1 /****************************************************************************
3 * GNAT COMPILER COMPONENTS *
7 * C Implementation File *
9 * Copyright (C) 1992-2011, Free Software Foundation, Inc. *
11 * GNAT is free software; you can redistribute it and/or modify it under *
12 * terms of the GNU General Public License as published by the Free Soft- *
13 * ware Foundation; either version 3, or (at your option) any later ver- *
14 * sion. GNAT is distributed in the hope that it will be useful, but WITH- *
15 * OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY *
16 * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License *
17 * for more details. You should have received a copy of the GNU General *
18 * Public License distributed with GNAT; see file COPYING3. If not see *
19 * <http://www.gnu.org/licenses/>. *
21 * GNAT was originally developed by the GNAT team at New York University. *
22 * Extensive contributions were provided by Ada Core Technologies Inc. *
24 ****************************************************************************/
28 #include "coretypes.h"
34 #include "libfuncs.h" /* For set_stack_check_libfunc. */
35 #include "tree-iterator.h"
39 #include "adadecode.h"
56 /* We should avoid allocating more than ALLOCA_THRESHOLD bytes via alloca,
57 for fear of running out of stack space. If we need more, we use xmalloc
59 #define ALLOCA_THRESHOLD 1000
61 /* Let code below know whether we are targetting VMS without need of
62 intrusive preprocessor directives. */
63 #ifndef TARGET_ABI_OPEN_VMS
64 #define TARGET_ABI_OPEN_VMS 0
67 /* In configurations where blocks have no end_locus attached, just
68 sink assignments into a dummy global. */
69 #ifndef BLOCK_SOURCE_END_LOCATION
70 static location_t block_end_locus_sink
;
71 #define BLOCK_SOURCE_END_LOCATION(BLOCK) block_end_locus_sink
74 /* For efficient float-to-int rounding, it is necessary to know whether
75 floating-point arithmetic may use wider intermediate results. When
76 FP_ARITH_MAY_WIDEN is not defined, be conservative and only assume
77 that arithmetic does not widen if double precision is emulated. */
78 #ifndef FP_ARITH_MAY_WIDEN
79 #if defined(HAVE_extendsfdf2)
80 #define FP_ARITH_MAY_WIDEN HAVE_extendsfdf2
82 #define FP_ARITH_MAY_WIDEN 0
86 /* Pointers to front-end tables accessed through macros. */
87 struct Node
*Nodes_Ptr
;
88 Node_Id
*Next_Node_Ptr
;
89 Node_Id
*Prev_Node_Ptr
;
90 struct Elist_Header
*Elists_Ptr
;
91 struct Elmt_Item
*Elmts_Ptr
;
92 struct String_Entry
*Strings_Ptr
;
93 Char_Code
*String_Chars_Ptr
;
94 struct List_Header
*List_Headers_Ptr
;
96 /* Highest number in the front-end node table. */
99 /* Current node being treated, in case abort called. */
100 Node_Id error_gnat_node
;
102 /* True when gigi is being called on an analyzed but unexpanded
103 tree, and the only purpose of the call is to properly annotate
104 types with representation information. */
105 bool type_annotate_only
;
107 /* Current filename without path. */
108 const char *ref_filename
;
110 /* When not optimizing, we cache the 'First, 'Last and 'Length attributes
111 of unconstrained array IN parameters to avoid emitting a great deal of
112 redundant instructions to recompute them each time. */
113 struct GTY (()) parm_attr_d
{
114 int id
; /* GTY doesn't like Entity_Id. */
121 typedef struct parm_attr_d
*parm_attr
;
123 DEF_VEC_P(parm_attr
);
124 DEF_VEC_ALLOC_P(parm_attr
,gc
);
126 struct GTY(()) language_function
{
127 VEC(parm_attr
,gc
) *parm_attr_cache
;
130 #define f_parm_attr_cache \
131 DECL_STRUCT_FUNCTION (current_function_decl)->language->parm_attr_cache
133 /* A structure used to gather together information about a statement group.
134 We use this to gather related statements, for example the "then" part
135 of a IF. In the case where it represents a lexical scope, we may also
136 have a BLOCK node corresponding to it and/or cleanups. */
138 struct GTY((chain_next ("%h.previous"))) stmt_group
{
139 struct stmt_group
*previous
; /* Previous code group. */
140 tree stmt_list
; /* List of statements for this code group. */
141 tree block
; /* BLOCK for this code group, if any. */
142 tree cleanups
; /* Cleanups for this code group, if any. */
145 static GTY(()) struct stmt_group
*current_stmt_group
;
147 /* List of unused struct stmt_group nodes. */
148 static GTY((deletable
)) struct stmt_group
*stmt_group_free_list
;
150 /* A structure used to record information on elaboration procedures
151 we've made and need to process.
153 ??? gnat_node should be Node_Id, but gengtype gets confused. */
155 struct GTY((chain_next ("%h.next"))) elab_info
{
156 struct elab_info
*next
; /* Pointer to next in chain. */
157 tree elab_proc
; /* Elaboration procedure. */
158 int gnat_node
; /* The N_Compilation_Unit. */
161 static GTY(()) struct elab_info
*elab_info_list
;
163 /* Stack of exception pointer variables. Each entry is the VAR_DECL
164 that stores the address of the raised exception. Nonzero means we
165 are in an exception handler. Not used in the zero-cost case. */
166 static GTY(()) VEC(tree
,gc
) *gnu_except_ptr_stack
;
168 /* Stack for storing the current elaboration procedure decl. */
169 static GTY(()) VEC(tree
,gc
) *gnu_elab_proc_stack
;
171 /* Stack of labels to be used as a goto target instead of a return in
172 some functions. See processing for N_Subprogram_Body. */
173 static GTY(()) VEC(tree
,gc
) *gnu_return_label_stack
;
175 /* Stack of variable for the return value of a function with copy-in/copy-out
176 parameters. See processing for N_Subprogram_Body. */
177 static GTY(()) VEC(tree
,gc
) *gnu_return_var_stack
;
179 /* Stack of LOOP_STMT nodes. */
180 static GTY(()) VEC(tree
,gc
) *gnu_loop_label_stack
;
182 /* The stacks for N_{Push,Pop}_*_Label. */
183 static GTY(()) VEC(tree
,gc
) *gnu_constraint_error_label_stack
;
184 static GTY(()) VEC(tree
,gc
) *gnu_storage_error_label_stack
;
185 static GTY(()) VEC(tree
,gc
) *gnu_program_error_label_stack
;
187 /* Map GNAT tree codes to GCC tree codes for simple expressions. */
188 static enum tree_code gnu_codes
[Number_Node_Kinds
];
190 static void init_code_table (void);
191 static void Compilation_Unit_to_gnu (Node_Id
);
192 static void record_code_position (Node_Id
);
193 static void insert_code_for (Node_Id
);
194 static void add_cleanup (tree
, Node_Id
);
195 static void add_stmt_list (List_Id
);
196 static void push_exception_label_stack (VEC(tree
,gc
) **, Entity_Id
);
197 static tree
build_stmt_group (List_Id
, bool);
198 static enum gimplify_status
gnat_gimplify_stmt (tree
*);
199 static void elaborate_all_entities (Node_Id
);
200 static void process_freeze_entity (Node_Id
);
201 static void process_decls (List_Id
, List_Id
, Node_Id
, bool, bool);
202 static tree
emit_range_check (tree
, Node_Id
, Node_Id
);
203 static tree
emit_index_check (tree
, tree
, tree
, tree
, Node_Id
);
204 static tree
emit_check (tree
, tree
, int, Node_Id
);
205 static tree
build_unary_op_trapv (enum tree_code
, tree
, tree
, Node_Id
);
206 static tree
build_binary_op_trapv (enum tree_code
, tree
, tree
, tree
, Node_Id
);
207 static tree
convert_with_check (Entity_Id
, tree
, bool, bool, bool, Node_Id
);
208 static bool addressable_p (tree
, tree
);
209 static tree
assoc_to_constructor (Entity_Id
, Node_Id
, tree
);
210 static tree
extract_values (tree
, tree
);
211 static tree
pos_to_constructor (Node_Id
, tree
, Entity_Id
);
212 static tree
maybe_implicit_deref (tree
