1 /* Tree lowering pass. This pass converts the GENERIC functions-as-trees
2 tree representation into the GIMPLE form.
3 Copyright (C) 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
4 Free Software Foundation, Inc.
5 Major work done by Sebastian Pop <s.pop@laposte.net>,
6 Diego Novillo <dnovillo@redhat.com> and Jason Merrill <jason@redhat.com>.
8 This file is part of GCC.
10 GCC is free software; you can redistribute it and/or modify it under
11 the terms of the GNU General Public License as published by the Free
12 Software Foundation; either version 3, or (at your option) any later
15 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
16 WARRANTY; without even the implied warranty of MERCHANTABILITY or
17 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
20 You should have received a copy of the GNU General Public License
21 along with GCC; see the file COPYING3. If not see
22 <http://www.gnu.org/licenses/>. */
26 #include "coretypes.h"
30 #include "tree-iterator.h"
31 #include "tree-inline.h"
32 #include "tree-pretty-print.h"
33 #include "langhooks.h"
34 #include "tree-flow.h"
42 #include "diagnostic-core.h"
45 #include "pointer-set.h"
46 #include "splay-tree.h"
49 #include "tree-pass.h"
51 #include "langhooks-def.h" /* FIXME: for lhd_set_decl_assembler_name. */
52 #include "expr.h" /* FIXME: for can_move_by_pieces
53 and STACK_CHECK_MAX_VAR_SIZE. */
55 enum gimplify_omp_var_data
61 GOVD_FIRSTPRIVATE
= 16,
62 GOVD_LASTPRIVATE
= 32,
65 GOVD_DEBUG_PRIVATE
= 256,
66 GOVD_PRIVATE_OUTER_REF
= 512,
67 GOVD_DATA_SHARE_CLASS
= (GOVD_SHARED
| GOVD_PRIVATE
| GOVD_FIRSTPRIVATE
68 | GOVD_LASTPRIVATE
| GOVD_REDUCTION
| GOVD_LOCAL
)
76 ORT_COMBINED_PARALLEL
= 3,
81 struct gimplify_omp_ctx
83 struct gimplify_omp_ctx
*outer_context
;
85 struct pointer_set_t
*privatized_types
;
87 enum omp_clause_default_kind default_kind
;
88 enum omp_region_type region_type
;
91 static struct gimplify_ctx
*gimplify_ctxp
;
92 static struct gimplify_omp_ctx
*gimplify_omp_ctxp
;
95 /* Formal (expression) temporary table handling: Multiple occurrences of
96 the same scalar expression are evaluated into the same temporary. */
98 typedef struct gimple_temp_hash_elt
101 tree temp
; /* Value */
104 /* Forward declarations. */
105 static enum gimplify_status
gimplify_compound_expr (tree
*, gimple_seq
*, bool);
107 /* Mark X addressable. Unlike the langhook we expect X to be in gimple
108 form and we don't do any syntax checking. */
110 mark_addressable (tree x
)
112 while (handled_component_p (x
))
113 x
= TREE_OPERAND (x
, 0);
114 if (TREE_CODE (x
) == MEM_REF
115 && TREE_CODE (TREE_OPERAND (x
, 0)) == ADDR_EXPR
)
116 x
= TREE_OPERAND (TREE_OPERAND (x
, 0), 0);
117 if (TREE_CODE (x
) != VAR_DECL
118 && TREE_CODE (x
) != PARM_DECL
119 && TREE_CODE (x
) != RESULT_DECL
)
121 TREE_ADDRESSABLE (x
) = 1;
124 /* Return a hash value for a formal temporary table entry. */
127 gimple_tree_hash (const void *p
)
129 tree t
= ((const elt_t
*) p
)->val
;
130 return iterative_hash_expr (t
, 0);
133 /* Compare two formal temporary table entries. */
136 gimple_tree_eq (const void *p1
, const void *p2
)
138 tree t1
= ((const elt_t
*) p1
)->val
;
139 tree t2
= ((const elt_t
*) p2
)->val
;
140 enum tree_code code
= TREE_CODE (t1
);
142 if (TREE_CODE (t2
) != code
143 || TREE_TYPE (t1
) != TREE_TYPE (t2
))
146 if (!operand_equal_p (t1
, t2
, 0))
149 /* Only allow them to compare equal if they also hash equal; otherwise
150 results are nondeterminate, and we fail bootstrap comparison. */
151 gcc_assert (gimple_tree_hash (p1
) == gimple_tree_hash (p2
));
156 /* Link gimple statement GS to the end of the sequence *SEQ_P. If
157 *SEQ_P is NULL, a new sequence is allocated. This function is
158 similar to gimple_seq_add_stmt, but does not scan the operands.
159 During gimplification, we need to manipulate statement sequences
160 before the def/use vectors have been constructed. */
163 gimplify_seq_add_stmt (gimple_seq
*seq_p
, gimple gs
)
165 gimple_stmt_iterator si
;
171 *seq_p
= gimple_seq_alloc ();
173 si
= gsi_last (*seq_p
);
175 gsi_insert_after_without_update (&si
, gs
, GSI_NEW_STMT
);
178 /* Append sequence SRC to the end of sequence *DST_P. If *DST_P is
179 NULL, a new sequence is allocated. This function is
180 similar to gimple_seq_add_seq, but does not scan the operands.
181 During gimplification, we need to manipulate statement sequences
182 before the def/use vectors have been constructed. */
185 gimplify_seq_add_seq (gimple_seq
*dst_p
, gimple_seq src
)
187 gimple_stmt_iterator si
;
193 *dst_p
= gimple_seq_alloc ();
195 si
= gsi_last (*dst_p
);
196 gsi_insert_seq_after_without_update (&si
, src
, GSI_NEW_STMT
);
199 /* Set up a context for the gimplifier. */
202 push_gimplify_context (struct gimplify_ctx
*c
)
204 memset (c
, '\0', sizeof (*c
));
205 c
->prev_context
= gimplify_ctxp
;
209 /* Tear down a context for the gimplifier. If BODY is non-null, then
210 put the temporaries into the outer BIND_EXPR. Otherwise, put them
213 BODY is not a sequence, but the first tuple in a sequence. */
216 pop_gimplify_context (gimple body
)
218 struct gimplify_ctx
*c
= gimplify_ctxp
;
220 gcc_assert (c
&& (c
->bind_expr_stack
== NULL
221 || VEC_empty (gimple
, c
->bind_expr_stack
)));
222 VEC_free (gimple
, heap
, c
->bind_expr_stack
);
223 gimplify_ctxp
= c
->prev_context
;
226 declare_vars (c
->temps
, body
, false);
228 record_vars (c
->temps
);
231 htab_delete (c
->temp_htab
);
235 gimple_push_bind_expr (gimple gimple_bind
)
237 if (gimplify_ctxp
->bind_expr_stack
== NULL
)
238 gimplify_ctxp
->bind_expr_stack
= VEC_alloc (gimple
, heap
, 8);
239 VEC_safe_push (gimple
, heap
, gimplify_ctxp
->bind_expr_stack
, gimple_bind
);
243 gimple_pop_bind_expr (void)
245 VEC_pop (gimple
, gimplify_ctxp
->bind_expr_stack
);
249 gimple_current_bind_expr (void)
251 return VEC_last (gimple
, gimplify_ctxp
->bind_expr_stack
);
254 /* Return the stack GIMPLE_BINDs created during gimplification. */
257 gimple_bind_expr_stack (void)
259 return gimplify_ctxp
->bind_expr_stack
;
262 /* Returns true iff there is a COND_EXPR between us and the innermost
263 CLEANUP_POINT_EXPR. This info is used by gimple_push_cleanup. */
266 gimple_conditional_context (void)
268 return gimplify_ctxp
->conditions
> 0;
271 /* Note that we've entered a COND_EXPR. */
274 gimple_push_condition (void)
276 #ifdef ENABLE_GIMPLE_CHECKING
277 if (gimplify_ctxp
->conditions
== 0)
278 gcc_assert (gimple_seq_empty_p (gimplify_ctxp
->conditional_cleanups
));
280 ++(gimplify_ctxp
->conditions
);
283 /* Note that we've left a COND_EXPR. If we're back at unconditional scope
284 now, add any conditional cleanups we've seen to the prequeue. */
287 gimple_pop_condition (gimple_seq
*pre_p
)
289 int conds
= --(gimplify_ctxp
->conditions
);
291 gcc_assert (conds
>= 0);
294 gimplify_seq_add_seq (pre_p
, gimplify_ctxp
->conditional_cleanups
);
295 gimplify_ctxp
->conditional_cleanups
= NULL
;
299 /* A stable comparison routine for use with splay trees and DECLs. */
302 splay_tree_compare_decl_uid (splay_tree_key xa
, splay_tree_key xb
)
307 return DECL_UID (a
) - DECL_UID (b
);
310 /* Create a new omp construct that deals with variable remapping. */
312 static struct gimplify_omp_ctx
*
313 new_omp_context (enum omp_region_type region_type
)
315 struct gimplify_omp_ctx
*c
;
317 c
= XCNEW (struct gimplify_omp_ctx
);
318 c
->outer_context
= gimplify_omp_ctxp
;
319 c
->variables
= splay_tree_new (splay_tree_compare_decl_uid
, 0, 0);
320 c
->privatized_types
= pointer_set_create ();
321 c
->location
= input_location
;
322 c
->region_type
= region_type
;
323 if ((region_type
& ORT_TASK
) == 0)
324 c
->default_kind
= OMP_CLAUSE_DEFAULT_SHARED
;
326 c
->default_kind
= OMP_CLAUSE_DEFAULT_UNSPECIFIED
;
331 /* Destroy an omp construct that deals with variable remapping. */
334 delete_omp_context (struct gimplify_omp_ctx
*c
)
336 splay_tree_delete (c
->variables
);
337 pointer_set_destroy (c
->privatized_types
);
341 static void omp_add_variable (struct gimplify_omp_ctx
*, tree
, unsigned int);
342 static bool omp_notice_variable (struct gimplify_omp_ctx
*, tree
, bool);
344 /* Both gimplify the statement T and append it to *SEQ_P. This function
345 behaves exactly as gimplify_stmt, but you don't have to pass T as a
349 gimplify_and_add (tree t
, gimple_seq
*seq_p
)
351 gimplify_stmt (&t
, seq_p
);
354 /* Gimplify statement T into sequence *SEQ_P, and return the first
355 tuple in the sequence of generated tuples for this statement.
356 Return NULL if gimplifying T produced no tuples. */
359 gimplify_and_return_first (tree t
, gimple_seq
*seq_p
)
361 gimple_stmt_iterator last
= gsi_last (*seq_p
);
363 gimplify_and_add (t
, seq_p
);
365 if (!gsi_end_p (last
))
368 return gsi_stmt (last
);
371 return gimple_seq_first_stmt (*seq_p
);
374 /* Strip off a legitimate source ending from the input string NAME of
375 length LEN. Rather than having to know the names used by all of
376 our front ends, we strip off an ending of a period followed by
377 up to five characters. (Java uses ".class".) */
380 remove_suffix (char *name
, int len
)
384 for (i
= 2; i
< 8 && len
> i
; i
++)
386 if (name
[len
- i
] == '.')
388 name
[len
- i
] = '\0';
394 /* Create a new temporary name with PREFIX. Returns an identifier. */
396 static GTY(()) unsigned int tmp_var_id_num
;
399 create_tmp_var_name (const char *prefix
)
405 char *preftmp
= ASTRDUP (prefix
);
407 remove_suffix (preftmp
, strlen (preftmp
));
411 ASM_FORMAT_PRIVATE_NAME (tmp_name
, prefix
? prefix
: "T", tmp_var_id_num
++);
412 return get_identifier (tmp_name
);
416 /* Create a new temporary variable declaration of type TYPE.
417 Does NOT push it into the current binding. */
420 create_tmp_var_raw (tree type
, const char *prefix
)
425 /* Make the type of the variable writable. */
426 new_type
= build_type_variant (type
, 0, 0);
427 TYPE_ATTRIBUTES (new_type
) = TYPE_ATTRIBUTES (type
);
429 tmp_var
= build_decl (input_location
,
430 VAR_DECL
, prefix
? create_tmp_var_name (prefix
) : NULL
,
433 /* The variable was declared by the compiler. */
434 DECL_ARTIFICIAL (tmp_var
) = 1;
435 /* And we don't want debug info for it. */
436 DECL_IGNORED_P (tmp_var
) = 1;
438 /* Make the variable writable. */
439 TREE_READONLY (tmp_var
) = 0;
441 DECL_EXTERNAL (tmp_var
) = 0;
442 TREE_STATIC (tmp_var
) = 0;
443 TREE_USED (tmp_var
) = 1;
448 /* Create a new temporary variable declaration of type TYPE. DOES push the
449 variable into the current binding. Further, assume that this is called
450 only from gimplification or optimization, at which point the creation of
451 certain types are bugs. */
454 create_tmp_var (tree type
, const char *prefix
)
458 /* We don't allow types that are addressable (meaning we can't make copies),
459 or incomplete. We also used to reject every variable size objects here,
460 but now support those for which a constant upper bound can be obtained.
461 The processing for variable sizes is performed in gimple_add_tmp_var,
462 point at which it really matters and possibly reached via paths not going
463 through this function, e.g. after direct calls to create_tmp_var_raw. */
464 gcc_assert (!TREE_ADDRESSABLE (type
) && COMPLETE_TYPE_P (type
));
466 tmp_var
= create_tmp_var_raw (type
, prefix
);
467 gimple_add_tmp_var (tmp_var
);
471 /* Create a new temporary variable declaration of type TYPE by calling
472 create_tmp_var and if TYPE is a vector or a complex number, mark the new
473 temporary as gimple register. */
476 create_tmp_reg (tree type
, const char *prefix
)
480 tmp
= create_tmp_var (type
, prefix
);
481 if (TREE_CODE (type
) == COMPLEX_TYPE
482 || TREE_CODE (type
) == VECTOR_TYPE
)
483 DECL_GIMPLE_REG_P (tmp
) = 1;
488 /* Create a temporary with a name derived from VAL. Subroutine of
489 lookup_tmp_var; nobody else should call this function. */
492 create_tmp_from_val (tree val
)
494 return create_tmp_var (TREE_TYPE (val
), get_name (val
));
497 /* Create a temporary to hold the value of VAL. If IS_FORMAL, try to reuse
498 an existing expression temporary. */
501 lookup_tmp_var (tree val
, bool is_formal
)
505 /* If not optimizing, never really reuse a temporary. local-alloc
506 won't allocate any variable that is used in more than one basic
507 block, which means it will go into memory, causing much extra
508 work in reload and final and poorer code generation, outweighing
509 the extra memory allocation here. */
510 if (!optimize
|| !is_formal
|| TREE_SIDE_EFFECTS (val
))
511 ret
= create_tmp_from_val (val
);
518 if (gimplify_ctxp
->temp_htab
== NULL
)
519 gimplify_ctxp
->temp_htab
520 = htab_create (1000, gimple_tree_hash
, gimple_tree_eq
, free
);
521 slot
= htab_find_slot (gimplify_ctxp
->temp_htab
, (void *)&elt
, INSERT
);
524 elt_p
= XNEW (elt_t
);
526 elt_p
->temp
= ret
= create_tmp_from_val (val
);
527 *slot
= (void *) elt_p
;
531 elt_p
= (elt_t
*) *slot
;
540 /* Return true if T is a CALL_EXPR or an expression that can be
541 assigned to a temporary. Note that this predicate should only be
542 used during gimplification. See the rationale for this in
543 gimplify_modify_expr. */
546 is_gimple_reg_rhs_or_call (tree t
)
548 return (get_gimple_rhs_class (TREE_CODE (t
)) != GIMPLE_INVALID_RHS
549 || TREE_CODE (t
) == CALL_EXPR
);
552 /* Return true if T is a valid memory RHS or a CALL_EXPR. Note that
553 this predicate should only be used during gimplification. See the
554 rationale for this in gimplify_modify_expr. */
557 is_gimple_mem_rhs_or_call (tree t
)
559 /* If we're dealing with a renamable type, either source or dest must be
560 a renamed variable. */
561 if (is_gimple_reg_type (TREE_TYPE (t
)))
562 return is_gimple_val (t
);
564 return (is_gimple_val (t
) || is_gimple_lvalue (t
)
565 || TREE_CODE (t
) == CALL_EXPR
);
568 /* Helper for get_formal_tmp_var and get_initialized_tmp_var. */
571 internal_get_tmp_var (tree val
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
576 /* Notice that we explicitly allow VAL to be a CALL_EXPR so that we
577 can create an INIT_EXPR and convert it into a GIMPLE_CALL below. */
578 gimplify_expr (&val
, pre_p
, post_p
, is_gimple_reg_rhs_or_call
,
581 t
= lookup_tmp_var (val
, is_formal
);
584 && (TREE_CODE (TREE_TYPE (t
)) == COMPLEX_TYPE
585 || TREE_CODE (TREE_TYPE (t
)) == VECTOR_TYPE
))
586 DECL_GIMPLE_REG_P (t
) = 1;
588 mod
= build2 (INIT_EXPR
, TREE_TYPE (t
), t
, unshare_expr (val
));
590 if (EXPR_HAS_LOCATION (val
))
591 SET_EXPR_LOCATION (mod
, EXPR_LOCATION (val
));
593 SET_EXPR_LOCATION (mod
, input_location
);
595 /* gimplify_modify_expr might want to reduce this further. */
596 gimplify_and_add (mod
, pre_p
);
599 /* If we're gimplifying into ssa, gimplify_modify_expr will have
600 given our temporary an SSA name. Find and return it. */
601 if (gimplify_ctxp
->into_ssa
)
603 gimple last
= gimple_seq_last_stmt (*pre_p
);
604 t
= gimple_get_lhs (last
);
610 /* Returns a formal temporary variable initialized with VAL. PRE_P is as
611 in gimplify_expr. Only use this function if:
613 1) The value of the unfactored expression represented by VAL will not
614 change between the initialization and use of the temporary, and
615 2) The temporary will not be otherwise modified.
617 For instance, #1 means that this is inappropriate for SAVE_EXPR temps,
618 and #2 means it is inappropriate for && temps.
620 For other cases, use get_initialized_tmp_var instead. */
623 get_formal_tmp_var (tree val
, gimple_seq
*pre_p
)
625 return internal_get_tmp_var (val
, pre_p
, NULL
, true);
628 /* Returns a temporary variable initialized with VAL. PRE_P and POST_P
629 are as in gimplify_expr. */
632 get_initialized_tmp_var (tree val
, gimple_seq
*pre_p
, gimple_seq
*post_p
)
634 return internal_get_tmp_var (val
, pre_p
, post_p
, false);
637 /* Declares all the variables in VARS in SCOPE. If DEBUG_INFO is
638 true, generate debug info for them; otherwise don't. */
641 declare_vars (tree vars
, gimple scope
, bool debug_info
)
648 gcc_assert (gimple_code (scope
) == GIMPLE_BIND
);
650 temps
= nreverse (last
);
652 block
= gimple_bind_block (scope
);
653 gcc_assert (!block
|| TREE_CODE (block
) == BLOCK
);
654 if (!block
|| !debug_info
)
656 DECL_CHAIN (last
) = gimple_bind_vars (scope
);
657 gimple_bind_set_vars (scope
, temps
);
661 /* We need to attach the nodes both to the BIND_EXPR and to its
662 associated BLOCK for debugging purposes. The key point here
663 is that the BLOCK_VARS of the BIND_EXPR_BLOCK of a BIND_EXPR
664 is a subchain of the BIND_EXPR_VARS of the BIND_EXPR. */
665 if (BLOCK_VARS (block
))
666 BLOCK_VARS (block
) = chainon (BLOCK_VARS (block
), temps
);
669 gimple_bind_set_vars (scope
,
670 chainon (gimple_bind_vars (scope
), temps
));
671 BLOCK_VARS (block
) = temps
;
677 /* For VAR a VAR_DECL of variable size, try to find a constant upper bound
678 for the size and adjust DECL_SIZE/DECL_SIZE_UNIT accordingly. Abort if
679 no such upper bound can be obtained. */
682 force_constant_size (tree var
)
684 /* The only attempt we make is by querying the maximum size of objects
685 of the variable's type. */
687 HOST_WIDE_INT max_size
;
689 gcc_assert (TREE_CODE (var
) == VAR_DECL
);
691 max_size
= max_int_size_in_bytes (TREE_TYPE (var
));
693 gcc_assert (max_size
>= 0);
696 = build_int_cst (TREE_TYPE (DECL_SIZE_UNIT (var
)), max_size
);
698 = build_int_cst (TREE_TYPE (DECL_SIZE (var
)), max_size
* BITS_PER_UNIT
);
702 gimple_add_tmp_var (tree tmp
)
704 gcc_assert (!DECL_CHAIN (tmp
) && !DECL_SEEN_IN_BIND_EXPR_P (tmp
));
706 /* Later processing assumes that the object size is constant, which might
707 not be true at this point. Force the use of a constant upper bound in
709 if (!host_integerp (DECL_SIZE_UNIT (tmp
), 1))
710 force_constant_size (tmp
);
712 DECL_CONTEXT (tmp
) = current_function_decl
;
713 DECL_SEEN_IN_BIND_EXPR_P (tmp
) = 1;
717 DECL_CHAIN (tmp
) = gimplify_ctxp
->temps
;
718 gimplify_ctxp
->temps
= tmp
;
720 /* Mark temporaries local within the nearest enclosing parallel. */
721 if (gimplify_omp_ctxp
)
723 struct gimplify_omp_ctx
*ctx
= gimplify_omp_ctxp
;
724 while (ctx
&& ctx
->region_type
== ORT_WORKSHARE
)
725 ctx
= ctx
->outer_context
;
727 omp_add_variable (ctx
, tmp
, GOVD_LOCAL
| GOVD_SEEN
);
736 /* This case is for nested functions. We need to expose the locals
738 body_seq
= gimple_body (current_function_decl
);
739 declare_vars (tmp
, gimple_seq_first_stmt (body_seq
), false);
743 /* Determines whether to assign a location to the statement GS. */
746 should_carry_location_p (gimple gs
)
748 /* Don't emit a line note for a label. We particularly don't want to
749 emit one for the break label, since it doesn't actually correspond
750 to the beginning of the loop/switch. */
751 if (gimple_code (gs
) == GIMPLE_LABEL
)
758 /* Return true if a location should not be emitted for this statement
759 by annotate_one_with_location. */
762 gimple_do_not_emit_location_p (gimple g
)
764 return gimple_plf (g
, GF_PLF_1
);
767 /* Mark statement G so a location will not be emitted by
768 annotate_one_with_location. */
771 gimple_set_do_not_emit_location (gimple g
)
773 /* The PLF flags are initialized to 0 when a new tuple is created,
774 so no need to initialize it anywhere. */
775 gimple_set_plf (g
, GF_PLF_1
, true);
778 /* Set the location for gimple statement GS to LOCATION. */
781 annotate_one_with_location (gimple gs
, location_t location
)
783 if (!gimple_has_location (gs
)
784 && !gimple_do_not_emit_location_p (gs
)
785 && should_carry_location_p (gs
))
786 gimple_set_location (gs
, location
);
790 /* Set LOCATION for all the statements after iterator GSI in sequence
791 SEQ. If GSI is pointing to the end of the sequence, start with the
792 first statement in SEQ. */
795 annotate_all_with_location_after (gimple_seq seq
, gimple_stmt_iterator gsi
,
799 gsi
= gsi_start (seq
);
803 for (; !gsi_end_p (gsi
); gsi_next (&gsi
))
804 annotate_one_with_location (gsi_stmt (gsi
), location
);
808 /* Set the location for all the statements in a sequence STMT_P to LOCATION. */
811 annotate_all_with_location (gimple_seq stmt_p
, location_t location
)
813 gimple_stmt_iterator i
;
815 if (gimple_seq_empty_p (stmt_p
))
818 for (i
= gsi_start (stmt_p
); !gsi_end_p (i
); gsi_next (&i
))
820 gimple gs
= gsi_stmt (i
);
821 annotate_one_with_location (gs
, location
);
825 /* This page contains routines to unshare tree nodes, i.e. to duplicate tree
826 nodes that are referenced more than once in GENERIC functions. This is
827 necessary because gimplification (translation into GIMPLE) is performed
828 by modifying tree nodes in-place, so gimplication of a shared node in a
829 first context could generate an invalid GIMPLE form in a second context.
831 This is achieved with a simple mark/copy/unmark algorithm that walks the
832 GENERIC representation top-down, marks nodes with TREE_VISITED the first
833 time it encounters them, duplicates them if they already have TREE_VISITED
834 set, and finally removes the TREE_VISITED marks it has set.
836 The algorithm works only at the function level, i.e. it generates a GENERIC
837 representation of a function with no nodes shared within the function when
838 passed a GENERIC function (except for nodes that are allowed to be shared).
840 At the global level, it is also necessary to unshare tree nodes that are
841 referenced in more than one function, for the same aforementioned reason.
842 This requires some cooperation from the front-end. There are 2 strategies:
844 1. Manual unsharing. The front-end needs to call unshare_expr on every
845 expression that might end up being shared across functions.
847 2. Deep unsharing. This is an extension of regular unsharing. Instead
848 of calling unshare_expr on expressions that might be shared across
849 functions, the front-end pre-marks them with TREE_VISITED. This will
850 ensure that they are unshared on the first reference within functions
851 when the regular unsharing algorithm runs. The counterpart is that
852 this algorithm must look deeper than for manual unsharing, which is
853 specified by LANG_HOOKS_DEEP_UNSHARING.
855 If there are only few specific cases of node sharing across functions, it is
856 probably easier for a front-end to unshare the expressions manually. On the
857 contrary, if the expressions generated at the global level are as widespread
858 as expressions generated within functions, deep unsharing is very likely the
861 /* Similar to copy_tree_r but do not copy SAVE_EXPR or TARGET_EXPR nodes.
862 These nodes model computations that should only be done once. If we
863 were to unshare something like SAVE_EXPR(i++), the gimplification
864 process would create wrong code. */
867 mostly_copy_tree_r (tree
*tp
, int *walk_subtrees
, void *data
)
870 enum tree_code code
= TREE_CODE (t
);
872 /* Do not copy SAVE_EXPR, TARGET_EXPR or BIND_EXPR nodes themselves, but
873 copy their subtrees if we can make sure to do it only once. */
874 if (code
== SAVE_EXPR
|| code
== TARGET_EXPR
|| code
== BIND_EXPR
)
876 if (data
&& !pointer_set_insert ((struct pointer_set_t
*)data
, t
))
882 /* Stop at types, decls, constants like copy_tree_r. */
883 else if (TREE_CODE_CLASS (code
) == tcc_type
884 || TREE_CODE_CLASS (code
) == tcc_declaration
885 || TREE_CODE_CLASS (code
) == tcc_constant
886 /* We can't do anything sensible with a BLOCK used as an
887 expression, but we also can't just die when we see it
888 because of non-expression uses. So we avert our eyes
889 and cross our fingers. Silly Java. */
893 /* Cope with the statement expression extension. */
894 else if (code
== STATEMENT_LIST
)
897 /* Leave the bulk of the work to copy_tree_r itself. */
899 copy_tree_r (tp
, walk_subtrees
, NULL
);
904 /* Callback for walk_tree to unshare most of the shared trees rooted at
905 *TP. If *TP has been visited already (i.e., TREE_VISITED (*TP) == 1),
906 then *TP is deep copied by calling mostly_copy_tree_r. */
909 copy_if_shared_r (tree
*tp
, int *walk_subtrees
, void *data
)
912 enum tree_code code
= TREE_CODE (t
);
914 /* Skip types, decls, and constants. But we do want to look at their
915 types and the bounds of types. Mark them as visited so we properly
916 unmark their subtrees on the unmark pass. If we've already seen them,
917 don't look down further. */
918 if (TREE_CODE_CLASS (code
) == tcc_type
919 || TREE_CODE_CLASS (code
) == tcc_declaration
920 || TREE_CODE_CLASS (code
) == tcc_constant
)
922 if (TREE_VISITED (t
))
925 TREE_VISITED (t
) = 1;
928 /* If this node has been visited already, unshare it and don't look
930 else if (TREE_VISITED (t
))
932 walk_tree (tp
, mostly_copy_tree_r
, data
, NULL
);
936 /* Otherwise, mark the node as visited and keep looking. */
938 TREE_VISITED (t
) = 1;
943 /* Unshare most of the shared trees rooted at *TP. */
946 copy_if_shared (tree
*tp
)
948 /* If the language requires deep unsharing, we need a pointer set to make
949 sure we don't repeatedly unshare subtrees of unshareable nodes. */
950 struct pointer_set_t
*visited
951 = lang_hooks
.deep_unsharing
? pointer_set_create () : NULL
;
952 walk_tree (tp
, copy_if_shared_r
, visited
, NULL
);
954 pointer_set_destroy (visited
);
957 /* Unshare all the trees in BODY_P, a pointer into the body of FNDECL, and the
958 bodies of any nested functions if we are unsharing the entire body of
962 unshare_body (tree
*body_p
, tree fndecl
)
964 struct cgraph_node
*cgn
= cgraph_node (fndecl
);
966 copy_if_shared (body_p
);
968 if (body_p
== &DECL_SAVED_TREE (fndecl
))
969 for (cgn
= cgn
->nested
; cgn
; cgn
= cgn
->next_nested
)
970 unshare_body (&DECL_SAVED_TREE (cgn
->decl
), cgn
->decl
);
973 /* Callback for walk_tree to unmark the visited trees rooted at *TP.
974 Subtrees are walked until the first unvisited node is encountered. */
977 unmark_visited_r (tree
*tp
, int *walk_subtrees
, void *data ATTRIBUTE_UNUSED
)
981 /* If this node has been visited, unmark it and keep looking. */
982 if (TREE_VISITED (t
))
983 TREE_VISITED (t
) = 0;
985 /* Otherwise, don't look any deeper. */
992 /* Unmark the visited trees rooted at *TP. */
995 unmark_visited (tree
*tp
)
997 walk_tree (tp
, unmark_visited_r
, NULL
, NULL
);
1000 /* Likewise, but mark all trees as not visited. */
1003 unvisit_body (tree
*body_p
, tree fndecl
)
1005 struct cgraph_node
*cgn
= cgraph_node (fndecl
);
1007 unmark_visited (body_p
);
1009 if (body_p
== &DECL_SAVED_TREE (fndecl
))
1010 for (cgn
= cgn
->nested
; cgn
; cgn
= cgn
->next_nested
)
1011 unvisit_body (&DECL_SAVED_TREE (cgn
->decl
), cgn
->decl
);
1014 /* Unconditionally make an unshared copy of EXPR. This is used when using
1015 stored expressions which span multiple functions, such as BINFO_VTABLE,
1016 as the normal unsharing process can't tell that they're shared. */
1019 unshare_expr (tree expr
)
1021 walk_tree (&expr
, mostly_copy_tree_r
, NULL
, NULL
);
1025 /* WRAPPER is a code such as BIND_EXPR or CLEANUP_POINT_EXPR which can both
1026 contain statements and have a value. Assign its value to a temporary
1027 and give it void_type_node. Returns the temporary, or NULL_TREE if
1028 WRAPPER was already void. */
1031 voidify_wrapper_expr (tree wrapper
, tree temp
)
1033 tree type
= TREE_TYPE (wrapper
);
1034 if (type
&& !VOID_TYPE_P (type
))
1038 /* Set p to point to the body of the wrapper. Loop until we find
1039 something that isn't a wrapper. */
1040 for (p
= &wrapper
; p
&& *p
; )
1042 switch (TREE_CODE (*p
))
1045 TREE_SIDE_EFFECTS (*p
) = 1;
1046 TREE_TYPE (*p
) = void_type_node
;
1047 /* For a BIND_EXPR, the body is operand 1. */
1048 p
= &BIND_EXPR_BODY (*p
);
1051 case CLEANUP_POINT_EXPR
:
1052 case TRY_FINALLY_EXPR
:
1053 case TRY_CATCH_EXPR
:
1054 TREE_SIDE_EFFECTS (*p
) = 1;
1055 TREE_TYPE (*p
) = void_type_node
;
1056 p
= &TREE_OPERAND (*p
, 0);
1059 case STATEMENT_LIST
:
1061 tree_stmt_iterator i
= tsi_last (*p
);
1062 TREE_SIDE_EFFECTS (*p
) = 1;
1063 TREE_TYPE (*p
) = void_type_node
;
1064 p
= tsi_end_p (i
) ? NULL
: tsi_stmt_ptr (i
);
1069 /* Advance to the last statement. Set all container types to void. */
1070 for (; TREE_CODE (*p
) == COMPOUND_EXPR
; p
= &TREE_OPERAND (*p
, 1))
1072 TREE_SIDE_EFFECTS (*p
) = 1;
1073 TREE_TYPE (*p
) = void_type_node
;
1083 if (p
== NULL
|| IS_EMPTY_STMT (*p
))
1087 /* The wrapper is on the RHS of an assignment that we're pushing
1089 gcc_assert (TREE_CODE (temp
) == INIT_EXPR
1090 || TREE_CODE (temp
) == MODIFY_EXPR
);
1091 TREE_OPERAND (temp
, 1) = *p
;
1096 temp
= create_tmp_var (type
, "retval");
1097 *p
= build2 (INIT_EXPR
, type
, temp
, *p
);
1106 /* Prepare calls to builtins to SAVE and RESTORE the stack as well as
1107 a temporary through which they communicate. */
1110 build_stack_save_restore (gimple
*save
, gimple
*restore
)
1114 *save
= gimple_build_call (implicit_built_in_decls
[BUILT_IN_STACK_SAVE
], 0);
1115 tmp_var
= create_tmp_var (ptr_type_node
, "saved_stack");
1116 gimple_call_set_lhs (*save
, tmp_var
);
1118 *restore
= gimple_build_call (implicit_built_in_decls
[BUILT_IN_STACK_RESTORE
],
1122 /* Gimplify a BIND_EXPR. Just voidify and recurse. */
1124 static enum gimplify_status
1125 gimplify_bind_expr (tree
*expr_p
, gimple_seq
*pre_p
)
1127 tree bind_expr
= *expr_p
;
1128 bool old_save_stack
= gimplify_ctxp
->save_stack
;
1133 tree temp
= voidify_wrapper_expr (bind_expr
, NULL
);
1135 /* Mark variables seen in this bind expr. */
1136 for (t
= BIND_EXPR_VARS (bind_expr
); t
; t
= DECL_CHAIN (t
))
1138 if (TREE_CODE (t
) == VAR_DECL
)
1140 struct gimplify_omp_ctx
*ctx
= gimplify_omp_ctxp
;
1142 /* Mark variable as local. */
1143 if (ctx
&& !is_global_var (t
)
1144 && (! DECL_SEEN_IN_BIND_EXPR_P (t
)
1145 || splay_tree_lookup (ctx
->variables
,
1146 (splay_tree_key
) t
) == NULL
))
1147 omp_add_variable (gimplify_omp_ctxp
, t
, GOVD_LOCAL
| GOVD_SEEN
);
1149 DECL_SEEN_IN_BIND_EXPR_P (t
) = 1;
1151 if (DECL_HARD_REGISTER (t
) && !is_global_var (t
) && cfun
)
1152 cfun
->has_local_explicit_reg_vars
= true;
1155 /* Preliminarily mark non-addressed complex variables as eligible
1156 for promotion to gimple registers. We'll transform their uses
1158 if ((TREE_CODE (TREE_TYPE (t
)) == COMPLEX_TYPE
1159 || TREE_CODE (TREE_TYPE (t
)) == VECTOR_TYPE
)
1160 && !TREE_THIS_VOLATILE (t
)
1161 && (TREE_CODE (t
) == VAR_DECL
&& !DECL_HARD_REGISTER (t
))
1162 && !needs_to_live_in_memory (t
))
1163 DECL_GIMPLE_REG_P (t
) = 1;
1166 gimple_bind
= gimple_build_bind (BIND_EXPR_VARS (bind_expr
), NULL
,
1167 BIND_EXPR_BLOCK (bind_expr
));
1168 gimple_push_bind_expr (gimple_bind
);
1170 gimplify_ctxp
->save_stack
= false;
1172 /* Gimplify the body into the GIMPLE_BIND tuple's body. */
1174 gimplify_stmt (&BIND_EXPR_BODY (bind_expr
), &body
);
1175 gimple_bind_set_body (gimple_bind
, body
);
1177 if (gimplify_ctxp
->save_stack
)
1179 gimple stack_save
, stack_restore
, gs
;
1180 gimple_seq cleanup
, new_body
;
1182 /* Save stack on entry and restore it on exit. Add a try_finally
1183 block to achieve this. Note that mudflap depends on the
1184 format of the emitted code: see mx_register_decls(). */
1185 build_stack_save_restore (&stack_save
, &stack_restore
);
1187 cleanup
= new_body
= NULL
;
1188 gimplify_seq_add_stmt (&cleanup
, stack_restore
);
1189 gs
= gimple_build_try (gimple_bind_body (gimple_bind
), cleanup
,
1190 GIMPLE_TRY_FINALLY
);
1192 gimplify_seq_add_stmt (&new_body
, stack_save
);
1193 gimplify_seq_add_stmt (&new_body
, gs
);
1194 gimple_bind_set_body (gimple_bind
, new_body
);
1197 gimplify_ctxp
->save_stack
= old_save_stack
;
1198 gimple_pop_bind_expr ();
1200 gimplify_seq_add_stmt (pre_p
, gimple_bind
);
1208 *expr_p
= NULL_TREE
;
1212 /* Gimplify a RETURN_EXPR. If the expression to be returned is not a
1213 GIMPLE value, it is assigned to a new temporary and the statement is
1214 re-written to return the temporary.
