1 /* A pass for lowering trees to RTL.
2 Copyright (C) 2004-2019 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3, or (at your option)
11 GCC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
22 #include "coretypes.h"
29 #include "tree-pass.h"
34 #include "regs.h" /* For reg_renumber. */
38 #include "diagnostic.h"
39 #include "fold-const.h"
41 #include "stor-layout.h"
43 #include "print-tree.h"
47 #include "cfgcleanup.h"
52 #include "internal-fn.h"
54 #include "gimple-iterator.h"
55 #include "gimple-expr.h"
56 #include "gimple-walk.h"
61 #include "gimple-pretty-print.h"
65 #include "tree-inline.h"
66 #include "value-prof.h"
67 #include "tree-ssa-live.h"
68 #include "tree-outof-ssa.h"
70 #include "insn-attr.h" /* For INSN_SCHEDULING. */
71 #include "stringpool.h"
74 #include "tree-ssa-address.h"
78 /* Some systems use __main in a way incompatible with its use in gcc, in these
79 cases use the macros NAME__MAIN to give a quoted symbol and SYMBOL__MAIN to
80 give the same symbol without quotes for an alternative entry point. You
81 must define both, or neither. */
83 #define NAME__MAIN "__main"
86 /* This variable holds information helping the rewriting of SSA trees
90 /* This variable holds the currently expanded gimple statement for purposes
91 of comminucating the profile info to the builtin expanders. */
92 gimple
*currently_expanding_gimple_stmt
;
94 static rtx
expand_debug_expr (tree
);
96 static bool defer_stack_allocation (tree
, bool);
98 static void record_alignment_for_reg_var (unsigned int);
100 /* Return an expression tree corresponding to the RHS of GIMPLE
104 gimple_assign_rhs_to_tree (gimple
*stmt
)
107 enum gimple_rhs_class grhs_class
;
109 grhs_class
= get_gimple_rhs_class (gimple_expr_code (stmt
));
111 if (grhs_class
== GIMPLE_TERNARY_RHS
)
112 t
= build3 (gimple_assign_rhs_code (stmt
),
113 TREE_TYPE (gimple_assign_lhs (stmt
)),
114 gimple_assign_rhs1 (stmt
),
115 gimple_assign_rhs2 (stmt
),
116 gimple_assign_rhs3 (stmt
));
117 else if (grhs_class
== GIMPLE_BINARY_RHS
)
118 t
= build2 (gimple_assign_rhs_code (stmt
),
119 TREE_TYPE (gimple_assign_lhs (stmt
)),
120 gimple_assign_rhs1 (stmt
),
121 gimple_assign_rhs2 (stmt
));
122 else if (grhs_class
== GIMPLE_UNARY_RHS
)
123 t
= build1 (gimple_assign_rhs_code (stmt
),
124 TREE_TYPE (gimple_assign_lhs (stmt
)),
125 gimple_assign_rhs1 (stmt
));
126 else if (grhs_class
== GIMPLE_SINGLE_RHS
)
128 t
= gimple_assign_rhs1 (stmt
);
129 /* Avoid modifying this tree in place below. */
130 if ((gimple_has_location (stmt
) && CAN_HAVE_LOCATION_P (t
)
131 && gimple_location (stmt
) != EXPR_LOCATION (t
))
132 || (gimple_block (stmt
)
133 && currently_expanding_to_rtl
140 if (gimple_has_location (stmt
) && CAN_HAVE_LOCATION_P (t
))
141 SET_EXPR_LOCATION (t
, gimple_location (stmt
));
147 #ifndef STACK_ALIGNMENT_NEEDED
148 #define STACK_ALIGNMENT_NEEDED 1
151 #define SSAVAR(x) (TREE_CODE (x) == SSA_NAME ? SSA_NAME_VAR (x) : x)
153 /* Choose either CUR or NEXT as the leader DECL for a partition.
154 Prefer ignored decls, to simplify debug dumps and reduce ambiguity
155 out of the same user variable being in multiple partitions (this is
156 less likely for compiler-introduced temps). */
159 leader_merge (tree cur
, tree next
)
161 if (cur
== NULL
|| cur
== next
)
164 if (DECL_P (cur
) && DECL_IGNORED_P (cur
))
167 if (DECL_P (next
) && DECL_IGNORED_P (next
))
173 /* Associate declaration T with storage space X. If T is no
174 SSA name this is exactly SET_DECL_RTL, otherwise make the
175 partition of T associated with X. */
177 set_rtl (tree t
, rtx x
)
179 gcc_checking_assert (!x
180 || !(TREE_CODE (t
) == SSA_NAME
|| is_gimple_reg (t
))
181 || (use_register_for_decl (t
)
183 || (GET_CODE (x
) == CONCAT
184 && (REG_P (XEXP (x
, 0))
185 || SUBREG_P (XEXP (x
, 0)))
186 && (REG_P (XEXP (x
, 1))
187 || SUBREG_P (XEXP (x
, 1))))
188 /* We need to accept PARALLELs for RESUT_DECLs
189 because of vector types with BLKmode returned
190 in multiple registers, but they are supposed
191 to be uncoalesced. */
192 || (GET_CODE (x
) == PARALLEL
194 && TREE_CODE (SSAVAR (t
)) == RESULT_DECL
195 && (GET_MODE (x
) == BLKmode
196 || !flag_tree_coalesce_vars
)))
197 : (MEM_P (x
) || x
== pc_rtx
198 || (GET_CODE (x
) == CONCAT
199 && MEM_P (XEXP (x
, 0))
200 && MEM_P (XEXP (x
, 1))))));
201 /* Check that the RTL for SSA_NAMEs and gimple-reg PARM_DECLs and
202 RESULT_DECLs has the expected mode. For memory, we accept
203 unpromoted modes, since that's what we're likely to get. For
204 PARM_DECLs and RESULT_DECLs, we'll have been called by
205 set_parm_rtl, which will give us the default def, so we don't
206 have to compute it ourselves. For RESULT_DECLs, we accept mode
207 mismatches too, as long as we have BLKmode or are not coalescing
208 across variables, so that we don't reject BLKmode PARALLELs or
210 gcc_checking_assert (!x
|| x
== pc_rtx
|| TREE_CODE (t
) != SSA_NAME
212 && TREE_CODE (SSAVAR (t
)) == RESULT_DECL
213 && (promote_ssa_mode (t
, NULL
) == BLKmode
214 || !flag_tree_coalesce_vars
))
215 || !use_register_for_decl (t
)
216 || GET_MODE (x
) == promote_ssa_mode (t
, NULL
));
221 tree cur
= NULL_TREE
;
229 else if (SUBREG_P (xm
))
231 gcc_assert (subreg_lowpart_p (xm
));
232 xm
= SUBREG_REG (xm
);
235 else if (GET_CODE (xm
) == CONCAT
)
240 else if (GET_CODE (xm
) == PARALLEL
)
242 xm
= XVECEXP (xm
, 0, 0);
243 gcc_assert (GET_CODE (xm
) == EXPR_LIST
);
247 else if (xm
== pc_rtx
)
252 tree next
= skip
? cur
: leader_merge (cur
, SSAVAR (t
) ? SSAVAR (t
) : t
);
257 set_mem_attributes (x
,
258 next
&& TREE_CODE (next
) == SSA_NAME
262 set_reg_attrs_for_decl_rtl (next
, x
);
266 if (TREE_CODE (t
) == SSA_NAME
)
268 int part
= var_to_partition (SA
.map
, t
);
269 if (part
!= NO_PARTITION
)
271 if (SA
.partition_to_pseudo
[part
])
272 gcc_assert (SA
.partition_to_pseudo
[part
] == x
);
273 else if (x
!= pc_rtx
)
274 SA
.partition_to_pseudo
[part
] = x
;
276 /* For the benefit of debug information at -O0 (where
277 vartracking doesn't run) record the place also in the base
278 DECL. For PARMs and RESULTs, do so only when setting the
280 if (x
&& x
!= pc_rtx
&& SSA_NAME_VAR (t
)
281 && (VAR_P (SSA_NAME_VAR (t
))
282 || SSA_NAME_IS_DEFAULT_DEF (t
)))
284 tree var
= SSA_NAME_VAR (t
);
285 /* If we don't yet have something recorded, just record it now. */
286 if (!DECL_RTL_SET_P (var
))
287 SET_DECL_RTL (var
, x
);
288 /* If we have it set already to "multiple places" don't
290 else if (DECL_RTL (var
) == pc_rtx
)
292 /* If we have something recorded and it's not the same place
293 as we want to record now, we have multiple partitions for the
294 same base variable, with different places. We can't just
295 randomly chose one, hence we have to say that we don't know.
296 This only happens with optimization, and there var-tracking
297 will figure out the right thing. */
298 else if (DECL_RTL (var
) != x
)
299 SET_DECL_RTL (var
, pc_rtx
);
306 /* This structure holds data relevant to one variable that will be
307 placed in a stack slot. */
313 /* Initially, the size of the variable. Later, the size of the partition,
314 if this variable becomes it's partition's representative. */
317 /* The *byte* alignment required for this variable. Or as, with the
318 size, the alignment for this partition. */
321 /* The partition representative. */
322 size_t representative
;
324 /* The next stack variable in the partition, or EOC. */
327 /* The numbers of conflicting stack variables. */
331 #define EOC ((size_t)-1)
333 /* We have an array of such objects while deciding allocation. */
334 static struct stack_var
*stack_vars
;
335 static size_t stack_vars_alloc
;
336 static size_t stack_vars_num
;
337 static hash_map
<tree
, size_t> *decl_to_stack_part
;
339 /* Conflict bitmaps go on this obstack. This allows us to destroy
340 all of them in one big sweep. */
341 static bitmap_obstack stack_var_bitmap_obstack
;
343 /* An array of indices such that stack_vars[stack_vars_sorted[i]].size
344 is non-decreasing. */
345 static size_t *stack_vars_sorted
;
347 /* The phase of the stack frame. This is the known misalignment of
348 virtual_stack_vars_rtx from PREFERRED_STACK_BOUNDARY. That is,
349 (frame_offset+frame_phase) % PREFERRED_STACK_BOUNDARY == 0. */
350 static int frame_phase
;
352 /* Used during expand_used_vars to remember if we saw any decls for
353 which we'd like to enable stack smashing protection. */
354 static bool has_protected_decls
;
356 /* Used during expand_used_vars. Remember if we say a character buffer
357 smaller than our cutoff threshold. Used for -Wstack-protector. */
358 static bool has_short_buffer
;
360 /* Compute the byte alignment to use for DECL. Ignore alignment
361 we can't do with expected alignment of the stack boundary. */
364 align_local_variable (tree decl
)
368 if (TREE_CODE (decl
) == SSA_NAME
)
369 align
= TYPE_ALIGN (TREE_TYPE (decl
));
372 align
= LOCAL_DECL_ALIGNMENT (decl
);
373 SET_DECL_ALIGN (decl
, align
);
375 return align
/ BITS_PER_UNIT
;
378 /* Align given offset BASE with ALIGN. Truncate up if ALIGN_UP is true,
379 down otherwise. Return truncated BASE value. */
381 static inline unsigned HOST_WIDE_INT
382 align_base (HOST_WIDE_INT base
, unsigned HOST_WIDE_INT align
, bool align_up
)
384 return align_up
? (base
+ align
- 1) & -align
: base
& -align
;
387 /* Allocate SIZE bytes at byte alignment ALIGN from the stack frame.
388 Return the frame offset. */
391 alloc_stack_frame_space (poly_int64 size
, unsigned HOST_WIDE_INT align
)
393 poly_int64 offset
, new_frame_offset
;
395 if (FRAME_GROWS_DOWNWARD
)
398 = aligned_lower_bound (frame_offset
- frame_phase
- size
,
399 align
) + frame_phase
;
400 offset
= new_frame_offset
;
405 = aligned_upper_bound (frame_offset
- frame_phase
,
406 align
) + frame_phase
;
407 offset
= new_frame_offset
;
408 new_frame_offset
+= size
;
410 frame_offset
= new_frame_offset
;
412 if (frame_offset_overflow (frame_offset
, cfun
->decl
))
413 frame_offset
= offset
= 0;
418 /* Accumulate DECL into STACK_VARS. */
421 add_stack_var (tree decl
)
425 if (stack_vars_num
>= stack_vars_alloc
)
427 if (stack_vars_alloc
)
428 stack_vars_alloc
= stack_vars_alloc
* 3 / 2;
430 stack_vars_alloc
= 32;
432 = XRESIZEVEC (struct stack_var
, stack_vars
, stack_vars_alloc
);
434 if (!decl_to_stack_part
)
435 decl_to_stack_part
= new hash_map
<tree
, size_t>;
437 v
= &stack_vars
[stack_vars_num
];
438 decl_to_stack_part
->put (decl
, stack_vars_num
);
441 tree size
= TREE_CODE (decl
) == SSA_NAME
442 ? TYPE_SIZE_UNIT (TREE_TYPE (decl
))
443 : DECL_SIZE_UNIT (decl
);
444 v
->size
= tree_to_poly_uint64 (size
);
445 /* Ensure that all variables have size, so that &a != &b for any two
446 variables that are simultaneously live. */
447 if (known_eq (v
->size
, 0U))
449 v
->alignb
= align_local_variable (decl
);
450 /* An alignment of zero can mightily confuse us later. */
451 gcc_assert (v
->alignb
!= 0);
453 /* All variables are initially in their own partition. */
454 v
->representative
= stack_vars_num
;
457 /* All variables initially conflict with no other. */
460 /* Ensure that this decl doesn't get put onto the list twice. */
461 set_rtl (decl
, pc_rtx
);
466 /* Make the decls associated with luid's X and Y conflict. */
469 add_stack_var_conflict (size_t x
, size_t y
)
471 struct stack_var
*a
= &stack_vars
[x
];
472 struct stack_var
*b
= &stack_vars
[y
];
474 a
->conflicts
= BITMAP_ALLOC (&stack_var_bitmap_obstack
);
476 b
->conflicts
= BITMAP_ALLOC (&stack_var_bitmap_obstack
);
477 bitmap_set_bit (a
->conflicts
, y
);
478 bitmap_set_bit (b
->conflicts
, x
);
481 /* Check whether the decls associated with luid's X and Y conflict. */
484 stack_var_conflict_p (size_t x
, size_t y
)
486 struct stack_var
*a
= &stack_vars
[x
];
487 struct stack_var
*b
= &stack_vars
[y
];
490 /* Partitions containing an SSA name result from gimple registers
491 with things like unsupported modes. They are top-level and
492 hence conflict with everything else. */
493 if (TREE_CODE (a
->decl
) == SSA_NAME
|| TREE_CODE (b
->decl
) == SSA_NAME
)
496 if (!a
->conflicts
|| !b
->conflicts
)
498 return bitmap_bit_p (a
->conflicts
, y
);
501 /* Callback for walk_stmt_ops. If OP is a decl touched by add_stack_var
502 enter its partition number into bitmap DATA. */
505 visit_op (gimple
*, tree op
, tree
, void *data
)
507 bitmap active
= (bitmap
)data
;
508 op
= get_base_address (op
);
511 && DECL_RTL_IF_SET (op
) == pc_rtx
)
513 size_t *v
= decl_to_stack_part
->get (op
);
515 bitmap_set_bit (active
, *v
);
520 /* Callback for walk_stmt_ops. If OP is a decl touched by add_stack_var
521 record conflicts between it and all currently active other partitions
525 visit_conflict (gimple
*, tree op
, tree
, void *data
)
527 bitmap active
= (bitmap
)data
;
528 op
= get_base_address (op
);
531 && DECL_RTL_IF_SET (op
) == pc_rtx
)
533 size_t *v
= decl_to_stack_part
->get (op
);
534 if (v
&& bitmap_set_bit (active
, *v
))
539 gcc_assert (num
< stack_vars_num
);
540 EXECUTE_IF_SET_IN_BITMAP (active
, 0, i
, bi
)
541 add_stack_var_conflict (num
, i
);
547 /* Helper routine for add_scope_conflicts, calculating the active partitions
548 at the end of BB, leaving the result in WORK. We're called to generate
549 conflicts when FOR_CONFLICT is true, otherwise we're just tracking
553 add_scope_conflicts_1 (basic_block bb
, bitmap work
, bool for_conflict
)
557 gimple_stmt_iterator gsi
;
558 walk_stmt_load_store_addr_fn visit
;
561 FOR_EACH_EDGE (e
, ei
, bb
->preds
)
562 bitmap_ior_into (work
, (bitmap
)e
->src
->aux
);
566 for (gsi
= gsi_start_phis (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
568 gimple
*stmt
= gsi_stmt (gsi
);
569 walk_stmt_load_store_addr_ops (stmt
, work
, NULL
, NULL
, visit
);
571 for (gsi
= gsi_after_labels (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
573 gimple
*stmt
= gsi_stmt (gsi
);
575 if (gimple_clobber_p (stmt
))
577 tree lhs
= gimple_assign_lhs (stmt
);
579 /* Nested function lowering might introduce LHSs
580 that are COMPONENT_REFs. */
583 if (DECL_RTL_IF_SET (lhs
) == pc_rtx
584 && (v
= decl_to_stack_part
->get (lhs
)))
585 bitmap_clear_bit (work
, *v
);
587 else if (!is_gimple_debug (stmt
))
590 && visit
== visit_op
)
592 /* If this is the first real instruction in this BB we need
593 to add conflicts for everything live at this point now.
594 Unlike classical liveness for named objects we can't
595 rely on seeing a def/use of the names we're interested in.
596 There might merely be indirect loads/stores. We'd not add any
597 conflicts for such partitions. */
600 EXECUTE_IF_SET_IN_BITMAP (work
, 0, i
, bi
)
602 struct stack_var
*a
= &stack_vars
[i
];
604 a
->conflicts
= BITMAP_ALLOC (&stack_var_bitmap_obstack
);
605 bitmap_ior_into (a
->conflicts
, work
);
607 visit
= visit_conflict
;
609 walk_stmt_load_store_addr_ops (stmt
, work
, visit
, visit
, visit
);
614 /* Generate stack partition conflicts between all partitions that are
615 simultaneously live. */
618 add_scope_conflicts (void)
622 bitmap work
= BITMAP_ALLOC (NULL
);
626 /* We approximate the live range of a stack variable by taking the first
627 mention of its name as starting point(s), and by the end-of-scope
628 death clobber added by gimplify as ending point(s) of the range.
629 This overapproximates in the case we for instance moved an address-taken
630 operation upward, without also moving a dereference to it upwards.
631 But it's conservatively correct as a variable never can hold values
632 before its name is mentioned at least once.
634 We then do a mostly classical bitmap liveness algorithm. */
636 FOR_ALL_BB_FN (bb
, cfun
)
637 bb
->aux
= BITMAP_ALLOC (&stack_var_bitmap_obstack
);
639 rpo
= XNEWVEC (int, last_basic_block_for_fn (cfun
));
640 n_bbs
= pre_and_rev_post_order_compute (NULL
, rpo
, false);
647 for (i
= 0; i
< n_bbs
; i
++)
650 bb
= BASIC_BLOCK_FOR_FN (cfun
, rpo
[i
]);
651 active
= (bitmap
)bb
->aux
;
652 add_scope_conflicts_1 (bb
, work
, false);
653 if (bitmap_ior_into (active
, work
))
658 FOR_EACH_BB_FN (bb
, cfun
)
659 add_scope_conflicts_1 (bb
, work
, true);
663 FOR_ALL_BB_FN (bb
, cfun
)
664 BITMAP_FREE (bb
->aux
);
667 /* A subroutine of partition_stack_vars. A comparison function for qsort,
668 sorting an array of indices by the properties of the object. */
671 stack_var_cmp (const void *a
, const void *b
)
673 size_t ia
= *(const size_t *)a
;
674 size_t ib
= *(const size_t *)b
;
675 unsigned int aligna
= stack_vars
[ia
].alignb
;
676 unsigned int alignb
= stack_vars
[ib
].alignb
;
677 poly_int64 sizea
= stack_vars
[ia
].size
;
678 poly_int64 sizeb
= stack_vars
[ib
].size
;
679 tree decla
= stack_vars
[ia
].decl
;
680 tree declb
= stack_vars
[ib
].decl
;
682 unsigned int uida
, uidb
;
684 /* Primary compare on "large" alignment. Large comes first. */
685 largea
= (aligna
* BITS_PER_UNIT
> MAX_SUPPORTED_STACK_ALIGNMENT
);
686 largeb
= (alignb
* BITS_PER_UNIT
> MAX_SUPPORTED_STACK_ALIGNMENT
);
687 if (largea
!= largeb
)
688 return (int)largeb
- (int)largea
;
690 /* Secondary compare on size, decreasing */
691 int diff
= compare_sizes_for_sort (sizeb
, sizea
);
695 /* Tertiary compare on true alignment, decreasing. */
701 /* Final compare on ID for sort stability, increasing.
702 Two SSA names are compared by their version, SSA names come before
703 non-SSA names, and two normal decls are compared by their DECL_UID. */
704 if (TREE_CODE (decla
) == SSA_NAME
)
706 if (TREE_CODE (declb
) == SSA_NAME
)
707 uida
= SSA_NAME_VERSION (decla
), uidb
= SSA_NAME_VERSION (declb
);
711 else if (TREE_CODE (declb
) == SSA_NAME
)
714 uida
= DECL_UID (decla
), uidb
= DECL_UID (declb
);
722 struct part_traits
: unbounded_int_hashmap_traits
<size_t, bitmap
> {};
723 typedef hash_map
<size_t, bitmap
, part_traits
> part_hashmap
;
725 /* If the points-to solution *PI points to variables that are in a partition
726 together with other variables add all partition members to the pointed-to
730 add_partitioned_vars_to_ptset (struct pt_solution
*pt
,
731 part_hashmap
*decls_to_partitions
,
732 hash_set
<bitmap
> *visited
, bitmap temp
)
740 /* The pointed-to vars bitmap is shared, it is enough to
742 || visited
->add (pt
->vars
))
747 /* By using a temporary bitmap to store all members of the partitions
748 we have to add we make sure to visit each of the partitions only
750 EXECUTE_IF_SET_IN_BITMAP (pt
->vars
, 0, i
, bi
)
752 || !bitmap_bit_p (temp
, i
))
753 && (part
= decls_to_partitions
->get (i
)))
754 bitmap_ior_into (temp
, *part
);
755 if (!bitmap_empty_p (temp
))
756 bitmap_ior_into (pt
->vars
, temp
);
759 /* Update points-to sets based on partition info, so we can use them on RTL.
760 The bitmaps representing stack partitions will be saved until expand,
761 where partitioned decls used as bases in memory expressions will be
765 update_alias_info_with_stack_vars (void)
767 part_hashmap
*decls_to_partitions
= NULL
;
769 tree var
= NULL_TREE
;
771 for (i
= 0; i
< stack_vars_num
; i
++)
775 struct ptr_info_def
*pi
;
777 /* Not interested in partitions with single variable. */
778 if (stack_vars
[i
].representative
!= i
779 || stack_vars
[i
].next
== EOC
)
782 if (!decls_to_partitions
)
784 decls_to_partitions
= new part_hashmap
;
785 cfun
->gimple_df
->decls_to_pointers
= new hash_map
<tree
, tree
>;
788 /* Create an SSA_NAME that points to the partition for use
789 as base during alias-oracle queries on RTL for bases that
790 have been partitioned. */
791 if (var
== NULL_TREE
)
792 var
= create_tmp_var (ptr_type_node
);
793 name
= make_ssa_name (var
);
795 /* Create bitmaps representing partitions. They will be used for
796 points-to sets later, so use GGC alloc. */
797 part
= BITMAP_GGC_ALLOC ();
798 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
800 tree decl
= stack_vars
[j
].decl
;
801 unsigned int uid
= DECL_PT_UID (decl
);
802 bitmap_set_bit (part
, uid
);
803 decls_to_partitions
->put (uid
, part
);
804 cfun
->gimple_df
->decls_to_pointers
->put (decl
, name
);
805 if (TREE_ADDRESSABLE (decl
))
806 TREE_ADDRESSABLE (name
) = 1;
809 /* Make the SSA name point to all partition members. */
810 pi
= get_ptr_info (name
);
811 pt_solution_set (&pi
->pt
, part
, false);
814 /* Make all points-to sets that contain one member of a partition
815 contain all members of the partition. */
816 if (decls_to_partitions
)
820 hash_set
<bitmap
> visited
;
821 bitmap temp
= BITMAP_ALLOC (&stack_var_bitmap_obstack
);
823 FOR_EACH_SSA_NAME (i
, name
, cfun
)
825 struct ptr_info_def
*pi
;
827 if (POINTER_TYPE_P (TREE_TYPE (name
))
828 && ((pi
= SSA_NAME_PTR_INFO (name
)) != NULL
))
829 add_partitioned_vars_to_ptset (&pi
->pt
, decls_to_partitions
,
833 add_partitioned_vars_to_ptset (&cfun
->gimple_df
->escaped
,
834 decls_to_partitions
, &visited
, temp
);
836 delete decls_to_partitions
;
841 /* A subroutine of partition_stack_vars. The UNION portion of a UNION/FIND
842 partitioning algorithm. Partitions A and B are known to be non-conflicting.
843 Merge them into a single partition A. */
846 union_stack_vars (size_t a
, size_t b
)
848 struct stack_var
*vb
= &stack_vars
[b
];
852 gcc_assert (stack_vars
[b
].next
== EOC
);
853 /* Add B to A's partition. */
854 stack_vars
[b
].next
= stack_vars
[a
].next
;
855 stack_vars
[b
].representative
= a
;
856 stack_vars
[a
].next
= b
;
858 /* Update the required alignment of partition A to account for B. */
859 if (stack_vars
[a
].alignb
< stack_vars
[b
].alignb
)
860 stack_vars
[a
].alignb
= stack_vars
[b
].alignb
;
862 /* Update the interference graph and merge the conflicts. */
865 EXECUTE_IF_SET_IN_BITMAP (vb
->conflicts
, 0, u
, bi
)
866 add_stack_var_conflict (a
, stack_vars
[u
].representative
);
867 BITMAP_FREE (vb
->conflicts
);
871 /* A subroutine of expand_used_vars. Binpack the variables into
872 partitions constrained by the interference graph. The overall
873 algorithm used is as follows:
875 Sort the objects by size in descending order.
880 Look for the largest non-conflicting object B with size <= S.
887 partition_stack_vars (void)
889 size_t si
, sj
, n
= stack_vars_num
;
891 stack_vars_sorted
= XNEWVEC (size_t, stack_vars_num
);
892 for (si
= 0; si
< n
; ++si
)
893 stack_vars_sorted
[si
] = si
;
898 qsort (stack_vars_sorted
, n
, sizeof (size_t), stack_var_cmp
);
900 for (si
= 0; si
< n
; ++si
)
902 size_t i
= stack_vars_sorted
[si
];
903 unsigned int ialign
= stack_vars
[i
].alignb
;
904 poly_int64 isize
= stack_vars
[i
].size
;
906 /* Ignore objects that aren't partition representatives. If we
907 see a var that is not a partition representative, it must
908 have been merged earlier. */
909 if (stack_vars
[i
].representative
!= i
)
912 for (sj
= si
+ 1; sj
< n
; ++sj
)
914 size_t j
= stack_vars_sorted
[sj
];
915 unsigned int jalign
= stack_vars
[j
].alignb
;
916 poly_int64 jsize
= stack_vars
[j
].size
;
918 /* Ignore objects that aren't partition representatives. */
919 if (stack_vars
[j
].representative
!= j
)
922 /* Do not mix objects of "small" (supported) alignment
923 and "large" (unsupported) alignment. */
924 if ((ialign
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
925 != (jalign
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
))
928 /* For Address Sanitizer do not mix objects with different
929 sizes, as the shorter vars wouldn't be adequately protected.