);
213 static void set_expr_location_from_node (tree
, Node_Id
);
214 static bool set_end_locus_from_node (tree
, Node_Id
);
215 static void set_gnu_expr_location_from_node (tree
, Node_Id
);
216 static int lvalue_required_p (Node_Id
, tree
, bool, bool, bool);
217 static tree
build_raise_check (int, tree
, enum exception_info_kind
);
219 /* Hooks for debug info back-ends, only supported and used in a restricted set
220 of configurations. */
221 static const char *extract_encoding (const char *) ATTRIBUTE_UNUSED
;
222 static const char *decode_name (const char *) ATTRIBUTE_UNUSED
;
224 /* This is the main program of the back-end. It sets up all the table
225 structures and then generates code. */
228 gigi (Node_Id gnat_root
, int max_gnat_node
, int number_name ATTRIBUTE_UNUSED
,
229 struct Node
*nodes_ptr
, Node_Id
*next_node_ptr
, Node_Id
*prev_node_ptr
,
230 struct Elist_Header
*elists_ptr
, struct Elmt_Item
*elmts_ptr
,
231 struct String_Entry
*strings_ptr
, Char_Code
*string_chars_ptr
,
232 struct List_Header
*list_headers_ptr
, Nat number_file
,
233 struct File_Info_Type
*file_info_ptr
,
234 Entity_Id standard_boolean
, Entity_Id standard_integer
,
235 Entity_Id standard_character
, Entity_Id standard_long_long_float
,
236 Entity_Id standard_exception_type
, Int gigi_operating_mode
)
238 Entity_Id gnat_literal
;
239 tree long_long_float_type
, exception_type
, t
;
240 tree int64_type
= gnat_type_for_size (64, 0);
241 struct elab_info
*info
;
244 max_gnat_nodes
= max_gnat_node
;
246 Nodes_Ptr
= nodes_ptr
;
247 Next_Node_Ptr
= next_node_ptr
;
248 Prev_Node_Ptr
= prev_node_ptr
;
249 Elists_Ptr
= elists_ptr
;
250 Elmts_Ptr
= elmts_ptr
;
251 Strings_Ptr
= strings_ptr
;
252 String_Chars_Ptr
= string_chars_ptr
;
253 List_Headers_Ptr
= list_headers_ptr
;
255 type_annotate_only
= (gigi_operating_mode
== 1);
257 gcc_assert (Nkind (gnat_root
) == N_Compilation_Unit
);
259 /* Declare the name of the compilation unit as the first global
260 name in order to make the middle-end fully deterministic. */
261 t
= create_concat_name (Defining_Entity (Unit (gnat_root
)), NULL
);
262 first_global_object_name
= ggc_strdup (IDENTIFIER_POINTER (t
));
264 for (i
= 0; i
< number_file
; i
++)
266 /* Use the identifier table to make a permanent copy of the filename as
267 the name table gets reallocated after Gigi returns but before all the
268 debugging information is output. The __gnat_to_canonical_file_spec
269 call translates filenames from pragmas Source_Reference that contain
270 host style syntax not understood by gdb. */
274 (__gnat_to_canonical_file_spec
275 (Get_Name_String (file_info_ptr
[i
].File_Name
))));
277 /* We rely on the order isomorphism between files and line maps. */
278 gcc_assert ((int) line_table
->used
== i
);
280 /* We create the line map for a source file at once, with a fixed number
281 of columns chosen to avoid jumping over the next power of 2. */
282 linemap_add (line_table
, LC_ENTER
, 0, filename
, 1);
283 linemap_line_start (line_table
, file_info_ptr
[i
].Num_Source_Lines
, 252);
284 linemap_position_for_column (line_table
, 252 - 1);
285 linemap_add (line_table
, LC_LEAVE
, 0, NULL
, 0);
288 /* Initialize ourselves. */
293 /* If we are just annotating types, give VOID_TYPE zero sizes to avoid
295 if (type_annotate_only
)
297 TYPE_SIZE (void_type_node
) = bitsize_zero_node
;
298 TYPE_SIZE_UNIT (void_type_node
) = size_zero_node
;
301 /* Enable GNAT stack checking method if needed */
302 if (!Stack_Check_Probes_On_Target
)
303 set_stack_check_libfunc ("_gnat_stack_check");
305 /* Retrieve alignment settings. */
306 double_float_alignment
= get_target_double_float_alignment ();
307 double_scalar_alignment
= get_target_double_scalar_alignment ();
309 /* Record the builtin types. Define `integer' and `character' first so that
310 dbx will output them first. */
311 record_builtin_type ("integer", integer_type_node
, false);
312 record_builtin_type ("character", unsigned_char_type_node
, false);
313 record_builtin_type ("boolean", boolean_type_node
, false);
314 record_builtin_type ("void", void_type_node
, false);
316 /* Save the type we made for integer as the type for Standard.Integer. */
317 save_gnu_tree (Base_Type (standard_integer
),
318 TYPE_NAME (integer_type_node
),
321 /* Likewise for character as the type for Standard.Character. */
322 save_gnu_tree (Base_Type (standard_character
),
323 TYPE_NAME (unsigned_char_type_node
),
326 /* Likewise for boolean as the type for Standard.Boolean. */
327 save_gnu_tree (Base_Type (standard_boolean
),
328 TYPE_NAME (boolean_type_node
),
330 gnat_literal
= First_Literal (Base_Type (standard_boolean
));
331 t
= UI_To_gnu (Enumeration_Rep (gnat_literal
), boolean_type_node
);
332 gcc_assert (t
== boolean_false_node
);
333 t
= create_var_decl (get_entity_name (gnat_literal
), NULL_TREE
,
334 boolean_type_node
, t
, true, false, false, false,
336 DECL_IGNORED_P (t
) = 1;
337 save_gnu_tree (gnat_literal
, t
, false);
338 gnat_literal
= Next_Literal (gnat_literal
);
339 t
= UI_To_gnu (Enumeration_Rep (gnat_literal
), boolean_type_node
);
340 gcc_assert (t
== boolean_true_node
);
341 t
= create_var_decl (get_entity_name (gnat_literal
), NULL_TREE
,
342 boolean_type_node
, t
, true, false, false, false,
344 DECL_IGNORED_P (t
) = 1;
345 save_gnu_tree (gnat_literal
, t
, false);
347 void_ftype
= build_function_type (void_type_node
, NULL_TREE
);
348 ptr_void_ftype
= build_pointer_type (void_ftype
);
350 /* Now declare run-time functions. */
351 t
= tree_cons (NULL_TREE
, void_type_node
, NULL_TREE
);
353 /* malloc is a function declaration tree for a function to allocate
356 = create_subprog_decl (get_identifier ("__gnat_malloc"), NULL_TREE
,
357 build_function_type (ptr_void_type_node
,
358 tree_cons (NULL_TREE
,
360 NULL_TREE
, false, true, true, NULL
, Empty
);
361 DECL_IS_MALLOC (malloc_decl
) = 1;
363 /* malloc32 is a function declaration tree for a function to allocate
364 32-bit memory on a 64-bit system. Needed only on 64-bit VMS. */
366 = create_subprog_decl (get_identifier ("__gnat_malloc32"), NULL_TREE
,
367 build_function_type (ptr_void_type_node
,
368 tree_cons (NULL_TREE
,
370 NULL_TREE
, false, true, true, NULL
, Empty
);
371 DECL_IS_MALLOC (malloc32_decl
) = 1;
373 /* free is a function declaration tree for a function to free memory. */
375 = create_subprog_decl (get_identifier ("__gnat_free"), NULL_TREE
,
376 build_function_type (void_type_node
,
377 tree_cons (NULL_TREE
,
380 NULL_TREE
, false, true, true, NULL
, Empty
);
382 /* This is used for 64-bit multiplication with overflow checking. */
384 = create_subprog_decl (get_identifier ("__gnat_mulv64"), NULL_TREE
,
385 build_function_type_list (int64_type
, int64_type
,
386 int64_type
, NULL_TREE
),
387 NULL_TREE
, false, true, true, NULL
, Empty
);
389 /* Name of the _Parent field in tagged record types. */
390 parent_name_id
= get_identifier (Get_Name_String (Name_uParent
));
392 /* Name of the Exception_Data type defined in System.Standard_Library. */
393 exception_data_name_id
394 = get_identifier ("system__standard_library__exception_data");
396 /* Make the types and functions used for exception processing. */
398 = build_array_type (gnat_type_for_mode (Pmode
, 0),
399 build_index_type (size_int (5)));
400 record_builtin_type ("JMPBUF_T", jmpbuf_type
, true);
401 jmpbuf_ptr_type
= build_pointer_type (jmpbuf_type
);
403 /* Functions to get and set the jumpbuf pointer for the current thread. */