1216 PRE_P points to the sequence where side effects that must happen before
1217 STMT should be stored. */
1219 static enum gimplify_status
1220 gimplify_return_expr (tree stmt
, gimple_seq
*pre_p
)
1223 tree ret_expr
= TREE_OPERAND (stmt
, 0);
1224 tree result_decl
, result
;
1226 if (ret_expr
== error_mark_node
)
1230 || TREE_CODE (ret_expr
) == RESULT_DECL
1231 || ret_expr
== error_mark_node
)
1233 gimple ret
= gimple_build_return (ret_expr
);
1234 gimple_set_no_warning (ret
, TREE_NO_WARNING (stmt
));
1235 gimplify_seq_add_stmt (pre_p
, ret
);
1239 if (VOID_TYPE_P (TREE_TYPE (TREE_TYPE (current_function_decl
))))
1240 result_decl
= NULL_TREE
;
1243 result_decl
= TREE_OPERAND (ret_expr
, 0);
1245 /* See through a return by reference. */
1246 if (TREE_CODE (result_decl
) == INDIRECT_REF
)
1247 result_decl
= TREE_OPERAND (result_decl
, 0);
1249 gcc_assert ((TREE_CODE (ret_expr
) == MODIFY_EXPR
1250 || TREE_CODE (ret_expr
) == INIT_EXPR
)
1251 && TREE_CODE (result_decl
) == RESULT_DECL
);
1254 /* If aggregate_value_p is true, then we can return the bare RESULT_DECL.
1255 Recall that aggregate_value_p is FALSE for any aggregate type that is
1256 returned in registers. If we're returning values in registers, then
1257 we don't want to extend the lifetime of the RESULT_DECL, particularly
1258 across another call. In addition, for those aggregates for which
1259 hard_function_value generates a PARALLEL, we'll die during normal
1260 expansion of structure assignments; there's special code in expand_return
1261 to handle this case that does not exist in expand_expr. */
1264 else if (aggregate_value_p (result_decl
, TREE_TYPE (current_function_decl
)))
1266 if (TREE_CODE (DECL_SIZE (result_decl
)) != INTEGER_CST
)
1268 if (!TYPE_SIZES_GIMPLIFIED (TREE_TYPE (result_decl
)))
1269 gimplify_type_sizes (TREE_TYPE (result_decl
), pre_p
);
1270 /* Note that we don't use gimplify_vla_decl because the RESULT_DECL
1271 should be effectively allocated by the caller, i.e. all calls to
1272 this function must be subject to the Return Slot Optimization. */
1273 gimplify_one_sizepos (&DECL_SIZE (result_decl
), pre_p
);
1274 gimplify_one_sizepos (&DECL_SIZE_UNIT (result_decl
), pre_p
);
1276 result
= result_decl
;
1278 else if (gimplify_ctxp
->return_temp
)
1279 result
= gimplify_ctxp
->return_temp
;
1282 result
= create_tmp_reg (TREE_TYPE (result_decl
), NULL
);
1284 /* ??? With complex control flow (usually involving abnormal edges),
1285 we can wind up warning about an uninitialized value for this. Due
1286 to how this variable is constructed and initialized, this is never
1287 true. Give up and never warn. */
1288 TREE_NO_WARNING (result
) = 1;
1290 gimplify_ctxp
->return_temp
= result
;
1293 /* Smash the lhs of the MODIFY_EXPR to the temporary we plan to use.
1294 Then gimplify the whole thing. */
1295 if (result
!= result_decl
)
1296 TREE_OPERAND (ret_expr
, 0) = result
;
1298 gimplify_and_add (TREE_OPERAND (stmt
, 0), pre_p
);
1300 ret
= gimple_build_return (result
);
1301 gimple_set_no_warning (ret
, TREE_NO_WARNING (stmt
));
1302 gimplify_seq_add_stmt (pre_p
, ret
);
1308 gimplify_vla_decl (tree decl
, gimple_seq
*seq_p
)
1310 /* This is a variable-sized decl. Simplify its size and mark it
1311 for deferred expansion. Note that mudflap depends on the format
1312 of the emitted code: see mx_register_decls(). */
1313 tree t
, addr
, ptr_type
;
1315 gimplify_one_sizepos (&DECL_SIZE (decl
), seq_p
);
1316 gimplify_one_sizepos (&DECL_SIZE_UNIT (decl
), seq_p
);
1318 /* All occurrences of this decl in final gimplified code will be
1319 replaced by indirection. Setting DECL_VALUE_EXPR does two
1320 things: First, it lets the rest of the gimplifier know what
1321 replacement to use. Second, it lets the debug info know
1322 where to find the value. */
1323 ptr_type
= build_pointer_type (TREE_TYPE (decl
));
1324 addr
= create_tmp_var (ptr_type
, get_name (decl
));
1325 DECL_IGNORED_P (addr
) = 0;
1326 t
= build_fold_indirect_ref (addr
);
1327 SET_DECL_VALUE_EXPR (decl
, t
);
1328 DECL_HAS_VALUE_EXPR_P (decl
) = 1;
1330 t
= built_in_decls
[BUILT_IN_ALLOCA
];
1331 t
= build_call_expr (t
, 1, DECL_SIZE_UNIT (decl
));
1332 /* The call has been built for a variable-sized object. */
1333 ALLOCA_FOR_VAR_P (t
) = 1;
1334 t
= fold_convert (ptr_type
, t
);
1335 t
= build2 (MODIFY_EXPR
, TREE_TYPE (addr
), addr
, t
);
1337 gimplify_and_add (t
, seq_p
);
1339 /* Indicate that we need to restore the stack level when the
1340 enclosing BIND_EXPR is exited. */
1341 gimplify_ctxp
->save_stack
= true;
1345 /* Gimplifies a DECL_EXPR node *STMT_P by making any necessary allocation
1346 and initialization explicit. */
1348 static enum gimplify_status
1349 gimplify_decl_expr (tree
*stmt_p
, gimple_seq
*seq_p
)
1351 tree stmt
= *stmt_p
;
1352 tree decl
= DECL_EXPR_DECL (stmt
);
1354 *stmt_p
= NULL_TREE
;
1356 if (TREE_TYPE (decl
) == error_mark_node
)
1359 if ((TREE_CODE (decl
) == TYPE_DECL
1360 || TREE_CODE (decl
) == VAR_DECL
)
1361 && !TYPE_SIZES_GIMPLIFIED (TREE_TYPE (decl
)))
1362 gimplify_type_sizes (TREE_TYPE (decl
), seq_p
);
1364 if (TREE_CODE (decl
) == VAR_DECL
&& !DECL_EXTERNAL (decl
))
1366 tree init
= DECL_INITIAL (decl
);
1368 if (TREE_CODE (DECL_SIZE_UNIT (decl
)) != INTEGER_CST
1369 || (!TREE_STATIC (decl
)
1370 && flag_stack_check
== GENERIC_STACK_CHECK
1371 && compare_tree_int (DECL_SIZE_UNIT (decl
),
1372 STACK_CHECK_MAX_VAR_SIZE
) > 0))
1373 gimplify_vla_decl (decl
, seq_p
);
1375 if (init
&& init
!= error_mark_node
)
1377 if (!TREE_STATIC (decl
))
1379 DECL_INITIAL (decl
) = NULL_TREE
;
1380 init
= build2 (INIT_EXPR
, void_type_node
, decl
, init
);
1381 gimplify_and_add (init
, seq_p
);
1385 /* We must still examine initializers for static variables
1386 as they may contain a label address. */
1387 walk_tree (&init
, force_labels_r
, NULL
, NULL
);
1390 /* Some front ends do not explicitly declare all anonymous
1391 artificial variables. We compensate here by declaring the
1392 variables, though it would be better if the front ends would
1393 explicitly declare them. */
1394 if (!DECL_SEEN_IN_BIND_EXPR_P (decl
)
1395 && DECL_ARTIFICIAL (decl
) && DECL_NAME (decl
) == NULL_TREE
)
1396 gimple_add_tmp_var (decl
);
1402 /* Gimplify a LOOP_EXPR. Normally this just involves gimplifying the body
1403 and replacing the LOOP_EXPR with goto, but if the loop contains an
1404 EXIT_EXPR, we need to append a label for it to jump to. */
1406 static enum gimplify_status
1407 gimplify_loop_expr (tree
*expr_p
, gimple_seq
*pre_p
)
1409 tree saved_label
= gimplify_ctxp
->exit_label
;
1410 tree start_label
= create_artificial_label (UNKNOWN_LOCATION
);
1412 gimplify_seq_add_stmt (pre_p
, gimple_build_label (start_label
));
1414 gimplify_ctxp
->exit_label
= NULL_TREE
;
1416 gimplify_and_add (LOOP_EXPR_BODY (*expr_p
), pre_p
);
1418 gimplify_seq_add_stmt (pre_p
, gimple_build_goto (start_label
));
1420 if (gimplify_ctxp
->exit_label
)
1421 gimplify_seq_add_stmt (pre_p
, gimple_build_label (gimplify_ctxp
->exit_label
));
1423 gimplify_ctxp
->exit_label
= saved_label
;
1429 /* Gimplifies a statement list onto a sequence. These may be created either
1430 by an enlightened front-end, or by shortcut_cond_expr. */
1432 static enum gimplify_status
1433 gimplify_statement_list (tree
*expr_p
, gimple_seq
*pre_p
)
1435 tree temp
= voidify_wrapper_expr (*expr_p
, NULL
);
1437 tree_stmt_iterator i
= tsi_start (*expr_p
);
1439 while (!tsi_end_p (i
))
1441 gimplify_stmt (tsi_stmt_ptr (i
), pre_p
);
1454 /* Compare two case labels. Because the front end should already have
1455 made sure that case ranges do not overlap, it is enough to only compare
1456 the CASE_LOW values of each case label. */
1459 compare_case_labels (const void *p1
, const void *p2
)
1461 const_tree
const case1
= *(const_tree
const*)p1
;
1462 const_tree
const case2
= *(const_tree
const*)p2
;
1464 /* The 'default' case label always goes first. */
1465 if (!CASE_LOW (case1
))
1467 else if (!CASE_LOW (case2
))
1470 return tree_int_cst_compare (CASE_LOW (case1
), CASE_LOW (case2
));
1474 /* Sort the case labels in LABEL_VEC in place in ascending order. */
1477 sort_case_labels (VEC(tree
,heap
)* label_vec
)
1479 size_t len
= VEC_length (tree
, label_vec
);
1480 qsort (VEC_address (tree
, label_vec
), len
, sizeof (tree
),
1481 compare_case_labels
);
1485 /* Gimplify a SWITCH_EXPR, and collect a TREE_VEC of the labels it can
1488 static enum gimplify_status
1489 gimplify_switch_expr (tree
*expr_p
, gimple_seq
*pre_p
)
1491 tree switch_expr
= *expr_p
;
1492 gimple_seq switch_body_seq
= NULL
;
1493 enum gimplify_status ret
;
1495 ret
= gimplify_expr (&SWITCH_COND (switch_expr
), pre_p
, NULL
, is_gimple_val
,
1497 if (ret
== GS_ERROR
|| ret
== GS_UNHANDLED
)
1500 if (SWITCH_BODY (switch_expr
))
1502 VEC (tree
,heap
) *labels
;
1503 VEC (tree
,heap
) *saved_labels
;
1504 tree default_case
= NULL_TREE
;
1506 gimple gimple_switch
;
1508 /* If someone can be bothered to fill in the labels, they can
1509 be bothered to null out the body too. */
1510 gcc_assert (!SWITCH_LABELS (switch_expr
));
1512 /* save old labels, get new ones from body, then restore the old
1513 labels. Save all the things from the switch body to append after. */
1514 saved_labels
= gimplify_ctxp
->case_labels
;
1515 gimplify_ctxp
->case_labels
= VEC_alloc (tree
, heap
, 8);
1517 gimplify_stmt (&SWITCH_BODY (switch_expr
), &switch_body_seq
);
1518 labels
= gimplify_ctxp
->case_labels
;
1519 gimplify_ctxp
->case_labels
= saved_labels
;
1522 while (i
< VEC_length (tree
, labels
))
1524 tree elt
= VEC_index (tree
, labels
, i
);
1525 tree low
= CASE_LOW (elt
);
1526 bool remove_element
= FALSE
;
1530 /* Discard empty ranges. */
1531 tree high
= CASE_HIGH (elt
);
1532 if (high
&& tree_int_cst_lt (high
, low
))
1533 remove_element
= TRUE
;
1537 /* The default case must be the last label in the list. */
1538 gcc_assert (!default_case
);
1540 remove_element
= TRUE
;
1544 VEC_ordered_remove (tree
, labels
, i
);
1550 if (!VEC_empty (tree
, labels
))
1551 sort_case_labels (labels
);
1555 tree type
= TREE_TYPE (switch_expr
);
1557 /* If the switch has no default label, add one, so that we jump
1558 around the switch body. If the labels already cover the whole
1559 range of type, add the default label pointing to one of the
1561 if (type
== void_type_node
)
1562 type
= TREE_TYPE (SWITCH_COND (switch_expr
));
1564 && INTEGRAL_TYPE_P (type
)
1565 && TYPE_MIN_VALUE (type
)
1566 && TYPE_MAX_VALUE (type
)
1567 && tree_int_cst_equal (CASE_LOW (VEC_index (tree
, labels
, 0)),
1568 TYPE_MIN_VALUE (type
)))
1570 tree low
, high
= CASE_HIGH (VEC_index (tree
, labels
, len
- 1));
1572 high
= CASE_LOW (VEC_index (tree
, labels
, len
- 1));
1573 if (tree_int_cst_equal (high
, TYPE_MAX_VALUE (type
)))
1575 for (i
= 1; i
< len
; i
++)
1577 high
= CASE_LOW (VEC_index (tree
, labels
, i
));
1578 low
= CASE_HIGH (VEC_index (tree
, labels
, i
- 1));
1580 low
= CASE_LOW (VEC_index (tree
, labels
, i
- 1));
1581 if ((TREE_INT_CST_LOW (low
) + 1
1582 != TREE_INT_CST_LOW (high
))
1583 || (TREE_INT_CST_HIGH (low
)
1584 + (TREE_INT_CST_LOW (high
) == 0)
1585 != TREE_INT_CST_HIGH (high
)))
1589 default_case
= build3 (CASE_LABEL_EXPR
, void_type_node
,
1590 NULL_TREE
, NULL_TREE
,
1591 CASE_LABEL (VEC_index (tree
,
1601 = build3 (CASE_LABEL_EXPR
, void_type_node
,
1602 NULL_TREE
, NULL_TREE
,
1603 create_artificial_label (UNKNOWN_LOCATION
));
1604 new_default
= gimple_build_label (CASE_LABEL (default_case
));
1605 gimplify_seq_add_stmt (&switch_body_seq
, new_default
);
1609 gimple_switch
= gimple_build_switch_vec (SWITCH_COND (switch_expr
),
1610 default_case
, labels
);
1611 gimplify_seq_add_stmt (pre_p
, gimple_switch
);
1612 gimplify_seq_add_seq (pre_p
, switch_body_seq
);
1613 VEC_free(tree
, heap
, labels
);
1616 gcc_assert (SWITCH_LABELS (switch_expr
));
1622 static enum gimplify_status
1623 gimplify_case_label_expr (tree
*expr_p
, gimple_seq
*pre_p
)
1625 struct gimplify_ctx
*ctxp
;
1626 gimple gimple_label
;
1628 /* Invalid OpenMP programs can play Duff's Device type games with
1629 #pragma omp parallel. At least in the C front end, we don't
1630 detect such invalid branches until after gimplification. */
1631 for (ctxp
= gimplify_ctxp
; ; ctxp
= ctxp
->prev_context
)
1632 if (ctxp
->case_labels
)
1635 gimple_label
= gimple_build_label (CASE_LABEL (*expr_p
));
1636 VEC_safe_push (tree
, heap
, ctxp
->case_labels
, *expr_p
);
1637 gimplify_seq_add_stmt (pre_p
, gimple_label
);
1642 /* Build a GOTO to the LABEL_DECL pointed to by LABEL_P, building it first
1646 build_and_jump (tree
*label_p
)
1648 if (label_p
== NULL
)
1649 /* If there's nowhere to jump, just fall through. */
1652 if (*label_p
== NULL_TREE
)
1654 tree label
= create_artificial_label (UNKNOWN_LOCATION
);
1658 return build1 (GOTO_EXPR
, void_type_node
, *label_p
);
1661 /* Gimplify an EXIT_EXPR by converting to a GOTO_EXPR inside a COND_EXPR.
1662 This also involves building a label to jump to and communicating it to
1663 gimplify_loop_expr through gimplify_ctxp->exit_label. */
1665 static enum gimplify_status
1666 gimplify_exit_expr (tree
*expr_p
)
1668 tree cond
= TREE_OPERAND (*expr_p
, 0);
1671 expr
= build_and_jump (&gimplify_ctxp
->exit_label
);
1672 expr
= build3 (COND_EXPR
, void_type_node
, cond
, expr
, NULL_TREE
);
1678 /* A helper function to be called via walk_tree. Mark all labels under *TP
1679 as being forced. To be called for DECL_INITIAL of static variables. */
1682 force_labels_r (tree
*tp
, int *walk_subtrees
, void *data ATTRIBUTE_UNUSED
)
1686 if (TREE_CODE (*tp
) == LABEL_DECL
)
1687 FORCED_LABEL (*tp
) = 1;
1692 /* *EXPR_P is a COMPONENT_REF being used as an rvalue. If its type is
1693 different from its canonical type, wrap the whole thing inside a
1694 NOP_EXPR and force the type of the COMPONENT_REF to be the canonical
1697 The canonical type of a COMPONENT_REF is the type of the field being
1698 referenced--unless the field is a bit-field which can be read directly
1699 in a smaller mode, in which case the canonical type is the
1700 sign-appropriate type corresponding to that mode. */
1703 canonicalize_component_ref (tree
*expr_p
)
1705 tree expr
= *expr_p
;
1708 gcc_assert (TREE_CODE (expr
) == COMPONENT_REF
);
1710 if (INTEGRAL_TYPE_P (TREE_TYPE (expr
)))
1711 type
= TREE_TYPE (get_unwidened (expr
, NULL_TREE
));
1713 type
= TREE_TYPE (TREE_OPERAND (expr
, 1));
1715 /* One could argue that all the stuff below is not necessary for
1716 the non-bitfield case and declare it a FE error if type
1717 adjustment would be needed. */
1718 if (TREE_TYPE (expr
) != type
)
1720 #ifdef ENABLE_TYPES_CHECKING
1721 tree old_type
= TREE_TYPE (expr
);
1725 /* We need to preserve qualifiers and propagate them from
1727 type_quals
= TYPE_QUALS (type
)
1728 | TYPE_QUALS (TREE_TYPE (TREE_OPERAND (expr
, 0)));
1729 if (TYPE_QUALS (type
) != type_quals
)
1730 type
= build_qualified_type (TYPE_MAIN_VARIANT (type
), type_quals
);
1732 /* Set the type of the COMPONENT_REF to the underlying type. */
1733 TREE_TYPE (expr
) = type
;
1735 #ifdef ENABLE_TYPES_CHECKING
1736 /* It is now a FE error, if the conversion from the canonical
1737 type to the original expression type is not useless. */
1738 gcc_assert (useless_type_conversion_p (old_type
, type
));
1743 /* If a NOP conversion is changing a pointer to array of foo to a pointer
1744 to foo, embed that change in the ADDR_EXPR by converting
1749 where L is the lower bound. For simplicity, only do this for constant
1751 The constraint is that the type of &array[L] is trivially convertible
1755 canonicalize_addr_expr (tree
*expr_p
)
1757 tree expr
= *expr_p
;
1758 tree addr_expr
= TREE_OPERAND (expr
, 0);
1759 tree datype
, ddatype
, pddatype
;
1761 /* We simplify only conversions from an ADDR_EXPR to a pointer type. */
1762 if (!POINTER_TYPE_P (TREE_TYPE (expr
))
1763 || TREE_CODE (addr_expr
) != ADDR_EXPR
)
1766 /* The addr_expr type should be a pointer to an array. */
1767 datype
= TREE_TYPE (TREE_TYPE (addr_expr
));
1768 if (TREE_CODE (datype
) != ARRAY_TYPE
)
1771 /* The pointer to element type shall be trivially convertible to
1772 the expression pointer type. */
1773 ddatype
= TREE_TYPE (datype
);
1774 pddatype
= build_pointer_type (ddatype
);
1775 if (!useless_type_conversion_p (TYPE_MAIN_VARIANT (TREE_TYPE (expr
)),
1779 /* The lower bound and element sizes must be constant. */
1780 if (!TYPE_SIZE_UNIT (ddatype
)
1781 || TREE_CODE (TYPE_SIZE_UNIT (ddatype
)) != INTEGER_CST
1782 || !TYPE_DOMAIN (datype
) || !TYPE_MIN_VALUE (TYPE_DOMAIN (datype
))
1783 || TREE_CODE (TYPE_MIN_VALUE (TYPE_DOMAIN (datype
))) != INTEGER_CST
)
1786 /* All checks succeeded. Build a new node to merge the cast. */
1787 *expr_p
= build4 (ARRAY_REF
, ddatype
, TREE_OPERAND (addr_expr
, 0),
1788 TYPE_MIN_VALUE (TYPE_DOMAIN (datype
)),
1789 NULL_TREE
, NULL_TREE
);
1790 *expr_p
= build1 (ADDR_EXPR
, pddatype
, *expr_p
);
1792 /* We can have stripped a required restrict qualifier above. */
1793 if (!useless_type_conversion_p (TREE_TYPE (expr
), TREE_TYPE (*expr_p
)))
1794 *expr_p
= fold_convert (TREE_TYPE (expr
), *expr_p
);
1797 /* *EXPR_P is a NOP_EXPR or CONVERT_EXPR. Remove it and/or other conversions
1798 underneath as appropriate. */
1800 static enum gimplify_status
1801 gimplify_conversion (tree
*expr_p
)
1804 location_t loc
= EXPR_LOCATION (*expr_p
);
1805 gcc_assert (CONVERT_EXPR_P (*expr_p
));
1807 /* Then strip away all but the outermost conversion. */
1808 STRIP_SIGN_NOPS (TREE_OPERAND (*expr_p
, 0));
1810 /* And remove the outermost conversion if it's useless. */
1811 if (tree_ssa_useless_type_conversion (*expr_p
))
1812 *expr_p
= TREE_OPERAND (*expr_p
, 0);
1814 /* Attempt to avoid NOP_EXPR by producing reference to a subtype.
1815 For example this fold (subclass *)&A into &A->subclass avoiding
1816 a need for statement. */
1817 if (CONVERT_EXPR_P (*expr_p
)
1818 && POINTER_TYPE_P (TREE_TYPE (*expr_p
))
1819 && POINTER_TYPE_P (TREE_TYPE (TREE_OPERAND (*expr_p
, 0)))
1820 && (tem
= maybe_fold_offset_to_address
1821 (EXPR_LOCATION (*expr_p
), TREE_OPERAND (*expr_p
, 0),
1822 integer_zero_node
, TREE_TYPE (*expr_p
))) != NULL_TREE
)
1825 /* If we still have a conversion at the toplevel,
1826 then canonicalize some constructs. */
1827 if (CONVERT_EXPR_P (*expr_p
))
1829 tree sub
= TREE_OPERAND (*expr_p
, 0);
1831 /* If a NOP conversion is changing the type of a COMPONENT_REF
1832 expression, then canonicalize its type now in order to expose more
1833 redundant conversions. */
1834 if (TREE_CODE (sub
) == COMPONENT_REF
)
1835 canonicalize_component_ref (&TREE_OPERAND (*expr_p
, 0));
1837 /* If a NOP conversion is changing a pointer to array of foo
1838 to a pointer to foo, embed that change in the ADDR_EXPR. */
1839 else if (TREE_CODE (sub
) == ADDR_EXPR
)
1840 canonicalize_addr_expr (expr_p
);
1843 /* If we have a conversion to a non-register type force the
1844 use of a VIEW_CONVERT_EXPR instead. */
1845 if (CONVERT_EXPR_P (*expr_p
) && !is_gimple_reg_type (TREE_TYPE (*expr_p
)))
1846 *expr_p
= fold_build1_loc (loc
, VIEW_CONVERT_EXPR
, TREE_TYPE (*expr_p
),
1847 TREE_OPERAND (*expr_p
, 0));
1852 /* Nonlocal VLAs seen in the current function. */
1853 static struct pointer_set_t
*nonlocal_vlas
;
1855 /* Gimplify a VAR_DECL or PARM_DECL. Returns GS_OK if we expanded a
1856 DECL_VALUE_EXPR, and it's worth re-examining things. */
1858 static enum gimplify_status
1859 gimplify_var_or_parm_decl (tree
*expr_p
)
1861 tree decl
= *expr_p
;
1863 /* ??? If this is a local variable, and it has not been seen in any
1864 outer BIND_EXPR, then it's probably the result of a duplicate
1865 declaration, for which we've already issued an error. It would
1866 be really nice if the front end wouldn't leak these at all.
1867 Currently the only known culprit is C++ destructors, as seen
1868 in g++.old-deja/g++.jason/binding.C. */
1869 if (TREE_CODE (decl
) == VAR_DECL
1870 && !DECL_SEEN_IN_BIND_EXPR_P (decl
)
1871 && !TREE_STATIC (decl
) && !DECL_EXTERNAL (decl
)
1872 && decl_function_context (decl
) == current_function_decl
)
1874 gcc_assert (seen_error ());
1878 /* When within an OpenMP context, notice uses of variables. */
1879 if (gimplify_omp_ctxp
&& omp_notice_variable (gimplify_omp_ctxp
, decl
, true))
1882 /* If the decl is an alias for another expression, substitute it now. */
1883 if (DECL_HAS_VALUE_EXPR_P (decl
))
1885 tree value_expr
= DECL_VALUE_EXPR (decl
);
1887 /* For referenced nonlocal VLAs add a decl for debugging purposes
1888 to the current function. */
1889 if (TREE_CODE (decl
) == VAR_DECL
1890 && TREE_CODE (DECL_SIZE_UNIT (decl
)) != INTEGER_CST
1891 && nonlocal_vlas
!= NULL
1892 && TREE_CODE (value_expr
) == INDIRECT_REF
1893 && TREE_CODE (TREE_OPERAND (value_expr
, 0)) == VAR_DECL
1894 && decl_function_context (decl
) != current_function_decl
)
1896 struct gimplify_omp_ctx
*ctx
= gimplify_omp_ctxp
;
1897 while (ctx
&& ctx
->region_type
== ORT_WORKSHARE
)
1898 ctx
= ctx
->outer_context
;
1899 if (!ctx
&& !pointer_set_insert (nonlocal_vlas
, decl
))
1901 tree copy
= copy_node (decl
), block
;
1903 lang_hooks
.dup_lang_specific_decl (copy
);
1904 SET_DECL_RTL (copy
, 0);
1905 TREE_USED (copy
) = 1;
1906 block
= DECL_INITIAL (current_function_decl
);
1907 DECL_CHAIN (copy
) = BLOCK_VARS (block
);
1908 BLOCK_VARS (block
) = copy
;
1909 SET_DECL_VALUE_EXPR (copy
, unshare_expr (value_expr
));
1910 DECL_HAS_VALUE_EXPR_P (copy
) = 1;
1914 *expr_p
= unshare_expr (value_expr
);
1922 /* Gimplify the COMPONENT_REF, ARRAY_REF, REALPART_EXPR or IMAGPART_EXPR
1926 : min_lval '[' val ']'
1928 | compound_lval '[' val ']'
1929 | compound_lval '.' ID
1931 This is not part of the original SIMPLE definition, which separates
1932 array and member references, but it seems reasonable to handle them
1933 together. Also, this way we don't run into problems with union
1934 aliasing; gcc requires that for accesses through a union to alias, the
1935 union reference must be explicit, which was not always the case when we
1936 were splitting up array and member refs.
1938 PRE_P points to the sequence where side effects that must happen before
1939 *EXPR_P should be stored.
1941 POST_P points to the sequence where side effects that must happen after
1942 *EXPR_P should be stored. */
1944 static enum gimplify_status
1945 gimplify_compound_lval (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
1946 fallback_t fallback
)
1949 VEC(tree
,heap
) *stack
;
1950 enum gimplify_status ret
= GS_ALL_DONE
, tret
;
1952 location_t loc
= EXPR_LOCATION (*expr_p
);
1953 tree expr
= *expr_p
;
1955 /* Create a stack of the subexpressions so later we can walk them in
1956 order from inner to outer. */
1957 stack
= VEC_alloc (tree
, heap
, 10);
1959 /* We can handle anything that get_inner_reference can deal with. */
1960 for (p
= expr_p
; ; p
= &TREE_OPERAND (*p
, 0))
1963 /* Fold INDIRECT_REFs now to turn them into ARRAY_REFs. */
1964 if (TREE_CODE (*p
) == INDIRECT_REF
)
1965 *p
= fold_indirect_ref_loc (loc
, *p
);
1967 if (handled_component_p (*p
))
1969 /* Expand DECL_VALUE_EXPR now. In some cases that may expose
1970 additional COMPONENT_REFs. */
1971 else if ((TREE_CODE (*p
) == VAR_DECL
|| TREE_CODE (*p
) == PARM_DECL
)
1972 && gimplify_var_or_parm_decl (p
) == GS_OK
)
1977 VEC_safe_push (tree
, heap
, stack
, *p
);
1980 gcc_assert (VEC_length (tree
, stack
));
1982 /* Now STACK is a stack of pointers to all the refs we've walked through
1983 and P points to the innermost expression.
1985 Java requires that we elaborated nodes in source order. That
1986 means we must gimplify the inner expression followed by each of
1987 the indices, in order. But we can't gimplify the inner
1988 expression until we deal with any variable bounds, sizes, or
1989 positions in order to deal with PLACEHOLDER_EXPRs.
1991 So we do this in three steps. First we deal with the annotations
1992 for any variables in the components, then we gimplify the base,
1993 then we gimplify any indices, from left to right. */
1994 for (i
= VEC_length (tree
, stack
) - 1; i
>= 0; i
--)
1996 tree t
= VEC_index (tree
, stack
, i
);
1998 if (TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
2000 /* Gimplify the low bound and element type size and put them into
2001 the ARRAY_REF. If these values are set, they have already been
2003 if (TREE_OPERAND (t
, 2) == NULL_TREE
)
2005 tree low
= unshare_expr (array_ref_low_bound (t
));
2006 if (!is_gimple_min_invariant (low
))
2008 TREE_OPERAND (t
, 2) = low
;
2009 tret
= gimplify_expr (&TREE_OPERAND (t
, 2), pre_p
,
2010 post_p
, is_gimple_reg
,
2012 ret
= MIN (ret
, tret
);
2016 if (!TREE_OPERAND (t
, 3))
2018 tree elmt_type
= TREE_TYPE (TREE_TYPE (TREE_OPERAND (t
, 0)));
2019 tree elmt_size
= unshare_expr (array_ref_element_size (t
));
2020 tree factor
= size_int (TYPE_ALIGN_UNIT (elmt_type
));
2022 /* Divide the element size by the alignment of the element
2024 elmt_size
= size_binop_loc (loc
, EXACT_DIV_EXPR
, elmt_size
, factor
);
2026 if (!is_gimple_min_invariant (elmt_size
))
2028 TREE_OPERAND (t
, 3) = elmt_size
;
2029 tret
= gimplify_expr (&TREE_OPERAND (t
, 3), pre_p
,
2030 post_p
, is_gimple_reg
,
2032 ret
= MIN (ret
, tret
);
2036 else if (TREE_CODE (t
) == COMPONENT_REF
)
2038 /* Set the field offset into T and gimplify it. */
2039 if (!TREE_OPERAND (t
, 2))
2041 tree offset
= unshare_expr (component_ref_field_offset (t
));
2042 tree field
= TREE_OPERAND (t
, 1);
2044 = size_int (DECL_OFFSET_ALIGN (field
) / BITS_PER_UNIT
);
2046 /* Divide the offset by its alignment. */
2047 offset
= size_binop_loc (loc
, EXACT_DIV_EXPR
, offset
, factor
);
2049 if (!is_gimple_min_invariant (offset
))
2051 TREE_OPERAND (t
, 2) = offset
;
2052 tret
= gimplify_expr (&TREE_OPERAND (t
, 2), pre_p
,
2053 post_p
, is_gimple_reg
,
2055 ret
= MIN (ret
, tret
);
2061 /* Step 2 is to gimplify the base expression. Make sure lvalue is set
2062 so as to match the min_lval predicate. Failure to do so may result
2063 in the creation of large aggregate temporaries. */
2064 tret
= gimplify_expr (p
, pre_p
, post_p
, is_gimple_min_lval
,
2065 fallback
| fb_lvalue
);
2066 ret
= MIN (ret
, tret
);
2068 /* And finally, the indices and operands to BIT_FIELD_REF. During this
2069 loop we also remove any useless conversions. */
2070 for (; VEC_length (tree
, stack
) > 0; )
2072 tree t
= VEC_pop (tree
, stack
);
2074 if (TREE_CODE (t
) == ARRAY_REF
|| TREE_CODE (t
) == ARRAY_RANGE_REF
)
2076 /* Gimplify the dimension. */
2077 if (!is_gimple_min_invariant (TREE_OPERAND (t
, 1)))
2079 tret
= gimplify_expr (&TREE_OPERAND (t
, 1), pre_p
, post_p
,
2080 is_gimple_val
, fb_rvalue
);
2081 ret
= MIN (ret
, tret
);
2084 else if (TREE_CODE (t
) == BIT_FIELD_REF
)
2086 tret
= gimplify_expr (&TREE_OPERAND (t
, 1), pre_p
, post_p
,
2087 is_gimple_val
, fb_rvalue
);
2088 ret
= MIN (ret
, tret
);
2089 tret
= gimplify_expr (&TREE_OPERAND (t
, 2), pre_p
, post_p
,
2090 is_gimple_val
, fb_rvalue
);
2091 ret
= MIN (ret
, tret
);
2094 STRIP_USELESS_TYPE_CONVERSION (TREE_OPERAND (t
, 0));
2096 /* The innermost expression P may have originally had
2097 TREE_SIDE_EFFECTS set which would have caused all the outer
2098 expressions in *EXPR_P leading to P to also have had
2099 TREE_SIDE_EFFECTS set. */
2100 recalculate_side_effects (t
);
2103 /* If the outermost expression is a COMPONENT_REF, canonicalize its type. */
2104 if ((fallback
& fb_rvalue
) && TREE_CODE (*expr_p
) == COMPONENT_REF
)
2106 canonicalize_component_ref (expr_p
);
2109 VEC_free (tree
, heap
, stack
);
2111 gcc_assert (*expr_p
== expr
|| ret
!= GS_ALL_DONE
);
2116 /* Gimplify the self modifying expression pointed to by EXPR_P
2119 PRE_P points to the list where side effects that must happen before
2120 *EXPR_P should be stored.
2122 POST_P points to the list where side effects that must happen after
2123 *EXPR_P should be stored.
