1 /* A pass for lowering trees to RTL.
2 Copyright (C) 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011
3 Free Software Foundation, Inc.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
23 #include "coretypes.h"
28 #include "basic-block.h"
31 #include "langhooks.h"
32 #include "tree-flow.h"
34 #include "tree-dump.h"
35 #include "tree-pass.h"
38 #include "diagnostic.h"
39 #include "tree-pretty-print.h"
40 #include "gimple-pretty-print.h"
44 #include "tree-inline.h"
45 #include "value-prof.h"
47 #include "ssaexpand.h"
50 #include "insn-attr.h" /* For INSN_SCHEDULING. */
52 /* This variable holds information helping the rewriting of SSA trees
56 /* This variable holds the currently expanded gimple statement for purposes
57 of comminucating the profile info to the builtin expanders. */
58 gimple currently_expanding_gimple_stmt
;
60 /* Return an expression tree corresponding to the RHS of GIMPLE
64 gimple_assign_rhs_to_tree (gimple stmt
)
67 enum gimple_rhs_class grhs_class
;
69 grhs_class
= get_gimple_rhs_class (gimple_expr_code (stmt
));
71 if (grhs_class
== GIMPLE_TERNARY_RHS
)
72 t
= build3 (gimple_assign_rhs_code (stmt
),
73 TREE_TYPE (gimple_assign_lhs (stmt
)),
74 gimple_assign_rhs1 (stmt
),
75 gimple_assign_rhs2 (stmt
),
76 gimple_assign_rhs3 (stmt
));
77 else if (grhs_class
== GIMPLE_BINARY_RHS
)
78 t
= build2 (gimple_assign_rhs_code (stmt
),
79 TREE_TYPE (gimple_assign_lhs (stmt
)),
80 gimple_assign_rhs1 (stmt
),
81 gimple_assign_rhs2 (stmt
));
82 else if (grhs_class
== GIMPLE_UNARY_RHS
)
83 t
= build1 (gimple_assign_rhs_code (stmt
),
84 TREE_TYPE (gimple_assign_lhs (stmt
)),
85 gimple_assign_rhs1 (stmt
));
86 else if (grhs_class
== GIMPLE_SINGLE_RHS
)
88 t
= gimple_assign_rhs1 (stmt
);
89 /* Avoid modifying this tree in place below. */
90 if ((gimple_has_location (stmt
) && CAN_HAVE_LOCATION_P (t
)
91 && gimple_location (stmt
) != EXPR_LOCATION (t
))
92 || (gimple_block (stmt
)
93 && currently_expanding_to_rtl
95 && gimple_block (stmt
) != TREE_BLOCK (t
)))
101 if (gimple_has_location (stmt
) && CAN_HAVE_LOCATION_P (t
))
102 SET_EXPR_LOCATION (t
, gimple_location (stmt
));
103 if (gimple_block (stmt
) && currently_expanding_to_rtl
&& EXPR_P (t
))
104 TREE_BLOCK (t
) = gimple_block (stmt
);
110 #ifndef STACK_ALIGNMENT_NEEDED
111 #define STACK_ALIGNMENT_NEEDED 1
114 #define SSAVAR(x) (TREE_CODE (x) == SSA_NAME ? SSA_NAME_VAR (x) : x)
116 /* Associate declaration T with storage space X. If T is no
117 SSA name this is exactly SET_DECL_RTL, otherwise make the
118 partition of T associated with X. */
120 set_rtl (tree t
, rtx x
)
122 if (TREE_CODE (t
) == SSA_NAME
)
124 SA
.partition_to_pseudo
[var_to_partition (SA
.map
, t
)] = x
;
126 set_reg_attrs_for_decl_rtl (SSA_NAME_VAR (t
), x
);
127 /* For the benefit of debug information at -O0 (where vartracking
128 doesn't run) record the place also in the base DECL if it's
129 a normal variable (not a parameter). */
130 if (x
&& x
!= pc_rtx
&& TREE_CODE (SSA_NAME_VAR (t
)) == VAR_DECL
)
132 tree var
= SSA_NAME_VAR (t
);
133 /* If we don't yet have something recorded, just record it now. */
134 if (!DECL_RTL_SET_P (var
))
135 SET_DECL_RTL (var
, x
);
136 /* If we have it set alrady to "multiple places" don't
138 else if (DECL_RTL (var
) == pc_rtx
)
140 /* If we have something recorded and it's not the same place
141 as we want to record now, we have multiple partitions for the
142 same base variable, with different places. We can't just
143 randomly chose one, hence we have to say that we don't know.
144 This only happens with optimization, and there var-tracking
145 will figure out the right thing. */
146 else if (DECL_RTL (var
) != x
)
147 SET_DECL_RTL (var
, pc_rtx
);
154 /* This structure holds data relevant to one variable that will be
155 placed in a stack slot. */
161 /* Initially, the size of the variable. Later, the size of the partition,
162 if this variable becomes it's partition's representative. */
165 /* The *byte* alignment required for this variable. Or as, with the
166 size, the alignment for this partition. */
169 /* The partition representative. */
170 size_t representative
;
172 /* The next stack variable in the partition, or EOC. */
175 /* The numbers of conflicting stack variables. */
179 #define EOC ((size_t)-1)
181 /* We have an array of such objects while deciding allocation. */
182 static struct stack_var
*stack_vars
;
183 static size_t stack_vars_alloc
;
184 static size_t stack_vars_num
;
186 /* An array of indices such that stack_vars[stack_vars_sorted[i]].size
187 is non-decreasing. */
188 static size_t *stack_vars_sorted
;
190 /* The phase of the stack frame. This is the known misalignment of
191 virtual_stack_vars_rtx from PREFERRED_STACK_BOUNDARY. That is,
192 (frame_offset+frame_phase) % PREFERRED_STACK_BOUNDARY == 0. */
193 static int frame_phase
;
195 /* Used during expand_used_vars to remember if we saw any decls for
196 which we'd like to enable stack smashing protection. */
197 static bool has_protected_decls
;
199 /* Used during expand_used_vars. Remember if we say a character buffer
200 smaller than our cutoff threshold. Used for -Wstack-protector. */
201 static bool has_short_buffer
;
203 /* Compute the byte alignment to use for DECL. Ignore alignment
204 we can't do with expected alignment of the stack boundary. */
207 align_local_variable (tree decl
)
209 unsigned int align
= LOCAL_DECL_ALIGNMENT (decl
);
210 DECL_ALIGN (decl
) = align
;
211 return align
/ BITS_PER_UNIT
;
214 /* Allocate SIZE bytes at byte alignment ALIGN from the stack frame.
215 Return the frame offset. */
218 alloc_stack_frame_space (HOST_WIDE_INT size
, unsigned HOST_WIDE_INT align
)
220 HOST_WIDE_INT offset
, new_frame_offset
;
222 new_frame_offset
= frame_offset
;
223 if (FRAME_GROWS_DOWNWARD
)
225 new_frame_offset
-= size
+ frame_phase
;
226 new_frame_offset
&= -align
;
227 new_frame_offset
+= frame_phase
;
228 offset
= new_frame_offset
;
232 new_frame_offset
-= frame_phase
;
233 new_frame_offset
+= align
- 1;
234 new_frame_offset
&= -align
;
235 new_frame_offset
+= frame_phase
;
236 offset
= new_frame_offset
;
237 new_frame_offset
+= size
;
239 frame_offset
= new_frame_offset
;
241 if (frame_offset_overflow (frame_offset
, cfun
->decl
))
242 frame_offset
= offset
= 0;
247 /* Accumulate DECL into STACK_VARS. */
250 add_stack_var (tree decl
)
254 if (stack_vars_num
>= stack_vars_alloc
)
256 if (stack_vars_alloc
)
257 stack_vars_alloc
= stack_vars_alloc
* 3 / 2;
259 stack_vars_alloc
= 32;
261 = XRESIZEVEC (struct stack_var
, stack_vars
, stack_vars_alloc
);
263 v
= &stack_vars
[stack_vars_num
];
266 v
->size
= tree_low_cst (DECL_SIZE_UNIT (SSAVAR (decl
)), 1);
267 /* Ensure that all variables have size, so that &a != &b for any two
268 variables that are simultaneously live. */
271 v
->alignb
= align_local_variable (SSAVAR (decl
));
273 /* All variables are initially in their own partition. */
274 v
->representative
= stack_vars_num
;
277 /* All variables initially conflict with no other. */
280 /* Ensure that this decl doesn't get put onto the list twice. */
281 set_rtl (decl
, pc_rtx
);
286 /* Make the decls associated with luid's X and Y conflict. */
289 add_stack_var_conflict (size_t x
, size_t y
)
291 struct stack_var
*a
= &stack_vars
[x
];
292 struct stack_var
*b
= &stack_vars
[y
];
294 a
->conflicts
= BITMAP_ALLOC (NULL
);
296 b
->conflicts
= BITMAP_ALLOC (NULL
);
297 bitmap_set_bit (a
->conflicts
, y
);
298 bitmap_set_bit (b
->conflicts
, x
);
301 /* Check whether the decls associated with luid's X and Y conflict. */
304 stack_var_conflict_p (size_t x
, size_t y
)
306 struct stack_var
*a
= &stack_vars
[x
];
307 struct stack_var
*b
= &stack_vars
[y
];
308 if (!a
->conflicts
|| !b
->conflicts
)
310 return bitmap_bit_p (a
->conflicts
, y
);
313 /* Returns true if TYPE is or contains a union type. */
316 aggregate_contains_union_type (tree type
)
320 if (TREE_CODE (type
) == UNION_TYPE
321 || TREE_CODE (type
) == QUAL_UNION_TYPE
)
323 if (TREE_CODE (type
) == ARRAY_TYPE
)
324 return aggregate_contains_union_type (TREE_TYPE (type
));
325 if (TREE_CODE (type
) != RECORD_TYPE
)
328 for (field
= TYPE_FIELDS (type
); field
; field
= DECL_CHAIN (field
))
329 if (TREE_CODE (field
) == FIELD_DECL
)
330 if (aggregate_contains_union_type (TREE_TYPE (field
)))
336 /* A subroutine of expand_used_vars. If two variables X and Y have alias
337 sets that do not conflict, then do add a conflict for these variables
338 in the interference graph. We also need to make sure to add conflicts
339 for union containing structures. Else RTL alias analysis comes along
340 and due to type based aliasing rules decides that for two overlapping
341 union temporaries { short s; int i; } accesses to the same mem through
342 different types may not alias and happily reorders stores across
343 life-time boundaries of the temporaries (See PR25654).
344 We also have to mind MEM_IN_STRUCT_P and MEM_SCALAR_P. */
347 add_alias_set_conflicts (void)
349 size_t i
, j
, n
= stack_vars_num
;
351 for (i
= 0; i
< n
; ++i
)
353 tree type_i
= TREE_TYPE (stack_vars
[i
].decl
);
354 bool aggr_i
= AGGREGATE_TYPE_P (type_i
);
357 contains_union
= aggregate_contains_union_type (type_i
);
358 for (j
= 0; j
< i
; ++j
)
360 tree type_j
= TREE_TYPE (stack_vars
[j
].decl
);
361 bool aggr_j
= AGGREGATE_TYPE_P (type_j
);
363 /* Either the objects conflict by means of type based
364 aliasing rules, or we need to add a conflict. */
365 || !objects_must_conflict_p (type_i
, type_j
)
366 /* In case the types do not conflict ensure that access
367 to elements will conflict. In case of unions we have
368 to be careful as type based aliasing rules may say
369 access to the same memory does not conflict. So play
370 safe and add a conflict in this case when
371 -fstrict-aliasing is used. */
372 || (contains_union
&& flag_strict_aliasing
))
373 add_stack_var_conflict (i
, j
);
378 /* A subroutine of partition_stack_vars. A comparison function for qsort,
379 sorting an array of indices by the properties of the object. */
382 stack_var_cmp (const void *a
, const void *b
)
384 size_t ia
= *(const size_t *)a
;
385 size_t ib
= *(const size_t *)b
;
386 unsigned int aligna
= stack_vars
[ia
].alignb
;
387 unsigned int alignb
= stack_vars
[ib
].alignb
;
388 HOST_WIDE_INT sizea
= stack_vars
[ia
].size
;
389 HOST_WIDE_INT sizeb
= stack_vars
[ib
].size
;
390 tree decla
= stack_vars
[ia
].decl
;
391 tree declb
= stack_vars
[ib
].decl
;
393 unsigned int uida
, uidb
;
395 /* Primary compare on "large" alignment. Large comes first. */
396 largea
= (aligna
* BITS_PER_UNIT
> MAX_SUPPORTED_STACK_ALIGNMENT
);
397 largeb
= (alignb
* BITS_PER_UNIT
> MAX_SUPPORTED_STACK_ALIGNMENT
);
398 if (largea
!= largeb
)
399 return (int)largeb
- (int)largea
;
401 /* Secondary compare on size, decreasing */
407 /* Tertiary compare on true alignment, decreasing. */
413 /* Final compare on ID for sort stability, increasing.
414 Two SSA names are compared by their version, SSA names come before
415 non-SSA names, and two normal decls are compared by their DECL_UID. */
416 if (TREE_CODE (decla
) == SSA_NAME
)
418 if (TREE_CODE (declb
) == SSA_NAME
)
419 uida
= SSA_NAME_VERSION (decla
), uidb
= SSA_NAME_VERSION (declb
);
423 else if (TREE_CODE (declb
) == SSA_NAME
)
426 uida
= DECL_UID (decla
), uidb
= DECL_UID (declb
);
435 /* If the points-to solution *PI points to variables that are in a partition
436 together with other variables add all partition members to the pointed-to
440 add_partitioned_vars_to_ptset (struct pt_solution
*pt
,
441 struct pointer_map_t
*decls_to_partitions
,
442 struct pointer_set_t
*visited
, bitmap temp
)
450 /* The pointed-to vars bitmap is shared, it is enough to
452 || pointer_set_insert(visited
, pt
->vars
))
457 /* By using a temporary bitmap to store all members of the partitions
458 we have to add we make sure to visit each of the partitions only
460 EXECUTE_IF_SET_IN_BITMAP (pt
->vars
, 0, i
, bi
)
462 || !bitmap_bit_p (temp
, i
))
463 && (part
= (bitmap
*) pointer_map_contains (decls_to_partitions
,
464 (void *)(size_t) i
)))
465 bitmap_ior_into (temp
, *part
);
466 if (!bitmap_empty_p (temp
))
467 bitmap_ior_into (pt
->vars
, temp
);
470 /* Update points-to sets based on partition info, so we can use them on RTL.
471 The bitmaps representing stack partitions will be saved until expand,
472 where partitioned decls used as bases in memory expressions will be
476 update_alias_info_with_stack_vars (void)
478 struct pointer_map_t
*decls_to_partitions
= NULL
;
480 tree var
= NULL_TREE
;
482 for (i
= 0; i
< stack_vars_num
; i
++)
486 struct ptr_info_def
*pi
;
488 /* Not interested in partitions with single variable. */
489 if (stack_vars
[i
].representative
!= i
490 || stack_vars
[i
].next
== EOC
)
493 if (!decls_to_partitions
)
495 decls_to_partitions
= pointer_map_create ();
496 cfun
->gimple_df
->decls_to_pointers
= pointer_map_create ();
499 /* Create an SSA_NAME that points to the partition for use
500 as base during alias-oracle queries on RTL for bases that
501 have been partitioned. */
502 if (var
== NULL_TREE
)
503 var
= create_tmp_var (ptr_type_node
, NULL
);
504 name
= make_ssa_name (var
, NULL
);
506 /* Create bitmaps representing partitions. They will be used for
507 points-to sets later, so use GGC alloc. */
508 part
= BITMAP_GGC_ALLOC ();
509 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
511 tree decl
= stack_vars
[j
].decl
;
512 unsigned int uid
= DECL_PT_UID (decl
);
513 /* We should never end up partitioning SSA names (though they
514 may end up on the stack). Neither should we allocate stack
515 space to something that is unused and thus unreferenced, except
516 for -O0 where we are preserving even unreferenced variables. */
517 gcc_assert (DECL_P (decl
)
519 || referenced_var_lookup (cfun
, DECL_UID (decl
))));
520 bitmap_set_bit (part
, uid
);
521 *((bitmap
*) pointer_map_insert (decls_to_partitions
,
522 (void *)(size_t) uid
)) = part
;
523 *((tree
*) pointer_map_insert (cfun
->gimple_df
->decls_to_pointers
,
527 /* Make the SSA name point to all partition members. */
528 pi
= get_ptr_info (name
);
529 pt_solution_set (&pi
->pt
, part
, false, false);
532 /* Make all points-to sets that contain one member of a partition
533 contain all members of the partition. */
534 if (decls_to_partitions
)
537 struct pointer_set_t
*visited
= pointer_set_create ();
538 bitmap temp
= BITMAP_ALLOC (NULL
);
540 for (i
= 1; i
< num_ssa_names
; i
++)
542 tree name
= ssa_name (i
);
543 struct ptr_info_def
*pi
;
546 && POINTER_TYPE_P (TREE_TYPE (name
))
547 && ((pi
= SSA_NAME_PTR_INFO (name
)) != NULL
))
548 add_partitioned_vars_to_ptset (&pi
->pt
, decls_to_partitions
,
552 add_partitioned_vars_to_ptset (&cfun
->gimple_df
->escaped
,
553 decls_to_partitions
, visited
, temp
);
555 pointer_set_destroy (visited
);
556 pointer_map_destroy (decls_to_partitions
);
561 /* A subroutine of partition_stack_vars. The UNION portion of a UNION/FIND
562 partitioning algorithm. Partitions A and B are known to be non-conflicting.