930 Don't do that for "large" (unsupported) alignment objects,
931 those aren't protected anyway. */
932 if (asan_sanitize_stack_p ()
933 && maybe_ne (isize
, jsize
)
934 && ialign
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
937 /* Ignore conflicting objects. */
938 if (stack_var_conflict_p (i
, j
))
941 /* UNION the objects, placing J at OFFSET. */
942 union_stack_vars (i
, j
);
946 update_alias_info_with_stack_vars ();
949 /* A debugging aid for expand_used_vars. Dump the generated partitions. */
952 dump_stack_var_partition (void)
954 size_t si
, i
, j
, n
= stack_vars_num
;
956 for (si
= 0; si
< n
; ++si
)
958 i
= stack_vars_sorted
[si
];
960 /* Skip variables that aren't partition representatives, for now. */
961 if (stack_vars
[i
].representative
!= i
)
964 fprintf (dump_file
, "Partition %lu: size ", (unsigned long) i
);
965 print_dec (stack_vars
[i
].size
, dump_file
);
966 fprintf (dump_file
, " align %u\n", stack_vars
[i
].alignb
);
968 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
970 fputc ('\t', dump_file
);
971 print_generic_expr (dump_file
, stack_vars
[j
].decl
, dump_flags
);
973 fputc ('\n', dump_file
);
977 /* Assign rtl to DECL at BASE + OFFSET. */
980 expand_one_stack_var_at (tree decl
, rtx base
, unsigned base_align
,
986 /* If this fails, we've overflowed the stack frame. Error nicely? */
987 gcc_assert (known_eq (offset
, trunc_int_for_mode (offset
, Pmode
)));
989 x
= plus_constant (Pmode
, base
, offset
);
990 x
= gen_rtx_MEM (TREE_CODE (decl
) == SSA_NAME
991 ? TYPE_MODE (TREE_TYPE (decl
))
992 : DECL_MODE (SSAVAR (decl
)), x
);
994 if (TREE_CODE (decl
) != SSA_NAME
)
996 /* Set alignment we actually gave this decl if it isn't an SSA name.
997 If it is we generate stack slots only accidentally so it isn't as
998 important, we'll simply use the alignment that is already set. */
999 if (base
== virtual_stack_vars_rtx
)
1000 offset
-= frame_phase
;
1001 align
= known_alignment (offset
);
1002 align
*= BITS_PER_UNIT
;
1003 if (align
== 0 || align
> base_align
)
1006 /* One would think that we could assert that we're not decreasing
1007 alignment here, but (at least) the i386 port does exactly this
1008 via the MINIMUM_ALIGNMENT hook. */
1010 SET_DECL_ALIGN (decl
, align
);
1011 DECL_USER_ALIGN (decl
) = 0;
1017 struct stack_vars_data
1019 /* Vector of offset pairs, always end of some padding followed
1020 by start of the padding that needs Address Sanitizer protection.
1021 The vector is in reversed, highest offset pairs come first. */
1022 auto_vec
<HOST_WIDE_INT
> asan_vec
;
1024 /* Vector of partition representative decls in between the paddings. */
1025 auto_vec
<tree
> asan_decl_vec
;
1027 /* Base pseudo register for Address Sanitizer protected automatic vars. */
1030 /* Alignment needed for the Address Sanitizer protected automatic vars. */
1031 unsigned int asan_alignb
;
1034 /* A subroutine of expand_used_vars. Give each partition representative
1035 a unique location within the stack frame. Update each partition member
1036 with that location. */
1039 expand_stack_vars (bool (*pred
) (size_t), struct stack_vars_data
*data
)
1041 size_t si
, i
, j
, n
= stack_vars_num
;
1042 poly_uint64 large_size
= 0, large_alloc
= 0;
1043 rtx large_base
= NULL
;
1044 unsigned large_align
= 0;
1045 bool large_allocation_done
= false;
1048 /* Determine if there are any variables requiring "large" alignment.
1049 Since these are dynamically allocated, we only process these if
1050 no predicate involved. */
1051 large_align
= stack_vars
[stack_vars_sorted
[0]].alignb
* BITS_PER_UNIT
;
1052 if (pred
== NULL
&& large_align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
1054 /* Find the total size of these variables. */
1055 for (si
= 0; si
< n
; ++si
)
1059 i
= stack_vars_sorted
[si
];
1060 alignb
= stack_vars
[i
].alignb
;
1062 /* All "large" alignment decls come before all "small" alignment
1063 decls, but "large" alignment decls are not sorted based on
1064 their alignment. Increase large_align to track the largest
1065 required alignment. */
1066 if ((alignb
* BITS_PER_UNIT
) > large_align
)
1067 large_align
= alignb
* BITS_PER_UNIT
;
1069 /* Stop when we get to the first decl with "small" alignment. */
1070 if (alignb
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
1073 /* Skip variables that aren't partition representatives. */
1074 if (stack_vars
[i
].representative
!= i
)
1077 /* Skip variables that have already had rtl assigned. See also
1078 add_stack_var where we perpetrate this pc_rtx hack. */
1079 decl
= stack_vars
[i
].decl
;
1080 if (TREE_CODE (decl
) == SSA_NAME
1081 ? SA
.partition_to_pseudo
[var_to_partition (SA
.map
, decl
)] != NULL_RTX
1082 : DECL_RTL (decl
) != pc_rtx
)
1085 large_size
= aligned_upper_bound (large_size
, alignb
);
1086 large_size
+= stack_vars
[i
].size
;
1090 for (si
= 0; si
< n
; ++si
)
1093 unsigned base_align
, alignb
;
1096 i
= stack_vars_sorted
[si
];
1098 /* Skip variables that aren't partition representatives, for now. */
1099 if (stack_vars
[i
].representative
!= i
)
1102 /* Skip variables that have already had rtl assigned. See also
1103 add_stack_var where we perpetrate this pc_rtx hack. */
1104 decl
= stack_vars
[i
].decl
;
1105 if (TREE_CODE (decl
) == SSA_NAME
1106 ? SA
.partition_to_pseudo
[var_to_partition (SA
.map
, decl
)] != NULL_RTX
1107 : DECL_RTL (decl
) != pc_rtx
)
1110 /* Check the predicate to see whether this variable should be
1111 allocated in this pass. */
1112 if (pred
&& !pred (i
))
1115 alignb
= stack_vars
[i
].alignb
;
1116 if (alignb
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
)
1118 base
= virtual_stack_vars_rtx
;
1119 /* ASAN description strings don't yet have a syntax for expressing
1120 polynomial offsets. */
1121 HOST_WIDE_INT prev_offset
;
1122 if (asan_sanitize_stack_p ()
1124 && frame_offset
.is_constant (&prev_offset
)
1125 && stack_vars
[i
].size
.is_constant ())
1127 if (data
->asan_vec
.is_empty ())
1129 alloc_stack_frame_space (0, ASAN_RED_ZONE_SIZE
);
1130 prev_offset
= frame_offset
.to_constant ();
1132 prev_offset
= align_base (prev_offset
,
1133 ASAN_MIN_RED_ZONE_SIZE
,
1134 !FRAME_GROWS_DOWNWARD
);
1135 tree repr_decl
= NULL_TREE
;
1136 unsigned HOST_WIDE_INT size
1137 = asan_var_and_redzone_size (stack_vars
[i
].size
.to_constant ());
1138 if (data
->asan_vec
.is_empty ())
1139 size
= MAX (size
, ASAN_RED_ZONE_SIZE
);
1141 unsigned HOST_WIDE_INT alignment
= MAX (alignb
,
1142 ASAN_MIN_RED_ZONE_SIZE
);
1143 offset
= alloc_stack_frame_space (size
, alignment
);
1145 data
->asan_vec
.safe_push (prev_offset
);
1146 /* Allocating a constant amount of space from a constant
1147 starting offset must give a constant result. */
1148 data
->asan_vec
.safe_push ((offset
+ stack_vars
[i
].size
)
1150 /* Find best representative of the partition.
1151 Prefer those with DECL_NAME, even better
1152 satisfying asan_protect_stack_decl predicate. */
1153 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
1154 if (asan_protect_stack_decl (stack_vars
[j
].decl
)
1155 && DECL_NAME (stack_vars
[j
].decl
))
1157 repr_decl
= stack_vars
[j
].decl
;
1160 else if (repr_decl
== NULL_TREE
1161 && DECL_P (stack_vars
[j
].decl
)
1162 && DECL_NAME (stack_vars
[j
].decl
))
1163 repr_decl
= stack_vars
[j
].decl
;
1164 if (repr_decl
== NULL_TREE
)
1165 repr_decl
= stack_vars
[i
].decl
;
1166 data
->asan_decl_vec
.safe_push (repr_decl
);
1168 /* Make sure a representative is unpoison if another
1169 variable in the partition is handled by
1170 use-after-scope sanitization. */
1171 if (asan_handled_variables
!= NULL
1172 && !asan_handled_variables
->contains (repr_decl
))
1174 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
1175 if (asan_handled_variables
->contains (stack_vars
[j
].decl
))
1178 asan_handled_variables
->add (repr_decl
);
1181 data
->asan_alignb
= MAX (data
->asan_alignb
, alignb
);
1182 if (data
->asan_base
== NULL
)
1183 data
->asan_base
= gen_reg_rtx (Pmode
);
1184 base
= data
->asan_base
;
1186 if (!STRICT_ALIGNMENT
)
1187 base_align
= crtl
->max_used_stack_slot_alignment
;
1189 base_align
= MAX (crtl
->max_used_stack_slot_alignment
,
1190 GET_MODE_ALIGNMENT (SImode
)
1191 << ASAN_SHADOW_SHIFT
);
1195 offset
= alloc_stack_frame_space (stack_vars
[i
].size
, alignb
);
1196 base_align
= crtl
->max_used_stack_slot_alignment
;
1201 /* Large alignment is only processed in the last pass. */
1205 /* If there were any variables requiring "large" alignment, allocate
1207 if (maybe_ne (large_size
, 0U) && ! large_allocation_done
)
1210 rtx large_allocsize
;
1212 large_allocsize
= gen_int_mode (large_size
, Pmode
);
1213 get_dynamic_stack_size (&large_allocsize
, 0, large_align
, NULL
);
1214 loffset
= alloc_stack_frame_space
1215 (rtx_to_poly_int64 (large_allocsize
),
1216 PREFERRED_STACK_BOUNDARY
/ BITS_PER_UNIT
);
1217 large_base
= get_dynamic_stack_base (loffset
, large_align
);
1218 large_allocation_done
= true;
1220 gcc_assert (large_base
!= NULL
);
1222 large_alloc
= aligned_upper_bound (large_alloc
, alignb
);
1223 offset
= large_alloc
;
1224 large_alloc
+= stack_vars
[i
].size
;
1227 base_align
= large_align
;
1230 /* Create rtl for each variable based on their location within the
1232 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
1234 expand_one_stack_var_at (stack_vars
[j
].decl
,
1240 gcc_assert (known_eq (large_alloc
, large_size
));
1243 /* Take into account all sizes of partitions and reset DECL_RTLs. */
1245 account_stack_vars (void)
1247 size_t si
, j
, i
, n
= stack_vars_num
;
1248 poly_uint64 size
= 0;
1250 for (si
= 0; si
< n
; ++si
)
1252 i
= stack_vars_sorted
[si
];
1254 /* Skip variables that aren't partition representatives, for now. */
1255 if (stack_vars
[i
].representative
!= i
)
1258 size
+= stack_vars
[i
].size
;
1259 for (j
= i
; j
!= EOC
; j
= stack_vars
[j
].next
)
1260 set_rtl (stack_vars
[j
].decl
, NULL
);
1265 /* Record the RTL assignment X for the default def of PARM. */
1268 set_parm_rtl (tree parm
, rtx x
)
1270 gcc_assert (TREE_CODE (parm
) == PARM_DECL
1271 || TREE_CODE (parm
) == RESULT_DECL
);
1273 if (x
&& !MEM_P (x
))
1275 unsigned int align
= MINIMUM_ALIGNMENT (TREE_TYPE (parm
),
1276 TYPE_MODE (TREE_TYPE (parm
)),
1277 TYPE_ALIGN (TREE_TYPE (parm
)));
1279 /* If the variable alignment is very large we'll dynamicaly
1280 allocate it, which means that in-frame portion is just a
1281 pointer. ??? We've got a pseudo for sure here, do we
1282 actually dynamically allocate its spilling area if needed?
1283 ??? Isn't it a problem when Pmode alignment also exceeds
1284 MAX_SUPPORTED_STACK_ALIGNMENT, as can happen on cris and lm32? */
1285 if (align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
1286 align
= GET_MODE_ALIGNMENT (Pmode
);
1288 record_alignment_for_reg_var (align
);
1291 tree ssa
= ssa_default_def (cfun
, parm
);
1293 return set_rtl (parm
, x
);
1295 int part
= var_to_partition (SA
.map
, ssa
);
1296 gcc_assert (part
!= NO_PARTITION
);
1298 bool changed
= bitmap_bit_p (SA
.partitions_for_parm_default_defs
, part
);
1299 gcc_assert (changed
);
1302 gcc_assert (DECL_RTL (parm
) == x
);
1305 /* A subroutine of expand_one_var. Called to immediately assign rtl
1306 to a variable to be allocated in the stack frame. */
1309 expand_one_stack_var_1 (tree var
)
1313 unsigned byte_align
;
1315 if (TREE_CODE (var
) == SSA_NAME
)
1317 tree type
= TREE_TYPE (var
);
1318 size
= tree_to_poly_uint64 (TYPE_SIZE_UNIT (type
));
1319 byte_align
= TYPE_ALIGN_UNIT (type
);
1323 size
= tree_to_poly_uint64 (DECL_SIZE_UNIT (var
));
1324 byte_align
= align_local_variable (var
);
1327 /* We handle highly aligned variables in expand_stack_vars. */
1328 gcc_assert (byte_align
* BITS_PER_UNIT
<= MAX_SUPPORTED_STACK_ALIGNMENT
);
1330 offset
= alloc_stack_frame_space (size
, byte_align
);
1332 expand_one_stack_var_at (var
, virtual_stack_vars_rtx
,
1333 crtl
->max_used_stack_slot_alignment
, offset
);
1336 /* Wrapper for expand_one_stack_var_1 that checks SSA_NAMEs are
1337 already assigned some MEM. */
1340 expand_one_stack_var (tree var
)
1342 if (TREE_CODE (var
) == SSA_NAME
)
1344 int part
= var_to_partition (SA
.map
, var
);
1345 if (part
!= NO_PARTITION
)
1347 rtx x
= SA
.partition_to_pseudo
[part
];
1349 gcc_assert (MEM_P (x
));
1354 return expand_one_stack_var_1 (var
);
1357 /* A subroutine of expand_one_var. Called to assign rtl to a VAR_DECL
1358 that will reside in a hard register. */
1361 expand_one_hard_reg_var (tree var
)
1363 rest_of_decl_compilation (var
, 0, 0);
1366 /* Record the alignment requirements of some variable assigned to a
1370 record_alignment_for_reg_var (unsigned int align
)
1372 if (SUPPORTS_STACK_ALIGNMENT
1373 && crtl
->stack_alignment_estimated
< align
)
1375 /* stack_alignment_estimated shouldn't change after stack
1376 realign decision made */
1377 gcc_assert (!crtl
->stack_realign_processed
);
1378 crtl
->stack_alignment_estimated
= align
;
1381 /* stack_alignment_needed > PREFERRED_STACK_BOUNDARY is permitted.
1382 So here we only make sure stack_alignment_needed >= align. */
1383 if (crtl
->stack_alignment_needed
< align
)
1384 crtl
->stack_alignment_needed
= align
;
1385 if (crtl
->max_used_stack_slot_alignment
< align
)
1386 crtl
->max_used_stack_slot_alignment
= align
;
1389 /* Create RTL for an SSA partition. */
1392 expand_one_ssa_partition (tree var
)
1394 int part
= var_to_partition (SA
.map
, var
);
1395 gcc_assert (part
!= NO_PARTITION
);
1397 if (SA
.partition_to_pseudo
[part
])
1400 unsigned int align
= MINIMUM_ALIGNMENT (TREE_TYPE (var
),
1401 TYPE_MODE (TREE_TYPE (var
)),
1402 TYPE_ALIGN (TREE_TYPE (var
)));
1404 /* If the variable alignment is very large we'll dynamicaly allocate
1405 it, which means that in-frame portion is just a pointer. */
1406 if (align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
1407 align
= GET_MODE_ALIGNMENT (Pmode
);
1409 record_alignment_for_reg_var (align
);
1411 if (!use_register_for_decl (var
))
1413 if (defer_stack_allocation (var
, true))
1414 add_stack_var (var
);
1416 expand_one_stack_var_1 (var
);
1420 machine_mode reg_mode
= promote_ssa_mode (var
, NULL
);
1421 rtx x
= gen_reg_rtx (reg_mode
);
1425 /* For a promoted variable, X will not be used directly but wrapped in a
1426 SUBREG with SUBREG_PROMOTED_VAR_P set, which means that the RTL land
1427 will assume that its upper bits can be inferred from its lower bits.
1428 Therefore, if X isn't initialized on every path from the entry, then
1429 we must do it manually in order to fulfill the above assumption. */
1430 if (reg_mode
!= TYPE_MODE (TREE_TYPE (var
))
1431 && bitmap_bit_p (SA
.partitions_for_undefined_values
, part
))
1432 emit_move_insn (x
, CONST0_RTX (reg_mode
));
1435 /* Record the association between the RTL generated for partition PART
1436 and the underlying variable of the SSA_NAME VAR. */
1439 adjust_one_expanded_partition_var (tree var
)
1444 tree decl
= SSA_NAME_VAR (var
);
1446 int part
= var_to_partition (SA
.map
, var
);
1447 if (part
== NO_PARTITION
)
1450 rtx x
= SA
.partition_to_pseudo
[part
];
1459 /* Note if the object is a user variable. */
1460 if (decl
&& !DECL_ARTIFICIAL (decl
))
1463 if (POINTER_TYPE_P (decl
? TREE_TYPE (decl
) : TREE_TYPE (var
)))
1464 mark_reg_pointer (x
, get_pointer_alignment (var
));
1467 /* A subroutine of expand_one_var. Called to assign rtl to a VAR_DECL
1468 that will reside in a pseudo register. */
1471 expand_one_register_var (tree var
)
1473 if (TREE_CODE (var
) == SSA_NAME
)
1475 int part
= var_to_partition (SA
.map
, var
);
1476 if (part
!= NO_PARTITION
)
1478 rtx x
= SA
.partition_to_pseudo
[part
];
1480 gcc_assert (REG_P (x
));
1487 tree type
= TREE_TYPE (decl
);
1488 machine_mode reg_mode
= promote_decl_mode (decl
, NULL
);
1489 rtx x
= gen_reg_rtx (reg_mode
);
1493 /* Note if the object is a user variable. */
1494 if (!DECL_ARTIFICIAL (decl
))
1497 if (POINTER_TYPE_P (type
))
1498 mark_reg_pointer (x
, get_pointer_alignment (var
));
1501 /* A subroutine of expand_one_var. Called to assign rtl to a VAR_DECL that
1502 has some associated error, e.g. its type is error-mark. We just need
1503 to pick something that won't crash the rest of the compiler. */
1506 expand_one_error_var (tree var
)
1508 machine_mode mode
= DECL_MODE (var
);
1511 if (mode
== BLKmode
)
1512 x
= gen_rtx_MEM (BLKmode
, const0_rtx
);
1513 else if (mode
== VOIDmode
)
1516 x
= gen_reg_rtx (mode
);
1518 SET_DECL_RTL (var
, x
);
1521 /* A subroutine of expand_one_var. VAR is a variable that will be
1522 allocated to the local stack frame. Return true if we wish to
1523 add VAR to STACK_VARS so that it will be coalesced with other
1524 variables. Return false to allocate VAR immediately.
1526 This function is used to reduce the number of variables considered
1527 for coalescing, which reduces the size of the quadratic problem. */
1530 defer_stack_allocation (tree var
, bool toplevel
)
1532 tree size_unit
= TREE_CODE (var
) == SSA_NAME
1533 ? TYPE_SIZE_UNIT (TREE_TYPE (var
))
1534 : DECL_SIZE_UNIT (var
);
1537 /* Whether the variable is small enough for immediate allocation not to be
1538 a problem with regard to the frame size. */
1540 = (poly_int_tree_p (size_unit
, &size
)
1541 && (estimated_poly_value (size
)
1542 < PARAM_VALUE (PARAM_MIN_SIZE_FOR_STACK_SHARING
)));
1544 /* If stack protection is enabled, *all* stack variables must be deferred,
1545 so that we can re-order the strings to the top of the frame.
1546 Similarly for Address Sanitizer. */
1547 if (flag_stack_protect
|| asan_sanitize_stack_p ())
1550 unsigned int align
= TREE_CODE (var
) == SSA_NAME
1551 ? TYPE_ALIGN (TREE_TYPE (var
))
1554 /* We handle "large" alignment via dynamic allocation. We want to handle
1555 this extra complication in only one place, so defer them. */
1556 if (align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
1559 bool ignored
= TREE_CODE (var
) == SSA_NAME
1560 ? !SSAVAR (var
) || DECL_IGNORED_P (SSA_NAME_VAR (var
))
1561 : DECL_IGNORED_P (var
);
1563 /* When optimization is enabled, DECL_IGNORED_P variables originally scoped
1564 might be detached from their block and appear at toplevel when we reach
1565 here. We want to coalesce them with variables from other blocks when
1566 the immediate contribution to the frame size would be noticeable. */
1567 if (toplevel
&& optimize
> 0 && ignored
&& !smallish
)
1570 /* Variables declared in the outermost scope automatically conflict
1571 with every other variable. The only reason to want to defer them
1572 at all is that, after sorting, we can more efficiently pack
1573 small variables in the stack frame. Continue to defer at -O2. */
1574 if (toplevel
&& optimize
< 2)
1577 /* Without optimization, *most* variables are allocated from the
1578 stack, which makes the quadratic problem large exactly when we
1579 want compilation to proceed as quickly as possible. On the
1580 other hand, we don't want the function's stack frame size to
1581 get completely out of hand. So we avoid adding scalars and
1582 "small" aggregates to the list at all. */
1583 if (optimize
== 0 && smallish
)
1589 /* A subroutine of expand_used_vars. Expand one variable according to
1590 its flavor. Variables to be placed on the stack are not actually
1591 expanded yet, merely recorded.
1592 When REALLY_EXPAND is false, only add stack values to be allocated.
1593 Return stack usage this variable is supposed to take.
1597 expand_one_var (tree var
, bool toplevel
, bool really_expand
)
1599 unsigned int align
= BITS_PER_UNIT
;
1604 if (TREE_TYPE (var
) != error_mark_node
&& VAR_P (var
))
1606 if (is_global_var (var
))
1609 /* Because we don't know if VAR will be in register or on stack,
1610 we conservatively assume it will be on stack even if VAR is
1611 eventually put into register after RA pass. For non-automatic
1612 variables, which won't be on stack, we collect alignment of
1613 type and ignore user specified alignment. Similarly for
1614 SSA_NAMEs for which use_register_for_decl returns true. */
1615 if (TREE_STATIC (var
)
1616 || DECL_EXTERNAL (var
)
1617 || (TREE_CODE (origvar
) == SSA_NAME
&& use_register_for_decl (var
)))
1618 align
= MINIMUM_ALIGNMENT (TREE_TYPE (var
),
1619 TYPE_MODE (TREE_TYPE (var
)),
1620 TYPE_ALIGN (TREE_TYPE (var
)));
1621 else if (DECL_HAS_VALUE_EXPR_P (var
)
1622 || (DECL_RTL_SET_P (var
) && MEM_P (DECL_RTL (var
))))
1623 /* Don't consider debug only variables with DECL_HAS_VALUE_EXPR_P set
1624 or variables which were assigned a stack slot already by
1625 expand_one_stack_var_at - in the latter case DECL_ALIGN has been
1626 changed from the offset chosen to it. */
1627 align
= crtl
->stack_alignment_estimated
;
1629 align
= MINIMUM_ALIGNMENT (var
, DECL_MODE (var
), DECL_ALIGN (var
));
1631 /* If the variable alignment is very large we'll dynamicaly allocate
1632 it, which means that in-frame portion is just a pointer. */
1633 if (align
> MAX_SUPPORTED_STACK_ALIGNMENT
)
1634 align
= GET_MODE_ALIGNMENT (Pmode
);
1637 record_alignment_for_reg_var (align
);
1640 if (TREE_CODE (origvar
) == SSA_NAME
)
1642 gcc_assert (!VAR_P (var
)
1643 || (!DECL_EXTERNAL (var
)
1644 && !DECL_HAS_VALUE_EXPR_P (var
)
1645 && !TREE_STATIC (var
)
1646 && TREE_TYPE (var
) != error_mark_node
1647 && !DECL_HARD_REGISTER (var
)
1650 if (!VAR_P (var
) && TREE_CODE (origvar
) != SSA_NAME
)
1652 else if (DECL_EXTERNAL (var
))
1654 else if (DECL_HAS_VALUE_EXPR_P (var
))
1656 else if (TREE_STATIC (var
))
1658 else if (TREE_CODE (origvar
) != SSA_NAME
&& DECL_RTL_SET_P (var
))
1660 else if (TREE_TYPE (var
) == error_mark_node
)
1663 expand_one_error_var (var
);
1665 else if (VAR_P (var
) && DECL_HARD_REGISTER (var
))
1669 expand_one_hard_reg_var (var
);
1670 if (!DECL_HARD_REGISTER (var
))
1671 /* Invalid register specification. */
1672 expand_one_error_var (var
);
1675 else if (use_register_for_decl (var
))
1678 expand_one_register_var (origvar
);
1680 else if (!poly_int_tree_p (DECL_SIZE_UNIT (var
), &size
)
1681 || !valid_constant_size_p (DECL_SIZE_UNIT (var
)))
1683 /* Reject variables which cover more than half of the address-space. */
1686 if (DECL_NONLOCAL_FRAME (var
))
1687 error_at (DECL_SOURCE_LOCATION (current_function_decl
),
1688 "total size of local objects is too large");
1690 error_at (DECL_SOURCE_LOCATION (var
),
1691 "size of variable %q+D is too large", var
);
1692 expand_one_error_var (var
);
1695 else if (defer_stack_allocation (var
, toplevel
))
1696 add_stack_var (origvar
);
1701 if (lookup_attribute ("naked",
1702 DECL_ATTRIBUTES (current_function_decl
)))
1703 error ("cannot allocate stack for variable %q+D, naked function.",
1706 expand_one_stack_var (origvar
);
1713 /* A subroutine of expand_used_vars. Walk down through the BLOCK tree
1714 expanding variables. Those variables that can be put into registers
1715 are allocated pseudos; those that can't are put on the stack.