2125 WANT_VALUE is nonzero iff we want to use the value of this expression
2126 in another expression. */
2128 static enum gimplify_status
2129 gimplify_self_mod_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
2132 enum tree_code code
;
2133 tree lhs
, lvalue
, rhs
, t1
;
2134 gimple_seq post
= NULL
, *orig_post_p
= post_p
;
2136 enum tree_code arith_code
;
2137 enum gimplify_status ret
;
2138 location_t loc
= EXPR_LOCATION (*expr_p
);
2140 code
= TREE_CODE (*expr_p
);
2142 gcc_assert (code
== POSTINCREMENT_EXPR
|| code
== POSTDECREMENT_EXPR
2143 || code
== PREINCREMENT_EXPR
|| code
== PREDECREMENT_EXPR
);
2145 /* Prefix or postfix? */
2146 if (code
== POSTINCREMENT_EXPR
|| code
== POSTDECREMENT_EXPR
)
2147 /* Faster to treat as prefix if result is not used. */
2148 postfix
= want_value
;
2152 /* For postfix, make sure the inner expression's post side effects
2153 are executed after side effects from this expression. */
2157 /* Add or subtract? */
2158 if (code
== PREINCREMENT_EXPR
|| code
== POSTINCREMENT_EXPR
)
2159 arith_code
= PLUS_EXPR
;
2161 arith_code
= MINUS_EXPR
;
2163 /* Gimplify the LHS into a GIMPLE lvalue. */
2164 lvalue
= TREE_OPERAND (*expr_p
, 0);
2165 ret
= gimplify_expr (&lvalue
, pre_p
, post_p
, is_gimple_lvalue
, fb_lvalue
);
2166 if (ret
== GS_ERROR
)
2169 /* Extract the operands to the arithmetic operation. */
2171 rhs
= TREE_OPERAND (*expr_p
, 1);
2173 /* For postfix operator, we evaluate the LHS to an rvalue and then use
2174 that as the result value and in the postqueue operation. We also
2175 make sure to make lvalue a minimal lval, see
2176 gcc.c-torture/execute/20040313-1.c for an example where this matters. */
2179 if (!is_gimple_min_lval (lvalue
))
2181 mark_addressable (lvalue
);
2182 lvalue
= build_fold_addr_expr_loc (input_location
, lvalue
);
2183 gimplify_expr (&lvalue
, pre_p
, post_p
, is_gimple_val
, fb_rvalue
);
2184 lvalue
= build_fold_indirect_ref_loc (input_location
, lvalue
);
2186 ret
= gimplify_expr (&lhs
, pre_p
, post_p
, is_gimple_val
, fb_rvalue
);
2187 if (ret
== GS_ERROR
)
2191 /* For POINTERs increment, use POINTER_PLUS_EXPR. */
2192 if (POINTER_TYPE_P (TREE_TYPE (lhs
)))
2194 rhs
= fold_convert_loc (loc
, sizetype
, rhs
);
2195 if (arith_code
== MINUS_EXPR
)
2196 rhs
= fold_build1_loc (loc
, NEGATE_EXPR
, TREE_TYPE (rhs
), rhs
);
2197 arith_code
= POINTER_PLUS_EXPR
;
2200 t1
= build2 (arith_code
, TREE_TYPE (*expr_p
), lhs
, rhs
);
2204 gimplify_assign (lvalue
, t1
, orig_post_p
);
2205 gimplify_seq_add_seq (orig_post_p
, post
);
2211 *expr_p
= build2 (MODIFY_EXPR
, TREE_TYPE (lvalue
), lvalue
, t1
);
2217 /* If *EXPR_P has a variable sized type, wrap it in a WITH_SIZE_EXPR. */
2220 maybe_with_size_expr (tree
*expr_p
)
2222 tree expr
= *expr_p
;
2223 tree type
= TREE_TYPE (expr
);
2226 /* If we've already wrapped this or the type is error_mark_node, we can't do
2228 if (TREE_CODE (expr
) == WITH_SIZE_EXPR
2229 || type
== error_mark_node
)
2232 /* If the size isn't known or is a constant, we have nothing to do. */
2233 size
= TYPE_SIZE_UNIT (type
);
2234 if (!size
|| TREE_CODE (size
) == INTEGER_CST
)
2237 /* Otherwise, make a WITH_SIZE_EXPR. */
2238 size
= unshare_expr (size
);
2239 size
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (size
, expr
);
2240 *expr_p
= build2 (WITH_SIZE_EXPR
, type
, expr
, size
);
2244 /* Helper for gimplify_call_expr. Gimplify a single argument *ARG_P
2245 Store any side-effects in PRE_P. CALL_LOCATION is the location of
2248 static enum gimplify_status
2249 gimplify_arg (tree
*arg_p
, gimple_seq
*pre_p
, location_t call_location
)
2251 bool (*test
) (tree
);
2254 /* In general, we allow lvalues for function arguments to avoid
2255 extra overhead of copying large aggregates out of even larger
2256 aggregates into temporaries only to copy the temporaries to
2257 the argument list. Make optimizers happy by pulling out to
2258 temporaries those types that fit in registers. */
2259 if (is_gimple_reg_type (TREE_TYPE (*arg_p
)))
2260 test
= is_gimple_val
, fb
= fb_rvalue
;
2262 test
= is_gimple_lvalue
, fb
= fb_either
;
2264 /* If this is a variable sized type, we must remember the size. */
2265 maybe_with_size_expr (arg_p
);
2267 /* FIXME diagnostics: This will mess up gcc.dg/Warray-bounds.c. */
2268 /* Make sure arguments have the same location as the function call
2270 protected_set_expr_location (*arg_p
, call_location
);
2272 /* There is a sequence point before a function call. Side effects in
2273 the argument list must occur before the actual call. So, when
2274 gimplifying arguments, force gimplify_expr to use an internal
2275 post queue which is then appended to the end of PRE_P. */
2276 return gimplify_expr (arg_p
, pre_p
, NULL
, test
, fb
);
2280 /* Gimplify the CALL_EXPR node *EXPR_P into the GIMPLE sequence PRE_P.
2281 WANT_VALUE is true if the result of the call is desired. */
2283 static enum gimplify_status
2284 gimplify_call_expr (tree
*expr_p
, gimple_seq
*pre_p
, bool want_value
)
2286 tree fndecl
, parms
, p
;
2287 enum gimplify_status ret
;
2290 bool builtin_va_start_p
= FALSE
;
2291 location_t loc
= EXPR_LOCATION (*expr_p
);
2293 gcc_assert (TREE_CODE (*expr_p
) == CALL_EXPR
);
2295 /* For reliable diagnostics during inlining, it is necessary that
2296 every call_expr be annotated with file and line. */
2297 if (! EXPR_HAS_LOCATION (*expr_p
))
2298 SET_EXPR_LOCATION (*expr_p
, input_location
);
2300 /* This may be a call to a builtin function.
2302 Builtin function calls may be transformed into different
2303 (and more efficient) builtin function calls under certain
2304 circumstances. Unfortunately, gimplification can muck things
2305 up enough that the builtin expanders are not aware that certain
2306 transformations are still valid.
2308 So we attempt transformation/gimplification of the call before
2309 we gimplify the CALL_EXPR. At this time we do not manage to
2310 transform all calls in the same manner as the expanders do, but
2311 we do transform most of them. */
2312 fndecl
= get_callee_fndecl (*expr_p
);
2313 if (fndecl
&& DECL_BUILT_IN (fndecl
))
2315 tree new_tree
= fold_call_expr (input_location
, *expr_p
, !want_value
);
2317 if (new_tree
&& new_tree
!= *expr_p
)
2319 /* There was a transformation of this call which computes the
2320 same value, but in a more efficient way. Return and try
2326 if (DECL_BUILT_IN_CLASS (fndecl
) == BUILT_IN_NORMAL
2327 && DECL_FUNCTION_CODE (fndecl
) == BUILT_IN_VA_START
)
2329 builtin_va_start_p
= TRUE
;
2330 if (call_expr_nargs (*expr_p
) < 2)
2332 error ("too few arguments to function %<va_start%>");
2333 *expr_p
= build_empty_stmt (EXPR_LOCATION (*expr_p
));
2337 if (fold_builtin_next_arg (*expr_p
, true))
2339 *expr_p
= build_empty_stmt (EXPR_LOCATION (*expr_p
));
2345 /* There is a sequence point before the call, so any side effects in
2346 the calling expression must occur before the actual call. Force
2347 gimplify_expr to use an internal post queue. */
2348 ret
= gimplify_expr (&CALL_EXPR_FN (*expr_p
), pre_p
, NULL
,
2349 is_gimple_call_addr
, fb_rvalue
);
2351 nargs
= call_expr_nargs (*expr_p
);
2353 /* Get argument types for verification. */
2354 fndecl
= get_callee_fndecl (*expr_p
);
2357 parms
= TYPE_ARG_TYPES (TREE_TYPE (fndecl
));
2358 else if (POINTER_TYPE_P (TREE_TYPE (CALL_EXPR_FN (*expr_p
))))
2359 parms
= TYPE_ARG_TYPES (TREE_TYPE (TREE_TYPE (CALL_EXPR_FN (*expr_p
))));
2361 if (fndecl
&& DECL_ARGUMENTS (fndecl
))
2362 p
= DECL_ARGUMENTS (fndecl
);
2367 for (i
= 0; i
< nargs
&& p
; i
++, p
= TREE_CHAIN (p
))
2370 /* If the last argument is __builtin_va_arg_pack () and it is not
2371 passed as a named argument, decrease the number of CALL_EXPR
2372 arguments and set instead the CALL_EXPR_VA_ARG_PACK flag. */
2375 && TREE_CODE (CALL_EXPR_ARG (*expr_p
, nargs
- 1)) == CALL_EXPR
)
2377 tree last_arg
= CALL_EXPR_ARG (*expr_p
, nargs
- 1);
2378 tree last_arg_fndecl
= get_callee_fndecl (last_arg
);
2381 && TREE_CODE (last_arg_fndecl
) == FUNCTION_DECL
2382 && DECL_BUILT_IN_CLASS (last_arg_fndecl
) == BUILT_IN_NORMAL
2383 && DECL_FUNCTION_CODE (last_arg_fndecl
) == BUILT_IN_VA_ARG_PACK
)
2385 tree call
= *expr_p
;
2388 *expr_p
= build_call_array_loc (loc
, TREE_TYPE (call
),
2389 CALL_EXPR_FN (call
),
2390 nargs
, CALL_EXPR_ARGP (call
));
2392 /* Copy all CALL_EXPR flags, location and block, except
2393 CALL_EXPR_VA_ARG_PACK flag. */
2394 CALL_EXPR_STATIC_CHAIN (*expr_p
) = CALL_EXPR_STATIC_CHAIN (call
);
2395 CALL_EXPR_TAILCALL (*expr_p
) = CALL_EXPR_TAILCALL (call
);
2396 CALL_EXPR_RETURN_SLOT_OPT (*expr_p
)
2397 = CALL_EXPR_RETURN_SLOT_OPT (call
);
2398 CALL_FROM_THUNK_P (*expr_p
) = CALL_FROM_THUNK_P (call
);
2399 CALL_CANNOT_INLINE_P (*expr_p
) = CALL_CANNOT_INLINE_P (call
);
2400 SET_EXPR_LOCATION (*expr_p
, EXPR_LOCATION (call
));
2401 TREE_BLOCK (*expr_p
) = TREE_BLOCK (call
);
2403 /* Set CALL_EXPR_VA_ARG_PACK. */
2404 CALL_EXPR_VA_ARG_PACK (*expr_p
) = 1;
2408 /* Finally, gimplify the function arguments. */
2411 for (i
= (PUSH_ARGS_REVERSED
? nargs
- 1 : 0);
2412 PUSH_ARGS_REVERSED
? i
>= 0 : i
< nargs
;
2413 PUSH_ARGS_REVERSED
? i
-- : i
++)
2415 enum gimplify_status t
;
2417 /* Avoid gimplifying the second argument to va_start, which needs to
2418 be the plain PARM_DECL. */
2419 if ((i
!= 1) || !builtin_va_start_p
)
2421 t
= gimplify_arg (&CALL_EXPR_ARG (*expr_p
, i
), pre_p
,
2422 EXPR_LOCATION (*expr_p
));
2430 /* Verify the function result. */
2431 if (want_value
&& fndecl
2432 && VOID_TYPE_P (TREE_TYPE (TREE_TYPE (fndecl
))))
2434 error_at (loc
, "using result of function returning %<void%>");
2438 /* Try this again in case gimplification exposed something. */
2439 if (ret
!= GS_ERROR
)
2441 tree new_tree
= fold_call_expr (input_location
, *expr_p
, !want_value
);
2443 if (new_tree
&& new_tree
!= *expr_p
)
2445 /* There was a transformation of this call which computes the
2446 same value, but in a more efficient way. Return and try
2454 *expr_p
= error_mark_node
;
2458 /* If the function is "const" or "pure", then clear TREE_SIDE_EFFECTS on its
2459 decl. This allows us to eliminate redundant or useless
2460 calls to "const" functions. */
2461 if (TREE_CODE (*expr_p
) == CALL_EXPR
)
2463 int flags
= call_expr_flags (*expr_p
);
2464 if (flags
& (ECF_CONST
| ECF_PURE
)
2465 /* An infinite loop is considered a side effect. */
2466 && !(flags
& (ECF_LOOPING_CONST_OR_PURE
)))
2467 TREE_SIDE_EFFECTS (*expr_p
) = 0;
2470 /* If the value is not needed by the caller, emit a new GIMPLE_CALL
2471 and clear *EXPR_P. Otherwise, leave *EXPR_P in its gimplified
2472 form and delegate the creation of a GIMPLE_CALL to
2473 gimplify_modify_expr. This is always possible because when
2474 WANT_VALUE is true, the caller wants the result of this call into
2475 a temporary, which means that we will emit an INIT_EXPR in
2476 internal_get_tmp_var which will then be handled by
2477 gimplify_modify_expr. */
2480 /* The CALL_EXPR in *EXPR_P is already in GIMPLE form, so all we
2481 have to do is replicate it as a GIMPLE_CALL tuple. */
2482 gimple_stmt_iterator gsi
;
2483 call
= gimple_build_call_from_tree (*expr_p
);
2484 gimplify_seq_add_stmt (pre_p
, call
);
2485 gsi
= gsi_last (*pre_p
);
2487 *expr_p
= NULL_TREE
;
2493 /* Handle shortcut semantics in the predicate operand of a COND_EXPR by
2494 rewriting it into multiple COND_EXPRs, and possibly GOTO_EXPRs.
2496 TRUE_LABEL_P and FALSE_LABEL_P point to the labels to jump to if the
2497 condition is true or false, respectively. If null, we should generate
2498 our own to skip over the evaluation of this specific expression.
2500 LOCUS is the source location of the COND_EXPR.
2502 This function is the tree equivalent of do_jump.
2504 shortcut_cond_r should only be called by shortcut_cond_expr. */
2507 shortcut_cond_r (tree pred
, tree
*true_label_p
, tree
*false_label_p
,
2510 tree local_label
= NULL_TREE
;
2511 tree t
, expr
= NULL
;
2513 /* OK, it's not a simple case; we need to pull apart the COND_EXPR to
2514 retain the shortcut semantics. Just insert the gotos here;
2515 shortcut_cond_expr will append the real blocks later. */
2516 if (TREE_CODE (pred
) == TRUTH_ANDIF_EXPR
)
2518 location_t new_locus
;
2520 /* Turn if (a && b) into
2522 if (a); else goto no;
2523 if (b) goto yes; else goto no;
2526 if (false_label_p
== NULL
)
2527 false_label_p
= &local_label
;
2529 /* Keep the original source location on the first 'if'. */
2530 t
= shortcut_cond_r (TREE_OPERAND (pred
, 0), NULL
, false_label_p
, locus
);
2531 append_to_statement_list (t
, &expr
);
2533 /* Set the source location of the && on the second 'if'. */
2534 new_locus
= EXPR_HAS_LOCATION (pred
) ? EXPR_LOCATION (pred
) : locus
;
2535 t
= shortcut_cond_r (TREE_OPERAND (pred
, 1), true_label_p
, false_label_p
,
2537 append_to_statement_list (t
, &expr
);
2539 else if (TREE_CODE (pred
) == TRUTH_ORIF_EXPR
)
2541 location_t new_locus
;
2543 /* Turn if (a || b) into
2546 if (b) goto yes; else goto no;
2549 if (true_label_p
== NULL
)
2550 true_label_p
= &local_label
;
2552 /* Keep the original source location on the first 'if'. */
2553 t
= shortcut_cond_r (TREE_OPERAND (pred
, 0), true_label_p
, NULL
, locus
);
2554 append_to_statement_list (t
, &expr
);
2556 /* Set the source location of the || on the second 'if'. */
2557 new_locus
= EXPR_HAS_LOCATION (pred
) ? EXPR_LOCATION (pred
) : locus
;
2558 t
= shortcut_cond_r (TREE_OPERAND (pred
, 1), true_label_p
, false_label_p
,
2560 append_to_statement_list (t
, &expr
);
2562 else if (TREE_CODE (pred
) == COND_EXPR
)
2564 location_t new_locus
;
2566 /* As long as we're messing with gotos, turn if (a ? b : c) into
2568 if (b) goto yes; else goto no;
2570 if (c) goto yes; else goto no; */
2572 /* Keep the original source location on the first 'if'. Set the source
2573 location of the ? on the second 'if'. */
2574 new_locus
= EXPR_HAS_LOCATION (pred
) ? EXPR_LOCATION (pred
) : locus
;
2575 expr
= build3 (COND_EXPR
, void_type_node
, TREE_OPERAND (pred
, 0),
2576 shortcut_cond_r (TREE_OPERAND (pred
, 1), true_label_p
,
2577 false_label_p
, locus
),
2578 shortcut_cond_r (TREE_OPERAND (pred
, 2), true_label_p
,
2579 false_label_p
, new_locus
));
2583 expr
= build3 (COND_EXPR
, void_type_node
, pred
,
2584 build_and_jump (true_label_p
),
2585 build_and_jump (false_label_p
));
2586 SET_EXPR_LOCATION (expr
, locus
);
2591 t
= build1 (LABEL_EXPR
, void_type_node
, local_label
);
2592 append_to_statement_list (t
, &expr
);
2598 /* Given a conditional expression EXPR with short-circuit boolean
2599 predicates using TRUTH_ANDIF_EXPR or TRUTH_ORIF_EXPR, break the
2600 predicate appart into the equivalent sequence of conditionals. */
2603 shortcut_cond_expr (tree expr
)
2605 tree pred
= TREE_OPERAND (expr
, 0);
2606 tree then_
= TREE_OPERAND (expr
, 1);
2607 tree else_
= TREE_OPERAND (expr
, 2);
2608 tree true_label
, false_label
, end_label
, t
;
2610 tree
*false_label_p
;
2611 bool emit_end
, emit_false
, jump_over_else
;
2612 bool then_se
= then_
&& TREE_SIDE_EFFECTS (then_
);
2613 bool else_se
= else_
&& TREE_SIDE_EFFECTS (else_
);
2615 /* First do simple transformations. */
2618 /* If there is no 'else', turn
2621 if (a) if (b) then c. */
2622 while (TREE_CODE (pred
) == TRUTH_ANDIF_EXPR
)
2624 /* Keep the original source location on the first 'if'. */
2625 location_t locus
= EXPR_HAS_LOCATION (expr
)
2626 ? EXPR_LOCATION (expr
) : input_location
;
2627 TREE_OPERAND (expr
, 0) = TREE_OPERAND (pred
, 1);
2628 /* Set the source location of the && on the second 'if'. */
2629 if (EXPR_HAS_LOCATION (pred
))
2630 SET_EXPR_LOCATION (expr
, EXPR_LOCATION (pred
));
2631 then_
= shortcut_cond_expr (expr
);
2632 then_se
= then_
&& TREE_SIDE_EFFECTS (then_
);
2633 pred
= TREE_OPERAND (pred
, 0);
2634 expr
= build3 (COND_EXPR
, void_type_node
, pred
, then_
, NULL_TREE
);
2635 SET_EXPR_LOCATION (expr
, locus
);
2641 /* If there is no 'then', turn
2644 if (a); else if (b); else d. */
2645 while (TREE_CODE (pred
) == TRUTH_ORIF_EXPR
)
2647 /* Keep the original source location on the first 'if'. */
2648 location_t locus
= EXPR_HAS_LOCATION (expr
)
2649 ? EXPR_LOCATION (expr
) : input_location
;
2650 TREE_OPERAND (expr
, 0) = TREE_OPERAND (pred
, 1);
2651 /* Set the source location of the || on the second 'if'. */
2652 if (EXPR_HAS_LOCATION (pred
))
2653 SET_EXPR_LOCATION (expr
, EXPR_LOCATION (pred
));
2654 else_
= shortcut_cond_expr (expr
);
2655 else_se
= else_
&& TREE_SIDE_EFFECTS (else_
);
2656 pred
= TREE_OPERAND (pred
, 0);
2657 expr
= build3 (COND_EXPR
, void_type_node
, pred
, NULL_TREE
, else_
);
2658 SET_EXPR_LOCATION (expr
, locus
);
2662 /* If we're done, great. */
2663 if (TREE_CODE (pred
) != TRUTH_ANDIF_EXPR
2664 && TREE_CODE (pred
) != TRUTH_ORIF_EXPR
)
2667 /* Otherwise we need to mess with gotos. Change
2670 if (a); else goto no;
2673 and recursively gimplify the condition. */
2675 true_label
= false_label
= end_label
= NULL_TREE
;
2677 /* If our arms just jump somewhere, hijack those labels so we don't
2678 generate jumps to jumps. */
2681 && TREE_CODE (then_
) == GOTO_EXPR
2682 && TREE_CODE (GOTO_DESTINATION (then_
)) == LABEL_DECL
)
2684 true_label
= GOTO_DESTINATION (then_
);
2690 && TREE_CODE (else_
) == GOTO_EXPR
2691 && TREE_CODE (GOTO_DESTINATION (else_
)) == LABEL_DECL
)
2693 false_label
= GOTO_DESTINATION (else_
);
2698 /* If we aren't hijacking a label for the 'then' branch, it falls through. */
2700 true_label_p
= &true_label
;
2702 true_label_p
= NULL
;
2704 /* The 'else' branch also needs a label if it contains interesting code. */
2705 if (false_label
|| else_se
)
2706 false_label_p
= &false_label
;
2708 false_label_p
= NULL
;
2710 /* If there was nothing else in our arms, just forward the label(s). */
2711 if (!then_se
&& !else_se
)
2712 return shortcut_cond_r (pred
, true_label_p
, false_label_p
,
2713 EXPR_HAS_LOCATION (expr
)
2714 ? EXPR_LOCATION (expr
) : input_location
);
2716 /* If our last subexpression already has a terminal label, reuse it. */
2718 t
= expr_last (else_
);
2720 t
= expr_last (then_
);
2723 if (t
&& TREE_CODE (t
) == LABEL_EXPR
)
2724 end_label
= LABEL_EXPR_LABEL (t
);
2726 /* If we don't care about jumping to the 'else' branch, jump to the end
2727 if the condition is false. */
2729 false_label_p
= &end_label
;
2731 /* We only want to emit these labels if we aren't hijacking them. */
2732 emit_end
= (end_label
== NULL_TREE
);
2733 emit_false
= (false_label
== NULL_TREE
);
2735 /* We only emit the jump over the else clause if we have to--if the
2736 then clause may fall through. Otherwise we can wind up with a
2737 useless jump and a useless label at the end of gimplified code,
2738 which will cause us to think that this conditional as a whole
2739 falls through even if it doesn't. If we then inline a function
2740 which ends with such a condition, that can cause us to issue an
2741 inappropriate warning about control reaching the end of a
2742 non-void function. */
2743 jump_over_else
= block_may_fallthru (then_
);
2745 pred
= shortcut_cond_r (pred
, true_label_p
, false_label_p
,
2746 EXPR_HAS_LOCATION (expr
)
2747 ? EXPR_LOCATION (expr
) : input_location
);
2750 append_to_statement_list (pred
, &expr
);
2752 append_to_statement_list (then_
, &expr
);
2757 tree last
= expr_last (expr
);
2758 t
= build_and_jump (&end_label
);
2759 if (EXPR_HAS_LOCATION (last
))
2760 SET_EXPR_LOCATION (t
, EXPR_LOCATION (last
));
2761 append_to_statement_list (t
, &expr
);
2765 t
= build1 (LABEL_EXPR
, void_type_node
, false_label
);
2766 append_to_statement_list (t
, &expr
);
2768 append_to_statement_list (else_
, &expr
);
2770 if (emit_end
&& end_label
)
2772 t
= build1 (LABEL_EXPR
, void_type_node
, end_label
);
2773 append_to_statement_list (t
, &expr
);
2779 /* EXPR is used in a boolean context; make sure it has BOOLEAN_TYPE. */
2782 gimple_boolify (tree expr
)
2784 tree type
= TREE_TYPE (expr
);
2785 location_t loc
= EXPR_LOCATION (expr
);
2787 if (TREE_CODE (expr
) == NE_EXPR
2788 && TREE_CODE (TREE_OPERAND (expr
, 0)) == CALL_EXPR
2789 && integer_zerop (TREE_OPERAND (expr
, 1)))
2791 tree call
= TREE_OPERAND (expr
, 0);
2792 tree fn
= get_callee_fndecl (call
);
2794 /* For __builtin_expect ((long) (x), y) recurse into x as well
2795 if x is truth_value_p. */
2797 && DECL_BUILT_IN_CLASS (fn
) == BUILT_IN_NORMAL
2798 && DECL_FUNCTION_CODE (fn
) == BUILT_IN_EXPECT
2799 && call_expr_nargs (call
) == 2)
2801 tree arg
= CALL_EXPR_ARG (call
, 0);
2804 if (TREE_CODE (arg
) == NOP_EXPR
2805 && TREE_TYPE (arg
) == TREE_TYPE (call
))
2806 arg
= TREE_OPERAND (arg
, 0);
2807 if (truth_value_p (TREE_CODE (arg
)))
2809 arg
= gimple_boolify (arg
);
2810 CALL_EXPR_ARG (call
, 0)
2811 = fold_convert_loc (loc
, TREE_TYPE (call
), arg
);
2817 if (TREE_CODE (type
) == BOOLEAN_TYPE
)
2820 switch (TREE_CODE (expr
))
2822 case TRUTH_AND_EXPR
:
2824 case TRUTH_XOR_EXPR
:
2825 case TRUTH_ANDIF_EXPR
:
2826 case TRUTH_ORIF_EXPR
:
2827 /* Also boolify the arguments of truth exprs. */
2828 TREE_OPERAND (expr
, 1) = gimple_boolify (TREE_OPERAND (expr
, 1));
2831 case TRUTH_NOT_EXPR
:
2832 TREE_OPERAND (expr
, 0) = gimple_boolify (TREE_OPERAND (expr
, 0));
2835 case EQ_EXPR
: case NE_EXPR
:
2836 case LE_EXPR
: case GE_EXPR
: case LT_EXPR
: case GT_EXPR
:
2837 /* These expressions always produce boolean results. */
2838 TREE_TYPE (expr
) = boolean_type_node
;
2842 /* Other expressions that get here must have boolean values, but
2843 might need to be converted to the appropriate mode. */
2844 return fold_convert_loc (loc
, boolean_type_node
, expr
);
2848 /* Given a conditional expression *EXPR_P without side effects, gimplify
2849 its operands. New statements are inserted to PRE_P. */
2851 static enum gimplify_status
2852 gimplify_pure_cond_expr (tree
*expr_p
, gimple_seq
*pre_p
)
2854 tree expr
= *expr_p
, cond
;
2855 enum gimplify_status ret
, tret
;
2856 enum tree_code code
;
2858 cond
= gimple_boolify (COND_EXPR_COND (expr
));
2860 /* We need to handle && and || specially, as their gimplification
2861 creates pure cond_expr, thus leading to an infinite cycle otherwise. */
2862 code
= TREE_CODE (cond
);
2863 if (code
== TRUTH_ANDIF_EXPR
)
2864 TREE_SET_CODE (cond
, TRUTH_AND_EXPR
);
2865 else if (code
== TRUTH_ORIF_EXPR
)
2866 TREE_SET_CODE (cond
, TRUTH_OR_EXPR
);
2867 ret
= gimplify_expr (&cond
, pre_p
, NULL
, is_gimple_condexpr
, fb_rvalue
);
2868 COND_EXPR_COND (*expr_p
) = cond
;
2870 tret
= gimplify_expr (&COND_EXPR_THEN (expr
), pre_p
, NULL
,
2871 is_gimple_val
, fb_rvalue
);
2872 ret
= MIN (ret
, tret
);
2873 tret
= gimplify_expr (&COND_EXPR_ELSE (expr
), pre_p
, NULL
,
2874 is_gimple_val
, fb_rvalue
);
2876 return MIN (ret
, tret
);
2879 /* Returns true if evaluating EXPR could trap.
2880 EXPR is GENERIC, while tree_could_trap_p can be called
2884 generic_expr_could_trap_p (tree expr
)
2888 if (!expr
|| is_gimple_val (expr
))
2891 if (!EXPR_P (expr
) || tree_could_trap_p (expr
))
2894 n
= TREE_OPERAND_LENGTH (expr
);
2895 for (i
= 0; i
< n
; i
++)
2896 if (generic_expr_could_trap_p (TREE_OPERAND (expr
, i
)))
2902 /* Convert the conditional expression pointed to by EXPR_P '(p) ? a : b;'
2911 The second form is used when *EXPR_P is of type void.
2913 PRE_P points to the list where side effects that must happen before
2914 *EXPR_P should be stored. */
2916 static enum gimplify_status
2917 gimplify_cond_expr (tree
*expr_p
, gimple_seq
*pre_p
, fallback_t fallback
)
2919 tree expr
= *expr_p
;
2920 tree type
= TREE_TYPE (expr
);
2921 location_t loc
= EXPR_LOCATION (expr
);
2922 tree tmp
, arm1
, arm2
;
2923 enum gimplify_status ret
;
2924 tree label_true
, label_false
, label_cont
;
2925 bool have_then_clause_p
, have_else_clause_p
;
2927 enum tree_code pred_code
;
2928 gimple_seq seq
= NULL
;
2930 /* If this COND_EXPR has a value, copy the values into a temporary within
2932 if (!VOID_TYPE_P (type
))
2934 tree then_
= TREE_OPERAND (expr
, 1), else_
= TREE_OPERAND (expr
, 2);
2937 /* If either an rvalue is ok or we do not require an lvalue, create the
2938 temporary. But we cannot do that if the type is addressable. */
2939 if (((fallback
& fb_rvalue
) || !(fallback
& fb_lvalue
))
2940 && !TREE_ADDRESSABLE (type
))
2942 if (gimplify_ctxp
->allow_rhs_cond_expr
2943 /* If either branch has side effects or could trap, it can't be
2944 evaluated unconditionally. */
2945 && !TREE_SIDE_EFFECTS (then_
)
2946 && !generic_expr_could_trap_p (then_
)
2947 && !TREE_SIDE_EFFECTS (else_
)
2948 && !generic_expr_could_trap_p (else_
))
2949 return gimplify_pure_cond_expr (expr_p
, pre_p
);
2951 tmp
= create_tmp_var (type
, "iftmp");
2955 /* Otherwise, only create and copy references to the values. */
2958 type
= build_pointer_type (type
);
2960 if (!VOID_TYPE_P (TREE_TYPE (then_
)))
2961 then_
= build_fold_addr_expr_loc (loc
, then_
);
2963 if (!VOID_TYPE_P (TREE_TYPE (else_
)))
2964 else_
= build_fold_addr_expr_loc (loc
, else_
);
2967 = build3 (COND_EXPR
, type
, TREE_OPERAND (expr
, 0), then_
, else_
);
2969 tmp
= create_tmp_var (type
, "iftmp");
2970 result
= build_simple_mem_ref_loc (loc
, tmp
);
2973 /* Build the new then clause, `tmp = then_;'. But don't build the
2974 assignment if the value is void; in C++ it can be if it's a throw. */
2975 if (!VOID_TYPE_P (TREE_TYPE (then_
)))
2976 TREE_OPERAND (expr
, 1) = build2 (MODIFY_EXPR
, type
, tmp
, then_
);
2978 /* Similarly, build the new else clause, `tmp = else_;'. */
2979 if (!VOID_TYPE_P (TREE_TYPE (else_
)))
2980 TREE_OPERAND (expr
, 2) = build2 (MODIFY_EXPR
, type
, tmp
, else_
);
2982 TREE_TYPE (expr
) = void_type_node
;
2983 recalculate_side_effects (expr
);
2985 /* Move the COND_EXPR to the prequeue. */
2986 gimplify_stmt (&expr
, pre_p
);
2992 /* Make sure the condition has BOOLEAN_TYPE. */
2993 TREE_OPERAND (expr
, 0) = gimple_boolify (TREE_OPERAND (expr
, 0));
2995 /* Break apart && and || conditions. */
2996 if (TREE_CODE (TREE_OPERAND (expr
, 0)) == TRUTH_ANDIF_EXPR
2997 || TREE_CODE (TREE_OPERAND (expr
, 0)) == TRUTH_ORIF_EXPR
)
2999 expr
= shortcut_cond_expr (expr
);
3001 if (expr
!= *expr_p
)
3005 /* We can't rely on gimplify_expr to re-gimplify the expanded
3006 form properly, as cleanups might cause the target labels to be
3007 wrapped in a TRY_FINALLY_EXPR. To prevent that, we need to
3008 set up a conditional context. */
3009 gimple_push_condition ();
3010 gimplify_stmt (expr_p
, &seq
);
3011 gimple_pop_condition (pre_p
);
3012 gimple_seq_add_seq (pre_p
, seq
);
3018 /* Now do the normal gimplification. */
3020 /* Gimplify condition. */
3021 ret
= gimplify_expr (&TREE_OPERAND (expr
, 0), pre_p
, NULL
, is_gimple_condexpr
,
3023 if (ret
== GS_ERROR
)
3025 gcc_assert (TREE_OPERAND (expr
, 0) != NULL_TREE
);
3027 gimple_push_condition ();
3029 have_then_clause_p
= have_else_clause_p
= false;
3030 if (TREE_OPERAND (expr
, 1) != NULL
3031 && TREE_CODE (TREE_OPERAND (expr
, 1)) == GOTO_EXPR
3032 && TREE_CODE (GOTO_DESTINATION (TREE_OPERAND (expr
, 1))) == LABEL_DECL
3033 && (DECL_CONTEXT (GOTO_DESTINATION (TREE_OPERAND (expr
, 1)))
3034 == current_function_decl
)
3035 /* For -O0 avoid this optimization if the COND_EXPR and GOTO_EXPR
3036 have different locations, otherwise we end up with incorrect
3037 location information on the branches. */
3039 || !EXPR_HAS_LOCATION (expr
)
3040 || !EXPR_HAS_LOCATION (TREE_OPERAND (expr
, 1))
3041 || EXPR_LOCATION (expr
) == EXPR_LOCATION (TREE_OPERAND (expr
, 1))))
3043 label_true
= GOTO_DESTINATION (TREE_OPERAND (expr
, 1));
3044 have_then_clause_p
= true;
3047 label_true
= create_artificial_label (UNKNOWN_LOCATION
);
3048 if (TREE_OPERAND (expr
, 2) != NULL
3049 && TREE_CODE (TREE_OPERAND (expr
, 2)) == GOTO_EXPR
3050 && TREE_CODE (GOTO_DESTINATION (TREE_OPERAND (expr
, 2))) == LABEL_DECL
3051 && (DECL_CONTEXT (GOTO_DESTINATION (TREE_OPERAND (expr
, 2)))
3052 == current_function_decl
)
3053 /* For -O0 avoid this optimization if the COND_EXPR and GOTO_EXPR
3054 have different locations, otherwise we end up with incorrect
3055 location information on the branches. */
3057 || !EXPR_HAS_LOCATION (expr
)
3058 || !EXPR_HAS_LOCATION (TREE_OPERAND (expr
, 2))
3059 || EXPR_LOCATION (expr
) == EXPR_LOCATION (TREE_OPERAND (expr
, 2))))
3061 label_false
= GOTO_DESTINATION (TREE_OPERAND (expr
, 2));
3062 have_else_clause_p
= true;
3065 label_false
= create_artificial_label (UNKNOWN_LOCATION
);
3067 gimple_cond_get_ops_from_tree (COND_EXPR_COND (expr
), &pred_code
, &arm1
,
3070 gimple_cond
= gimple_build_cond (pred_code
, arm1
, arm2
, label_true
,
3073 gimplify_seq_add_stmt (&seq
, gimple_cond
);
3074 label_cont
= NULL_TREE
;
3075 if (!have_then_clause_p
)
3077 /* For if (...) {} else { code; } put label_true after
3079 if (TREE_OPERAND (expr
, 1) == NULL_TREE
3080 && !have_else_clause_p
3081 && TREE_OPERAND (expr
, 2) != NULL_TREE
)
3082 label_cont
= label_true
;
3085 gimplify_seq_add_stmt (&seq
, gimple_build_label (label_true
));
3086 have_then_clause_p
= gimplify_stmt (&TREE_OPERAND (expr
, 1), &seq
);
3087 /* For if (...) { code; } else {} or
3088 if (...) { code; } else goto label; or
3089 if (...) { code; return; } else { ... }
3090 label_cont isn't needed. */
3091 if (!have_else_clause_p
3092 && TREE_OPERAND (expr
, 2) != NULL_TREE
3093 && gimple_seq_may_fallthru (seq
))
3096 label_cont
= create_artificial_label (UNKNOWN_LOCATION
);
3098 g
= gimple_build_goto (label_cont
);
3100 /* GIMPLE_COND's are very low level; they have embedded
3101 gotos. This particular embedded goto should not be marked
3102 with the location of the original COND_EXPR, as it would
3103 correspond to the COND_EXPR's condition, not the ELSE or the
3104 THEN arms. To avoid marking it with the wrong location, flag
3105 it as "no location". */
3106 gimple_set_do_not_emit_location (g
);
3108 gimplify_seq_add_stmt (&seq
, g
);
3112 if (!have_else_clause_p
)
3114 gimplify_seq_add_stmt (&seq
, gimple_build_label (label_false
));
3115 have_else_clause_p
= gimplify_stmt (&TREE_OPERAND (expr
, 2), &seq
);
3118 gimplify_seq_add_stmt (&seq
, gimple_build_label (label_cont
));
3120 gimple_pop_condition (pre_p
);
3121 gimple_seq_add_seq (pre_p
, seq
);
3123 if (ret
== GS_ERROR
)
3125 else if (have_then_clause_p
|| have_else_clause_p
)
3129 /* Both arms are empty; replace the COND_EXPR with its predicate. */
3130 expr
= TREE_OPERAND (expr
, 0);
3131 gimplify_stmt (&expr
, pre_p
);
3138 /* Prepare the node pointed to by EXPR_P, an is_gimple_addressable expression,
3139 to be marked addressable.