563 Merge them into a single partition A. */
566 union_stack_vars (size_t a
, size_t b
)
568 struct stack_var
*vb
= &stack_vars
[b
];
572 gcc_assert (stack_vars
[b
].next
== EOC
);
573 /* Add B to A's partition. */
574 stack_vars
[b
].next
= stack_vars
[a
].next
;
575 stack_vars
[b
].representative
= a
;
576 stack_vars
[a
].next
= b
;
578 /* Update the required alignment of partition A to account for B. */
579 if (stack_vars
[a
].alignb
< stack_vars
[b
].alignb
)
580 stack_vars
[a
].alignb
= stack_vars
[b
].alignb
;
582 /* Update the interference graph and merge the conflicts. */
585 EXECUTE_IF_SET_IN_BITMAP (vb
->conflicts
, 0, u
, bi
)
586 add_stack_var_conflict (a
, stack_vars
[u
].representative
);
587 BITMAP_FREE (vb
->conflicts
);
591 /* A subroutine of expand_used_vars. Binpack the variables into
592 partitions constrained by the interference graph. The overall
593 algorithm used is as follows:
595 Sort the objects by size in descending order.
600 Look for the largest non-conflicting object B with size <= S.
607 partition_stack_vars (void)
609 size_t si
, sj
, n
= stack_vars_num
;
611 stack_vars_sorted
= XNEWVEC (size_t, stack_vars_num
);
612 for (si
= 0; si
< n
; ++si
)
613 stack_vars_sorted
[si
] = si
;
618 qsort (stack_vars_sorted
, n
, sizeof (size_t), stack_var_cmp
);
620 for (si
= 0; si
< n
; ++si
)
622 size_t i
= stack_vars_sorted
[si
];
623 unsigned int ialign
= stack_vars
[i
].alignb
;
625 /* Ignore objects that aren't partition representatives. If we
626 see a var that is not a partition representative, it must
627 have been merged earlier. */
628 if (stack_vars
[i
].representative
!= i
)
631 for (sj
= si
+ 1; sj
< n
; ++sj
)
633 size_t j
= stack_vars_sorted
[sj
];
634 unsigned int jalign
= stack_vars
[j
].alignb
;
636 /* Ignore objects that aren't partition representatives. */
637 if (stack_vars
[j
].representative
!= j
)
640 /* Ignore conflicting objects. */
641 if (stack_var_conflict_p (i
, j
))
644 /* Do not mix objects of "small" (supported) alignment
645 and "large" (unsupported) alignment. */
646 if ((ialign
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
647 != (jalign
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
))
650 /* UNION the objects, placing J at OFFSET. */
651 union_stack_vars (i
, j
);
655 update_alias_info_with_stack_vars ();
658 /* A debugging aid for expand_used_vars. Dump the generated partitions. */
661 dump_stack_var_partition (void)
663 size_t si
, i
, j
, n
= stack_vars_num
;
665 for (si
= 0; si
< n
; ++si
)
667 i
= stack_vars_sorted
[si
];
669 /* Skip variables that aren't partition representatives, for now. */
670 if (stack_vars
[i
].representative
!= i
)
673 fprintf (dump_file
, "Partition %lu: size " HOST_WIDE_INT_PRINT_DEC
674 " align %u\n", (unsigned long) i
, stack_vars
[i
].size
,
675 stack_vars
[i
].alignb
);
677 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
679 fputc ('\t', dump_file
);
680 print_generic_expr (dump_file
, stack_vars
[j
].decl
, dump_flags
);
682 fputc ('\n', dump_file
);
686 /* Assign rtl to DECL at BASE + OFFSET. */
689 expand_one_stack_var_at (tree decl
, rtx base
, unsigned base_align
,
690 HOST_WIDE_INT offset
)
695 /* If this fails, we've overflowed the stack frame. Error nicely? */
696 gcc_assert (offset
== trunc_int_for_mode (offset
, Pmode
));
698 x
= plus_constant (base
, offset
);
699 x
= gen_rtx_MEM (DECL_MODE (SSAVAR (decl
)), x
);
701 if (TREE_CODE (decl
) != SSA_NAME
)
703 /* Set alignment we actually gave this decl if it isn't an SSA name.
704 If it is we generate stack slots only accidentally so it isn't as
705 important, we'll simply use the alignment that is already set. */
706 if (base
== virtual_stack_vars_rtx
)
707 offset
-= frame_phase
;
708 align
= offset
& -offset
;
709 align
*= BITS_PER_UNIT
;
710 if (align
== 0 || align
> base_align
)
713 /* One would think that we could assert that we're not decreasing
714 alignment here, but (at least) the i386 port does exactly this
715 via the MINIMUM_ALIGNMENT hook. */
717 DECL_ALIGN (decl
) = align
;
718 DECL_USER_ALIGN (decl
) = 0;
721 set_mem_attributes (x
, SSAVAR (decl
), true);
725 /* A subroutine of expand_used_vars. Give each partition representative
726 a unique location within the stack frame. Update each partition member
727 with that location. */
730 expand_stack_vars (bool (*pred
) (tree
))
732 size_t si
, i
, j
, n
= stack_vars_num
;
733 HOST_WIDE_INT large_size
= 0, large_alloc
= 0;
734 rtx large_base
= NULL
;
735 unsigned large_align
= 0;
738 /* Determine if there are any variables requiring "large" alignment.
739 Since these are dynamically allocated, we only process these if
740 no predicate involved. */
741 large_align
= stack_vars
[stack_vars_sorted
[0]].alignb
* BITS_PER_UNIT
;
742 if (pred
== NULL
&& large_align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
744 /* Find the total size of these variables. */
745 for (si
= 0; si
< n
; ++si
)
749 i
= stack_vars_sorted
[si
];
750 alignb
= stack_vars
[i
].alignb
;
752 /* Stop when we get to the first decl with "small" alignment. */
753 if (alignb
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
756 /* Skip variables that aren't partition representatives. */
757 if (stack_vars
[i
].representative
!= i
)
760 /* Skip variables that have already had rtl assigned. See also
761 add_stack_var where we perpetrate this pc_rtx hack. */
762 decl
= stack_vars
[i
].decl
;
763 if ((TREE_CODE (decl
) == SSA_NAME
764 ? SA
.partition_to_pseudo
[var_to_partition (SA
.map
, decl
)]
765 : DECL_RTL (decl
)) != pc_rtx
)
768 large_size
+= alignb
- 1;
769 large_size
&= -(HOST_WIDE_INT
)alignb
;
770 large_size
+= stack_vars
[i
].size
;
773 /* If there were any, allocate space. */
775 large_base
= allocate_dynamic_stack_space (GEN_INT (large_size
), 0,
779 for (si
= 0; si
< n
; ++si
)
782 unsigned base_align
, alignb
;
783 HOST_WIDE_INT offset
;
785 i
= stack_vars_sorted
[si
];
787 /* Skip variables that aren't partition representatives, for now. */
788 if (stack_vars
[i
].representative
!= i
)
791 /* Skip variables that have already had rtl assigned. See also
792 add_stack_var where we perpetrate this pc_rtx hack. */
793 decl
= stack_vars
[i
].decl
;
794 if ((TREE_CODE (decl
) == SSA_NAME
795 ? SA
.partition_to_pseudo
[var_to_partition (SA
.map
, decl
)]
796 : DECL_RTL (decl
)) != pc_rtx
)
799 /* Check the predicate to see whether this variable should be
800 allocated in this pass. */
801 if (pred
&& !pred (decl
))
804 alignb
= stack_vars
[i
].alignb
;
805 if (alignb
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
807 offset
= alloc_stack_frame_space (stack_vars
[i
].size
, alignb
);
808 base
= virtual_stack_vars_rtx
;
809 base_align
= crtl
->max_used_stack_slot_alignment
;
813 /* Large alignment is only processed in the last pass. */
816 gcc_assert (large_base
!= NULL
);
818 large_alloc
+= alignb
- 1;
819 large_alloc
&= -(HOST_WIDE_INT
)alignb
;
820 offset
= large_alloc
;
821 large_alloc
+= stack_vars
[i
].size
;
824 base_align
= large_align
;
827 /* Create rtl for each variable based on their location within the
829 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
831 expand_one_stack_var_at (stack_vars
[j
].decl
,
837 gcc_assert (large_alloc
== large_size
);
840 /* Take into account all sizes of partitions and reset DECL_RTLs. */
842 account_stack_vars (void)
844 size_t si
, j
, i
, n
= stack_vars_num
;
845 HOST_WIDE_INT size
= 0;
847 for (si
= 0; si
< n
; ++si
)
849 i
= stack_vars_sorted
[si
];
851 /* Skip variables that aren't partition representatives, for now. */
852 if (stack_vars
[i
].representative
!= i
)
855 size
+= stack_vars
[i
].size
;
856 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
857 set_rtl (stack_vars
[j
].decl
, NULL
);
862 /* A subroutine of expand_one_var. Called to immediately assign rtl
863 to a variable to be allocated in the stack frame. */
866 expand_one_stack_var (tree var
)
868 HOST_WIDE_INT size
, offset
;
871 size
= tree_low_cst (DECL_SIZE_UNIT (SSAVAR (var
)), 1);
872 byte_align
= align_local_variable (SSAVAR (var
));
874 /* We handle highly aligned variables in expand_stack_vars. */
875 gcc_assert (byte_align
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
);
877 offset
= alloc_stack_frame_space (size
, byte_align
);
879 expand_one_stack_var_at (var
, virtual_stack_vars_rtx
,
880 crtl
->max_used_stack_slot_alignment
, offset
);
883 /* A subroutine of expand_one_var. Called to assign rtl to a VAR_DECL
884 that will reside in a hard register. */
887 expand_one_hard_reg_var (tree var
)
889 rest_of_decl_compilation (var
, 0, 0);
892 /* A subroutine of expand_one_var. Called to assign rtl to a VAR_DECL
893 that will reside in a pseudo register. */
896 expand_one_register_var (tree var
)
898 tree decl
= SSAVAR (var
);
899 tree type
= TREE_TYPE (decl
);
900 enum machine_mode reg_mode
= promote_decl_mode (decl
, NULL
);
901 rtx x
= gen_reg_rtx (reg_mode
);
905 /* Note if the object is a user variable. */
906 if (!DECL_ARTIFICIAL (decl
))
909 if (POINTER_TYPE_P (type
))
910 mark_reg_pointer (x
, TYPE_ALIGN (TREE_TYPE (type
)));
913 /* A subroutine of expand_one_var. Called to assign rtl to a VAR_DECL that
914 has some associated error, e.g. its type is error-mark. We just need
915 to pick something that won't crash the rest of the compiler. */
918 expand_one_error_var (tree var
)
920 enum machine_mode mode
= DECL_MODE (var
);
924 x
= gen_rtx_MEM (BLKmode
, const0_rtx
);
925 else if (mode
== VOIDmode
)
928 x
= gen_reg_rtx (mode
);
930 SET_DECL_RTL (var
, x
);
933 /* A subroutine of expand_one_var. VAR is a variable that will be
934 allocated to the local stack frame. Return true if we wish to
935 add VAR to STACK_VARS so that it will be coalesced with other
936 variables. Return false to allocate VAR immediately.
938 This function is used to reduce the number of variables considered
939 for coalescing, which reduces the size of the quadratic problem. */
942 defer_stack_allocation (tree var
, bool toplevel
)
944 /* If stack protection is enabled, *all* stack variables must be deferred,
945 so that we can re-order the strings to the top of the frame. */
946 if (flag_stack_protect
)
949 /* We handle "large" alignment via dynamic allocation. We want to handle
950 this extra complication in only one place, so defer them. */
951 if (DECL_ALIGN (var
) > MAX_SUPPORTED_STACK_ALIGNMENT
)
954 /* Variables in the outermost scope automatically conflict with
955 every other variable. The only reason to want to defer them
956 at all is that, after sorting, we can more efficiently pack
957 small variables in the stack frame. Continue to defer at -O2. */
958 if (toplevel
&& optimize
< 2)
961 /* Without optimization, *most* variables are allocated from the
962 stack, which makes the quadratic problem large exactly when we
963 want compilation to proceed as quickly as possible. On the
964 other hand, we don't want the function's stack frame size to
965 get completely out of hand. So we avoid adding scalars and
966 "small" aggregates to the list at all. */
967 if (optimize
== 0 && tree_low_cst (DECL_SIZE_UNIT (var
), 1) < 32)
973 /* A subroutine of expand_used_vars. Expand one variable according to
974 its flavor. Variables to be placed on the stack are not actually
975 expanded yet, merely recorded.
976 When REALLY_EXPAND is false, only add stack values to be allocated.
977 Return stack usage this variable is supposed to take.
981 expand_one_var (tree var
, bool toplevel
, bool really_expand
)
983 unsigned int align
= BITS_PER_UNIT
;
988 if (TREE_TYPE (var
) != error_mark_node
&& TREE_CODE (var
) == VAR_DECL
)
990 /* Because we don't know if VAR will be in register or on stack,
991 we conservatively assume it will be on stack even if VAR is
992 eventually put into register after RA pass. For non-automatic
993 variables, which won't be on stack, we collect alignment of
994 type and ignore user specified alignment. */
995 if (TREE_STATIC (var
) || DECL_EXTERNAL (var
))
996 align
= MINIMUM_ALIGNMENT (TREE_TYPE (var
),
997 TYPE_MODE (TREE_TYPE (var
)),
998 TYPE_ALIGN (TREE_TYPE (var
)));
999 else if (DECL_HAS_VALUE_EXPR_P (var
)
1000 || (DECL_RTL_SET_P (var
) && MEM_P (DECL_RTL (var
))))
1001 /* Don't consider debug only variables with DECL_HAS_VALUE_EXPR_P set
1002 or variables which were assigned a stack slot already by
1003 expand_one_stack_var_at - in the latter case DECL_ALIGN has been
1004 changed from the offset chosen to it. */
1005 align
= crtl
->stack_alignment_estimated
;
1007 align
= MINIMUM_ALIGNMENT (var
, DECL_MODE (var
), DECL_ALIGN (var
));
1009 /* If the variable alignment is very large we'll dynamicaly allocate
1010 it, which means that in-frame portion is just a pointer. */
1011 if (align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
1012 align
= POINTER_SIZE
;
1015 if (SUPPORTS_STACK_ALIGNMENT
1016 && crtl
->stack_alignment_estimated
< align
)
1018 /* stack_alignment_estimated shouldn't change after stack
1019 realign decision made */
1020 gcc_assert(!crtl
->stack_realign_processed
);
1021 crtl
->stack_alignment_estimated
= align
;
1024 /* stack_alignment_needed > PREFERRED_STACK_BOUNDARY is permitted.
1025 So here we only make sure stack_alignment_needed >= align. */
1026 if (crtl
->stack_alignment_needed
< align
)
1027 crtl
->stack_alignment_needed
= align
;
1028 if (crtl
->max_used_stack_slot_alignment
< align
)
1029 crtl
->max_used_stack_slot_alignment
= align
;
1031 if (TREE_CODE (origvar
) == SSA_NAME
)
1033 gcc_assert (TREE_CODE (var
) != VAR_DECL
1034 || (!DECL_EXTERNAL (var
)
1035 && !DECL_HAS_VALUE_EXPR_P (var
)
1036 && !TREE_STATIC (var
)
1037 && TREE_TYPE (var
) != error_mark_node
1038 && !DECL_HARD_REGISTER (var
)
1041 if (TREE_CODE (var
) != VAR_DECL
&& TREE_CODE (origvar
) != SSA_NAME
)
1043 else if (DECL_EXTERNAL (var
))
1045 else if (DECL_HAS_VALUE_EXPR_P (var
))
1047 else if (TREE_STATIC (var
))
1049 else if (TREE_CODE (origvar
) != SSA_NAME
&& DECL_RTL_SET_P (var
))
1051 else if (TREE_TYPE (var
) == error_mark_node
)
1054 expand_one_error_var (var
);
1056 else if (TREE_CODE (var
) == VAR_DECL
&& DECL_HARD_REGISTER (var
))
1059 expand_one_hard_reg_var (var
);
1061 else if (use_register_for_decl (var
))
1064 expand_one_register_var (origvar
);
1066 else if (!host_integerp (DECL_SIZE_UNIT (var
), 1))
1070 error ("size of variable %q+D is too large", var
);
1071 expand_one_error_var (var
);
1074 else if (defer_stack_allocation (var
, toplevel
))
1075 add_stack_var (origvar
);
1079 expand_one_stack_var (origvar
);
1080 return tree_low_cst (DECL_SIZE_UNIT (var
), 1);
1085 /* A subroutine of expand_used_vars. Walk down through the BLOCK tree
1086 expanding variables. Those variables that can be put into registers
1087 are allocated pseudos; those that can't are put on the stack.