1717 TOPLEVEL is true if this is the outermost BLOCK. */
1720 expand_used_vars_for_block (tree block
, bool toplevel
)
1724 /* Expand all variables at this level. */
1725 for (t
= BLOCK_VARS (block
); t
; t
= DECL_CHAIN (t
))
1727 && ((!VAR_P (t
) && TREE_CODE (t
) != RESULT_DECL
)
1728 || !DECL_NONSHAREABLE (t
)))
1729 expand_one_var (t
, toplevel
, true);
1731 /* Expand all variables at containing levels. */
1732 for (t
= BLOCK_SUBBLOCKS (block
); t
; t
= BLOCK_CHAIN (t
))
1733 expand_used_vars_for_block (t
, false);
1736 /* A subroutine of expand_used_vars. Walk down through the BLOCK tree
1737 and clear TREE_USED on all local variables. */
1740 clear_tree_used (tree block
)
1744 for (t
= BLOCK_VARS (block
); t
; t
= DECL_CHAIN (t
))
1745 /* if (!TREE_STATIC (t) && !DECL_EXTERNAL (t)) */
1746 if ((!VAR_P (t
) && TREE_CODE (t
) != RESULT_DECL
)
1747 || !DECL_NONSHAREABLE (t
))
1750 for (t
= BLOCK_SUBBLOCKS (block
); t
; t
= BLOCK_CHAIN (t
))
1751 clear_tree_used (t
);
1755 SPCT_FLAG_DEFAULT
= 1,
1757 SPCT_FLAG_STRONG
= 3,
1758 SPCT_FLAG_EXPLICIT
= 4
1761 /* Examine TYPE and determine a bit mask of the following features. */
1763 #define SPCT_HAS_LARGE_CHAR_ARRAY 1
1764 #define SPCT_HAS_SMALL_CHAR_ARRAY 2
1765 #define SPCT_HAS_ARRAY 4
1766 #define SPCT_HAS_AGGREGATE 8
1769 stack_protect_classify_type (tree type
)
1771 unsigned int ret
= 0;
1774 switch (TREE_CODE (type
))
1777 t
= TYPE_MAIN_VARIANT (TREE_TYPE (type
));
1778 if (t
== char_type_node
1779 || t
== signed_char_type_node
1780 || t
== unsigned_char_type_node
)
1782 unsigned HOST_WIDE_INT max
= PARAM_VALUE (PARAM_SSP_BUFFER_SIZE
);
1783 unsigned HOST_WIDE_INT len
;
1785 if (!TYPE_SIZE_UNIT (type
)
1786 || !tree_fits_uhwi_p (TYPE_SIZE_UNIT (type
)))
1789 len
= tree_to_uhwi (TYPE_SIZE_UNIT (type
));
1792 ret
= SPCT_HAS_SMALL_CHAR_ARRAY
| SPCT_HAS_ARRAY
;
1794 ret
= SPCT_HAS_LARGE_CHAR_ARRAY
| SPCT_HAS_ARRAY
;
1797 ret
= SPCT_HAS_ARRAY
;
1801 case QUAL_UNION_TYPE
:
1803 ret
= SPCT_HAS_AGGREGATE
;
1804 for (t
= TYPE_FIELDS (type
); t
; t
= TREE_CHAIN (t
))
1805 if (TREE_CODE (t
) == FIELD_DECL
)
1806 ret
|= stack_protect_classify_type (TREE_TYPE (t
));
1816 /* Return nonzero if DECL should be segregated into the "vulnerable" upper
1817 part of the local stack frame. Remember if we ever return nonzero for
1818 any variable in this function. The return value is the phase number in
1819 which the variable should be allocated. */
1822 stack_protect_decl_phase (tree decl
)
1824 unsigned int bits
= stack_protect_classify_type (TREE_TYPE (decl
));
1827 if (bits
& SPCT_HAS_SMALL_CHAR_ARRAY
)
1828 has_short_buffer
= true;
1830 if (flag_stack_protect
== SPCT_FLAG_ALL
1831 || flag_stack_protect
== SPCT_FLAG_STRONG
1832 || (flag_stack_protect
== SPCT_FLAG_EXPLICIT
1833 && lookup_attribute ("stack_protect",
1834 DECL_ATTRIBUTES (current_function_decl
))))
1836 if ((bits
& (SPCT_HAS_SMALL_CHAR_ARRAY
| SPCT_HAS_LARGE_CHAR_ARRAY
))
1837 && !(bits
& SPCT_HAS_AGGREGATE
))
1839 else if (bits
& SPCT_HAS_ARRAY
)
1843 ret
= (bits
& SPCT_HAS_LARGE_CHAR_ARRAY
) != 0;
1846 has_protected_decls
= true;
1851 /* Two helper routines that check for phase 1 and phase 2. These are used
1852 as callbacks for expand_stack_vars. */
1855 stack_protect_decl_phase_1 (size_t i
)
1857 return stack_protect_decl_phase (stack_vars
[i
].decl
) == 1;
1861 stack_protect_decl_phase_2 (size_t i
)
1863 return stack_protect_decl_phase (stack_vars
[i
].decl
) == 2;
1866 /* And helper function that checks for asan phase (with stack protector
1867 it is phase 3). This is used as callback for expand_stack_vars.
1868 Returns true if any of the vars in the partition need to be protected. */
1871 asan_decl_phase_3 (size_t i
)
1875 if (asan_protect_stack_decl (stack_vars
[i
].decl
))
1877 i
= stack_vars
[i
].next
;
1882 /* Ensure that variables in different stack protection phases conflict
1883 so that they are not merged and share the same stack slot. */
1886 add_stack_protection_conflicts (void)
1888 size_t i
, j
, n
= stack_vars_num
;
1889 unsigned char *phase
;
1891 phase
= XNEWVEC (unsigned char, n
);
1892 for (i
= 0; i
< n
; ++i
)
1893 phase
[i
] = stack_protect_decl_phase (stack_vars
[i
].decl
);
1895 for (i
= 0; i
< n
; ++i
)
1897 unsigned char ph_i
= phase
[i
];
1898 for (j
= i
+ 1; j
< n
; ++j
)
1899 if (ph_i
!= phase
[j
])
1900 add_stack_var_conflict (i
, j
);
1906 /* Create a decl for the guard at the top of the stack frame. */
1909 create_stack_guard (void)
1911 tree guard
= build_decl (DECL_SOURCE_LOCATION (current_function_decl
),
1912 VAR_DECL
, NULL
, ptr_type_node
);
1913 TREE_THIS_VOLATILE (guard
) = 1;
1914 TREE_USED (guard
) = 1;
1915 expand_one_stack_var (guard
);
1916 crtl
->stack_protect_guard
= guard
;
1919 /* Prepare for expanding variables. */
1921 init_vars_expansion (void)
1923 /* Conflict bitmaps, and a few related temporary bitmaps, go here. */
1924 bitmap_obstack_initialize (&stack_var_bitmap_obstack
);
1926 /* A map from decl to stack partition. */
1927 decl_to_stack_part
= new hash_map
<tree
, size_t>;
1929 /* Initialize local stack smashing state. */
1930 has_protected_decls
= false;
1931 has_short_buffer
= false;
1934 /* Free up stack variable graph data. */
1936 fini_vars_expansion (void)
1938 bitmap_obstack_release (&stack_var_bitmap_obstack
);
1940 XDELETEVEC (stack_vars
);
1941 if (stack_vars_sorted
)
1942 XDELETEVEC (stack_vars_sorted
);
1944 stack_vars_sorted
= NULL
;
1945 stack_vars_alloc
= stack_vars_num
= 0;
1946 delete decl_to_stack_part
;
1947 decl_to_stack_part
= NULL
;
1950 /* Make a fair guess for the size of the stack frame of the function
1951 in NODE. This doesn't have to be exact, the result is only used in
1952 the inline heuristics. So we don't want to run the full stack var
1953 packing algorithm (which is quadratic in the number of stack vars).
1954 Instead, we calculate the total size of all stack vars. This turns
1955 out to be a pretty fair estimate -- packing of stack vars doesn't
1956 happen very often. */
1959 estimated_stack_frame_size (struct cgraph_node
*node
)
1961 poly_int64 size
= 0;
1964 struct function
*fn
= DECL_STRUCT_FUNCTION (node
->decl
);
1968 init_vars_expansion ();
1970 FOR_EACH_LOCAL_DECL (fn
, i
, var
)
1971 if (auto_var_in_fn_p (var
, fn
->decl
))
1972 size
+= expand_one_var (var
, true, false);
1974 if (stack_vars_num
> 0)
1976 /* Fake sorting the stack vars for account_stack_vars (). */
1977 stack_vars_sorted
= XNEWVEC (size_t, stack_vars_num
);
1978 for (i
= 0; i
< stack_vars_num
; ++i
)
1979 stack_vars_sorted
[i
] = i
;
1980 size
+= account_stack_vars ();
1983 fini_vars_expansion ();
1985 return estimated_poly_value (size
);
1988 /* Helper routine to check if a record or union contains an array field. */
1991 record_or_union_type_has_array_p (const_tree tree_type
)
1993 tree fields
= TYPE_FIELDS (tree_type
);
1996 for (f
= fields
; f
; f
= DECL_CHAIN (f
))
1997 if (TREE_CODE (f
) == FIELD_DECL
)
1999 tree field_type
= TREE_TYPE (f
);
2000 if (RECORD_OR_UNION_TYPE_P (field_type
)
2001 && record_or_union_type_has_array_p (field_type
))
2003 if (TREE_CODE (field_type
) == ARRAY_TYPE
)
2009 /* Check if the current function has local referenced variables that
2010 have their addresses taken, contain an array, or are arrays. */
2013 stack_protect_decl_p ()
2018 FOR_EACH_LOCAL_DECL (cfun
, i
, var
)
2019 if (!is_global_var (var
))
2021 tree var_type
= TREE_TYPE (var
);
2023 && (TREE_CODE (var_type
) == ARRAY_TYPE
2024 || TREE_ADDRESSABLE (var
)
2025 || (RECORD_OR_UNION_TYPE_P (var_type
)
2026 && record_or_union_type_has_array_p (var_type
))))
2032 /* Check if the current function has calls that use a return slot. */
2035 stack_protect_return_slot_p ()
2039 FOR_ALL_BB_FN (bb
, cfun
)
2040 for (gimple_stmt_iterator gsi
= gsi_start_bb (bb
);
2041 !gsi_end_p (gsi
); gsi_next (&gsi
))
2043 gimple
*stmt
= gsi_stmt (gsi
);
2044 /* This assumes that calls to internal-only functions never
2045 use a return slot. */
2046 if (is_gimple_call (stmt
)
2047 && !gimple_call_internal_p (stmt
)
2048 && aggregate_value_p (TREE_TYPE (gimple_call_fntype (stmt
)),
2049 gimple_call_fndecl (stmt
)))
2055 /* Expand all variables used in the function. */
2058 expand_used_vars (void)
2060 tree var
, outer_block
= DECL_INITIAL (current_function_decl
);
2061 auto_vec
<tree
> maybe_local_decls
;
2062 rtx_insn
*var_end_seq
= NULL
;
2065 bool gen_stack_protect_signal
= false;
2067 /* Compute the phase of the stack frame for this function. */
2069 int align
= PREFERRED_STACK_BOUNDARY
/ BITS_PER_UNIT
;
2070 int off
= targetm
.starting_frame_offset () % align
;
2071 frame_phase
= off
? align
- off
: 0;
2074 /* Set TREE_USED on all variables in the local_decls. */
2075 FOR_EACH_LOCAL_DECL (cfun
, i
, var
)
2076 TREE_USED (var
) = 1;
2077 /* Clear TREE_USED on all variables associated with a block scope. */
2078 clear_tree_used (DECL_INITIAL (current_function_decl
));
2080 init_vars_expansion ();
2082 if (targetm
.use_pseudo_pic_reg ())
2083 pic_offset_table_rtx
= gen_reg_rtx (Pmode
);
2085 for (i
= 0; i
< SA
.map
->num_partitions
; i
++)
2087 if (bitmap_bit_p (SA
.partitions_for_parm_default_defs
, i
))
2090 tree var
= partition_to_var (SA
.map
, i
);
2092 gcc_assert (!virtual_operand_p (var
));
2094 expand_one_ssa_partition (var
);
2097 if (flag_stack_protect
== SPCT_FLAG_STRONG
)
2098 gen_stack_protect_signal
2099 = stack_protect_decl_p () || stack_protect_return_slot_p ();
2101 /* At this point all variables on the local_decls with TREE_USED
2102 set are not associated with any block scope. Lay them out. */
2104 len
= vec_safe_length (cfun
->local_decls
);
2105 FOR_EACH_LOCAL_DECL (cfun
, i
, var
)
2107 bool expand_now
= false;
2109 /* Expanded above already. */
2110 if (is_gimple_reg (var
))
2112 TREE_USED (var
) = 0;
2115 /* We didn't set a block for static or extern because it's hard
2116 to tell the difference between a global variable (re)declared
2117 in a local scope, and one that's really declared there to
2118 begin with. And it doesn't really matter much, since we're
2119 not giving them stack space. Expand them now. */
2120 else if (TREE_STATIC (var
) || DECL_EXTERNAL (var
))
2123 /* Expand variables not associated with any block now. Those created by
2124 the optimizers could be live anywhere in the function. Those that
2125 could possibly have been scoped originally and detached from their
2126 block will have their allocation deferred so we coalesce them with
2127 others when optimization is enabled. */
2128 else if (TREE_USED (var
))
2131 /* Finally, mark all variables on the list as used. We'll use
2132 this in a moment when we expand those associated with scopes. */
2133 TREE_USED (var
) = 1;
2136 expand_one_var (var
, true, true);
2139 if (DECL_ARTIFICIAL (var
) && !DECL_IGNORED_P (var
))
2141 rtx rtl
= DECL_RTL_IF_SET (var
);
2143 /* Keep artificial non-ignored vars in cfun->local_decls
2144 chain until instantiate_decls. */
2145 if (rtl
&& (MEM_P (rtl
) || GET_CODE (rtl
) == CONCAT
))
2146 add_local_decl (cfun
, var
);
2147 else if (rtl
== NULL_RTX
)
2148 /* If rtl isn't set yet, which can happen e.g. with
2149 -fstack-protector, retry before returning from this
2151 maybe_local_decls
.safe_push (var
);
2155 /* We duplicated some of the decls in CFUN->LOCAL_DECLS.
2157 +-----------------+-----------------+
2158 | ...processed... | ...duplicates...|
2159 +-----------------+-----------------+
2161 +-- LEN points here.
2163 We just want the duplicates, as those are the artificial
2164 non-ignored vars that we want to keep until instantiate_decls.
2165 Move them down and truncate the array. */
2166 if (!vec_safe_is_empty (cfun
->local_decls
))
2167 cfun
->local_decls
->block_remove (0, len
);
2169 /* At this point, all variables within the block tree with TREE_USED
2170 set are actually used by the optimized function. Lay them out. */
2171 expand_used_vars_for_block (outer_block
, true);
2173 if (stack_vars_num
> 0)
2175 add_scope_conflicts ();
2177 /* If stack protection is enabled, we don't share space between
2178 vulnerable data and non-vulnerable data. */
2179 if (flag_stack_protect
!= 0
2180 && (flag_stack_protect
!= SPCT_FLAG_EXPLICIT
2181 || (flag_stack_protect
== SPCT_FLAG_EXPLICIT
2182 && lookup_attribute ("stack_protect",
2183 DECL_ATTRIBUTES (current_function_decl
)))))
2184 add_stack_protection_conflicts ();
2186 /* Now that we have collected all stack variables, and have computed a
2187 minimal interference graph, attempt to save some stack space. */
2188 partition_stack_vars ();
2190 dump_stack_var_partition ();
2193 switch (flag_stack_protect
)
2196 create_stack_guard ();
2199 case SPCT_FLAG_STRONG
:
2200 if (gen_stack_protect_signal
2201 || cfun
->calls_alloca
|| has_protected_decls
2202 || lookup_attribute ("stack_protect",
2203 DECL_ATTRIBUTES (current_function_decl
)))
2204 create_stack_guard ();
2207 case SPCT_FLAG_DEFAULT
:
2208 if (cfun
->calls_alloca
|| has_protected_decls
2209 || lookup_attribute ("stack_protect",
2210 DECL_ATTRIBUTES (current_function_decl
)))
2211 create_stack_guard ();
2214 case SPCT_FLAG_EXPLICIT
:
2215 if (lookup_attribute ("stack_protect",
2216 DECL_ATTRIBUTES (current_function_decl
)))
2217 create_stack_guard ();
2223 /* Assign rtl to each variable based on these partitions. */
2224 if (stack_vars_num
> 0)
2226 struct stack_vars_data data
;
2228 data
.asan_base
= NULL_RTX
;
2229 data
.asan_alignb
= 0;
2231 /* Reorder decls to be protected by iterating over the variables
2232 array multiple times, and allocating out of each phase in turn. */
2233 /* ??? We could probably integrate this into the qsort we did
2234 earlier, such that we naturally see these variables first,
2235 and thus naturally allocate things in the right order. */
2236 if (has_protected_decls
)
2238 /* Phase 1 contains only character arrays. */
2239 expand_stack_vars (stack_protect_decl_phase_1
, &data
);
2241 /* Phase 2 contains other kinds of arrays. */
2242 if (flag_stack_protect
== SPCT_FLAG_ALL
2243 || flag_stack_protect
== SPCT_FLAG_STRONG
2244 || (flag_stack_protect
== SPCT_FLAG_EXPLICIT
2245 && lookup_attribute ("stack_protect",
2246 DECL_ATTRIBUTES (current_function_decl
))))
2247 expand_stack_vars (stack_protect_decl_phase_2
, &data
);
2250 if (asan_sanitize_stack_p ())
2251 /* Phase 3, any partitions that need asan protection
2252 in addition to phase 1 and 2. */
2253 expand_stack_vars (asan_decl_phase_3
, &data
);
2255 /* ASAN description strings don't yet have a syntax for expressing
2256 polynomial offsets. */
2257 HOST_WIDE_INT prev_offset
;
2258 if (!data
.asan_vec
.is_empty ()
2259 && frame_offset
.is_constant (&prev_offset
))
2261 HOST_WIDE_INT offset
, sz
, redzonesz
;
2262 redzonesz
= ASAN_RED_ZONE_SIZE
;
2263 sz
= data
.asan_vec
[0] - prev_offset
;
2264 if (data
.asan_alignb
> ASAN_RED_ZONE_SIZE
2265 && data
.asan_alignb
<= 4096
2266 && sz
+ ASAN_RED_ZONE_SIZE
>= (int) data
.asan_alignb
)
2267 redzonesz
= ((sz
+ ASAN_RED_ZONE_SIZE
+ data
.asan_alignb
- 1)
2268 & ~(data
.asan_alignb
- HOST_WIDE_INT_1
)) - sz
;
2269 /* Allocating a constant amount of space from a constant
2270 starting offset must give a constant result. */
2271 offset
= (alloc_stack_frame_space (redzonesz
, ASAN_RED_ZONE_SIZE
)
2273 data
.asan_vec
.safe_push (prev_offset
);
2274 data
.asan_vec
.safe_push (offset
);
2275 /* Leave space for alignment if STRICT_ALIGNMENT. */
2276 if (STRICT_ALIGNMENT
)
2277 alloc_stack_frame_space ((GET_MODE_ALIGNMENT (SImode
)
2278 << ASAN_SHADOW_SHIFT
)
2279 / BITS_PER_UNIT
, 1);
2282 = asan_emit_stack_protection (virtual_stack_vars_rtx
,
2285 data
.asan_vec
.address (),
2286 data
.asan_decl_vec
.address (),
2287 data
.asan_vec
.length ());
2290 expand_stack_vars (NULL
, &data
);
2293 if (asan_sanitize_allocas_p () && cfun
->calls_alloca
)
2294 var_end_seq
= asan_emit_allocas_unpoison (virtual_stack_dynamic_rtx
,
2295 virtual_stack_vars_rtx
,
2298 fini_vars_expansion ();
2300 /* If there were any artificial non-ignored vars without rtl
2301 found earlier, see if deferred stack allocation hasn't assigned
2303 FOR_EACH_VEC_ELT_REVERSE (maybe_local_decls
, i
, var
)
2305 rtx rtl
= DECL_RTL_IF_SET (var
);
2307 /* Keep artificial non-ignored vars in cfun->local_decls
2308 chain until instantiate_decls. */
2309 if (rtl
&& (MEM_P (rtl
) || GET_CODE (rtl
) == CONCAT
))
2310 add_local_decl (cfun
, var
);
2313 /* If the target requires that FRAME_OFFSET be aligned, do it. */
2314 if (STACK_ALIGNMENT_NEEDED
)
2316 HOST_WIDE_INT align
= PREFERRED_STACK_BOUNDARY
/ BITS_PER_UNIT
;
2317 if (FRAME_GROWS_DOWNWARD
)
2318 frame_offset
= aligned_lower_bound (frame_offset
, align
);
2320 frame_offset
= aligned_upper_bound (frame_offset
, align
);
2327 /* If we need to produce a detailed dump, print the tree representation
2328 for STMT to the dump file. SINCE is the last RTX after which the RTL
2329 generated for STMT should have been appended. */
2332 maybe_dump_rtl_for_gimple_stmt (gimple
*stmt
, rtx_insn
*since
)
2334 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
2336 fprintf (dump_file
, "\n;; ");
2337 print_gimple_stmt (dump_file
, stmt
, 0,
2338 TDF_SLIM
| (dump_flags
& TDF_LINENO
));
2339 fprintf (dump_file
, "\n");
2341 print_rtl (dump_file
, since
? NEXT_INSN (since
) : since
);
2345 /* Maps the blocks that do not contain tree labels to rtx labels. */
2347 static hash_map
<basic_block
, rtx_code_label
*> *lab_rtx_for_bb
;
2349 /* Returns the label_rtx expression for a label starting basic block BB. */
2351 static rtx_code_label
*
2352 label_rtx_for_bb (basic_block bb ATTRIBUTE_UNUSED
)
2354 gimple_stmt_iterator gsi
;
2357 if (bb
->flags
& BB_RTL
)
2358 return block_label (bb
);
2360 rtx_code_label
**elt
= lab_rtx_for_bb
->get (bb
);
2364 /* Find the tree label if it is present. */
2366 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
2370 lab_stmt
= dyn_cast
<glabel
*> (gsi_stmt (gsi
));
2374 lab
= gimple_label_label (lab_stmt
);
2375 if (DECL_NONLOCAL (lab
))
2378 return jump_target_rtx (lab
);
2381 rtx_code_label
*l
= gen_label_rtx ();
2382 lab_rtx_for_bb
->put (bb
, l
);
2387 /* A subroutine of expand_gimple_cond. Given E, a fallthrough edge
2388 of a basic block where we just expanded the conditional at the end,
2389 possibly clean up the CFG and instruction sequence. LAST is the
2390 last instruction before the just emitted jump sequence. */
2393 maybe_cleanup_end_of_block (edge e
, rtx_insn
*last
)
2395 /* Special case: when jumpif decides that the condition is
2396 trivial it emits an unconditional jump (and the necessary
2397 barrier). But we still have two edges, the fallthru one is
2398 wrong. purge_dead_edges would clean this up later. Unfortunately
2399 we have to insert insns (and split edges) before
2400 find_many_sub_basic_blocks and hence before purge_dead_edges.
2401 But splitting edges might create new blocks which depend on the
2402 fact that if there are two edges there's no barrier. So the
2403 barrier would get lost and verify_flow_info would ICE. Instead
2404 of auditing all edge splitters to care for the barrier (which
2405 normally isn't there in a cleaned CFG), fix it here. */
2406 if (BARRIER_P (get_last_insn ()))
2410 /* Now, we have a single successor block, if we have insns to
2411 insert on the remaining edge we potentially will insert
2412 it at the end of this block (if the dest block isn't feasible)
2413 in order to avoid splitting the edge. This insertion will take
2414 place in front of the last jump. But we might have emitted
2415 multiple jumps (conditional and one unconditional) to the
2416 same destination. Inserting in front of the last one then
2417 is a problem. See PR 40021. We fix this by deleting all
2418 jumps except the last unconditional one. */
2419 insn
= PREV_INSN (get_last_insn ());
2420 /* Make sure we have an unconditional jump. Otherwise we're
2422 gcc_assert (JUMP_P (insn
) && !any_condjump_p (insn
));
2423 for (insn
= PREV_INSN (insn
); insn
!= last
;)
2425 insn
= PREV_INSN (insn
);
2426 if (JUMP_P (NEXT_INSN (insn
)))
2428 if (!any_condjump_p (NEXT_INSN (insn
)))
2430 gcc_assert (BARRIER_P (NEXT_INSN (NEXT_INSN (insn
))));
2431 delete_insn (NEXT_INSN (NEXT_INSN (insn
)));
2433 delete_insn (NEXT_INSN (insn
));
2439 /* A subroutine of expand_gimple_basic_block. Expand one GIMPLE_COND.