3141 We cannot rely on such an expression being directly markable if a temporary
3142 has been created by the gimplification. In this case, we create another
3143 temporary and initialize it with a copy, which will become a store after we
3144 mark it addressable. This can happen if the front-end passed us something
3145 that it could not mark addressable yet, like a Fortran pass-by-reference
3146 parameter (int) floatvar. */
3149 prepare_gimple_addressable (tree
*expr_p
, gimple_seq
*seq_p
)
3151 while (handled_component_p (*expr_p
))
3152 expr_p
= &TREE_OPERAND (*expr_p
, 0);
3153 if (is_gimple_reg (*expr_p
))
3154 *expr_p
= get_initialized_tmp_var (*expr_p
, seq_p
, NULL
);
3157 /* A subroutine of gimplify_modify_expr. Replace a MODIFY_EXPR with
3158 a call to __builtin_memcpy. */
3160 static enum gimplify_status
3161 gimplify_modify_expr_to_memcpy (tree
*expr_p
, tree size
, bool want_value
,
3164 tree t
, to
, to_ptr
, from
, from_ptr
;
3166 location_t loc
= EXPR_LOCATION (*expr_p
);
3168 to
= TREE_OPERAND (*expr_p
, 0);
3169 from
= TREE_OPERAND (*expr_p
, 1);
3171 /* Mark the RHS addressable. Beware that it may not be possible to do so
3172 directly if a temporary has been created by the gimplification. */
3173 prepare_gimple_addressable (&from
, seq_p
);
3175 mark_addressable (from
);
3176 from_ptr
= build_fold_addr_expr_loc (loc
, from
);
3177 gimplify_arg (&from_ptr
, seq_p
, loc
);
3179 mark_addressable (to
);
3180 to_ptr
= build_fold_addr_expr_loc (loc
, to
);
3181 gimplify_arg (&to_ptr
, seq_p
, loc
);
3183 t
= implicit_built_in_decls
[BUILT_IN_MEMCPY
];
3185 gs
= gimple_build_call (t
, 3, to_ptr
, from_ptr
, size
);
3189 /* tmp = memcpy() */
3190 t
= create_tmp_var (TREE_TYPE (to_ptr
), NULL
);
3191 gimple_call_set_lhs (gs
, t
);
3192 gimplify_seq_add_stmt (seq_p
, gs
);
3194 *expr_p
= build_simple_mem_ref (t
);
3198 gimplify_seq_add_stmt (seq_p
, gs
);
3203 /* A subroutine of gimplify_modify_expr. Replace a MODIFY_EXPR with
3204 a call to __builtin_memset. In this case we know that the RHS is
3205 a CONSTRUCTOR with an empty element list. */
3207 static enum gimplify_status
3208 gimplify_modify_expr_to_memset (tree
*expr_p
, tree size
, bool want_value
,
3211 tree t
, from
, to
, to_ptr
;
3213 location_t loc
= EXPR_LOCATION (*expr_p
);
3215 /* Assert our assumptions, to abort instead of producing wrong code
3216 silently if they are not met. Beware that the RHS CONSTRUCTOR might
3217 not be immediately exposed. */
3218 from
= TREE_OPERAND (*expr_p
, 1);
3219 if (TREE_CODE (from
) == WITH_SIZE_EXPR
)
3220 from
= TREE_OPERAND (from
, 0);
3222 gcc_assert (TREE_CODE (from
) == CONSTRUCTOR
3223 && VEC_empty (constructor_elt
, CONSTRUCTOR_ELTS (from
)));
3226 to
= TREE_OPERAND (*expr_p
, 0);
3228 to_ptr
= build_fold_addr_expr_loc (loc
, to
);
3229 gimplify_arg (&to_ptr
, seq_p
, loc
);
3230 t
= implicit_built_in_decls
[BUILT_IN_MEMSET
];
3232 gs
= gimple_build_call (t
, 3, to_ptr
, integer_zero_node
, size
);
3236 /* tmp = memset() */
3237 t
= create_tmp_var (TREE_TYPE (to_ptr
), NULL
);
3238 gimple_call_set_lhs (gs
, t
);
3239 gimplify_seq_add_stmt (seq_p
, gs
);
3241 *expr_p
= build1 (INDIRECT_REF
, TREE_TYPE (to
), t
);
3245 gimplify_seq_add_stmt (seq_p
, gs
);
3250 /* A subroutine of gimplify_init_ctor_preeval. Called via walk_tree,
3251 determine, cautiously, if a CONSTRUCTOR overlaps the lhs of an
3252 assignment. Returns non-null if we detect a potential overlap. */
3254 struct gimplify_init_ctor_preeval_data
3256 /* The base decl of the lhs object. May be NULL, in which case we
3257 have to assume the lhs is indirect. */
3260 /* The alias set of the lhs object. */
3261 alias_set_type lhs_alias_set
;
3265 gimplify_init_ctor_preeval_1 (tree
*tp
, int *walk_subtrees
, void *xdata
)
3267 struct gimplify_init_ctor_preeval_data
*data
3268 = (struct gimplify_init_ctor_preeval_data
*) xdata
;
3271 /* If we find the base object, obviously we have overlap. */
3272 if (data
->lhs_base_decl
== t
)
3275 /* If the constructor component is indirect, determine if we have a
3276 potential overlap with the lhs. The only bits of information we
3277 have to go on at this point are addressability and alias sets. */
3278 if ((INDIRECT_REF_P (t
)
3279 || TREE_CODE (t
) == MEM_REF
)
3280 && (!data
->lhs_base_decl
|| TREE_ADDRESSABLE (data
->lhs_base_decl
))
3281 && alias_sets_conflict_p (data
->lhs_alias_set
, get_alias_set (t
)))
3284 /* If the constructor component is a call, determine if it can hide a
3285 potential overlap with the lhs through an INDIRECT_REF like above.
3286 ??? Ugh - this is completely broken. In fact this whole analysis
3287 doesn't look conservative. */
3288 if (TREE_CODE (t
) == CALL_EXPR
)
3290 tree type
, fntype
= TREE_TYPE (TREE_TYPE (CALL_EXPR_FN (t
)));
3292 for (type
= TYPE_ARG_TYPES (fntype
); type
; type
= TREE_CHAIN (type
))
3293 if (POINTER_TYPE_P (TREE_VALUE (type
))
3294 && (!data
->lhs_base_decl
|| TREE_ADDRESSABLE (data
->lhs_base_decl
))
3295 && alias_sets_conflict_p (data
->lhs_alias_set
,
3297 (TREE_TYPE (TREE_VALUE (type
)))))
3301 if (IS_TYPE_OR_DECL_P (t
))
3306 /* A subroutine of gimplify_init_constructor. Pre-evaluate EXPR,
3307 force values that overlap with the lhs (as described by *DATA)
3308 into temporaries. */
3311 gimplify_init_ctor_preeval (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
3312 struct gimplify_init_ctor_preeval_data
*data
)
3314 enum gimplify_status one
;
3316 /* If the value is constant, then there's nothing to pre-evaluate. */
3317 if (TREE_CONSTANT (*expr_p
))
3319 /* Ensure it does not have side effects, it might contain a reference to
3320 the object we're initializing. */
3321 gcc_assert (!TREE_SIDE_EFFECTS (*expr_p
));
3325 /* If the type has non-trivial constructors, we can't pre-evaluate. */
3326 if (TREE_ADDRESSABLE (TREE_TYPE (*expr_p
)))
3329 /* Recurse for nested constructors. */
3330 if (TREE_CODE (*expr_p
) == CONSTRUCTOR
)
3332 unsigned HOST_WIDE_INT ix
;
3333 constructor_elt
*ce
;
3334 VEC(constructor_elt
,gc
) *v
= CONSTRUCTOR_ELTS (*expr_p
);
3336 FOR_EACH_VEC_ELT (constructor_elt
, v
, ix
, ce
)
3337 gimplify_init_ctor_preeval (&ce
->value
, pre_p
, post_p
, data
);
3342 /* If this is a variable sized type, we must remember the size. */
3343 maybe_with_size_expr (expr_p
);
3345 /* Gimplify the constructor element to something appropriate for the rhs
3346 of a MODIFY_EXPR. Given that we know the LHS is an aggregate, we know
3347 the gimplifier will consider this a store to memory. Doing this
3348 gimplification now means that we won't have to deal with complicated
3349 language-specific trees, nor trees like SAVE_EXPR that can induce
3350 exponential search behavior. */
3351 one
= gimplify_expr (expr_p
, pre_p
, post_p
, is_gimple_mem_rhs
, fb_rvalue
);
3352 if (one
== GS_ERROR
)
3358 /* If we gimplified to a bare decl, we can be sure that it doesn't overlap
3359 with the lhs, since "a = { .x=a }" doesn't make sense. This will
3360 always be true for all scalars, since is_gimple_mem_rhs insists on a
3361 temporary variable for them. */
3362 if (DECL_P (*expr_p
))
3365 /* If this is of variable size, we have no choice but to assume it doesn't
3366 overlap since we can't make a temporary for it. */
3367 if (TREE_CODE (TYPE_SIZE (TREE_TYPE (*expr_p
))) != INTEGER_CST
)
3370 /* Otherwise, we must search for overlap ... */
3371 if (!walk_tree (expr_p
, gimplify_init_ctor_preeval_1
, data
, NULL
))
3374 /* ... and if found, force the value into a temporary. */
3375 *expr_p
= get_formal_tmp_var (*expr_p
, pre_p
);
3378 /* A subroutine of gimplify_init_ctor_eval. Create a loop for
3379 a RANGE_EXPR in a CONSTRUCTOR for an array.
3383 object[var] = value;
3390 We increment var _after_ the loop exit check because we might otherwise
3391 fail if upper == TYPE_MAX_VALUE (type for upper).
3393 Note that we never have to deal with SAVE_EXPRs here, because this has
3394 already been taken care of for us, in gimplify_init_ctor_preeval(). */
3396 static void gimplify_init_ctor_eval (tree
, VEC(constructor_elt
,gc
) *,
3397 gimple_seq
*, bool);
3400 gimplify_init_ctor_eval_range (tree object
, tree lower
, tree upper
,
3401 tree value
, tree array_elt_type
,
3402 gimple_seq
*pre_p
, bool cleared
)
3404 tree loop_entry_label
, loop_exit_label
, fall_thru_label
;
3405 tree var
, var_type
, cref
, tmp
;
3407 loop_entry_label
= create_artificial_label (UNKNOWN_LOCATION
);
3408 loop_exit_label
= create_artificial_label (UNKNOWN_LOCATION
);
3409 fall_thru_label
= create_artificial_label (UNKNOWN_LOCATION
);
3411 /* Create and initialize the index variable. */
3412 var_type
= TREE_TYPE (upper
);
3413 var
= create_tmp_var (var_type
, NULL
);
3414 gimplify_seq_add_stmt (pre_p
, gimple_build_assign (var
, lower
));
3416 /* Add the loop entry label. */
3417 gimplify_seq_add_stmt (pre_p
, gimple_build_label (loop_entry_label
));
3419 /* Build the reference. */
3420 cref
= build4 (ARRAY_REF
, array_elt_type
, unshare_expr (object
),
3421 var
, NULL_TREE
, NULL_TREE
);
3423 /* If we are a constructor, just call gimplify_init_ctor_eval to do
3424 the store. Otherwise just assign value to the reference. */
3426 if (TREE_CODE (value
) == CONSTRUCTOR
)
3427 /* NB we might have to call ourself recursively through
3428 gimplify_init_ctor_eval if the value is a constructor. */
3429 gimplify_init_ctor_eval (cref
, CONSTRUCTOR_ELTS (value
),
3432 gimplify_seq_add_stmt (pre_p
, gimple_build_assign (cref
, value
));
3434 /* We exit the loop when the index var is equal to the upper bound. */
3435 gimplify_seq_add_stmt (pre_p
,
3436 gimple_build_cond (EQ_EXPR
, var
, upper
,
3437 loop_exit_label
, fall_thru_label
));
3439 gimplify_seq_add_stmt (pre_p
, gimple_build_label (fall_thru_label
));
3441 /* Otherwise, increment the index var... */
3442 tmp
= build2 (PLUS_EXPR
, var_type
, var
,
3443 fold_convert (var_type
, integer_one_node
));
3444 gimplify_seq_add_stmt (pre_p
, gimple_build_assign (var
, tmp
));
3446 /* ...and jump back to the loop entry. */
3447 gimplify_seq_add_stmt (pre_p
, gimple_build_goto (loop_entry_label
));
3449 /* Add the loop exit label. */
3450 gimplify_seq_add_stmt (pre_p
, gimple_build_label (loop_exit_label
));
3453 /* Return true if FDECL is accessing a field that is zero sized. */
3456 zero_sized_field_decl (const_tree fdecl
)
3458 if (TREE_CODE (fdecl
) == FIELD_DECL
&& DECL_SIZE (fdecl
)
3459 && integer_zerop (DECL_SIZE (fdecl
)))
3464 /* Return true if TYPE is zero sized. */
3467 zero_sized_type (const_tree type
)
3469 if (AGGREGATE_TYPE_P (type
) && TYPE_SIZE (type
)
3470 && integer_zerop (TYPE_SIZE (type
)))
3475 /* A subroutine of gimplify_init_constructor. Generate individual
3476 MODIFY_EXPRs for a CONSTRUCTOR. OBJECT is the LHS against which the
3477 assignments should happen. ELTS is the CONSTRUCTOR_ELTS of the
3478 CONSTRUCTOR. CLEARED is true if the entire LHS object has been
3482 gimplify_init_ctor_eval (tree object
, VEC(constructor_elt
,gc
) *elts
,
3483 gimple_seq
*pre_p
, bool cleared
)
3485 tree array_elt_type
= NULL
;
3486 unsigned HOST_WIDE_INT ix
;
3487 tree purpose
, value
;
3489 if (TREE_CODE (TREE_TYPE (object
)) == ARRAY_TYPE
)
3490 array_elt_type
= TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (object
)));
3492 FOR_EACH_CONSTRUCTOR_ELT (elts
, ix
, purpose
, value
)
3496 /* NULL values are created above for gimplification errors. */
3500 if (cleared
&& initializer_zerop (value
))
3503 /* ??? Here's to hoping the front end fills in all of the indices,
3504 so we don't have to figure out what's missing ourselves. */
3505 gcc_assert (purpose
);
3507 /* Skip zero-sized fields, unless value has side-effects. This can
3508 happen with calls to functions returning a zero-sized type, which
3509 we shouldn't discard. As a number of downstream passes don't
3510 expect sets of zero-sized fields, we rely on the gimplification of
3511 the MODIFY_EXPR we make below to drop the assignment statement. */
3512 if (! TREE_SIDE_EFFECTS (value
) && zero_sized_field_decl (purpose
))
3515 /* If we have a RANGE_EXPR, we have to build a loop to assign the
3517 if (TREE_CODE (purpose
) == RANGE_EXPR
)
3519 tree lower
= TREE_OPERAND (purpose
, 0);
3520 tree upper
= TREE_OPERAND (purpose
, 1);
3522 /* If the lower bound is equal to upper, just treat it as if
3523 upper was the index. */
3524 if (simple_cst_equal (lower
, upper
))
3528 gimplify_init_ctor_eval_range (object
, lower
, upper
, value
,
3529 array_elt_type
, pre_p
, cleared
);
3536 /* Do not use bitsizetype for ARRAY_REF indices. */
3537 if (TYPE_DOMAIN (TREE_TYPE (object
)))
3538 purpose
= fold_convert (TREE_TYPE (TYPE_DOMAIN (TREE_TYPE (object
))),
3540 cref
= build4 (ARRAY_REF
, array_elt_type
, unshare_expr (object
),
3541 purpose
, NULL_TREE
, NULL_TREE
);
3545 gcc_assert (TREE_CODE (purpose
) == FIELD_DECL
);
3546 cref
= build3 (COMPONENT_REF
, TREE_TYPE (purpose
),
3547 unshare_expr (object
), purpose
, NULL_TREE
);
3550 if (TREE_CODE (value
) == CONSTRUCTOR
3551 && TREE_CODE (TREE_TYPE (value
)) != VECTOR_TYPE
)
3552 gimplify_init_ctor_eval (cref
, CONSTRUCTOR_ELTS (value
),
3556 tree init
= build2 (INIT_EXPR
, TREE_TYPE (cref
), cref
, value
);
3557 gimplify_and_add (init
, pre_p
);
3564 /* Returns the appropriate RHS predicate for this LHS. */
3567 rhs_predicate_for (tree lhs
)
3569 if (is_gimple_reg (lhs
))
3570 return is_gimple_reg_rhs_or_call
;
3572 return is_gimple_mem_rhs_or_call
;
3575 /* Gimplify a C99 compound literal expression. This just means adding
3576 the DECL_EXPR before the current statement and using its anonymous
3579 static enum gimplify_status
3580 gimplify_compound_literal_expr (tree
*expr_p
, gimple_seq
*pre_p
)
3582 tree decl_s
= COMPOUND_LITERAL_EXPR_DECL_EXPR (*expr_p
);
3583 tree decl
= DECL_EXPR_DECL (decl_s
);
3584 /* Mark the decl as addressable if the compound literal
3585 expression is addressable now, otherwise it is marked too late
3586 after we gimplify the initialization expression. */
3587 if (TREE_ADDRESSABLE (*expr_p
))
3588 TREE_ADDRESSABLE (decl
) = 1;
3590 /* Preliminarily mark non-addressed complex variables as eligible
3591 for promotion to gimple registers. We'll transform their uses
3593 if ((TREE_CODE (TREE_TYPE (decl
)) == COMPLEX_TYPE
3594 || TREE_CODE (TREE_TYPE (decl
)) == VECTOR_TYPE
)
3595 && !TREE_THIS_VOLATILE (decl
)
3596 && !needs_to_live_in_memory (decl
))
3597 DECL_GIMPLE_REG_P (decl
) = 1;
3599 /* This decl isn't mentioned in the enclosing block, so add it to the
3600 list of temps. FIXME it seems a bit of a kludge to say that
3601 anonymous artificial vars aren't pushed, but everything else is. */
3602 if (DECL_NAME (decl
) == NULL_TREE
&& !DECL_SEEN_IN_BIND_EXPR_P (decl
))
3603 gimple_add_tmp_var (decl
);
3605 gimplify_and_add (decl_s
, pre_p
);
3610 /* Optimize embedded COMPOUND_LITERAL_EXPRs within a CONSTRUCTOR,
3611 return a new CONSTRUCTOR if something changed. */
3614 optimize_compound_literals_in_ctor (tree orig_ctor
)
3616 tree ctor
= orig_ctor
;
3617 VEC(constructor_elt
,gc
) *elts
= CONSTRUCTOR_ELTS (ctor
);
3618 unsigned int idx
, num
= VEC_length (constructor_elt
, elts
);
3620 for (idx
= 0; idx
< num
; idx
++)
3622 tree value
= VEC_index (constructor_elt
, elts
, idx
)->value
;
3623 tree newval
= value
;
3624 if (TREE_CODE (value
) == CONSTRUCTOR
)
3625 newval
= optimize_compound_literals_in_ctor (value
);
3626 else if (TREE_CODE (value
) == COMPOUND_LITERAL_EXPR
)
3628 tree decl_s
= COMPOUND_LITERAL_EXPR_DECL_EXPR (value
);
3629 tree decl
= DECL_EXPR_DECL (decl_s
);
3630 tree init
= DECL_INITIAL (decl
);
3632 if (!TREE_ADDRESSABLE (value
)
3633 && !TREE_ADDRESSABLE (decl
)
3635 newval
= optimize_compound_literals_in_ctor (init
);
3637 if (newval
== value
)
3640 if (ctor
== orig_ctor
)
3642 ctor
= copy_node (orig_ctor
);
3643 CONSTRUCTOR_ELTS (ctor
) = VEC_copy (constructor_elt
, gc
, elts
);
3644 elts
= CONSTRUCTOR_ELTS (ctor
);
3646 VEC_index (constructor_elt
, elts
, idx
)->value
= newval
;
3653 /* A subroutine of gimplify_modify_expr. Break out elements of a
3654 CONSTRUCTOR used as an initializer into separate MODIFY_EXPRs.
3656 Note that we still need to clear any elements that don't have explicit
3657 initializers, so if not all elements are initialized we keep the
3658 original MODIFY_EXPR, we just remove all of the constructor elements.
3660 If NOTIFY_TEMP_CREATION is true, do not gimplify, just return
3661 GS_ERROR if we would have to create a temporary when gimplifying
3662 this constructor. Otherwise, return GS_OK.
3664 If NOTIFY_TEMP_CREATION is false, just do the gimplification. */
3666 static enum gimplify_status
3667 gimplify_init_constructor (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
3668 bool want_value
, bool notify_temp_creation
)
3670 tree object
, ctor
, type
;
3671 enum gimplify_status ret
;
3672 VEC(constructor_elt
,gc
) *elts
;
3674 gcc_assert (TREE_CODE (TREE_OPERAND (*expr_p
, 1)) == CONSTRUCTOR
);
3676 if (!notify_temp_creation
)
3678 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
3679 is_gimple_lvalue
, fb_lvalue
);
3680 if (ret
== GS_ERROR
)
3684 object
= TREE_OPERAND (*expr_p
, 0);
3685 ctor
= TREE_OPERAND (*expr_p
, 1) =
3686 optimize_compound_literals_in_ctor (TREE_OPERAND (*expr_p
, 1));
3687 type
= TREE_TYPE (ctor
);
3688 elts
= CONSTRUCTOR_ELTS (ctor
);
3691 switch (TREE_CODE (type
))
3695 case QUAL_UNION_TYPE
:
3698 struct gimplify_init_ctor_preeval_data preeval_data
;
3699 HOST_WIDE_INT num_type_elements
, num_ctor_elements
;
3700 HOST_WIDE_INT num_nonzero_elements
;
3701 bool cleared
, valid_const_initializer
;
3703 /* Aggregate types must lower constructors to initialization of
3704 individual elements. The exception is that a CONSTRUCTOR node
3705 with no elements indicates zero-initialization of the whole. */
3706 if (VEC_empty (constructor_elt
, elts
))
3708 if (notify_temp_creation
)
3713 /* Fetch information about the constructor to direct later processing.
3714 We might want to make static versions of it in various cases, and
3715 can only do so if it known to be a valid constant initializer. */
3716 valid_const_initializer
3717 = categorize_ctor_elements (ctor
, &num_nonzero_elements
,
3718 &num_ctor_elements
, &cleared
);
3720 /* If a const aggregate variable is being initialized, then it
3721 should never be a lose to promote the variable to be static. */
3722 if (valid_const_initializer
3723 && num_nonzero_elements
> 1
3724 && TREE_READONLY (object
)
3725 && TREE_CODE (object
) == VAR_DECL
3726 && (flag_merge_constants
>= 2 || !TREE_ADDRESSABLE (object
)))
3728 if (notify_temp_creation
)
3730 DECL_INITIAL (object
) = ctor
;
3731 TREE_STATIC (object
) = 1;
3732 if (!DECL_NAME (object
))
3733 DECL_NAME (object
) = create_tmp_var_name ("C");
3734 walk_tree (&DECL_INITIAL (object
), force_labels_r
, NULL
, NULL
);
3736 /* ??? C++ doesn't automatically append a .<number> to the
3737 assembler name, and even when it does, it looks a FE private
3738 data structures to figure out what that number should be,
3739 which are not set for this variable. I suppose this is
3740 important for local statics for inline functions, which aren't
3741 "local" in the object file sense. So in order to get a unique
3742 TU-local symbol, we must invoke the lhd version now. */
3743 lhd_set_decl_assembler_name (object
);
3745 *expr_p
= NULL_TREE
;
3749 /* If there are "lots" of initialized elements, even discounting
3750 those that are not address constants (and thus *must* be
3751 computed at runtime), then partition the constructor into
3752 constant and non-constant parts. Block copy the constant
3753 parts in, then generate code for the non-constant parts. */
3754 /* TODO. There's code in cp/typeck.c to do this. */
3756 num_type_elements
= count_type_elements (type
, true);
3758 /* If count_type_elements could not determine number of type elements
3759 for a constant-sized object, assume clearing is needed.
3760 Don't do this for variable-sized objects, as store_constructor
3761 will ignore the clearing of variable-sized objects. */
3762 if (num_type_elements
< 0 && int_size_in_bytes (type
) >= 0)
3764 /* If there are "lots" of zeros, then block clear the object first. */
3765 else if (num_type_elements
- num_nonzero_elements
3766 > CLEAR_RATIO (optimize_function_for_speed_p (cfun
))
3767 && num_nonzero_elements
< num_type_elements
/4)
3769 /* ??? This bit ought not be needed. For any element not present
3770 in the initializer, we should simply set them to zero. Except
3771 we'd need to *find* the elements that are not present, and that
3772 requires trickery to avoid quadratic compile-time behavior in
3773 large cases or excessive memory use in small cases. */
3774 else if (num_ctor_elements
< num_type_elements
)
3777 /* If there are "lots" of initialized elements, and all of them
3778 are valid address constants, then the entire initializer can
3779 be dropped to memory, and then memcpy'd out. Don't do this
3780 for sparse arrays, though, as it's more efficient to follow
3781 the standard CONSTRUCTOR behavior of memset followed by
3782 individual element initialization. Also don't do this for small
3783 all-zero initializers (which aren't big enough to merit
3784 clearing), and don't try to make bitwise copies of
3785 TREE_ADDRESSABLE types. */
3786 if (valid_const_initializer
3787 && !(cleared
|| num_nonzero_elements
== 0)
3788 && !TREE_ADDRESSABLE (type
))
3790 HOST_WIDE_INT size
= int_size_in_bytes (type
);
3793 /* ??? We can still get unbounded array types, at least
3794 from the C++ front end. This seems wrong, but attempt
3795 to work around it for now. */
3798 size
= int_size_in_bytes (TREE_TYPE (object
));
3800 TREE_TYPE (ctor
) = type
= TREE_TYPE (object
);
3803 /* Find the maximum alignment we can assume for the object. */
3804 /* ??? Make use of DECL_OFFSET_ALIGN. */
3805 if (DECL_P (object
))
3806 align
= DECL_ALIGN (object
);
3808 align
= TYPE_ALIGN (type
);
3811 && num_nonzero_elements
> 1
3812 && !can_move_by_pieces (size
, align
))
3814 if (notify_temp_creation
)
3817 walk_tree (&ctor
, force_labels_r
, NULL
, NULL
);
3818 ctor
= tree_output_constant_def (ctor
);
3819 if (!useless_type_conversion_p (type
, TREE_TYPE (ctor
)))
3820 ctor
= build1 (VIEW_CONVERT_EXPR
, type
, ctor
);
3821 TREE_OPERAND (*expr_p
, 1) = ctor
;
3823 /* This is no longer an assignment of a CONSTRUCTOR, but
3824 we still may have processing to do on the LHS. So
3825 pretend we didn't do anything here to let that happen. */
3826 return GS_UNHANDLED
;
3830 /* If the target is volatile, we have non-zero elements and more than
3831 one field to assign, initialize the target from a temporary. */
3832 if (TREE_THIS_VOLATILE (object
)
3833 && !TREE_ADDRESSABLE (type
)
3834 && num_nonzero_elements
> 0
3835 && VEC_length (constructor_elt
, elts
) > 1)
3837 tree temp
= create_tmp_var (TYPE_MAIN_VARIANT (type
), NULL
);
3838 TREE_OPERAND (*expr_p
, 0) = temp
;
3839 *expr_p
= build2 (COMPOUND_EXPR
, TREE_TYPE (*expr_p
),
3841 build2 (MODIFY_EXPR
, void_type_node
,
3846 if (notify_temp_creation
)
3849 /* If there are nonzero elements and if needed, pre-evaluate to capture
3850 elements overlapping with the lhs into temporaries. We must do this
3851 before clearing to fetch the values before they are zeroed-out. */
3852 if (num_nonzero_elements
> 0 && TREE_CODE (*expr_p
) != INIT_EXPR
)
3854 preeval_data
.lhs_base_decl
= get_base_address (object
);
3855 if (!DECL_P (preeval_data
.lhs_base_decl
))
3856 preeval_data
.lhs_base_decl
= NULL
;
3857 preeval_data
.lhs_alias_set
= get_alias_set (object
);
3859 gimplify_init_ctor_preeval (&TREE_OPERAND (*expr_p
, 1),
3860 pre_p
, post_p
, &preeval_data
);
3865 /* Zap the CONSTRUCTOR element list, which simplifies this case.
3866 Note that we still have to gimplify, in order to handle the
3867 case of variable sized types. Avoid shared tree structures. */
3868 CONSTRUCTOR_ELTS (ctor
) = NULL
;
3869 TREE_SIDE_EFFECTS (ctor
) = 0;
3870 object
= unshare_expr (object
);
3871 gimplify_stmt (expr_p
, pre_p
);
3874 /* If we have not block cleared the object, or if there are nonzero
3875 elements in the constructor, add assignments to the individual
3876 scalar fields of the object. */
3877 if (!cleared
|| num_nonzero_elements
> 0)
3878 gimplify_init_ctor_eval (object
, elts
, pre_p
, cleared
);
3880 *expr_p
= NULL_TREE
;
3888 if (notify_temp_creation
)
3891 /* Extract the real and imaginary parts out of the ctor. */
3892 gcc_assert (VEC_length (constructor_elt
, elts
) == 2);
3893 r
= VEC_index (constructor_elt
, elts
, 0)->value
;
3894 i
= VEC_index (constructor_elt
, elts
, 1)->value
;
3895 if (r
== NULL
|| i
== NULL
)
3897 tree zero
= fold_convert (TREE_TYPE (type
), integer_zero_node
);
3904 /* Complex types have either COMPLEX_CST or COMPLEX_EXPR to
3905 represent creation of a complex value. */
3906 if (TREE_CONSTANT (r
) && TREE_CONSTANT (i
))
3908 ctor
= build_complex (type
, r
, i
);
3909 TREE_OPERAND (*expr_p
, 1) = ctor
;
3913 ctor
= build2 (COMPLEX_EXPR
, type
, r
, i
);
3914 TREE_OPERAND (*expr_p
, 1) = ctor
;
3915 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 1),
3918 rhs_predicate_for (TREE_OPERAND (*expr_p
, 0)),
3926 unsigned HOST_WIDE_INT ix
;
3927 constructor_elt
*ce
;
3929 if (notify_temp_creation
)
3932 /* Go ahead and simplify constant constructors to VECTOR_CST. */
3933 if (TREE_CONSTANT (ctor
))
3935 bool constant_p
= true;
3938 /* Even when ctor is constant, it might contain non-*_CST
3939 elements, such as addresses or trapping values like
3940 1.0/0.0 - 1.0/0.0. Such expressions don't belong
3941 in VECTOR_CST nodes. */
3942 FOR_EACH_CONSTRUCTOR_VALUE (elts
, ix
, value
)
3943 if (!CONSTANT_CLASS_P (value
))
3951 TREE_OPERAND (*expr_p
, 1) = build_vector_from_ctor (type
, elts
);
3955 /* Don't reduce an initializer constant even if we can't
3956 make a VECTOR_CST. It won't do anything for us, and it'll
3957 prevent us from representing it as a single constant. */
3958 if (initializer_constant_valid_p (ctor
, type
))
3961 TREE_CONSTANT (ctor
) = 0;
3964 /* Vector types use CONSTRUCTOR all the way through gimple
3965 compilation as a general initializer. */
3966 FOR_EACH_VEC_ELT (constructor_elt
, elts
, ix
, ce
)
3968 enum gimplify_status tret
;
3969 tret
= gimplify_expr (&ce
->value
, pre_p
, post_p
, is_gimple_val
,
3971 if (tret
== GS_ERROR
)
3974 if (!is_gimple_reg (TREE_OPERAND (*expr_p
, 0)))
3975 TREE_OPERAND (*expr_p
, 1) = get_formal_tmp_var (ctor
, pre_p
);
3980 /* So how did we get a CONSTRUCTOR for a scalar type? */
3984 if (ret
== GS_ERROR
)
3986 else if (want_value
)
3993 /* If we have gimplified both sides of the initializer but have
3994 not emitted an assignment, do so now. */
3997 tree lhs
= TREE_OPERAND (*expr_p
, 0);
3998 tree rhs
= TREE_OPERAND (*expr_p
, 1);
3999 gimple init
= gimple_build_assign (lhs
, rhs
);
4000 gimplify_seq_add_stmt (pre_p
, init
);
4008 /* Given a pointer value OP0, return a simplified version of an
4009 indirection through OP0, or NULL_TREE if no simplification is
4010 possible. Note that the resulting type may be different from
4011 the type pointed to in the sense that it is still compatible
4012 from the langhooks point of view. */
4015 gimple_fold_indirect_ref (tree t
)
4017 tree ptype
= TREE_TYPE (t
), type
= TREE_TYPE (ptype
);
4022 subtype
= TREE_TYPE (sub
);
4023 if (!POINTER_TYPE_P (subtype
))
4026 if (TREE_CODE (sub
) == ADDR_EXPR
)
4028 tree op
= TREE_OPERAND (sub
, 0);
4029 tree optype
= TREE_TYPE (op
);
4031 if (useless_type_conversion_p (type
, optype
))
4034 /* *(foo *)&fooarray => fooarray[0] */
4035 if (TREE_CODE (optype
) == ARRAY_TYPE
4036 && TREE_CODE (TYPE_SIZE (TREE_TYPE (optype
))) == INTEGER_CST
4037 && useless_type_conversion_p (type
, TREE_TYPE (optype
)))
4039 tree type_domain
= TYPE_DOMAIN (optype
);
4040 tree min_val
= size_zero_node
;
4041 if (type_domain
&& TYPE_MIN_VALUE (type_domain
))
4042 min_val
= TYPE_MIN_VALUE (type_domain
);
4043 if (TREE_CODE (min_val
) == INTEGER_CST
)
4044 return build4 (ARRAY_REF
, type
, op
, min_val
, NULL_TREE
, NULL_TREE
);
4046 /* *(foo *)&complexfoo => __real__ complexfoo */
4047 else if (TREE_CODE (optype
) == COMPLEX_TYPE
4048 && useless_type_conversion_p (type
, TREE_TYPE (optype
)))
4049 return fold_build1 (REALPART_EXPR
, type
, op
);
4050 /* *(foo *)&vectorfoo => BIT_FIELD_REF<vectorfoo,...> */
4051 else if (TREE_CODE (optype
) == VECTOR_TYPE
4052 && useless_type_conversion_p (type
, TREE_TYPE (optype
)))
4054 tree part_width
= TYPE_SIZE (type
);
4055 tree index
= bitsize_int (0);
4056 return fold_build3 (BIT_FIELD_REF
, type
, op
, part_width
, index
);
4060 /* *(p + CST) -> ... */
4061 if (TREE_CODE (sub
) == POINTER_PLUS_EXPR
4062 && TREE_CODE (TREE_OPERAND (sub
, 1)) == INTEGER_CST
)
4064 tree addr
= TREE_OPERAND (sub
, 0);
4065 tree off
= TREE_OPERAND (sub
, 1);
4069 addrtype
= TREE_TYPE (addr
);
4071 /* ((foo*)&vectorfoo)[1] -> BIT_FIELD_REF<vectorfoo,...> */
4072 if (TREE_CODE (addr
) == ADDR_EXPR
4073 && TREE_CODE (TREE_TYPE (addrtype
)) == VECTOR_TYPE
4074 && useless_type_conversion_p (type
, TREE_TYPE (TREE_TYPE (addrtype
))))
4076 HOST_WIDE_INT offset
= tree_low_cst (off
, 0);
4077 tree part_width
= TYPE_SIZE (type
);
4078 unsigned HOST_WIDE_INT part_widthi
4079 = tree_low_cst (part_width
, 0) / BITS_PER_UNIT
;
4080 unsigned HOST_WIDE_INT indexi
= offset
* BITS_PER_UNIT
;
4081 tree index
= bitsize_int (indexi
);
4082 if (offset
/ part_widthi
4083 <= TYPE_VECTOR_SUBPARTS (TREE_TYPE (addrtype
)))
4084 return fold_build3 (BIT_FIELD_REF
, type
, TREE_OPERAND (addr
, 0),
4088 /* ((foo*)&complexfoo)[1] -> __imag__ complexfoo */
4089 if (TREE_CODE (addr
) == ADDR_EXPR
4090 && TREE_CODE (TREE_TYPE (addrtype
)) == COMPLEX_TYPE
4091 && useless_type_conversion_p (type
, TREE_TYPE (TREE_TYPE (addrtype
))))
4093 tree size
= TYPE_SIZE_UNIT (type
);
4094 if (tree_int_cst_equal (size
, off
))
4095 return fold_build1 (IMAGPART_EXPR
, type
, TREE_OPERAND (addr
, 0));
4098 /* *(p + CST) -> MEM_REF <p, CST>. */
4099 if (TREE_CODE (addr
) != ADDR_EXPR
4100 || DECL_P (TREE_OPERAND (addr
, 0)))
4101 return fold_build2 (MEM_REF
, type
,
4103 build_int_cst_wide (ptype
,
4104 TREE_INT_CST_LOW (off
),
4105 TREE_INT_CST_HIGH (off
)));
4108 /* *(foo *)fooarrptr => (*fooarrptr)[0] */
4109 if (TREE_CODE (TREE_TYPE (subtype
)) == ARRAY_TYPE
4110 && TREE_CODE (TYPE_SIZE (TREE_TYPE (TREE_TYPE (subtype
)))) == INTEGER_CST
4111 && useless_type_conversion_p (type
, TREE_TYPE (TREE_TYPE (subtype
))))
4114 tree min_val
= size_zero_node
;
4116 sub
= gimple_fold_indirect_ref (sub
);
4118 sub
= build1 (INDIRECT_REF
, TREE_TYPE (subtype
), osub
);
4119 type_domain
= TYPE_DOMAIN (TREE_TYPE (sub
));
4120 if (type_domain
&& TYPE_MIN_VALUE (type_domain
))
4121 min_val
= TYPE_MIN_VALUE (type_domain
);
4122 if (TREE_CODE (min_val
) == INTEGER_CST
)
4123 return build4 (ARRAY_REF
, type
, sub
, min_val
, NULL_TREE
, NULL_TREE
);
4129 /* Given a pointer value OP0, return a simplified version of an
4130 indirection through OP0, or NULL_TREE if no simplification is
4131 possible. This may only be applied to a rhs of an expression.