1089 TOPLEVEL is true if this is the outermost BLOCK. */
1092 expand_used_vars_for_block (tree block
, bool toplevel
)
1094 size_t i
, j
, old_sv_num
, this_sv_num
, new_sv_num
;
1097 old_sv_num
= toplevel
? 0 : stack_vars_num
;
1099 /* Expand all variables at this level. */
1100 for (t
= BLOCK_VARS (block
); t
; t
= DECL_CHAIN (t
))
1102 expand_one_var (t
, toplevel
, true);
1104 this_sv_num
= stack_vars_num
;
1106 /* Expand all variables at containing levels. */
1107 for (t
= BLOCK_SUBBLOCKS (block
); t
; t
= BLOCK_CHAIN (t
))
1108 expand_used_vars_for_block (t
, false);
1110 /* Since we do not track exact variable lifetimes (which is not even
1111 possible for variables whose address escapes), we mirror the block
1112 tree in the interference graph. Here we cause all variables at this
1113 level, and all sublevels, to conflict. */
1114 if (old_sv_num
< this_sv_num
)
1116 new_sv_num
= stack_vars_num
;
1118 for (i
= old_sv_num
; i
< new_sv_num
; ++i
)
1119 for (j
= i
< this_sv_num
? i
: this_sv_num
; j
-- > old_sv_num
;)
1120 add_stack_var_conflict (i
, j
);
1124 /* A subroutine of expand_used_vars. Walk down through the BLOCK tree
1125 and clear TREE_USED on all local variables. */
1128 clear_tree_used (tree block
)
1132 for (t
= BLOCK_VARS (block
); t
; t
= DECL_CHAIN (t
))
1133 /* if (!TREE_STATIC (t) && !DECL_EXTERNAL (t)) */
1136 for (t
= BLOCK_SUBBLOCKS (block
); t
; t
= BLOCK_CHAIN (t
))
1137 clear_tree_used (t
);
1140 /* Examine TYPE and determine a bit mask of the following features. */
1142 #define SPCT_HAS_LARGE_CHAR_ARRAY 1
1143 #define SPCT_HAS_SMALL_CHAR_ARRAY 2
1144 #define SPCT_HAS_ARRAY 4
1145 #define SPCT_HAS_AGGREGATE 8
1148 stack_protect_classify_type (tree type
)
1150 unsigned int ret
= 0;
1153 switch (TREE_CODE (type
))
1156 t
= TYPE_MAIN_VARIANT (TREE_TYPE (type
));
1157 if (t
== char_type_node
1158 || t
== signed_char_type_node
1159 || t
== unsigned_char_type_node
)
1161 unsigned HOST_WIDE_INT max
= PARAM_VALUE (PARAM_SSP_BUFFER_SIZE
);
1162 unsigned HOST_WIDE_INT len
;
1164 if (!TYPE_SIZE_UNIT (type
)
1165 || !host_integerp (TYPE_SIZE_UNIT (type
), 1))
1168 len
= tree_low_cst (TYPE_SIZE_UNIT (type
), 1);
1171 ret
= SPCT_HAS_SMALL_CHAR_ARRAY
| SPCT_HAS_ARRAY
;
1173 ret
= SPCT_HAS_LARGE_CHAR_ARRAY
| SPCT_HAS_ARRAY
;
1176 ret
= SPCT_HAS_ARRAY
;
1180 case QUAL_UNION_TYPE
:
1182 ret
= SPCT_HAS_AGGREGATE
;
1183 for (t
= TYPE_FIELDS (type
); t
; t
= TREE_CHAIN (t
))
1184 if (TREE_CODE (t
) == FIELD_DECL
)
1185 ret
|= stack_protect_classify_type (TREE_TYPE (t
));
1195 /* Return nonzero if DECL should be segregated into the "vulnerable" upper
1196 part of the local stack frame. Remember if we ever return nonzero for
1197 any variable in this function. The return value is the phase number in
1198 which the variable should be allocated. */
1201 stack_protect_decl_phase (tree decl
)
1203 unsigned int bits
= stack_protect_classify_type (TREE_TYPE (decl
));
1206 if (bits
& SPCT_HAS_SMALL_CHAR_ARRAY
)
1207 has_short_buffer
= true;
1209 if (flag_stack_protect
== 2)
1211 if ((bits
& (SPCT_HAS_SMALL_CHAR_ARRAY
| SPCT_HAS_LARGE_CHAR_ARRAY
))
1212 && !(bits
& SPCT_HAS_AGGREGATE
))
1214 else if (bits
& SPCT_HAS_ARRAY
)
1218 ret
= (bits
& SPCT_HAS_LARGE_CHAR_ARRAY
) != 0;
1221 has_protected_decls
= true;
1226 /* Two helper routines that check for phase 1 and phase 2. These are used
1227 as callbacks for expand_stack_vars. */
1230 stack_protect_decl_phase_1 (tree decl
)
1232 return stack_protect_decl_phase (decl
) == 1;
1236 stack_protect_decl_phase_2 (tree decl
)
1238 return stack_protect_decl_phase (decl
) == 2;
1241 /* Ensure that variables in different stack protection phases conflict
1242 so that they are not merged and share the same stack slot. */
1245 add_stack_protection_conflicts (void)
1247 size_t i
, j
, n
= stack_vars_num
;
1248 unsigned char *phase
;
1250 phase
= XNEWVEC (unsigned char, n
);
1251 for (i
= 0; i
< n
; ++i
)
1252 phase
[i
] = stack_protect_decl_phase (stack_vars
[i
].decl
);
1254 for (i
= 0; i
< n
; ++i
)
1256 unsigned char ph_i
= phase
[i
];
1257 for (j
= 0; j
< i
; ++j
)
1258 if (ph_i
!= phase
[j
])
1259 add_stack_var_conflict (i
, j
);
1265 /* Create a decl for the guard at the top of the stack frame. */
1268 create_stack_guard (void)
1270 tree guard
= build_decl (DECL_SOURCE_LOCATION (current_function_decl
),
1271 VAR_DECL
, NULL
, ptr_type_node
);
1272 TREE_THIS_VOLATILE (guard
) = 1;
1273 TREE_USED (guard
) = 1;
1274 expand_one_stack_var (guard
);
1275 crtl
->stack_protect_guard
= guard
;
1278 /* Prepare for expanding variables. */
1280 init_vars_expansion (void)
1284 /* Set TREE_USED on all variables in the local_decls. */
1285 FOR_EACH_LOCAL_DECL (cfun
, ix
, t
)
1288 /* Clear TREE_USED on all variables associated with a block scope. */
1289 clear_tree_used (DECL_INITIAL (current_function_decl
));
1291 /* Initialize local stack smashing state. */
1292 has_protected_decls
= false;
1293 has_short_buffer
= false;
1296 /* Free up stack variable graph data. */
1298 fini_vars_expansion (void)
1300 size_t i
, n
= stack_vars_num
;
1301 for (i
= 0; i
< n
; i
++)
1302 BITMAP_FREE (stack_vars
[i
].conflicts
);
1303 XDELETEVEC (stack_vars
);
1304 XDELETEVEC (stack_vars_sorted
);
1306 stack_vars_alloc
= stack_vars_num
= 0;
1309 /* Make a fair guess for the size of the stack frame of the function
1310 in NODE. This doesn't have to be exact, the result is only used in
1311 the inline heuristics. So we don't want to run the full stack var
1312 packing algorithm (which is quadratic in the number of stack vars).
1313 Instead, we calculate the total size of all stack vars. This turns
1314 out to be a pretty fair estimate -- packing of stack vars doesn't
1315 happen very often. */
1318 estimated_stack_frame_size (struct cgraph_node
*node
)
1320 HOST_WIDE_INT size
= 0;
1323 tree old_cur_fun_decl
= current_function_decl
;
1324 referenced_var_iterator rvi
;
1325 struct function
*fn
= DECL_STRUCT_FUNCTION (node
->decl
);
1327 current_function_decl
= node
->decl
;
1330 gcc_checking_assert (gimple_referenced_vars (fn
));
1331 FOR_EACH_REFERENCED_VAR (fn
, var
, rvi
)
1332 size
+= expand_one_var (var
, true, false);
1334 if (stack_vars_num
> 0)
1336 /* Fake sorting the stack vars for account_stack_vars (). */
1337 stack_vars_sorted
= XNEWVEC (size_t, stack_vars_num
);
1338 for (i
= 0; i
< stack_vars_num
; ++i
)
1339 stack_vars_sorted
[i
] = i
;
1340 size
+= account_stack_vars ();
1341 fini_vars_expansion ();
1344 current_function_decl
= old_cur_fun_decl
;
1348 /* Expand all variables used in the function. */
1351 expand_used_vars (void)
1353 tree var
, outer_block
= DECL_INITIAL (current_function_decl
);
1354 VEC(tree
,heap
) *maybe_local_decls
= NULL
;
1358 /* Compute the phase of the stack frame for this function. */
1360 int align
= PREFERRED_STACK_BOUNDARY
/ BITS_PER_UNIT
;
1361 int off
= STARTING_FRAME_OFFSET
% align
;
1362 frame_phase
= off
? align
- off
: 0;
1365 init_vars_expansion ();
1367 for (i
= 0; i
< SA
.map
->num_partitions
; i
++)
1369 tree var
= partition_to_var (SA
.map
, i
);
1371 gcc_assert (is_gimple_reg (var
));
1372 if (TREE_CODE (SSA_NAME_VAR (var
)) == VAR_DECL
)
1373 expand_one_var (var
, true, true);
1376 /* This is a PARM_DECL or RESULT_DECL. For those partitions that
1377 contain the default def (representing the parm or result itself)
1378 we don't do anything here. But those which don't contain the
1379 default def (representing a temporary based on the parm/result)
1380 we need to allocate space just like for normal VAR_DECLs. */
1381 if (!bitmap_bit_p (SA
.partition_has_default_def
, i
))
1383 expand_one_var (var
, true, true);
1384 gcc_assert (SA
.partition_to_pseudo
[i
]);
1389 /* At this point all variables on the local_decls with TREE_USED
1390 set are not associated with any block scope. Lay them out. */
1392 len
= VEC_length (tree
, cfun
->local_decls
);
1393 FOR_EACH_LOCAL_DECL (cfun
, i
, var
)
1395 bool expand_now
= false;
1397 /* Expanded above already. */
1398 if (is_gimple_reg (var
))
1400 TREE_USED (var
) = 0;
1403 /* We didn't set a block for static or extern because it's hard
1404 to tell the difference between a global variable (re)declared
1405 in a local scope, and one that's really declared there to
1406 begin with. And it doesn't really matter much, since we're
1407 not giving them stack space. Expand them now. */
1408 else if (TREE_STATIC (var
) || DECL_EXTERNAL (var
))
1411 /* If the variable is not associated with any block, then it
1412 was created by the optimizers, and could be live anywhere
1414 else if (TREE_USED (var
))
1417 /* Finally, mark all variables on the list as used. We'll use
1418 this in a moment when we expand those associated with scopes. */
1419 TREE_USED (var
) = 1;
1422 expand_one_var (var
, true, true);
1425 if (DECL_ARTIFICIAL (var
) && !DECL_IGNORED_P (var
))
1427 rtx rtl
= DECL_RTL_IF_SET (var
);
1429 /* Keep artificial non-ignored vars in cfun->local_decls
1430 chain until instantiate_decls. */
1431 if (rtl
&& (MEM_P (rtl
) || GET_CODE (rtl
) == CONCAT
))
1432 add_local_decl (cfun
, var
);
1433 else if (rtl
== NULL_RTX
)
1434 /* If rtl isn't set yet, which can happen e.g. with
1435 -fstack-protector, retry before returning from this
1437 VEC_safe_push (tree
, heap
, maybe_local_decls
, var
);
1441 /* We duplicated some of the decls in CFUN->LOCAL_DECLS.
1443 +-----------------+-----------------+
1444 | ...processed... | ...duplicates...|
1445 +-----------------+-----------------+
1447 +-- LEN points here.
1449 We just want the duplicates, as those are the artificial
1450 non-ignored vars that we want to keep until instantiate_decls.
1451 Move them down and truncate the array. */
1452 if (!VEC_empty (tree
, cfun
->local_decls
))
1453 VEC_block_remove (tree
, cfun
->local_decls
, 0, len
);
1455 /* At this point, all variables within the block tree with TREE_USED
1456 set are actually used by the optimized function. Lay them out. */
1457 expand_used_vars_for_block (outer_block
, true);
1459 if (stack_vars_num
> 0)
1461 /* Due to the way alias sets work, no variables with non-conflicting
1462 alias sets may be assigned the same address. Add conflicts to
1464 add_alias_set_conflicts ();
1466 /* If stack protection is enabled, we don't share space between
1467 vulnerable data and non-vulnerable data. */
1468 if (flag_stack_protect
)
1469 add_stack_protection_conflicts ();
1471 /* Now that we have collected all stack variables, and have computed a
1472 minimal interference graph, attempt to save some stack space. */
1473 partition_stack_vars ();
1475 dump_stack_var_partition ();
1478 /* There are several conditions under which we should create a
1479 stack guard: protect-all, alloca used, protected decls present. */
1480 if (flag_stack_protect
== 2
1481 || (flag_stack_protect
1482 && (cfun
->calls_alloca
|| has_protected_decls
)))
1483 create_stack_guard ();
1485 /* Assign rtl to each variable based on these partitions. */
1486 if (stack_vars_num
> 0)
1488 /* Reorder decls to be protected by iterating over the variables
1489 array multiple times, and allocating out of each phase in turn. */
1490 /* ??? We could probably integrate this into the qsort we did
1491 earlier, such that we naturally see these variables first,
1492 and thus naturally allocate things in the right order. */
1493 if (has_protected_decls
)
1495 /* Phase 1 contains only character arrays. */
1496 expand_stack_vars (stack_protect_decl_phase_1
);
1498 /* Phase 2 contains other kinds of arrays. */
1499 if (flag_stack_protect
== 2)
1500 expand_stack_vars (stack_protect_decl_phase_2
);
1503 expand_stack_vars (NULL
);
1505 fini_vars_expansion ();
1508 /* If there were any artificial non-ignored vars without rtl
1509 found earlier, see if deferred stack allocation hasn't assigned
1511 FOR_EACH_VEC_ELT_REVERSE (tree
, maybe_local_decls
, i
, var
)
1513 rtx rtl
= DECL_RTL_IF_SET (var
);
1515 /* Keep artificial non-ignored vars in cfun->local_decls
1516 chain until instantiate_decls. */
1517 if (rtl
&& (MEM_P (rtl
) || GET_CODE (rtl
) == CONCAT
))
1518 add_local_decl (cfun
, var
);
1520 VEC_free (tree
, heap
, maybe_local_decls
);
1522 /* If the target requires that FRAME_OFFSET be aligned, do it. */
1523 if (STACK_ALIGNMENT_NEEDED
)
1525 HOST_WIDE_INT align
= PREFERRED_STACK_BOUNDARY
/ BITS_PER_UNIT
;
1526 if (!FRAME_GROWS_DOWNWARD
)
1527 frame_offset
+= align
- 1;
1528 frame_offset
&= -align
;
1533 /* If we need to produce a detailed dump, print the tree representation
1534 for STMT to the dump file. SINCE is the last RTX after which the RTL
1535 generated for STMT should have been appended. */
1538 maybe_dump_rtl_for_gimple_stmt (gimple stmt
, rtx since
)
1540 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
1542 fprintf (dump_file
, "\n;; ");
1543 print_gimple_stmt (dump_file
, stmt
, 0,
1544 TDF_SLIM
| (dump_flags
& TDF_LINENO
));
1545 fprintf (dump_file
, "\n");
1547 print_rtl (dump_file
, since
? NEXT_INSN (since
) : since
);
1551 /* Maps the blocks that do not contain tree labels to rtx labels. */
1553 static struct pointer_map_t
*lab_rtx_for_bb
;
1555 /* Returns the label_rtx expression for a label starting basic block BB. */
1558 label_rtx_for_bb (basic_block bb ATTRIBUTE_UNUSED
)
1560 gimple_stmt_iterator gsi
;
1565 if (bb
->flags
& BB_RTL
)
1566 return block_label (bb
);
1568 elt
= pointer_map_contains (lab_rtx_for_bb
, bb
);
1572 /* Find the tree label if it is present. */
1574 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
1576 lab_stmt
= gsi_stmt (gsi
);
1577 if (gimple_code (lab_stmt
) != GIMPLE_LABEL
)
1580 lab
= gimple_label_label (lab_stmt
);
1581 if (DECL_NONLOCAL (lab
))
1584 return label_rtx (lab
);
1587 elt
= pointer_map_insert (lab_rtx_for_bb
, bb
);
1588 *elt
= gen_label_rtx ();
1593 /* A subroutine of expand_gimple_cond. Given E, a fallthrough edge
1594 of a basic block where we just expanded the conditional at the end,
1595 possibly clean up the CFG and instruction sequence. LAST is the
1596 last instruction before the just emitted jump sequence. */
1599 maybe_cleanup_end_of_block (edge e
, rtx last
)
1601 /* Special case: when jumpif decides that the condition is
1602 trivial it emits an unconditional jump (and the necessary
1603 barrier). But we still have two edges, the fallthru one is
1604 wrong. purge_dead_edges would clean this up later. Unfortunately
1605 we have to insert insns (and split edges) before
1606 find_many_sub_basic_blocks and hence before purge_dead_edges.
1607 But splitting edges might create new blocks which depend on the
1608 fact that if there are two edges there's no barrier. So the
1609 barrier would get lost and verify_flow_info would ICE. Instead
1610 of auditing all edge splitters to care for the barrier (which
1611 normally isn't there in a cleaned CFG), fix it here. */
1612 if (BARRIER_P (get_last_insn ()))
1616 /* Now, we have a single successor block, if we have insns to
1617 insert on the remaining edge we potentially will insert
1618 it at the end of this block (if the dest block isn't feasible)
1619 in order to avoid splitting the edge. This insertion will take
1620 place in front of the last jump. But we might have emitted
1621 multiple jumps (conditional and one unconditional) to the
1622 same destination. Inserting in front of the last one then
1623 is a problem. See PR 40021. We fix this by deleting all
1624 jumps except the last unconditional one. */
1625 insn
= PREV_INSN (get_last_insn ());
1626 /* Make sure we have an unconditional jump. Otherwise we're
1628 gcc_assert (JUMP_P (insn
) && !any_condjump_p (insn
));
1629 for (insn
= PREV_INSN (insn
); insn
!= last
;)
1631 insn
= PREV_INSN (insn
);
1632 if (JUMP_P (NEXT_INSN (insn
)))
1634 if (!any_condjump_p (NEXT_INSN (insn
)))
1636 gcc_assert (BARRIER_P (NEXT_INSN (NEXT_INSN (insn
))));
1637 delete_insn (NEXT_INSN (NEXT_INSN (insn
)));
1639 delete_insn (NEXT_INSN (insn
));
1645 /* A subroutine of expand_gimple_basic_block. Expand one GIMPLE_COND.