2440 Returns a new basic block if we've terminated the current basic
2441 block and created a new one. */
2444 expand_gimple_cond (basic_block bb
, gcond
*stmt
)
2446 basic_block new_bb
, dest
;
2449 rtx_insn
*last2
, *last
;
2450 enum tree_code code
;
2453 code
= gimple_cond_code (stmt
);
2454 op0
= gimple_cond_lhs (stmt
);
2455 op1
= gimple_cond_rhs (stmt
);
2456 /* We're sometimes presented with such code:
2460 This would expand to two comparisons which then later might
2461 be cleaned up by combine. But some pattern matchers like if-conversion
2462 work better when there's only one compare, so make up for this
2463 here as special exception if TER would have made the same change. */
2465 && TREE_CODE (op0
) == SSA_NAME
2466 && TREE_CODE (TREE_TYPE (op0
)) == BOOLEAN_TYPE
2467 && TREE_CODE (op1
) == INTEGER_CST
2468 && ((gimple_cond_code (stmt
) == NE_EXPR
2469 && integer_zerop (op1
))
2470 || (gimple_cond_code (stmt
) == EQ_EXPR
2471 && integer_onep (op1
)))
2472 && bitmap_bit_p (SA
.values
, SSA_NAME_VERSION (op0
)))
2474 gimple
*second
= SSA_NAME_DEF_STMT (op0
);
2475 if (gimple_code (second
) == GIMPLE_ASSIGN
)
2477 enum tree_code code2
= gimple_assign_rhs_code (second
);
2478 if (TREE_CODE_CLASS (code2
) == tcc_comparison
)
2481 op0
= gimple_assign_rhs1 (second
);
2482 op1
= gimple_assign_rhs2 (second
);
2484 /* If jumps are cheap and the target does not support conditional
2485 compare, turn some more codes into jumpy sequences. */
2486 else if (BRANCH_COST (optimize_insn_for_speed_p (), false) < 4
2487 && targetm
.gen_ccmp_first
== NULL
)
2489 if ((code2
== BIT_AND_EXPR
2490 && TYPE_PRECISION (TREE_TYPE (op0
)) == 1
2491 && TREE_CODE (gimple_assign_rhs2 (second
)) != INTEGER_CST
)
2492 || code2
== TRUTH_AND_EXPR
)
2494 code
= TRUTH_ANDIF_EXPR
;
2495 op0
= gimple_assign_rhs1 (second
);
2496 op1
= gimple_assign_rhs2 (second
);
2498 else if (code2
== BIT_IOR_EXPR
|| code2
== TRUTH_OR_EXPR
)
2500 code
= TRUTH_ORIF_EXPR
;
2501 op0
= gimple_assign_rhs1 (second
);
2502 op1
= gimple_assign_rhs2 (second
);
2508 /* Optimize (x % C1) == C2 or (x % C1) != C2 if it is beneficial
2509 into (x - C2) * C3 < C4. */
2510 if ((code
== EQ_EXPR
|| code
== NE_EXPR
)
2511 && TREE_CODE (op0
) == SSA_NAME
2512 && TREE_CODE (op1
) == INTEGER_CST
)
2513 code
= maybe_optimize_mod_cmp (code
, &op0
, &op1
);
2515 last2
= last
= get_last_insn ();
2517 extract_true_false_edges_from_block (bb
, &true_edge
, &false_edge
);
2518 set_curr_insn_location (gimple_location (stmt
));
2520 /* These flags have no purpose in RTL land. */
2521 true_edge
->flags
&= ~EDGE_TRUE_VALUE
;
2522 false_edge
->flags
&= ~EDGE_FALSE_VALUE
;
2524 /* We can either have a pure conditional jump with one fallthru edge or
2525 two-way jump that needs to be decomposed into two basic blocks. */
2526 if (false_edge
->dest
== bb
->next_bb
)
2528 jumpif_1 (code
, op0
, op1
, label_rtx_for_bb (true_edge
->dest
),
2529 true_edge
->probability
);
2530 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
2531 if (true_edge
->goto_locus
!= UNKNOWN_LOCATION
)
2532 set_curr_insn_location (true_edge
->goto_locus
);
2533 false_edge
->flags
|= EDGE_FALLTHRU
;
2534 maybe_cleanup_end_of_block (false_edge
, last
);
2537 if (true_edge
->dest
== bb
->next_bb
)
2539 jumpifnot_1 (code
, op0
, op1
, label_rtx_for_bb (false_edge
->dest
),
2540 false_edge
->probability
);
2541 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
2542 if (false_edge
->goto_locus
!= UNKNOWN_LOCATION
)
2543 set_curr_insn_location (false_edge
->goto_locus
);
2544 true_edge
->flags
|= EDGE_FALLTHRU
;
2545 maybe_cleanup_end_of_block (true_edge
, last
);
2549 jumpif_1 (code
, op0
, op1
, label_rtx_for_bb (true_edge
->dest
),
2550 true_edge
->probability
);
2551 last
= get_last_insn ();
2552 if (false_edge
->goto_locus
!= UNKNOWN_LOCATION
)
2553 set_curr_insn_location (false_edge
->goto_locus
);
2554 emit_jump (label_rtx_for_bb (false_edge
->dest
));
2557 if (BARRIER_P (BB_END (bb
)))
2558 BB_END (bb
) = PREV_INSN (BB_END (bb
));
2559 update_bb_for_insn (bb
);
2561 new_bb
= create_basic_block (NEXT_INSN (last
), get_last_insn (), bb
);
2562 dest
= false_edge
->dest
;
2563 redirect_edge_succ (false_edge
, new_bb
);
2564 false_edge
->flags
|= EDGE_FALLTHRU
;
2565 new_bb
->count
= false_edge
->count ();
2566 loop_p loop
= find_common_loop (bb
->loop_father
, dest
->loop_father
);
2567 add_bb_to_loop (new_bb
, loop
);
2568 if (loop
->latch
== bb
2569 && loop
->header
== dest
)
2570 loop
->latch
= new_bb
;
2571 make_single_succ_edge (new_bb
, dest
, 0);
2572 if (BARRIER_P (BB_END (new_bb
)))
2573 BB_END (new_bb
) = PREV_INSN (BB_END (new_bb
));
2574 update_bb_for_insn (new_bb
);
2576 maybe_dump_rtl_for_gimple_stmt (stmt
, last2
);
2578 if (true_edge
->goto_locus
!= UNKNOWN_LOCATION
)
2580 set_curr_insn_location (true_edge
->goto_locus
);
2581 true_edge
->goto_locus
= curr_insn_location ();
2587 /* Mark all calls that can have a transaction restart. */
2590 mark_transaction_restart_calls (gimple
*stmt
)
2592 struct tm_restart_node dummy
;
2593 tm_restart_node
**slot
;
2595 if (!cfun
->gimple_df
->tm_restart
)
2599 slot
= cfun
->gimple_df
->tm_restart
->find_slot (&dummy
, NO_INSERT
);
2602 struct tm_restart_node
*n
= *slot
;
2603 tree list
= n
->label_or_list
;
2606 for (insn
= next_real_insn (get_last_insn ());
2608 insn
= next_real_insn (insn
))
2611 if (TREE_CODE (list
) == LABEL_DECL
)
2612 add_reg_note (insn
, REG_TM
, label_rtx (list
));
2614 for (; list
; list
= TREE_CHAIN (list
))
2615 add_reg_note (insn
, REG_TM
, label_rtx (TREE_VALUE (list
)));
2619 /* A subroutine of expand_gimple_stmt_1, expanding one GIMPLE_CALL
2623 expand_call_stmt (gcall
*stmt
)
2625 tree exp
, decl
, lhs
;
2629 if (gimple_call_internal_p (stmt
))
2631 expand_internal_call (stmt
);
2635 /* If this is a call to a built-in function and it has no effect other
2636 than setting the lhs, try to implement it using an internal function
2638 decl
= gimple_call_fndecl (stmt
);
2639 if (gimple_call_lhs (stmt
)
2640 && !gimple_has_side_effects (stmt
)
2641 && (optimize
|| (decl
&& called_as_built_in (decl
))))
2643 internal_fn ifn
= replacement_internal_fn (stmt
);
2644 if (ifn
!= IFN_LAST
)
2646 expand_internal_call (ifn
, stmt
);
2651 exp
= build_vl_exp (CALL_EXPR
, gimple_call_num_args (stmt
) + 3);
2653 CALL_EXPR_FN (exp
) = gimple_call_fn (stmt
);
2654 builtin_p
= decl
&& fndecl_built_in_p (decl
);
2656 /* If this is not a builtin function, the function type through which the
2657 call is made may be different from the type of the function. */
2660 = fold_convert (build_pointer_type (gimple_call_fntype (stmt
)),
2661 CALL_EXPR_FN (exp
));
2663 TREE_TYPE (exp
) = gimple_call_return_type (stmt
);
2664 CALL_EXPR_STATIC_CHAIN (exp
) = gimple_call_chain (stmt
);
2666 for (i
= 0; i
< gimple_call_num_args (stmt
); i
++)
2668 tree arg
= gimple_call_arg (stmt
, i
);
2670 /* TER addresses into arguments of builtin functions so we have a
2671 chance to infer more correct alignment information. See PR39954. */
2673 && TREE_CODE (arg
) == SSA_NAME
2674 && (def
= get_gimple_for_ssa_name (arg
))
2675 && gimple_assign_rhs_code (def
) == ADDR_EXPR
)
2676 arg
= gimple_assign_rhs1 (def
);
2677 CALL_EXPR_ARG (exp
, i
) = arg
;
2680 if (gimple_has_side_effects (stmt
))
2681 TREE_SIDE_EFFECTS (exp
) = 1;
2683 if (gimple_call_nothrow_p (stmt
))
2684 TREE_NOTHROW (exp
) = 1;
2686 if (gimple_no_warning_p (stmt
))
2687 TREE_NO_WARNING (exp
) = 1;
2689 CALL_EXPR_TAILCALL (exp
) = gimple_call_tail_p (stmt
);
2690 CALL_EXPR_MUST_TAIL_CALL (exp
) = gimple_call_must_tail_p (stmt
);
2691 CALL_EXPR_RETURN_SLOT_OPT (exp
) = gimple_call_return_slot_opt_p (stmt
);
2693 && fndecl_built_in_p (decl
, BUILT_IN_NORMAL
)
2694 && ALLOCA_FUNCTION_CODE_P (DECL_FUNCTION_CODE (decl
)))
2695 CALL_ALLOCA_FOR_VAR_P (exp
) = gimple_call_alloca_for_var_p (stmt
);
2697 CALL_FROM_THUNK_P (exp
) = gimple_call_from_thunk_p (stmt
);
2698 CALL_EXPR_VA_ARG_PACK (exp
) = gimple_call_va_arg_pack_p (stmt
);
2699 CALL_EXPR_BY_DESCRIPTOR (exp
) = gimple_call_by_descriptor_p (stmt
);
2700 SET_EXPR_LOCATION (exp
, gimple_location (stmt
));
2702 /* Ensure RTL is created for debug args. */
2703 if (decl
&& DECL_HAS_DEBUG_ARGS_P (decl
))
2705 vec
<tree
, va_gc
> **debug_args
= decl_debug_args_lookup (decl
);
2710 for (ix
= 1; (*debug_args
)->iterate (ix
, &dtemp
); ix
+= 2)
2712 gcc_assert (TREE_CODE (dtemp
) == DEBUG_EXPR_DECL
);
2713 expand_debug_expr (dtemp
);
2717 rtx_insn
*before_call
= get_last_insn ();
2718 lhs
= gimple_call_lhs (stmt
);
2720 expand_assignment (lhs
, exp
, false);
2722 expand_expr (exp
, const0_rtx
, VOIDmode
, EXPAND_NORMAL
);
2724 /* If the gimple call is an indirect call and has 'nocf_check'
2725 attribute find a generated CALL insn to mark it as no
2726 control-flow verification is needed. */
2727 if (gimple_call_nocf_check_p (stmt
)
2728 && !gimple_call_fndecl (stmt
))
2730 rtx_insn
*last
= get_last_insn ();
2731 while (!CALL_P (last
)
2732 && last
!= before_call
)
2733 last
= PREV_INSN (last
);
2735 if (last
!= before_call
)
2736 add_reg_note (last
, REG_CALL_NOCF_CHECK
, const0_rtx
);
2739 mark_transaction_restart_calls (stmt
);
2743 /* Generate RTL for an asm statement (explicit assembler code).
2744 STRING is a STRING_CST node containing the assembler code text,
2745 or an ADDR_EXPR containing a STRING_CST. VOL nonzero means the
2746 insn is volatile; don't optimize it. */
2749 expand_asm_loc (tree string
, int vol
, location_t locus
)
2753 body
= gen_rtx_ASM_INPUT_loc (VOIDmode
,
2754 ggc_strdup (TREE_STRING_POINTER (string
)),
2757 MEM_VOLATILE_P (body
) = vol
;
2759 /* Non-empty basic ASM implicitly clobbers memory. */
2760 if (TREE_STRING_LENGTH (string
) != 0)
2763 unsigned i
, nclobbers
;
2764 auto_vec
<rtx
> input_rvec
, output_rvec
;
2765 auto_vec
<const char *> constraints
;
2766 auto_vec
<rtx
> clobber_rvec
;
2767 HARD_REG_SET clobbered_regs
;
2768 CLEAR_HARD_REG_SET (clobbered_regs
);
2770 clob
= gen_rtx_MEM (BLKmode
, gen_rtx_SCRATCH (VOIDmode
));
2771 clobber_rvec
.safe_push (clob
);
2773 if (targetm
.md_asm_adjust
)
2774 targetm
.md_asm_adjust (output_rvec
, input_rvec
,
2775 constraints
, clobber_rvec
,
2779 nclobbers
= clobber_rvec
.length ();
2780 body
= gen_rtx_PARALLEL (VOIDmode
, rtvec_alloc (1 + nclobbers
));
2782 XVECEXP (body
, 0, 0) = asm_op
;
2783 for (i
= 0; i
< nclobbers
; i
++)
2784 XVECEXP (body
, 0, i
+ 1) = gen_rtx_CLOBBER (VOIDmode
, clobber_rvec
[i
]);
2790 /* Return the number of times character C occurs in string S. */
2792 n_occurrences (int c
, const char *s
)
2800 /* A subroutine of expand_asm_operands. Check that all operands have
2801 the same number of alternatives. Return true if so. */
2804 check_operand_nalternatives (const vec
<const char *> &constraints
)
2806 unsigned len
= constraints
.length();
2809 int nalternatives
= n_occurrences (',', constraints
[0]);
2811 if (nalternatives
+ 1 > MAX_RECOG_ALTERNATIVES
)
2813 error ("too many alternatives in %<asm%>");
2817 for (unsigned i
= 1; i
< len
; ++i
)
2818 if (n_occurrences (',', constraints
[i
]) != nalternatives
)
2820 error ("operand constraints for %<asm%> differ "
2821 "in number of alternatives");
2828 /* Check for overlap between registers marked in CLOBBERED_REGS and
2829 anything inappropriate in T. Emit error and return the register
2830 variable definition for error, NULL_TREE for ok. */
2833 tree_conflicts_with_clobbers_p (tree t
, HARD_REG_SET
*clobbered_regs
)
2835 /* Conflicts between asm-declared register variables and the clobber
2836 list are not allowed. */
2837 tree overlap
= tree_overlaps_hard_reg_set (t
, clobbered_regs
);
2841 error ("asm-specifier for variable %qE conflicts with asm clobber list",
2842 DECL_NAME (overlap
));
2844 /* Reset registerness to stop multiple errors emitted for a single
2846 DECL_REGISTER (overlap
) = 0;
2853 /* Check that the given REGNO spanning NREGS is a valid
2854 asm clobber operand. Some HW registers cannot be
2855 saved/restored, hence they should not be clobbered by
2858 asm_clobber_reg_is_valid (int regno
, int nregs
, const char *regname
)
2860 bool is_valid
= true;
2861 HARD_REG_SET regset
;
2863 CLEAR_HARD_REG_SET (regset
);
2865 add_range_to_hard_reg_set (®set
, regno
, nregs
);
2867 /* Clobbering the PIC register is an error. */
2868 if (PIC_OFFSET_TABLE_REGNUM
!= INVALID_REGNUM
2869 && overlaps_hard_reg_set_p (regset
, Pmode
, PIC_OFFSET_TABLE_REGNUM
))
2871 /* ??? Diagnose during gimplification? */
2872 error ("PIC register clobbered by %qs in %<asm%>", regname
);
2875 /* Clobbering the STACK POINTER register is an error. */
2876 if (overlaps_hard_reg_set_p (regset
, Pmode
, STACK_POINTER_REGNUM
))
2878 error ("Stack Pointer register clobbered by %qs in %<asm%>", regname
);
2885 /* Generate RTL for an asm statement with arguments.
2886 STRING is the instruction template.
2887 OUTPUTS is a list of output arguments (lvalues); INPUTS a list of inputs.
2888 Each output or input has an expression in the TREE_VALUE and
2889 a tree list in TREE_PURPOSE which in turn contains a constraint
2890 name in TREE_VALUE (or NULL_TREE) and a constraint string
2892 CLOBBERS is a list of STRING_CST nodes each naming a hard register
2893 that is clobbered by this insn.
2895 LABELS is a list of labels, and if LABELS is non-NULL, FALLTHRU_BB
2896 should be the fallthru basic block of the asm goto.
2898 Not all kinds of lvalue that may appear in OUTPUTS can be stored directly.
2899 Some elements of OUTPUTS may be replaced with trees representing temporary
2900 values. The caller should copy those temporary values to the originally
2903 VOL nonzero means the insn is volatile; don't optimize it. */
2906 expand_asm_stmt (gasm
*stmt
)
2908 class save_input_location
2913 explicit save_input_location(location_t where
)
2915 old
= input_location
;
2916 input_location
= where
;
2919 ~save_input_location()
2921 input_location
= old
;
2925 location_t locus
= gimple_location (stmt
);
2927 if (gimple_asm_input_p (stmt
))
2929 const char *s
= gimple_asm_string (stmt
);
2930 tree string
= build_string (strlen (s
), s
);
2931 expand_asm_loc (string
, gimple_asm_volatile_p (stmt
), locus
);
2935 /* There are some legacy diagnostics in here, and also avoids a
2936 sixth parameger to targetm.md_asm_adjust. */
2937 save_input_location
s_i_l(locus
);
2939 unsigned noutputs
= gimple_asm_noutputs (stmt
);
2940 unsigned ninputs
= gimple_asm_ninputs (stmt
);
2941 unsigned nlabels
= gimple_asm_nlabels (stmt
);
2944 /* ??? Diagnose during gimplification? */
2945 if (ninputs
+ noutputs
+ nlabels
> MAX_RECOG_OPERANDS
)
2947 error ("more than %d operands in %<asm%>", MAX_RECOG_OPERANDS
);
2951 auto_vec
<tree
, MAX_RECOG_OPERANDS
> output_tvec
;
2952 auto_vec
<tree
, MAX_RECOG_OPERANDS
> input_tvec
;
2953 auto_vec
<const char *, MAX_RECOG_OPERANDS
> constraints
;
2955 /* Copy the gimple vectors into new vectors that we can manipulate. */
2957 output_tvec
.safe_grow (noutputs
);
2958 input_tvec
.safe_grow (ninputs
);
2959 constraints
.safe_grow (noutputs
+ ninputs
);
2961 for (i
= 0; i
< noutputs
; ++i
)
2963 tree t
= gimple_asm_output_op (stmt
, i
);
2964 output_tvec
[i
] = TREE_VALUE (t
);
2965 constraints
[i
] = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (t
)));
2967 for (i
= 0; i
< ninputs
; i
++)
2969 tree t
= gimple_asm_input_op (stmt
, i
);
2970 input_tvec
[i
] = TREE_VALUE (t
);
2971 constraints
[i
+ noutputs
]
2972 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (t
)));
2975 /* ??? Diagnose during gimplification? */
2976 if (! check_operand_nalternatives (constraints
))
2979 /* Count the number of meaningful clobbered registers, ignoring what
2980 we would ignore later. */
2981 auto_vec
<rtx
> clobber_rvec
;
2982 HARD_REG_SET clobbered_regs
;
2983 CLEAR_HARD_REG_SET (clobbered_regs
);
2985 if (unsigned n
= gimple_asm_nclobbers (stmt
))
2987 clobber_rvec
.reserve (n
);
2988 for (i
= 0; i
< n
; i
++)
2990 tree t
= gimple_asm_clobber_op (stmt
, i
);
2991 const char *regname
= TREE_STRING_POINTER (TREE_VALUE (t
));
2994 j
= decode_reg_name_and_count (regname
, &nregs
);
2999 /* ??? Diagnose during gimplification? */
3000 error ("unknown register name %qs in %<asm%>", regname
);
3004 rtx x
= gen_rtx_MEM (BLKmode
, gen_rtx_SCRATCH (VOIDmode
));
3005 clobber_rvec
.safe_push (x
);
3009 /* Otherwise we should have -1 == empty string
3010 or -3 == cc, which is not a register. */
3011 gcc_assert (j
== -1 || j
== -3);
3015 for (int reg
= j
; reg
< j
+ nregs
; reg
++)
3017 if (!asm_clobber_reg_is_valid (reg
, nregs
, regname
))
3020 SET_HARD_REG_BIT (clobbered_regs
, reg
);
3021 rtx x
= gen_rtx_REG (reg_raw_mode
[reg
], reg
);
3022 clobber_rvec
.safe_push (x
);
3026 unsigned nclobbers
= clobber_rvec
.length();
3028 /* First pass over inputs and outputs checks validity and sets
3029 mark_addressable if needed. */
3030 /* ??? Diagnose during gimplification? */
3032 for (i
= 0; i
< noutputs
; ++i
)
3034 tree val
= output_tvec
[i
];
3035 tree type
= TREE_TYPE (val
);
3036 const char *constraint
;
3041 /* Try to parse the output constraint. If that fails, there's
3042 no point in going further. */
3043 constraint
= constraints
[i
];
3044 if (!parse_output_constraint (&constraint
, i
, ninputs
, noutputs
,
3045 &allows_mem
, &allows_reg
, &is_inout
))
3048 /* If the output is a hard register, verify it doesn't conflict with
3049 any other operand's possible hard register use. */
3051 && REG_P (DECL_RTL (val
))
3052 && HARD_REGISTER_P (DECL_RTL (val
)))
3054 unsigned j
, output_hregno
= REGNO (DECL_RTL (val
));
3055 bool early_clobber_p
= strchr (constraints
[i
], '&') != NULL
;
3056 unsigned long match
;
3058 /* Verify the other outputs do not use the same hard register. */
3059 for (j
= i
+ 1; j
< noutputs
; ++j
)
3060 if (DECL_P (output_tvec
[j
])
3061 && REG_P (DECL_RTL (output_tvec
[j
]))
3062 && HARD_REGISTER_P (DECL_RTL (output_tvec
[j
]))
3063 && output_hregno
== REGNO (DECL_RTL (output_tvec
[j
])))
3064 error ("invalid hard register usage between output operands");
3066 /* Verify matching constraint operands use the same hard register
3067 and that the non-matching constraint operands do not use the same
3068 hard register if the output is an early clobber operand. */
3069 for (j
= 0; j
< ninputs
; ++j
)
3070 if (DECL_P (input_tvec
[j
])
3071 && REG_P (DECL_RTL (input_tvec
[j
]))
3072 && HARD_REGISTER_P (DECL_RTL (input_tvec
[j
])))
3074 unsigned input_hregno
= REGNO (DECL_RTL (input_tvec
[j
]));
3075 switch (*constraints
[j
+ noutputs
])
3077 case '0': case '1': case '2': case '3': case '4':
3078 case '5': case '6': case '7': case '8': case '9':
3079 match
= strtoul (constraints
[j
+ noutputs
], NULL
, 10);
3086 && output_hregno
!= input_hregno
)
3087 error ("invalid hard register usage between output operand "
3088 "and matching constraint operand");
3089 else if (early_clobber_p
3091 && output_hregno
== input_hregno
)
3092 error ("invalid hard register usage between earlyclobber "
3093 "operand and input operand");
3101 && REG_P (DECL_RTL (val
))
3102 && GET_MODE (DECL_RTL (val
)) != TYPE_MODE (type
))))
3103 mark_addressable (val
);
3106 for (i
= 0; i
< ninputs
; ++i
)
3108 bool allows_reg
, allows_mem
;
3109 const char *constraint
;
3111 constraint
= constraints
[i
+ noutputs
];
3112 if (! parse_input_constraint (&constraint
, i
, ninputs
, noutputs
, 0,
3113 constraints
.address (),
3114 &allows_mem
, &allows_reg
))
3117 if (! allows_reg
&& allows_mem
)
3118 mark_addressable (input_tvec
[i
]);
3121 /* Second pass evaluates arguments. */
3123 /* Make sure stack is consistent for asm goto. */
3125 do_pending_stack_adjust ();
3126 int old_generating_concat_p
= generating_concat_p
;
3128 /* Vector of RTX's of evaluated output operands. */
3129 auto_vec
<rtx
, MAX_RECOG_OPERANDS
> output_rvec
;
3130 auto_vec
<int, MAX_RECOG_OPERANDS
> inout_opnum
;
3131 rtx_insn
*after_rtl_seq
= NULL
, *after_rtl_end
= NULL
;
3133 output_rvec
.safe_grow (noutputs
);
3135 for (i
= 0; i
< noutputs
; ++i
)
3137 tree val
= output_tvec
[i
];
3138 tree type
= TREE_TYPE (val
);
3139 bool is_inout
, allows_reg
, allows_mem
, ok
;
3142 ok
= parse_output_constraint (&constraints
[i
], i
, ninputs
,
3143 noutputs
, &allows_mem
, &allows_reg
,
3147 /* If an output operand is not a decl or indirect ref and our constraint
3148 allows a register, make a temporary to act as an intermediate.
3149 Make the asm insn write into that, then we will copy it to
3150 the real output operand. Likewise for promoted variables. */
3152 generating_concat_p
= 0;
3154 if ((TREE_CODE (val
) == INDIRECT_REF
&& allows_mem
)
3156 && (allows_mem
|| REG_P (DECL_RTL (val
)))
3157 && ! (REG_P (DECL_RTL (val
))
3158 && GET_MODE (DECL_RTL (val
)) != TYPE_MODE (type
)))
3161 || TREE_ADDRESSABLE (type
))
3163 op
= expand_expr (val
, NULL_RTX
, VOIDmode
,
3164 !allows_reg
? EXPAND_MEMORY
: EXPAND_WRITE
);
3166 op
= validize_mem (op
);
3168 if (! allows_reg
&& !MEM_P (op
))
3169 error ("output number %d not directly addressable", i
);
3170 if ((! allows_mem
&& MEM_P (op
) && GET_MODE (op
) != BLKmode
)
3171 || GET_CODE (op
) == CONCAT
)
3174 op
= gen_reg_rtx (GET_MODE (op
));
3176 generating_concat_p
= old_generating_concat_p
;
3179 emit_move_insn (op
, old_op
);
3181 push_to_sequence2 (after_rtl_seq
, after_rtl_end
);
3182 emit_move_insn (old_op
, op
);
3183 after_rtl_seq
= get_insns ();
3184 after_rtl_end
= get_last_insn ();
3190 op
= assign_temp (type
, 0, 1);
3191 op
= validize_mem (op
);
3192 if (!MEM_P (op
) && TREE_CODE (val
) == SSA_NAME
)
3193 set_reg_attrs_for_decl_rtl (SSA_NAME_VAR (val
), op
);
3195 generating_concat_p
= old_generating_concat_p
;
3197 push_to_sequence2 (after_rtl_seq
, after_rtl_end
);
3198 expand_assignment (val
, make_tree (type
, op
), false);
3199 after_rtl_seq
= get_insns ();
3200 after_rtl_end
= get_last_insn ();
3203 output_rvec
[i
] = op
;
3206 inout_opnum
.safe_push (i
);
3209 auto_vec
<rtx
, MAX_RECOG_OPERANDS
> input_rvec
;
3210 auto_vec
<machine_mode
, MAX_RECOG_OPERANDS
> input_mode
;
3212 input_rvec
.safe_grow (ninputs
);
3213 input_mode
.safe_grow (ninputs
);
3215 generating_concat_p
= 0;
3217 for (i
= 0; i
< ninputs
; ++i
)
3219 tree val
= input_tvec
[i
];
3220 tree type
= TREE_TYPE (val
);
3221 bool allows_reg
, allows_mem
, ok
;
3222 const char *constraint
;
3225 constraint
= constraints
[i
+ noutputs
];
3226 ok
= parse_input_constraint (&constraint
, i
, ninputs
, noutputs
, 0,
3227 constraints
.address (),
3228 &allows_mem
, &allows_reg
);
3231 /* EXPAND_INITIALIZER will not generate code for valid initializer
3232 constants, but will still generate code for other types of operand.
3233 This is the behavior we want for constant constraints. */
3234 op
= expand_expr (val
, NULL_RTX
, VOIDmode
,
3235 allows_reg
? EXPAND_NORMAL
3236 : allows_mem
? EXPAND_MEMORY
3237 : EXPAND_INITIALIZER
);
3239 /* Never pass a CONCAT to an ASM. */
3240 if (GET_CODE (op
) == CONCAT
)
3241 op
= force_reg (GET_MODE (op
), op
);
3242 else if (MEM_P (op
))
3243 op
= validize_mem (op
);
3245 if (asm_operand_ok (op
, constraint
, NULL
) <= 0)
3247 if (allows_reg
&& TYPE_MODE (type
) != BLKmode
)
3248 op
= force_reg (TYPE_MODE (type
), op
);
3249 else if (!allows_mem
)
3250 warning (0, "asm operand %d probably doesn%'t match constraints",
3252 else if (MEM_P (op
))
3254 /* We won't recognize either volatile memory or memory
3255 with a queued address as available a memory_operand
3256 at this point. Ignore it: clearly this *is* a memory. */
3262 input_mode
[i
] = TYPE_MODE (type
);
3265 /* For in-out operands, copy output rtx to input rtx. */
3266 unsigned ninout
= inout_opnum
.length();
3267 for (i
= 0; i
< ninout
; i
++)
3269 int j
= inout_opnum
[i
];
3270 rtx o
= output_rvec
[j
];
3272 input_rvec
.safe_push (o
);
3273 input_mode
.safe_push (GET_MODE (o
));
3276 sprintf (buffer
, "%d", j
);
3277 constraints
.safe_push (ggc_strdup (buffer
));
3281 /* Sometimes we wish to automatically clobber registers across an asm.
