true,
1394 otherwise return false. */
1397 stmt_may_clobber_ref_p_1 (gimple stmt
, ao_ref
*ref
)
1399 if (is_gimple_call (stmt
))
1401 tree lhs
= gimple_call_lhs (stmt
);
1403 && !is_gimple_reg (lhs
))
1406 ao_ref_init (&r
, lhs
);
1407 if (refs_may_alias_p_1 (ref
, &r
, true))
1411 return call_may_clobber_ref_p_1 (stmt
, ref
);
1413 else if (is_gimple_assign (stmt
))
1416 ao_ref_init (&r
, gimple_assign_lhs (stmt
));
1417 return refs_may_alias_p_1 (ref
, &r
, true);
1419 else if (gimple_code (stmt
) == GIMPLE_ASM
)
1426 stmt_may_clobber_ref_p (gimple stmt
, tree ref
)
1429 ao_ref_init (&r
, ref
);
1430 return stmt_may_clobber_ref_p_1 (stmt
, &r
);
1434 /* Walk the virtual use-def chain of VUSE until hitting the virtual operand
1435 TARGET or a statement clobbering the memory reference REF in which
1436 case false is returned. The walk starts with VUSE, one argument of PHI. */
1439 maybe_skip_until (gimple phi
, tree target
, ao_ref
*ref
,
1440 tree vuse
, bitmap
*visited
)
1443 *visited
= BITMAP_ALLOC (NULL
);
1445 bitmap_set_bit (*visited
, SSA_NAME_VERSION (PHI_RESULT (phi
)));
1447 /* Walk until we hit the target. */
1448 while (vuse
!= target
)
1450 gimple def_stmt
= SSA_NAME_DEF_STMT (vuse
);
1451 /* Recurse for PHI nodes. */
1452 if (gimple_code (def_stmt
) == GIMPLE_PHI
)
1454 /* An already visited PHI node ends the walk successfully. */
1455 if (bitmap_bit_p (*visited
, SSA_NAME_VERSION (PHI_RESULT (def_stmt
))))
1457 vuse
= get_continuation_for_phi (def_stmt
, ref
, visited
);
1462 /* A clobbering statement or the end of the IL ends it failing. */
1463 else if (gimple_nop_p (def_stmt
)
1464 || stmt_may_clobber_ref_p_1 (def_stmt
, ref
))
1466 vuse
= gimple_vuse (def_stmt
);
1471 /* Starting from a PHI node for the virtual operand of the memory reference
1472 REF find a continuation virtual operand that allows to continue walking
1473 statements dominating PHI skipping only statements that cannot possibly
1474 clobber REF. Returns NULL_TREE if no suitable virtual operand can
1478 get_continuation_for_phi (gimple phi
, ao_ref
*ref
, bitmap
*visited
)
1480 unsigned nargs
= gimple_phi_num_args (phi
);
1482 /* Through a single-argument PHI we can simply look through. */
1484 return PHI_ARG_DEF (phi
, 0);
1486 /* For two arguments try to skip non-aliasing code until we hit
1487 the phi argument definition that dominates the other one. */
1490 tree arg0
= PHI_ARG_DEF (phi
, 0);
1491 tree arg1
= PHI_ARG_DEF (phi
, 1);
1492 gimple def0
= SSA_NAME_DEF_STMT (arg0
);
1493 gimple def1
= SSA_NAME_DEF_STMT (arg1
);
1498 else if (gimple_nop_p (def0
)
1499 || (!gimple_nop_p (def1
)
1500 && dominated_by_p (CDI_DOMINATORS
,
1501 gimple_bb (def1
), gimple_bb (def0
))))
1503 if (maybe_skip_until (phi
, arg0
, ref
, arg1
, visited
))
1506 else if (gimple_nop_p (def1
)
1507 || dominated_by_p (CDI_DOMINATORS
,
1508 gimple_bb (def0
), gimple_bb (def1
)))
1510 if (maybe_skip_until (phi
, arg1
, ref
, arg0
, visited
))
1513 /* Special case of a diamond:
1515 goto (cond) ? L1 : L2
1516 L1: store1 = ... #MEM_2 = vuse(MEM_1)
1518 L2: store2 = ... #MEM_3 = vuse(MEM_1)
1519 L3: MEM_4 = PHI<MEM_2, MEM_3>
1520 We were called with the PHI at L3, MEM_2 and MEM_3 don't
1521 dominate each other, but still we can easily skip this PHI node
1522 if we recognize that the vuse MEM operand is the same for both,
1523 and that we can skip both statements (they don't clobber us).