405 = create_subprog_decl
406 (get_identifier ("system__soft_links__get_jmpbuf_address_soft"),
407 NULL_TREE
, build_function_type (jmpbuf_ptr_type
, NULL_TREE
),
408 NULL_TREE
, false, true, true, NULL
, Empty
);
409 DECL_IGNORED_P (get_jmpbuf_decl
) = 1;
412 = create_subprog_decl
413 (get_identifier ("system__soft_links__set_jmpbuf_address_soft"),
415 build_function_type (void_type_node
,
416 tree_cons (NULL_TREE
, jmpbuf_ptr_type
, t
)),
417 NULL_TREE
, false, true, true, NULL
, Empty
);
418 DECL_IGNORED_P (set_jmpbuf_decl
) = 1;
420 /* setjmp returns an integer and has one operand, which is a pointer to
423 = create_subprog_decl
424 (get_identifier ("__builtin_setjmp"), NULL_TREE
,
425 build_function_type (integer_type_node
,
426 tree_cons (NULL_TREE
, jmpbuf_ptr_type
, t
)),
427 NULL_TREE
, false, true, true, NULL
, Empty
);
428 DECL_BUILT_IN_CLASS (setjmp_decl
) = BUILT_IN_NORMAL
;
429 DECL_FUNCTION_CODE (setjmp_decl
) = BUILT_IN_SETJMP
;
431 /* update_setjmp_buf updates a setjmp buffer from the current stack pointer
433 update_setjmp_buf_decl
434 = create_subprog_decl
435 (get_identifier ("__builtin_update_setjmp_buf"), NULL_TREE
,
436 build_function_type (void_type_node
,
437 tree_cons (NULL_TREE
, jmpbuf_ptr_type
, t
)),
438 NULL_TREE
, false, true, true, NULL
, Empty
);
439 DECL_BUILT_IN_CLASS (update_setjmp_buf_decl
) = BUILT_IN_NORMAL
;
440 DECL_FUNCTION_CODE (update_setjmp_buf_decl
) = BUILT_IN_UPDATE_SETJMP_BUF
;
442 /* Hooks to call when entering/leaving an exception handler. */
444 = create_subprog_decl (get_identifier ("__gnat_begin_handler"), NULL_TREE
,
445 build_function_type (void_type_node
,
446 tree_cons (NULL_TREE
,
449 NULL_TREE
, false, true, true, NULL
, Empty
);
450 DECL_IGNORED_P (begin_handler_decl
) = 1;
453 = create_subprog_decl (get_identifier ("__gnat_end_handler"), NULL_TREE
,
454 build_function_type (void_type_node
,
455 tree_cons (NULL_TREE
,
458 NULL_TREE
, false, true, true, NULL
, Empty
);
459 DECL_IGNORED_P (end_handler_decl
) = 1;
461 /* If in no exception handlers mode, all raise statements are redirected to
462 __gnat_last_chance_handler. No need to redefine raise_nodefer_decl since
463 this procedure will never be called in this mode. */
464 if (No_Exception_Handlers_Set ())
467 = create_subprog_decl
468 (get_identifier ("__gnat_last_chance_handler"), NULL_TREE
,
469 build_function_type (void_type_node
,
470 tree_cons (NULL_TREE
,
472 (unsigned_char_type_node
),
473 tree_cons (NULL_TREE
,
476 NULL_TREE
, false, true, true, NULL
, Empty
);
477 TREE_THIS_VOLATILE (decl
) = 1;
478 TREE_SIDE_EFFECTS (decl
) = 1;
480 = build_qualified_type (TREE_TYPE (decl
), TYPE_QUAL_VOLATILE
);
481 for (i
= 0; i
< (int) ARRAY_SIZE (gnat_raise_decls
); i
++)
482 gnat_raise_decls
[i
] = decl
;
486 /* Otherwise, make one decl for each exception reason. */
487 for (i
= 0; i
< (int) ARRAY_SIZE (gnat_raise_decls
); i
++)
488 gnat_raise_decls
[i
] = build_raise_check (i
, t
, exception_simple
);
489 for (i
= 0; i
< (int) ARRAY_SIZE (gnat_raise_decls_ext
); i
++)
490 gnat_raise_decls_ext
[i
]
491 = build_raise_check (i
, t
,
492 i
== CE_Index_Check_Failed
493 || i
== CE_Range_Check_Failed
494 || i
== CE_Invalid_Data
495 ? exception_range
: exception_column
);
498 /* Set the types that GCC and Gigi use from the front end. */
500 = gnat_to_gnu_entity (Base_Type (standard_exception_type
), NULL_TREE
, 0);
501 except_type_node
= TREE_TYPE (exception_type
);
503 /* Make other functions used for exception processing. */
505 = create_subprog_decl
506 (get_identifier ("system__soft_links__get_gnat_exception"),
508 build_function_type (build_pointer_type (except_type_node
), NULL_TREE
),
509 NULL_TREE
, false, true, true, NULL
, Empty
);
512 = create_subprog_decl
513 (get_identifier ("__gnat_raise_nodefer_with_msg"), NULL_TREE
,
514 build_function_type (void_type_node
,
515 tree_cons (NULL_TREE
,
516 build_pointer_type (except_type_node
),
518 NULL_TREE
, false, true, true, NULL
, Empty
);
520 /* Indicate that these never return. */
521 TREE_THIS_VOLATILE (raise_nodefer_decl
) = 1;
522 TREE_SIDE_EFFECTS (raise_nodefer_decl
) = 1;
523 TREE_TYPE (raise_nodefer_decl
)
524 = build_qualified_type (TREE_TYPE (raise_nodefer_decl
),
527 /* Build the special descriptor type and its null node if needed. */
528 if (TARGET_VTABLE_USES_DESCRIPTORS
)
530 tree null_node
= fold_convert (ptr_void_ftype
, null_pointer_node
);
531 tree field_list
= NULL_TREE
;
533 VEC(constructor_elt
,gc
) *null_vec
= NULL
;
534 constructor_elt
*elt
;
536 fdesc_type_node
= make_node (RECORD_TYPE
);
537 VEC_safe_grow (constructor_elt
, gc
, null_vec
,
538 TARGET_VTABLE_USES_DESCRIPTORS
);
539 elt
= (VEC_address (constructor_elt
,null_vec
)
540 + TARGET_VTABLE_USES_DESCRIPTORS
- 1);
542 for (j
= 0; j
< TARGET_VTABLE_USES_DESCRIPTORS
; j
++)
545 = create_field_decl (NULL_TREE
, ptr_void_ftype
, fdesc_type_node
,
546 NULL_TREE
, NULL_TREE
, 0, 1);
547 TREE_CHAIN (field
) = field_list
;
550 elt
->value
= null_node
;
554 finish_record_type (fdesc_type_node
, nreverse (field_list
), 0, false);
555 record_builtin_type ("descriptor", fdesc_type_node
, true);
556 null_fdesc_node
= gnat_build_constructor (fdesc_type_node
, null_vec
);
560 = gnat_to_gnu_entity (Base_Type (standard_long_long_float
), NULL_TREE
, 0);
562 if (TREE_CODE (TREE_TYPE (long_long_float_type
)) == INTEGER_TYPE
)
564 /* In this case, the builtin floating point types are VAX float,
565 so make up a type for use. */
566 longest_float_type_node
= make_node (REAL_TYPE
);
567 TYPE_PRECISION (longest_float_type_node
) = LONG_DOUBLE_TYPE_SIZE
;
568 layout_type (longest_float_type_node
);
569 record_builtin_type ("longest float type", longest_float_type_node
,
573 longest_float_type_node
= TREE_TYPE (long_long_float_type
);
575 /* Dummy objects to materialize "others" and "all others" in the exception
576 tables. These are exported by a-exexpr.adb, so see this unit for the
579 = create_var_decl (get_identifier ("OTHERS"),
580 get_identifier ("__gnat_others_value"),
581 integer_type_node
, NULL_TREE
, true, false, true, false,
585 = create_var_decl (get_identifier ("ALL_OTHERS"),
586 get_identifier ("__gnat_all_others_value"),
587 integer_type_node
, NULL_TREE
, true, false, true, false,
590 main_identifier_node
= get_identifier ("main");
592 /* Install the builtins we might need, either internally or as
593 user available facilities for Intrinsic imports. */
594 gnat_install_builtins ();
596 VEC_safe_push (tree
, gc
, gnu_except_ptr_stack
, NULL_TREE
);
597 VEC_safe_push (tree
, gc
, gnu_constraint_error_label_stack
, NULL_TREE
);
598 VEC_safe_push (tree
, gc
, gnu_storage_error_label_stack
, NULL_TREE
);
599 VEC_safe_push (tree
, gc
, gnu_program_error_label_stack
, NULL_TREE
);
601 /* Process any Pragma Ident for the main unit. */
602 #ifdef ASM_OUTPUT_IDENT
603 if (Present (Ident_String (Main_Unit
)))
606 TREE_STRING_POINTER (gnat_to_gnu (Ident_String (Main_Unit
))));
609 /* If we are using the GCC exception mechanism, let GCC know. */
610 if (Exception_Mechanism
== Back_End_Exceptions
)
613 /* Now translate the compilation unit proper. */
614 Compilation_Unit_to_gnu (gnat_root
);
616 /* Finally see if we have any elaboration procedures to deal with. */
617 for (info
= elab_info_list
; info
; info
= info
->next
)
619 tree gnu_body
= DECL_SAVED_TREE (info
->elab_proc
), gnu_stmts
;
621 /* We should have a BIND_EXPR but it may not have any statements in it.