1646 Returns a new basic block if we've terminated the current basic
1647 block and created a new one. */
1650 expand_gimple_cond (basic_block bb
, gimple stmt
)
1652 basic_block new_bb
, dest
;
1657 enum tree_code code
;
1660 code
= gimple_cond_code (stmt
);
1661 op0
= gimple_cond_lhs (stmt
);
1662 op1
= gimple_cond_rhs (stmt
);
1663 /* We're sometimes presented with such code:
1667 This would expand to two comparisons which then later might
1668 be cleaned up by combine. But some pattern matchers like if-conversion
1669 work better when there's only one compare, so make up for this
1670 here as special exception if TER would have made the same change. */
1671 if (gimple_cond_single_var_p (stmt
)
1673 && TREE_CODE (op0
) == SSA_NAME
1674 && bitmap_bit_p (SA
.values
, SSA_NAME_VERSION (op0
)))
1676 gimple second
= SSA_NAME_DEF_STMT (op0
);
1677 if (gimple_code (second
) == GIMPLE_ASSIGN
)
1679 enum tree_code code2
= gimple_assign_rhs_code (second
);
1680 if (TREE_CODE_CLASS (code2
) == tcc_comparison
)
1683 op0
= gimple_assign_rhs1 (second
);
1684 op1
= gimple_assign_rhs2 (second
);
1686 /* If jumps are cheap turn some more codes into
1688 else if (BRANCH_COST (optimize_insn_for_speed_p (), false) < 4)
1690 if ((code2
== BIT_AND_EXPR
1691 && TYPE_PRECISION (TREE_TYPE (op0
)) == 1
1692 && TREE_CODE (gimple_assign_rhs2 (second
)) != INTEGER_CST
)
1693 || code2
== TRUTH_AND_EXPR
)
1695 code
= TRUTH_ANDIF_EXPR
;
1696 op0
= gimple_assign_rhs1 (second
);
1697 op1
= gimple_assign_rhs2 (second
);
1699 else if (code2
== BIT_IOR_EXPR
|| code2
== TRUTH_OR_EXPR
)
1701 code
= TRUTH_ORIF_EXPR
;
1702 op0
= gimple_assign_rhs1 (second
);
1703 op1
= gimple_assign_rhs2 (second
);
1709 last2
= last
= get_last_insn ();
1711 extract_true_false_edges_from_block (bb
, &true_edge
, &false_edge
);
1712 set_curr_insn_source_location (gimple_location (stmt
));
1713 set_curr_insn_block (gimple_block (stmt
));
1715 /* These flags have no purpose in RTL land. */
1716 true_edge
->flags
&= ~EDGE_TRUE_VALUE
;
1717 false_edge
->flags
&= ~EDGE_FALSE_VALUE
;
1719 /* We can either have a pure conditional jump with one fallthru edge or
1720 two-way jump that needs to be decomposed into two basic blocks. */
1721 if (false_edge
->dest
== bb
->next_bb
)
1723 jumpif_1 (code
, op0
, op1
, label_rtx_for_bb (true_edge
->dest
),
1724 true_edge
->probability
);
1725 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
1726 if (true_edge
->goto_locus
)
1728 set_curr_insn_source_location (true_edge
->goto_locus
);
1729 set_curr_insn_block (true_edge
->goto_block
);
1730 true_edge
->goto_locus
= curr_insn_locator ();
1732 true_edge
->goto_block
= NULL
;
1733 false_edge
->flags
|= EDGE_FALLTHRU
;
1734 maybe_cleanup_end_of_block (false_edge
, last
);
1737 if (true_edge
->dest
== bb
->next_bb
)
1739 jumpifnot_1 (code
, op0
, op1
, label_rtx_for_bb (false_edge
->dest
),
1740 false_edge
->probability
);
1741 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
1742 if (false_edge
->goto_locus
)
1744 set_curr_insn_source_location (false_edge
->goto_locus
);
1745 set_curr_insn_block (false_edge
->goto_block
);
1746 false_edge
->goto_locus
= curr_insn_locator ();
1748 false_edge
->goto_block
= NULL
;
1749 true_edge
->flags
|= EDGE_FALLTHRU
;
1750 maybe_cleanup_end_of_block (true_edge
, last
);
1754 jumpif_1 (code
, op0
, op1
, label_rtx_for_bb (true_edge
->dest
),
1755 true_edge
->probability
);
1756 last
= get_last_insn ();
1757 if (false_edge
->goto_locus
)
1759 set_curr_insn_source_location (false_edge
->goto_locus
);
1760 set_curr_insn_block (false_edge
->goto_block
);
1761 false_edge
->goto_locus
= curr_insn_locator ();
1763 false_edge
->goto_block
= NULL
;
1764 emit_jump (label_rtx_for_bb (false_edge
->dest
));
1767 if (BARRIER_P (BB_END (bb
)))
1768 BB_END (bb
) = PREV_INSN (BB_END (bb
));
1769 update_bb_for_insn (bb
);
1771 new_bb
= create_basic_block (NEXT_INSN (last
), get_last_insn (), bb
);
1772 dest
= false_edge
->dest
;
1773 redirect_edge_succ (false_edge
, new_bb
);
1774 false_edge
->flags
|= EDGE_FALLTHRU
;
1775 new_bb
->count
= false_edge
->count
;
1776 new_bb
->frequency
= EDGE_FREQUENCY (false_edge
);
1777 new_edge
= make_edge (new_bb
, dest
, 0);
1778 new_edge
->probability
= REG_BR_PROB_BASE
;
1779 new_edge
->count
= new_bb
->count
;
1780 if (BARRIER_P (BB_END (new_bb
)))
1781 BB_END (new_bb
) = PREV_INSN (BB_END (new_bb
));
1782 update_bb_for_insn (new_bb
);
1784 maybe_dump_rtl_for_gimple_stmt (stmt
, last2
);
1786 if (true_edge
->goto_locus
)
1788 set_curr_insn_source_location (true_edge
->goto_locus
);
1789 set_curr_insn_block (true_edge
->goto_block
);
1790 true_edge
->goto_locus
= curr_insn_locator ();
1792 true_edge
->goto_block
= NULL
;
1797 /* A subroutine of expand_gimple_stmt_1, expanding one GIMPLE_CALL
1801 expand_call_stmt (gimple stmt
)
1803 tree exp
, decl
, lhs
;
1807 if (gimple_call_internal_p (stmt
))
1809 expand_internal_call (stmt
);
1813 exp
= build_vl_exp (CALL_EXPR
, gimple_call_num_args (stmt
) + 3);
1815 CALL_EXPR_FN (exp
) = gimple_call_fn (stmt
);
1816 decl
= gimple_call_fndecl (stmt
);
1817 builtin_p
= decl
&& DECL_BUILT_IN (decl
);
1819 /* If this is not a builtin function, the function type through which the
1820 call is made may be different from the type of the function. */
1823 = fold_convert (build_pointer_type (gimple_call_fntype (stmt
)),
1824 CALL_EXPR_FN (exp
));
1826 TREE_TYPE (exp
) = gimple_call_return_type (stmt
);
1827 CALL_EXPR_STATIC_CHAIN (exp
) = gimple_call_chain (stmt
);
1829 for (i
= 0; i
< gimple_call_num_args (stmt
); i
++)
1831 tree arg
= gimple_call_arg (stmt
, i
);
1833 /* TER addresses into arguments of builtin functions so we have a
1834 chance to infer more correct alignment information. See PR39954. */
1836 && TREE_CODE (arg
) == SSA_NAME
1837 && (def
= get_gimple_for_ssa_name (arg
))
1838 && gimple_assign_rhs_code (def
) == ADDR_EXPR
)
1839 arg
= gimple_assign_rhs1 (def
);
1840 CALL_EXPR_ARG (exp
, i
) = arg
;
1843 if (gimple_has_side_effects (stmt
))
1844 TREE_SIDE_EFFECTS (exp
) = 1;
1846 if (gimple_call_nothrow_p (stmt
))
1847 TREE_NOTHROW (exp
) = 1;
1849 CALL_EXPR_TAILCALL (exp
) = gimple_call_tail_p (stmt
);
1850 CALL_EXPR_RETURN_SLOT_OPT (exp
) = gimple_call_return_slot_opt_p (stmt
);
1852 && DECL_BUILT_IN_CLASS (decl
) == BUILT_IN_NORMAL
1853 && DECL_FUNCTION_CODE (decl
) == BUILT_IN_ALLOCA
)
1854 CALL_ALLOCA_FOR_VAR_P (exp
) = gimple_call_alloca_for_var_p (stmt
);
1856 CALL_FROM_THUNK_P (exp
) = gimple_call_from_thunk_p (stmt
);
1857 CALL_CANNOT_INLINE_P (exp
) = gimple_call_cannot_inline_p (stmt
);
1858 CALL_EXPR_VA_ARG_PACK (exp
) = gimple_call_va_arg_pack_p (stmt
);
1859 SET_EXPR_LOCATION (exp
, gimple_location (stmt
));
1860 TREE_BLOCK (exp
) = gimple_block (stmt
);
1862 lhs
= gimple_call_lhs (stmt
);
1864 expand_assignment (lhs
, exp
, false);
1866 expand_expr_real_1 (exp
, const0_rtx
, VOIDmode
, EXPAND_NORMAL
, NULL
);
1869 /* A subroutine of expand_gimple_stmt, expanding one gimple statement
1870 STMT that doesn't require special handling for outgoing edges. That
1871 is no tailcalls and no GIMPLE_COND. */
1874 expand_gimple_stmt_1 (gimple stmt
)
1878 set_curr_insn_source_location (gimple_location (stmt
));
1879 set_curr_insn_block (gimple_block (stmt
));
1881 switch (gimple_code (stmt
))
1884 op0
= gimple_goto_dest (stmt
);
1885 if (TREE_CODE (op0
) == LABEL_DECL
)
1888 expand_computed_goto (op0
);
1891 expand_label (gimple_label_label (stmt
));
1894 case GIMPLE_PREDICT
:
1900 expand_asm_stmt (stmt
);
1903 expand_call_stmt (stmt
);
1907 op0
= gimple_return_retval (stmt
);
1909 if (op0
&& op0
!= error_mark_node
)
1911 tree result
= DECL_RESULT (current_function_decl
);
1913 /* If we are not returning the current function's RESULT_DECL,
1914 build an assignment to it. */
1917 /* I believe that a function's RESULT_DECL is unique. */
1918 gcc_assert (TREE_CODE (op0
) != RESULT_DECL
);
1920 /* ??? We'd like to use simply expand_assignment here,
1921 but this fails if the value is of BLKmode but the return
1922 decl is a register. expand_return has special handling
1923 for this combination, which eventually should move
1924 to common code. See comments there. Until then, let's
1925 build a modify expression :-/ */
1926 op0
= build2 (MODIFY_EXPR
, TREE_TYPE (result
),
1931 expand_null_return ();
1933 expand_return (op0
);
1938 tree lhs
= gimple_assign_lhs (stmt
);
1940 /* Tree expand used to fiddle with |= and &= of two bitfield
1941 COMPONENT_REFs here. This can't happen with gimple, the LHS
1942 of binary assigns must be a gimple reg. */
1944 if (TREE_CODE (lhs
) != SSA_NAME
1945 || get_gimple_rhs_class (gimple_expr_code (stmt
))
1946 == GIMPLE_SINGLE_RHS
)
1948 tree rhs
= gimple_assign_rhs1 (stmt
);
1949 gcc_assert (get_gimple_rhs_class (gimple_expr_code (stmt
))
1950 == GIMPLE_SINGLE_RHS
);
1951 if (gimple_has_location (stmt
) && CAN_HAVE_LOCATION_P (rhs
))
1952 SET_EXPR_LOCATION (rhs
, gimple_location (stmt
));
1953 expand_assignment (lhs
, rhs
,
1954 gimple_assign_nontemporal_move_p (stmt
));
1959 bool nontemporal
= gimple_assign_nontemporal_move_p (stmt
);
1960 struct separate_ops ops
;
1961 bool promoted
= false;
1963 target
= expand_expr (lhs
, NULL_RTX
, VOIDmode
, EXPAND_WRITE
);
1964 if (GET_CODE (target
) == SUBREG
&& SUBREG_PROMOTED_VAR_P (target
))
1967 ops
.code
= gimple_assign_rhs_code (stmt
);
1968 ops
.type
= TREE_TYPE (lhs
);
1969 switch (get_gimple_rhs_class (gimple_expr_code (stmt
)))
1971 case GIMPLE_TERNARY_RHS
:
1972 ops
.op2
= gimple_assign_rhs3 (stmt
);
1974 case GIMPLE_BINARY_RHS
:
1975 ops
.op1
= gimple_assign_rhs2 (stmt
);
1977 case GIMPLE_UNARY_RHS
:
1978 ops
.op0
= gimple_assign_rhs1 (stmt
);
1983 ops
.location
= gimple_location (stmt
);
1985 /* If we want to use a nontemporal store, force the value to
1986 register first. If we store into a promoted register,
1987 don't directly expand to target. */
1988 temp
= nontemporal
|| promoted
? NULL_RTX
: target
;
1989 temp
= expand_expr_real_2 (&ops
, temp
, GET_MODE (target
),
1996 int unsignedp
= SUBREG_PROMOTED_UNSIGNED_P (target
);
1997 /* If TEMP is a VOIDmode constant, use convert_modes to make
1998 sure that we properly convert it. */
1999 if (CONSTANT_P (temp
) && GET_MODE (temp
) == VOIDmode
)
2001 temp
= convert_modes (GET_MODE (target
),
2002 TYPE_MODE (ops
.type
),
2004 temp
= convert_modes (GET_MODE (SUBREG_REG (target
)),
2005 GET_MODE (target
), temp
, unsignedp
);
2008 convert_move (SUBREG_REG (target
), temp
, unsignedp
);
2010 else if (nontemporal
&& emit_storent_insn (target
, temp
))
2014 temp
= force_operand (temp
, target
);
2016 emit_move_insn (target
, temp
);
2027 /* Expand one gimple statement STMT and return the last RTL instruction
2028 before any of the newly generated ones.
2030 In addition to generating the necessary RTL instructions this also
2031 sets REG_EH_REGION notes if necessary and sets the current source
2032 location for diagnostics. */
2035 expand_gimple_stmt (gimple stmt
)
2037 location_t saved_location
= input_location
;
2038 rtx last
= get_last_insn ();
2043 /* We need to save and restore the current source location so that errors
2044 discovered during expansion are emitted with the right location. But
2045 it would be better if the diagnostic routines used the source location
2046 embedded in the tree nodes rather than globals. */
2047 if (gimple_has_location (stmt
))
2048 input_location
= gimple_location (stmt
);
2050 expand_gimple_stmt_1 (stmt
);
2052 /* Free any temporaries used to evaluate this statement. */
2055 input_location
= saved_location
;
2057 /* Mark all insns that may trap. */
2058 lp_nr
= lookup_stmt_eh_lp (stmt
);
2062 for (insn
= next_real_insn (last
); insn
;
2063 insn
= next_real_insn (insn
))
2065 if (! find_reg_note (insn
, REG_EH_REGION
, NULL_RTX
)
2066 /* If we want exceptions for non-call insns, any
2067 may_trap_p instruction may throw. */
2068 && GET_CODE (PATTERN (insn
)) != CLOBBER
2069 && GET_CODE (PATTERN (insn
)) != USE
2070 && insn_could_throw_p (insn
))
2071 make_reg_eh_region_note (insn
, 0, lp_nr
);
2078 /* A subroutine of expand_gimple_basic_block. Expand one GIMPLE_CALL
2079 that has CALL_EXPR_TAILCALL set. Returns non-null if we actually
2080 generated a tail call (something that might be denied by the ABI
2081 rules governing the call; see calls.c).
2083 Sets CAN_FALLTHRU if we generated a *conditional* tail call, and
2084 can still reach the rest of BB. The case here is __builtin_sqrt,
2085 where the NaN result goes through the external function (with a
2086 tailcall) and the normal result happens via a sqrt instruction. */
2089 expand_gimple_tailcall (basic_block bb
, gimple stmt
, bool *can_fallthru
)
2097 last2
= last
= expand_gimple_stmt (stmt
);
2099 for (last
= NEXT_INSN (last
); last
; last
= NEXT_INSN (last
))
2100 if (CALL_P (last
) && SIBLING_CALL_P (last
))
2103 maybe_dump_rtl_for_gimple_stmt (stmt
, last2
);
2105 *can_fallthru
= true;
2109 /* ??? Wouldn't it be better to just reset any pending stack adjust?