4132 Note that the resulting type may be different from the type pointed
4133 to in the sense that it is still compatible from the langhooks
4137 gimple_fold_indirect_ref_rhs (tree t
)
4139 return gimple_fold_indirect_ref (t
);
4142 /* Subroutine of gimplify_modify_expr to do simplifications of
4143 MODIFY_EXPRs based on the code of the RHS. We loop for as long as
4144 something changes. */
4146 static enum gimplify_status
4147 gimplify_modify_expr_rhs (tree
*expr_p
, tree
*from_p
, tree
*to_p
,
4148 gimple_seq
*pre_p
, gimple_seq
*post_p
,
4151 enum gimplify_status ret
= GS_UNHANDLED
;
4157 switch (TREE_CODE (*from_p
))
4160 /* If we're assigning from a read-only variable initialized with
4161 a constructor, do the direct assignment from the constructor,
4162 but only if neither source nor target are volatile since this
4163 latter assignment might end up being done on a per-field basis. */
4164 if (DECL_INITIAL (*from_p
)
4165 && TREE_READONLY (*from_p
)
4166 && !TREE_THIS_VOLATILE (*from_p
)
4167 && !TREE_THIS_VOLATILE (*to_p
)
4168 && TREE_CODE (DECL_INITIAL (*from_p
)) == CONSTRUCTOR
)
4170 tree old_from
= *from_p
;
4171 enum gimplify_status subret
;
4173 /* Move the constructor into the RHS. */
4174 *from_p
= unshare_expr (DECL_INITIAL (*from_p
));
4176 /* Let's see if gimplify_init_constructor will need to put
4178 subret
= gimplify_init_constructor (expr_p
, NULL
, NULL
,
4180 if (subret
== GS_ERROR
)
4182 /* If so, revert the change. */
4194 /* If we have code like
4198 where the type of "x" is a (possibly cv-qualified variant
4199 of "A"), treat the entire expression as identical to "x".
4200 This kind of code arises in C++ when an object is bound
4201 to a const reference, and if "x" is a TARGET_EXPR we want
4202 to take advantage of the optimization below. */
4203 bool volatile_p
= TREE_THIS_VOLATILE (*from_p
);
4204 tree t
= gimple_fold_indirect_ref_rhs (TREE_OPERAND (*from_p
, 0));
4207 if (TREE_THIS_VOLATILE (t
) != volatile_p
)
4209 if (TREE_CODE_CLASS (TREE_CODE (t
)) == tcc_declaration
)
4210 t
= build_simple_mem_ref_loc (EXPR_LOCATION (*from_p
),
4211 build_fold_addr_expr (t
));
4212 if (REFERENCE_CLASS_P (t
))
4213 TREE_THIS_VOLATILE (t
) = volatile_p
;
4224 /* If we are initializing something from a TARGET_EXPR, strip the
4225 TARGET_EXPR and initialize it directly, if possible. This can't
4226 be done if the initializer is void, since that implies that the
4227 temporary is set in some non-trivial way.
4229 ??? What about code that pulls out the temp and uses it
4230 elsewhere? I think that such code never uses the TARGET_EXPR as
4231 an initializer. If I'm wrong, we'll die because the temp won't
4232 have any RTL. In that case, I guess we'll need to replace
4233 references somehow. */
4234 tree init
= TARGET_EXPR_INITIAL (*from_p
);
4237 && !VOID_TYPE_P (TREE_TYPE (init
)))
4247 /* Remove any COMPOUND_EXPR in the RHS so the following cases will be
4249 gimplify_compound_expr (from_p
, pre_p
, true);
4255 /* If we already made some changes, let the front end have a
4256 crack at this before we break it down. */
4257 if (ret
!= GS_UNHANDLED
)
4259 /* If we're initializing from a CONSTRUCTOR, break this into
4260 individual MODIFY_EXPRs. */
4261 return gimplify_init_constructor (expr_p
, pre_p
, post_p
, want_value
,
4265 /* If we're assigning to a non-register type, push the assignment
4266 down into the branches. This is mandatory for ADDRESSABLE types,
4267 since we cannot generate temporaries for such, but it saves a
4268 copy in other cases as well. */
4269 if (!is_gimple_reg_type (TREE_TYPE (*from_p
)))
4271 /* This code should mirror the code in gimplify_cond_expr. */
4272 enum tree_code code
= TREE_CODE (*expr_p
);
4273 tree cond
= *from_p
;
4274 tree result
= *to_p
;
4276 ret
= gimplify_expr (&result
, pre_p
, post_p
,
4277 is_gimple_lvalue
, fb_lvalue
);
4278 if (ret
!= GS_ERROR
)
4281 if (TREE_TYPE (TREE_OPERAND (cond
, 1)) != void_type_node
)
4282 TREE_OPERAND (cond
, 1)
4283 = build2 (code
, void_type_node
, result
,
4284 TREE_OPERAND (cond
, 1));
4285 if (TREE_TYPE (TREE_OPERAND (cond
, 2)) != void_type_node
)
4286 TREE_OPERAND (cond
, 2)
4287 = build2 (code
, void_type_node
, unshare_expr (result
),
4288 TREE_OPERAND (cond
, 2));
4290 TREE_TYPE (cond
) = void_type_node
;
4291 recalculate_side_effects (cond
);
4295 gimplify_and_add (cond
, pre_p
);
4296 *expr_p
= unshare_expr (result
);
4305 /* For calls that return in memory, give *to_p as the CALL_EXPR's
4306 return slot so that we don't generate a temporary. */
4307 if (!CALL_EXPR_RETURN_SLOT_OPT (*from_p
)
4308 && aggregate_value_p (*from_p
, *from_p
))
4312 if (!(rhs_predicate_for (*to_p
))(*from_p
))
4313 /* If we need a temporary, *to_p isn't accurate. */
4315 else if (TREE_CODE (*to_p
) == RESULT_DECL
4316 && DECL_NAME (*to_p
) == NULL_TREE
4317 && needs_to_live_in_memory (*to_p
))
4318 /* It's OK to use the return slot directly unless it's an NRV. */
4320 else if (is_gimple_reg_type (TREE_TYPE (*to_p
))
4321 || (DECL_P (*to_p
) && DECL_REGISTER (*to_p
)))
4322 /* Don't force regs into memory. */
4324 else if (TREE_CODE (*expr_p
) == INIT_EXPR
)
4325 /* It's OK to use the target directly if it's being
4328 else if (!is_gimple_non_addressable (*to_p
))
4329 /* Don't use the original target if it's already addressable;
4330 if its address escapes, and the called function uses the
4331 NRV optimization, a conforming program could see *to_p
4332 change before the called function returns; see c++/19317.
4333 When optimizing, the return_slot pass marks more functions
4334 as safe after we have escape info. */
4341 CALL_EXPR_RETURN_SLOT_OPT (*from_p
) = 1;
4342 mark_addressable (*to_p
);
4347 case WITH_SIZE_EXPR
:
4348 /* Likewise for calls that return an aggregate of non-constant size,
4349 since we would not be able to generate a temporary at all. */
4350 if (TREE_CODE (TREE_OPERAND (*from_p
, 0)) == CALL_EXPR
)
4352 *from_p
= TREE_OPERAND (*from_p
, 0);
4353 /* We don't change ret in this case because the
4354 WITH_SIZE_EXPR might have been added in
4355 gimplify_modify_expr, so returning GS_OK would lead to an
4361 /* If we're initializing from a container, push the initialization
4363 case CLEANUP_POINT_EXPR
:
4365 case STATEMENT_LIST
:
4367 tree wrap
= *from_p
;
4370 ret
= gimplify_expr (to_p
, pre_p
, post_p
, is_gimple_min_lval
,
4372 if (ret
!= GS_ERROR
)
4375 t
= voidify_wrapper_expr (wrap
, *expr_p
);
4376 gcc_assert (t
== *expr_p
);
4380 gimplify_and_add (wrap
, pre_p
);
4381 *expr_p
= unshare_expr (*to_p
);
4388 case COMPOUND_LITERAL_EXPR
:
4390 tree complit
= TREE_OPERAND (*expr_p
, 1);
4391 tree decl_s
= COMPOUND_LITERAL_EXPR_DECL_EXPR (complit
);
4392 tree decl
= DECL_EXPR_DECL (decl_s
);
4393 tree init
= DECL_INITIAL (decl
);
4395 /* struct T x = (struct T) { 0, 1, 2 } can be optimized
4396 into struct T x = { 0, 1, 2 } if the address of the
4397 compound literal has never been taken. */
4398 if (!TREE_ADDRESSABLE (complit
)
4399 && !TREE_ADDRESSABLE (decl
)
4402 *expr_p
= copy_node (*expr_p
);
4403 TREE_OPERAND (*expr_p
, 1) = init
;
4418 /* Promote partial stores to COMPLEX variables to total stores. *EXPR_P is
4419 a MODIFY_EXPR with a lhs of a REAL/IMAGPART_EXPR of a variable with
4420 DECL_GIMPLE_REG_P set.
4422 IMPORTANT NOTE: This promotion is performed by introducing a load of the
4423 other, unmodified part of the complex object just before the total store.
4424 As a consequence, if the object is still uninitialized, an undefined value
4425 will be loaded into a register, which may result in a spurious exception
4426 if the register is floating-point and the value happens to be a signaling
4427 NaN for example. Then the fully-fledged complex operations lowering pass
4428 followed by a DCE pass are necessary in order to fix things up. */
4430 static enum gimplify_status
4431 gimplify_modify_expr_complex_part (tree
*expr_p
, gimple_seq
*pre_p
,
4434 enum tree_code code
, ocode
;
4435 tree lhs
, rhs
, new_rhs
, other
, realpart
, imagpart
;
4437 lhs
= TREE_OPERAND (*expr_p
, 0);
4438 rhs
= TREE_OPERAND (*expr_p
, 1);
4439 code
= TREE_CODE (lhs
);
4440 lhs
= TREE_OPERAND (lhs
, 0);
4442 ocode
= code
== REALPART_EXPR
? IMAGPART_EXPR
: REALPART_EXPR
;
4443 other
= build1 (ocode
, TREE_TYPE (rhs
), lhs
);
4444 other
= get_formal_tmp_var (other
, pre_p
);
4446 realpart
= code
== REALPART_EXPR
? rhs
: other
;
4447 imagpart
= code
== REALPART_EXPR
? other
: rhs
;
4449 if (TREE_CONSTANT (realpart
) && TREE_CONSTANT (imagpart
))
4450 new_rhs
= build_complex (TREE_TYPE (lhs
), realpart
, imagpart
);
4452 new_rhs
= build2 (COMPLEX_EXPR
, TREE_TYPE (lhs
), realpart
, imagpart
);
4454 gimplify_seq_add_stmt (pre_p
, gimple_build_assign (lhs
, new_rhs
));
4455 *expr_p
= (want_value
) ? rhs
: NULL_TREE
;
4461 /* Gimplify the MODIFY_EXPR node pointed to by EXPR_P.
4467 PRE_P points to the list where side effects that must happen before
4468 *EXPR_P should be stored.
4470 POST_P points to the list where side effects that must happen after
4471 *EXPR_P should be stored.
4473 WANT_VALUE is nonzero iff we want to use the value of this expression
4474 in another expression. */
4476 static enum gimplify_status
4477 gimplify_modify_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
4480 tree
*from_p
= &TREE_OPERAND (*expr_p
, 1);
4481 tree
*to_p
= &TREE_OPERAND (*expr_p
, 0);
4482 enum gimplify_status ret
= GS_UNHANDLED
;
4484 location_t loc
= EXPR_LOCATION (*expr_p
);
4486 gcc_assert (TREE_CODE (*expr_p
) == MODIFY_EXPR
4487 || TREE_CODE (*expr_p
) == INIT_EXPR
);
4489 /* Insert pointer conversions required by the middle-end that are not
4490 required by the frontend. This fixes middle-end type checking for
4491 for example gcc.dg/redecl-6.c. */
4492 if (POINTER_TYPE_P (TREE_TYPE (*to_p
)))
4494 STRIP_USELESS_TYPE_CONVERSION (*from_p
);
4495 if (!useless_type_conversion_p (TREE_TYPE (*to_p
), TREE_TYPE (*from_p
)))
4496 *from_p
= fold_convert_loc (loc
, TREE_TYPE (*to_p
), *from_p
);
4499 /* See if any simplifications can be done based on what the RHS is. */
4500 ret
= gimplify_modify_expr_rhs (expr_p
, from_p
, to_p
, pre_p
, post_p
,
4502 if (ret
!= GS_UNHANDLED
)
4505 /* For zero sized types only gimplify the left hand side and right hand
4506 side as statements and throw away the assignment. Do this after
4507 gimplify_modify_expr_rhs so we handle TARGET_EXPRs of addressable
4509 if (zero_sized_type (TREE_TYPE (*from_p
)) && !want_value
)
4511 gimplify_stmt (from_p
, pre_p
);
4512 gimplify_stmt (to_p
, pre_p
);
4513 *expr_p
= NULL_TREE
;
4517 /* If the value being copied is of variable width, compute the length
4518 of the copy into a WITH_SIZE_EXPR. Note that we need to do this
4519 before gimplifying any of the operands so that we can resolve any
4520 PLACEHOLDER_EXPRs in the size. Also note that the RTL expander uses
4521 the size of the expression to be copied, not of the destination, so
4522 that is what we must do here. */
4523 maybe_with_size_expr (from_p
);
4525 ret
= gimplify_expr (to_p
, pre_p
, post_p
, is_gimple_lvalue
, fb_lvalue
);
4526 if (ret
== GS_ERROR
)
4529 /* As a special case, we have to temporarily allow for assignments
4530 with a CALL_EXPR on the RHS. Since in GIMPLE a function call is
4531 a toplevel statement, when gimplifying the GENERIC expression
4532 MODIFY_EXPR <a, CALL_EXPR <foo>>, we cannot create the tuple
4533 GIMPLE_ASSIGN <a, GIMPLE_CALL <foo>>.
4535 Instead, we need to create the tuple GIMPLE_CALL <a, foo>. To
4536 prevent gimplify_expr from trying to create a new temporary for
4537 foo's LHS, we tell it that it should only gimplify until it
4538 reaches the CALL_EXPR. On return from gimplify_expr, the newly
4539 created GIMPLE_CALL <foo> will be the last statement in *PRE_P
4540 and all we need to do here is set 'a' to be its LHS. */
4541 ret
= gimplify_expr (from_p
, pre_p
, post_p
, rhs_predicate_for (*to_p
),
4543 if (ret
== GS_ERROR
)
4546 /* Now see if the above changed *from_p to something we handle specially. */
4547 ret
= gimplify_modify_expr_rhs (expr_p
, from_p
, to_p
, pre_p
, post_p
,
4549 if (ret
!= GS_UNHANDLED
)
4552 /* If we've got a variable sized assignment between two lvalues (i.e. does
4553 not involve a call), then we can make things a bit more straightforward
4554 by converting the assignment to memcpy or memset. */
4555 if (TREE_CODE (*from_p
) == WITH_SIZE_EXPR
)
4557 tree from
= TREE_OPERAND (*from_p
, 0);
4558 tree size
= TREE_OPERAND (*from_p
, 1);
4560 if (TREE_CODE (from
) == CONSTRUCTOR
)
4561 return gimplify_modify_expr_to_memset (expr_p
, size
, want_value
, pre_p
);
4563 if (is_gimple_addressable (from
))
4566 return gimplify_modify_expr_to_memcpy (expr_p
, size
, want_value
,
4571 /* Transform partial stores to non-addressable complex variables into
4572 total stores. This allows us to use real instead of virtual operands
4573 for these variables, which improves optimization. */
4574 if ((TREE_CODE (*to_p
) == REALPART_EXPR
4575 || TREE_CODE (*to_p
) == IMAGPART_EXPR
)
4576 && is_gimple_reg (TREE_OPERAND (*to_p
, 0)))
4577 return gimplify_modify_expr_complex_part (expr_p
, pre_p
, want_value
);
4579 /* Try to alleviate the effects of the gimplification creating artificial
4580 temporaries (see for example is_gimple_reg_rhs) on the debug info. */
4581 if (!gimplify_ctxp
->into_ssa
4582 && TREE_CODE (*from_p
) == VAR_DECL
4583 && DECL_IGNORED_P (*from_p
)
4585 && !DECL_IGNORED_P (*to_p
))
4587 if (!DECL_NAME (*from_p
) && DECL_NAME (*to_p
))
4589 = create_tmp_var_name (IDENTIFIER_POINTER (DECL_NAME (*to_p
)));
4590 DECL_DEBUG_EXPR_IS_FROM (*from_p
) = 1;
4591 SET_DECL_DEBUG_EXPR (*from_p
, *to_p
);
4594 if (want_value
&& TREE_THIS_VOLATILE (*to_p
))
4595 *from_p
= get_initialized_tmp_var (*from_p
, pre_p
, post_p
);
4597 if (TREE_CODE (*from_p
) == CALL_EXPR
)
4599 /* Since the RHS is a CALL_EXPR, we need to create a GIMPLE_CALL
4600 instead of a GIMPLE_ASSIGN. */
4601 assign
= gimple_build_call_from_tree (*from_p
);
4602 if (!gimple_call_noreturn_p (assign
))
4603 gimple_call_set_lhs (assign
, *to_p
);
4607 assign
= gimple_build_assign (*to_p
, *from_p
);
4608 gimple_set_location (assign
, EXPR_LOCATION (*expr_p
));
4611 gimplify_seq_add_stmt (pre_p
, assign
);
4613 if (gimplify_ctxp
->into_ssa
&& is_gimple_reg (*to_p
))
4615 /* If we've somehow already got an SSA_NAME on the LHS, then
4616 we've probably modified it twice. Not good. */
4617 gcc_assert (TREE_CODE (*to_p
) != SSA_NAME
);
4618 *to_p
= make_ssa_name (*to_p
, assign
);
4619 gimple_set_lhs (assign
, *to_p
);
4624 *expr_p
= TREE_THIS_VOLATILE (*to_p
) ? *from_p
: unshare_expr (*to_p
);
4633 /* Gimplify a comparison between two variable-sized objects. Do this
4634 with a call to BUILT_IN_MEMCMP. */
4636 static enum gimplify_status
4637 gimplify_variable_sized_compare (tree
*expr_p
)
4639 tree op0
= TREE_OPERAND (*expr_p
, 0);
4640 tree op1
= TREE_OPERAND (*expr_p
, 1);
4641 tree t
, arg
, dest
, src
;
4642 location_t loc
= EXPR_LOCATION (*expr_p
);
4644 arg
= TYPE_SIZE_UNIT (TREE_TYPE (op0
));
4645 arg
= unshare_expr (arg
);
4646 arg
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (arg
, op0
);
4647 src
= build_fold_addr_expr_loc (loc
, op1
);
4648 dest
= build_fold_addr_expr_loc (loc
, op0
);
4649 t
= implicit_built_in_decls
[BUILT_IN_MEMCMP
];
4650 t
= build_call_expr_loc (loc
, t
, 3, dest
, src
, arg
);
4652 = build2 (TREE_CODE (*expr_p
), TREE_TYPE (*expr_p
), t
, integer_zero_node
);
4657 /* Gimplify a comparison between two aggregate objects of integral scalar
4658 mode as a comparison between the bitwise equivalent scalar values. */
4660 static enum gimplify_status
4661 gimplify_scalar_mode_aggregate_compare (tree
*expr_p
)
4663 location_t loc
= EXPR_LOCATION (*expr_p
);
4664 tree op0
= TREE_OPERAND (*expr_p
, 0);
4665 tree op1
= TREE_OPERAND (*expr_p
, 1);
4667 tree type
= TREE_TYPE (op0
);
4668 tree scalar_type
= lang_hooks
.types
.type_for_mode (TYPE_MODE (type
), 1);
4670 op0
= fold_build1_loc (loc
, VIEW_CONVERT_EXPR
, scalar_type
, op0
);
4671 op1
= fold_build1_loc (loc
, VIEW_CONVERT_EXPR
, scalar_type
, op1
);
4674 = fold_build2_loc (loc
, TREE_CODE (*expr_p
), TREE_TYPE (*expr_p
), op0
, op1
);
4679 /* Gimplify TRUTH_ANDIF_EXPR and TRUTH_ORIF_EXPR expressions. EXPR_P
4680 points to the expression to gimplify.
4682 Expressions of the form 'a && b' are gimplified to:
4684 a && b ? true : false
4686 LOCUS is the source location to be put on the generated COND_EXPR.
4687 gimplify_cond_expr will do the rest. */
4689 static enum gimplify_status
4690 gimplify_boolean_expr (tree
*expr_p
, location_t locus
)
4692 /* Preserve the original type of the expression. */
4693 tree type
= TREE_TYPE (*expr_p
);
4695 *expr_p
= build3 (COND_EXPR
, type
, *expr_p
,
4696 fold_convert_loc (locus
, type
, boolean_true_node
),
4697 fold_convert_loc (locus
, type
, boolean_false_node
));
4699 SET_EXPR_LOCATION (*expr_p
, locus
);
4704 /* Gimplifies an expression sequence. This function gimplifies each
4705 expression and re-writes the original expression with the last
4706 expression of the sequence in GIMPLE form.
4708 PRE_P points to the list where the side effects for all the
4709 expressions in the sequence will be emitted.
4711 WANT_VALUE is true when the result of the last COMPOUND_EXPR is used. */
4713 static enum gimplify_status
4714 gimplify_compound_expr (tree
*expr_p
, gimple_seq
*pre_p
, bool want_value
)
4720 tree
*sub_p
= &TREE_OPERAND (t
, 0);
4722 if (TREE_CODE (*sub_p
) == COMPOUND_EXPR
)
4723 gimplify_compound_expr (sub_p
, pre_p
, false);
4725 gimplify_stmt (sub_p
, pre_p
);
4727 t
= TREE_OPERAND (t
, 1);
4729 while (TREE_CODE (t
) == COMPOUND_EXPR
);
4736 gimplify_stmt (expr_p
, pre_p
);
4742 /* Gimplify a SAVE_EXPR node. EXPR_P points to the expression to
4743 gimplify. After gimplification, EXPR_P will point to a new temporary
4744 that holds the original value of the SAVE_EXPR node.
4746 PRE_P points to the list where side effects that must happen before
4747 *EXPR_P should be stored. */
4749 static enum gimplify_status
4750 gimplify_save_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
)
4752 enum gimplify_status ret
= GS_ALL_DONE
;
4755 gcc_assert (TREE_CODE (*expr_p
) == SAVE_EXPR
);
4756 val
= TREE_OPERAND (*expr_p
, 0);
4758 /* If the SAVE_EXPR has not been resolved, then evaluate it once. */
4759 if (!SAVE_EXPR_RESOLVED_P (*expr_p
))
4761 /* The operand may be a void-valued expression such as SAVE_EXPRs
4762 generated by the Java frontend for class initialization. It is
4763 being executed only for its side-effects. */
4764 if (TREE_TYPE (val
) == void_type_node
)
4766 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
4767 is_gimple_stmt
, fb_none
);
4771 val
= get_initialized_tmp_var (val
, pre_p
, post_p
);
4773 TREE_OPERAND (*expr_p
, 0) = val
;
4774 SAVE_EXPR_RESOLVED_P (*expr_p
) = 1;
4782 /* Re-write the ADDR_EXPR node pointed to by EXPR_P
4789 PRE_P points to the list where side effects that must happen before
4790 *EXPR_P should be stored.
4792 POST_P points to the list where side effects that must happen after
4793 *EXPR_P should be stored. */
4795 static enum gimplify_status
4796 gimplify_addr_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
)
4798 tree expr
= *expr_p
;
4799 tree op0
= TREE_OPERAND (expr
, 0);
4800 enum gimplify_status ret
;
4801 location_t loc
= EXPR_LOCATION (*expr_p
);
4803 switch (TREE_CODE (op0
))
4807 /* Check if we are dealing with an expression of the form '&*ptr'.
4808 While the front end folds away '&*ptr' into 'ptr', these
4809 expressions may be generated internally by the compiler (e.g.,
4810 builtins like __builtin_va_end). */
4811 /* Caution: the silent array decomposition semantics we allow for
4812 ADDR_EXPR means we can't always discard the pair. */
4813 /* Gimplification of the ADDR_EXPR operand may drop
4814 cv-qualification conversions, so make sure we add them if
4817 tree op00
= TREE_OPERAND (op0
, 0);
4818 tree t_expr
= TREE_TYPE (expr
);
4819 tree t_op00
= TREE_TYPE (op00
);
4821 if (!useless_type_conversion_p (t_expr
, t_op00
))
4822 op00
= fold_convert_loc (loc
, TREE_TYPE (expr
), op00
);
4828 case VIEW_CONVERT_EXPR
:
4829 /* Take the address of our operand and then convert it to the type of
4832 ??? The interactions of VIEW_CONVERT_EXPR and aliasing is not at
4833 all clear. The impact of this transformation is even less clear. */
4835 /* If the operand is a useless conversion, look through it. Doing so
4836 guarantees that the ADDR_EXPR and its operand will remain of the
4838 if (tree_ssa_useless_type_conversion (TREE_OPERAND (op0
, 0)))
4839 op0
= TREE_OPERAND (op0
, 0);
4841 *expr_p
= fold_convert_loc (loc
, TREE_TYPE (expr
),
4842 build_fold_addr_expr_loc (loc
,
4843 TREE_OPERAND (op0
, 0)));
4848 /* We use fb_either here because the C frontend sometimes takes
4849 the address of a call that returns a struct; see
4850 gcc.dg/c99-array-lval-1.c. The gimplifier will correctly make
4851 the implied temporary explicit. */
4853 /* Make the operand addressable. */
4854 ret
= gimplify_expr (&TREE_OPERAND (expr
, 0), pre_p
, post_p
,
4855 is_gimple_addressable
, fb_either
);
4856 if (ret
== GS_ERROR
)
4859 /* Then mark it. Beware that it may not be possible to do so directly
4860 if a temporary has been created by the gimplification. */
4861 prepare_gimple_addressable (&TREE_OPERAND (expr
, 0), pre_p
);
4863 op0
= TREE_OPERAND (expr
, 0);
4865 /* For various reasons, the gimplification of the expression
4866 may have made a new INDIRECT_REF. */
4867 if (TREE_CODE (op0
) == INDIRECT_REF
)
4868 goto do_indirect_ref
;
4870 mark_addressable (TREE_OPERAND (expr
, 0));
4872 /* The FEs may end up building ADDR_EXPRs early on a decl with
4873 an incomplete type. Re-build ADDR_EXPRs in canonical form
4875 if (!types_compatible_p (TREE_TYPE (op0
), TREE_TYPE (TREE_TYPE (expr
))))
4876 *expr_p
= build_fold_addr_expr (op0
);
4878 /* Make sure TREE_CONSTANT and TREE_SIDE_EFFECTS are set properly. */
4879 recompute_tree_invariant_for_addr_expr (*expr_p
);
4881 /* If we re-built the ADDR_EXPR add a conversion to the original type
4883 if (!useless_type_conversion_p (TREE_TYPE (expr
), TREE_TYPE (*expr_p
)))
4884 *expr_p
= fold_convert (TREE_TYPE (expr
), *expr_p
);
4892 /* Gimplify the operands of an ASM_EXPR. Input operands should be a gimple
4893 value; output operands should be a gimple lvalue. */
4895 static enum gimplify_status
4896 gimplify_asm_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
)
4900 const char **oconstraints
;
4903 const char *constraint
;
4904 bool allows_mem
, allows_reg
, is_inout
;
4905 enum gimplify_status ret
, tret
;
4907 VEC(tree
, gc
) *inputs
;
4908 VEC(tree
, gc
) *outputs
;
4909 VEC(tree
, gc
) *clobbers
;
4910 VEC(tree
, gc
) *labels
;
4914 noutputs
= list_length (ASM_OUTPUTS (expr
));
4915 oconstraints
= (const char **) alloca ((noutputs
) * sizeof (const char *));
4917 inputs
= outputs
= clobbers
= labels
= NULL
;
4920 link_next
= NULL_TREE
;
4921 for (i
= 0, link
= ASM_OUTPUTS (expr
); link
; ++i
, link
= link_next
)
4924 size_t constraint_len
;
4926 link_next
= TREE_CHAIN (link
);
4930 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link
)));
4931 constraint_len
= strlen (constraint
);
4932 if (constraint_len
== 0)
4935 ok
= parse_output_constraint (&constraint
, i
, 0, 0,
4936 &allows_mem
, &allows_reg
, &is_inout
);
4943 if (!allows_reg
&& allows_mem
)
4944 mark_addressable (TREE_VALUE (link
));
4946 tret
= gimplify_expr (&TREE_VALUE (link
), pre_p
, post_p
,
4947 is_inout
? is_gimple_min_lval
: is_gimple_lvalue
,
4948 fb_lvalue
| fb_mayfail
);
4949 if (tret
== GS_ERROR
)
4951 error ("invalid lvalue in asm output %d", i
);
4955 VEC_safe_push (tree
, gc
, outputs
, link
);
4956 TREE_CHAIN (link
) = NULL_TREE
;
4960 /* An input/output operand. To give the optimizers more
4961 flexibility, split it into separate input and output
4966 /* Turn the in/out constraint into an output constraint. */
4967 char *p
= xstrdup (constraint
);
4969 TREE_VALUE (TREE_PURPOSE (link
)) = build_string (constraint_len
, p
);
4971 /* And add a matching input constraint. */
4974 sprintf (buf
, "%d", i
);
4976 /* If there are multiple alternatives in the constraint,
4977 handle each of them individually. Those that allow register
4978 will be replaced with operand number, the others will stay
4980 if (strchr (p
, ',') != NULL
)
4982 size_t len
= 0, buflen
= strlen (buf
);
4983 char *beg
, *end
, *str
, *dst
;
4987 end
= strchr (beg
, ',');
4989 end
= strchr (beg
, '\0');
4990 if ((size_t) (end
- beg
) < buflen
)
4993 len
+= end
- beg
+ 1;
5000 str
= (char *) alloca (len
);
5001 for (beg
= p
+ 1, dst
= str
;;)
5004 bool mem_p
, reg_p
, inout_p
;
5006 end
= strchr (beg
, ',');
5011 parse_output_constraint (&tem
, i
, 0, 0,
5012 &mem_p
, ®_p
, &inout_p
);
5017 memcpy (dst
, buf
, buflen
);
5026 memcpy (dst
, beg
, len
);
5035 input
= build_string (dst
- str
, str
);
5038 input
= build_string (strlen (buf
), buf
);
5041 input
= build_string (constraint_len
- 1, constraint
+ 1);
5045 input
= build_tree_list (build_tree_list (NULL_TREE
, input
),
5046 unshare_expr (TREE_VALUE (link
)));
5047 ASM_INPUTS (expr
) = chainon (ASM_INPUTS (expr
), input
);
5051 link_next
= NULL_TREE
;
5052 for (link
= ASM_INPUTS (expr
); link
; ++i
, link
= link_next
)
5054 link_next
= TREE_CHAIN (link
);
5055 constraint
= TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link
)));
5056 parse_input_constraint (&constraint
, 0, 0, noutputs
, 0,
5057 oconstraints
, &allows_mem
, &allows_reg
);
5059 /* If we can't make copies, we can only accept memory. */
5060 if (TREE_ADDRESSABLE (TREE_TYPE (TREE_VALUE (link
))))
5066 error ("impossible constraint in %<asm%>");
5067 error ("non-memory input %d must stay in memory", i
);
5072 /* If the operand is a memory input, it should be an lvalue. */
5073 if (!allows_reg
&& allows_mem
)
5075 tret
= gimplify_expr (&TREE_VALUE (link
), pre_p
, post_p
,
5076 is_gimple_lvalue
, fb_lvalue
| fb_mayfail
);
5077 mark_addressable (TREE_VALUE (link
));
5078 if (tret
== GS_ERROR
)
5080 if (EXPR_HAS_LOCATION (TREE_VALUE (link
)))
5081 input_location
= EXPR_LOCATION (TREE_VALUE (link
));
5082 error ("memory input %d is not directly addressable", i
);
5088 tret
= gimplify_expr (&TREE_VALUE (link
), pre_p
, post_p
,
5089 is_gimple_asm_val
, fb_rvalue
);
5090 if (tret
== GS_ERROR
)
5094 TREE_CHAIN (link
) = NULL_TREE
;
5095 VEC_safe_push (tree
, gc
, inputs
, link
);
5098 for (link
= ASM_CLOBBERS (expr
); link
; ++i
, link
= TREE_CHAIN (link
))
5099 VEC_safe_push (tree
, gc
, clobbers
, link
);
5101 for (link
= ASM_LABELS (expr
); link
; ++i
, link
= TREE_CHAIN (link
))
5102 VEC_safe_push (tree
, gc
, labels
, link
);
5104 /* Do not add ASMs with errors to the gimple IL stream. */
5105 if (ret
!= GS_ERROR
)
5107 stmt
= gimple_build_asm_vec (TREE_STRING_POINTER (ASM_STRING (expr
)),
5108 inputs
, outputs
, clobbers
, labels
);
5110 gimple_asm_set_volatile (stmt
, ASM_VOLATILE_P (expr
));
5111 gimple_asm_set_input (stmt
, ASM_INPUT_P (expr
));
5113 gimplify_seq_add_stmt (pre_p
, stmt
);
5119 /* Gimplify a CLEANUP_POINT_EXPR. Currently this works by adding
5120 GIMPLE_WITH_CLEANUP_EXPRs to the prequeue as we encounter cleanups while
5121 gimplifying the body, and converting them to TRY_FINALLY_EXPRs when we
5122 return to this function.