622 If it doesn't have any, we have nothing to do except for setting the
623 flag on the GNAT node. Otherwise, process the function as others. */
624 gnu_stmts
= gnu_body
;
625 if (TREE_CODE (gnu_stmts
) == BIND_EXPR
)
626 gnu_stmts
= BIND_EXPR_BODY (gnu_stmts
);
627 if (!gnu_stmts
|| !STATEMENT_LIST_HEAD (gnu_stmts
))
628 Set_Has_No_Elaboration_Code (info
->gnat_node
, 1);
631 begin_subprog_body (info
->elab_proc
);
632 end_subprog_body (gnu_body
);
636 /* We cannot track the location of errors past this point. */
637 error_gnat_node
= Empty
;
640 /* Return a subprogram decl corresponding to __gnat_rcheck_xx for the given
641 CHECK (if EXTENDED is false), or __gnat_rcheck_xx_ext (if EXTENDED is
645 build_raise_check (int check
, tree void_tree
, enum exception_info_kind kind
)
650 if (kind
!= exception_simple
)
652 sprintf (name
, "__gnat_rcheck_%.2d_ext", check
);
654 = create_subprog_decl
655 (get_identifier (name
), NULL_TREE
,
659 (NULL_TREE
, build_pointer_type (unsigned_char_type_node
),
660 tree_cons (NULL_TREE
, integer_type_node
,
661 tree_cons (NULL_TREE
, integer_type_node
,
662 kind
== exception_column
664 : tree_cons (NULL_TREE
, integer_type_node
,
665 tree_cons (NULL_TREE
,
668 NULL_TREE
, false, true, true, NULL
, Empty
);
672 sprintf (name
, "__gnat_rcheck_%.2d", check
);
674 = create_subprog_decl
675 (get_identifier (name
), NULL_TREE
,
679 (NULL_TREE
, build_pointer_type (unsigned_char_type_node
),
680 tree_cons (NULL_TREE
, integer_type_node
, void_tree
))),
681 NULL_TREE
, false, true, true, NULL
, Empty
);
684 TREE_THIS_VOLATILE (result
) = 1;
685 TREE_SIDE_EFFECTS (result
) = 1;
687 = build_qualified_type (TREE_TYPE (result
), TYPE_QUAL_VOLATILE
);
692 /* Return a positive value if an lvalue is required for GNAT_NODE, which is
693 an N_Attribute_Reference. */
696 lvalue_required_for_attribute_p (Node_Id gnat_node
)
698 switch (Get_Attribute_Id (Attribute_Name (gnat_node
)))
706 case Attr_Range_Length
:
708 case Attr_Object_Size
:
709 case Attr_Value_Size
:
710 case Attr_Component_Size
:
711 case Attr_Max_Size_In_Storage_Elements
:
714 case Attr_Null_Parameter
:
715 case Attr_Passed_By_Reference
:
716 case Attr_Mechanism_Code
:
721 case Attr_Unchecked_Access
:
722 case Attr_Unrestricted_Access
:
723 case Attr_Code_Address
:
724 case Attr_Pool_Address
:
727 case Attr_Bit_Position
:
737 /* Return a positive value if an lvalue is required for GNAT_NODE. GNU_TYPE
738 is the type that will be used for GNAT_NODE in the translated GNU tree.
739 CONSTANT indicates whether the underlying object represented by GNAT_NODE
740 is constant in the Ada sense. If it is, ADDRESS_OF_CONSTANT indicates
741 whether its value is the address of a constant and ALIASED whether it is
742 aliased. If it isn't, ADDRESS_OF_CONSTANT and ALIASED are ignored.
744 The function climbs up the GNAT tree starting from the node and returns 1
745 upon encountering a node that effectively requires an lvalue downstream.
746 It returns int instead of bool to facilitate usage in non-purely binary
750 lvalue_required_p (Node_Id gnat_node
, tree gnu_type
, bool constant
,
751 bool address_of_constant
, bool aliased
)
753 Node_Id gnat_parent
= Parent (gnat_node
), gnat_temp
;
755 switch (Nkind (gnat_parent
))
760 case N_Attribute_Reference
:
761 return lvalue_required_for_attribute_p (gnat_parent
);
763 case N_Parameter_Association
:
764 case N_Function_Call
:
765 case N_Procedure_Call_Statement
:
766 /* If the parameter is by reference, an lvalue is required. */
768 || must_pass_by_ref (gnu_type
)
769 || default_pass_by_ref (gnu_type
));
771 case N_Indexed_Component
:
772 /* Only the array expression can require an lvalue. */
773 if (Prefix (gnat_parent
) != gnat_node
)
776 /* ??? Consider that referencing an indexed component with a
777 non-constant index forces the whole aggregate to memory.
778 Note that N_Integer_Literal is conservative, any static
779 expression in the RM sense could probably be accepted. */
780 for (gnat_temp
= First (Expressions (gnat_parent
));
782 gnat_temp
= Next (gnat_temp
))
783 if (Nkind (gnat_temp
) != N_Integer_Literal
)
786 /* ... fall through ... */
789 /* Only the array expression can require an lvalue. */
790 if (Prefix (gnat_parent
) != gnat_node
)
793 aliased
|= Has_Aliased_Components (Etype (gnat_node
));
794 return lvalue_required_p (gnat_parent
, gnu_type
, constant
,
795 address_of_constant
, aliased
);
797 case N_Selected_Component
:
798 aliased
|= Is_Aliased (Entity (Selector_Name (gnat_parent
)));
799 return lvalue_required_p (gnat_parent
, gnu_type
, constant
,
800 address_of_constant
, aliased
);
802 case N_Object_Renaming_Declaration
:
803 /* We need to make a real renaming only if the constant object is
804 aliased or if we may use a renaming pointer; otherwise we can
805 optimize and return the rvalue. We make an exception if the object
806 is an identifier since in this case the rvalue can be propagated
807 attached to the CONST_DECL. */
810 /* This should match the constant case of the renaming code. */
812 (Underlying_Type (Etype (Name (gnat_parent
))))
813 || Nkind (Name (gnat_parent
)) == N_Identifier
);
815 case N_Object_Declaration
:
816 /* We cannot use a constructor if this is an atomic object because
817 the actual assignment might end up being done component-wise. */
819 ||(Is_Composite_Type (Underlying_Type (Etype (gnat_node
)))
820 && Is_Atomic (Defining_Entity (gnat_parent
)))
821 /* We don't use a constructor if this is a class-wide object
822 because the effective type of the object is the equivalent
823 type of the class-wide subtype and it smashes most of the
824 data into an array of bytes to which we cannot convert. */
825 || Ekind ((Etype (Defining_Entity (gnat_parent
))))
826 == E_Class_Wide_Subtype
);
828 case N_Assignment_Statement
:
829 /* We cannot use a constructor if the LHS is an atomic object because
830 the actual assignment might end up being done component-wise. */
832 || Name (gnat_parent
) == gnat_node
833 || (Is_Composite_Type (Underlying_Type (Etype (gnat_node
)))
834 && Is_Atomic (Entity (Name (gnat_parent
)))));
836 case N_Unchecked_Type_Conversion
:
840 /* ... fall through ... */
842 case N_Type_Conversion
:
843 case N_Qualified_Expression
:
844 /* We must look through all conversions because we may need to bypass
845 an intermediate conversion that is meant to be purely formal. */
846 return lvalue_required_p (gnat_parent
,
847 get_unpadded_type (Etype (gnat_parent
)),
848 constant
, address_of_constant
, aliased
);
851 /* We should only reach here through the N_Qualified_Expression case.