2110 Any instructions emitted here are about to be deleted. */
2111 do_pending_stack_adjust ();
2113 /* Remove any non-eh, non-abnormal edges that don't go to exit. */
2114 /* ??? I.e. the fallthrough edge. HOWEVER! If there were to be
2115 EH or abnormal edges, we shouldn't have created a tail call in
2116 the first place. So it seems to me we should just be removing
2117 all edges here, or redirecting the existing fallthru edge to
2123 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
2125 if (!(e
->flags
& (EDGE_ABNORMAL
| EDGE_EH
)))
2127 if (e
->dest
!= EXIT_BLOCK_PTR
)
2129 e
->dest
->count
-= e
->count
;
2130 e
->dest
->frequency
-= EDGE_FREQUENCY (e
);
2131 if (e
->dest
->count
< 0)
2133 if (e
->dest
->frequency
< 0)
2134 e
->dest
->frequency
= 0;
2137 probability
+= e
->probability
;
2144 /* This is somewhat ugly: the call_expr expander often emits instructions
2145 after the sibcall (to perform the function return). These confuse the
2146 find_many_sub_basic_blocks code, so we need to get rid of these. */
2147 last
= NEXT_INSN (last
);
2148 gcc_assert (BARRIER_P (last
));
2150 *can_fallthru
= false;
2151 while (NEXT_INSN (last
))
2153 /* For instance an sqrt builtin expander expands if with
2154 sibcall in the then and label for `else`. */
2155 if (LABEL_P (NEXT_INSN (last
)))
2157 *can_fallthru
= true;
2160 delete_insn (NEXT_INSN (last
));
2163 e
= make_edge (bb
, EXIT_BLOCK_PTR
, EDGE_ABNORMAL
| EDGE_SIBCALL
);
2164 e
->probability
+= probability
;
2167 update_bb_for_insn (bb
);
2169 if (NEXT_INSN (last
))
2171 bb
= create_basic_block (NEXT_INSN (last
), get_last_insn (), bb
);
2174 if (BARRIER_P (last
))
2175 BB_END (bb
) = PREV_INSN (last
);
2178 maybe_dump_rtl_for_gimple_stmt (stmt
, last2
);
2183 /* Return the difference between the floor and the truncated result of
2184 a signed division by OP1 with remainder MOD. */
2186 floor_sdiv_adjust (enum machine_mode mode
, rtx mod
, rtx op1
)
2188 /* (mod != 0 ? (op1 / mod < 0 ? -1 : 0) : 0) */
2189 return gen_rtx_IF_THEN_ELSE
2190 (mode
, gen_rtx_NE (BImode
, mod
, const0_rtx
),
2191 gen_rtx_IF_THEN_ELSE
2192 (mode
, gen_rtx_LT (BImode
,
2193 gen_rtx_DIV (mode
, op1
, mod
),
2195 constm1_rtx
, const0_rtx
),
2199 /* Return the difference between the ceil and the truncated result of
2200 a signed division by OP1 with remainder MOD. */
2202 ceil_sdiv_adjust (enum machine_mode mode
, rtx mod
, rtx op1
)
2204 /* (mod != 0 ? (op1 / mod > 0 ? 1 : 0) : 0) */
2205 return gen_rtx_IF_THEN_ELSE
2206 (mode
, gen_rtx_NE (BImode
, mod
, const0_rtx
),
2207 gen_rtx_IF_THEN_ELSE
2208 (mode
, gen_rtx_GT (BImode
,
2209 gen_rtx_DIV (mode
, op1
, mod
),
2211 const1_rtx
, const0_rtx
),
2215 /* Return the difference between the ceil and the truncated result of
2216 an unsigned division by OP1 with remainder MOD. */
2218 ceil_udiv_adjust (enum machine_mode mode
, rtx mod
, rtx op1 ATTRIBUTE_UNUSED
)
2220 /* (mod != 0 ? 1 : 0) */
2221 return gen_rtx_IF_THEN_ELSE
2222 (mode
, gen_rtx_NE (BImode
, mod
, const0_rtx
),
2223 const1_rtx
, const0_rtx
);
2226 /* Return the difference between the rounded and the truncated result
2227 of a signed division by OP1 with remainder MOD. Halfway cases are
2228 rounded away from zero, rather than to the nearest even number. */
2230 round_sdiv_adjust (enum machine_mode mode
, rtx mod
, rtx op1
)
2232 /* (abs (mod) >= abs (op1) - abs (mod)
2233 ? (op1 / mod > 0 ? 1 : -1)
2235 return gen_rtx_IF_THEN_ELSE
2236 (mode
, gen_rtx_GE (BImode
, gen_rtx_ABS (mode
, mod
),
2237 gen_rtx_MINUS (mode
,
2238 gen_rtx_ABS (mode
, op1
),
2239 gen_rtx_ABS (mode
, mod
))),
2240 gen_rtx_IF_THEN_ELSE
2241 (mode
, gen_rtx_GT (BImode
,
2242 gen_rtx_DIV (mode
, op1
, mod
),
2244 const1_rtx
, constm1_rtx
),
2248 /* Return the difference between the rounded and the truncated result
2249 of a unsigned division by OP1 with remainder MOD. Halfway cases
2250 are rounded away from zero, rather than to the nearest even
2253 round_udiv_adjust (enum machine_mode mode
, rtx mod
, rtx op1
)
2255 /* (mod >= op1 - mod ? 1 : 0) */
2256 return gen_rtx_IF_THEN_ELSE
2257 (mode
, gen_rtx_GE (BImode
, mod
,
2258 gen_rtx_MINUS (mode
, op1
, mod
)),
2259 const1_rtx
, const0_rtx
);
2262 /* Convert X to MODE, that must be Pmode or ptr_mode, without emitting
2266 convert_debug_memory_address (enum machine_mode mode
, rtx x
,
2269 enum machine_mode xmode
= GET_MODE (x
);
2271 #ifndef POINTERS_EXTEND_UNSIGNED
2272 gcc_assert (mode
== Pmode
2273 || mode
== targetm
.addr_space
.address_mode (as
));
2274 gcc_assert (xmode
== mode
|| xmode
== VOIDmode
);
2277 enum machine_mode address_mode
= targetm
.addr_space
.address_mode (as
);
2278 enum machine_mode pointer_mode
= targetm
.addr_space
.pointer_mode (as
);
2280 gcc_assert (mode
== address_mode
|| mode
== pointer_mode
);
2282 if (GET_MODE (x
) == mode
|| GET_MODE (x
) == VOIDmode
)
2285 if (GET_MODE_BITSIZE (mode
) < GET_MODE_BITSIZE (xmode
))
2286 x
= simplify_gen_subreg (mode
, x
, xmode
,
2287 subreg_lowpart_offset
2289 else if (POINTERS_EXTEND_UNSIGNED
> 0)
2290 x
= gen_rtx_ZERO_EXTEND (mode
, x
);
2291 else if (!POINTERS_EXTEND_UNSIGNED
)
2292 x
= gen_rtx_SIGN_EXTEND (mode
, x
);
2295 switch (GET_CODE (x
))
2298 if ((SUBREG_PROMOTED_VAR_P (x
)
2299 || (REG_P (SUBREG_REG (x
)) && REG_POINTER (SUBREG_REG (x
)))
2300 || (GET_CODE (SUBREG_REG (x
)) == PLUS
2301 && REG_P (XEXP (SUBREG_REG (x
), 0))
2302 && REG_POINTER (XEXP (SUBREG_REG (x
), 0))
2303 && CONST_INT_P (XEXP (SUBREG_REG (x
), 1))))
2304 && GET_MODE (SUBREG_REG (x
)) == mode
)
2305 return SUBREG_REG (x
);
2308 temp
= gen_rtx_LABEL_REF (mode
, XEXP (x
, 0));
2309 LABEL_REF_NONLOCAL_P (temp
) = LABEL_REF_NONLOCAL_P (x
);
2312 temp
= shallow_copy_rtx (x
);
2313 PUT_MODE (temp
, mode
);
2316 temp
= convert_debug_memory_address (mode
, XEXP (x
, 0), as
);
2318 temp
= gen_rtx_CONST (mode
, temp
);
2322 if (CONST_INT_P (XEXP (x
, 1)))
2324 temp
= convert_debug_memory_address (mode
, XEXP (x
, 0), as
);
2326 return gen_rtx_fmt_ee (GET_CODE (x
), mode
, temp
, XEXP (x
, 1));
2332 /* Don't know how to express ptr_extend as operation in debug info. */
2335 #endif /* POINTERS_EXTEND_UNSIGNED */
2340 /* Return an RTX equivalent to the value of the tree expression
2344 expand_debug_expr (tree exp
)
2346 rtx op0
= NULL_RTX
, op1
= NULL_RTX
, op2
= NULL_RTX
;
2347 enum machine_mode mode
= TYPE_MODE (TREE_TYPE (exp
));
2348 enum machine_mode inner_mode
= VOIDmode
;
2349 int unsignedp
= TYPE_UNSIGNED (TREE_TYPE (exp
));
2352 switch (TREE_CODE_CLASS (TREE_CODE (exp
)))
2354 case tcc_expression
:
2355 switch (TREE_CODE (exp
))
2359 case WIDEN_MULT_PLUS_EXPR
:
2360 case WIDEN_MULT_MINUS_EXPR
:
2364 case TRUTH_ANDIF_EXPR
:
2365 case TRUTH_ORIF_EXPR
:
2366 case TRUTH_AND_EXPR
:
2368 case TRUTH_XOR_EXPR
:
2371 case TRUTH_NOT_EXPR
:
2380 op2
= expand_debug_expr (TREE_OPERAND (exp
, 2));
2387 case tcc_comparison
:
2388 op1
= expand_debug_expr (TREE_OPERAND (exp
, 1));
2395 inner_mode
= TYPE_MODE (TREE_TYPE (TREE_OPERAND (exp
, 0)));
2396 op0
= expand_debug_expr (TREE_OPERAND (exp
, 0));
2406 case tcc_exceptional
:
2407 case tcc_declaration
:
2413 switch (TREE_CODE (exp
))
2416 if (!lookup_constant_def (exp
))
2418 if (strlen (TREE_STRING_POINTER (exp
)) + 1
2419 != (size_t) TREE_STRING_LENGTH (exp
))
2421 op0
= gen_rtx_CONST_STRING (Pmode
, TREE_STRING_POINTER (exp
));
2422 op0
= gen_rtx_MEM (BLKmode
, op0
);
2423 set_mem_attributes (op0
, exp
, 0);
2426 /* Fall through... */
2431 op0
= expand_expr (exp
, NULL_RTX
, mode
, EXPAND_INITIALIZER
);
2435 gcc_assert (COMPLEX_MODE_P (mode
));
2436 op0
= expand_debug_expr (TREE_REALPART (exp
));
2437 op1
= expand_debug_expr (TREE_IMAGPART (exp
));
2438 return gen_rtx_CONCAT (mode
, op0
, op1
);
2440 case DEBUG_EXPR_DECL
:
2441 op0
= DECL_RTL_IF_SET (exp
);
2446 op0
= gen_rtx_DEBUG_EXPR (mode
);
2447 DEBUG_EXPR_TREE_DECL (op0
) = exp
;
2448 SET_DECL_RTL (exp
, op0
);
2458 op0
= DECL_RTL_IF_SET (exp
);
2460 /* This decl was probably optimized away. */
2463 if (TREE_CODE (exp
) != VAR_DECL
2464 || DECL_EXTERNAL (exp
)
2465 || !TREE_STATIC (exp
)
2467 || DECL_HARD_REGISTER (exp
)
2468 || DECL_IN_CONSTANT_POOL (exp
)
2469 || mode
== VOIDmode
)
2472 op0
= make_decl_rtl_for_debug (exp
);
2474 || GET_CODE (XEXP (op0
, 0)) != SYMBOL_REF
2475 || SYMBOL_REF_DECL (XEXP (op0
, 0)) != exp
)
2479 op0
= copy_rtx (op0
);
2481 if (GET_MODE (op0
) == BLKmode
2482 /* If op0 is not BLKmode, but BLKmode is, adjust_mode
2483 below would ICE. While it is likely a FE bug,
2484 try to be robust here. See PR43166. */
2486 || (mode
== VOIDmode
&& GET_MODE (op0
) != VOIDmode
))
2488 gcc_assert (MEM_P (op0
));
2489 op0
= adjust_address_nv (op0
, mode
, 0);
2500 inner_mode
= GET_MODE (op0
);
2502 if (mode
== inner_mode
)
2505 if (inner_mode
== VOIDmode
)
2507 if (TREE_CODE (exp
) == SSA_NAME
)
2508 inner_mode
= TYPE_MODE (TREE_TYPE (exp
));
2510 inner_mode
= TYPE_MODE (TREE_TYPE (TREE_OPERAND (exp
, 0)));
2511 if (mode
== inner_mode
)
2515 if (FLOAT_MODE_P (mode
) && FLOAT_MODE_P (inner_mode
))
2517 if (GET_MODE_BITSIZE (mode
) == GET_MODE_BITSIZE (inner_mode
))
2518 op0
= simplify_gen_subreg (mode
, op0
, inner_mode
, 0);
2519 else if (GET_MODE_BITSIZE (mode
) < GET_MODE_BITSIZE (inner_mode
))
2520 op0
= simplify_gen_unary (FLOAT_TRUNCATE
, mode
, op0
, inner_mode
);
2522 op0
= simplify_gen_unary (FLOAT_EXTEND
, mode
, op0
, inner_mode
);
2524 else if (FLOAT_MODE_P (mode
))
2526 gcc_assert (TREE_CODE (exp
) != SSA_NAME
);
2527 if (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0))))
2528 op0
= simplify_gen_unary (UNSIGNED_FLOAT
, mode
, op0
, inner_mode
);
2530 op0
= simplify_gen_unary (FLOAT
, mode
, op0
, inner_mode
);
2532 else if (FLOAT_MODE_P (inner_mode
))
2535 op0
= simplify_gen_unary (UNSIGNED_FIX
, mode
, op0
, inner_mode
);
2537 op0
= simplify_gen_unary (FIX
, mode
, op0
, inner_mode
);
2539 else if (CONSTANT_P (op0
)
2540 || GET_MODE_BITSIZE (mode
) <= GET_MODE_BITSIZE (inner_mode
))
2541 op0
= simplify_gen_subreg (mode
, op0
, inner_mode
,
2542 subreg_lowpart_offset (mode
,
2544 else if (TREE_CODE_CLASS (TREE_CODE (exp
)) == tcc_unary
2545 ? TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0)))
2547 op0
= simplify_gen_unary (ZERO_EXTEND
, mode
, op0
, inner_mode
);
2549 op0
= simplify_gen_unary (SIGN_EXTEND
, mode
, op0
, inner_mode
);
2555 if (!is_gimple_mem_ref_addr (TREE_OPERAND (exp
, 0)))
2557 tree newexp
= fold_binary (MEM_REF
, TREE_TYPE (exp
),
2558 TREE_OPERAND (exp
, 0),
2559 TREE_OPERAND (exp
, 1));
2561 return expand_debug_expr (newexp
);
2565 op0
= expand_debug_expr (TREE_OPERAND (exp
, 0));
2569 if (TREE_CODE (exp
) == MEM_REF
)
2571 if (GET_CODE (op0
) == DEBUG_IMPLICIT_PTR
2572 || (GET_CODE (op0
) == PLUS
2573 && GET_CODE (XEXP (op0
, 0)) == DEBUG_IMPLICIT_PTR
))
2574 /* (mem (debug_implicit_ptr)) might confuse aliasing.