3282 Case in point is when the i386 backend moved from cc0 to a hard reg --
3283 maintaining source-level compatibility means automatically clobbering
3284 the flags register. */
3285 rtx_insn
*after_md_seq
= NULL
;
3286 if (targetm
.md_asm_adjust
)
3287 after_md_seq
= targetm
.md_asm_adjust (output_rvec
, input_rvec
,
3288 constraints
, clobber_rvec
,
3291 /* Do not allow the hook to change the output and input count,
3292 lest it mess up the operand numbering. */
3293 gcc_assert (output_rvec
.length() == noutputs
);
3294 gcc_assert (input_rvec
.length() == ninputs
);
3295 gcc_assert (constraints
.length() == noutputs
+ ninputs
);
3297 /* But it certainly can adjust the clobbers. */
3298 nclobbers
= clobber_rvec
.length();
3300 /* Third pass checks for easy conflicts. */
3301 /* ??? Why are we doing this on trees instead of rtx. */
3303 bool clobber_conflict_found
= 0;
3304 for (i
= 0; i
< noutputs
; ++i
)
3305 if (tree_conflicts_with_clobbers_p (output_tvec
[i
], &clobbered_regs
))
3306 clobber_conflict_found
= 1;
3307 for (i
= 0; i
< ninputs
- ninout
; ++i
)
3308 if (tree_conflicts_with_clobbers_p (input_tvec
[i
], &clobbered_regs
))
3309 clobber_conflict_found
= 1;
3311 /* Make vectors for the expression-rtx, constraint strings,
3312 and named operands. */
3314 rtvec argvec
= rtvec_alloc (ninputs
);
3315 rtvec constraintvec
= rtvec_alloc (ninputs
);
3316 rtvec labelvec
= rtvec_alloc (nlabels
);
3318 rtx body
= gen_rtx_ASM_OPERANDS ((noutputs
== 0 ? VOIDmode
3319 : GET_MODE (output_rvec
[0])),
3320 ggc_strdup (gimple_asm_string (stmt
)),
3321 "", 0, argvec
, constraintvec
,
3323 MEM_VOLATILE_P (body
) = gimple_asm_volatile_p (stmt
);
3325 for (i
= 0; i
< ninputs
; ++i
)
3327 ASM_OPERANDS_INPUT (body
, i
) = input_rvec
[i
];
3328 ASM_OPERANDS_INPUT_CONSTRAINT_EXP (body
, i
)
3329 = gen_rtx_ASM_INPUT_loc (input_mode
[i
],
3330 constraints
[i
+ noutputs
],
3334 /* Copy labels to the vector. */
3335 rtx_code_label
*fallthru_label
= NULL
;
3338 basic_block fallthru_bb
= NULL
;
3339 edge fallthru
= find_fallthru_edge (gimple_bb (stmt
)->succs
);
3341 fallthru_bb
= fallthru
->dest
;
3343 for (i
= 0; i
< nlabels
; ++i
)
3345 tree label
= TREE_VALUE (gimple_asm_label_op (stmt
, i
));
3347 /* If asm goto has any labels in the fallthru basic block, use
3348 a label that we emit immediately after the asm goto. Expansion
3349 may insert further instructions into the same basic block after
3350 asm goto and if we don't do this, insertion of instructions on
3351 the fallthru edge might misbehave. See PR58670. */
3352 if (fallthru_bb
&& label_to_block (cfun
, label
) == fallthru_bb
)
3354 if (fallthru_label
== NULL_RTX
)
3355 fallthru_label
= gen_label_rtx ();
3359 r
= label_rtx (label
);
3360 ASM_OPERANDS_LABEL (body
, i
) = gen_rtx_LABEL_REF (Pmode
, r
);
3364 /* Now, for each output, construct an rtx
3365 (set OUTPUT (asm_operands INSN OUTPUTCONSTRAINT OUTPUTNUMBER
3366 ARGVEC CONSTRAINTS OPNAMES))
3367 If there is more than one, put them inside a PARALLEL. */
3369 if (nlabels
> 0 && nclobbers
== 0)
3371 gcc_assert (noutputs
== 0);
3372 emit_jump_insn (body
);
3374 else if (noutputs
== 0 && nclobbers
== 0)
3376 /* No output operands: put in a raw ASM_OPERANDS rtx. */
3379 else if (noutputs
== 1 && nclobbers
== 0)
3381 ASM_OPERANDS_OUTPUT_CONSTRAINT (body
) = constraints
[0];
3382 emit_insn (gen_rtx_SET (output_rvec
[0], body
));
3392 body
= gen_rtx_PARALLEL (VOIDmode
, rtvec_alloc (num
+ nclobbers
));
3394 /* For each output operand, store a SET. */
3395 for (i
= 0; i
< noutputs
; ++i
)
3397 rtx src
, o
= output_rvec
[i
];
3400 ASM_OPERANDS_OUTPUT_CONSTRAINT (obody
) = constraints
[0];
3405 src
= gen_rtx_ASM_OPERANDS (GET_MODE (o
),
3406 ASM_OPERANDS_TEMPLATE (obody
),
3407 constraints
[i
], i
, argvec
,
3408 constraintvec
, labelvec
, locus
);
3409 MEM_VOLATILE_P (src
) = gimple_asm_volatile_p (stmt
);
3411 XVECEXP (body
, 0, i
) = gen_rtx_SET (o
, src
);
3414 /* If there are no outputs (but there are some clobbers)
3415 store the bare ASM_OPERANDS into the PARALLEL. */
3417 XVECEXP (body
, 0, i
++) = obody
;
3419 /* Store (clobber REG) for each clobbered register specified. */
3420 for (unsigned j
= 0; j
< nclobbers
; ++j
)
3422 rtx clobbered_reg
= clobber_rvec
[j
];
3424 /* Do sanity check for overlap between clobbers and respectively
3425 input and outputs that hasn't been handled. Such overlap
3426 should have been detected and reported above. */
3427 if (!clobber_conflict_found
&& REG_P (clobbered_reg
))
3429 /* We test the old body (obody) contents to avoid
3430 tripping over the under-construction body. */
3431 for (unsigned k
= 0; k
< noutputs
; ++k
)
3432 if (reg_overlap_mentioned_p (clobbered_reg
, output_rvec
[k
]))
3433 internal_error ("asm clobber conflict with output operand");
3435 for (unsigned k
= 0; k
< ninputs
- ninout
; ++k
)
3436 if (reg_overlap_mentioned_p (clobbered_reg
, input_rvec
[k
]))
3437 internal_error ("asm clobber conflict with input operand");
3440 XVECEXP (body
, 0, i
++) = gen_rtx_CLOBBER (VOIDmode
, clobbered_reg
);
3444 emit_jump_insn (body
);
3449 generating_concat_p
= old_generating_concat_p
;
3452 emit_label (fallthru_label
);
3455 emit_insn (after_md_seq
);
3457 emit_insn (after_rtl_seq
);
3460 crtl
->has_asm_statement
= 1;
3463 /* Emit code to jump to the address
3464 specified by the pointer expression EXP. */
3467 expand_computed_goto (tree exp
)
3469 rtx x
= expand_normal (exp
);
3471 do_pending_stack_adjust ();
3472 emit_indirect_jump (x
);
3475 /* Generate RTL code for a `goto' statement with target label LABEL.
3476 LABEL should be a LABEL_DECL tree node that was or will later be
3477 defined with `expand_label'. */
3480 expand_goto (tree label
)
3484 /* Check for a nonlocal goto to a containing function. Should have
3485 gotten translated to __builtin_nonlocal_goto. */
3486 tree context
= decl_function_context (label
);
3487 gcc_assert (!context
|| context
== current_function_decl
);
3490 emit_jump (jump_target_rtx (label
));
3493 /* Output a return with no value. */
3496 expand_null_return_1 (void)
3498 clear_pending_stack_adjust ();
3499 do_pending_stack_adjust ();
3500 emit_jump (return_label
);
3503 /* Generate RTL to return from the current function, with no value.
3504 (That is, we do not do anything about returning any value.) */
3507 expand_null_return (void)
3509 /* If this function was declared to return a value, but we
3510 didn't, clobber the return registers so that they are not
3511 propagated live to the rest of the function. */
3512 clobber_return_register ();
3514 expand_null_return_1 ();
3517 /* Generate RTL to return from the current function, with value VAL. */
3520 expand_value_return (rtx val
)
3522 /* Copy the value to the return location unless it's already there. */
3524 tree decl
= DECL_RESULT (current_function_decl
);
3525 rtx return_reg
= DECL_RTL (decl
);
3526 if (return_reg
!= val
)
3528 tree funtype
= TREE_TYPE (current_function_decl
);
3529 tree type
= TREE_TYPE (decl
);
3530 int unsignedp
= TYPE_UNSIGNED (type
);
3531 machine_mode old_mode
= DECL_MODE (decl
);
3533 if (DECL_BY_REFERENCE (decl
))
3534 mode
= promote_function_mode (type
, old_mode
, &unsignedp
, funtype
, 2);
3536 mode
= promote_function_mode (type
, old_mode
, &unsignedp
, funtype
, 1);
3538 if (mode
!= old_mode
)
3539 val
= convert_modes (mode
, old_mode
, val
, unsignedp
);
3541 if (GET_CODE (return_reg
) == PARALLEL
)
3542 emit_group_load (return_reg
, val
, type
, int_size_in_bytes (type
));
3544 emit_move_insn (return_reg
, val
);
3547 expand_null_return_1 ();
3550 /* Generate RTL to evaluate the expression RETVAL and return it
3551 from the current function. */
3554 expand_return (tree retval
)
3560 /* If function wants no value, give it none. */
3561 if (TREE_CODE (TREE_TYPE (TREE_TYPE (current_function_decl
))) == VOID_TYPE
)
3563 expand_normal (retval
);
3564 expand_null_return ();
3568 if (retval
== error_mark_node
)
3570 /* Treat this like a return of no value from a function that
3572 expand_null_return ();
3575 else if ((TREE_CODE (retval
) == MODIFY_EXPR
3576 || TREE_CODE (retval
) == INIT_EXPR
)
3577 && TREE_CODE (TREE_OPERAND (retval
, 0)) == RESULT_DECL
)
3578 retval_rhs
= TREE_OPERAND (retval
, 1);
3580 retval_rhs
= retval
;
3582 result_rtl
= DECL_RTL (DECL_RESULT (current_function_decl
));
3584 /* If we are returning the RESULT_DECL, then the value has already
3585 been stored into it, so we don't have to do anything special. */
3586 if (TREE_CODE (retval_rhs
) == RESULT_DECL
)
3587 expand_value_return (result_rtl
);
3589 /* If the result is an aggregate that is being returned in one (or more)
3590 registers, load the registers here. */
3592 else if (retval_rhs
!= 0
3593 && TYPE_MODE (TREE_TYPE (retval_rhs
)) == BLKmode
3594 && REG_P (result_rtl
))
3596 val
= copy_blkmode_to_reg (GET_MODE (result_rtl
), retval_rhs
);
3599 /* Use the mode of the result value on the return register. */
3600 PUT_MODE (result_rtl
, GET_MODE (val
));
3601 expand_value_return (val
);
3604 expand_null_return ();
3606 else if (retval_rhs
!= 0
3607 && !VOID_TYPE_P (TREE_TYPE (retval_rhs
))
3608 && (REG_P (result_rtl
)
3609 || (GET_CODE (result_rtl
) == PARALLEL
)))
3611 /* Compute the return value into a temporary (usually a pseudo reg). */
3613 = assign_temp (TREE_TYPE (DECL_RESULT (current_function_decl
)), 0, 1);
3614 val
= expand_expr (retval_rhs
, val
, GET_MODE (val
), EXPAND_NORMAL
);
3615 val
= force_not_mem (val
);
3616 expand_value_return (val
);
3620 /* No hard reg used; calculate value into hard return reg. */
3621 expand_expr (retval
, const0_rtx
, VOIDmode
, EXPAND_NORMAL
);
3622 expand_value_return (result_rtl
);
3626 /* Expand a clobber of LHS. If LHS is stored it in a multi-part
3627 register, tell the rtl optimizers that its value is no longer
3631 expand_clobber (tree lhs
)
3635 rtx decl_rtl
= DECL_RTL_IF_SET (lhs
);
3636 if (decl_rtl
&& REG_P (decl_rtl
))
3638 machine_mode decl_mode
= GET_MODE (decl_rtl
);
3639 if (maybe_gt (GET_MODE_SIZE (decl_mode
),
3640 REGMODE_NATURAL_SIZE (decl_mode
)))
3641 emit_clobber (decl_rtl
);
3646 /* A subroutine of expand_gimple_stmt, expanding one gimple statement
3647 STMT that doesn't require special handling for outgoing edges. That
3648 is no tailcalls and no GIMPLE_COND. */
3651 expand_gimple_stmt_1 (gimple
*stmt
)
3655 set_curr_insn_location (gimple_location (stmt
));
3657 switch (gimple_code (stmt
))
3660 op0
= gimple_goto_dest (stmt
);
3661 if (TREE_CODE (op0
) == LABEL_DECL
)
3664 expand_computed_goto (op0
);
3667 expand_label (gimple_label_label (as_a
<glabel
*> (stmt
)));
3670 case GIMPLE_PREDICT
:
3674 gswitch
*swtch
= as_a
<gswitch
*> (stmt
);
3675 if (gimple_switch_num_labels (swtch
) == 1)
3676 expand_goto (CASE_LABEL (gimple_switch_default_label (swtch
)));
3678 expand_case (swtch
);
3682 expand_asm_stmt (as_a
<gasm
*> (stmt
));
3685 expand_call_stmt (as_a
<gcall
*> (stmt
));
3690 op0
= gimple_return_retval (as_a
<greturn
*> (stmt
));
3692 if (op0
&& op0
!= error_mark_node
)
3694 tree result
= DECL_RESULT (current_function_decl
);
3696 /* If we are not returning the current function's RESULT_DECL,
3697 build an assignment to it. */
3700 /* I believe that a function's RESULT_DECL is unique. */
3701 gcc_assert (TREE_CODE (op0
) != RESULT_DECL
);
3703 /* ??? We'd like to use simply expand_assignment here,
3704 but this fails if the value is of BLKmode but the return
3705 decl is a register. expand_return has special handling
3706 for this combination, which eventually should move
3707 to common code. See comments there. Until then, let's
3708 build a modify expression :-/ */
3709 op0
= build2 (MODIFY_EXPR
, TREE_TYPE (result
),
3715 expand_null_return ();
3717 expand_return (op0
);
3723 gassign
*assign_stmt
= as_a
<gassign
*> (stmt
);
3724 tree lhs
= gimple_assign_lhs (assign_stmt
);
3726 /* Tree expand used to fiddle with |= and &= of two bitfield
3727 COMPONENT_REFs here. This can't happen with gimple, the LHS
3728 of binary assigns must be a gimple reg. */
3730 if (TREE_CODE (lhs
) != SSA_NAME
3731 || get_gimple_rhs_class (gimple_expr_code (stmt
))
3732 == GIMPLE_SINGLE_RHS
)
3734 tree rhs
= gimple_assign_rhs1 (assign_stmt
);
3735 gcc_assert (get_gimple_rhs_class (gimple_expr_code (stmt
))
3736 == GIMPLE_SINGLE_RHS
);
3737 if (gimple_has_location (stmt
) && CAN_HAVE_LOCATION_P (rhs
)
3738 /* Do not put locations on possibly shared trees. */
3739 && !is_gimple_min_invariant (rhs
))
3740 SET_EXPR_LOCATION (rhs
, gimple_location (stmt
));
3741 if (TREE_CLOBBER_P (rhs
))
3742 /* This is a clobber to mark the going out of scope for
3744 expand_clobber (lhs
);
3746 expand_assignment (lhs
, rhs
,
3747 gimple_assign_nontemporal_move_p (
3753 bool nontemporal
= gimple_assign_nontemporal_move_p (assign_stmt
);
3754 struct separate_ops ops
;
3755 bool promoted
= false;
3757 target
= expand_expr (lhs
, NULL_RTX
, VOIDmode
, EXPAND_WRITE
);
3758 if (GET_CODE (target
) == SUBREG
&& SUBREG_PROMOTED_VAR_P (target
))
3761 ops
.code
= gimple_assign_rhs_code (assign_stmt
);
3762 ops
.type
= TREE_TYPE (lhs
);
3763 switch (get_gimple_rhs_class (ops
.code
))
3765 case GIMPLE_TERNARY_RHS
:
3766 ops
.op2
= gimple_assign_rhs3 (assign_stmt
);
3768 case GIMPLE_BINARY_RHS
:
3769 ops
.op1
= gimple_assign_rhs2 (assign_stmt
);
3771 case GIMPLE_UNARY_RHS
:
3772 ops
.op0
= gimple_assign_rhs1 (assign_stmt
);
3777 ops
.location
= gimple_location (stmt
);
3779 /* If we want to use a nontemporal store, force the value to
3780 register first. If we store into a promoted register,
3781 don't directly expand to target. */
3782 temp
= nontemporal
|| promoted
? NULL_RTX
: target
;
3783 temp
= expand_expr_real_2 (&ops
, temp
, GET_MODE (target
),
3790 int unsignedp
= SUBREG_PROMOTED_SIGN (target
);
3791 /* If TEMP is a VOIDmode constant, use convert_modes to make
3792 sure that we properly convert it. */
3793 if (CONSTANT_P (temp
) && GET_MODE (temp
) == VOIDmode
)
3795 temp
= convert_modes (GET_MODE (target
),
3796 TYPE_MODE (ops
.type
),
3798 temp
= convert_modes (GET_MODE (SUBREG_REG (target
)),
3799 GET_MODE (target
), temp
, unsignedp
);
3802 convert_move (SUBREG_REG (target
), temp
, unsignedp
);
3804 else if (nontemporal
&& emit_storent_insn (target
, temp
))
3808 temp
= force_operand (temp
, target
);
3810 emit_move_insn (target
, temp
);
3821 /* Expand one gimple statement STMT and return the last RTL instruction
3822 before any of the newly generated ones.
3824 In addition to generating the necessary RTL instructions this also
3825 sets REG_EH_REGION notes if necessary and sets the current source
3826 location for diagnostics. */
3829 expand_gimple_stmt (gimple
*stmt
)
3831 location_t saved_location
= input_location
;
3832 rtx_insn
*last
= get_last_insn ();
3837 /* We need to save and restore the current source location so that errors
3838 discovered during expansion are emitted with the right location. But
3839 it would be better if the diagnostic routines used the source location
3840 embedded in the tree nodes rather than globals. */
3841 if (gimple_has_location (stmt
))
3842 input_location
= gimple_location (stmt
);
3844 expand_gimple_stmt_1 (stmt
);
3846 /* Free any temporaries used to evaluate this statement. */
3849 input_location
= saved_location
;
3851 /* Mark all insns that may trap. */
3852 lp_nr
= lookup_stmt_eh_lp (stmt
);
3856 for (insn
= next_real_insn (last
); insn
;
3857 insn
= next_real_insn (insn
))
3859 if (! find_reg_note (insn
, REG_EH_REGION
, NULL_RTX
)
3860 /* If we want exceptions for non-call insns, any
3861 may_trap_p instruction may throw. */
3862 && GET_CODE (PATTERN (insn
)) != CLOBBER
3863 && GET_CODE (PATTERN (insn
)) != CLOBBER_HIGH
3864 && GET_CODE (PATTERN (insn
)) != USE
3865 && insn_could_throw_p (insn
))
3866 make_reg_eh_region_note (insn
, 0, lp_nr
);
3873 /* A subroutine of expand_gimple_basic_block. Expand one GIMPLE_CALL
3874 that has CALL_EXPR_TAILCALL set. Returns non-null if we actually
3875 generated a tail call (something that might be denied by the ABI
3876 rules governing the call; see calls.c).
3878 Sets CAN_FALLTHRU if we generated a *conditional* tail call, and
3879 can still reach the rest of BB. The case here is __builtin_sqrt,
3880 where the NaN result goes through the external function (with a
3881 tailcall) and the normal result happens via a sqrt instruction. */
3884 expand_gimple_tailcall (basic_block bb
, gcall
*stmt
, bool *can_fallthru
)
3886 rtx_insn
*last2
, *last
;
3889 profile_probability probability
;
3891 last2
= last
= expand_gimple_stmt (stmt
);
3893 for (last
= NEXT_INSN (last
); last
; last
= NEXT_INSN (last
))
3894 if (CALL_P (last
) && SIBLING_CALL_P (last
))
3897 maybe_dump_rtl_for_gimple_stmt (stmt
, last2
);
3899 *can_fallthru
= true;
3903 /* ??? Wouldn't it be better to just reset any pending stack adjust?
3904 Any instructions emitted here are about to be deleted. */
3905 do_pending_stack_adjust ();
3907 /* Remove any non-eh, non-abnormal edges that don't go to exit. */
3908 /* ??? I.e. the fallthrough edge. HOWEVER! If there were to be
3909 EH or abnormal edges, we shouldn't have created a tail call in
3910 the first place. So it seems to me we should just be removing
3911 all edges here, or redirecting the existing fallthru edge to
3914 probability
= profile_probability::never ();
3916 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
3918 if (!(e
->flags
& (EDGE_ABNORMAL
| EDGE_EH
)))
3920 if (e
->dest
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
3921 e
->dest
->count
-= e
->count ();
3922 probability
+= e
->probability
;
3929 /* This is somewhat ugly: the call_expr expander often emits instructions
3930 after the sibcall (to perform the function return). These confuse the
3931 find_many_sub_basic_blocks code, so we need to get rid of these. */
3932 last
= NEXT_INSN (last
);
3933 gcc_assert (BARRIER_P (last
));
3935 *can_fallthru
= false;
3936 while (NEXT_INSN (last
))
3938 /* For instance an sqrt builtin expander expands if with
3939 sibcall in the then and label for `else`. */
3940 if (LABEL_P (NEXT_INSN (last
)))
3942 *can_fallthru
= true;
3945 delete_insn (NEXT_INSN (last
));
3948 e
= make_edge (bb
, EXIT_BLOCK_PTR_FOR_FN (cfun
), EDGE_ABNORMAL
3950 e
->probability
= probability
;
3952 update_bb_for_insn (bb
);
3954 if (NEXT_INSN (last
))
3956 bb
= create_basic_block (NEXT_INSN (last
), get_last_insn (), bb
);
3959 if (BARRIER_P (last
))
3960 BB_END (bb
) = PREV_INSN (last
);
3963 maybe_dump_rtl_for_gimple_stmt (stmt
, last2
);
3968 /* Return the difference between the floor and the truncated result of
3969 a signed division by OP1 with remainder MOD. */
3971 floor_sdiv_adjust (machine_mode mode
, rtx mod
, rtx op1
)
3973 /* (mod != 0 ? (op1 / mod < 0 ? -1 : 0) : 0) */
3974 return gen_rtx_IF_THEN_ELSE
3975 (mode
, gen_rtx_NE (BImode
, mod
, const0_rtx
),
3976 gen_rtx_IF_THEN_ELSE
3977 (mode
, gen_rtx_LT (BImode
,
3978 gen_rtx_DIV (mode
, op1
, mod
),
3980 constm1_rtx
, const0_rtx
),
3984 /* Return the difference between the ceil and the truncated result of
3985 a signed division by OP1 with remainder MOD. */
3987 ceil_sdiv_adjust (machine_mode mode
, rtx mod
, rtx op1
)
3989 /* (mod != 0 ? (op1 / mod > 0 ? 1 : 0) : 0) */
3990 return gen_rtx_IF_THEN_ELSE
3991 (mode
, gen_rtx_NE (BImode
, mod
, const0_rtx
),
3992 gen_rtx_IF_THEN_ELSE
3993 (mode
, gen_rtx_GT (BImode
,
3994 gen_rtx_DIV (mode
, op1
, mod
),
3996 const1_rtx
, const0_rtx
),
4000 /* Return the difference between the ceil and the truncated result of
4001 an unsigned division by OP1 with remainder MOD. */
4003 ceil_udiv_adjust (machine_mode mode
, rtx mod
, rtx op1 ATTRIBUTE_UNUSED
)
4005 /* (mod != 0 ? 1 : 0) */
4006 return gen_rtx_IF_THEN_ELSE
4007 (mode
, gen_rtx_NE (BImode
, mod
, const0_rtx
),
4008 const1_rtx
, const0_rtx
);
4011 /* Return the difference between the rounded and the truncated result
4012 of a signed division by OP1 with remainder MOD. Halfway cases are
4013 rounded away from zero, rather than to the nearest even number. */
4015 round_sdiv_adjust (machine_mode mode
, rtx mod
, rtx op1
)
4017 /* (abs (mod) >= abs (op1) - abs (mod)
4018 ? (op1 / mod > 0 ? 1 : -1)
4020 return gen_rtx_IF_THEN_ELSE
4021 (mode
, gen_rtx_GE (BImode
, gen_rtx_ABS (mode
, mod
),
4022 gen_rtx_MINUS (mode
,
4023 gen_rtx_ABS (mode
, op1
),
4024 gen_rtx_ABS (mode
, mod
))),
4025 gen_rtx_IF_THEN_ELSE
4026 (mode
, gen_rtx_GT (BImode
,
4027 gen_rtx_DIV (mode
, op1
, mod
),
4029 const1_rtx
, constm1_rtx
),
4033 /* Return the difference between the rounded and the truncated result
4034 of a unsigned division by OP1 with remainder MOD. Halfway cases
4035 are rounded away from zero, rather than to the nearest even
4038 round_udiv_adjust (machine_mode mode
, rtx mod
, rtx op1
)
4040 /* (mod >= op1 - mod ? 1 : 0) */
4041 return gen_rtx_IF_THEN_ELSE
4042 (mode
, gen_rtx_GE (BImode
, mod
,
4043 gen_rtx_MINUS (mode
, op1
, mod
)),
4044 const1_rtx
, const0_rtx
);
4047 /* Convert X to MODE, that must be Pmode or ptr_mode, without emitting
4051 convert_debug_memory_address (scalar_int_mode mode
, rtx x
,
4054 #ifndef POINTERS_EXTEND_UNSIGNED
4055 gcc_assert (mode
== Pmode
4056 || mode
== targetm
.addr_space
.address_mode (as
));
4057 gcc_assert (GET_MODE (x
) == mode
|| GET_MODE (x
) == VOIDmode
);
4061 gcc_assert (targetm
.addr_space
.valid_pointer_mode (mode
, as
));
4063 if (GET_MODE (x
) == mode
|| GET_MODE (x
) == VOIDmode
)
4066 /* X must have some form of address mode already. */
4067 scalar_int_mode xmode
= as_a
<scalar_int_mode
> (GET_MODE (x
));
4068 if (GET_MODE_PRECISION (mode
) < GET_MODE_PRECISION (xmode
))
4069 x
= lowpart_subreg (mode
, x
, xmode
);
4070 else if (POINTERS_EXTEND_UNSIGNED
> 0)
4071 x
= gen_rtx_ZERO_EXTEND (mode
, x
);
4072 else if (!POINTERS_EXTEND_UNSIGNED
)
4073 x
= gen_rtx_SIGN_EXTEND (mode
, x
);
4076 switch (GET_CODE (x
))
4079 if ((SUBREG_PROMOTED_VAR_P (x
)
4080 || (REG_P (SUBREG_REG (x
)) && REG_POINTER (SUBREG_REG (x
)))
4081 || (GET_CODE (SUBREG_REG (x
)) == PLUS
4082 && REG_P (XEXP (SUBREG_REG (x
), 0))
4083 && REG_POINTER (XEXP (SUBREG_REG (x
), 0))
4084 && CONST_INT_P (XEXP (SUBREG_REG (x
), 1))))
4085 && GET_MODE (SUBREG_REG (x
)) == mode
)
4086 return SUBREG_REG (x
);
4089 temp
= gen_rtx_LABEL_REF (mode
, label_ref_label (x
));
4090 LABEL_REF_NONLOCAL_P (temp
) = LABEL_REF_NONLOCAL_P (x
);
4093 temp
= shallow_copy_rtx (x
);
4094 PUT_MODE (temp
, mode
);
4097 temp
= convert_debug_memory_address (mode
, XEXP (x
, 0), as
);
4099 temp
= gen_rtx_CONST (mode
, temp
);
4103 if (CONST_INT_P (XEXP (x
, 1)))
4105 temp
= convert_debug_memory_address (mode
, XEXP (x
, 0), as
);
4107 return gen_rtx_fmt_ee (GET_CODE (x
), mode
, temp
, XEXP (x
, 1));
4113 /* Don't know how to express ptr_extend as operation in debug info. */
4116 #endif /* POINTERS_EXTEND_UNSIGNED */
4121 /* Map from SSA_NAMEs to corresponding DEBUG_EXPR_DECLs created
4122 by avoid_deep_ter_for_debug. */
4124 static hash_map
<tree
, tree
> *deep_ter_debug_map
;
4126 /* Split too deep TER chains for debug stmts using debug temporaries. */
4129 avoid_deep_ter_for_debug (gimple
*stmt
, int depth
)
4131 use_operand_p use_p
;
4133 FOR_EACH_SSA_USE_OPERAND (use_p
, stmt
, iter
, SSA_OP_USE
)
4135 tree use
= USE_FROM_PTR (use_p
);
4136 if (TREE_CODE (use
) != SSA_NAME
|| SSA_NAME_IS_DEFAULT_DEF (use
))
4138 gimple
*g
= get_gimple_for_ssa_name (use
);
4141 if (depth
> 6 && !stmt_ends_bb_p (g
))
4143 if (deep_ter_debug_map
== NULL
)
4144 deep_ter_debug_map
= new hash_map
<tree
, tree
>;
4146 tree
&vexpr
= deep_ter_debug_map
->get_or_insert (use
);
4149 vexpr
= make_node (DEBUG_EXPR_DECL
);
4150 gimple
*def_temp
= gimple_build_debug_bind (vexpr
, use
, g
);
4151 DECL_ARTIFICIAL (vexpr
) = 1;
4152 TREE_TYPE (vexpr
) = TREE_TYPE (use
);
4153 SET_DECL_MODE (vexpr
, TYPE_MODE (TREE_TYPE (use
)));
4154 gimple_stmt_iterator gsi
= gsi_for_stmt (g
);
4155 gsi_insert_after (&gsi
, def_temp
, GSI_NEW_STMT
);
4156 avoid_deep_ter_for_debug (def_temp
, 0);
4159 avoid_deep_ter_for_debug (g
, depth
+ 1);
4163 /* Return an RTX equivalent to the value of the parameter DECL. */
4166 expand_debug_parm_decl (tree decl
)
4168 rtx incoming
= DECL_INCOMING_RTL (decl
);
4171 && GET_MODE (incoming
) != BLKmode
4172 && ((REG_P (incoming
) && HARD_REGISTER_P (incoming
))
4173 || (MEM_P (incoming
)
4174 && REG_P (XEXP (incoming
, 0))
4175 && HARD_REGISTER_P (XEXP (incoming
, 0)))))
4177 rtx rtl
= gen_rtx_ENTRY_VALUE (GET_MODE (incoming
));
4179 #ifdef HAVE_window_save
4180 /* DECL_INCOMING_RTL uses the INCOMING_REGNO of parameter registers.