852 Force an lvalue for composite types since a block-copy to the newly
853 allocated area of memory is made. */
854 return Is_Composite_Type (Underlying_Type (Etype (gnat_node
)));
856 case N_Explicit_Dereference
:
857 /* We look through dereferences for address of constant because we need
858 to handle the special cases listed above. */
859 if (constant
&& address_of_constant
)
860 return lvalue_required_p (gnat_parent
,
861 get_unpadded_type (Etype (gnat_parent
)),
864 /* ... fall through ... */
873 /* Subroutine of gnat_to_gnu to translate gnat_node, an N_Identifier,
874 to a GCC tree, which is returned. GNU_RESULT_TYPE_P is a pointer
875 to where we should place the result type. */
878 Identifier_to_gnu (Node_Id gnat_node
, tree
*gnu_result_type_p
)
880 Node_Id gnat_temp
, gnat_temp_type
;
881 tree gnu_result
, gnu_result_type
;
883 /* Whether we should require an lvalue for GNAT_NODE. Needed in
884 specific circumstances only, so evaluated lazily. < 0 means
885 unknown, > 0 means known true, 0 means known false. */
886 int require_lvalue
= -1;
888 /* If GNAT_NODE is a constant, whether we should use the initialization
889 value instead of the constant entity, typically for scalars with an
890 address clause when the parent doesn't require an lvalue. */
891 bool use_constant_initializer
= false;
893 /* If the Etype of this node does not equal the Etype of the Entity,
894 something is wrong with the entity map, probably in generic
895 instantiation. However, this does not apply to types. Since we sometime
896 have strange Ekind's, just do this test for objects. Also, if the Etype of
897 the Entity is private, the Etype of the N_Identifier is allowed to be the
898 full type and also we consider a packed array type to be the same as the
899 original type. Similarly, a class-wide type is equivalent to a subtype of
900 itself. Finally, if the types are Itypes, one may be a copy of the other,
901 which is also legal. */
902 gnat_temp
= (Nkind (gnat_node
) == N_Defining_Identifier
903 ? gnat_node
: Entity (gnat_node
));
904 gnat_temp_type
= Etype (gnat_temp
);
906 gcc_assert (Etype (gnat_node
) == gnat_temp_type
907 || (Is_Packed (gnat_temp_type
)
908 && Etype (gnat_node
) == Packed_Array_Type (gnat_temp_type
))
909 || (Is_Class_Wide_Type (Etype (gnat_node
)))
910 || (IN (Ekind (gnat_temp_type
), Private_Kind
)
911 && Present (Full_View (gnat_temp_type
))
912 && ((Etype (gnat_node
) == Full_View (gnat_temp_type
))
913 || (Is_Packed (Full_View (gnat_temp_type
))
914 && (Etype (gnat_node
)
915 == Packed_Array_Type (Full_View
916 (gnat_temp_type
))))))
917 || (Is_Itype (Etype (gnat_node
)) && Is_Itype (gnat_temp_type
))
918 || !(Ekind (gnat_temp
) == E_Variable
919 || Ekind (gnat_temp
) == E_Component
920 || Ekind (gnat_temp
) == E_Constant
921 || Ekind (gnat_temp
) == E_Loop_Parameter
922 || IN (Ekind (gnat_temp
), Formal_Kind
)));
924 /* If this is a reference to a deferred constant whose partial view is an
925 unconstrained private type, the proper type is on the full view of the
926 constant, not on the full view of the type, which may be unconstrained.
928 This may be a reference to a type, for example in the prefix of the
929 attribute Position, generated for dispatching code (see Make_DT in
930 exp_disp,adb). In that case we need the type itself, not is parent,
931 in particular if it is a derived type */
932 if (Is_Private_Type (gnat_temp_type
)
933 && Has_Unknown_Discriminants (gnat_temp_type
)
934 && Ekind (gnat_temp
) == E_Constant
935 && Present (Full_View (gnat_temp
)))
937 gnat_temp
= Full_View (gnat_temp
);
938 gnat_temp_type
= Etype (gnat_temp
);
942 /* We want to use the Actual_Subtype if it has already been elaborated,
943 otherwise the Etype. Avoid using Actual_Subtype for packed arrays to
945 if ((Ekind (gnat_temp
) == E_Constant
946 || Ekind (gnat_temp
) == E_Variable
|| Is_Formal (gnat_temp
))
947 && !(Is_Array_Type (Etype (gnat_temp
))
948 && Present (Packed_Array_Type (Etype (gnat_temp
))))
949 && Present (Actual_Subtype (gnat_temp
))
950 && present_gnu_tree (Actual_Subtype (gnat_temp
)))
951 gnat_temp_type
= Actual_Subtype (gnat_temp
);
953 gnat_temp_type
= Etype (gnat_node
);
956 /* Expand the type of this identifier first, in case it is an enumeral
957 literal, which only get made when the type is expanded. There is no
958 order-of-elaboration issue here. */
959 gnu_result_type
= get_unpadded_type (gnat_temp_type
);
961 /* If this is a non-imported scalar constant with an address clause,
962 retrieve the value instead of a pointer to be dereferenced unless
963 an lvalue is required. This is generally more efficient and actually
964 required if this is a static expression because it might be used
965 in a context where a dereference is inappropriate, such as a case
966 statement alternative or a record discriminant. There is no possible
967 volatile-ness short-circuit here since Volatile constants must be
969 if (Ekind (gnat_temp
) == E_Constant
970 && Is_Scalar_Type (gnat_temp_type
)
971 && !Is_Imported (gnat_temp
)
972 && Present (Address_Clause (gnat_temp
)))
974 require_lvalue
= lvalue_required_p (gnat_node
, gnu_result_type
, true,
975 false, Is_Aliased (gnat_temp
));
976 use_constant_initializer
= !require_lvalue
;
979 if (use_constant_initializer
)
981 /* If this is a deferred constant, the initializer is attached to
983 if (Present (Full_View (gnat_temp
)))
984 gnat_temp
= Full_View (gnat_temp
);
986 gnu_result
= gnat_to_gnu (Expression (Declaration_Node (gnat_temp
)));
989 gnu_result
= gnat_to_gnu_entity (gnat_temp
, NULL_TREE
, 0);
991 /* Some objects (such as parameters passed by reference, globals of
992 variable size, and renamed objects) actually represent the address
993 of the object. In that case, we must do the dereference. Likewise,
994 deal with parameters to foreign convention subprograms. */
995 if (DECL_P (gnu_result
)
996 && (DECL_BY_REF_P (gnu_result
)
997 || (TREE_CODE (gnu_result
) == PARM_DECL
998 && DECL_BY_COMPONENT_PTR_P (gnu_result
))))
1000 const bool read_only
= DECL_POINTS_TO_READONLY_P (gnu_result
);
1003 if (TREE_CODE (gnu_result
) == PARM_DECL
1004 && DECL_BY_DOUBLE_REF_P (gnu_result
))
1006 gnu_result
= build_unary_op (INDIRECT_REF
, NULL_TREE
, gnu_result
);
1007 if (TREE_CODE (gnu_result
) == INDIRECT_REF
)
1008 TREE_THIS_NOTRAP (gnu_result
) = 1;
1011 if (TREE_CODE (gnu_result
) == PARM_DECL
1012 && DECL_BY_COMPONENT_PTR_P (gnu_result
))
1015 = build_unary_op (INDIRECT_REF
, NULL_TREE
,
1016 convert (build_pointer_type (gnu_result_type
),
1018 if (TREE_CODE (gnu_result
) == INDIRECT_REF
)
1019 TREE_THIS_NOTRAP (gnu_result
) = 1;