2575 Instead just use get_inner_reference. */
2578 op1
= expand_debug_expr (TREE_OPERAND (exp
, 1));
2579 if (!op1
|| !CONST_INT_P (op1
))
2582 op0
= plus_constant (op0
, INTVAL (op1
));
2585 if (POINTER_TYPE_P (TREE_TYPE (exp
)))
2586 as
= TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp
)));
2588 as
= ADDR_SPACE_GENERIC
;
2590 op0
= convert_debug_memory_address (targetm
.addr_space
.address_mode (as
),
2592 if (op0
== NULL_RTX
)
2595 op0
= gen_rtx_MEM (mode
, op0
);
2596 set_mem_attributes (op0
, exp
, 0);
2597 if (TREE_CODE (exp
) == MEM_REF
2598 && !is_gimple_mem_ref_addr (TREE_OPERAND (exp
, 0)))
2599 set_mem_expr (op0
, NULL_TREE
);
2600 set_mem_addr_space (op0
, as
);
2604 case TARGET_MEM_REF
:
2605 if (TREE_CODE (TMR_BASE (exp
)) == ADDR_EXPR
2606 && !DECL_RTL_SET_P (TREE_OPERAND (TMR_BASE (exp
), 0)))
2609 op0
= expand_debug_expr
2610 (tree_mem_ref_addr (build_pointer_type (TREE_TYPE (exp
)), exp
));
2614 if (POINTER_TYPE_P (TREE_TYPE (exp
)))
2615 as
= TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp
)));
2617 as
= ADDR_SPACE_GENERIC
;
2619 op0
= convert_debug_memory_address (targetm
.addr_space
.address_mode (as
),
2621 if (op0
== NULL_RTX
)
2624 op0
= gen_rtx_MEM (mode
, op0
);
2626 set_mem_attributes (op0
, exp
, 0);
2627 set_mem_addr_space (op0
, as
);
2633 case ARRAY_RANGE_REF
:
2638 case VIEW_CONVERT_EXPR
:
2640 enum machine_mode mode1
;
2641 HOST_WIDE_INT bitsize
, bitpos
;
2644 tree tem
= get_inner_reference (exp
, &bitsize
, &bitpos
, &offset
,
2645 &mode1
, &unsignedp
, &volatilep
, false);
2651 orig_op0
= op0
= expand_debug_expr (tem
);
2658 enum machine_mode addrmode
, offmode
;
2663 op0
= XEXP (op0
, 0);
2664 addrmode
= GET_MODE (op0
);
2665 if (addrmode
== VOIDmode
)
2668 op1
= expand_debug_expr (offset
);
2672 offmode
= GET_MODE (op1
);
2673 if (offmode
== VOIDmode
)
2674 offmode
= TYPE_MODE (TREE_TYPE (offset
));
2676 if (addrmode
!= offmode
)
2677 op1
= simplify_gen_subreg (addrmode
, op1
, offmode
,
2678 subreg_lowpart_offset (addrmode
,
2681 /* Don't use offset_address here, we don't need a
2682 recognizable address, and we don't want to generate
2684 op0
= gen_rtx_MEM (mode
, simplify_gen_binary (PLUS
, addrmode
,
2690 if (mode1
== VOIDmode
)
2692 mode1
= smallest_mode_for_size (bitsize
, MODE_INT
);
2693 if (bitpos
>= BITS_PER_UNIT
)
2695 op0
= adjust_address_nv (op0
, mode1
, bitpos
/ BITS_PER_UNIT
);
2696 bitpos
%= BITS_PER_UNIT
;
2698 else if (bitpos
< 0)
2701 = (-bitpos
+ BITS_PER_UNIT
- 1) / BITS_PER_UNIT
;
2702 op0
= adjust_address_nv (op0
, mode1
, units
);
2703 bitpos
+= units
* BITS_PER_UNIT
;
2705 else if (bitpos
== 0 && bitsize
== GET_MODE_BITSIZE (mode
))
2706 op0
= adjust_address_nv (op0
, mode
, 0);
2707 else if (GET_MODE (op0
) != mode1
)
2708 op0
= adjust_address_nv (op0
, mode1
, 0);
2710 op0
= copy_rtx (op0
);
2711 if (op0
== orig_op0
)
2712 op0
= shallow_copy_rtx (op0
);
2713 set_mem_attributes (op0
, exp
, 0);
2716 if (bitpos
== 0 && mode
== GET_MODE (op0
))
2722 if (GET_MODE (op0
) == BLKmode
)
2725 if ((bitpos
% BITS_PER_UNIT
) == 0
2726 && bitsize
== GET_MODE_BITSIZE (mode1
))
2728 enum machine_mode opmode
= GET_MODE (op0
);
2730 if (opmode
== VOIDmode
)
2731 opmode
= TYPE_MODE (TREE_TYPE (tem
));
2733 /* This condition may hold if we're expanding the address
2734 right past the end of an array that turned out not to
2735 be addressable (i.e., the address was only computed in
2736 debug stmts). The gen_subreg below would rightfully
2737 crash, and the address doesn't really exist, so just
2739 if (bitpos
>= GET_MODE_BITSIZE (opmode
))
2742 if ((bitpos
% GET_MODE_BITSIZE (mode
)) == 0)
2743 return simplify_gen_subreg (mode
, op0
, opmode
,
2744 bitpos
/ BITS_PER_UNIT
);
2747 return simplify_gen_ternary (SCALAR_INT_MODE_P (GET_MODE (op0
))
2748 && TYPE_UNSIGNED (TREE_TYPE (exp
))
2750 : ZERO_EXTRACT
, mode
,
2751 GET_MODE (op0
) != VOIDmode
2753 : TYPE_MODE (TREE_TYPE (tem
)),
2754 op0
, GEN_INT (bitsize
), GEN_INT (bitpos
));
2758 return simplify_gen_unary (ABS
, mode
, op0
, mode
);
2761 return simplify_gen_unary (NEG
, mode
, op0
, mode
);
2764 return simplify_gen_unary (NOT
, mode
, op0
, mode
);
2767 return simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
2769 ? UNSIGNED_FLOAT
: FLOAT
, mode
, op0
,
2772 case FIX_TRUNC_EXPR
:
2773 return simplify_gen_unary (unsignedp
? UNSIGNED_FIX
: FIX
, mode
, op0
,
2776 case POINTER_PLUS_EXPR
:
2777 /* For the rare target where pointers are not the same size as
2778 size_t, we need to check for mis-matched modes and correct
2781 && GET_MODE (op0
) != VOIDmode
&& GET_MODE (op1
) != VOIDmode
2782 && GET_MODE (op0
) != GET_MODE (op1
))
2784 if (GET_MODE_BITSIZE (GET_MODE (op0
)) < GET_MODE_BITSIZE (GET_MODE (op1
)))
2785 op1
= simplify_gen_unary (TRUNCATE
, GET_MODE (op0
), op1
,
2788 /* We always sign-extend, regardless of the signedness of
2789 the operand, because the operand is always unsigned
2790 here even if the original C expression is signed. */
2791 op1
= simplify_gen_unary (SIGN_EXTEND
, GET_MODE (op0
), op1
,
2796 return simplify_gen_binary (PLUS
, mode
, op0
, op1
);
2799 return simplify_gen_binary (MINUS
, mode
, op0
, op1
);
2802 return simplify_gen_binary (MULT
, mode
, op0
, op1
);
2805 case TRUNC_DIV_EXPR
:
2806 case EXACT_DIV_EXPR
:
2808 return simplify_gen_binary (UDIV
, mode
, op0
, op1
);
2810 return simplify_gen_binary (DIV
, mode
, op0
, op1
);
2812 case TRUNC_MOD_EXPR
:
2813 return simplify_gen_binary (unsignedp
? UMOD
: MOD
, mode
, op0
, op1
);
2815 case FLOOR_DIV_EXPR
:
2817 return simplify_gen_binary (UDIV
, mode
, op0
, op1
);
2820 rtx div
= simplify_gen_binary (DIV
, mode
, op0
, op1
);
2821 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
2822 rtx adj
= floor_sdiv_adjust (mode
, mod
, op1
);
2823 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
2826 case FLOOR_MOD_EXPR
:
2828 return simplify_gen_binary (UMOD
, mode
, op0
, op1
);
2831 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
2832 rtx adj
= floor_sdiv_adjust (mode
, mod
, op1
);
2833 adj
= simplify_gen_unary (NEG
, mode
,
2834 simplify_gen_binary (MULT
, mode
, adj
, op1
),
2836 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
2842 rtx div
= simplify_gen_binary (UDIV
, mode
, op0
, op1
);
2843 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
2844 rtx adj
= ceil_udiv_adjust (mode
, mod
, op1
);
2845 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
2849 rtx div
= simplify_gen_binary (DIV
, mode
, op0
, op1
);
2850 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
2851 rtx adj
= ceil_sdiv_adjust (mode
, mod
, op1
);
2852 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
2858 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
2859 rtx adj
= ceil_udiv_adjust (mode
, mod
, op1
);
2860 adj
= simplify_gen_unary (NEG
, mode
,
2861 simplify_gen_binary (MULT
, mode
, adj
, op1
),
2863 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
2867 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
2868 rtx adj
= ceil_sdiv_adjust (mode
, mod
, op1
);
2869 adj
= simplify_gen_unary (NEG
, mode
,
2870 simplify_gen_binary (MULT
, mode
, adj
, op1
),
2872 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
2875 case ROUND_DIV_EXPR
:
2878 rtx div
= simplify_gen_binary (UDIV
, mode
, op0
, op1
);
2879 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
2880 rtx adj
= round_udiv_adjust (mode
, mod
, op1
);
2881 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
2885 rtx div
= simplify_gen_binary (DIV
, mode
, op0
, op1
);
2886 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
2887 rtx adj
= round_sdiv_adjust (mode
, mod
, op1
);
2888 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
2891 case ROUND_MOD_EXPR
:
2894 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
2895 rtx adj
= round_udiv_adjust (mode
, mod
, op1
);
2896 adj
= simplify_gen_unary (NEG
, mode
,
2897 simplify_gen_binary (MULT
, mode
, adj
, op1
),
2899 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
2903 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
2904 rtx adj
= round_sdiv_adjust (mode
, mod
, op1
);
2905 adj
= simplify_gen_unary (NEG
, mode
,
2906 simplify_gen_binary (MULT
, mode
, adj
, op1
),
2908 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
2912 return simplify_gen_binary (ASHIFT
, mode
, op0
, op1
);
2916 return simplify_gen_binary (LSHIFTRT
, mode
, op0
, op1
);
2918 return simplify_gen_binary (ASHIFTRT
, mode
, op0
, op1
);
2921 return simplify_gen_binary (ROTATE
, mode
, op0
, op1
);
2924 return simplify_gen_binary (ROTATERT
, mode
, op0
, op1
);
2927 return simplify_gen_binary (unsignedp
? UMIN
: SMIN
, mode
, op0
, op1
);
2930 return simplify_gen_binary (unsignedp
? UMAX
: SMAX
, mode
, op0
, op1
);
2933 case TRUTH_AND_EXPR
:
2934 return simplify_gen_binary (AND
, mode
, op0
, op1
);
2938 return simplify_gen_binary (IOR
, mode
, op0
, op1
);
2941 case TRUTH_XOR_EXPR
:
2942 return simplify_gen_binary (XOR
, mode
, op0
, op1
);
2944 case TRUTH_ANDIF_EXPR
:
2945 return gen_rtx_IF_THEN_ELSE (mode
, op0
, op1
, const0_rtx
);
2947 case TRUTH_ORIF_EXPR
:
2948 return gen_rtx_IF_THEN_ELSE (mode
, op0
, const_true_rtx
, op1
);
2950 case TRUTH_NOT_EXPR
:
2951 return simplify_gen_relational (EQ
, mode
, inner_mode
, op0
, const0_rtx
);
2954 return simplify_gen_relational (unsignedp
? LTU
: LT
, mode
, inner_mode
,
2958 return simplify_gen_relational (unsignedp
? LEU
: LE
, mode
, inner_mode
,
2962 return simplify_gen_relational (unsignedp
? GTU
: GT
, mode
, inner_mode
,
2966 return simplify_gen_relational (unsignedp
? GEU
: GE
, mode
, inner_mode
,
2970 return simplify_gen_relational (EQ
, mode
, inner_mode
, op0
, op1
);
2973 return simplify_gen_relational (NE
, mode
, inner_mode
, op0
, op1
);
2975 case UNORDERED_EXPR
:
2976 return simplify_gen_relational (UNORDERED
, mode
, inner_mode
, op0
, op1
);
2979 return simplify_gen_relational (ORDERED
, mode
, inner_mode
, op0
, op1
);
2982 return simplify_gen_relational (UNLT
, mode
, inner_mode
, op0
, op1
);
2985 return simplify_gen_relational (UNLE
, mode
, inner_mode
, op0
, op1
);
2988 return simplify_gen_relational (UNGT
, mode
, inner_mode
, op0
, op1
);
2991 return simplify_gen_relational (UNGE
, mode
, inner_mode
, op0
, op1
);
2994 return simplify_gen_relational (UNEQ
, mode
, inner_mode
, op0
, op1
);
2997 return simplify_gen_relational (LTGT
, mode
, inner_mode
, op0
, op1
);
3000 return gen_rtx_IF_THEN_ELSE (mode
, op0
, op1
, op2
);
3003 gcc_assert (COMPLEX_MODE_P (mode
));
3004 if (GET_MODE (op0
) == VOIDmode
)
3005 op0
= gen_rtx_CONST (GET_MODE_INNER (mode
), op0
);
3006 if (GET_MODE (op1
) == VOIDmode
)
3007 op1
= gen_rtx_CONST (GET_MODE_INNER (mode
), op1
);
3008 return gen_rtx_CONCAT (mode
, op0
, op1
);
3011 if (GET_CODE (op0
) == CONCAT
)
3012 return gen_rtx_CONCAT (mode
, XEXP (op0
, 0),
3013 simplify_gen_unary (NEG
, GET_MODE_INNER (mode
),
3015 GET_MODE_INNER (mode
)));
3018 enum machine_mode imode
= GET_MODE_INNER (mode
);
3023 re
= adjust_address_nv (op0
, imode
, 0);
3024 im
= adjust_address_nv (op0
, imode
, GET_MODE_SIZE (imode
));
3028 enum machine_mode ifmode
= int_mode_for_mode (mode
);
3029 enum machine_mode ihmode
= int_mode_for_mode (imode
);
3031 if (ifmode
== BLKmode
|| ihmode
== BLKmode
)
3033 halfsize
= GEN_INT (GET_MODE_BITSIZE (ihmode
));
3036 re
= gen_rtx_SUBREG (ifmode
, re
, 0);
3037 re
= gen_rtx_ZERO_EXTRACT (ihmode
, re
, halfsize
, const0_rtx
);
3038 if (imode
!= ihmode
)
3039 re
= gen_rtx_SUBREG (imode
, re
, 0);
3040 im
= copy_rtx (op0
);
3042 im
= gen_rtx_SUBREG (ifmode
, im
, 0);
3043 im
= gen_rtx_ZERO_EXTRACT (ihmode
, im
, halfsize
, halfsize
);
3044 if (imode
!= ihmode
)
3045 im
= gen_rtx_SUBREG (imode
, im
, 0);
3047 im
= gen_rtx_NEG (imode
, im
);
3048 return gen_rtx_CONCAT (mode
, re
, im
);
3052 op0
= expand_debug_expr (TREE_OPERAND (exp
, 0));
3053 if (!op0
|| !MEM_P (op0
))
3055 if ((TREE_CODE (TREE_OPERAND (exp
, 0)) == VAR_DECL
3056 || TREE_CODE (TREE_OPERAND (exp
, 0)) == PARM_DECL
3057 || TREE_CODE (TREE_OPERAND (exp
, 0)) == RESULT_DECL
)
3058 && !TREE_ADDRESSABLE (TREE_OPERAND (exp
, 0)))
3059 return gen_rtx_DEBUG_IMPLICIT_PTR (mode
, TREE_OPERAND (exp
, 0));
3061 if (handled_component_p (TREE_OPERAND (exp
, 0)))
3063 HOST_WIDE_INT bitoffset
, bitsize
, maxsize
;
3065 = get_ref_base_and_extent (TREE_OPERAND (exp
, 0),
3066 &bitoffset
, &bitsize
, &maxsize
);
3067 if ((TREE_CODE (decl
) == VAR_DECL
3068 || TREE_CODE (decl
) == PARM_DECL
3069 || TREE_CODE (decl
) == RESULT_DECL
)
3070 && !TREE_ADDRESSABLE (decl
)
3071 && (bitoffset
% BITS_PER_UNIT
) == 0
3073 && bitsize
== maxsize
)
3074 return plus_constant (gen_rtx_DEBUG_IMPLICIT_PTR (mode
, decl
),
3075 bitoffset
/ BITS_PER_UNIT
);
3081 as
= TYPE_ADDR_SPACE (TREE_TYPE (exp
));
3082 op0
= convert_debug_memory_address (mode
, XEXP (op0
, 0), as
);
3087 exp
= build_constructor_from_list (TREE_TYPE (exp
),
3088 TREE_VECTOR_CST_ELTS (exp
));
3092 if (TREE_CODE (TREE_TYPE (exp
)) == VECTOR_TYPE
)
3097 op0
= gen_rtx_CONCATN
3098 (mode
, rtvec_alloc (TYPE_VECTOR_SUBPARTS (TREE_TYPE (exp
))));
3100 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp
), i
, val
)
3102 op1
= expand_debug_expr (val
);
3105 XVECEXP (op0
, 0, i
) = op1
;
3108 if (i
< TYPE_VECTOR_SUBPARTS (TREE_TYPE (exp
)))
3110 op1
= expand_debug_expr
3111 (build_zero_cst (TREE_TYPE (TREE_TYPE (exp
))));
3116 for (; i
< TYPE_VECTOR_SUBPARTS (TREE_TYPE (exp
)); i
++)
3117 XVECEXP (op0
, 0, i
) = op1
;
3123 goto flag_unsupported
;
3126 /* ??? Maybe handle some builtins? */
3131 gimple g
= get_gimple_for_ssa_name (exp
);
3134 op0
= expand_debug_expr (gimple_assign_rhs_to_tree (g
));
3140 int part
= var_to_partition (SA
.map
, exp
);
3142 if (part
== NO_PARTITION
)
3144 /* If this is a reference to an incoming value of parameter
3145 that is never used in the code or where the incoming
3146 value is never used in the code, use PARM_DECL's
3148 if (SSA_NAME_IS_DEFAULT_DEF (exp
)
3149 && TREE_CODE (SSA_NAME_VAR (exp
)) == PARM_DECL
)
3151 rtx incoming
= DECL_INCOMING_RTL (SSA_NAME_VAR (exp
));
3153 && GET_MODE (incoming
) != BLKmode
3154 && ((REG_P (incoming
) && HARD_REGISTER_P (incoming
))
3155 || (MEM_P (incoming
)
3156 && REG_P (XEXP (incoming
, 0))
3157 && HARD_REGISTER_P (XEXP (incoming
, 0)))))
3159 op0
= gen_rtx_ENTRY_VALUE (GET_MODE (incoming
));
3160 ENTRY_VALUE_EXP (op0
) = incoming
;
3165 && !TREE_ADDRESSABLE (SSA_NAME_VAR (exp
))
3166 && GET_MODE (incoming
) != BLKmode
3167 && (XEXP (incoming