4181 If the target machine has an explicit window save instruction, the
4182 actual entry value is the corresponding OUTGOING_REGNO instead. */
4183 if (REG_P (incoming
)
4184 && OUTGOING_REGNO (REGNO (incoming
)) != REGNO (incoming
))
4186 = gen_rtx_REG_offset (incoming
, GET_MODE (incoming
),
4187 OUTGOING_REGNO (REGNO (incoming
)), 0);
4188 else if (MEM_P (incoming
))
4190 rtx reg
= XEXP (incoming
, 0);
4191 if (OUTGOING_REGNO (REGNO (reg
)) != REGNO (reg
))
4193 reg
= gen_raw_REG (GET_MODE (reg
), OUTGOING_REGNO (REGNO (reg
)));
4194 incoming
= replace_equiv_address_nv (incoming
, reg
);
4197 incoming
= copy_rtx (incoming
);
4201 ENTRY_VALUE_EXP (rtl
) = incoming
;
4206 && GET_MODE (incoming
) != BLKmode
4207 && !TREE_ADDRESSABLE (decl
)
4209 && (XEXP (incoming
, 0) == virtual_incoming_args_rtx
4210 || (GET_CODE (XEXP (incoming
, 0)) == PLUS
4211 && XEXP (XEXP (incoming
, 0), 0) == virtual_incoming_args_rtx
4212 && CONST_INT_P (XEXP (XEXP (incoming
, 0), 1)))))
4213 return copy_rtx (incoming
);
4218 /* Return an RTX equivalent to the value of the tree expression EXP. */
4221 expand_debug_expr (tree exp
)
4223 rtx op0
= NULL_RTX
, op1
= NULL_RTX
, op2
= NULL_RTX
;
4224 machine_mode mode
= TYPE_MODE (TREE_TYPE (exp
));
4225 machine_mode inner_mode
= VOIDmode
;
4226 int unsignedp
= TYPE_UNSIGNED (TREE_TYPE (exp
));
4228 scalar_int_mode op0_mode
, op1_mode
, addr_mode
;
4230 switch (TREE_CODE_CLASS (TREE_CODE (exp
)))
4232 case tcc_expression
:
4233 switch (TREE_CODE (exp
))
4238 case WIDEN_MULT_PLUS_EXPR
:
4239 case WIDEN_MULT_MINUS_EXPR
:
4242 case TRUTH_ANDIF_EXPR
:
4243 case TRUTH_ORIF_EXPR
:
4244 case TRUTH_AND_EXPR
:
4246 case TRUTH_XOR_EXPR
:
4249 case TRUTH_NOT_EXPR
:
4258 op2
= expand_debug_expr (TREE_OPERAND (exp
, 2));
4265 if (mode
== BLKmode
)
4267 op1
= expand_debug_expr (TREE_OPERAND (exp
, 1));
4270 switch (TREE_CODE (exp
))
4276 case WIDEN_LSHIFT_EXPR
:
4277 /* Ensure second operand isn't wider than the first one. */
4278 inner_mode
= TYPE_MODE (TREE_TYPE (TREE_OPERAND (exp
, 1)));
4279 if (is_a
<scalar_int_mode
> (inner_mode
, &op1_mode
)
4280 && (GET_MODE_UNIT_PRECISION (mode
)
4281 < GET_MODE_PRECISION (op1_mode
)))
4282 op1
= lowpart_subreg (GET_MODE_INNER (mode
), op1
, op1_mode
);
4291 if (mode
== BLKmode
)
4293 inner_mode
= TYPE_MODE (TREE_TYPE (TREE_OPERAND (exp
, 0)));
4294 op0
= expand_debug_expr (TREE_OPERAND (exp
, 0));
4299 case tcc_comparison
:
4300 unsignedp
= TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0)));
4308 case tcc_exceptional
:
4309 case tcc_declaration
:
4315 switch (TREE_CODE (exp
))
4318 if (!lookup_constant_def (exp
))
4320 if (strlen (TREE_STRING_POINTER (exp
)) + 1
4321 != (size_t) TREE_STRING_LENGTH (exp
))
4323 op0
= gen_rtx_CONST_STRING (Pmode
, TREE_STRING_POINTER (exp
));
4324 op0
= gen_rtx_MEM (BLKmode
, op0
);
4325 set_mem_attributes (op0
, exp
, 0);
4333 op0
= expand_expr (exp
, NULL_RTX
, mode
, EXPAND_INITIALIZER
);
4337 return immed_wide_int_const (poly_int_cst_value (exp
), mode
);
4340 gcc_assert (COMPLEX_MODE_P (mode
));
4341 op0
= expand_debug_expr (TREE_REALPART (exp
));
4342 op1
= expand_debug_expr (TREE_IMAGPART (exp
));
4343 return gen_rtx_CONCAT (mode
, op0
, op1
);
4345 case DEBUG_EXPR_DECL
:
4346 op0
= DECL_RTL_IF_SET (exp
);
4351 op0
= gen_rtx_DEBUG_EXPR (mode
);
4352 DEBUG_EXPR_TREE_DECL (op0
) = exp
;
4353 SET_DECL_RTL (exp
, op0
);
4363 op0
= DECL_RTL_IF_SET (exp
);
4365 /* This decl was probably optimized away. */
4369 || DECL_EXTERNAL (exp
)
4370 || !TREE_STATIC (exp
)
4372 || DECL_HARD_REGISTER (exp
)
4373 || DECL_IN_CONSTANT_POOL (exp
)
4374 || mode
== VOIDmode
)
4377 op0
= make_decl_rtl_for_debug (exp
);
4379 || GET_CODE (XEXP (op0
, 0)) != SYMBOL_REF
4380 || SYMBOL_REF_DECL (XEXP (op0
, 0)) != exp
)
4384 op0
= copy_rtx (op0
);
4386 if (GET_MODE (op0
) == BLKmode
4387 /* If op0 is not BLKmode, but mode is, adjust_mode
4388 below would ICE. While it is likely a FE bug,
4389 try to be robust here. See PR43166. */
4391 || (mode
== VOIDmode
&& GET_MODE (op0
) != VOIDmode
))
4393 gcc_assert (MEM_P (op0
));
4394 op0
= adjust_address_nv (op0
, mode
, 0);
4404 inner_mode
= GET_MODE (op0
);
4406 if (mode
== inner_mode
)
4409 if (inner_mode
== VOIDmode
)
4411 if (TREE_CODE (exp
) == SSA_NAME
)
4412 inner_mode
= TYPE_MODE (TREE_TYPE (exp
));
4414 inner_mode
= TYPE_MODE (TREE_TYPE (TREE_OPERAND (exp
, 0)));
4415 if (mode
== inner_mode
)
4419 if (FLOAT_MODE_P (mode
) && FLOAT_MODE_P (inner_mode
))
4421 if (GET_MODE_UNIT_BITSIZE (mode
)
4422 == GET_MODE_UNIT_BITSIZE (inner_mode
))
4423 op0
= simplify_gen_subreg (mode
, op0
, inner_mode
, 0);
4424 else if (GET_MODE_UNIT_BITSIZE (mode
)
4425 < GET_MODE_UNIT_BITSIZE (inner_mode
))
4426 op0
= simplify_gen_unary (FLOAT_TRUNCATE
, mode
, op0
, inner_mode
);
4428 op0
= simplify_gen_unary (FLOAT_EXTEND
, mode
, op0
, inner_mode
);
4430 else if (FLOAT_MODE_P (mode
))
4432 gcc_assert (TREE_CODE (exp
) != SSA_NAME
);
4433 if (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0))))
4434 op0
= simplify_gen_unary (UNSIGNED_FLOAT
, mode
, op0
, inner_mode
);
4436 op0
= simplify_gen_unary (FLOAT
, mode
, op0
, inner_mode
);
4438 else if (FLOAT_MODE_P (inner_mode
))
4441 op0
= simplify_gen_unary (UNSIGNED_FIX
, mode
, op0
, inner_mode
);
4443 op0
= simplify_gen_unary (FIX
, mode
, op0
, inner_mode
);
4445 else if (GET_MODE_UNIT_PRECISION (mode
)
4446 == GET_MODE_UNIT_PRECISION (inner_mode
))
4447 op0
= lowpart_subreg (mode
, op0
, inner_mode
);
4448 else if (GET_MODE_UNIT_PRECISION (mode
)
4449 < GET_MODE_UNIT_PRECISION (inner_mode
))
4450 op0
= simplify_gen_unary (TRUNCATE
, mode
, op0
, inner_mode
);
4451 else if (UNARY_CLASS_P (exp
)
4452 ? TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0)))
4454 op0
= simplify_gen_unary (ZERO_EXTEND
, mode
, op0
, inner_mode
);
4456 op0
= simplify_gen_unary (SIGN_EXTEND
, mode
, op0
, inner_mode
);
4462 if (!is_gimple_mem_ref_addr (TREE_OPERAND (exp
, 0)))
4464 tree newexp
= fold_binary (MEM_REF
, TREE_TYPE (exp
),
4465 TREE_OPERAND (exp
, 0),
4466 TREE_OPERAND (exp
, 1));
4468 return expand_debug_expr (newexp
);
4472 inner_mode
= TYPE_MODE (TREE_TYPE (TREE_OPERAND (exp
, 0)));
4473 op0
= expand_debug_expr (TREE_OPERAND (exp
, 0));
4477 if (TREE_CODE (exp
) == MEM_REF
)
4479 if (GET_CODE (op0
) == DEBUG_IMPLICIT_PTR
4480 || (GET_CODE (op0
) == PLUS
4481 && GET_CODE (XEXP (op0
, 0)) == DEBUG_IMPLICIT_PTR
))
4482 /* (mem (debug_implicit_ptr)) might confuse aliasing.
4483 Instead just use get_inner_reference. */
4486 op1
= expand_debug_expr (TREE_OPERAND (exp
, 1));
4488 if (!op1
|| !poly_int_rtx_p (op1
, &offset
))
4491 op0
= plus_constant (inner_mode
, op0
, offset
);
4494 as
= TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (TREE_OPERAND (exp
, 0))));
4496 op0
= convert_debug_memory_address (targetm
.addr_space
.address_mode (as
),
4498 if (op0
== NULL_RTX
)
4501 op0
= gen_rtx_MEM (mode
, op0
);
4502 set_mem_attributes (op0
, exp
, 0);
4503 if (TREE_CODE (exp
) == MEM_REF
4504 && !is_gimple_mem_ref_addr (TREE_OPERAND (exp
, 0)))
4505 set_mem_expr (op0
, NULL_TREE
);
4506 set_mem_addr_space (op0
, as
);
4510 case TARGET_MEM_REF
:
4511 if (TREE_CODE (TMR_BASE (exp
)) == ADDR_EXPR
4512 && !DECL_RTL_SET_P (TREE_OPERAND (TMR_BASE (exp
), 0)))
4515 op0
= expand_debug_expr
4516 (tree_mem_ref_addr (build_pointer_type (TREE_TYPE (exp
)), exp
));
4520 as
= TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (TREE_OPERAND (exp
, 0))));
4521 op0
= convert_debug_memory_address (targetm
.addr_space
.address_mode (as
),
4523 if (op0
== NULL_RTX
)
4526 op0
= gen_rtx_MEM (mode
, op0
);
4528 set_mem_attributes (op0
, exp
, 0);
4529 set_mem_addr_space (op0
, as
);
4535 case ARRAY_RANGE_REF
:
4540 case VIEW_CONVERT_EXPR
:
4543 poly_int64 bitsize
, bitpos
;
4545 int reversep
, volatilep
= 0;
4547 = get_inner_reference (exp
, &bitsize
, &bitpos
, &offset
, &mode1
,
4548 &unsignedp
, &reversep
, &volatilep
);
4551 if (known_eq (bitsize
, 0))
4554 orig_op0
= op0
= expand_debug_expr (tem
);
4561 machine_mode addrmode
, offmode
;
4566 op0
= XEXP (op0
, 0);
4567 addrmode
= GET_MODE (op0
);
4568 if (addrmode
== VOIDmode
)
4571 op1
= expand_debug_expr (offset
);
4575 offmode
= GET_MODE (op1
);
4576 if (offmode
== VOIDmode
)
4577 offmode
= TYPE_MODE (TREE_TYPE (offset
));
4579 if (addrmode
!= offmode
)
4580 op1
= lowpart_subreg (addrmode
, op1
, offmode
);
4582 /* Don't use offset_address here, we don't need a
4583 recognizable address, and we don't want to generate
4585 op0
= gen_rtx_MEM (mode
, simplify_gen_binary (PLUS
, addrmode
,
4591 if (mode1
== VOIDmode
)
4593 if (maybe_gt (bitsize
, MAX_BITSIZE_MODE_ANY_INT
))
4596 mode1
= smallest_int_mode_for_size (bitsize
);
4598 poly_int64 bytepos
= bits_to_bytes_round_down (bitpos
);
4599 if (maybe_ne (bytepos
, 0))
4601 op0
= adjust_address_nv (op0
, mode1
, bytepos
);
4602 bitpos
= num_trailing_bits (bitpos
);
4604 else if (known_eq (bitpos
, 0)
4605 && known_eq (bitsize
, GET_MODE_BITSIZE (mode
)))
4606 op0
= adjust_address_nv (op0
, mode
, 0);
4607 else if (GET_MODE (op0
) != mode1
)
4608 op0
= adjust_address_nv (op0
, mode1
, 0);
4610 op0
= copy_rtx (op0
);
4611 if (op0
== orig_op0
)
4612 op0
= shallow_copy_rtx (op0
);
4613 set_mem_attributes (op0
, exp
, 0);
4616 if (known_eq (bitpos
, 0) && mode
== GET_MODE (op0
))
4619 if (maybe_lt (bitpos
, 0))
4622 if (GET_MODE (op0
) == BLKmode
|| mode
== BLKmode
)
4626 if (multiple_p (bitpos
, BITS_PER_UNIT
, &bytepos
)
4627 && known_eq (bitsize
, GET_MODE_BITSIZE (mode1
)))
4629 machine_mode opmode
= GET_MODE (op0
);
4631 if (opmode
== VOIDmode
)
4632 opmode
= TYPE_MODE (TREE_TYPE (tem
));
4634 /* This condition may hold if we're expanding the address
4635 right past the end of an array that turned out not to
4636 be addressable (i.e., the address was only computed in
4637 debug stmts). The gen_subreg below would rightfully
4638 crash, and the address doesn't really exist, so just
4640 if (known_ge (bitpos
, GET_MODE_BITSIZE (opmode
)))
4643 if (multiple_p (bitpos
, GET_MODE_BITSIZE (mode
)))
4644 return simplify_gen_subreg (mode
, op0
, opmode
, bytepos
);
4647 return simplify_gen_ternary (SCALAR_INT_MODE_P (GET_MODE (op0
))
4648 && TYPE_UNSIGNED (TREE_TYPE (exp
))
4650 : ZERO_EXTRACT
, mode
,
4651 GET_MODE (op0
) != VOIDmode
4653 : TYPE_MODE (TREE_TYPE (tem
)),
4654 op0
, gen_int_mode (bitsize
, word_mode
),
4655 gen_int_mode (bitpos
, word_mode
));
4660 return simplify_gen_unary (ABS
, mode
, op0
, mode
);
4663 return simplify_gen_unary (NEG
, mode
, op0
, mode
);
4666 return simplify_gen_unary (NOT
, mode
, op0
, mode
);
4669 return simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
4671 ? UNSIGNED_FLOAT
: FLOAT
, mode
, op0
,
4674 case FIX_TRUNC_EXPR
:
4675 return simplify_gen_unary (unsignedp
? UNSIGNED_FIX
: FIX
, mode
, op0
,
4678 case POINTER_PLUS_EXPR
:
4679 /* For the rare target where pointers are not the same size as
4680 size_t, we need to check for mis-matched modes and correct
4683 && is_a
<scalar_int_mode
> (GET_MODE (op0
), &op0_mode
)
4684 && is_a
<scalar_int_mode
> (GET_MODE (op1
), &op1_mode
)
4685 && op0_mode
!= op1_mode
)
4687 if (GET_MODE_BITSIZE (op0_mode
) < GET_MODE_BITSIZE (op1_mode
)
4688 /* If OP0 is a partial mode, then we must truncate, even
4689 if it has the same bitsize as OP1 as GCC's
4690 representation of partial modes is opaque. */
4691 || (GET_MODE_CLASS (op0_mode
) == MODE_PARTIAL_INT
4692 && (GET_MODE_BITSIZE (op0_mode
)
4693 == GET_MODE_BITSIZE (op1_mode
))))
4694 op1
= simplify_gen_unary (TRUNCATE
, op0_mode
, op1
, op1_mode
);
4696 /* We always sign-extend, regardless of the signedness of
4697 the operand, because the operand is always unsigned
4698 here even if the original C expression is signed. */
4699 op1
= simplify_gen_unary (SIGN_EXTEND
, op0_mode
, op1
, op1_mode
);
4703 return simplify_gen_binary (PLUS
, mode
, op0
, op1
);
4706 case POINTER_DIFF_EXPR
:
4707 return simplify_gen_binary (MINUS
, mode
, op0
, op1
);
4710 return simplify_gen_binary (MULT
, mode
, op0
, op1
);
4713 case TRUNC_DIV_EXPR
:
4714 case EXACT_DIV_EXPR
:
4716 return simplify_gen_binary (UDIV
, mode
, op0
, op1
);
4718 return simplify_gen_binary (DIV
, mode
, op0
, op1
);
4720 case TRUNC_MOD_EXPR
:
4721 return simplify_gen_binary (unsignedp
? UMOD
: MOD
, mode
, op0
, op1
);
4723 case FLOOR_DIV_EXPR
:
4725 return simplify_gen_binary (UDIV
, mode
, op0
, op1
);
4728 rtx div
= simplify_gen_binary (DIV
, mode
, op0
, op1
);
4729 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
4730 rtx adj
= floor_sdiv_adjust (mode
, mod
, op1
);
4731 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
4734 case FLOOR_MOD_EXPR
:
4736 return simplify_gen_binary (UMOD
, mode
, op0
, op1
);
4739 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
4740 rtx adj
= floor_sdiv_adjust (mode
, mod
, op1
);
4741 adj
= simplify_gen_unary (NEG
, mode
,
4742 simplify_gen_binary (MULT
, mode
, adj
, op1
),
4744 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
4750 rtx div
= simplify_gen_binary (UDIV
, mode
, op0
, op1
);
4751 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
4752 rtx adj
= ceil_udiv_adjust (mode
, mod
, op1
);
4753 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
4757 rtx div
= simplify_gen_binary (DIV
, mode
, op0
, op1
);
4758 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
4759 rtx adj
= ceil_sdiv_adjust (mode
, mod
, op1
);
4760 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
4766 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
4767 rtx adj
= ceil_udiv_adjust (mode
, mod
, op1
);
4768 adj
= simplify_gen_unary (NEG
, mode
,
4769 simplify_gen_binary (MULT
, mode
, adj
, op1
),
4771 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
4775 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
4776 rtx adj
= ceil_sdiv_adjust (mode
, mod
, op1
);
4777 adj
= simplify_gen_unary (NEG
, mode
,
4778 simplify_gen_binary (MULT
, mode
, adj
, op1
),
4780 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
4783 case ROUND_DIV_EXPR
:
4786 rtx div
= simplify_gen_binary (UDIV
, mode
, op0
, op1
);
4787 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
4788 rtx adj
= round_udiv_adjust (mode
, mod
, op1
);
4789 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
4793 rtx div
= simplify_gen_binary (DIV
, mode
, op0
, op1
);
4794 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
4795 rtx adj
= round_sdiv_adjust (mode
, mod
, op1
);
4796 return simplify_gen_binary (PLUS
, mode
, div
, adj
);
4799 case ROUND_MOD_EXPR
:
4802 rtx mod
= simplify_gen_binary (UMOD
, mode
, op0
, op1
);
4803 rtx adj
= round_udiv_adjust (mode
, mod
, op1
);
4804 adj
= simplify_gen_unary (NEG
, mode
,
4805 simplify_gen_binary (MULT
, mode
, adj
, op1
),
4807 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
4811 rtx mod
= simplify_gen_binary (MOD
, mode
, op0
, op1
);
4812 rtx adj
= round_sdiv_adjust (mode
, mod
, op1
);
4813 adj
= simplify_gen_unary (NEG
, mode
,
4814 simplify_gen_binary (MULT
, mode
, adj
, op1
),
4816 return simplify_gen_binary (PLUS
, mode
, mod
, adj
);
4820 return simplify_gen_binary (ASHIFT
, mode
, op0
, op1
);
4824 return simplify_gen_binary (LSHIFTRT
, mode
, op0
, op1
);
4826 return simplify_gen_binary (ASHIFTRT
, mode
, op0
, op1
);
4829 return simplify_gen_binary (ROTATE
, mode
, op0
, op1
);
4832 return simplify_gen_binary (ROTATERT
, mode
, op0
, op1
);
4835 return simplify_gen_binary (unsignedp
? UMIN
: SMIN
, mode
, op0
, op1
);
4838 return simplify_gen_binary (unsignedp
? UMAX
: SMAX
, mode
, op0
, op1
);
4841 case TRUTH_AND_EXPR
:
4842 return simplify_gen_binary (AND
, mode
, op0
, op1
);
4846 return simplify_gen_binary (IOR
, mode
, op0
, op1
);
4849 case TRUTH_XOR_EXPR
:
4850 return simplify_gen_binary (XOR
, mode
, op0
, op1
);
4852 case TRUTH_ANDIF_EXPR
:
4853 return gen_rtx_IF_THEN_ELSE (mode
, op0
, op1
, const0_rtx
);
4855 case TRUTH_ORIF_EXPR
:
4856 return gen_rtx_IF_THEN_ELSE (mode
, op0
, const_true_rtx
, op1
);
4858 case TRUTH_NOT_EXPR
:
4859 return simplify_gen_relational (EQ
, mode
, inner_mode
, op0
, const0_rtx
);
4862 return simplify_gen_relational (unsignedp
? LTU
: LT
, mode
, inner_mode
,
4866 return simplify_gen_relational (unsignedp
? LEU
: LE
, mode
, inner_mode
,
4870 return simplify_gen_relational (unsignedp
? GTU
: GT
, mode
, inner_mode
,
4874 return simplify_gen_relational (unsignedp
? GEU
: GE
, mode
, inner_mode
,
4878 return simplify_gen_relational (EQ
, mode
, inner_mode
, op0
, op1
);
4881 return simplify_gen_relational (NE
, mode
, inner_mode
, op0
, op1
);
4883 case UNORDERED_EXPR
:
4884 return simplify_gen_relational (UNORDERED
, mode
, inner_mode
, op0
, op1
);
4887 return simplify_gen_relational (ORDERED
, mode
, inner_mode
, op0
, op1
);
4890 return simplify_gen_relational (UNLT
, mode
, inner_mode
, op0
, op1
);
4893 return simplify_gen_relational (UNLE
, mode
, inner_mode
, op0
, op1
);
4896 return simplify_gen_relational (UNGT
, mode
, inner_mode
, op0
, op1
);
4899 return simplify_gen_relational (UNGE
, mode
, inner_mode
, op0
, op1
);
4902 return simplify_gen_relational (UNEQ
, mode
, inner_mode
, op0
, op1
);
4905 return simplify_gen_relational (LTGT
, mode
, inner_mode
, op0
, op1
);
4908 return gen_rtx_IF_THEN_ELSE (mode
, op0
, op1
, op2
);
4911 gcc_assert (COMPLEX_MODE_P (mode
));
4912 if (GET_MODE (op0
) == VOIDmode
)
4913 op0
= gen_rtx_CONST (GET_MODE_INNER (mode
), op0
);
4914 if (GET_MODE (op1
) == VOIDmode
)
4915 op1
= gen_rtx_CONST (GET_MODE_INNER (mode
), op1
);
4916 return gen_rtx_CONCAT (mode
, op0
, op1
);
4919 if (GET_CODE (op0
) == CONCAT
)
4920 return gen_rtx_CONCAT (mode
, XEXP (op0
, 0),
4921 simplify_gen_unary (NEG
, GET_MODE_INNER (mode
),
4923 GET_MODE_INNER (mode
)));
4926 scalar_mode imode
= GET_MODE_INNER (mode
);
4931 re
= adjust_address_nv (op0
, imode
, 0);
4932 im
= adjust_address_nv (op0
, imode
, GET_MODE_SIZE (imode
));
4936 scalar_int_mode ifmode
;
4937 scalar_int_mode ihmode
;
4939 if (!int_mode_for_mode (mode
).exists (&ifmode
)
4940 || !int_mode_for_mode (imode
).exists (&ihmode
))
4942 halfsize
= GEN_INT (GET_MODE_BITSIZE (ihmode
));
4945 re
= gen_rtx_SUBREG (ifmode
, re
, 0);
4946 re
= gen_rtx_ZERO_EXTRACT (ihmode
, re
, halfsize
, const0_rtx
);
4947 if (imode
!= ihmode
)
4948 re
= gen_rtx_SUBREG (imode
, re
, 0);
4949 im
= copy_rtx (op0
);
4951 im
= gen_rtx_SUBREG (ifmode
, im
, 0);
4952 im
= gen_rtx_ZERO_EXTRACT (ihmode
, im
, halfsize
, halfsize
);
4953 if (imode
!= ihmode
)
4954 im
= gen_rtx_SUBREG (imode
, im
, 0);
4956 im
= gen_rtx_NEG (imode
, im
);
4957 return gen_rtx_CONCAT (mode
, re
, im
);
4961 op0
= expand_debug_expr (TREE_OPERAND (exp
, 0));
4962 if (!op0
|| !MEM_P (op0
))
4964 if ((TREE_CODE (TREE_OPERAND (exp
, 0)) == VAR_DECL
4965 || TREE_CODE (TREE_OPERAND (exp
, 0)) == PARM_DECL
4966 || TREE_CODE (TREE_OPERAND (exp
, 0)) == RESULT_DECL
)
4967 && (!TREE_ADDRESSABLE (TREE_OPERAND (exp
, 0))
4968 || target_for_debug_bind (TREE_OPERAND (exp
, 0))))
4969 return gen_rtx_DEBUG_IMPLICIT_PTR (mode
, TREE_OPERAND (exp
, 0));
4971 if (handled_component_p (TREE_OPERAND (exp
, 0)))
4973 poly_int64 bitoffset
, bitsize
, maxsize
, byteoffset
;
4976 = get_ref_base_and_extent (TREE_OPERAND (exp
, 0), &bitoffset
,
4977 &bitsize
, &maxsize
, &reverse
);
4979 || TREE_CODE (decl
) == PARM_DECL
4980 || TREE_CODE (decl
) == RESULT_DECL
)
4981 && (!TREE_ADDRESSABLE (decl
)
4982 || target_for_debug_bind (decl
))
4983 && multiple_p (bitoffset
, BITS_PER_UNIT
, &byteoffset
)
4984 && known_gt (bitsize
, 0)
4985 && known_eq (bitsize
, maxsize
))
4987 rtx base
= gen_rtx_DEBUG_IMPLICIT_PTR (mode
, decl
);
4988 return plus_constant (mode
, base
, byteoffset
);
4992 if (TREE_CODE (TREE_OPERAND (exp
, 0)) == MEM_REF
4993 && TREE_CODE (TREE_OPERAND (TREE_OPERAND (exp
, 0), 0))
4996 op0
= expand_debug_expr (TREE_OPERAND (TREE_OPERAND (exp
, 0),
4999 && (GET_CODE (op0
) == DEBUG_IMPLICIT_PTR
5000 || (GET_CODE (op0
) == PLUS
5001 && GET_CODE (XEXP (op0
, 0)) == DEBUG_IMPLICIT_PTR
5002 && CONST_INT_P (XEXP (op0
, 1)))))
5004 op1
= expand_debug_expr (TREE_OPERAND (TREE_OPERAND (exp
, 0),
5007 if (!op1
|| !poly_int_rtx_p (op1
, &offset
))
5010 return plus_constant (mode
, op0
, offset
);
5017 as
= TYPE_ADDR_SPACE (TREE_TYPE (TREE_TYPE (exp
)));
5018 addr_mode