5124 FIXME should we complexify the prequeue handling instead? Or use flags
5125 for all the cleanups and let the optimizer tighten them up? The current
5126 code seems pretty fragile; it will break on a cleanup within any
5127 non-conditional nesting. But any such nesting would be broken, anyway;
5128 we can't write a TRY_FINALLY_EXPR that starts inside a nesting construct
5129 and continues out of it. We can do that at the RTL level, though, so
5130 having an optimizer to tighten up try/finally regions would be a Good
5133 static enum gimplify_status
5134 gimplify_cleanup_point_expr (tree
*expr_p
, gimple_seq
*pre_p
)
5136 gimple_stmt_iterator iter
;
5137 gimple_seq body_sequence
= NULL
;
5139 tree temp
= voidify_wrapper_expr (*expr_p
, NULL
);
5141 /* We only care about the number of conditions between the innermost
5142 CLEANUP_POINT_EXPR and the cleanup. So save and reset the count and
5143 any cleanups collected outside the CLEANUP_POINT_EXPR. */
5144 int old_conds
= gimplify_ctxp
->conditions
;
5145 gimple_seq old_cleanups
= gimplify_ctxp
->conditional_cleanups
;
5146 gimplify_ctxp
->conditions
= 0;
5147 gimplify_ctxp
->conditional_cleanups
= NULL
;
5149 gimplify_stmt (&TREE_OPERAND (*expr_p
, 0), &body_sequence
);
5151 gimplify_ctxp
->conditions
= old_conds
;
5152 gimplify_ctxp
->conditional_cleanups
= old_cleanups
;
5154 for (iter
= gsi_start (body_sequence
); !gsi_end_p (iter
); )
5156 gimple wce
= gsi_stmt (iter
);
5158 if (gimple_code (wce
) == GIMPLE_WITH_CLEANUP_EXPR
)
5160 if (gsi_one_before_end_p (iter
))
5162 /* Note that gsi_insert_seq_before and gsi_remove do not
5163 scan operands, unlike some other sequence mutators. */
5164 if (!gimple_wce_cleanup_eh_only (wce
))
5165 gsi_insert_seq_before_without_update (&iter
,
5166 gimple_wce_cleanup (wce
),
5168 gsi_remove (&iter
, true);
5175 enum gimple_try_flags kind
;
5177 if (gimple_wce_cleanup_eh_only (wce
))
5178 kind
= GIMPLE_TRY_CATCH
;
5180 kind
= GIMPLE_TRY_FINALLY
;
5181 seq
= gsi_split_seq_after (iter
);
5183 gtry
= gimple_build_try (seq
, gimple_wce_cleanup (wce
), kind
);
5184 /* Do not use gsi_replace here, as it may scan operands.
5185 We want to do a simple structural modification only. */
5186 *gsi_stmt_ptr (&iter
) = gtry
;
5187 iter
= gsi_start (seq
);
5194 gimplify_seq_add_seq (pre_p
, body_sequence
);
5207 /* Insert a cleanup marker for gimplify_cleanup_point_expr. CLEANUP
5208 is the cleanup action required. EH_ONLY is true if the cleanup should
5209 only be executed if an exception is thrown, not on normal exit. */
5212 gimple_push_cleanup (tree var
, tree cleanup
, bool eh_only
, gimple_seq
*pre_p
)
5215 gimple_seq cleanup_stmts
= NULL
;
5217 /* Errors can result in improperly nested cleanups. Which results in
5218 confusion when trying to resolve the GIMPLE_WITH_CLEANUP_EXPR. */
5222 if (gimple_conditional_context ())
5224 /* If we're in a conditional context, this is more complex. We only
5225 want to run the cleanup if we actually ran the initialization that
5226 necessitates it, but we want to run it after the end of the
5227 conditional context. So we wrap the try/finally around the
5228 condition and use a flag to determine whether or not to actually
5229 run the destructor. Thus
5233 becomes (approximately)
5237 if (test) { A::A(temp); flag = 1; val = f(temp); }
5240 if (flag) A::~A(temp);
5244 tree flag
= create_tmp_var (boolean_type_node
, "cleanup");
5245 gimple ffalse
= gimple_build_assign (flag
, boolean_false_node
);
5246 gimple ftrue
= gimple_build_assign (flag
, boolean_true_node
);
5248 cleanup
= build3 (COND_EXPR
, void_type_node
, flag
, cleanup
, NULL
);
5249 gimplify_stmt (&cleanup
, &cleanup_stmts
);
5250 wce
= gimple_build_wce (cleanup_stmts
);
5252 gimplify_seq_add_stmt (&gimplify_ctxp
->conditional_cleanups
, ffalse
);
5253 gimplify_seq_add_stmt (&gimplify_ctxp
->conditional_cleanups
, wce
);
5254 gimplify_seq_add_stmt (pre_p
, ftrue
);
5256 /* Because of this manipulation, and the EH edges that jump
5257 threading cannot redirect, the temporary (VAR) will appear
5258 to be used uninitialized. Don't warn. */
5259 TREE_NO_WARNING (var
) = 1;
5263 gimplify_stmt (&cleanup
, &cleanup_stmts
);
5264 wce
= gimple_build_wce (cleanup_stmts
);
5265 gimple_wce_set_cleanup_eh_only (wce
, eh_only
);
5266 gimplify_seq_add_stmt (pre_p
, wce
);
5270 /* Gimplify a TARGET_EXPR which doesn't appear on the rhs of an INIT_EXPR. */
5272 static enum gimplify_status
5273 gimplify_target_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
)
5275 tree targ
= *expr_p
;
5276 tree temp
= TARGET_EXPR_SLOT (targ
);
5277 tree init
= TARGET_EXPR_INITIAL (targ
);
5278 enum gimplify_status ret
;
5282 /* TARGET_EXPR temps aren't part of the enclosing block, so add it
5283 to the temps list. Handle also variable length TARGET_EXPRs. */
5284 if (TREE_CODE (DECL_SIZE (temp
)) != INTEGER_CST
)
5286 if (!TYPE_SIZES_GIMPLIFIED (TREE_TYPE (temp
)))
5287 gimplify_type_sizes (TREE_TYPE (temp
), pre_p
);
5288 gimplify_vla_decl (temp
, pre_p
);
5291 gimple_add_tmp_var (temp
);
5293 /* If TARGET_EXPR_INITIAL is void, then the mere evaluation of the
5294 expression is supposed to initialize the slot. */
5295 if (VOID_TYPE_P (TREE_TYPE (init
)))
5296 ret
= gimplify_expr (&init
, pre_p
, post_p
, is_gimple_stmt
, fb_none
);
5299 tree init_expr
= build2 (INIT_EXPR
, void_type_node
, temp
, init
);
5301 ret
= gimplify_expr (&init
, pre_p
, post_p
, is_gimple_stmt
, fb_none
);
5303 ggc_free (init_expr
);
5305 if (ret
== GS_ERROR
)
5307 /* PR c++/28266 Make sure this is expanded only once. */
5308 TARGET_EXPR_INITIAL (targ
) = NULL_TREE
;
5312 gimplify_and_add (init
, pre_p
);
5314 /* If needed, push the cleanup for the temp. */
5315 if (TARGET_EXPR_CLEANUP (targ
))
5316 gimple_push_cleanup (temp
, TARGET_EXPR_CLEANUP (targ
),
5317 CLEANUP_EH_ONLY (targ
), pre_p
);
5319 /* Only expand this once. */
5320 TREE_OPERAND (targ
, 3) = init
;
5321 TARGET_EXPR_INITIAL (targ
) = NULL_TREE
;
5324 /* We should have expanded this before. */
5325 gcc_assert (DECL_SEEN_IN_BIND_EXPR_P (temp
));
5331 /* Gimplification of expression trees. */
5333 /* Gimplify an expression which appears at statement context. The
5334 corresponding GIMPLE statements are added to *SEQ_P. If *SEQ_P is
5335 NULL, a new sequence is allocated.
5337 Return true if we actually added a statement to the queue. */
5340 gimplify_stmt (tree
*stmt_p
, gimple_seq
*seq_p
)
5342 gimple_seq_node last
;
5345 *seq_p
= gimple_seq_alloc ();
5347 last
= gimple_seq_last (*seq_p
);
5348 gimplify_expr (stmt_p
, seq_p
, NULL
, is_gimple_stmt
, fb_none
);
5349 return last
!= gimple_seq_last (*seq_p
);
5353 /* Add FIRSTPRIVATE entries for DECL in the OpenMP the surrounding parallels
5354 to CTX. If entries already exist, force them to be some flavor of private.
5355 If there is no enclosing parallel, do nothing. */
5358 omp_firstprivatize_variable (struct gimplify_omp_ctx
*ctx
, tree decl
)
5362 if (decl
== NULL
|| !DECL_P (decl
))
5367 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
)decl
);
5370 if (n
->value
& GOVD_SHARED
)
5371 n
->value
= GOVD_FIRSTPRIVATE
| (n
->value
& GOVD_SEEN
);
5375 else if (ctx
->region_type
!= ORT_WORKSHARE
)
5376 omp_add_variable (ctx
, decl
, GOVD_FIRSTPRIVATE
);
5378 ctx
= ctx
->outer_context
;
5383 /* Similarly for each of the type sizes of TYPE. */
5386 omp_firstprivatize_type_sizes (struct gimplify_omp_ctx
*ctx
, tree type
)
5388 if (type
== NULL
|| type
== error_mark_node
)
5390 type
= TYPE_MAIN_VARIANT (type
);
5392 if (pointer_set_insert (ctx
->privatized_types
, type
))
5395 switch (TREE_CODE (type
))
5401 case FIXED_POINT_TYPE
:
5402 omp_firstprivatize_variable (ctx
, TYPE_MIN_VALUE (type
));
5403 omp_firstprivatize_variable (ctx
, TYPE_MAX_VALUE (type
));
5407 omp_firstprivatize_type_sizes (ctx
, TREE_TYPE (type
));
5408 omp_firstprivatize_type_sizes (ctx
, TYPE_DOMAIN (type
));
5413 case QUAL_UNION_TYPE
:
5416 for (field
= TYPE_FIELDS (type
); field
; field
= DECL_CHAIN (field
))
5417 if (TREE_CODE (field
) == FIELD_DECL
)
5419 omp_firstprivatize_variable (ctx
, DECL_FIELD_OFFSET (field
));
5420 omp_firstprivatize_type_sizes (ctx
, TREE_TYPE (field
));
5426 case REFERENCE_TYPE
:
5427 omp_firstprivatize_type_sizes (ctx
, TREE_TYPE (type
));
5434 omp_firstprivatize_variable (ctx
, TYPE_SIZE (type
));
5435 omp_firstprivatize_variable (ctx
, TYPE_SIZE_UNIT (type
));
5436 lang_hooks
.types
.omp_firstprivatize_type_sizes (ctx
, type
);
5439 /* Add an entry for DECL in the OpenMP context CTX with FLAGS. */
5442 omp_add_variable (struct gimplify_omp_ctx
*ctx
, tree decl
, unsigned int flags
)
5445 unsigned int nflags
;
5448 if (decl
== error_mark_node
|| TREE_TYPE (decl
) == error_mark_node
)
5451 /* Never elide decls whose type has TREE_ADDRESSABLE set. This means
5452 there are constructors involved somewhere. */
5453 if (TREE_ADDRESSABLE (TREE_TYPE (decl
))
5454 || TYPE_NEEDS_CONSTRUCTING (TREE_TYPE (decl
)))
5457 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
)decl
);
5460 /* We shouldn't be re-adding the decl with the same data
5462 gcc_assert ((n
->value
& GOVD_DATA_SHARE_CLASS
& flags
) == 0);
5463 /* The only combination of data sharing classes we should see is
5464 FIRSTPRIVATE and LASTPRIVATE. */
5465 nflags
= n
->value
| flags
;
5466 gcc_assert ((nflags
& GOVD_DATA_SHARE_CLASS
)
5467 == (GOVD_FIRSTPRIVATE
| GOVD_LASTPRIVATE
));
5472 /* When adding a variable-sized variable, we have to handle all sorts
5473 of additional bits of data: the pointer replacement variable, and
5474 the parameters of the type. */
5475 if (DECL_SIZE (decl
) && TREE_CODE (DECL_SIZE (decl
)) != INTEGER_CST
)
5477 /* Add the pointer replacement variable as PRIVATE if the variable
5478 replacement is private, else FIRSTPRIVATE since we'll need the
5479 address of the original variable either for SHARED, or for the
5480 copy into or out of the context. */
5481 if (!(flags
& GOVD_LOCAL
))
5483 nflags
= flags
& GOVD_PRIVATE
? GOVD_PRIVATE
: GOVD_FIRSTPRIVATE
;
5484 nflags
|= flags
& GOVD_SEEN
;
5485 t
= DECL_VALUE_EXPR (decl
);
5486 gcc_assert (TREE_CODE (t
) == INDIRECT_REF
);
5487 t
= TREE_OPERAND (t
, 0);
5488 gcc_assert (DECL_P (t
));
5489 omp_add_variable (ctx
, t
, nflags
);
5492 /* Add all of the variable and type parameters (which should have
5493 been gimplified to a formal temporary) as FIRSTPRIVATE. */
5494 omp_firstprivatize_variable (ctx
, DECL_SIZE_UNIT (decl
));
5495 omp_firstprivatize_variable (ctx
, DECL_SIZE (decl
));
5496 omp_firstprivatize_type_sizes (ctx
, TREE_TYPE (decl
));
5498 /* The variable-sized variable itself is never SHARED, only some form
5499 of PRIVATE. The sharing would take place via the pointer variable
5500 which we remapped above. */
5501 if (flags
& GOVD_SHARED
)
5502 flags
= GOVD_PRIVATE
| GOVD_DEBUG_PRIVATE
5503 | (flags
& (GOVD_SEEN
| GOVD_EXPLICIT
));
5505 /* We're going to make use of the TYPE_SIZE_UNIT at least in the
5506 alloca statement we generate for the variable, so make sure it
5507 is available. This isn't automatically needed for the SHARED
5508 case, since we won't be allocating local storage then.
5509 For local variables TYPE_SIZE_UNIT might not be gimplified yet,
5510 in this case omp_notice_variable will be called later
5511 on when it is gimplified. */
5512 else if (! (flags
& GOVD_LOCAL
))
5513 omp_notice_variable (ctx
, TYPE_SIZE_UNIT (TREE_TYPE (decl
)), true);
5515 else if (lang_hooks
.decls
.omp_privatize_by_reference (decl
))
5517 gcc_assert ((flags
& GOVD_LOCAL
) == 0);
5518 omp_firstprivatize_type_sizes (ctx
, TREE_TYPE (decl
));
5520 /* Similar to the direct variable sized case above, we'll need the
5521 size of references being privatized. */
5522 if ((flags
& GOVD_SHARED
) == 0)
5524 t
= TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (decl
)));
5525 if (TREE_CODE (t
) != INTEGER_CST
)
5526 omp_notice_variable (ctx
, t
, true);
5530 splay_tree_insert (ctx
->variables
, (splay_tree_key
)decl
, flags
);
5533 /* Notice a threadprivate variable DECL used in OpenMP context CTX.
5534 This just prints out diagnostics about threadprivate variable uses
5535 in untied tasks. If DECL2 is non-NULL, prevent this warning
5536 on that variable. */
5539 omp_notice_threadprivate_variable (struct gimplify_omp_ctx
*ctx
, tree decl
,
5544 if (ctx
->region_type
!= ORT_UNTIED_TASK
)
5546 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
)decl
);
5549 error ("threadprivate variable %qE used in untied task", DECL_NAME (decl
));
5550 error_at (ctx
->location
, "enclosing task");
5551 splay_tree_insert (ctx
->variables
, (splay_tree_key
)decl
, 0);
5554 splay_tree_insert (ctx
->variables
, (splay_tree_key
)decl2
, 0);
5558 /* Record the fact that DECL was used within the OpenMP context CTX.
5559 IN_CODE is true when real code uses DECL, and false when we should
5560 merely emit default(none) errors. Return true if DECL is going to
5561 be remapped and thus DECL shouldn't be gimplified into its
5562 DECL_VALUE_EXPR (if any). */
5565 omp_notice_variable (struct gimplify_omp_ctx
*ctx
, tree decl
, bool in_code
)
5568 unsigned flags
= in_code
? GOVD_SEEN
: 0;
5569 bool ret
= false, shared
;
5571 if (decl
== error_mark_node
|| TREE_TYPE (decl
) == error_mark_node
)
5574 /* Threadprivate variables are predetermined. */
5575 if (is_global_var (decl
))
5577 if (DECL_THREAD_LOCAL_P (decl
))
5578 return omp_notice_threadprivate_variable (ctx
, decl
, NULL_TREE
);
5580 if (DECL_HAS_VALUE_EXPR_P (decl
))
5582 tree value
= get_base_address (DECL_VALUE_EXPR (decl
));
5584 if (value
&& DECL_P (value
) && DECL_THREAD_LOCAL_P (value
))
5585 return omp_notice_threadprivate_variable (ctx
, decl
, value
);
5589 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
)decl
);
5592 enum omp_clause_default_kind default_kind
, kind
;
5593 struct gimplify_omp_ctx
*octx
;
5595 if (ctx
->region_type
== ORT_WORKSHARE
)
5598 /* ??? Some compiler-generated variables (like SAVE_EXPRs) could be
5599 remapped firstprivate instead of shared. To some extent this is
5600 addressed in omp_firstprivatize_type_sizes, but not effectively. */
5601 default_kind
= ctx
->default_kind
;
5602 kind
= lang_hooks
.decls
.omp_predetermined_sharing (decl
);
5603 if (kind
!= OMP_CLAUSE_DEFAULT_UNSPECIFIED
)
5604 default_kind
= kind
;
5606 switch (default_kind
)
5608 case OMP_CLAUSE_DEFAULT_NONE
:
5609 error ("%qE not specified in enclosing parallel",
5610 DECL_NAME (lang_hooks
.decls
.omp_report_decl (decl
)));
5611 if ((ctx
->region_type
& ORT_TASK
) != 0)
5612 error_at (ctx
->location
, "enclosing task");
5614 error_at (ctx
->location
, "enclosing parallel");
5616 case OMP_CLAUSE_DEFAULT_SHARED
:
5617 flags
|= GOVD_SHARED
;
5619 case OMP_CLAUSE_DEFAULT_PRIVATE
:
5620 flags
|= GOVD_PRIVATE
;
5622 case OMP_CLAUSE_DEFAULT_FIRSTPRIVATE
:
5623 flags
|= GOVD_FIRSTPRIVATE
;
5625 case OMP_CLAUSE_DEFAULT_UNSPECIFIED
:
5626 /* decl will be either GOVD_FIRSTPRIVATE or GOVD_SHARED. */
5627 gcc_assert ((ctx
->region_type
& ORT_TASK
) != 0);
5628 if (ctx
->outer_context
)
5629 omp_notice_variable (ctx
->outer_context
, decl
, in_code
);
5630 for (octx
= ctx
->outer_context
; octx
; octx
= octx
->outer_context
)
5634 n2
= splay_tree_lookup (octx
->variables
, (splay_tree_key
) decl
);
5635 if (n2
&& (n2
->value
& GOVD_DATA_SHARE_CLASS
) != GOVD_SHARED
)
5637 flags
|= GOVD_FIRSTPRIVATE
;
5640 if ((octx
->region_type
& ORT_PARALLEL
) != 0)
5643 if (flags
& GOVD_FIRSTPRIVATE
)
5646 && (TREE_CODE (decl
) == PARM_DECL
5647 || (!is_global_var (decl
)
5648 && DECL_CONTEXT (decl
) == current_function_decl
)))
5650 flags
|= GOVD_FIRSTPRIVATE
;
5653 flags
|= GOVD_SHARED
;
5659 if ((flags
& GOVD_PRIVATE
)
5660 && lang_hooks
.decls
.omp_private_outer_ref (decl
))
5661 flags
|= GOVD_PRIVATE_OUTER_REF
;
5663 omp_add_variable (ctx
, decl
, flags
);
5665 shared
= (flags
& GOVD_SHARED
) != 0;
5666 ret
= lang_hooks
.decls
.omp_disregard_value_expr (decl
, shared
);
5670 if ((n
->value
& (GOVD_SEEN
| GOVD_LOCAL
)) == 0
5671 && (flags
& (GOVD_SEEN
| GOVD_LOCAL
)) == GOVD_SEEN
5673 && TREE_CODE (DECL_SIZE (decl
)) != INTEGER_CST
)
5676 tree t
= DECL_VALUE_EXPR (decl
);
5677 gcc_assert (TREE_CODE (t
) == INDIRECT_REF
);
5678 t
= TREE_OPERAND (t
, 0);
5679 gcc_assert (DECL_P (t
));
5680 n2
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
) t
);
5681 n2
->value
|= GOVD_SEEN
;
5684 shared
= ((flags
| n
->value
) & GOVD_SHARED
) != 0;
5685 ret
= lang_hooks
.decls
.omp_disregard_value_expr (decl
, shared
);
5687 /* If nothing changed, there's nothing left to do. */
5688 if ((n
->value
& flags
) == flags
)
5694 /* If the variable is private in the current context, then we don't
5695 need to propagate anything to an outer context. */
5696 if ((flags
& GOVD_PRIVATE
) && !(flags
& GOVD_PRIVATE_OUTER_REF
))
5698 if (ctx
->outer_context
5699 && omp_notice_variable (ctx
->outer_context
, decl
, in_code
))
5704 /* Verify that DECL is private within CTX. If there's specific information
5705 to the contrary in the innermost scope, generate an error. */
5708 omp_is_private (struct gimplify_omp_ctx
*ctx
, tree decl
)
5712 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
)decl
);
5715 if (n
->value
& GOVD_SHARED
)
5717 if (ctx
== gimplify_omp_ctxp
)
5719 error ("iteration variable %qE should be private",
5721 n
->value
= GOVD_PRIVATE
;
5727 else if ((n
->value
& GOVD_EXPLICIT
) != 0
5728 && (ctx
== gimplify_omp_ctxp
5729 || (ctx
->region_type
== ORT_COMBINED_PARALLEL
5730 && gimplify_omp_ctxp
->outer_context
== ctx
)))
5732 if ((n
->value
& GOVD_FIRSTPRIVATE
) != 0)
5733 error ("iteration variable %qE should not be firstprivate",
5735 else if ((n
->value
& GOVD_REDUCTION
) != 0)
5736 error ("iteration variable %qE should not be reduction",
5739 return (ctx
== gimplify_omp_ctxp
5740 || (ctx
->region_type
== ORT_COMBINED_PARALLEL
5741 && gimplify_omp_ctxp
->outer_context
== ctx
));
5744 if (ctx
->region_type
!= ORT_WORKSHARE
)
5746 else if (ctx
->outer_context
)
5747 return omp_is_private (ctx
->outer_context
, decl
);
5751 /* Return true if DECL is private within a parallel region
5752 that binds to the current construct's context or in parallel
5753 region's REDUCTION clause. */
5756 omp_check_private (struct gimplify_omp_ctx
*ctx
, tree decl
)
5762 ctx
= ctx
->outer_context
;
5764 return !(is_global_var (decl
)
5765 /* References might be private, but might be shared too. */
5766 || lang_hooks
.decls
.omp_privatize_by_reference (decl
));
5768 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
) decl
);
5770 return (n
->value
& GOVD_SHARED
) == 0;
5772 while (ctx
->region_type
== ORT_WORKSHARE
);
5776 /* Scan the OpenMP clauses in *LIST_P, installing mappings into a new
5777 and previous omp contexts. */
5780 gimplify_scan_omp_clauses (tree
*list_p
, gimple_seq
*pre_p
,
5781 enum omp_region_type region_type
)
5783 struct gimplify_omp_ctx
*ctx
, *outer_ctx
;
5784 struct gimplify_ctx gctx
;
5787 ctx
= new_omp_context (region_type
);
5788 outer_ctx
= ctx
->outer_context
;
5790 while ((c
= *list_p
) != NULL
)
5792 bool remove
= false;
5793 bool notice_outer
= true;
5794 const char *check_non_private
= NULL
;
5798 switch (OMP_CLAUSE_CODE (c
))
5800 case OMP_CLAUSE_PRIVATE
:
5801 flags
= GOVD_PRIVATE
| GOVD_EXPLICIT
;
5802 if (lang_hooks
.decls
.omp_private_outer_ref (OMP_CLAUSE_DECL (c
)))
5804 flags
|= GOVD_PRIVATE_OUTER_REF
;
5805 OMP_CLAUSE_PRIVATE_OUTER_REF (c
) = 1;
5808 notice_outer
= false;
5810 case OMP_CLAUSE_SHARED
:
5811 flags
= GOVD_SHARED
| GOVD_EXPLICIT
;
5813 case OMP_CLAUSE_FIRSTPRIVATE
:
5814 flags
= GOVD_FIRSTPRIVATE
| GOVD_EXPLICIT
;
5815 check_non_private
= "firstprivate";
5817 case OMP_CLAUSE_LASTPRIVATE
:
5818 flags
= GOVD_LASTPRIVATE
| GOVD_SEEN
| GOVD_EXPLICIT
;
5819 check_non_private
= "lastprivate";
5821 case OMP_CLAUSE_REDUCTION
:
5822 flags
= GOVD_REDUCTION
| GOVD_SEEN
| GOVD_EXPLICIT
;
5823 check_non_private
= "reduction";
5827 decl
= OMP_CLAUSE_DECL (c
);
5828 if (decl
== error_mark_node
|| TREE_TYPE (decl
) == error_mark_node
)
5833 omp_add_variable (ctx
, decl
, flags
);
5834 if (OMP_CLAUSE_CODE (c
) == OMP_CLAUSE_REDUCTION
5835 && OMP_CLAUSE_REDUCTION_PLACEHOLDER (c
))
5837 omp_add_variable (ctx
, OMP_CLAUSE_REDUCTION_PLACEHOLDER (c
),
5838 GOVD_LOCAL
| GOVD_SEEN
);
5839 gimplify_omp_ctxp
= ctx
;
5840 push_gimplify_context (&gctx
);
5842 OMP_CLAUSE_REDUCTION_GIMPLE_INIT (c
) = gimple_seq_alloc ();
5843 OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (c
) = gimple_seq_alloc ();
5845 gimplify_and_add (OMP_CLAUSE_REDUCTION_INIT (c
),
5846 &OMP_CLAUSE_REDUCTION_GIMPLE_INIT (c
));
5847 pop_gimplify_context
5848 (gimple_seq_first_stmt (OMP_CLAUSE_REDUCTION_GIMPLE_INIT (c
)));
5849 push_gimplify_context (&gctx
);
5850 gimplify_and_add (OMP_CLAUSE_REDUCTION_MERGE (c
),
5851 &OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (c
));
5852 pop_gimplify_context
5853 (gimple_seq_first_stmt (OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (c
)));
5854 OMP_CLAUSE_REDUCTION_INIT (c
) = NULL_TREE
;
5855 OMP_CLAUSE_REDUCTION_MERGE (c
) = NULL_TREE
;
5857 gimplify_omp_ctxp
= outer_ctx
;
5859 else if (OMP_CLAUSE_CODE (c
) == OMP_CLAUSE_LASTPRIVATE
5860 && OMP_CLAUSE_LASTPRIVATE_STMT (c
))
5862 gimplify_omp_ctxp
= ctx
;
5863 push_gimplify_context (&gctx
);
5864 if (TREE_CODE (OMP_CLAUSE_LASTPRIVATE_STMT (c
)) != BIND_EXPR
)
5866 tree bind
= build3 (BIND_EXPR
, void_type_node
, NULL
,
5868 TREE_SIDE_EFFECTS (bind
) = 1;
5869 BIND_EXPR_BODY (bind
) = OMP_CLAUSE_LASTPRIVATE_STMT (c
);
5870 OMP_CLAUSE_LASTPRIVATE_STMT (c
) = bind
;
5872 gimplify_and_add (OMP_CLAUSE_LASTPRIVATE_STMT (c
),
5873 &OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c
));
5874 pop_gimplify_context
5875 (gimple_seq_first_stmt (OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c
)));
5876 OMP_CLAUSE_LASTPRIVATE_STMT (c
) = NULL_TREE
;
5878 gimplify_omp_ctxp
= outer_ctx
;
5884 case OMP_CLAUSE_COPYIN
:
5885 case OMP_CLAUSE_COPYPRIVATE
:
5886 decl
= OMP_CLAUSE_DECL (c
);
5887 if (decl
== error_mark_node
|| TREE_TYPE (decl
) == error_mark_node
)
5894 omp_notice_variable (outer_ctx
, decl
, true);
5895 if (check_non_private
5896 && region_type
== ORT_WORKSHARE
5897 && omp_check_private (ctx
, decl
))
5899 error ("%s variable %qE is private in outer context",
5900 check_non_private
, DECL_NAME (decl
));
5906 OMP_CLAUSE_OPERAND (c
, 0)
5907 = gimple_boolify (OMP_CLAUSE_OPERAND (c
, 0));
5910 case OMP_CLAUSE_SCHEDULE
:
5911 case OMP_CLAUSE_NUM_THREADS
:
5912 if (gimplify_expr (&OMP_CLAUSE_OPERAND (c
, 0), pre_p
, NULL
,
5913 is_gimple_val
, fb_rvalue
) == GS_ERROR
)
5917 case OMP_CLAUSE_NOWAIT
:
5918 case OMP_CLAUSE_ORDERED
:
5919 case OMP_CLAUSE_UNTIED
:
5920 case OMP_CLAUSE_COLLAPSE
:
5923 case OMP_CLAUSE_DEFAULT
:
5924 ctx
->default_kind
= OMP_CLAUSE_DEFAULT_KIND (c
);
5932 *list_p
= OMP_CLAUSE_CHAIN (c
);
5934 list_p
= &OMP_CLAUSE_CHAIN (c
);
5937 gimplify_omp_ctxp
= ctx
;
5940 /* For all variables that were not actually used within the context,
5941 remove PRIVATE, SHARED, and FIRSTPRIVATE clauses. */
5944 gimplify_adjust_omp_clauses_1 (splay_tree_node n
, void *data
)
5946 tree
*list_p
= (tree
*) data
;
5947 tree decl
= (tree
) n
->key
;
5948 unsigned flags
= n
->value
;
5949 enum omp_clause_code code
;
5953 if (flags
& (GOVD_EXPLICIT
| GOVD_LOCAL
))
5955 if ((flags
& GOVD_SEEN
) == 0)
5957 if (flags
& GOVD_DEBUG_PRIVATE
)
5959 gcc_assert ((flags
& GOVD_DATA_SHARE_CLASS
) == GOVD_PRIVATE
);
5960 private_debug
= true;
5964 = lang_hooks
.decls
.omp_private_debug_clause (decl
,
5965 !!(flags
& GOVD_SHARED
));
5967 code
= OMP_CLAUSE_PRIVATE
;
5968 else if (flags
& GOVD_SHARED
)
5970 if (is_global_var (decl
))
5972 struct gimplify_omp_ctx
*ctx
= gimplify_omp_ctxp
->outer_context
;
5976 = splay_tree_lookup (ctx
->variables
, (splay_tree_key
) decl
);
5977 if (on
&& (on
->value
& (GOVD_FIRSTPRIVATE
| GOVD_LASTPRIVATE
5978 | GOVD_PRIVATE
| GOVD_REDUCTION
)) != 0)
5980 ctx
= ctx
->outer_context
;
5985 code
= OMP_CLAUSE_SHARED
;
5987 else if (flags
& GOVD_PRIVATE
)
5988 code
= OMP_CLAUSE_PRIVATE
;
5989 else if (flags
& GOVD_FIRSTPRIVATE
)
5990 code
= OMP_CLAUSE_FIRSTPRIVATE
;
5994 clause
= build_omp_clause (input_location
, code
);
5995 OMP_CLAUSE_DECL (clause
) = decl
;
5996 OMP_CLAUSE_CHAIN (clause
) = *list_p
;
5998 OMP_CLAUSE_PRIVATE_DEBUG (clause
) = 1;
5999 else if (code
== OMP_CLAUSE_PRIVATE
&& (flags
& GOVD_PRIVATE_OUTER_REF
))
6000 OMP_CLAUSE_PRIVATE_OUTER_REF (clause
) = 1;
6002 lang_hooks
.decls
.omp_finish_clause (clause
);
6008 gimplify_adjust_omp_clauses (tree
*list_p
)
6010 struct gimplify_omp_ctx
*ctx
= gimplify_omp_ctxp
;
6013 while ((c
= *list_p
) != NULL
)
6016 bool remove
= false;
6018 switch (OMP_CLAUSE_CODE (c
))
6020 case OMP_CLAUSE_PRIVATE
:
6021 case OMP_CLAUSE_SHARED
:
6022 case OMP_CLAUSE_FIRSTPRIVATE
:
6023 decl
= OMP_CLAUSE_DECL (c
);
6024 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
) decl
);
6025 remove
= !(n
->value
& GOVD_SEEN
);
6028 bool shared
= OMP_CLAUSE_CODE (c
) == OMP_CLAUSE_SHARED
;
6029 if ((n
->value
& GOVD_DEBUG_PRIVATE
)
6030 || lang_hooks
.decls
.omp_private_debug_clause (decl
, shared
))
6032 gcc_assert ((n
->value
& GOVD_DEBUG_PRIVATE
) == 0
6033 || ((n
->value
& GOVD_DATA_SHARE_CLASS
)
6035 OMP_CLAUSE_SET_CODE (c
, OMP_CLAUSE_PRIVATE
);
6036 OMP_CLAUSE_PRIVATE_DEBUG (c
) = 1;
6041 case OMP_CLAUSE_LASTPRIVATE
:
6042 /* Make sure OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE is set to
6043 accurately reflect the presence of a FIRSTPRIVATE clause. */
6044 decl
= OMP_CLAUSE_DECL (c
);
6045 n
= splay_tree_lookup (ctx
->variables
, (splay_tree_key
) decl
);
6046 OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE (c
)
6047 = (n
->value
& GOVD_FIRSTPRIVATE
) != 0;
6050 case OMP_CLAUSE_REDUCTION
:
6051 case OMP_CLAUSE_COPYIN
:
6052 case OMP_CLAUSE_COPYPRIVATE
:
6054 case OMP_CLAUSE_NUM_THREADS
:
6055 case OMP_CLAUSE_SCHEDULE
:
6056 case OMP_CLAUSE_NOWAIT
:
6057 case OMP_CLAUSE_ORDERED
:
6058 case OMP_CLAUSE_DEFAULT
:
6059 case OMP_CLAUSE_UNTIED
:
6060 case OMP_CLAUSE_COLLAPSE
:
6068 *list_p
= OMP_CLAUSE_CHAIN (c
);
6070 list_p
= &OMP_CLAUSE_CHAIN (c
);
6073 /* Add in any implicit data sharing. */
6074 splay_tree_foreach (ctx
->variables
, gimplify_adjust_omp_clauses_1
, list_p
);
6076 gimplify_omp_ctxp
= ctx
->outer_context
;
6077 delete_omp_context (ctx
);
6080 /* Gimplify the contents of an OMP_PARALLEL statement. This involves
6081 gimplification of the body, as well as scanning the body for used
6082 variables. We need to do this scan now, because variable-sized
6083 decls will be decomposed during gimplification. */
6086 gimplify_omp_parallel (tree
*expr_p
, gimple_seq
*pre_p
)
6088 tree expr
= *expr_p
;
6090 gimple_seq body
= NULL
;
6091 struct gimplify_ctx gctx
;
6093 gimplify_scan_omp_clauses (&OMP_PARALLEL_CLAUSES (expr
), pre_p
,
6094 OMP_PARALLEL_COMBINED (expr
)
6095 ? ORT_COMBINED_PARALLEL
6098 push_gimplify_context (&gctx
);
6100 g
= gimplify_and_return_first (OMP_PARALLEL_BODY (expr
), &body
);
6101 if (gimple_code (g
) == GIMPLE_BIND
)
6102 pop_gimplify_context (g
);
6104 pop_gimplify_context (NULL
);
6106 gimplify_adjust_omp_clauses (&OMP_PARALLEL_CLAUSES (expr
));
6108 g
= gimple_build_omp_parallel (body
,
6109 OMP_PARALLEL_CLAUSES (expr
),
6110 NULL_TREE
, NULL_TREE
);
6111 if (OMP_PARALLEL_COMBINED (expr
))
6112 gimple_omp_set_subcode (g
, GF_OMP_PARALLEL_COMBINED
);
6113 gimplify_seq_add_stmt (pre_p
, g
);
6114 *expr_p
= NULL_TREE
;
6117 /* Gimplify the contents of an OMP_TASK statement. This involves
6118 gimplification of the body, as well as scanning the body for used
6119 variables. We need to do this scan now, because variable-sized
6120 decls will be decomposed during gimplification. */
6123 gimplify_omp_task (tree
*expr_p
, gimple_seq
*pre_p
)
6125 tree expr
= *expr_p
;
6127 gimple_seq body
= NULL
;
6128 struct gimplify_ctx gctx
;
6130 gimplify_scan_omp_clauses (&OMP_TASK_CLAUSES (expr
), pre_p
,
6131 find_omp_clause (OMP_TASK_CLAUSES (expr
),
6133 ? ORT_UNTIED_TASK
: ORT_TASK
);
6135 push_gimplify_context (&gctx
);
6137 g
= gimplify_and_return_first (OMP_TASK_BODY (expr
), &body
);
6138 if (gimple_code (g
) == GIMPLE_BIND
)
6139 pop_gimplify_context (g
);
6141 pop_gimplify_context (NULL
);
6143 gimplify_adjust_omp_clauses (&OMP_TASK_CLAUSES (expr
));
6145 g
= gimple_build_omp_task (body
,
6146 OMP_TASK_CLAUSES (expr
),
6147 NULL_TREE
, NULL_TREE
,
6148 NULL_TREE
, NULL_TREE
, NULL_TREE
);
6149 gimplify_seq_add_stmt (pre_p
, g
);
6150 *expr_p
= NULL_TREE
;
6153 /* Gimplify the gross structure of an OMP_FOR statement. */
6155 static enum gimplify_status
6156 gimplify_omp_for (tree
*expr_p
, gimple_seq
*pre_p
)
6158 tree for_stmt
, decl
, var
, t
;
6159 enum gimplify_status ret
= GS_ALL_DONE
;
6160 enum gimplify_status tret
;
6162 gimple_seq for_body
, for_pre_body
;
6167 gimplify_scan_omp_clauses (&OMP_FOR_CLAUSES (for_stmt
), pre_p
,
6170 /* Handle OMP_FOR_INIT. */
6171 for_pre_body
= NULL
;
6172 gimplify_and_add (OMP_FOR_PRE_BODY (for_stmt
), &for_pre_body
);
6173 OMP_FOR_PRE_BODY (for_stmt
) = NULL_TREE
;
6175 for_body
= gimple_seq_alloc ();
6176 gcc_assert (TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt
))
6177 == TREE_VEC_LENGTH (OMP_FOR_COND (for_stmt
)));
6178 gcc_assert (TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt
))
6179 == TREE_VEC_LENGTH (OMP_FOR_INCR (for_stmt
)));
6180 for (i
= 0; i
< TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt
)); i
++)
6182 t
= TREE_VEC_ELT (OMP_FOR_INIT (for_stmt
), i
);
6183 gcc_assert (TREE_CODE (t
) == MODIFY_EXPR
);
6184 decl
= TREE_OPERAND (t
, 0);
6185 gcc_assert (DECL_P (decl
));
6186 gcc_assert (INTEGRAL_TYPE_P (TREE_TYPE (decl
))
6187 || POINTER_TYPE_P (TREE_TYPE (decl
)));
6189 /* Make sure the iteration variable is private. */
6190 if (omp_is_private (gimplify_omp_ctxp
, decl
))
6191 omp_notice_variable (gimplify_omp_ctxp
, decl
, true);
6193 omp_add_variable (gimplify_omp_ctxp
, decl
, GOVD_PRIVATE
| GOVD_SEEN
);
6195 /* If DECL is not a gimple register, create a temporary variable to act
6196 as an iteration counter. This is valid, since DECL cannot be
6197 modified in the body of the loop. */
6198 if (!is_gimple_reg (decl
))
6200 var
= create_tmp_var (TREE_TYPE (decl
), get_name (decl
));
6201 TREE_OPERAND (t
, 0) = var
;
6203 gimplify_seq_add_stmt (&for_body
, gimple_build_assign (decl
, var
));
6205 omp_add_variable (gimplify_omp_ctxp
, var
, GOVD_PRIVATE
| GOVD_SEEN
);
6210 tret
= gimplify_expr (&TREE_OPERAND (t
, 1), &for_pre_body
, NULL
,
6211 is_gimple_val
, fb_rvalue
);
6212 ret
= MIN (ret
, tret
);
6213 if (ret
== GS_ERROR
)
6216 /* Handle OMP_FOR_COND. */
6217 t
= TREE_VEC_ELT (OMP_FOR_COND (for_stmt
), i
);
6218 gcc_assert (COMPARISON_CLASS_P (t
));
6219 gcc_assert (TREE_OPERAND (t
, 0) == decl
);
6221 tret
= gimplify_expr (&TREE_OPERAND (t
, 1), &for_pre_body
, NULL
,
6222 is_gimple_val
, fb_rvalue
);
6223 ret
= MIN (ret
, tret
);
6225 /* Handle OMP_FOR_INCR. */
6226 t
= TREE_VEC_ELT (OMP_FOR_INCR (for_stmt
), i
);
6227 switch (TREE_CODE (t
))
6229 case PREINCREMENT_EXPR
:
6230 case POSTINCREMENT_EXPR
:
6231 t
= build_int_cst (TREE_TYPE (decl
), 1);
6232 t
= build2 (PLUS_EXPR
, TREE_TYPE (decl
), var
, t
);
6233 t
= build2 (MODIFY_EXPR
, TREE_TYPE (var
), var
, t
);
6234 TREE_VEC_ELT (OMP_FOR_INCR (for_stmt
), i
) = t
;
6237 case PREDECREMENT_EXPR
:
6238 case POSTDECREMENT_EXPR
:
6239 t
= build_int_cst (TREE_TYPE (decl
), -1);
6240 t
= build2 (PLUS_EXPR
, TREE_TYPE (decl
), var
, t
);
6241 t
= build2 (MODIFY_EXPR
, TREE_TYPE (var
), var
, t
);
6242 TREE_VEC_ELT (OMP_FOR_INCR (for_stmt
), i
) = t
;
6246 gcc_assert (TREE_OPERAND (t
, 0) == decl
);
6247 TREE_OPERAND (t
, 0) = var
;
6249 t
= TREE_OPERAND (t
, 1);
6250 switch (TREE_CODE (t
))
6253 if (TREE_OPERAND (t
, 1) == decl
)
6255 TREE_OPERAND (t
, 1) = TREE_OPERAND (t
, 0);
6256 TREE_OPERAND (t
, 0) = var
;
6262 case POINTER_PLUS_EXPR
:
6263 gcc_assert (TREE_OPERAND (t
, 0) == decl
);
6264 TREE_OPERAND (t
, 0) = var
;
6270 tret
= gimplify_expr (&TREE_OPERAND (t
, 1), &for_pre_body
, NULL
,
6271 is_gimple_val
, fb_rvalue
);
6272 ret
= MIN (ret
, tret
);
6279 if (var
!= decl
|| TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt
)) > 1)
6282 for (c
= OMP_FOR_CLAUSES (for_stmt
); c
; c
= OMP_CLAUSE_CHAIN (c
))
6283 if (OMP_CLAUSE_CODE (c
) == OMP_CLAUSE_LASTPRIVATE
6284 && OMP_CLAUSE_DECL (c
) == decl
6285 && OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c
) == NULL
)
6287 t
= TREE_VEC_ELT (OMP_FOR_INCR (for_stmt
), i
);
6288 gcc_assert (TREE_CODE (t
) == MODIFY_EXPR
);
6289 gcc_assert (TREE_OPERAND (t
, 0) == var
);
6290 t
= TREE_OPERAND (t
, 1);
6291 gcc_assert (TREE_CODE (t
) == PLUS_EXPR
6292 || TREE_CODE (t
) == MINUS_EXPR
6293 || TREE_CODE (t
) == POINTER_PLUS_EXPR
);
6294 gcc_assert (TREE_OPERAND (t
, 0) == var
);
6295 t
= build2 (TREE_CODE (t
), TREE_TYPE (decl
), decl
,
6296 TREE_OPERAND (t
, 1));
6297 gimplify_assign (decl
, t
,
6298 &OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c
));
6303 gimplify_and_add (OMP_FOR_BODY (for_stmt
), &for_body
);
6305 gimplify_adjust_omp_clauses (&OMP_FOR_CLAUSES (for_stmt
));
6307 gfor
= gimple_build_omp_for (for_body
, OMP_FOR_CLAUSES (for_stmt
),
6308 TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt
)),
6311 for (i
= 0; i
< TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt
)); i
++)
6313 t
= TREE_VEC_ELT (OMP_FOR_INIT (for_stmt
), i
);
6314 gimple_omp_for_set_index (gfor
, i
, TREE_OPERAND (t
, 0));
6315 gimple_omp_for_set_initial (gfor
, i
, TREE_OPERAND (t
, 1));
6316 t
= TREE_VEC_ELT (OMP_FOR_COND (for_stmt
), i
);
6317 gimple_omp_for_set_cond (gfor
, i
, TREE_CODE (t
));
6318 gimple_omp_for_set_final (gfor
, i
, TREE_OPERAND (t
, 1));
6319 t
= TREE_VEC_ELT (OMP_FOR_INCR (for_stmt
), i
);
6320 gimple_omp_for_set_incr (gfor
, i
, TREE_OPERAND (t
, 1));
6323 gimplify_seq_add_stmt (pre_p
, gfor
);
6324 return ret
== GS_ALL_DONE
? GS_ALL_DONE
: GS_ERROR
;
6327 /* Gimplify the gross structure of other OpenMP worksharing constructs.