, 0) == virtual_incoming_args_rtx
3168 || (GET_CODE (XEXP (incoming
, 0)) == PLUS
3169 && XEXP (XEXP (incoming
, 0), 0)
3170 == virtual_incoming_args_rtx
3171 && CONST_INT_P (XEXP (XEXP (incoming
, 0),
3177 op0
= expand_debug_expr (SSA_NAME_VAR (exp
));
3185 gcc_assert (part
>= 0 && (unsigned)part
< SA
.map
->num_partitions
);
3187 op0
= copy_rtx (SA
.partition_to_pseudo
[part
]);
3195 /* Vector stuff. For most of the codes we don't have rtl codes. */
3196 case REALIGN_LOAD_EXPR
:
3197 case REDUC_MAX_EXPR
:
3198 case REDUC_MIN_EXPR
:
3199 case REDUC_PLUS_EXPR
:
3201 case VEC_EXTRACT_EVEN_EXPR
:
3202 case VEC_EXTRACT_ODD_EXPR
:
3203 case VEC_INTERLEAVE_HIGH_EXPR
:
3204 case VEC_INTERLEAVE_LOW_EXPR
:
3205 case VEC_LSHIFT_EXPR
:
3206 case VEC_PACK_FIX_TRUNC_EXPR
:
3207 case VEC_PACK_SAT_EXPR
:
3208 case VEC_PACK_TRUNC_EXPR
:
3209 case VEC_RSHIFT_EXPR
:
3210 case VEC_UNPACK_FLOAT_HI_EXPR
:
3211 case VEC_UNPACK_FLOAT_LO_EXPR
:
3212 case VEC_UNPACK_HI_EXPR
:
3213 case VEC_UNPACK_LO_EXPR
:
3214 case VEC_WIDEN_MULT_HI_EXPR
:
3215 case VEC_WIDEN_MULT_LO_EXPR
:
3219 case ADDR_SPACE_CONVERT_EXPR
:
3220 case FIXED_CONVERT_EXPR
:
3222 case WITH_SIZE_EXPR
:
3226 if (SCALAR_INT_MODE_P (GET_MODE (op0
))
3227 && SCALAR_INT_MODE_P (mode
))
3230 = simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
3232 ? ZERO_EXTEND
: SIGN_EXTEND
, mode
, op0
,
3235 = simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
3237 ? ZERO_EXTEND
: SIGN_EXTEND
, mode
, op1
,
3239 op0
= simplify_gen_binary (MULT
, mode
, op0
, op1
);
3240 return simplify_gen_binary (PLUS
, mode
, op0
, op2
);
3244 case WIDEN_MULT_EXPR
:
3245 case WIDEN_MULT_PLUS_EXPR
:
3246 case WIDEN_MULT_MINUS_EXPR
:
3247 if (SCALAR_INT_MODE_P (GET_MODE (op0
))
3248 && SCALAR_INT_MODE_P (mode
))
3250 inner_mode
= GET_MODE (op0
);
3251 if (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0))))
3252 op0
= simplify_gen_unary (ZERO_EXTEND
, mode
, op0
, inner_mode
);
3254 op0
= simplify_gen_unary (SIGN_EXTEND
, mode
, op0
, inner_mode
);
3255 if (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 1))))
3256 op1
= simplify_gen_unary (ZERO_EXTEND
, mode
, op1
, inner_mode
);
3258 op1
= simplify_gen_unary (SIGN_EXTEND
, mode
, op1
, inner_mode
);
3259 op0
= simplify_gen_binary (MULT
, mode
, op0
, op1
);
3260 if (TREE_CODE (exp
) == WIDEN_MULT_EXPR
)
3262 else if (TREE_CODE (exp
) == WIDEN_MULT_PLUS_EXPR
)
3263 return simplify_gen_binary (PLUS
, mode
, op0
, op2
);
3265 return simplify_gen_binary (MINUS
, mode
, op2
, op0
);
3269 case WIDEN_SUM_EXPR
:
3270 if (SCALAR_INT_MODE_P (GET_MODE (op0
))
3271 && SCALAR_INT_MODE_P (mode
))
3274 = simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
3276 ? ZERO_EXTEND
: SIGN_EXTEND
, mode
, op0
,
3278 return simplify_gen_binary (PLUS
, mode
, op0
, op1
);
3283 return simplify_gen_ternary (FMA
, mode
, inner_mode
, op0
, op1
, op2
);
3287 #ifdef ENABLE_CHECKING
3296 /* Expand the _LOCs in debug insns. We run this after expanding all
3297 regular insns, so that any variables referenced in the function
3298 will have their DECL_RTLs set. */
3301 expand_debug_locations (void)
3304 rtx last
= get_last_insn ();
3305 int save_strict_alias
= flag_strict_aliasing
;
3307 /* New alias sets while setting up memory attributes cause
3308 -fcompare-debug failures, even though it doesn't bring about any
3310 flag_strict_aliasing
= 0;
3312 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
3313 if (DEBUG_INSN_P (insn
))
3315 tree value
= (tree
)INSN_VAR_LOCATION_LOC (insn
);
3317 enum machine_mode mode
;
3319 if (value
== NULL_TREE
)
3323 val
= expand_debug_expr (value
);
3324 gcc_assert (last
== get_last_insn ());
3328 val
= gen_rtx_UNKNOWN_VAR_LOC ();
3331 mode
= GET_MODE (INSN_VAR_LOCATION (insn
));
3333 gcc_assert (mode
== GET_MODE (val
)
3334 || (GET_MODE (val
) == VOIDmode
3335 && (CONST_INT_P (val
)
3336 || GET_CODE (val
) == CONST_FIXED
3337 || GET_CODE (val
) == CONST_DOUBLE
3338 || GET_CODE (val
) == LABEL_REF
)));
3341 INSN_VAR_LOCATION_LOC (insn
) = val
;
3344 flag_strict_aliasing
= save_strict_alias
;
3347 /* Expand basic block BB from GIMPLE trees to RTL. */
3350 expand_gimple_basic_block (basic_block bb
)
3352 gimple_stmt_iterator gsi
;
3361 fprintf (dump_file
, "\n;; Generating RTL for gimple basic block %d\n",
3364 /* Note that since we are now transitioning from GIMPLE to RTL, we
3365 cannot use the gsi_*_bb() routines because they expect the basic
3366 block to be in GIMPLE, instead of RTL. Therefore, we need to
3367 access the BB sequence directly. */
3368 stmts
= bb_seq (bb
);
3369 bb
->il
.gimple
= NULL
;
3370 rtl_profile_for_bb (bb
);
3371 init_rtl_bb_info (bb
);
3372 bb
->flags
|= BB_RTL
;
3374 /* Remove the RETURN_EXPR if we may fall though to the exit
3376 gsi
= gsi_last (stmts
);
3377 if (!gsi_end_p (gsi
)
3378 && gimple_code (gsi_stmt (gsi
)) == GIMPLE_RETURN
)
3380 gimple ret_stmt
= gsi_stmt (gsi
);
3382 gcc_assert (single_succ_p (bb
));
3383 gcc_assert (single_succ (bb
) == EXIT_BLOCK_PTR
);
3385 if (bb
->next_bb
== EXIT_BLOCK_PTR
3386 && !gimple_return_retval (ret_stmt
))
3388 gsi_remove (&gsi
, false);
3389 single_succ_edge (bb
)->flags
|= EDGE_FALLTHRU
;
3393 gsi
= gsi_start (stmts
);
3394 if (!gsi_end_p (gsi
))
3396 stmt
= gsi_stmt (gsi
);
3397 if (gimple_code (stmt
) != GIMPLE_LABEL
)
3401 elt
= pointer_map_contains (lab_rtx_for_bb
, bb
);
3405 last
= get_last_insn ();
3409 expand_gimple_stmt (stmt
);
3414 emit_label ((rtx
) *elt
);
3416 /* Java emits line number notes in the top of labels.
3417 ??? Make this go away once line number notes are obsoleted. */
3418 BB_HEAD (bb
) = NEXT_INSN (last
);
3419 if (NOTE_P (BB_HEAD (bb
)))
3420 BB_HEAD (bb
) = NEXT_INSN (BB_HEAD (bb
));
3421 note
= emit_note_after (NOTE_INSN_BASIC_BLOCK
, BB_HEAD (bb
));
3423 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
3426 note
= BB_HEAD (bb
) = emit_note (NOTE_INSN_BASIC_BLOCK
);
3428 NOTE_BASIC_BLOCK (note
) = bb
;
3430 for (; !gsi_end_p (gsi
); gsi_next (&gsi
))
3434 stmt
= gsi_stmt (gsi
);
3436 /* If this statement is a non-debug one, and we generate debug
3437 insns, then this one might be the last real use of a TERed
3438 SSA_NAME, but where there are still some debug uses further
3439 down. Expanding the current SSA name in such further debug
3440 uses by their RHS might lead to wrong debug info, as coalescing
3441 might make the operands of such RHS be placed into the same
3442 pseudo as something else. Like so:
3443 a_1 = a_0 + 1; // Assume a_1 is TERed and a_0 is dead
3447 As a_0 and a_2 don't overlap in lifetime, assume they are coalesced.
3448 If we now would expand a_1 by it's RHS (a_0 + 1) in the debug use,
3449 the write to a_2 would actually have clobbered the place which
3452 So, instead of that, we recognize the situation, and generate
3453 debug temporaries at the last real use of TERed SSA names:
3460 if (MAY_HAVE_DEBUG_INSNS
3462 && !is_gimple_debug (stmt
))
3468 location_t sloc
= get_curr_insn_source_location ();
3469 tree sblock
= get_curr_insn_block ();
3471 /* Look for SSA names that have their last use here (TERed
3472 names always have only one real use). */
3473 FOR_EACH_SSA_TREE_OPERAND (op
, stmt
, iter
, SSA_OP_USE
)
3474 if ((def
= get_gimple_for_ssa_name (op
)))
3476 imm_use_iterator imm_iter
;
3477 use_operand_p use_p
;
3478 bool have_debug_uses
= false;
3480 FOR_EACH_IMM_USE_FAST (use_p
, imm_iter
, op
)
3482 if (gimple_debug_bind_p (USE_STMT (use_p
)))
3484 have_debug_uses
= true;
3489 if (have_debug_uses
)
3491 /* OP is a TERed SSA name, with DEF it's defining
3492 statement, and where OP is used in further debug
3493 instructions. Generate a debug temporary, and
3494 replace all uses of OP in debug insns with that
3497 tree value
= gimple_assign_rhs_to_tree (def
);
3498 tree vexpr
= make_node (DEBUG_EXPR_DECL
);
3500 enum machine_mode mode
;
3502 set_curr_insn_source_location (gimple_location (def
));
3503 set_curr_insn_block (gimple_block (def
));
3505 DECL_ARTIFICIAL (vexpr
) = 1;
3506 TREE_TYPE (vexpr
) = TREE_TYPE (value
);
3508 mode
= DECL_MODE (value
);
3510 mode
= TYPE_MODE (TREE_TYPE (value
));
3511 DECL_MODE (vexpr
) = mode
;
3513 val
= gen_rtx_VAR_LOCATION
3514 (mode
, vexpr
, (rtx
)value
, VAR_INIT_STATUS_INITIALIZED
);
3516 emit_debug_insn (val
);
3518 FOR_EACH_IMM_USE_STMT (debugstmt
, imm_iter
, op
)
3520 if (!gimple_debug_bind_p (debugstmt
))
3523 FOR_EACH_IMM_USE_ON_STMT (use_p
, imm_iter
)
3524 SET_USE (use_p
, vexpr
);
3526 update_stmt (debugstmt
);
3530 set_curr_insn_source_location (sloc
);
3531 set_curr_insn_block (sblock
);
3534 currently_expanding_gimple_stmt
= stmt
;
3536 /* Expand this statement, then evaluate the resulting RTL and
3537 fixup the CFG accordingly. */
3538 if (gimple_code (stmt
) == GIMPLE_COND
)
3540 new_bb
= expand_gimple_cond (bb
, stmt
);
3544 else if (gimple_debug_bind_p (stmt
))
3546 location_t sloc
= get_curr_insn_source_location ();
3547 tree sblock
= get_curr_insn_block ();
3548 gimple_stmt_iterator nsi
= gsi
;
3552 tree var
= gimple_debug_bind_get_var (stmt
);
3555 enum machine_mode mode
;
3557 if (gimple_debug_bind_has_value_p (stmt
))
3558 value
= gimple_debug_bind_get_value (stmt
);
3562 last
= get_last_insn ();
3564 set_curr_insn_source_location (gimple_location (stmt
));
3565 set_curr_insn_block (gimple_block (stmt
));
3568 mode
= DECL_MODE (var
);
3570 mode
= TYPE_MODE (TREE_TYPE (var
));
3572 val
= gen_rtx_VAR_LOCATION
3573 (mode
, var
, (rtx
)value
, VAR_INIT_STATUS_INITIALIZED
);
3575 emit_debug_insn (val
);
3577 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
3579 /* We can't dump the insn with a TREE where an RTX
3581 PAT_VAR_LOCATION_LOC (val
) = const0_rtx
;
3582 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
3583 PAT_VAR_LOCATION_LOC (val
) = (rtx
)value
;
3586 /* In order not to generate too many debug temporaries,
3587 we delink all uses of debug statements we already expanded.
3588 Therefore debug statements between definition and real
3589 use of TERed SSA names will continue to use the SSA name,
3590 and not be replaced with debug temps. */
3591 delink_stmt_imm_use (stmt
);
3595 if (gsi_end_p (nsi
))
3597 stmt
= gsi_stmt (nsi
);
3598 if (!gimple_debug_bind_p (stmt
))
3602 set_curr_insn_source_location (sloc
);
3603 set_curr_insn_block (sblock
);
3607 if (is_gimple_call (stmt
) && gimple_call_tail_p (stmt
))
3610 new_bb
= expand_gimple_tailcall (bb
, stmt
, &can_fallthru
);
3621 def_operand_p def_p
;
3622 def_p
= SINGLE_SSA_DEF_OPERAND (stmt
, SSA_OP_DEF
);
3626 /* Ignore this stmt if it is in the list of
3627 replaceable expressions. */
3629 && bitmap_bit_p (SA
.values
,
3630 SSA_NAME_VERSION (DEF_FROM_PTR (def_p
))))
3633 last
= expand_gimple_stmt (stmt
);
3634 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
3639 currently_expanding_gimple_stmt
= NULL
;
3641 /* Expand implicit goto and convert goto_locus. */
3642 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
3644 if (e
->goto_locus
&& e
->goto_block
)
3646 set_curr_insn_source_location (e
->goto_locus
);
3647 set_curr_insn_block (e
->goto_block
);
3648 e
->goto_locus
= curr_insn_locator ();
3650 e
->goto_block
= NULL
;
3651 if ((e
->flags
& EDGE_FALLTHRU
) && e
->dest
!= bb
->next_bb
)
3653 emit_jump (label_rtx_for_bb (e
->dest
));
3654 e
->flags
&= ~EDGE_FALLTHRU
;
3658 /* Expanded RTL can create a jump in the last instruction of block.
3659 This later might be assumed to be a jump to successor and break edge insertion.
3660 We need to insert dummy move to prevent this. PR41440. */
3661 if (single_succ_p (bb
)
3662 && (single_succ_edge (bb
)->flags
& EDGE_FALLTHRU
)
3663 && (last
= get_last_insn ())
3666 rtx dummy
= gen_reg_rtx (SImode
);
3667 emit_insn_after_noloc (gen_move_insn (dummy
, dummy
), last
, NULL
);
3670 do_pending_stack_adjust ();
3672 /* Find the block tail. The last insn in the block is the insn
3673 before a barrier and/or table jump insn. */
3674 last
= get_last_insn ();
3675 if (BARRIER_P (last
))
3676 last
= PREV_INSN (last
);
3677 if (JUMP_TABLE_DATA_P (last
))
3678 last
= PREV_INSN (PREV_INSN (last
));
3681 update_bb_for_insn (bb
);
3687 /* Create a basic block for initialization code. */
3690 construct_init_block (void)
3692 basic_block init_block
, first_block
;
3696 /* Multiple entry points not supported yet. */
3697 gcc_assert (EDGE_COUNT (ENTRY_BLOCK_PTR
->succs
) == 1);
3698 init_rtl_bb_info (ENTRY_BLOCK_PTR
);
3699 init_rtl_bb_info (EXIT_BLOCK_PTR
);
3700 ENTRY_BLOCK_PTR
->flags
|= BB_RTL
;
3701 EXIT_BLOCK_PTR
->flags
|= BB_RTL
;
3703 e
= EDGE_SUCC (ENTRY_BLOCK_PTR
, 0);
3705 /* When entry edge points to first basic block, we don't need jump,
3706 otherwise we have to jump into proper target. */
3707 if (e
&& e
->dest
!= ENTRY_BLOCK_PTR
->next_bb
)
3709 tree label
= gimple_block_label (e
->dest
);
3711 emit_jump (label_rtx (label
));
3715 flags
= EDGE_FALLTHRU
;
3717 init_block
= create_basic_block (NEXT_INSN (get_insns ()),
3720 init_block
->frequency
= ENTRY_BLOCK_PTR
->frequency
;
3721 init_block
->count
= ENTRY_BLOCK_PTR
->count
;
3724 first_block
= e
->dest
;
3725 redirect_edge_succ (e
, init_block
);
3726 e
= make_edge (init_block
, first_block
, flags
);
3729 e
= make_edge (init_block
, EXIT_BLOCK_PTR
, EDGE_FALLTHRU
);
3730 e
->probability
= REG_BR_PROB_BASE
;
3731 e
->count
= ENTRY_BLOCK_PTR
->count
;
3733 update_bb_for_insn (init_block
);
3737 /* For each lexical block, set BLOCK_NUMBER to the depth at which it is
3738 found in the block tree. */
3741 set_block_levels (tree block
, int level
)
3745 BLOCK_NUMBER (block
) = level
;
3746 set_block_levels (BLOCK_SUBBLOCKS (block
), level
+ 1);
3747 block
= BLOCK_CHAIN (block
);
3751 /* Create a block containing landing pads and similar stuff. */
3754 construct_exit_block (void)
3756 rtx head
= get_last_insn ();
3758 basic_block exit_block
;
3762 rtx orig_end
= BB_END (EXIT_BLOCK_PTR
->prev_bb
);
3764 rtl_profile_for_bb (EXIT_BLOCK_PTR
);
3766 /* Make sure the locus is set to the end of the function, so that
3767 epilogue line numbers and warnings are set properly. */
3768 if (cfun
->function_end_locus
!= UNKNOWN_LOCATION
)
3769 input_location
= cfun
->function_end_locus
;
3771 /* The following insns belong to the top scope. */
3772 set_curr_insn_block (DECL_INITIAL (current_function_decl
));
3774 /* Generate rtl for function exit. */
3775 expand_function_end ();
3777 end
= get_last_insn ();
3780 /* While emitting the function end we could move end of the last basic block.