= SCALAR_INT_TYPE_MODE (TREE_TYPE (exp
));
5019 op0
= convert_debug_memory_address (addr_mode
, XEXP (op0
, 0), as
);
5025 unsigned HOST_WIDE_INT i
, nelts
;
5027 if (!VECTOR_CST_NELTS (exp
).is_constant (&nelts
))
5030 op0
= gen_rtx_CONCATN (mode
, rtvec_alloc (nelts
));
5032 for (i
= 0; i
< nelts
; ++i
)
5034 op1
= expand_debug_expr (VECTOR_CST_ELT (exp
, i
));
5037 XVECEXP (op0
, 0, i
) = op1
;
5044 if (TREE_CLOBBER_P (exp
))
5046 else if (TREE_CODE (TREE_TYPE (exp
)) == VECTOR_TYPE
)
5049 unsigned HOST_WIDE_INT nelts
;
5052 if (!TYPE_VECTOR_SUBPARTS (TREE_TYPE (exp
)).is_constant (&nelts
))
5053 goto flag_unsupported
;
5055 op0
= gen_rtx_CONCATN (mode
, rtvec_alloc (nelts
));
5057 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (exp
), i
, val
)
5059 op1
= expand_debug_expr (val
);
5062 XVECEXP (op0
, 0, i
) = op1
;
5067 op1
= expand_debug_expr
5068 (build_zero_cst (TREE_TYPE (TREE_TYPE (exp
))));
5073 for (; i
< nelts
; i
++)
5074 XVECEXP (op0
, 0, i
) = op1
;
5080 goto flag_unsupported
;
5083 /* ??? Maybe handle some builtins? */
5088 gimple
*g
= get_gimple_for_ssa_name (exp
);
5092 if (deep_ter_debug_map
)
5094 tree
*slot
= deep_ter_debug_map
->get (exp
);
5099 t
= gimple_assign_rhs_to_tree (g
);
5100 op0
= expand_debug_expr (t
);
5106 /* If this is a reference to an incoming value of
5107 parameter that is never used in the code or where the
5108 incoming value is never used in the code, use
5109 PARM_DECL's DECL_RTL if set. */
5110 if (SSA_NAME_IS_DEFAULT_DEF (exp
)
5111 && SSA_NAME_VAR (exp
)
5112 && TREE_CODE (SSA_NAME_VAR (exp
)) == PARM_DECL
5113 && has_zero_uses (exp
))
5115 op0
= expand_debug_parm_decl (SSA_NAME_VAR (exp
));
5118 op0
= expand_debug_expr (SSA_NAME_VAR (exp
));
5123 int part
= var_to_partition (SA
.map
, exp
);
5125 if (part
== NO_PARTITION
)
5128 gcc_assert (part
>= 0 && (unsigned)part
< SA
.map
->num_partitions
);
5130 op0
= copy_rtx (SA
.partition_to_pseudo
[part
]);
5138 /* Vector stuff. For most of the codes we don't have rtl codes. */
5139 case REALIGN_LOAD_EXPR
:
5141 case VEC_PACK_FIX_TRUNC_EXPR
:
5142 case VEC_PACK_FLOAT_EXPR
:
5143 case VEC_PACK_SAT_EXPR
:
5144 case VEC_PACK_TRUNC_EXPR
:
5145 case VEC_UNPACK_FIX_TRUNC_HI_EXPR
:
5146 case VEC_UNPACK_FIX_TRUNC_LO_EXPR
:
5147 case VEC_UNPACK_FLOAT_HI_EXPR
:
5148 case VEC_UNPACK_FLOAT_LO_EXPR
:
5149 case VEC_UNPACK_HI_EXPR
:
5150 case VEC_UNPACK_LO_EXPR
:
5151 case VEC_WIDEN_MULT_HI_EXPR
:
5152 case VEC_WIDEN_MULT_LO_EXPR
:
5153 case VEC_WIDEN_MULT_EVEN_EXPR
:
5154 case VEC_WIDEN_MULT_ODD_EXPR
:
5155 case VEC_WIDEN_LSHIFT_HI_EXPR
:
5156 case VEC_WIDEN_LSHIFT_LO_EXPR
:
5158 case VEC_DUPLICATE_EXPR
:
5159 case VEC_SERIES_EXPR
:
5163 case ADDR_SPACE_CONVERT_EXPR
:
5164 case FIXED_CONVERT_EXPR
:
5166 case WITH_SIZE_EXPR
:
5167 case BIT_INSERT_EXPR
:
5171 if (SCALAR_INT_MODE_P (GET_MODE (op0
))
5172 && SCALAR_INT_MODE_P (mode
))
5175 = simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
5177 ? ZERO_EXTEND
: SIGN_EXTEND
, mode
, op0
,
5180 = simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
5182 ? ZERO_EXTEND
: SIGN_EXTEND
, mode
, op1
,
5184 op0
= simplify_gen_binary (MULT
, mode
, op0
, op1
);
5185 return simplify_gen_binary (PLUS
, mode
, op0
, op2
);
5189 case WIDEN_MULT_EXPR
:
5190 case WIDEN_MULT_PLUS_EXPR
:
5191 case WIDEN_MULT_MINUS_EXPR
:
5192 if (SCALAR_INT_MODE_P (GET_MODE (op0
))
5193 && SCALAR_INT_MODE_P (mode
))
5195 inner_mode
= GET_MODE (op0
);
5196 if (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 0))))
5197 op0
= simplify_gen_unary (ZERO_EXTEND
, mode
, op0
, inner_mode
);
5199 op0
= simplify_gen_unary (SIGN_EXTEND
, mode
, op0
, inner_mode
);
5200 if (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
, 1))))
5201 op1
= simplify_gen_unary (ZERO_EXTEND
, mode
, op1
, inner_mode
);
5203 op1
= simplify_gen_unary (SIGN_EXTEND
, mode
, op1
, inner_mode
);
5204 op0
= simplify_gen_binary (MULT
, mode
, op0
, op1
);
5205 if (TREE_CODE (exp
) == WIDEN_MULT_EXPR
)
5207 else if (TREE_CODE (exp
) == WIDEN_MULT_PLUS_EXPR
)
5208 return simplify_gen_binary (PLUS
, mode
, op0
, op2
);
5210 return simplify_gen_binary (MINUS
, mode
, op2
, op0
);
5214 case MULT_HIGHPART_EXPR
:
5215 /* ??? Similar to the above. */
5218 case WIDEN_SUM_EXPR
:
5219 case WIDEN_LSHIFT_EXPR
:
5220 if (SCALAR_INT_MODE_P (GET_MODE (op0
))
5221 && SCALAR_INT_MODE_P (mode
))
5224 = simplify_gen_unary (TYPE_UNSIGNED (TREE_TYPE (TREE_OPERAND (exp
,
5226 ? ZERO_EXTEND
: SIGN_EXTEND
, mode
, op0
,
5228 return simplify_gen_binary (TREE_CODE (exp
) == WIDEN_LSHIFT_EXPR
5229 ? ASHIFT
: PLUS
, mode
, op0
, op1
);
5244 /* Return an RTX equivalent to the source bind value of the tree expression
5248 expand_debug_source_expr (tree exp
)
5251 machine_mode mode
= VOIDmode
, inner_mode
;
5253 switch (TREE_CODE (exp
))
5256 if (DECL_ABSTRACT_ORIGIN (exp
))
5257 return expand_debug_source_expr (DECL_ABSTRACT_ORIGIN (exp
));
5261 mode
= DECL_MODE (exp
);
5262 op0
= expand_debug_parm_decl (exp
);
5265 /* See if this isn't an argument that has been completely
5267 if (!DECL_RTL_SET_P (exp
)
5268 && !DECL_INCOMING_RTL (exp
)
5269 && DECL_ABSTRACT_ORIGIN (current_function_decl
))
5271 tree aexp
= DECL_ORIGIN (exp
);
5272 if (DECL_CONTEXT (aexp
)
5273 == DECL_ABSTRACT_ORIGIN (current_function_decl
))
5275 vec
<tree
, va_gc
> **debug_args
;
5278 debug_args
= decl_debug_args_lookup (current_function_decl
);
5279 if (debug_args
!= NULL
)
5281 for (ix
= 0; vec_safe_iterate (*debug_args
, ix
, &ddecl
);
5284 return gen_rtx_DEBUG_PARAMETER_REF (mode
, aexp
);
5294 if (op0
== NULL_RTX
)
5297 inner_mode
= GET_MODE (op0
);
5298 if (mode
== inner_mode
)
5301 if (FLOAT_MODE_P (mode
) && FLOAT_MODE_P (inner_mode
))
5303 if (GET_MODE_UNIT_BITSIZE (mode
)
5304 == GET_MODE_UNIT_BITSIZE (inner_mode
))
5305 op0
= simplify_gen_subreg (mode
, op0
, inner_mode
, 0);
5306 else if (GET_MODE_UNIT_BITSIZE (mode
)
5307 < GET_MODE_UNIT_BITSIZE (inner_mode
))
5308 op0
= simplify_gen_unary (FLOAT_TRUNCATE
, mode
, op0
, inner_mode
);
5310 op0
= simplify_gen_unary (FLOAT_EXTEND
, mode
, op0
, inner_mode
);
5312 else if (FLOAT_MODE_P (mode
))
5314 else if (FLOAT_MODE_P (inner_mode
))
5316 if (TYPE_UNSIGNED (TREE_TYPE (exp
)))
5317 op0
= simplify_gen_unary (UNSIGNED_FIX
, mode
, op0
, inner_mode
);
5319 op0
= simplify_gen_unary (FIX
, mode
, op0
, inner_mode
);
5321 else if (GET_MODE_UNIT_PRECISION (mode
)
5322 == GET_MODE_UNIT_PRECISION (inner_mode
))
5323 op0
= lowpart_subreg (mode
, op0
, inner_mode
);
5324 else if (GET_MODE_UNIT_PRECISION (mode
)
5325 < GET_MODE_UNIT_PRECISION (inner_mode
))
5326 op0
= simplify_gen_unary (TRUNCATE
, mode
, op0
, inner_mode
);
5327 else if (TYPE_UNSIGNED (TREE_TYPE (exp
)))
5328 op0
= simplify_gen_unary (ZERO_EXTEND
, mode
, op0
, inner_mode
);
5330 op0
= simplify_gen_unary (SIGN_EXTEND
, mode
, op0
, inner_mode
);
5335 /* Ensure INSN_VAR_LOCATION_LOC (insn) doesn't have unbound complexity.
5336 Allow 4 levels of rtl nesting for most rtl codes, and if we see anything
5337 deeper than that, create DEBUG_EXPRs and emit DEBUG_INSNs before INSN. */
5340 avoid_complex_debug_insns (rtx_insn
*insn
, rtx
*exp_p
, int depth
)
5344 if (exp
== NULL_RTX
)
5347 if ((OBJECT_P (exp
) && !MEM_P (exp
)) || GET_CODE (exp
) == CLOBBER
)
5352 /* Create DEBUG_EXPR (and DEBUG_EXPR_DECL). */
5353 rtx dval
= make_debug_expr_from_rtl (exp
);
5355 /* Emit a debug bind insn before INSN. */
5356 rtx bind
= gen_rtx_VAR_LOCATION (GET_MODE (exp
),
5357 DEBUG_EXPR_TREE_DECL (dval
), exp
,
5358 VAR_INIT_STATUS_INITIALIZED
);
5360 emit_debug_insn_before (bind
, insn
);
5365 const char *format_ptr
= GET_RTX_FORMAT (GET_CODE (exp
));
5367 for (i
= 0; i
< GET_RTX_LENGTH (GET_CODE (exp
)); i
++)
5368 switch (*format_ptr
++)
5371 avoid_complex_debug_insns (insn
, &XEXP (exp
, i
), depth
+ 1);
5376 for (j
= 0; j
< XVECLEN (exp
, i
); j
++)
5377 avoid_complex_debug_insns (insn
, &XVECEXP (exp
, i
, j
), depth
+ 1);
5385 /* Expand the _LOCs in debug insns. We run this after expanding all
5386 regular insns, so that any variables referenced in the function
5387 will have their DECL_RTLs set. */
5390 expand_debug_locations (void)
5393 rtx_insn
*last
= get_last_insn ();
5394 int save_strict_alias
= flag_strict_aliasing
;
5396 /* New alias sets while setting up memory attributes cause
5397 -fcompare-debug failures, even though it doesn't bring about any
5399 flag_strict_aliasing
= 0;
5401 for (insn
= get_insns (); insn
; insn
= NEXT_INSN (insn
))
5402 if (DEBUG_BIND_INSN_P (insn
))
5404 tree value
= (tree
)INSN_VAR_LOCATION_LOC (insn
);
5406 rtx_insn
*prev_insn
, *insn2
;
5409 if (value
== NULL_TREE
)
5413 if (INSN_VAR_LOCATION_STATUS (insn
)
5414 == VAR_INIT_STATUS_UNINITIALIZED
)
5415 val
= expand_debug_source_expr (value
);
5416 /* The avoid_deep_ter_for_debug function inserts
5417 debug bind stmts after SSA_NAME definition, with the
5418 SSA_NAME as the whole bind location. Disable temporarily
5419 expansion of that SSA_NAME into the DEBUG_EXPR_DECL
5420 being defined in this DEBUG_INSN. */
5421 else if (deep_ter_debug_map
&& TREE_CODE (value
) == SSA_NAME
)
5423 tree
*slot
= deep_ter_debug_map
->get (value
);
5426 if (*slot
== INSN_VAR_LOCATION_DECL (insn
))
5431 val
= expand_debug_expr (value
);
5433 *slot
= INSN_VAR_LOCATION_DECL (insn
);
5436 val
= expand_debug_expr (value
);
5437 gcc_assert (last
== get_last_insn ());
5441 val
= gen_rtx_UNKNOWN_VAR_LOC ();
5444 mode
= GET_MODE (INSN_VAR_LOCATION (insn
));
5446 gcc_assert (mode
== GET_MODE (val
)
5447 || (GET_MODE (val
) == VOIDmode
5448 && (CONST_SCALAR_INT_P (val
)
5449 || GET_CODE (val
) == CONST_FIXED
5450 || GET_CODE (val
) == LABEL_REF
)));
5453 INSN_VAR_LOCATION_LOC (insn
) = val
;
5454 prev_insn
= PREV_INSN (insn
);
5455 for (insn2
= insn
; insn2
!= prev_insn
; insn2
= PREV_INSN (insn2
))
5456 avoid_complex_debug_insns (insn2
, &INSN_VAR_LOCATION_LOC (insn2
), 0);
5459 flag_strict_aliasing
= save_strict_alias
;
5462 /* Performs swapping operands of commutative operations to expand
5463 the expensive one first. */
5466 reorder_operands (basic_block bb
)
5468 unsigned int *lattice
; /* Hold cost of each statement. */
5469 unsigned int i
= 0, n
= 0;
5470 gimple_stmt_iterator gsi
;
5476 use_operand_p use_p
;
5477 gimple
*def0
, *def1
;
5479 /* Compute cost of each statement using estimate_num_insns. */
5480 stmts
= bb_seq (bb
);
5481 for (gsi
= gsi_start (stmts
); !gsi_end_p (gsi
); gsi_next (&gsi
))
5483 stmt
= gsi_stmt (gsi
);
5484 if (!is_gimple_debug (stmt
))
5485 gimple_set_uid (stmt
, n
++);
5487 lattice
= XNEWVEC (unsigned int, n
);
5488 for (gsi
= gsi_start (stmts
); !gsi_end_p (gsi
); gsi_next (&gsi
))
5491 stmt
= gsi_stmt (gsi
);
5492 if (is_gimple_debug (stmt
))
5494 cost
= estimate_num_insns (stmt
, &eni_size_weights
);
5496 FOR_EACH_SSA_USE_OPERAND (use_p
, stmt
, iter
, SSA_OP_USE
)
5498 tree use
= USE_FROM_PTR (use_p
);
5500 if (TREE_CODE (use
) != SSA_NAME
)
5502 def_stmt
= get_gimple_for_ssa_name (use
);
5505 lattice
[i
] += lattice
[gimple_uid (def_stmt
)];
5508 if (!is_gimple_assign (stmt
)
5509 || !commutative_tree_code (gimple_assign_rhs_code (stmt
)))
5511 op0
= gimple_op (stmt
, 1);
5512 op1
= gimple_op (stmt
, 2);
5513 if (TREE_CODE (op0
) != SSA_NAME
5514 || TREE_CODE (op1
) != SSA_NAME
)
5516 /* Swap operands if the second one is more expensive. */
5517 def0
= get_gimple_for_ssa_name (op0
);
5518 def1
= get_gimple_for_ssa_name (op1
);
5522 if (!def0
|| lattice
[gimple_uid (def1
)] > lattice
[gimple_uid (def0
)])
5526 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
5528 fprintf (dump_file
, "Swap operands in stmt:\n");
5529 print_gimple_stmt (dump_file
, stmt
, 0, TDF_SLIM
);
5530 fprintf (dump_file
, "Cost left opnd=%d, right opnd=%d\n",
5531 def0
? lattice
[gimple_uid (def0
)] : 0,
5532 lattice
[gimple_uid (def1
)]);
5534 swap_ssa_operands (stmt
, gimple_assign_rhs1_ptr (stmt
),
5535 gimple_assign_rhs2_ptr (stmt
));
5541 /* Expand basic block BB from GIMPLE trees to RTL. */
5544 expand_gimple_basic_block (basic_block bb
, bool disable_tail_calls
)
5546 gimple_stmt_iterator gsi
;
5548 gimple
*stmt
= NULL
;
5549 rtx_note
*note
= NULL
;
5555 fprintf (dump_file
, "\n;; Generating RTL for gimple basic block %d\n",
5558 /* Note that since we are now transitioning from GIMPLE to RTL, we
5559 cannot use the gsi_*_bb() routines because they expect the basic
5560 block to be in GIMPLE, instead of RTL. Therefore, we need to
5561 access the BB sequence directly. */
5563 reorder_operands (bb
);
5564 stmts
= bb_seq (bb
);
5565 bb
->il
.gimple
.seq
= NULL
;
5566 bb
->il
.gimple
.phi_nodes
= NULL
;
5567 rtl_profile_for_bb (bb
);
5568 init_rtl_bb_info (bb
);
5569 bb
->flags
|= BB_RTL
;
5571 /* Remove the RETURN_EXPR if we may fall though to the exit
5573 gsi
= gsi_last (stmts
);
5574 if (!gsi_end_p (gsi
)
5575 && gimple_code (gsi_stmt (gsi
)) == GIMPLE_RETURN
)
5577 greturn
*ret_stmt
= as_a
<greturn
*> (gsi_stmt (gsi
));
5579 gcc_assert (single_succ_p (bb
));
5580 gcc_assert (single_succ (bb
) == EXIT_BLOCK_PTR_FOR_FN (cfun
));
5582 if (bb
->next_bb
== EXIT_BLOCK_PTR_FOR_FN (cfun
)
5583 && !gimple_return_retval (ret_stmt
))
5585 gsi_remove (&gsi
, false);
5586 single_succ_edge (bb
)->flags
|= EDGE_FALLTHRU
;
5590 gsi
= gsi_start (stmts
);
5591 if (!gsi_end_p (gsi
))
5593 stmt
= gsi_stmt (gsi
);
5594 if (gimple_code (stmt
) != GIMPLE_LABEL
)
5598 rtx_code_label
**elt
= lab_rtx_for_bb
->get (bb
);
5602 gcc_checking_assert (!note
);
5603 last
= get_last_insn ();
5607 expand_gimple_stmt (stmt
);
5614 BB_HEAD (bb
) = NEXT_INSN (last
);
5615 if (NOTE_P (BB_HEAD (bb
)))
5616 BB_HEAD (bb
) = NEXT_INSN (BB_HEAD (bb
));
5617 gcc_assert (LABEL_P (BB_HEAD (bb
)));
5618 note
= emit_note_after (NOTE_INSN_BASIC_BLOCK
, BB_HEAD (bb
));
5620 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
5623 BB_HEAD (bb
) = note
= emit_note (NOTE_INSN_BASIC_BLOCK
);
5626 NOTE_BASIC_BLOCK (note
) = bb
;
5628 for (; !gsi_end_p (gsi
); gsi_next (&gsi
))
5632 stmt
= gsi_stmt (gsi
);
5634 /* If this statement is a non-debug one, and we generate debug
5635 insns, then this one might be the last real use of a TERed
5636 SSA_NAME, but where there are still some debug uses further
5637 down. Expanding the current SSA name in such further debug
5638 uses by their RHS might lead to wrong debug info, as coalescing
5639 might make the operands of such RHS be placed into the same
5640 pseudo as something else. Like so:
5641 a_1 = a_0 + 1; // Assume a_1 is TERed and a_0 is dead
5645 As a_0 and a_2 don't overlap in lifetime, assume they are coalesced.
5646 If we now would expand a_1 by it's RHS (a_0 + 1) in the debug use,
5647 the write to a_2 would actually have clobbered the place which
5650 So, instead of that, we recognize the situation, and generate
5651 debug temporaries at the last real use of TERed SSA names:
5658 if (MAY_HAVE_DEBUG_BIND_INSNS
5660 && !is_gimple_debug (stmt
))
5666 location_t sloc
= curr_insn_location ();
5668 /* Look for SSA names that have their last use here (TERed
5669 names always have only one real use). */
5670 FOR_EACH_SSA_TREE_OPERAND (op
, stmt
, iter
, SSA_OP_USE
)
5671 if ((def
= get_gimple_for_ssa_name (op
)))
5673 imm_use_iterator imm_iter
;
5674 use_operand_p use_p
;
5675 bool have_debug_uses
= false;
5677 FOR_EACH_IMM_USE_FAST (use_p
, imm_iter
, op
)
5679 if (gimple_debug_bind_p (USE_STMT (use_p
)))
5681 have_debug_uses
= true;
5686 if (have_debug_uses
)
5688 /* OP is a TERed SSA name, with DEF its defining
5689 statement, and where OP is used in further debug
5690 instructions. Generate a debug temporary, and
5691 replace all uses of OP in debug insns with that
5694 tree value
= gimple_assign_rhs_to_tree (def
);
5695 tree vexpr
= make_node (DEBUG_EXPR_DECL
);
5699 set_curr_insn_location (gimple_location (def
));
5701 DECL_ARTIFICIAL (vexpr
) = 1;
5702 TREE_TYPE (vexpr
) = TREE_TYPE (value
);
5704 mode
= DECL_MODE (value
);
5706 mode
= TYPE_MODE (TREE_TYPE (value
));
5707 SET_DECL_MODE (vexpr
, mode
);
5709 val
= gen_rtx_VAR_LOCATION
5710 (mode
, vexpr
, (rtx
)value
, VAR_INIT_STATUS_INITIALIZED
);
5712 emit_debug_insn (val
);
5714 FOR_EACH_IMM_USE_STMT (debugstmt
, imm_iter
, op
)
5716 if (!gimple_debug_bind_p (debugstmt
))
5719 FOR_EACH_IMM_USE_ON_STMT (use_p
, imm_iter
)
5720 SET_USE (use_p
, vexpr
);
5722 update_stmt (debugstmt
);
5726 set_curr_insn_location (sloc
);
5729 currently_expanding_gimple_stmt
= stmt
;
5731 /* Expand this statement, then evaluate the resulting RTL and
5732 fixup the CFG accordingly. */
5733 if (gimple_code (stmt
) == GIMPLE_COND
)
5735 new_bb
= expand_gimple_cond (bb
, as_a
<gcond
*> (stmt
));
5739 else if (is_gimple_debug (stmt
))
5741 location_t sloc
= curr_insn_location ();
5742 gimple_stmt_iterator nsi
= gsi
;
5747 tree value
= NULL_TREE
;
5751 if (!gimple_debug_nonbind_marker_p (stmt
))
5753 if (gimple_debug_bind_p (stmt
))
5755 var
= gimple_debug_bind_get_var (stmt
);
5757 if (TREE_CODE (var
) != DEBUG_EXPR_DECL
5758 && TREE_CODE (var
) != LABEL_DECL
5759 && !target_for_debug_bind (var
))
5760 goto delink_debug_stmt
;
5763 mode
= DECL_MODE (var
);
5765 mode
= TYPE_MODE (TREE_TYPE (var
));
5767 if (gimple_debug_bind_has_value_p (stmt
))
5768 value
= gimple_debug_bind_get_value (stmt
);
5770 val
= gen_rtx_VAR_LOCATION
5771 (mode
, var
, (rtx
)value
, VAR_INIT_STATUS_INITIALIZED
);
5773 else if (gimple_debug_source_bind_p (stmt
))
5775 var
= gimple_debug_source_bind_get_var (stmt
);
5777 value
= gimple_debug_source_bind_get_value (stmt
);
5779 mode
= DECL_MODE (var
);
5781 val
= gen_rtx_VAR_LOCATION (mode
, var
, (rtx
)value
,
5782 VAR_INIT_STATUS_UNINITIALIZED
);
5787 /* If this function was first compiled with markers
5788 enabled, but they're now disable (e.g. LTO), drop
5789 them on the floor. */
5790 else if (gimple_debug_nonbind_marker_p (stmt
)
5791 && !MAY_HAVE_DEBUG_MARKER_INSNS
)
5792 goto delink_debug_stmt
;
5793 else if (gimple_debug_begin_stmt_p (stmt
))
5794 val
= GEN_RTX_DEBUG_MARKER_BEGIN_STMT_PAT ();
5795 else if (gimple_debug_inline_entry_p (stmt
))
5797 tree block
= gimple_block (stmt
);
5800 val
= GEN_RTX_DEBUG_MARKER_INLINE_ENTRY_PAT ();
5802 goto delink_debug_stmt
;
5807 last
= get_last_insn ();
5809 set_curr_insn_location (gimple_location (stmt
));
5811 emit_debug_insn (val
);
5813 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
5815 /* We can't dump the insn with a TREE where an RTX
5817 if (GET_CODE (val
) == VAR_LOCATION
)
5819 gcc_checking_assert (PAT_VAR_LOCATION_LOC (val
) == (rtx
)value
);
5820 PAT_VAR_LOCATION_LOC (val
) = const0_rtx
;
5822 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
5823 if (GET_CODE (val
) == VAR_LOCATION
)
5824 PAT_VAR_LOCATION_LOC (val
) = (rtx
)value
;
5828 /* In order not to generate too many debug temporaries,
5829 we delink all uses of debug statements we already expanded.
5830 Therefore debug statements between definition and real
5831 use of TERed SSA names will continue to use the SSA name,
5832 and not be replaced with debug temps. */
5833 delink_stmt_imm_use (stmt
);
5837 if (gsi_end_p (nsi
))
5839 stmt
= gsi_stmt (nsi
);
5840 if (!is_gimple_debug (stmt
))
5844 set_curr_insn_location (sloc
);
5848 gcall
*call_stmt
= dyn_cast
<gcall
*> (stmt
);
5850 && gimple_call_tail_p (call_stmt
)
5851 && disable_tail_calls
)
5852 gimple_call_set_tail (call_stmt
, false);
5854 if (call_stmt
&& gimple_call_tail_p (call_stmt
))
5857 new_bb
= expand_gimple_tailcall (bb
, call_stmt
, &can_fallthru
);
5868 def_operand_p def_p
;
5869 def_p
= SINGLE_SSA_DEF_OPERAND (stmt
, SSA_OP_DEF
);
5873 /* Ignore this stmt if it is in the list of
5874 replaceable expressions. */
5876 && bitmap_bit_p (SA
.values
,
5877 SSA_NAME_VERSION (DEF_FROM_PTR (def_p
))))
5880 last
= expand_gimple_stmt (stmt
);
5881 maybe_dump_rtl_for_gimple_stmt (stmt
, last
);
5886 currently_expanding_gimple_stmt
= NULL
;
5888 /* Expand implicit goto and convert goto_locus. */
5889 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
5891 if (e
->goto_locus
!= UNKNOWN_LOCATION
)
5892 set_curr_insn_location (e
->goto_locus
);
5893 if ((e
->flags
& EDGE_FALLTHRU
) && e
->dest
!= bb
->next_bb
)
5895 emit_jump (label_rtx_for_bb (e
->dest
));
5896 e
->flags
&= ~EDGE_FALLTHRU
;
5900 /* Expanded RTL can create a jump in the last instruction of block.