6328 In particular, OMP_SECTIONS and OMP_SINGLE. */
6331 gimplify_omp_workshare (tree
*expr_p
, gimple_seq
*pre_p
)
6333 tree expr
= *expr_p
;
6335 gimple_seq body
= NULL
;
6337 gimplify_scan_omp_clauses (&OMP_CLAUSES (expr
), pre_p
, ORT_WORKSHARE
);
6338 gimplify_and_add (OMP_BODY (expr
), &body
);
6339 gimplify_adjust_omp_clauses (&OMP_CLAUSES (expr
));
6341 if (TREE_CODE (expr
) == OMP_SECTIONS
)
6342 stmt
= gimple_build_omp_sections (body
, OMP_CLAUSES (expr
));
6343 else if (TREE_CODE (expr
) == OMP_SINGLE
)
6344 stmt
= gimple_build_omp_single (body
, OMP_CLAUSES (expr
));
6348 gimplify_seq_add_stmt (pre_p
, stmt
);
6351 /* A subroutine of gimplify_omp_atomic. The front end is supposed to have
6352 stabilized the lhs of the atomic operation as *ADDR. Return true if
6353 EXPR is this stabilized form. */
6356 goa_lhs_expr_p (tree expr
, tree addr
)
6358 /* Also include casts to other type variants. The C front end is fond
6359 of adding these for e.g. volatile variables. This is like
6360 STRIP_TYPE_NOPS but includes the main variant lookup. */
6361 STRIP_USELESS_TYPE_CONVERSION (expr
);
6363 if (TREE_CODE (expr
) == INDIRECT_REF
)
6365 expr
= TREE_OPERAND (expr
, 0);
6367 && (CONVERT_EXPR_P (expr
)
6368 || TREE_CODE (expr
) == NON_LVALUE_EXPR
)
6369 && TREE_CODE (expr
) == TREE_CODE (addr
)
6370 && types_compatible_p (TREE_TYPE (expr
), TREE_TYPE (addr
)))
6372 expr
= TREE_OPERAND (expr
, 0);
6373 addr
= TREE_OPERAND (addr
, 0);
6377 return (TREE_CODE (addr
) == ADDR_EXPR
6378 && TREE_CODE (expr
) == ADDR_EXPR
6379 && TREE_OPERAND (addr
, 0) == TREE_OPERAND (expr
, 0));
6381 if (TREE_CODE (addr
) == ADDR_EXPR
&& expr
== TREE_OPERAND (addr
, 0))
6386 /* Walk *EXPR_P and replace
6387 appearances of *LHS_ADDR with LHS_VAR. If an expression does not involve
6388 the lhs, evaluate it into a temporary. Return 1 if the lhs appeared as
6389 a subexpression, 0 if it did not, or -1 if an error was encountered. */
6392 goa_stabilize_expr (tree
*expr_p
, gimple_seq
*pre_p
, tree lhs_addr
,
6395 tree expr
= *expr_p
;
6398 if (goa_lhs_expr_p (expr
, lhs_addr
))
6403 if (is_gimple_val (expr
))
6407 switch (TREE_CODE_CLASS (TREE_CODE (expr
)))
6410 case tcc_comparison
:
6411 saw_lhs
|= goa_stabilize_expr (&TREE_OPERAND (expr
, 1), pre_p
, lhs_addr
,
6414 saw_lhs
|= goa_stabilize_expr (&TREE_OPERAND (expr
, 0), pre_p
, lhs_addr
,
6417 case tcc_expression
:
6418 switch (TREE_CODE (expr
))
6420 case TRUTH_ANDIF_EXPR
:
6421 case TRUTH_ORIF_EXPR
:
6422 case TRUTH_AND_EXPR
:
6424 case TRUTH_XOR_EXPR
:
6425 saw_lhs
|= goa_stabilize_expr (&TREE_OPERAND (expr
, 1), pre_p
,
6427 case TRUTH_NOT_EXPR
:
6428 saw_lhs
|= goa_stabilize_expr (&TREE_OPERAND (expr
, 0), pre_p
,
6441 enum gimplify_status gs
;
6442 gs
= gimplify_expr (expr_p
, pre_p
, NULL
, is_gimple_val
, fb_rvalue
);
6443 if (gs
!= GS_ALL_DONE
)
6451 /* Gimplify an OMP_ATOMIC statement. */
6453 static enum gimplify_status
6454 gimplify_omp_atomic (tree
*expr_p
, gimple_seq
*pre_p
)
6456 tree addr
= TREE_OPERAND (*expr_p
, 0);
6457 tree rhs
= TREE_OPERAND (*expr_p
, 1);
6458 tree type
= TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (addr
)));
6461 tmp_load
= create_tmp_reg (type
, NULL
);
6462 if (goa_stabilize_expr (&rhs
, pre_p
, addr
, tmp_load
) < 0)
6465 if (gimplify_expr (&addr
, pre_p
, NULL
, is_gimple_val
, fb_rvalue
)
6469 gimplify_seq_add_stmt (pre_p
, gimple_build_omp_atomic_load (tmp_load
, addr
));
6470 if (gimplify_expr (&rhs
, pre_p
, NULL
, is_gimple_val
, fb_rvalue
)
6473 gimplify_seq_add_stmt (pre_p
, gimple_build_omp_atomic_store (rhs
));
6480 /* Converts the GENERIC expression tree *EXPR_P to GIMPLE. If the
6481 expression produces a value to be used as an operand inside a GIMPLE
6482 statement, the value will be stored back in *EXPR_P. This value will
6483 be a tree of class tcc_declaration, tcc_constant, tcc_reference or
6484 an SSA_NAME. The corresponding sequence of GIMPLE statements is
6485 emitted in PRE_P and POST_P.
6487 Additionally, this process may overwrite parts of the input
6488 expression during gimplification. Ideally, it should be
6489 possible to do non-destructive gimplification.
6491 EXPR_P points to the GENERIC expression to convert to GIMPLE. If
6492 the expression needs to evaluate to a value to be used as
6493 an operand in a GIMPLE statement, this value will be stored in
6494 *EXPR_P on exit. This happens when the caller specifies one
6495 of fb_lvalue or fb_rvalue fallback flags.
6497 PRE_P will contain the sequence of GIMPLE statements corresponding
6498 to the evaluation of EXPR and all the side-effects that must
6499 be executed before the main expression. On exit, the last
6500 statement of PRE_P is the core statement being gimplified. For
6501 instance, when gimplifying 'if (++a)' the last statement in
6502 PRE_P will be 'if (t.1)' where t.1 is the result of
6503 pre-incrementing 'a'.
6505 POST_P will contain the sequence of GIMPLE statements corresponding
6506 to the evaluation of all the side-effects that must be executed
6507 after the main expression. If this is NULL, the post
6508 side-effects are stored at the end of PRE_P.
6510 The reason why the output is split in two is to handle post
6511 side-effects explicitly. In some cases, an expression may have
6512 inner and outer post side-effects which need to be emitted in
6513 an order different from the one given by the recursive
6514 traversal. For instance, for the expression (*p--)++ the post
6515 side-effects of '--' must actually occur *after* the post
6516 side-effects of '++'. However, gimplification will first visit
6517 the inner expression, so if a separate POST sequence was not
6518 used, the resulting sequence would be:
6525 However, the post-decrement operation in line #2 must not be
6526 evaluated until after the store to *p at line #4, so the
6527 correct sequence should be:
6534 So, by specifying a separate post queue, it is possible
6535 to emit the post side-effects in the correct order.
6536 If POST_P is NULL, an internal queue will be used. Before
6537 returning to the caller, the sequence POST_P is appended to
6538 the main output sequence PRE_P.
6540 GIMPLE_TEST_F points to a function that takes a tree T and
6541 returns nonzero if T is in the GIMPLE form requested by the
6542 caller. The GIMPLE predicates are in gimple.c.
6544 FALLBACK tells the function what sort of a temporary we want if
6545 gimplification cannot produce an expression that complies with
6548 fb_none means that no temporary should be generated
6549 fb_rvalue means that an rvalue is OK to generate
6550 fb_lvalue means that an lvalue is OK to generate
6551 fb_either means that either is OK, but an lvalue is preferable.
6552 fb_mayfail means that gimplification may fail (in which case
6553 GS_ERROR will be returned)
6555 The return value is either GS_ERROR or GS_ALL_DONE, since this
6556 function iterates until EXPR is completely gimplified or an error
6559 enum gimplify_status
6560 gimplify_expr (tree
*expr_p
, gimple_seq
*pre_p
, gimple_seq
*post_p
,
6561 bool (*gimple_test_f
) (tree
), fallback_t fallback
)
6564 gimple_seq internal_pre
= NULL
;
6565 gimple_seq internal_post
= NULL
;
6568 location_t saved_location
;
6569 enum gimplify_status ret
;
6570 gimple_stmt_iterator pre_last_gsi
, post_last_gsi
;
6572 save_expr
= *expr_p
;
6573 if (save_expr
== NULL_TREE
)
6576 /* If we are gimplifying a top-level statement, PRE_P must be valid. */
6577 is_statement
= gimple_test_f
== is_gimple_stmt
;
6581 /* Consistency checks. */
6582 if (gimple_test_f
== is_gimple_reg
)
6583 gcc_assert (fallback
& (fb_rvalue
| fb_lvalue
));
6584 else if (gimple_test_f
== is_gimple_val
6585 || gimple_test_f
== is_gimple_call_addr
6586 || gimple_test_f
== is_gimple_condexpr
6587 || gimple_test_f
== is_gimple_mem_rhs
6588 || gimple_test_f
== is_gimple_mem_rhs_or_call
6589 || gimple_test_f
== is_gimple_reg_rhs
6590 || gimple_test_f
== is_gimple_reg_rhs_or_call
6591 || gimple_test_f
== is_gimple_asm_val
6592 || gimple_test_f
== is_gimple_mem_ref_addr
)
6593 gcc_assert (fallback
& fb_rvalue
);
6594 else if (gimple_test_f
== is_gimple_min_lval
6595 || gimple_test_f
== is_gimple_lvalue
)
6596 gcc_assert (fallback
& fb_lvalue
);
6597 else if (gimple_test_f
== is_gimple_addressable
)
6598 gcc_assert (fallback
& fb_either
);
6599 else if (gimple_test_f
== is_gimple_stmt
)
6600 gcc_assert (fallback
== fb_none
);
6603 /* We should have recognized the GIMPLE_TEST_F predicate to
6604 know what kind of fallback to use in case a temporary is
6605 needed to hold the value or address of *EXPR_P. */
6609 /* We used to check the predicate here and return immediately if it
6610 succeeds. This is wrong; the design is for gimplification to be
6611 idempotent, and for the predicates to only test for valid forms, not
6612 whether they are fully simplified. */
6614 pre_p
= &internal_pre
;
6617 post_p
= &internal_post
;
6619 /* Remember the last statements added to PRE_P and POST_P. Every
6620 new statement added by the gimplification helpers needs to be
6621 annotated with location information. To centralize the
6622 responsibility, we remember the last statement that had been
6623 added to both queues before gimplifying *EXPR_P. If
6624 gimplification produces new statements in PRE_P and POST_P, those
6625 statements will be annotated with the same location information
6627 pre_last_gsi
= gsi_last (*pre_p
);
6628 post_last_gsi
= gsi_last (*post_p
);
6630 saved_location
= input_location
;
6631 if (save_expr
!= error_mark_node
6632 && EXPR_HAS_LOCATION (*expr_p
))
6633 input_location
= EXPR_LOCATION (*expr_p
);
6635 /* Loop over the specific gimplifiers until the toplevel node
6636 remains the same. */
6639 /* Strip away as many useless type conversions as possible
6641 STRIP_USELESS_TYPE_CONVERSION (*expr_p
);
6643 /* Remember the expr. */
6644 save_expr
= *expr_p
;
6646 /* Die, die, die, my darling. */
6647 if (save_expr
== error_mark_node
6648 || (TREE_TYPE (save_expr
)
6649 && TREE_TYPE (save_expr
) == error_mark_node
))
6655 /* Do any language-specific gimplification. */
6656 ret
= ((enum gimplify_status
)
6657 lang_hooks
.gimplify_expr (expr_p
, pre_p
, post_p
));
6660 if (*expr_p
== NULL_TREE
)
6662 if (*expr_p
!= save_expr
)
6665 else if (ret
!= GS_UNHANDLED
)
6668 /* Make sure that all the cases set 'ret' appropriately. */
6670 switch (TREE_CODE (*expr_p
))
6672 /* First deal with the special cases. */
6674 case POSTINCREMENT_EXPR
:
6675 case POSTDECREMENT_EXPR
:
6676 case PREINCREMENT_EXPR
:
6677 case PREDECREMENT_EXPR
:
6678 ret
= gimplify_self_mod_expr (expr_p
, pre_p
, post_p
,
6679 fallback
!= fb_none
);
6683 case ARRAY_RANGE_REF
:
6687 case VIEW_CONVERT_EXPR
:
6688 ret
= gimplify_compound_lval (expr_p
, pre_p
, post_p
,
6689 fallback
? fallback
: fb_rvalue
);
6693 ret
= gimplify_cond_expr (expr_p
, pre_p
, fallback
);
6695 /* C99 code may assign to an array in a structure value of a
6696 conditional expression, and this has undefined behavior
6697 only on execution, so create a temporary if an lvalue is
6699 if (fallback
== fb_lvalue
)
6701 *expr_p
= get_initialized_tmp_var (*expr_p
, pre_p
, post_p
);
6702 mark_addressable (*expr_p
);
6708 ret
= gimplify_call_expr (expr_p
, pre_p
, fallback
!= fb_none
);
6710 /* C99 code may assign to an array in a structure returned
6711 from a function, and this has undefined behavior only on
6712 execution, so create a temporary if an lvalue is
6714 if (fallback
== fb_lvalue
)
6716 *expr_p
= get_initialized_tmp_var (*expr_p
, pre_p
, post_p
);
6717 mark_addressable (*expr_p
);
6726 ret
= gimplify_compound_expr (expr_p
, pre_p
, fallback
!= fb_none
);
6729 case COMPOUND_LITERAL_EXPR
:
6730 ret
= gimplify_compound_literal_expr (expr_p
, pre_p
);
6735 ret
= gimplify_modify_expr (expr_p
, pre_p
, post_p
,
6736 fallback
!= fb_none
);
6739 case TRUTH_ANDIF_EXPR
:
6740 case TRUTH_ORIF_EXPR
:
6741 /* Pass the source location of the outer expression. */
6742 ret
= gimplify_boolean_expr (expr_p
, saved_location
);
6745 case TRUTH_NOT_EXPR
:
6746 if (TREE_CODE (TREE_TYPE (*expr_p
)) != BOOLEAN_TYPE
)
6748 tree type
= TREE_TYPE (*expr_p
);
6749 *expr_p
= fold_convert (type
, gimple_boolify (*expr_p
));
6754 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
6755 is_gimple_val
, fb_rvalue
);
6756 recalculate_side_effects (*expr_p
);
6760 ret
= gimplify_addr_expr (expr_p
, pre_p
, post_p
);
6764 ret
= gimplify_va_arg_expr (expr_p
, pre_p
, post_p
);
6768 if (IS_EMPTY_STMT (*expr_p
))
6774 if (VOID_TYPE_P (TREE_TYPE (*expr_p
))
6775 || fallback
== fb_none
)
6777 /* Just strip a conversion to void (or in void context) and
6779 *expr_p
= TREE_OPERAND (*expr_p
, 0);
6784 ret
= gimplify_conversion (expr_p
);
6785 if (ret
== GS_ERROR
)
6787 if (*expr_p
!= save_expr
)
6791 case FIX_TRUNC_EXPR
:
6792 /* unary_expr: ... | '(' cast ')' val | ... */
6793 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
6794 is_gimple_val
, fb_rvalue
);
6795 recalculate_side_effects (*expr_p
);
6800 bool volatilep
= TREE_THIS_VOLATILE (*expr_p
);
6801 tree saved_ptr_type
= TREE_TYPE (TREE_OPERAND (*expr_p
, 0));
6803 *expr_p
= fold_indirect_ref_loc (input_location
, *expr_p
);
6804 if (*expr_p
!= save_expr
)
6810 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
6811 is_gimple_reg
, fb_rvalue
);
6812 if (ret
== GS_ERROR
)
6815 recalculate_side_effects (*expr_p
);
6816 *expr_p
= fold_build2_loc (input_location
, MEM_REF
,
6817 TREE_TYPE (*expr_p
),
6818 TREE_OPERAND (*expr_p
, 0),
6819 build_int_cst (saved_ptr_type
, 0));
6820 TREE_THIS_VOLATILE (*expr_p
) = volatilep
;
6825 /* We arrive here through the various re-gimplifcation paths. */
6827 /* First try re-folding the whole thing. */
6828 tmp
= fold_binary (MEM_REF
, TREE_TYPE (*expr_p
),
6829 TREE_OPERAND (*expr_p
, 0),
6830 TREE_OPERAND (*expr_p
, 1));
6834 recalculate_side_effects (*expr_p
);
6838 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
6839 is_gimple_mem_ref_addr
, fb_rvalue
);
6840 if (ret
== GS_ERROR
)
6842 recalculate_side_effects (*expr_p
);
6846 /* Constants need not be gimplified. */
6857 /* If we require an lvalue, such as for ADDR_EXPR, retain the
6858 CONST_DECL node. Otherwise the decl is replaceable by its
6860 /* ??? Should be == fb_lvalue, but ADDR_EXPR passes fb_either. */
6861 if (fallback
& fb_lvalue
)
6865 *expr_p
= DECL_INITIAL (*expr_p
);
6871 ret
= gimplify_decl_expr (expr_p
, pre_p
);
6875 ret
= gimplify_bind_expr (expr_p
, pre_p
);
6879 ret
= gimplify_loop_expr (expr_p
, pre_p
);
6883 ret
= gimplify_switch_expr (expr_p
, pre_p
);
6887 ret
= gimplify_exit_expr (expr_p
);
6891 /* If the target is not LABEL, then it is a computed jump
6892 and the target needs to be gimplified. */
6893 if (TREE_CODE (GOTO_DESTINATION (*expr_p
)) != LABEL_DECL
)
6895 ret
= gimplify_expr (&GOTO_DESTINATION (*expr_p
), pre_p
,
6896 NULL
, is_gimple_val
, fb_rvalue
);
6897 if (ret
== GS_ERROR
)
6900 gimplify_seq_add_stmt (pre_p
,
6901 gimple_build_goto (GOTO_DESTINATION (*expr_p
)));
6906 gimplify_seq_add_stmt (pre_p
,
6907 gimple_build_predict (PREDICT_EXPR_PREDICTOR (*expr_p
),
6908 PREDICT_EXPR_OUTCOME (*expr_p
)));
6914 gcc_assert (decl_function_context (LABEL_EXPR_LABEL (*expr_p
))
6915 == current_function_decl
);
6916 gimplify_seq_add_stmt (pre_p
,
6917 gimple_build_label (LABEL_EXPR_LABEL (*expr_p
)));
6920 case CASE_LABEL_EXPR
:
6921 ret
= gimplify_case_label_expr (expr_p
, pre_p
);
6925 ret
= gimplify_return_expr (*expr_p
, pre_p
);
6929 /* Don't reduce this in place; let gimplify_init_constructor work its
6930 magic. Buf if we're just elaborating this for side effects, just
6931 gimplify any element that has side-effects. */
6932 if (fallback
== fb_none
)
6934 unsigned HOST_WIDE_INT ix
;
6936 tree temp
= NULL_TREE
;
6937 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (*expr_p
), ix
, val
)
6938 if (TREE_SIDE_EFFECTS (val
))
6939 append_to_statement_list (val
, &temp
);
6942 ret
= temp
? GS_OK
: GS_ALL_DONE
;
6944 /* C99 code may assign to an array in a constructed
6945 structure or union, and this has undefined behavior only
6946 on execution, so create a temporary if an lvalue is
6948 else if (fallback
== fb_lvalue
)
6950 *expr_p
= get_initialized_tmp_var (*expr_p
, pre_p
, post_p
);
6951 mark_addressable (*expr_p
);
6958 /* The following are special cases that are not handled by the
6959 original GIMPLE grammar. */
6961 /* SAVE_EXPR nodes are converted into a GIMPLE identifier and
6964 ret
= gimplify_save_expr (expr_p
, pre_p
, post_p
);
6969 enum gimplify_status r0
, r1
, r2
;
6971 r0
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
,
6972 post_p
, is_gimple_lvalue
, fb_either
);
6973 r1
= gimplify_expr (&TREE_OPERAND (*expr_p
, 1), pre_p
,
6974 post_p
, is_gimple_val
, fb_rvalue
);
6975 r2
= gimplify_expr (&TREE_OPERAND (*expr_p
, 2), pre_p
,
6976 post_p
, is_gimple_val
, fb_rvalue
);
6977 recalculate_side_effects (*expr_p
);
6979 ret
= MIN (r0
, MIN (r1
, r2
));
6983 case TARGET_MEM_REF
:
6985 enum gimplify_status r0
= GS_ALL_DONE
, r1
= GS_ALL_DONE
;
6987 if (TMR_BASE (*expr_p
))
6988 r0
= gimplify_expr (&TMR_BASE (*expr_p
), pre_p
,
6989 post_p
, is_gimple_mem_ref_addr
, fb_either
);
6990 if (TMR_INDEX (*expr_p
))
6991 r1
= gimplify_expr (&TMR_INDEX (*expr_p
), pre_p
,
6992 post_p
, is_gimple_val
, fb_rvalue
);
6993 if (TMR_INDEX2 (*expr_p
))
6994 r1
= gimplify_expr (&TMR_INDEX2 (*expr_p
), pre_p
,
6995 post_p
, is_gimple_val
, fb_rvalue
);
6996 /* TMR_STEP and TMR_OFFSET are always integer constants. */
7001 case NON_LVALUE_EXPR
:
7002 /* This should have been stripped above. */
7006 ret
= gimplify_asm_expr (expr_p
, pre_p
, post_p
);
7009 case TRY_FINALLY_EXPR
:
7010 case TRY_CATCH_EXPR
:
7012 gimple_seq eval
, cleanup
;
7015 eval
= cleanup
= NULL
;
7016 gimplify_and_add (TREE_OPERAND (*expr_p
, 0), &eval
);
7017 gimplify_and_add (TREE_OPERAND (*expr_p
, 1), &cleanup
);
7018 /* Don't create bogus GIMPLE_TRY with empty cleanup. */
7019 if (gimple_seq_empty_p (cleanup
))
7021 gimple_seq_add_seq (pre_p
, eval
);
7025 try_
= gimple_build_try (eval
, cleanup
,
7026 TREE_CODE (*expr_p
) == TRY_FINALLY_EXPR
7027 ? GIMPLE_TRY_FINALLY
7028 : GIMPLE_TRY_CATCH
);
7029 if (TREE_CODE (*expr_p
) == TRY_CATCH_EXPR
)
7030 gimple_try_set_catch_is_cleanup (try_
,
7031 TRY_CATCH_IS_CLEANUP (*expr_p
));
7032 gimplify_seq_add_stmt (pre_p
, try_
);
7037 case CLEANUP_POINT_EXPR
:
7038 ret
= gimplify_cleanup_point_expr (expr_p
, pre_p
);
7042 ret
= gimplify_target_expr (expr_p
, pre_p
, post_p
);
7048 gimple_seq handler
= NULL
;
7049 gimplify_and_add (CATCH_BODY (*expr_p
), &handler
);
7050 c
= gimple_build_catch (CATCH_TYPES (*expr_p
), handler
);
7051 gimplify_seq_add_stmt (pre_p
, c
);
7056 case EH_FILTER_EXPR
:
7059 gimple_seq failure
= NULL
;
7061 gimplify_and_add (EH_FILTER_FAILURE (*expr_p
), &failure
);
7062 ehf
= gimple_build_eh_filter (EH_FILTER_TYPES (*expr_p
), failure
);
7063 gimple_set_no_warning (ehf
, TREE_NO_WARNING (*expr_p
));
7064 gimplify_seq_add_stmt (pre_p
, ehf
);
7071 enum gimplify_status r0
, r1
;
7072 r0
= gimplify_expr (&OBJ_TYPE_REF_OBJECT (*expr_p
), pre_p
,
7073 post_p
, is_gimple_val
, fb_rvalue
);
7074 r1
= gimplify_expr (&OBJ_TYPE_REF_EXPR (*expr_p
), pre_p
,
7075 post_p
, is_gimple_val
, fb_rvalue
);
7076 TREE_SIDE_EFFECTS (*expr_p
) = 0;
7082 /* We get here when taking the address of a label. We mark
7083 the label as "forced"; meaning it can never be removed and
7084 it is a potential target for any computed goto. */
7085 FORCED_LABEL (*expr_p
) = 1;
7089 case STATEMENT_LIST
:
7090 ret
= gimplify_statement_list (expr_p
, pre_p
);
7093 case WITH_SIZE_EXPR
:
7095 gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
,
7096 post_p
== &internal_post
? NULL
: post_p
,
7097 gimple_test_f
, fallback
);
7098 gimplify_expr (&TREE_OPERAND (*expr_p
, 1), pre_p
, post_p
,
7099 is_gimple_val
, fb_rvalue
);
7106 ret
= gimplify_var_or_parm_decl (expr_p
);
7110 /* When within an OpenMP context, notice uses of variables. */
7111 if (gimplify_omp_ctxp
)
7112 omp_notice_variable (gimplify_omp_ctxp
, *expr_p
, true);
7117 /* Allow callbacks into the gimplifier during optimization. */
7122 gimplify_omp_parallel (expr_p
, pre_p
);
7127 gimplify_omp_task (expr_p
, pre_p
);
7132 ret
= gimplify_omp_for (expr_p
, pre_p
);
7137 gimplify_omp_workshare (expr_p
, pre_p
);
7146 gimple_seq body
= NULL
;
7149 gimplify_and_add (OMP_BODY (*expr_p
), &body
);
7150 switch (TREE_CODE (*expr_p
))
7153 g
= gimple_build_omp_section (body
);
7156 g
= gimple_build_omp_master (body
);
7159 g
= gimple_build_omp_ordered (body
);
7162 g
= gimple_build_omp_critical (body
,
7163 OMP_CRITICAL_NAME (*expr_p
));
7168 gimplify_seq_add_stmt (pre_p
, g
);
7174 ret
= gimplify_omp_atomic (expr_p
, pre_p
);
7177 case POINTER_PLUS_EXPR
:
7178 /* Convert ((type *)A)+offset into &A->field_of_type_and_offset.