1022 /* If it's a renaming pointer and we are at the right binding level,
1023 we can reference the renamed object directly, since the renamed
1024 expression has been protected against multiple evaluations. */
1025 else if (TREE_CODE (gnu_result
) == VAR_DECL
1026 && (renamed_obj
= DECL_RENAMED_OBJECT (gnu_result
))
1027 && (!DECL_RENAMING_GLOBAL_P (gnu_result
)
1028 || global_bindings_p ()))
1029 gnu_result
= renamed_obj
;
1031 /* Return the underlying CST for a CONST_DECL like a few lines below,
1032 after dereferencing in this case. */
1033 else if (TREE_CODE (gnu_result
) == CONST_DECL
)
1034 gnu_result
= build_unary_op (INDIRECT_REF
, NULL_TREE
,
1035 DECL_INITIAL (gnu_result
));
1039 gnu_result
= build_unary_op (INDIRECT_REF
, NULL_TREE
, gnu_result
);
1040 if (TREE_CODE (gnu_result
) == INDIRECT_REF
)
1041 TREE_THIS_NOTRAP (gnu_result
) = 1;
1045 TREE_READONLY (gnu_result
) = 1;
1048 /* The GNAT tree has the type of a function as the type of its result. Also
1049 use the type of the result if the Etype is a subtype which is nominally
1050 unconstrained. But remove any padding from the resulting type. */
1051 if (TREE_CODE (TREE_TYPE (gnu_result
)) == FUNCTION_TYPE
1052 || Is_Constr_Subt_For_UN_Aliased (gnat_temp_type
))
1054 gnu_result_type
= TREE_TYPE (gnu_result
);
1055 if (TYPE_IS_PADDING_P (gnu_result_type
))
1056 gnu_result_type
= TREE_TYPE (TYPE_FIELDS (gnu_result_type
));
1059 /* If we have a constant declaration and its initializer, try to return the
1060 latter to avoid the need to call fold in lots of places and the need for
1061 elaboration code if this identifier is used as an initializer itself. */
1062 if (TREE_CONSTANT (gnu_result
)
1063 && DECL_P (gnu_result
)
1064 && DECL_INITIAL (gnu_result
))
1066 bool constant_only
= (TREE_CODE (gnu_result
) == CONST_DECL
1067 && !DECL_CONST_CORRESPONDING_VAR (gnu_result
));
1068 bool address_of_constant
= (TREE_CODE (gnu_result
) == CONST_DECL
1069 && DECL_CONST_ADDRESS_P (gnu_result
));
1071 /* If there is a (corresponding) variable or this is the address of a
1072 constant, we only want to return the initializer if an lvalue isn't
1073 required. Evaluate this now if we have not already done so. */
1074 if ((!constant_only
|| address_of_constant
) && require_lvalue
< 0)
1076 = lvalue_required_p (gnat_node
, gnu_result_type
, true,
1077 address_of_constant
, Is_Aliased (gnat_temp
));
1079 /* ??? We need to unshare the initializer if the object is external
1080 as such objects are not marked for unsharing if we are not at the
1081 global level. This should be fixed in add_decl_expr. */
1082 if ((constant_only
&& !address_of_constant
) || !require_lvalue
)
1083 gnu_result
= unshare_expr (DECL_INITIAL (gnu_result
));
1086 *gnu_result_type_p
= gnu_result_type
;
1091 /* Subroutine of gnat_to_gnu to process gnat_node, an N_Pragma. Return
1092 any statements we generate. */
1095 Pragma_to_gnu (Node_Id gnat_node
)
1098 tree gnu_result
= alloc_stmt_list ();
1100 /* Check for (and ignore) unrecognized pragma and do nothing if we are just
1101 annotating types. */
1102 if (type_annotate_only
1103 || !Is_Pragma_Name (Chars (Pragma_Identifier (gnat_node
))))
1106 switch (Get_Pragma_Id (Chars (Pragma_Identifier (gnat_node
))))
1108 case Pragma_Inspection_Point
:
1109 /* Do nothing at top level: all such variables are already viewable. */
1110 if (global_bindings_p ())
1113 for (gnat_temp
= First (Pragma_Argument_Associations (gnat_node
));
1114 Present (gnat_temp
);
1115 gnat_temp
= Next (gnat_temp
))
1117 Node_Id gnat_expr
= Expression (gnat_temp
);
1118 tree gnu_expr
= gnat_to_gnu (gnat_expr
);
1120 enum machine_mode mode
;
1121 tree asm_constraint
= NULL_TREE
;
1122 #ifdef ASM_COMMENT_START
1126 if (TREE_CODE (gnu_expr
) == UNCONSTRAINED_ARRAY_REF
)
1127 gnu_expr
= TREE_OPERAND (gnu_expr
, 0);
1129 /* Use the value only if it fits into a normal register,
1130 otherwise use the address. */
1131 mode
= TYPE_MODE (TREE_TYPE (gnu_expr
));
1132 use_address
= ((GET_MODE_CLASS (mode
) != MODE_INT
1133 && GET_MODE_CLASS (mode
) != MODE_PARTIAL_INT
)
1134 || GET_MODE_SIZE (mode
) > UNITS_PER_WORD
);
1137 gnu_expr
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_expr
);
1139 #ifdef ASM_COMMENT_START
1140 comment
= concat (ASM_COMMENT_START
,
1141 " inspection point: ",
1142 Get_Name_String (Chars (gnat_expr
)),
1143 use_address
? " address" : "",
1146 asm_constraint
= build_string (strlen (comment
), comment
);
1149 gnu_expr
= build5 (ASM_EXPR
, void_type_node
,
1153 (build_tree_list (NULL_TREE
,
1154 build_string (1, "g")),
1155 gnu_expr
, NULL_TREE
),
1156 NULL_TREE
, NULL_TREE
);
1157 ASM_VOLATILE_P (gnu_expr
) = 1;
1158 set_expr_location_from_node (gnu_expr
, gnat_node
);
1159 append_to_statement_list (gnu_expr
, &gnu_result
);
1163 case Pragma_Optimize
:
1164 switch (Chars (Expression
1165 (First (Pragma_Argument_Associations (gnat_node
)))))
1167 case Name_Time
: case Name_Space
:
1169 post_error ("insufficient -O value?", gnat_node
);
1174 post_error ("must specify -O0?", gnat_node
);
1182 case Pragma_Reviewable
:
1183 if (write_symbols
== NO_DEBUG
)
1184 post_error ("must specify -g?", gnat_node
);
1191 /* Subroutine of gnat_to_gnu to translate GNAT_NODE, an N_Attribute node,
1192 to a GCC tree, which is returned. GNU_RESULT_TYPE_P is a pointer to
1193 where we should place the result type. ATTRIBUTE is the attribute ID. */
1196 Attribute_to_gnu (Node_Id gnat_node
, tree
*gnu_result_type_p
, int attribute
)
1198 tree gnu_prefix
= gnat_to_gnu (Prefix (gnat_node
));
1199 tree gnu_type
= TREE_TYPE (gnu_prefix
);
1200 tree gnu_expr
, gnu_result_type
, gnu_result
= error_mark_node
;
1201 bool prefix_unused
= false;
1203 /* If the input is a NULL_EXPR, make a new one. */
1204 if (TREE_CODE (gnu_prefix
) == NULL_EXPR
)
1206 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1207 *gnu_result_type_p
= gnu_result_type
;
1208 return build1 (NULL_EXPR
, gnu_result_type
, TREE_OPERAND (gnu_prefix
, 0));
1215 /* These are just conversions since representation clauses for
1216 enumeration types are handled in the front-end. */
1218 bool checkp
= Do_Range_Check (First (Expressions (gnat_node
)));
1219 gnu_result
= gnat_to_gnu (First (Expressions (gnat_node
)));
1220 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1221 gnu_result
= convert_with_check (Etype (gnat_node
), gnu_result
,
1222 checkp
, checkp
, true, gnat_node
);
1228 /* These just add or subtract the constant 1 since representation
1229 clauses for enumeration types are handled in the front-end. */
1230 gnu_expr
= gnat_to_gnu (First (Expressions (gnat_node
)));