1524 This is still linear. Don't use maybe_skip_until, that might
1525 potentially be slow. */
1526 else if ((common_vuse
= gimple_vuse (def0
))
1527 && common_vuse
== gimple_vuse (def1
))
1529 if (!stmt_may_clobber_ref_p_1 (def0
, ref
)
1530 && !stmt_may_clobber_ref_p_1 (def1
, ref
))
1538 /* Based on the memory reference REF and its virtual use VUSE call
1539 WALKER for each virtual use that is equivalent to VUSE, including VUSE
1540 itself. That is, for each virtual use for which its defining statement
1541 does not clobber REF.
1543 WALKER is called with REF, the current virtual use and DATA. If
1544 WALKER returns non-NULL the walk stops and its result is returned.
1545 At the end of a non-successful walk NULL is returned.
1547 TRANSLATE if non-NULL is called with a pointer to REF, the virtual
1548 use which definition is a statement that may clobber REF and DATA.
1549 If TRANSLATE returns (void *)-1 the walk stops and NULL is returned.
1550 If TRANSLATE returns non-NULL the walk stops and its result is returned.
1551 If TRANSLATE returns NULL the walk continues and TRANSLATE is supposed
1552 to adjust REF and *DATA to make that valid.
1554 TODO: Cache the vector of equivalent vuses per ref, vuse pair. */
1557 walk_non_aliased_vuses (ao_ref
*ref
, tree vuse
,
1558 void *(*walker
)(ao_ref
*, tree
, void *),
1559 void *(*translate
)(ao_ref
*, tree
, void *), void *data
)
1561 bitmap visited
= NULL
;
1564 timevar_push (TV_ALIAS_STMT_WALK
);
1570 /* ??? Do we want to account this to TV_ALIAS_STMT_WALK? */
1571 res
= (*walker
) (ref
, vuse
, data
);
1575 def_stmt
= SSA_NAME_DEF_STMT (vuse
);
1576 if (gimple_nop_p (def_stmt
))
1578 else if (gimple_code (def_stmt
) == GIMPLE_PHI
)
1579 vuse
= get_continuation_for_phi (def_stmt
, ref
, &visited
);
1582 if (stmt_may_clobber_ref_p_1 (def_stmt
, ref
))
1586 res
= (*translate
) (ref
, vuse
, data
);
1587 /* Failed lookup and translation. */
1588 if (res
== (void *)-1)
1593 /* Lookup succeeded. */
1594 else if (res
!= NULL
)
1596 /* Translation succeeded, continue walking. */
1598 vuse
= gimple_vuse (def_stmt
);
1604 BITMAP_FREE (visited
);
1606 timevar_pop (TV_ALIAS_STMT_WALK
);
1612 /* Based on the memory reference REF call WALKER for each vdef which
1613 defining statement may clobber REF, starting with VDEF. If REF
1614 is NULL_TREE, each defining statement is visited.
1616 WALKER is called with REF, the current vdef and DATA. If WALKER
1617 returns true the walk is stopped, otherwise it continues.
1619 At PHI nodes walk_aliased_vdefs forks into one walk for reach
1620 PHI argument (but only one walk continues on merge points), the
1621 return value is true if any of the walks was successful.
1623 The function returns the number of statements walked. */
1626 walk_aliased_vdefs_1 (ao_ref
*ref
, tree vdef
,
1627 bool (*walker
)(ao_ref
*, tree
, void *), void *data
,
1628 bitmap
*visited
, unsigned int cnt
)
1632 gimple def_stmt
= SSA_NAME_DEF_STMT (vdef
);
1635 && !bitmap_set_bit (*visited
, SSA_NAME_VERSION (vdef
)))
1638 if (gimple_nop_p (def_stmt
))
1640 else if (gimple_code (def_stmt
) == GIMPLE_PHI
)
1644 *visited
= BITMAP_ALLOC (NULL
);
1645 for (i
= 0; i
< gimple_phi_num_args (def_stmt
); ++i
)
1646 cnt
+= walk_aliased_vdefs_1 (ref
, gimple_phi_arg_def (def_stmt
, i
),
1647 walker
, data
, visited
, 0);
1651 /* ??? Do we want to account this to TV_ALIAS_STMT_WALK? */
1654 || stmt_may_clobber_ref_p_1 (def_stmt
, ref
))
1655 && (*walker
) (ref
, vdef
, data
))
1658 vdef
= gimple_vuse (def_stmt
);
1664 walk_aliased_vdefs (ao_ref
*ref
, tree vdef
,
1665 bool (*walker
)(ao_ref
*, tree
, void *), void *data
,
1668 bitmap local_visited
= NULL
;
1671 timevar_push (TV_ALIAS_STMT_WALK
);
1673 ret
= walk_aliased_vdefs_1 (ref
, vdef
, walker
, data
,
1674 visited
? visited
: &local_visited
, 0);
1676 BITMAP_FREE (local_visited
);
1678 timevar_pop (TV_ALIAS_STMT_WALK
);