3782 BB_END (EXIT_BLOCK_PTR
->prev_bb
) = orig_end
;
3783 while (NEXT_INSN (head
) && NOTE_P (NEXT_INSN (head
)))
3784 head
= NEXT_INSN (head
);
3785 exit_block
= create_basic_block (NEXT_INSN (head
), end
,
3786 EXIT_BLOCK_PTR
->prev_bb
);
3787 exit_block
->frequency
= EXIT_BLOCK_PTR
->frequency
;
3788 exit_block
->count
= EXIT_BLOCK_PTR
->count
;
3791 while (ix
< EDGE_COUNT (EXIT_BLOCK_PTR
->preds
))
3793 e
= EDGE_PRED (EXIT_BLOCK_PTR
, ix
);
3794 if (!(e
->flags
& EDGE_ABNORMAL
))
3795 redirect_edge_succ (e
, exit_block
);
3800 e
= make_edge (exit_block
, EXIT_BLOCK_PTR
, EDGE_FALLTHRU
);
3801 e
->probability
= REG_BR_PROB_BASE
;
3802 e
->count
= EXIT_BLOCK_PTR
->count
;
3803 FOR_EACH_EDGE (e2
, ei
, EXIT_BLOCK_PTR
->preds
)
3806 e
->count
-= e2
->count
;
3807 exit_block
->count
-= e2
->count
;
3808 exit_block
->frequency
-= EDGE_FREQUENCY (e2
);
3812 if (exit_block
->count
< 0)
3813 exit_block
->count
= 0;
3814 if (exit_block
->frequency
< 0)
3815 exit_block
->frequency
= 0;
3816 update_bb_for_insn (exit_block
);
3819 /* Helper function for discover_nonconstant_array_refs.
3820 Look for ARRAY_REF nodes with non-constant indexes and mark them
3824 discover_nonconstant_array_refs_r (tree
* tp
, int *walk_subtrees
,
3825 void *data ATTRIBUTE_UNUSED
)
3829 if (IS_TYPE_OR_DECL_P (t
))
3831 else if (TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
3833 while (((TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
3834 && is_gimple_min_invariant (TREE_OPERAND (t
, 1))
3835 && (!TREE_OPERAND (t
, 2)
3836 || is_gimple_min_invariant (TREE_OPERAND (t
, 2))))
3837 || (TREE_CODE (t
) == COMPONENT_REF
3838 && (!TREE_OPERAND (t
,2)
3839 || is_gimple_min_invariant (TREE_OPERAND (t
, 2))))
3840 || TREE_CODE (t
) == BIT_FIELD_REF
3841 || TREE_CODE (t
) == REALPART_EXPR
3842 || TREE_CODE (t
) == IMAGPART_EXPR
3843 || TREE_CODE (t
) == VIEW_CONVERT_EXPR
3844 || CONVERT_EXPR_P (t
))
3845 t
= TREE_OPERAND (t
, 0);
3847 if (TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
3849 t
= get_base_address (t
);
3851 && DECL_MODE (t
) != BLKmode
)
3852 TREE_ADDRESSABLE (t
) = 1;
3861 /* RTL expansion is not able to compile array references with variable
3862 offsets for arrays stored in single register. Discover such
3863 expressions and mark variables as addressable to avoid this
3867 discover_nonconstant_array_refs (void)
3870 gimple_stmt_iterator gsi
;
3873 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
3875 gimple stmt
= gsi_stmt (gsi
);
3876 if (!is_gimple_debug (stmt
))
3877 walk_gimple_op (stmt
, discover_nonconstant_array_refs_r
, NULL
);
3881 /* This function sets crtl->args.internal_arg_pointer to a virtual
3882 register if DRAP is needed. Local register allocator will replace
3883 virtual_incoming_args_rtx with the virtual register. */
3886 expand_stack_alignment (void)
3889 unsigned int preferred_stack_boundary
;
3891 if (! SUPPORTS_STACK_ALIGNMENT
)
3894 if (cfun
->calls_alloca
3895 || cfun
->has_nonlocal_label
3896 || crtl
->has_nonlocal_goto
)
3897 crtl
->need_drap
= true;
3899 /* Call update_stack_boundary here again to update incoming stack
3900 boundary. It may set incoming stack alignment to a different
3901 value after RTL expansion. TARGET_FUNCTION_OK_FOR_SIBCALL may
3902 use the minimum incoming stack alignment to check if it is OK
3903 to perform sibcall optimization since sibcall optimization will
3904 only align the outgoing stack to incoming stack boundary. */
3905 if (targetm
.calls
.update_stack_boundary
)
3906 targetm
.calls
.update_stack_boundary ();
3908 /* The incoming stack frame has to be aligned at least at
3909 parm_stack_boundary. */
3910 gcc_assert (crtl
->parm_stack_boundary
<= INCOMING_STACK_BOUNDARY
);
3912 /* Update crtl->stack_alignment_estimated and use it later to align
3913 stack. We check PREFERRED_STACK_BOUNDARY if there may be non-call
3914 exceptions since callgraph doesn't collect incoming stack alignment
3916 if (cfun
->can_throw_non_call_exceptions
3917 && PREFERRED_STACK_BOUNDARY
> crtl
->preferred_stack_boundary
)
3918 preferred_stack_boundary
= PREFERRED_STACK_BOUNDARY
;
3920 preferred_stack_boundary
= crtl
->preferred_stack_boundary
;
3921 if (preferred_stack_boundary
> crtl
->stack_alignment_estimated
)
3922 crtl
->stack_alignment_estimated
= preferred_stack_boundary
;
3923 if (preferred_stack_boundary
> crtl
->stack_alignment_needed
)
3924 crtl
->stack_alignment_needed
= preferred_stack_boundary
;
3926 gcc_assert (crtl
->stack_alignment_needed
3927 <= crtl
->stack_alignment_estimated
);
3929 crtl
->stack_realign_needed
3930 = INCOMING_STACK_BOUNDARY
< crtl
->stack_alignment_estimated
;
3931 crtl
->stack_realign_tried
= crtl
->stack_realign_needed
;
3933 crtl
->stack_realign_processed
= true;
3935 /* Target has to redefine TARGET_GET_DRAP_RTX to support stack
3937 gcc_assert (targetm
.calls
.get_drap_rtx
!= NULL
);
3938 drap_rtx
= targetm
.calls
.get_drap_rtx ();
3940 /* stack_realign_drap and drap_rtx must match. */
3941 gcc_assert ((stack_realign_drap
!= 0) == (drap_rtx
!= NULL
));
3943 /* Do nothing if NULL is returned, which means DRAP is not needed. */
3944 if (NULL
!= drap_rtx
)
3946 crtl
->args
.internal_arg_pointer
= drap_rtx
;
3948 /* Call fixup_tail_calls to clean up REG_EQUIV note if DRAP is
3950 fixup_tail_calls ();
3954 /* Translate the intermediate representation contained in the CFG
3955 from GIMPLE trees to RTL.
3957 We do conversion per basic block and preserve/update the tree CFG.
3958 This implies we have to do some magic as the CFG can simultaneously
3959 consist of basic blocks containing RTL and GIMPLE trees. This can
3960 confuse the CFG hooks, so be careful to not manipulate CFG during
3964 gimple_expand_cfg (void)
3966 basic_block bb
, init_block
;
3973 timevar_push (TV_OUT_OF_SSA
);
3974 rewrite_out_of_ssa (&SA
);
3975 timevar_pop (TV_OUT_OF_SSA
);
3976 SA
.partition_to_pseudo
= (rtx
*)xcalloc (SA
.map
->num_partitions
,
3979 /* Some backends want to know that we are expanding to RTL. */
3980 currently_expanding_to_rtl
= 1;
3982 rtl_profile_for_bb (ENTRY_BLOCK_PTR
);
3984 insn_locators_alloc ();
3985 if (!DECL_IS_BUILTIN (current_function_decl
))
3987 /* Eventually, all FEs should explicitly set function_start_locus. */
3988 if (cfun
->function_start_locus
== UNKNOWN_LOCATION
)
3989 set_curr_insn_source_location
3990 (DECL_SOURCE_LOCATION (current_function_decl
));
3992 set_curr_insn_source_location (cfun
->function_start_locus
);
3995 set_curr_insn_source_location (UNKNOWN_LOCATION
);
3996 set_curr_insn_block (DECL_INITIAL (current_function_decl
));
3997 prologue_locator
= curr_insn_locator ();
3999 #ifdef INSN_SCHEDULING
4000 init_sched_attrs ();
4003 /* Make sure first insn is a note even if we don't want linenums.
4004 This makes sure the first insn will never be deleted.
4005 Also, final expects a note to appear there. */
4006 emit_note (NOTE_INSN_DELETED
);
4008 /* Mark arrays indexed with non-constant indices with TREE_ADDRESSABLE. */
4009 discover_nonconstant_array_refs ();
4011 targetm
.expand_to_rtl_hook ();
4012 crtl
->stack_alignment_needed
= STACK_BOUNDARY
;
4013 crtl
->max_used_stack_slot_alignment
= STACK_BOUNDARY
;
4014 crtl
->stack_alignment_estimated
= 0;
4015 crtl
->preferred_stack_boundary
= STACK_BOUNDARY
;
4016 cfun
->cfg
->max_jumptable_ents
= 0;
4018 /* Resovle the function section. Some targets, like ARM EABI rely on knowledge
4019 of the function section at exapnsion time to predict distance of calls. */
4020 resolve_unique_section (current_function_decl
, 0, flag_function_sections
);
4022 /* Expand the variables recorded during gimple lowering. */
4023 timevar_push (TV_VAR_EXPAND
);
4026 expand_used_vars ();
4028 var_seq
= get_insns ();
4030 timevar_pop (TV_VAR_EXPAND
);
4032 /* Honor stack protection warnings. */
4033 if (warn_stack_protect
)
4035 if (cfun
->calls_alloca
)
4036 warning (OPT_Wstack_protector
,
4037 "stack protector not protecting local variables: "
4038 "variable length buffer");
4039 if (has_short_buffer
&& !crtl
->stack_protect_guard
)
4040 warning (OPT_Wstack_protector
,
4041 "stack protector not protecting function: "
4042 "all local arrays are less than %d bytes long",
4043 (int) PARAM_VALUE (PARAM_SSP_BUFFER_SIZE
));
4046 /* Set up parameters and prepare for return, for the function. */
4047 expand_function_start (current_function_decl
);
4049 /* If we emitted any instructions for setting up the variables,
4050 emit them before the FUNCTION_START note. */
4053 emit_insn_before (var_seq
, parm_birth_insn
);
4055 /* In expand_function_end we'll insert the alloca save/restore
4056 before parm_birth_insn. We've just insertted an alloca call.
4057 Adjust the pointer to match. */
4058 parm_birth_insn
= var_seq
;
4061 /* Now that we also have the parameter RTXs, copy them over to our
4063 for (i
= 0; i
< SA
.map
->num_partitions
; i
++)
4065 tree var
= SSA_NAME_VAR (partition_to_var (SA
.map
, i
));
4067 if (TREE_CODE (var
) != VAR_DECL
4068 && !SA
.partition_to_pseudo
[i
])
4069 SA
.partition_to_pseudo
[i
] = DECL_RTL_IF_SET (var
);
4070 gcc_assert (SA
.partition_to_pseudo
[i
]);
4072 /* If this decl was marked as living in multiple places, reset
4073 this now to NULL. */
4074 if (DECL_RTL_IF_SET (var
) == pc_rtx
)
4075 SET_DECL_RTL (var
, NULL
);
4077 /* Some RTL parts really want to look at DECL_RTL(x) when x
4078 was a decl marked in REG_ATTR or MEM_ATTR. We could use
4079 SET_DECL_RTL here making this available, but that would mean
4080 to select one of the potentially many RTLs for one DECL. Instead
4081 of doing that we simply reset the MEM_EXPR of the RTL in question,
4082 then nobody can get at it and hence nobody can call DECL_RTL on it. */
4083 if (!DECL_RTL_SET_P (var
))
4085 if (MEM_P (SA
.partition_to_pseudo
[i
]))
4086 set_mem_expr (SA
.partition_to_pseudo
[i
], NULL
);
4090 /* If this function is `main', emit a call to `__main'
4091 to run global initializers, etc. */
4092 if (DECL_NAME (current_function_decl
)
4093 && MAIN_NAME_P (DECL_NAME (current_function_decl
))
4094 && DECL_FILE_SCOPE_P (current_function_decl
))
4095 expand_main_function ();
4097 /* Initialize the stack_protect_guard field. This must happen after the
4098 call to __main (if any) so that the external decl is initialized. */
4099 if (crtl
->stack_protect_guard
)
4100 stack_protect_prologue ();
4102 expand_phi_nodes (&SA
);
4104 /* Register rtl specific functions for cfg. */
4105 rtl_register_cfg_hooks ();
4107 init_block
= construct_init_block ();
4109 /* Clear EDGE_EXECUTABLE on the entry edge(s). It is cleaned from the
4110 remaining edges later. */
4111 FOR_EACH_EDGE (e
, ei
, ENTRY_BLOCK_PTR
->succs
)
4112 e
->flags
&= ~EDGE_EXECUTABLE
;
4114 lab_rtx_for_bb
= pointer_map_create ();
4115 FOR_BB_BETWEEN (bb
, init_block
->next_bb
, EXIT_BLOCK_PTR
, next_bb
)
4116 bb
= expand_gimple_basic_block (bb
);
4118 if (MAY_HAVE_DEBUG_INSNS
)
4119 expand_debug_locations ();
4121 execute_free_datastructures ();
4122 timevar_push (TV_OUT_OF_SSA
);
4123 finish_out_of_ssa (&SA
);
4124 timevar_pop (TV_OUT_OF_SSA
);
4126 timevar_push (TV_POST_EXPAND
);
4127 /* We are no longer in SSA form. */
4128 cfun
->gimple_df
->in_ssa_p
= false;
4130 /* Expansion is used by optimization passes too, set maybe_hot_insn_p
4131 conservatively to true until they are all profile aware. */
4132 pointer_map_destroy (lab_rtx_for_bb
);
4135 construct_exit_block ();
4136 set_curr_insn_block (DECL_INITIAL (current_function_decl
));
4137 insn_locators_finalize ();
4139 /* Zap the tree EH table. */
4140 set_eh_throw_stmt_table (cfun
, NULL
);
4142 /* We need JUMP_LABEL be set in order to redirect jumps, and hence
4143 split edges which edge insertions might do. */
4144 rebuild_jump_labels (get_insns ());
4146 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR
, EXIT_BLOCK_PTR
, next_bb
)
4150 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
4154 rebuild_jump_labels_chain (e
->insns
.r
);
4155 /* Avoid putting insns before parm_birth_insn. */
4156 if (e
->src
== ENTRY_BLOCK_PTR
4157 && single_succ_p (ENTRY_BLOCK_PTR
)
4160 rtx insns
= e
->insns
.r
;
4161 e
->insns
.r
= NULL_RTX
;
4162 emit_insn_after_noloc (insns
, parm_birth_insn
, e
->dest
);
4165 commit_one_edge_insertion (e
);
4172 /* We're done expanding trees to RTL. */
4173 currently_expanding_to_rtl
= 0;
4175 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR
->next_bb
, EXIT_BLOCK_PTR
, next_bb
)
4179 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
4181 /* Clear EDGE_EXECUTABLE. This flag is never used in the backend. */
4182 e
->flags
&= ~EDGE_EXECUTABLE
;
4184 /* At the moment not all abnormal edges match the RTL
4185 representation. It is safe to remove them here as
4186 find_many_sub_basic_blocks will rediscover them.
4187 In the future we should get this fixed properly. */
4188 if ((e
->flags
& EDGE_ABNORMAL
)
4189 && !(e
->flags
& EDGE_SIBCALL
))
4196 blocks
= sbitmap_alloc (last_basic_block
);
4197 sbitmap_ones (blocks
);
4198 find_many_sub_basic_blocks (blocks
);
4199 sbitmap_free (blocks
);
4200 purge_all_dead_edges ();
4204 expand_stack_alignment ();
4206 #ifdef ENABLE_CHECKING
4207 verify_flow_info ();
4210 /* There's no need to defer outputting this function any more; we
4211 know we want to output it. */
4212 DECL_DEFER_OUTPUT (current_function_decl
) = 0;
4214 /* Now that we're done expanding trees to RTL, we shouldn't have any
4215 more CONCATs anywhere. */
4216 generating_concat_p
= 0;
4221 "\n\n;;\n;; Full RTL generated for this function:\n;;\n");
4222 /* And the pass manager will dump RTL for us. */
4225 /* If we're emitting a nested function, make sure its parent gets
4226 emitted as well. Doing otherwise confuses debug info. */
4229 for (parent
= DECL_CONTEXT (current_function_decl
);
4230 parent
!= NULL_TREE
;
4231 parent
= get_containing_scope (parent
))
4232 if (TREE_CODE (parent
) == FUNCTION_DECL
)
4233 TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (parent
)) = 1;
4236 /* We are now committed to emitting code for this function. Do any
4237 preparation, such as emitting abstract debug info for the inline
4238 before it gets mangled by optimization. */
4239 if (cgraph_function_possibly_inlined_p (current_function_decl
))
4240 (*debug_hooks
->outlining_inline_function
) (current_function_decl
);
4242 TREE_ASM_WRITTEN (current_function_decl
) = 1;
4244 /* After expanding, the return labels are no longer needed. */
4245 return_label
= NULL
;
4246 naked_return_label
= NULL
;
4247 /* Tag the blocks with a depth number so that change_scope can find
4248 the common parent easily. */
4249 set_block_levels (DECL_INITIAL (cfun
->decl
), 0);
4250 default_rtl_profile ();
4251 timevar_pop (TV_POST_EXPAND
);
4255 struct rtl_opt_pass pass_expand
=
4259 "expand", /* name */
4261 gimple_expand_cfg
, /* execute */
4264 0, /* static_pass_number */
4265 TV_EXPAND
, /* tv_id */
4266 PROP_ssa
| PROP_gimple_leh
| PROP_cfg
4267 | PROP_gimple_lcx
, /* properties_required */
4268 PROP_rtl
, /* properties_provided */
4269 PROP_ssa
| PROP_trees
, /* properties_destroyed */
4270 TODO_verify_ssa
| TODO_verify_flow
4271 | TODO_verify_stmts
, /* todo_flags_start */
4273 | TODO_ggc_collect
/* todo_flags_finish */