5901 This later might be assumed to be a jump to successor and break edge insertion.
5902 We need to insert dummy move to prevent this. PR41440. */
5903 if (single_succ_p (bb
)
5904 && (single_succ_edge (bb
)->flags
& EDGE_FALLTHRU
)
5905 && (last
= get_last_insn ())
5907 || (DEBUG_INSN_P (last
)
5908 && JUMP_P (prev_nondebug_insn (last
)))))
5910 rtx dummy
= gen_reg_rtx (SImode
);
5911 emit_insn_after_noloc (gen_move_insn (dummy
, dummy
), last
, NULL
);
5914 do_pending_stack_adjust ();
5916 /* Find the block tail. The last insn in the block is the insn
5917 before a barrier and/or table jump insn. */
5918 last
= get_last_insn ();
5919 if (BARRIER_P (last
))
5920 last
= PREV_INSN (last
);
5921 if (JUMP_TABLE_DATA_P (last
))
5922 last
= PREV_INSN (PREV_INSN (last
));
5923 if (BARRIER_P (last
))
5924 last
= PREV_INSN (last
);
5927 update_bb_for_insn (bb
);
5933 /* Create a basic block for initialization code. */
5936 construct_init_block (void)
5938 basic_block init_block
, first_block
;
5942 /* Multiple entry points not supported yet. */
5943 gcc_assert (EDGE_COUNT (ENTRY_BLOCK_PTR_FOR_FN (cfun
)->succs
) == 1);
5944 init_rtl_bb_info (ENTRY_BLOCK_PTR_FOR_FN (cfun
));
5945 init_rtl_bb_info (EXIT_BLOCK_PTR_FOR_FN (cfun
));
5946 ENTRY_BLOCK_PTR_FOR_FN (cfun
)->flags
|= BB_RTL
;
5947 EXIT_BLOCK_PTR_FOR_FN (cfun
)->flags
|= BB_RTL
;
5949 e
= EDGE_SUCC (ENTRY_BLOCK_PTR_FOR_FN (cfun
), 0);
5951 /* When entry edge points to first basic block, we don't need jump,
5952 otherwise we have to jump into proper target. */
5953 if (e
&& e
->dest
!= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
)
5955 tree label
= gimple_block_label (e
->dest
);
5957 emit_jump (jump_target_rtx (label
));
5961 flags
= EDGE_FALLTHRU
;
5963 init_block
= create_basic_block (NEXT_INSN (get_insns ()),
5965 ENTRY_BLOCK_PTR_FOR_FN (cfun
));
5966 init_block
->count
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->count
;
5967 add_bb_to_loop (init_block
, ENTRY_BLOCK_PTR_FOR_FN (cfun
)->loop_father
);
5970 first_block
= e
->dest
;
5971 redirect_edge_succ (e
, init_block
);
5972 e
= make_single_succ_edge (init_block
, first_block
, flags
);
5975 e
= make_single_succ_edge (init_block
, EXIT_BLOCK_PTR_FOR_FN (cfun
),
5978 update_bb_for_insn (init_block
);
5982 /* For each lexical block, set BLOCK_NUMBER to the depth at which it is
5983 found in the block tree. */
5986 set_block_levels (tree block
, int level
)
5990 BLOCK_NUMBER (block
) = level
;
5991 set_block_levels (BLOCK_SUBBLOCKS (block
), level
+ 1);
5992 block
= BLOCK_CHAIN (block
);
5996 /* Create a block containing landing pads and similar stuff. */
5999 construct_exit_block (void)
6001 rtx_insn
*head
= get_last_insn ();
6003 basic_block exit_block
;
6007 basic_block prev_bb
= EXIT_BLOCK_PTR_FOR_FN (cfun
)->prev_bb
;
6008 rtx_insn
*orig_end
= BB_END (prev_bb
);
6010 rtl_profile_for_bb (EXIT_BLOCK_PTR_FOR_FN (cfun
));
6012 /* Make sure the locus is set to the end of the function, so that
6013 epilogue line numbers and warnings are set properly. */
6014 if (LOCATION_LOCUS (cfun
->function_end_locus
) != UNKNOWN_LOCATION
)
6015 input_location
= cfun
->function_end_locus
;
6017 /* Generate rtl for function exit. */
6018 expand_function_end ();
6020 end
= get_last_insn ();
6023 /* While emitting the function end we could move end of the last basic
6025 BB_END (prev_bb
) = orig_end
;
6026 while (NEXT_INSN (head
) && NOTE_P (NEXT_INSN (head
)))
6027 head
= NEXT_INSN (head
);
6028 /* But make sure exit_block starts with RETURN_LABEL, otherwise the
6029 bb count counting will be confused. Any instructions before that
6030 label are emitted for the case where PREV_BB falls through into the
6031 exit block, so append those instructions to prev_bb in that case. */
6032 if (NEXT_INSN (head
) != return_label
)
6034 while (NEXT_INSN (head
) != return_label
)
6036 if (!NOTE_P (NEXT_INSN (head
)))
6037 BB_END (prev_bb
) = NEXT_INSN (head
);
6038 head
= NEXT_INSN (head
);
6041 exit_block
= create_basic_block (NEXT_INSN (head
), end
, prev_bb
);
6042 exit_block
->count
= EXIT_BLOCK_PTR_FOR_FN (cfun
)->count
;
6043 add_bb_to_loop (exit_block
, EXIT_BLOCK_PTR_FOR_FN (cfun
)->loop_father
);
6046 while (ix
< EDGE_COUNT (EXIT_BLOCK_PTR_FOR_FN (cfun
)->preds
))
6048 e
= EDGE_PRED (EXIT_BLOCK_PTR_FOR_FN (cfun
), ix
);
6049 if (!(e
->flags
& EDGE_ABNORMAL
))
6050 redirect_edge_succ (e
, exit_block
);
6055 e
= make_single_succ_edge (exit_block
, EXIT_BLOCK_PTR_FOR_FN (cfun
),
6057 FOR_EACH_EDGE (e2
, ei
, EXIT_BLOCK_PTR_FOR_FN (cfun
)->preds
)
6060 exit_block
->count
-= e2
->count ();
6062 update_bb_for_insn (exit_block
);
6065 /* Helper function for discover_nonconstant_array_refs.
6066 Look for ARRAY_REF nodes with non-constant indexes and mark them
6070 discover_nonconstant_array_refs_r (tree
* tp
, int *walk_subtrees
,
6071 void *data ATTRIBUTE_UNUSED
)
6075 if (IS_TYPE_OR_DECL_P (t
))
6077 else if (TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
6079 while (((TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
6080 && is_gimple_min_invariant (TREE_OPERAND (t
, 1))
6081 && (!TREE_OPERAND (t
, 2)
6082 || is_gimple_min_invariant (TREE_OPERAND (t
, 2))))
6083 || (TREE_CODE (t
) == COMPONENT_REF
6084 && (!TREE_OPERAND (t
,2)
6085 || is_gimple_min_invariant (TREE_OPERAND (t
, 2))))
6086 || TREE_CODE (t
) == BIT_FIELD_REF
6087 || TREE_CODE (t
) == REALPART_EXPR
6088 || TREE_CODE (t
) == IMAGPART_EXPR
6089 || TREE_CODE (t
) == VIEW_CONVERT_EXPR
6090 || CONVERT_EXPR_P (t
))
6091 t
= TREE_OPERAND (t
, 0);
6093 if (TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
6095 t
= get_base_address (t
);
6097 && DECL_MODE (t
) != BLKmode
)
6098 TREE_ADDRESSABLE (t
) = 1;
6107 /* RTL expansion is not able to compile array references with variable
6108 offsets for arrays stored in single register. Discover such
6109 expressions and mark variables as addressable to avoid this
6113 discover_nonconstant_array_refs (void)
6116 gimple_stmt_iterator gsi
;
6118 FOR_EACH_BB_FN (bb
, cfun
)
6119 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
6121 gimple
*stmt
= gsi_stmt (gsi
);
6122 if (!is_gimple_debug (stmt
))
6123 walk_gimple_op (stmt
, discover_nonconstant_array_refs_r
, NULL
);
6127 /* This function sets crtl->args.internal_arg_pointer to a virtual
6128 register if DRAP is needed. Local register allocator will replace
6129 virtual_incoming_args_rtx with the virtual register. */
6132 expand_stack_alignment (void)
6135 unsigned int preferred_stack_boundary
;
6137 if (! SUPPORTS_STACK_ALIGNMENT
)
6140 if (cfun
->calls_alloca
6141 || cfun
->has_nonlocal_label
6142 || crtl
->has_nonlocal_goto
)
6143 crtl
->need_drap
= true;
6145 /* Call update_stack_boundary here again to update incoming stack
6146 boundary. It may set incoming stack alignment to a different
6147 value after RTL expansion. TARGET_FUNCTION_OK_FOR_SIBCALL may
6148 use the minimum incoming stack alignment to check if it is OK
6149 to perform sibcall optimization since sibcall optimization will
6150 only align the outgoing stack to incoming stack boundary. */
6151 if (targetm
.calls
.update_stack_boundary
)
6152 targetm
.calls
.update_stack_boundary ();
6154 /* The incoming stack frame has to be aligned at least at
6155 parm_stack_boundary. */
6156 gcc_assert (crtl
->parm_stack_boundary
<= INCOMING_STACK_BOUNDARY
);
6158 /* Update crtl->stack_alignment_estimated and use it later to align
6159 stack. We check PREFERRED_STACK_BOUNDARY if there may be non-call
6160 exceptions since callgraph doesn't collect incoming stack alignment
6162 if (cfun
->can_throw_non_call_exceptions
6163 && PREFERRED_STACK_BOUNDARY
> crtl
->preferred_stack_boundary
)
6164 preferred_stack_boundary
= PREFERRED_STACK_BOUNDARY
;
6166 preferred_stack_boundary
= crtl
->preferred_stack_boundary
;
6167 if (preferred_stack_boundary
> crtl
->stack_alignment_estimated
)
6168 crtl
->stack_alignment_estimated
= preferred_stack_boundary
;
6169 if (preferred_stack_boundary
> crtl
->stack_alignment_needed
)
6170 crtl
->stack_alignment_needed
= preferred_stack_boundary
;
6172 gcc_assert (crtl
->stack_alignment_needed
6173 <= crtl
->stack_alignment_estimated
);
6175 crtl
->stack_realign_needed
6176 = INCOMING_STACK_BOUNDARY
< crtl
->stack_alignment_estimated
;
6177 crtl
->stack_realign_tried
= crtl
->stack_realign_needed
;
6179 crtl
->stack_realign_processed
= true;
6181 /* Target has to redefine TARGET_GET_DRAP_RTX to support stack
6183 gcc_assert (targetm
.calls
.get_drap_rtx
!= NULL
);
6184 drap_rtx
= targetm
.calls
.get_drap_rtx ();
6186 /* stack_realign_drap and drap_rtx must match. */
6187 gcc_assert ((stack_realign_drap
!= 0) == (drap_rtx
!= NULL
));
6189 /* Do nothing if NULL is returned, which means DRAP is not needed. */
6190 if (drap_rtx
!= NULL
)
6192 crtl
->args
.internal_arg_pointer
= drap_rtx
;
6194 /* Call fixup_tail_calls to clean up REG_EQUIV note if DRAP is
6196 fixup_tail_calls ();
6202 expand_main_function (void)
6204 #if (defined(INVOKE__main) \
6205 || (!defined(HAS_INIT_SECTION) \
6206 && !defined(INIT_SECTION_ASM_OP) \
6207 && !defined(INIT_ARRAY_SECTION_ASM_OP)))
6208 emit_library_call (init_one_libfunc (NAME__MAIN
), LCT_NORMAL
, VOIDmode
);
6213 /* Expand code to initialize the stack_protect_guard. This is invoked at
6214 the beginning of a function to be protected. */
6217 stack_protect_prologue (void)
6219 tree guard_decl
= targetm
.stack_protect_guard ();
6222 x
= expand_normal (crtl
->stack_protect_guard
);
6224 if (targetm
.have_stack_protect_combined_set () && guard_decl
)
6226 gcc_assert (DECL_P (guard_decl
));
6227 y
= DECL_RTL (guard_decl
);
6229 /* Allow the target to compute address of Y and copy it to X without
6230 leaking Y into a register. This combined address + copy pattern
6231 allows the target to prevent spilling of any intermediate results by
6232 splitting it after register allocator. */
6233 if (rtx_insn
*insn
= targetm
.gen_stack_protect_combined_set (x
, y
))
6241 y
= expand_normal (guard_decl
);
6245 /* Allow the target to copy from Y to X without leaking Y into a
6247 if (targetm
.have_stack_protect_set ())
6248 if (rtx_insn
*insn
= targetm
.gen_stack_protect_set (x
, y
))
6254 /* Otherwise do a straight move. */
6255 emit_move_insn (x
, y
);
6258 /* Translate the intermediate representation contained in the CFG
6259 from GIMPLE trees to RTL.
6261 We do conversion per basic block and preserve/update the tree CFG.
6262 This implies we have to do some magic as the CFG can simultaneously
6263 consist of basic blocks containing RTL and GIMPLE trees. This can
6264 confuse the CFG hooks, so be careful to not manipulate CFG during
6269 const pass_data pass_data_expand
=
6271 RTL_PASS
, /* type */
6272 "expand", /* name */
6273 OPTGROUP_NONE
, /* optinfo_flags */
6274 TV_EXPAND
, /* tv_id */
6275 ( PROP_ssa
| PROP_gimple_leh
| PROP_cfg
6278 | PROP_gimple_lva
), /* properties_required */
6279 PROP_rtl
, /* properties_provided */
6280 ( PROP_ssa
| PROP_trees
), /* properties_destroyed */
6281 0, /* todo_flags_start */
6282 0, /* todo_flags_finish */
6285 class pass_expand
: public rtl_opt_pass
6288 pass_expand (gcc::context
*ctxt
)
6289 : rtl_opt_pass (pass_data_expand
, ctxt
)
6292 /* opt_pass methods: */
6293 virtual unsigned int execute (function
*);
6295 }; // class pass_expand
6298 pass_expand::execute (function
*fun
)
6300 basic_block bb
, init_block
;
6303 rtx_insn
*var_seq
, *var_ret_seq
;
6306 timevar_push (TV_OUT_OF_SSA
);
6307 rewrite_out_of_ssa (&SA
);
6308 timevar_pop (TV_OUT_OF_SSA
);
6309 SA
.partition_to_pseudo
= XCNEWVEC (rtx
, SA
.map
->num_partitions
);
6311 if (MAY_HAVE_DEBUG_BIND_STMTS
&& flag_tree_ter
)
6313 gimple_stmt_iterator gsi
;
6314 FOR_EACH_BB_FN (bb
, cfun
)
6315 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
6316 if (gimple_debug_bind_p (gsi_stmt (gsi
)))
6317 avoid_deep_ter_for_debug (gsi_stmt (gsi
), 0);
6320 /* Make sure all values used by the optimization passes have sane
6324 /* Some backends want to know that we are expanding to RTL. */
6325 currently_expanding_to_rtl
= 1;
6326 /* Dominators are not kept up-to-date as we may create new basic-blocks. */
6327 free_dominance_info (CDI_DOMINATORS
);
6329 rtl_profile_for_bb (ENTRY_BLOCK_PTR_FOR_FN (fun
));
6331 insn_locations_init ();
6332 if (!DECL_IS_BUILTIN (current_function_decl
))
6334 /* Eventually, all FEs should explicitly set function_start_locus. */
6335 if (LOCATION_LOCUS (fun
->function_start_locus
) == UNKNOWN_LOCATION
)
6336 set_curr_insn_location
6337 (DECL_SOURCE_LOCATION (current_function_decl
));
6339 set_curr_insn_location (fun
->function_start_locus
);
6342 set_curr_insn_location (UNKNOWN_LOCATION
);
6343 prologue_location
= curr_insn_location ();
6345 #ifdef INSN_SCHEDULING
6346 init_sched_attrs ();
6349 /* Make sure first insn is a note even if we don't want linenums.
6350 This makes sure the first insn will never be deleted.
6351 Also, final expects a note to appear there. */
6352 emit_note (NOTE_INSN_DELETED
);
6354 /* Mark arrays indexed with non-constant indices with TREE_ADDRESSABLE. */
6355 discover_nonconstant_array_refs ();
6357 targetm
.expand_to_rtl_hook ();
6358 crtl
->init_stack_alignment ();
6359 fun
->cfg
->max_jumptable_ents
= 0;
6361 /* Resovle the function section. Some targets, like ARM EABI rely on knowledge
6362 of the function section at exapnsion time to predict distance of calls. */
6363 resolve_unique_section (current_function_decl
, 0, flag_function_sections
);
6365 /* Expand the variables recorded during gimple lowering. */
6366 timevar_push (TV_VAR_EXPAND
);
6369 var_ret_seq
= expand_used_vars ();
6371 var_seq
= get_insns ();
6373 timevar_pop (TV_VAR_EXPAND
);
6375 /* Honor stack protection warnings. */
6376 if (warn_stack_protect
)
6378 if (fun
->calls_alloca
)
6379 warning (OPT_Wstack_protector
,
6380 "stack protector not protecting local variables: "
6381 "variable length buffer");
6382 if (has_short_buffer
&& !crtl
->stack_protect_guard
)
6383 warning (OPT_Wstack_protector
,
6384 "stack protector not protecting function: "
6385 "all local arrays are less than %d bytes long",
6386 (int) PARAM_VALUE (PARAM_SSP_BUFFER_SIZE
));
6389 /* Set up parameters and prepare for return, for the function. */
6390 expand_function_start (current_function_decl
);
6392 /* If we emitted any instructions for setting up the variables,
6393 emit them before the FUNCTION_START note. */
6396 emit_insn_before (var_seq
, parm_birth_insn
);
6398 /* In expand_function_end we'll insert the alloca save/restore
6399 before parm_birth_insn. We've just insertted an alloca call.
6400 Adjust the pointer to match. */
6401 parm_birth_insn
= var_seq
;
6404 /* Now propagate the RTL assignment of each partition to the
6405 underlying var of each SSA_NAME. */
6408 FOR_EACH_SSA_NAME (i
, name
, cfun
)
6410 /* We might have generated new SSA names in
6411 update_alias_info_with_stack_vars. They will have a NULL
6412 defining statements, and won't be part of the partitioning,
6414 if (!SSA_NAME_DEF_STMT (name
))
6417 adjust_one_expanded_partition_var (name
);
6420 /* Clean up RTL of variables that straddle across multiple
6421 partitions, and check that the rtl of any PARM_DECLs that are not
6422 cleaned up is that of their default defs. */
6423 FOR_EACH_SSA_NAME (i
, name
, cfun
)
6427 /* We might have generated new SSA names in
6428 update_alias_info_with_stack_vars. They will have a NULL
6429 defining statements, and won't be part of the partitioning,
6431 if (!SSA_NAME_DEF_STMT (name
))
6433 part
= var_to_partition (SA
.map
, name
);
6434 if (part
== NO_PARTITION
)
6437 /* If this decl was marked as living in multiple places, reset
6438 this now to NULL. */
6439 tree var
= SSA_NAME_VAR (name
);
6440 if (var
&& DECL_RTL_IF_SET (var
) == pc_rtx
)
6441 SET_DECL_RTL (var
, NULL
);
6442 /* Check that the pseudos chosen by assign_parms are those of
6443 the corresponding default defs. */
6444 else if (SSA_NAME_IS_DEFAULT_DEF (name
)
6445 && (TREE_CODE (var
) == PARM_DECL
6446 || TREE_CODE (var
) == RESULT_DECL
))
6448 rtx in
= DECL_RTL_IF_SET (var
);
6450 rtx out
= SA
.partition_to_pseudo
[part
];
6451 gcc_assert (in
== out
);
6453 /* Now reset VAR's RTL to IN, so that the _EXPR attrs match
6454 those expected by debug backends for each parm and for
6455 the result. This is particularly important for stabs,
6456 whose register elimination from parm's DECL_RTL may cause
6457 -fcompare-debug differences as SET_DECL_RTL changes reg's
6458 attrs. So, make sure the RTL already has the parm as the
6459 EXPR, so that it won't change. */
6460 SET_DECL_RTL (var
, NULL_RTX
);
6462 set_mem_attributes (in
, var
, true);
6463 SET_DECL_RTL (var
, in
);
6467 /* If this function is `main', emit a call to `__main'
6468 to run global initializers, etc. */
6469 if (DECL_NAME (current_function_decl
)
6470 && MAIN_NAME_P (DECL_NAME (current_function_decl
))
6471 && DECL_FILE_SCOPE_P (current_function_decl
))
6472 expand_main_function ();
6474 /* Initialize the stack_protect_guard field. This must happen after the
6475 call to __main (if any) so that the external decl is initialized. */
6476 if (crtl
->stack_protect_guard
&& targetm
.stack_protect_runtime_enabled_p ())
6477 stack_protect_prologue ();
6479 expand_phi_nodes (&SA
);
6481 /* Release any stale SSA redirection data. */
6482 redirect_edge_var_map_empty ();
6484 /* Register rtl specific functions for cfg. */
6485 rtl_register_cfg_hooks ();
6487 init_block
= construct_init_block ();
6489 /* Clear EDGE_EXECUTABLE on the entry edge(s). It is cleaned from the
6490 remaining edges later. */
6491 FOR_EACH_EDGE (e
, ei
, ENTRY_BLOCK_PTR_FOR_FN (fun
)->succs
)
6492 e
->flags
&= ~EDGE_EXECUTABLE
;
6494 /* If the function has too many markers, drop them while expanding. */
6495 if (cfun
->debug_marker_count
6496 >= PARAM_VALUE (PARAM_MAX_DEBUG_MARKER_COUNT
))
6497 cfun
->debug_nonbind_markers
= false;
6499 lab_rtx_for_bb
= new hash_map
<basic_block
, rtx_code_label
*>;
6500 FOR_BB_BETWEEN (bb
, init_block
->next_bb
, EXIT_BLOCK_PTR_FOR_FN (fun
),
6502 bb
= expand_gimple_basic_block (bb
, var_ret_seq
!= NULL_RTX
);
6504 if (MAY_HAVE_DEBUG_BIND_INSNS
)
6505 expand_debug_locations ();
6507 if (deep_ter_debug_map
)
6509 delete deep_ter_debug_map
;
6510 deep_ter_debug_map
= NULL
;
6513 /* Free stuff we no longer need after GIMPLE optimizations. */
6514 free_dominance_info (CDI_DOMINATORS
);
6515 free_dominance_info (CDI_POST_DOMINATORS
);
6516 delete_tree_cfg_annotations (fun
);
6518 timevar_push (TV_OUT_OF_SSA
);
6519 finish_out_of_ssa (&SA
);
6520 timevar_pop (TV_OUT_OF_SSA
);
6522 timevar_push (TV_POST_EXPAND
);
6523 /* We are no longer in SSA form. */
6524 fun
->gimple_df
->in_ssa_p
= false;
6525 loops_state_clear (LOOP_CLOSED_SSA
);
6527 /* Expansion is used by optimization passes too, set maybe_hot_insn_p
6528 conservatively to true until they are all profile aware. */
6529 delete lab_rtx_for_bb
;
6530 free_histograms (fun
);
6532 construct_exit_block ();
6533 insn_locations_finalize ();
6537 rtx_insn
*after
= return_label
;
6538 rtx_insn
*next
= NEXT_INSN (after
);
6539 if (next
&& NOTE_INSN_BASIC_BLOCK_P (next
))
6541 emit_insn_after (var_ret_seq
, after
);
6544 /* Zap the tree EH table. */
6545 set_eh_throw_stmt_table (fun
, NULL
);
6547 /* We need JUMP_LABEL be set in order to redirect jumps, and hence
6548 split edges which edge insertions might do. */
6549 rebuild_jump_labels (get_insns ());
6551 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR_FOR_FN (fun
),
6552 EXIT_BLOCK_PTR_FOR_FN (fun
), next_bb
)
6556 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
6560 rebuild_jump_labels_chain (e
->insns
.r
);
6561 /* Put insns after parm birth, but before
6562 NOTE_INSNS_FUNCTION_BEG. */
6563 if (e
->src
== ENTRY_BLOCK_PTR_FOR_FN (fun
)
6564 && single_succ_p (ENTRY_BLOCK_PTR_FOR_FN (fun
)))
6566 rtx_insn
*insns
= e
->insns
.r
;
6568 if (NOTE_P (parm_birth_insn
)
6569 && NOTE_KIND (parm_birth_insn
) == NOTE_INSN_FUNCTION_BEG
)
6570 emit_insn_before_noloc (insns
, parm_birth_insn
, e
->dest
);
6572 emit_insn_after_noloc (insns
, parm_birth_insn
, e
->dest
);
6575 commit_one_edge_insertion (e
);
6582 /* We're done expanding trees to RTL. */
6583 currently_expanding_to_rtl
= 0;
6585 flush_mark_addressable_queue ();
6587 FOR_BB_BETWEEN (bb
, ENTRY_BLOCK_PTR_FOR_FN (fun
)->next_bb
,
6588 EXIT_BLOCK_PTR_FOR_FN (fun
), next_bb
)
6592 for (ei
= ei_start (bb
->succs
); (e
= ei_safe_edge (ei
)); )
6594 /* Clear EDGE_EXECUTABLE. This flag is never used in the backend. */
6595 e
->flags
&= ~EDGE_EXECUTABLE
;
6597 /* At the moment not all abnormal edges match the RTL
6598 representation. It is safe to remove them here as
6599 find_many_sub_basic_blocks will rediscover them.
6600 In the future we should get this fixed properly. */
6601 if ((e
->flags
& EDGE_ABNORMAL
)
6602 && !(e
->flags
& EDGE_SIBCALL
))
6609 auto_sbitmap
blocks (last_basic_block_for_fn (fun
));
6610 bitmap_ones (blocks
);
6611 find_many_sub_basic_blocks (blocks
);
6612 purge_all_dead_edges ();
6614 /* After initial rtl generation, call back to finish generating
6615 exception support code. We need to do this before cleaning up
6616 the CFG as the code does not expect dead landing pads. */
6617 if (fun
->eh
->region_tree
!= NULL
)
6618 finish_eh_generation ();
6620 /* Call expand_stack_alignment after finishing all
6621 updates to crtl->preferred_stack_boundary. */
6622 expand_stack_alignment ();
6624 /* Fixup REG_EQUIV notes in the prologue if there are tailcalls in this
6626 if (crtl
->tail_call_emit
)
6627 fixup_tail_calls ();
6629 /* BB subdivision may have created basic blocks that are are only reachable
6630 from unlikely bbs but not marked as such in the profile. */
6632 propagate_unlikely_bbs_forward ();
6634 /* Remove unreachable blocks, otherwise we cannot compute dominators
6635 which are needed for loop state verification. As a side-effect
6636 this also compacts blocks.
6637 ??? We cannot remove trivially dead insns here as for example
6638 the DRAP reg on i?86 is not magically live at this point.
6639 gcc.c-torture/execute/ipa-sra-2.c execution, -Os -m32 fails otherwise. */
6640 cleanup_cfg (CLEANUP_NO_INSN_DEL
);
6642 checking_verify_flow_info ();
6644 /* Initialize pseudos allocated for hard registers. */
6645 emit_initial_value_sets ();
6647 /* And finally unshare all RTL. */
6650 /* There's no need to defer outputting this function any more; we
6651 know we want to output it. */
6652 DECL_DEFER_OUTPUT (current_function_decl
) = 0;
6654 /* Now that we're done expanding trees to RTL, we shouldn't have any
6655 more CONCATs anywhere. */
6656 generating_concat_p
= 0;
6661 "\n\n;;\n;; Full RTL generated for this function:\n;;\n");
6662 /* And the pass manager will dump RTL for us. */
6665 /* If we're emitting a nested function, make sure its parent gets
6666 emitted as well. Doing otherwise confuses debug info. */
6669 for (parent
= DECL_CONTEXT (current_function_decl
);
6670 parent
!= NULL_TREE
;
6671 parent
= get_containing_scope (parent
))
6672 if (TREE_CODE (parent
) == FUNCTION_DECL
)
6673 TREE_SYMBOL_REFERENCED (DECL_ASSEMBLER_NAME (parent
)) = 1;
6676 TREE_ASM_WRITTEN (current_function_decl
) = 1;
6678 /* After expanding, the return labels are no longer needed. */
6679 return_label
= NULL
;
6680 naked_return_label
= NULL
;
6682 /* After expanding, the tm_restart map is no longer needed. */
6683 if (fun
->gimple_df
->tm_restart
)
6684 fun
->gimple_df
->tm_restart
= NULL
;
6686 /* Tag the blocks with a depth number so that change_scope can find
6687 the common parent easily. */
6688 set_block_levels (DECL_INITIAL (fun
->decl
), 0);
6689 default_rtl_profile ();
6691 /* For -dx discard loops now, otherwise IL verify in clean_state will
6693 if (rtl_dump_and_exit
)
6695 cfun
->curr_properties
&= ~PROP_loops
;
6696 loop_optimizer_finalize ();
6699 timevar_pop (TV_POST_EXPAND
);
6707 make_pass_expand (gcc::context
*ctxt
)
6709 return new pass_expand (ctxt
);