1231 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1233 if (Do_Range_Check (First (Expressions (gnat_node
))))
1235 gnu_expr
= gnat_protect_expr (gnu_expr
);
1238 (build_binary_op (EQ_EXPR
, boolean_type_node
,
1240 attribute
== Attr_Pred
1241 ? TYPE_MIN_VALUE (gnu_result_type
)
1242 : TYPE_MAX_VALUE (gnu_result_type
)),
1243 gnu_expr
, CE_Range_Check_Failed
, gnat_node
);
1247 = build_binary_op (attribute
== Attr_Pred
? MINUS_EXPR
: PLUS_EXPR
,
1248 gnu_result_type
, gnu_expr
,
1249 convert (gnu_result_type
, integer_one_node
));
1253 case Attr_Unrestricted_Access
:
1254 /* Conversions don't change addresses but can cause us to miss the
1255 COMPONENT_REF case below, so strip them off. */
1256 gnu_prefix
= remove_conversions (gnu_prefix
,
1257 !Must_Be_Byte_Aligned (gnat_node
));
1259 /* If we are taking 'Address of an unconstrained object, this is the
1260 pointer to the underlying array. */
1261 if (attribute
== Attr_Address
)
1262 gnu_prefix
= maybe_unconstrained_array (gnu_prefix
);
1264 /* If we are building a static dispatch table, we have to honor
1265 TARGET_VTABLE_USES_DESCRIPTORS if we want to be compatible
1266 with the C++ ABI. We do it in the non-static case as well,
1267 see gnat_to_gnu_entity, case E_Access_Subprogram_Type. */
1268 else if (TARGET_VTABLE_USES_DESCRIPTORS
1269 && Is_Dispatch_Table_Entity (Etype (gnat_node
)))
1272 /* Descriptors can only be built here for top-level functions. */
1273 bool build_descriptor
= (global_bindings_p () != 0);
1275 VEC(constructor_elt
,gc
) *gnu_vec
= NULL
;
1276 constructor_elt
*elt
;
1278 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1280 /* If we're not going to build the descriptor, we have to retrieve
1281 the one which will be built by the linker (or by the compiler
1282 later if a static chain is requested). */
1283 if (!build_descriptor
)
1285 gnu_result
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_prefix
);
1286 gnu_result
= fold_convert (build_pointer_type (gnu_result_type
),
1288 gnu_result
= build1 (INDIRECT_REF
, gnu_result_type
, gnu_result
);
1291 VEC_safe_grow (constructor_elt
, gc
, gnu_vec
,
1292 TARGET_VTABLE_USES_DESCRIPTORS
);
1293 elt
= (VEC_address (constructor_elt
, gnu_vec
)
1294 + TARGET_VTABLE_USES_DESCRIPTORS
- 1);
1295 for (gnu_field
= TYPE_FIELDS (gnu_result_type
), i
= 0;
1296 i
< TARGET_VTABLE_USES_DESCRIPTORS
;
1297 gnu_field
= TREE_CHAIN (gnu_field
), i
++)
1299 if (build_descriptor
)
1301 t
= build2 (FDESC_EXPR
, TREE_TYPE (gnu_field
), gnu_prefix
,
1302 build_int_cst (NULL_TREE
, i
));
1303 TREE_CONSTANT (t
) = 1;
1306 t
= build3 (COMPONENT_REF
, ptr_void_ftype
, gnu_result
,
1307 gnu_field
, NULL_TREE
);
1309 elt
->index
= gnu_field
;
1314 gnu_result
= gnat_build_constructor (gnu_result_type
, gnu_vec
);
1318 /* ... fall through ... */
1321 case Attr_Unchecked_Access
:
1322 case Attr_Code_Address
:
1323 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1325 = build_unary_op (((attribute
== Attr_Address
1326 || attribute
== Attr_Unrestricted_Access
)
1327 && !Must_Be_Byte_Aligned (gnat_node
))
1328 ? ATTR_ADDR_EXPR
: ADDR_EXPR
,
1329 gnu_result_type
, gnu_prefix
);
1331 /* For 'Code_Address, find an inner ADDR_EXPR and mark it so that we
1332 don't try to build a trampoline. */
1333 if (attribute
== Attr_Code_Address
)
1335 for (gnu_expr
= gnu_result
;
1336 CONVERT_EXPR_P (gnu_expr
);
1337 gnu_expr
= TREE_OPERAND (gnu_expr
, 0))
1338 TREE_CONSTANT (gnu_expr
) = 1;
1340 if (TREE_CODE (gnu_expr
) == ADDR_EXPR
)
1341 TREE_NO_TRAMPOLINE (gnu_expr
) = TREE_CONSTANT (gnu_expr
) = 1;
1344 /* For other address attributes applied to a nested function,
1345 find an inner ADDR_EXPR and annotate it so that we can issue
1346 a useful warning with -Wtrampolines. */
1347 else if (TREE_CODE (TREE_TYPE (gnu_prefix
)) == FUNCTION_TYPE
)
1349 for (gnu_expr
= gnu_result
;
1350 CONVERT_EXPR_P (gnu_expr
);
1351 gnu_expr
= TREE_OPERAND (gnu_expr
, 0))
1354 if (TREE_CODE (gnu_expr
) == ADDR_EXPR
1355 && decl_function_context (TREE_OPERAND (gnu_expr
, 0)))
1357 set_expr_location_from_node (gnu_expr
, gnat_node
);
1359 /* Check that we're not violating the No_Implicit_Dynamic_Code
1360 restriction. Be conservative if we don't know anything
1361 about the trampoline strategy for the target. */
1362 Check_Implicit_Dynamic_Code_Allowed (gnat_node
);
1367 case Attr_Pool_Address
:
1370 tree gnu_ptr
= gnu_prefix
;
1372 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1374 /* If this is an unconstrained array, we know the object has been
1375 allocated with the template in front of the object. So compute
1376 the template address. */
1377 if (TYPE_IS_FAT_POINTER_P (TREE_TYPE (gnu_ptr
)))
1379 = convert (build_pointer_type
1380 (TYPE_OBJECT_RECORD_TYPE
1381 (TYPE_UNCONSTRAINED_ARRAY (TREE_TYPE (gnu_ptr
)))),
1384 gnu_obj_type
= TREE_TYPE (TREE_TYPE (gnu_ptr
));
1385 if (TREE_CODE (gnu_obj_type
) == RECORD_TYPE
1386 && TYPE_CONTAINS_TEMPLATE_P (gnu_obj_type
))
1388 tree gnu_char_ptr_type
1389 = build_pointer_type (unsigned_char_type_node
);
1390 tree gnu_pos
= byte_position (TYPE_FIELDS (gnu_obj_type
));
1391 gnu_ptr
= convert (gnu_char_ptr_type
, gnu_ptr
);
1392 gnu_ptr
= build_binary_op (POINTER_PLUS_EXPR
, gnu_char_ptr_type
,
1396 gnu_result
= convert (gnu_result_type
, gnu_ptr
);
1401 case Attr_Object_Size
:
1402 case Attr_Value_Size
:
1403 case Attr_Max_Size_In_Storage_Elements
:
1404 gnu_expr
= gnu_prefix
;
1406 /* Remove NOPs and conversions between original and packable version
1407 from GNU_EXPR, and conversions from GNU_PREFIX. We use GNU_EXPR
1408 to see if a COMPONENT_REF was involved. */
1409 while (TREE_CODE (gnu_expr
) == NOP_EXPR
1410 || (TREE_CODE (gnu_expr
) == VIEW_CONVERT_EXPR
1411 && TREE_CODE (TREE_TYPE (gnu_expr
)) == RECORD_TYPE
1412 && TREE_CODE (TREE_TYPE (TREE_OPERAND (gnu_expr
, 0)))
1414 && TYPE_NAME (TREE_TYPE (gnu_expr
))
1415 == TYPE_NAME (TREE_TYPE (TREE_OPERAND (gnu_expr
, 0)))))
1416 gnu_expr
= TREE_OPERAND (gnu_expr
, 0);
1418 gnu_prefix
= remove_conversions (gnu_prefix
, true);
1419 prefix_unused
= true;
1420 gnu_type
= TREE_TYPE (gnu_prefix
);
1422 /* Replace an unconstrained array type with the type of the underlying
1423 array. We can't do this with a call to maybe_unconstrained_array
1424 since we may have a TYPE_DECL. For 'Max_Size_In_Storage_Elements,
1425 use the record type that will be used to allocate the object and its
1427 if (TREE_CODE (gnu_type
) == UNCONSTRAINED_ARRAY_TYPE
)
1429 gnu_type
= TYPE_OBJECT_RECORD_TYPE (gnu_type
);
1430 if (attribute
!= Attr_Max_Size_In_Storage_Elements
)
1431 gnu_type
= TREE_TYPE (TREE_CHAIN (TYPE_FIELDS (gnu_type
)));
1434 /* If we're looking for the size of a field, return the field size.