7179 The second is gimple immediate saving a need for extra statement.
7181 if (TREE_CODE (TREE_OPERAND (*expr_p
, 1)) == INTEGER_CST
7182 && (tmp
= maybe_fold_offset_to_address
7183 (EXPR_LOCATION (*expr_p
),
7184 TREE_OPERAND (*expr_p
, 0), TREE_OPERAND (*expr_p
, 1),
7185 TREE_TYPE (*expr_p
))))
7191 /* Convert (void *)&a + 4 into (void *)&a[1]. */
7192 if (TREE_CODE (TREE_OPERAND (*expr_p
, 0)) == NOP_EXPR
7193 && TREE_CODE (TREE_OPERAND (*expr_p
, 1)) == INTEGER_CST
7194 && POINTER_TYPE_P (TREE_TYPE (TREE_OPERAND (TREE_OPERAND (*expr_p
,
7196 && (tmp
= maybe_fold_offset_to_address
7197 (EXPR_LOCATION (*expr_p
),
7198 TREE_OPERAND (TREE_OPERAND (*expr_p
, 0), 0),
7199 TREE_OPERAND (*expr_p
, 1),
7200 TREE_TYPE (TREE_OPERAND (TREE_OPERAND (*expr_p
, 0),
7203 *expr_p
= fold_convert (TREE_TYPE (*expr_p
), tmp
);
7210 switch (TREE_CODE_CLASS (TREE_CODE (*expr_p
)))
7212 case tcc_comparison
:
7213 /* Handle comparison of objects of non scalar mode aggregates
7214 with a call to memcmp. It would be nice to only have to do
7215 this for variable-sized objects, but then we'd have to allow
7216 the same nest of reference nodes we allow for MODIFY_EXPR and
7219 Compare scalar mode aggregates as scalar mode values. Using
7220 memcmp for them would be very inefficient at best, and is
7221 plain wrong if bitfields are involved. */
7223 tree type
= TREE_TYPE (TREE_OPERAND (*expr_p
, 1));
7225 if (!AGGREGATE_TYPE_P (type
))
7227 else if (TYPE_MODE (type
) != BLKmode
)
7228 ret
= gimplify_scalar_mode_aggregate_compare (expr_p
);
7230 ret
= gimplify_variable_sized_compare (expr_p
);
7235 /* If *EXPR_P does not need to be special-cased, handle it
7236 according to its class. */
7238 ret
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
,
7239 post_p
, is_gimple_val
, fb_rvalue
);
7245 enum gimplify_status r0
, r1
;
7247 r0
= gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
,
7248 post_p
, is_gimple_val
, fb_rvalue
);
7249 r1
= gimplify_expr (&TREE_OPERAND (*expr_p
, 1), pre_p
,
7250 post_p
, is_gimple_val
, fb_rvalue
);
7256 case tcc_declaration
:
7259 goto dont_recalculate
;
7262 gcc_assert (TREE_CODE (*expr_p
) == TRUTH_AND_EXPR
7263 || TREE_CODE (*expr_p
) == TRUTH_OR_EXPR
7264 || TREE_CODE (*expr_p
) == TRUTH_XOR_EXPR
);
7268 recalculate_side_effects (*expr_p
);
7274 gcc_assert (*expr_p
|| ret
!= GS_OK
);
7276 while (ret
== GS_OK
);
7278 /* If we encountered an error_mark somewhere nested inside, either
7279 stub out the statement or propagate the error back out. */
7280 if (ret
== GS_ERROR
)
7287 /* This was only valid as a return value from the langhook, which
7288 we handled. Make sure it doesn't escape from any other context. */
7289 gcc_assert (ret
!= GS_UNHANDLED
);
7291 if (fallback
== fb_none
&& *expr_p
&& !is_gimple_stmt (*expr_p
))
7293 /* We aren't looking for a value, and we don't have a valid
7294 statement. If it doesn't have side-effects, throw it away. */
7295 if (!TREE_SIDE_EFFECTS (*expr_p
))
7297 else if (!TREE_THIS_VOLATILE (*expr_p
))
7299 /* This is probably a _REF that contains something nested that
7300 has side effects. Recurse through the operands to find it. */
7301 enum tree_code code
= TREE_CODE (*expr_p
);
7308 case VIEW_CONVERT_EXPR
:
7309 gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
7310 gimple_test_f
, fallback
);
7314 case ARRAY_RANGE_REF
:
7315 gimplify_expr (&TREE_OPERAND (*expr_p
, 0), pre_p
, post_p
,
7316 gimple_test_f
, fallback
);
7317 gimplify_expr (&TREE_OPERAND (*expr_p
, 1), pre_p
, post_p
,
7318 gimple_test_f
, fallback
);
7322 /* Anything else with side-effects must be converted to
7323 a valid statement before we get here. */
7329 else if (COMPLETE_TYPE_P (TREE_TYPE (*expr_p
))
7330 && TYPE_MODE (TREE_TYPE (*expr_p
)) != BLKmode
)
7332 /* Historically, the compiler has treated a bare reference
7333 to a non-BLKmode volatile lvalue as forcing a load. */
7334 tree type
= TYPE_MAIN_VARIANT (TREE_TYPE (*expr_p
));
7336 /* Normally, we do not want to create a temporary for a
7337 TREE_ADDRESSABLE type because such a type should not be
7338 copied by bitwise-assignment. However, we make an
7339 exception here, as all we are doing here is ensuring that
7340 we read the bytes that make up the type. We use
7341 create_tmp_var_raw because create_tmp_var will abort when
7342 given a TREE_ADDRESSABLE type. */
7343 tree tmp
= create_tmp_var_raw (type
, "vol");
7344 gimple_add_tmp_var (tmp
);
7345 gimplify_assign (tmp
, *expr_p
, pre_p
);
7349 /* We can't do anything useful with a volatile reference to
7350 an incomplete type, so just throw it away. Likewise for
7351 a BLKmode type, since any implicit inner load should
7352 already have been turned into an explicit one by the
7353 gimplification process. */
7357 /* If we are gimplifying at the statement level, we're done. Tack
7358 everything together and return. */
7359 if (fallback
== fb_none
|| is_statement
)
7361 /* Since *EXPR_P has been converted into a GIMPLE tuple, clear
7362 it out for GC to reclaim it. */
7363 *expr_p
= NULL_TREE
;
7365 if (!gimple_seq_empty_p (internal_pre
)
7366 || !gimple_seq_empty_p (internal_post
))
7368 gimplify_seq_add_seq (&internal_pre
, internal_post
);
7369 gimplify_seq_add_seq (pre_p
, internal_pre
);
7372 /* The result of gimplifying *EXPR_P is going to be the last few
7373 statements in *PRE_P and *POST_P. Add location information
7374 to all the statements that were added by the gimplification
7376 if (!gimple_seq_empty_p (*pre_p
))
7377 annotate_all_with_location_after (*pre_p
, pre_last_gsi
, input_location
);
7379 if (!gimple_seq_empty_p (*post_p
))
7380 annotate_all_with_location_after (*post_p
, post_last_gsi
,
7386 #ifdef ENABLE_GIMPLE_CHECKING
7389 enum tree_code code
= TREE_CODE (*expr_p
);
7390 /* These expressions should already be in gimple IR form. */
7391 gcc_assert (code
!= MODIFY_EXPR
7393 && code
!= BIND_EXPR
7394 && code
!= CATCH_EXPR
7395 && (code
!= COND_EXPR
|| gimplify_ctxp
->allow_rhs_cond_expr
)
7396 && code
!= EH_FILTER_EXPR
7397 && code
!= GOTO_EXPR
7398 && code
!= LABEL_EXPR
7399 && code
!= LOOP_EXPR
7400 && code
!= SWITCH_EXPR
7401 && code
!= TRY_FINALLY_EXPR
7402 && code
!= OMP_CRITICAL
7404 && code
!= OMP_MASTER
7405 && code
!= OMP_ORDERED
7406 && code
!= OMP_PARALLEL
7407 && code
!= OMP_SECTIONS
7408 && code
!= OMP_SECTION
7409 && code
!= OMP_SINGLE
);
7413 /* Otherwise we're gimplifying a subexpression, so the resulting
7414 value is interesting. If it's a valid operand that matches
7415 GIMPLE_TEST_F, we're done. Unless we are handling some
7416 post-effects internally; if that's the case, we need to copy into
7417 a temporary before adding the post-effects to POST_P. */
7418 if (gimple_seq_empty_p (internal_post
) && (*gimple_test_f
) (*expr_p
))
7421 /* Otherwise, we need to create a new temporary for the gimplified
7424 /* We can't return an lvalue if we have an internal postqueue. The
7425 object the lvalue refers to would (probably) be modified by the
7426 postqueue; we need to copy the value out first, which means an
7428 if ((fallback
& fb_lvalue
)
7429 && gimple_seq_empty_p (internal_post
)
7430 && is_gimple_addressable (*expr_p
))
7432 /* An lvalue will do. Take the address of the expression, store it
7433 in a temporary, and replace the expression with an INDIRECT_REF of
7435 tmp
= build_fold_addr_expr_loc (input_location
, *expr_p
);
7436 gimplify_expr (&tmp
, pre_p
, post_p
, is_gimple_reg
, fb_rvalue
);
7437 *expr_p
= build_simple_mem_ref (tmp
);
7439 else if ((fallback
& fb_rvalue
) && is_gimple_reg_rhs_or_call (*expr_p
))
7441 /* An rvalue will do. Assign the gimplified expression into a
7442 new temporary TMP and replace the original expression with
7443 TMP. First, make sure that the expression has a type so that
7444 it can be assigned into a temporary. */
7445 gcc_assert (!VOID_TYPE_P (TREE_TYPE (*expr_p
)));
7447 if (!gimple_seq_empty_p (internal_post
) || (fallback
& fb_lvalue
))
7448 /* The postqueue might change the value of the expression between
7449 the initialization and use of the temporary, so we can't use a
7450 formal temp. FIXME do we care? */
7452 *expr_p
= get_initialized_tmp_var (*expr_p
, pre_p
, post_p
);
7453 if (TREE_CODE (TREE_TYPE (*expr_p
)) == COMPLEX_TYPE
7454 || TREE_CODE (TREE_TYPE (*expr_p
)) == VECTOR_TYPE
)
7455 DECL_GIMPLE_REG_P (*expr_p
) = 1;
7458 *expr_p
= get_formal_tmp_var (*expr_p
, pre_p
);
7462 #ifdef ENABLE_GIMPLE_CHECKING
7463 if (!(fallback
& fb_mayfail
))
7465 fprintf (stderr
, "gimplification failed:\n");
7466 print_generic_expr (stderr
, *expr_p
, 0);
7467 debug_tree (*expr_p
);
7468 internal_error ("gimplification failed");
7471 gcc_assert (fallback
& fb_mayfail
);
7473 /* If this is an asm statement, and the user asked for the
7474 impossible, don't die. Fail and let gimplify_asm_expr
7480 /* Make sure the temporary matches our predicate. */
7481 gcc_assert ((*gimple_test_f
) (*expr_p
));
7483 if (!gimple_seq_empty_p (internal_post
))
7485 annotate_all_with_location (internal_post
, input_location
);
7486 gimplify_seq_add_seq (pre_p
, internal_post
);
7490 input_location
= saved_location
;
7494 /* Look through TYPE for variable-sized objects and gimplify each such
7495 size that we find. Add to LIST_P any statements generated. */
7498 gimplify_type_sizes (tree type
, gimple_seq
*list_p
)
7502 if (type
== NULL
|| type
== error_mark_node
)
7505 /* We first do the main variant, then copy into any other variants. */
7506 type
= TYPE_MAIN_VARIANT (type
);
7508 /* Avoid infinite recursion. */
7509 if (TYPE_SIZES_GIMPLIFIED (type
))
7512 TYPE_SIZES_GIMPLIFIED (type
) = 1;
7514 switch (TREE_CODE (type
))
7520 case FIXED_POINT_TYPE
:
7521 gimplify_one_sizepos (&TYPE_MIN_VALUE (type
), list_p
);
7522 gimplify_one_sizepos (&TYPE_MAX_VALUE (type
), list_p
);
7524 for (t
= TYPE_NEXT_VARIANT (type
); t
; t
= TYPE_NEXT_VARIANT (t
))
7526 TYPE_MIN_VALUE (t
) = TYPE_MIN_VALUE (type
);
7527 TYPE_MAX_VALUE (t
) = TYPE_MAX_VALUE (type
);
7532 /* These types may not have declarations, so handle them here. */
7533 gimplify_type_sizes (TREE_TYPE (type
), list_p
);
7534 gimplify_type_sizes (TYPE_DOMAIN (type
), list_p
);
7535 /* Ensure VLA bounds aren't removed, for -O0 they should be variables
7536 with assigned stack slots, for -O1+ -g they should be tracked
7538 if (TYPE_DOMAIN (type
)
7539 && INTEGRAL_TYPE_P (TYPE_DOMAIN (type
)))
7541 t
= TYPE_MIN_VALUE (TYPE_DOMAIN (type
));
7542 if (t
&& TREE_CODE (t
) == VAR_DECL
&& DECL_ARTIFICIAL (t
))
7543 DECL_IGNORED_P (t
) = 0;
7544 t
= TYPE_MAX_VALUE (TYPE_DOMAIN (type
));
7545 if (t
&& TREE_CODE (t
) == VAR_DECL
&& DECL_ARTIFICIAL (t
))
7546 DECL_IGNORED_P (t
) = 0;
7552 case QUAL_UNION_TYPE
:
7553 for (field
= TYPE_FIELDS (type
); field
; field
= DECL_CHAIN (field
))
7554 if (TREE_CODE (field
) == FIELD_DECL
)
7556 gimplify_one_sizepos (&DECL_FIELD_OFFSET (field
), list_p
);
7557 gimplify_one_sizepos (&DECL_SIZE (field
), list_p
);
7558 gimplify_one_sizepos (&DECL_SIZE_UNIT (field
), list_p
);
7559 gimplify_type_sizes (TREE_TYPE (field
), list_p
);
7564 case REFERENCE_TYPE
:
7565 /* We used to recurse on the pointed-to type here, which turned out to
7566 be incorrect because its definition might refer to variables not
7567 yet initialized at this point if a forward declaration is involved.
7569 It was actually useful for anonymous pointed-to types to ensure
7570 that the sizes evaluation dominates every possible later use of the
7571 values. Restricting to such types here would be safe since there
7572 is no possible forward declaration around, but would introduce an
7573 undesirable middle-end semantic to anonymity. We then defer to
7574 front-ends the responsibility of ensuring that the sizes are
7575 evaluated both early and late enough, e.g. by attaching artificial
7576 type declarations to the tree. */
7583 gimplify_one_sizepos (&TYPE_SIZE (type
), list_p
);
7584 gimplify_one_sizepos (&TYPE_SIZE_UNIT (type
), list_p
);
7586 for (t
= TYPE_NEXT_VARIANT (type
); t
; t
= TYPE_NEXT_VARIANT (t
))
7588 TYPE_SIZE (t
) = TYPE_SIZE (type
);
7589 TYPE_SIZE_UNIT (t
) = TYPE_SIZE_UNIT (type
);
7590 TYPE_SIZES_GIMPLIFIED (t
) = 1;
7594 /* A subroutine of gimplify_type_sizes to make sure that *EXPR_P,
7595 a size or position, has had all of its SAVE_EXPRs evaluated.
7596 We add any required statements to *STMT_P. */
7599 gimplify_one_sizepos (tree
*expr_p
, gimple_seq
*stmt_p
)
7601 tree type
, expr
= *expr_p
;
7603 /* We don't do anything if the value isn't there, is constant, or contains
7604 A PLACEHOLDER_EXPR. We also don't want to do anything if it's already
7605 a VAR_DECL. If it's a VAR_DECL from another function, the gimplifier
7606 will want to replace it with a new variable, but that will cause problems
7607 if this type is from outside the function. It's OK to have that here. */
7608 if (expr
== NULL_TREE
|| TREE_CONSTANT (expr
)
7609 || TREE_CODE (expr
) == VAR_DECL
7610 || CONTAINS_PLACEHOLDER_P (expr
))
7613 type
= TREE_TYPE (expr
);
7614 *expr_p
= unshare_expr (expr
);
7616 gimplify_expr (expr_p
, stmt_p
, NULL
, is_gimple_val
, fb_rvalue
);
7619 /* Verify that we've an exact type match with the original expression.
7620 In particular, we do not wish to drop a "sizetype" in favour of a
7621 type of similar dimensions. We don't want to pollute the generic
7622 type-stripping code with this knowledge because it doesn't matter
7623 for the bulk of GENERIC/GIMPLE. It only matters that TYPE_SIZE_UNIT
7624 and friends retain their "sizetype-ness". */
7625 if (TREE_TYPE (expr
) != type
7626 && TREE_CODE (type
) == INTEGER_TYPE
7627 && TYPE_IS_SIZETYPE (type
))
7632 *expr_p
= create_tmp_var (type
, NULL
);
7633 tmp
= build1 (NOP_EXPR
, type
, expr
);
7634 stmt
= gimplify_assign (*expr_p
, tmp
, stmt_p
);
7635 if (EXPR_HAS_LOCATION (expr
))
7636 gimple_set_location (stmt
, EXPR_LOCATION (expr
));
7638 gimple_set_location (stmt
, input_location
);
7643 /* Gimplify the body of statements pointed to by BODY_P and return a
7644 GIMPLE_BIND containing the sequence of GIMPLE statements
7645 corresponding to BODY_P. FNDECL is the function decl containing
7649 gimplify_body (tree
*body_p
, tree fndecl
, bool do_parms
)
7651 location_t saved_location
= input_location
;
7652 gimple_seq parm_stmts
, seq
;
7654 struct gimplify_ctx gctx
;
7656 timevar_push (TV_TREE_GIMPLIFY
);
7658 /* Initialize for optimize_insn_for_s{ize,peed}_p possibly called during
7660 default_rtl_profile ();
7662 gcc_assert (gimplify_ctxp
== NULL
);
7663 push_gimplify_context (&gctx
);
7665 /* Unshare most shared trees in the body and in that of any nested functions.
7666 It would seem we don't have to do this for nested functions because
7667 they are supposed to be output and then the outer function gimplified
7668 first, but the g++ front end doesn't always do it that way. */
7669 unshare_body (body_p
, fndecl
);
7670 unvisit_body (body_p
, fndecl
);
7672 if (cgraph_node (fndecl
)->origin
)
7673 nonlocal_vlas
= pointer_set_create ();
7675 /* Make sure input_location isn't set to something weird. */
7676 input_location
= DECL_SOURCE_LOCATION (fndecl
);
7678 /* Resolve callee-copies. This has to be done before processing
7679 the body so that DECL_VALUE_EXPR gets processed correctly. */
7680 parm_stmts
= (do_parms
) ? gimplify_parameters () : NULL
;
7682 /* Gimplify the function's body. */
7684 gimplify_stmt (body_p
, &seq
);
7685 outer_bind
= gimple_seq_first_stmt (seq
);
7688 outer_bind
= gimple_build_nop ();
7689 gimplify_seq_add_stmt (&seq
, outer_bind
);
7692 /* The body must contain exactly one statement, a GIMPLE_BIND. If this is
7693 not the case, wrap everything in a GIMPLE_BIND to make it so. */
7694 if (gimple_code (outer_bind
) == GIMPLE_BIND
7695 && gimple_seq_first (seq
) == gimple_seq_last (seq
))
7698 outer_bind
= gimple_build_bind (NULL_TREE
, seq
, NULL
);
7700 *body_p
= NULL_TREE
;
7702 /* If we had callee-copies statements, insert them at the beginning
7703 of the function and clear DECL_VALUE_EXPR_P on the parameters. */
7704 if (!gimple_seq_empty_p (parm_stmts
))
7708 gimplify_seq_add_seq (&parm_stmts
, gimple_bind_body (outer_bind
));
7709 gimple_bind_set_body (outer_bind
, parm_stmts
);
7711 for (parm
= DECL_ARGUMENTS (current_function_decl
);
7712 parm
; parm
= DECL_CHAIN (parm
))
7713 if (DECL_HAS_VALUE_EXPR_P (parm
))
7715 DECL_HAS_VALUE_EXPR_P (parm
) = 0;
7716 DECL_IGNORED_P (parm
) = 0;
7722 pointer_set_destroy (nonlocal_vlas
);
7723 nonlocal_vlas
= NULL
;
7726 pop_gimplify_context (outer_bind
);
7727 gcc_assert (gimplify_ctxp
== NULL
);
7729 #ifdef ENABLE_TYPES_CHECKING
7731 verify_types_in_gimple_seq (gimple_bind_body (outer_bind
));
7734 timevar_pop (TV_TREE_GIMPLIFY
);
7735 input_location
= saved_location
;
7740 /* Entry point to the gimplification pass. FNDECL is the FUNCTION_DECL
7741 node for the function we want to gimplify.
7743 Returns the sequence of GIMPLE statements corresponding to the body
7747 gimplify_function_tree (tree fndecl
)
7749 tree oldfn
, parm
, ret
;
7753 gcc_assert (!gimple_body (fndecl
));
7755 oldfn
= current_function_decl
;
7756 current_function_decl
= fndecl
;
7757 if (DECL_STRUCT_FUNCTION (fndecl
))
7758 push_cfun (DECL_STRUCT_FUNCTION (fndecl
));
7760 push_struct_function (fndecl
);
7762 for (parm
= DECL_ARGUMENTS (fndecl
); parm
; parm
= DECL_CHAIN (parm
))
7764 /* Preliminarily mark non-addressed complex variables as eligible
7765 for promotion to gimple registers. We'll transform their uses
7767 if ((TREE_CODE (TREE_TYPE (parm
)) == COMPLEX_TYPE
7768 || TREE_CODE (TREE_TYPE (parm
)) == VECTOR_TYPE
)
7769 && !TREE_THIS_VOLATILE (parm
)
7770 && !needs_to_live_in_memory (parm
))
7771 DECL_GIMPLE_REG_P (parm
) = 1;
7774 ret
= DECL_RESULT (fndecl
);
7775 if ((TREE_CODE (TREE_TYPE (ret
)) == COMPLEX_TYPE
7776 || TREE_CODE (TREE_TYPE (ret
)) == VECTOR_TYPE
)
7777 && !needs_to_live_in_memory (ret
))
7778 DECL_GIMPLE_REG_P (ret
) = 1;
7780 bind
= gimplify_body (&DECL_SAVED_TREE (fndecl
), fndecl
, true);
7782 /* The tree body of the function is no longer needed, replace it
7783 with the new GIMPLE body. */
7784 seq
= gimple_seq_alloc ();
7785 gimple_seq_add_stmt (&seq
, bind
);
7786 gimple_set_body (fndecl
, seq
);
7788 /* If we're instrumenting function entry/exit, then prepend the call to
7789 the entry hook and wrap the whole function in a TRY_FINALLY_EXPR to
7790 catch the exit hook. */
7791 /* ??? Add some way to ignore exceptions for this TFE. */
7792 if (flag_instrument_function_entry_exit
7793 && !DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (fndecl
)
7794 && !flag_instrument_functions_exclude_p (fndecl
))
7799 gimple_seq cleanup
= NULL
, body
= NULL
;
7801 x
= implicit_built_in_decls
[BUILT_IN_PROFILE_FUNC_EXIT
];
7802 gimplify_seq_add_stmt (&cleanup
, gimple_build_call (x
, 0));
7803 tf
= gimple_build_try (seq
, cleanup
, GIMPLE_TRY_FINALLY
);
7805 x
= implicit_built_in_decls
[BUILT_IN_PROFILE_FUNC_ENTER
];
7806 gimplify_seq_add_stmt (&body
, gimple_build_call (x
, 0));
7807 gimplify_seq_add_stmt (&body
, tf
);
7808 new_bind
= gimple_build_bind (NULL
, body
, gimple_bind_block (bind
));
7809 /* Clear the block for BIND, since it is no longer directly inside
7810 the function, but within a try block. */
7811 gimple_bind_set_block (bind
, NULL
);
7813 /* Replace the current function body with the body
7814 wrapped in the try/finally TF. */
7815 seq
= gimple_seq_alloc ();
7816 gimple_seq_add_stmt (&seq
, new_bind
);
7817 gimple_set_body (fndecl
, seq
);
7820 DECL_SAVED_TREE (fndecl
) = NULL_TREE
;
7821 cfun
->curr_properties
= PROP_gimple_any
;
7823 current_function_decl
= oldfn
;
7828 /* Some transformations like inlining may invalidate the GIMPLE form
7829 for operands. This function traverses all the operands in STMT and
7830 gimplifies anything that is not a valid gimple operand. Any new
7831 GIMPLE statements are inserted before *GSI_P. */
7834 gimple_regimplify_operands (gimple stmt
, gimple_stmt_iterator
*gsi_p
)
7837 tree orig_lhs
= NULL_TREE
, lhs
, t
;
7838 gimple_seq pre
= NULL
;
7839 gimple post_stmt
= NULL
;
7840 struct gimplify_ctx gctx
;
7842 push_gimplify_context (&gctx
);
7843 gimplify_ctxp
->into_ssa
= gimple_in_ssa_p (cfun
);
7845 switch (gimple_code (stmt
))
7848 gimplify_expr (gimple_cond_lhs_ptr (stmt
), &pre
, NULL
,
7849 is_gimple_val
, fb_rvalue
);
7850 gimplify_expr (gimple_cond_rhs_ptr (stmt
), &pre
, NULL
,
7851 is_gimple_val
, fb_rvalue
);
7854 gimplify_expr (gimple_switch_index_ptr (stmt
), &pre
, NULL
,
7855 is_gimple_val
, fb_rvalue
);
7857 case GIMPLE_OMP_ATOMIC_LOAD
:
7858 gimplify_expr (gimple_omp_atomic_load_rhs_ptr (stmt
), &pre
, NULL
,
7859 is_gimple_val
, fb_rvalue
);
7863 size_t i
, noutputs
= gimple_asm_noutputs (stmt
);
7864 const char *constraint
, **oconstraints
;
7865 bool allows_mem
, allows_reg
, is_inout
;
7868 = (const char **) alloca ((noutputs
) * sizeof (const char *));
7869 for (i
= 0; i
< noutputs
; i
++)
7871 tree op
= gimple_asm_output_op (stmt
, i
);
7872 constraint
= TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (op
)));
7873 oconstraints
[i
] = constraint
;
7874 parse_output_constraint (&constraint
, i
, 0, 0, &allows_mem
,
7875 &allows_reg
, &is_inout
);
7876 gimplify_expr (&TREE_VALUE (op
), &pre
, NULL
,
7877 is_inout
? is_gimple_min_lval
: is_gimple_lvalue
,
7878 fb_lvalue
| fb_mayfail
);
7880 for (i
= 0; i
< gimple_asm_ninputs (stmt
); i
++)
7882 tree op
= gimple_asm_input_op (stmt
, i
);
7883 constraint
= TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (op
)));
7884 parse_input_constraint (&constraint
, 0, 0, noutputs
, 0,
7885 oconstraints
, &allows_mem
, &allows_reg
);
7886 if (TREE_ADDRESSABLE (TREE_TYPE (TREE_VALUE (op
))) && allows_mem
)
7888 if (!allows_reg
&& allows_mem
)
7889 gimplify_expr (&TREE_VALUE (op
), &pre
, NULL
,
7890 is_gimple_lvalue
, fb_lvalue
| fb_mayfail
);
7892 gimplify_expr (&TREE_VALUE (op
), &pre
, NULL
,
7893 is_gimple_asm_val
, fb_rvalue
);
7898 /* NOTE: We start gimplifying operands from last to first to
7899 make sure that side-effects on the RHS of calls, assignments
7900 and ASMs are executed before the LHS. The ordering is not
7901 important for other statements. */
7902 num_ops
= gimple_num_ops (stmt
);
7903 orig_lhs
= gimple_get_lhs (stmt
);
7904 for (i
= num_ops
; i
> 0; i
--)
7906 tree op
= gimple_op (stmt
, i
- 1);
7907 if (op
== NULL_TREE
)
7909 if (i
== 1 && (is_gimple_call (stmt
) || is_gimple_assign (stmt
)))
7910 gimplify_expr (&op
, &pre
, NULL
, is_gimple_lvalue
, fb_lvalue
);
7912 && is_gimple_assign (stmt
)
7914 && get_gimple_rhs_class (gimple_expr_code (stmt
))
7915 == GIMPLE_SINGLE_RHS
)
7916 gimplify_expr (&op
, &pre
, NULL
,
7917 rhs_predicate_for (gimple_assign_lhs (stmt
)),
7919 else if (i
== 2 && is_gimple_call (stmt
))
7921 if (TREE_CODE (op
) == FUNCTION_DECL
)
7923 gimplify_expr (&op
, &pre
, NULL
, is_gimple_call_addr
, fb_rvalue
);
7926 gimplify_expr (&op
, &pre
, NULL
, is_gimple_val
, fb_rvalue
);
7927 gimple_set_op (stmt
, i
- 1, op
);
7930 lhs
= gimple_get_lhs (stmt
);
7931 /* If the LHS changed it in a way that requires a simple RHS,
7932 create temporary. */
7933 if (lhs
&& !is_gimple_reg (lhs
))
7935 bool need_temp
= false;
7937 if (is_gimple_assign (stmt
)
7939 && get_gimple_rhs_class (gimple_expr_code (stmt
))
7940 == GIMPLE_SINGLE_RHS
)
7941 gimplify_expr (gimple_assign_rhs1_ptr (stmt
), &pre
, NULL
,
7942 rhs_predicate_for (gimple_assign_lhs (stmt
)),
7944 else if (is_gimple_reg (lhs
))
7946 if (is_gimple_reg_type (TREE_TYPE (lhs
)))
7948 if (is_gimple_call (stmt
))
7950 i
= gimple_call_flags (stmt
);
7951 if ((i
& ECF_LOOPING_CONST_OR_PURE
)
7952 || !(i
& (ECF_CONST
| ECF_PURE
)))
7955 if (stmt_can_throw_internal (stmt
))
7961 if (is_gimple_reg_type (TREE_TYPE (lhs
)))
7963 else if (TYPE_MODE (TREE_TYPE (lhs
)) != BLKmode
)
7965 if (is_gimple_call (stmt
))
7967 tree fndecl
= gimple_call_fndecl (stmt
);
7969 if (!aggregate_value_p (TREE_TYPE (lhs
), fndecl
)
7970 && !(fndecl
&& DECL_RESULT (fndecl
)
7971 && DECL_BY_REFERENCE (DECL_RESULT (fndecl
))))
7980 tree temp
= create_tmp_reg (TREE_TYPE (lhs
), NULL
);
7982 if (TREE_CODE (orig_lhs
) == SSA_NAME
)
7983 orig_lhs
= SSA_NAME_VAR (orig_lhs
);
7985 if (gimple_in_ssa_p (cfun
))
7986 temp
= make_ssa_name (temp
, NULL
);
7987 gimple_set_lhs (stmt
, temp
);
7988 post_stmt
= gimple_build_assign (lhs
, temp
);
7989 if (TREE_CODE (lhs
) == SSA_NAME
)
7990 SSA_NAME_DEF_STMT (lhs
) = post_stmt
;
7996 if (gimple_referenced_vars (cfun
))
7997 for (t
= gimplify_ctxp
->temps
; t
; t
= TREE_CHAIN (t
))
7998 add_referenced_var (t
);
8000 if (!gimple_seq_empty_p (pre
))
8002 if (gimple_in_ssa_p (cfun
))
8004 gimple_stmt_iterator i
;
8006 for (i
= gsi_start (pre
); !gsi_end_p (i
); gsi_next (&i
))
8007 mark_symbols_for_renaming (gsi_stmt (i
));
8009 gsi_insert_seq_before (gsi_p
, pre
, GSI_SAME_STMT
);
8012 gsi_insert_after (gsi_p
, post_stmt
, GSI_NEW_STMT
);
8014 pop_gimplify_context (NULL
);
8018 /* Expands EXPR to list of gimple statements STMTS. GIMPLE_TEST_F specifies
8019 the predicate that will hold for the result. If VAR is not NULL, make the
8020 base variable of the final destination be VAR if suitable. */
8023 force_gimple_operand_1 (tree expr
, gimple_seq
*stmts
,
8024 gimple_predicate gimple_test_f
, tree var
)
8027 enum gimplify_status ret
;
8028 struct gimplify_ctx gctx
;
8032 if (is_gimple_val (expr
))
8035 push_gimplify_context (&gctx
);
8036 gimplify_ctxp
->into_ssa
= gimple_in_ssa_p (cfun
);
8037 gimplify_ctxp
->allow_rhs_cond_expr
= true;
8040 expr
= build2 (MODIFY_EXPR
, TREE_TYPE (var
), var
, expr
);
8042 if (TREE_CODE (expr
) != MODIFY_EXPR
8043 && TREE_TYPE (expr
) == void_type_node
)
8045 gimplify_and_add (expr
, stmts
);
8050 ret
= gimplify_expr (&expr
, stmts
, NULL
, gimple_test_f
, fb_rvalue
);
8051 gcc_assert (ret
!= GS_ERROR
);
8054 if (gimple_referenced_vars (cfun
))
8055 for (t
= gimplify_ctxp
->temps
; t
; t
= DECL_CHAIN (t
))
8056 add_referenced_var (t
);
8058 pop_gimplify_context (NULL
);
8063 /* Expands EXPR to list of gimple statements STMTS. If SIMPLE is true,
8064 force the result to be either ssa_name or an invariant, otherwise
8065 just force it to be a rhs expression. If VAR is not NULL, make the
8066 base variable of the final destination be VAR if suitable. */
8069 force_gimple_operand (tree expr
, gimple_seq
*stmts
, bool simple
, tree var
)
8071 return force_gimple_operand_1 (expr
, stmts
,
8072 simple
? is_gimple_val
: is_gimple_reg_rhs
,
8076 /* Invokes force_gimple_operand_1 for EXPR with parameters GIMPLE_TEST_F
8077 and VAR. If some statements are produced, emits them at GSI.
8078 If BEFORE is true. the statements are appended before GSI, otherwise
8079 they are appended after it. M specifies the way GSI moves after
8080 insertion (GSI_SAME_STMT or GSI_CONTINUE_LINKING are the usual values). */
8083 force_gimple_operand_gsi_1 (gimple_stmt_iterator
*gsi
, tree expr
,
8084 gimple_predicate gimple_test_f
,
8085 tree var
, bool before
,
8086 enum gsi_iterator_update m
)
8090 expr
= force_gimple_operand_1 (expr
, &stmts
, gimple_test_f
, var
);
8092 if (!gimple_seq_empty_p (stmts
))
8094 if (gimple_in_ssa_p (cfun
))
8096 gimple_stmt_iterator i
;
8098 for (i
= gsi_start (stmts
); !gsi_end_p (i
); gsi_next (&i
))
8099 mark_symbols_for_renaming (gsi_stmt (i
));
8103 gsi_insert_seq_before (gsi
, stmts
, m
);
8105 gsi_insert_seq_after (gsi
, stmts
, m
);
8111 /* Invokes force_gimple_operand_1 for EXPR with parameter VAR.
8112 If SIMPLE is true, force the result to be either ssa_name or an invariant,
8113 otherwise just force it to be a rhs expression. If some statements are
8114 produced, emits them at GSI. If BEFORE is true, the statements are
8115 appended before GSI, otherwise they are appended after it. M specifies
8116 the way GSI moves after insertion (GSI_SAME_STMT or GSI_CONTINUE_LINKING
8117 are the usual values). */
8120 force_gimple_operand_gsi (gimple_stmt_iterator
*gsi
, tree expr
,
8121 bool simple_p
, tree var
, bool before
,
8122 enum gsi_iterator_update m
)
8124 return force_gimple_operand_gsi_1 (gsi
, expr
,
8126 ? is_gimple_val
: is_gimple_reg_rhs
,
8131 #include "gt-gimplify.h"