1435 Otherwise, if the prefix is an object, or if we're looking for
1436 'Object_Size or 'Max_Size_In_Storage_Elements, the result is the
1437 GCC size of the type. Otherwise, it is the RM size of the type. */
1438 if (TREE_CODE (gnu_prefix
) == COMPONENT_REF
)
1439 gnu_result
= DECL_SIZE (TREE_OPERAND (gnu_prefix
, 1));
1440 else if (TREE_CODE (gnu_prefix
) != TYPE_DECL
1441 || attribute
== Attr_Object_Size
1442 || attribute
== Attr_Max_Size_In_Storage_Elements
)
1444 /* If the prefix is an object of a padded type, the GCC size isn't
1445 relevant to the programmer. Normally what we want is the RM size,
1446 which was set from the specified size, but if it was not set, we
1447 want the size of the field. Using the MAX of those two produces
1448 the right result in all cases. Don't use the size of the field
1449 if it's self-referential, since that's never what's wanted. */
1450 if (TREE_CODE (gnu_prefix
) != TYPE_DECL
1451 && TYPE_IS_PADDING_P (gnu_type
)
1452 && TREE_CODE (gnu_expr
) == COMPONENT_REF
)
1454 gnu_result
= rm_size (gnu_type
);
1455 if (!CONTAINS_PLACEHOLDER_P
1456 (DECL_SIZE (TREE_OPERAND (gnu_expr
, 1))))
1458 = size_binop (MAX_EXPR
, gnu_result
,
1459 DECL_SIZE (TREE_OPERAND (gnu_expr
, 1)));
1461 else if (Nkind (Prefix (gnat_node
)) == N_Explicit_Dereference
)
1463 Node_Id gnat_deref
= Prefix (gnat_node
);
1464 Node_Id gnat_actual_subtype
1465 = Actual_Designated_Subtype (gnat_deref
);
1467 = TREE_TYPE (gnat_to_gnu (Prefix (gnat_deref
)));
1469 if (TYPE_IS_FAT_OR_THIN_POINTER_P (gnu_ptr_type
)
1470 && Present (gnat_actual_subtype
))
1472 tree gnu_actual_obj_type
1473 = gnat_to_gnu_type (gnat_actual_subtype
);
1475 = build_unc_object_type_from_ptr (gnu_ptr_type
,
1476 gnu_actual_obj_type
,
1477 get_identifier ("SIZE"),
1481 gnu_result
= TYPE_SIZE (gnu_type
);
1484 gnu_result
= TYPE_SIZE (gnu_type
);
1487 gnu_result
= rm_size (gnu_type
);
1489 /* Deal with a self-referential size by returning the maximum size for
1490 a type and by qualifying the size with the object otherwise. */
1491 if (CONTAINS_PLACEHOLDER_P (gnu_result
))
1493 if (TREE_CODE (gnu_prefix
) == TYPE_DECL
)
1494 gnu_result
= max_size (gnu_result
, true);
1496 gnu_result
= substitute_placeholder_in_expr (gnu_result
, gnu_expr
);
1499 /* If the type contains a template, subtract its size. */
1500 if (TREE_CODE (gnu_type
) == RECORD_TYPE
1501 && TYPE_CONTAINS_TEMPLATE_P (gnu_type
))
1502 gnu_result
= size_binop (MINUS_EXPR
, gnu_result
,
1503 DECL_SIZE (TYPE_FIELDS (gnu_type
)));
1505 /* For 'Max_Size_In_Storage_Elements, adjust the unit. */
1506 if (attribute
== Attr_Max_Size_In_Storage_Elements
)
1507 gnu_result
= size_binop (CEIL_DIV_EXPR
, gnu_result
, bitsize_unit_node
);
1509 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1512 case Attr_Alignment
:
1516 if (TREE_CODE (gnu_prefix
) == COMPONENT_REF
1517 && TYPE_IS_PADDING_P (TREE_TYPE (TREE_OPERAND (gnu_prefix
, 0))))
1518 gnu_prefix
= TREE_OPERAND (gnu_prefix
, 0);
1520 gnu_type
= TREE_TYPE (gnu_prefix
);
1521 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1522 prefix_unused
= true;
1524 if (TREE_CODE (gnu_prefix
) == COMPONENT_REF
)
1525 align
= DECL_ALIGN (TREE_OPERAND (gnu_prefix
, 1)) / BITS_PER_UNIT
;
1528 Node_Id gnat_prefix
= Prefix (gnat_node
);
1529 Entity_Id gnat_type
= Etype (gnat_prefix
);
1530 unsigned int double_align
;
1531 bool is_capped_double
, align_clause
;
1533 /* If the default alignment of "double" or larger scalar types is
1534 specifically capped and there is an alignment clause neither
1535 on the type nor on the prefix itself, return the cap. */
1536 if ((double_align
= double_float_alignment
) > 0)
1538 = is_double_float_or_array (gnat_type
, &align_clause
);
1539 else if ((double_align
= double_scalar_alignment
) > 0)
1541 = is_double_scalar_or_array (gnat_type
, &align_clause
);
1543 is_capped_double
= align_clause
= false;
1545 if (is_capped_double
1546 && Nkind (gnat_prefix
) == N_Identifier
1547 && Present (Alignment_Clause (Entity (gnat_prefix
))))
1548 align_clause
= true;
1550 if (is_capped_double
&& !align_clause
)
1551 align
= double_align
;
1553 align
= TYPE_ALIGN (gnu_type
) / BITS_PER_UNIT
;
1556 gnu_result
= size_int (align
);
1562 case Attr_Range_Length
:
1563 prefix_unused
= true;
1565 if (INTEGRAL_TYPE_P (gnu_type
) || TREE_CODE (gnu_type
) == REAL_TYPE
)
1567 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1569 if (attribute
== Attr_First
)
1570 gnu_result
= TYPE_MIN_VALUE (gnu_type
);
1571 else if (attribute
== Attr_Last
)
1572 gnu_result
= TYPE_MAX_VALUE (gnu_type
);
1576 (MAX_EXPR
, get_base_type (gnu_result_type
),
1578 (PLUS_EXPR
, get_base_type (gnu_result_type
),
1579 build_binary_op (MINUS_EXPR
,
1580 get_base_type (gnu_result_type
),
1581 convert (gnu_result_type
,
1582 TYPE_MAX_VALUE (gnu_type
)),
1583 convert (gnu_result_type
,
1584 TYPE_MIN_VALUE (gnu_type
))),
1585 convert (gnu_result_type
, integer_one_node
)),
1586 convert (gnu_result_type
, integer_zero_node
));
1591 /* ... fall through ... */
1595 int Dimension
= (Present (Expressions (gnat_node
))
1596 ? UI_To_Int (Intval (First (Expressions (gnat_node
))))
1598 struct parm_attr_d
*pa
= NULL
;
1599 Entity_Id gnat_param
= Empty
;
1601 /* Make sure any implicit dereference gets done. */
1602 gnu_prefix
= maybe_implicit_deref (gnu_prefix
);
1603 gnu_prefix
= maybe_unconstrained_array (gnu_prefix
);
1604 /* We treat unconstrained array In parameters specially. */
1605 if (Nkind (Prefix (gnat_node
)) == N_Identifier
1606 && !Is_Constrained (Etype (Prefix (gnat_node
)))
1607 && Ekind (Entity (Prefix (gnat_node
))) == E_In_Parameter
)
1608 gnat_param
= Entity (Prefix (gnat_node
));
1609 gnu_type
= TREE_TYPE (gnu_prefix
);
1610 prefix_unused
= true;
1611 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1613 if (TYPE_CONVENTION_FORTRAN_P (gnu_type
))
1618 for (ndim
= 1, gnu_type_temp
= gnu_type
;
1619 TREE_CODE (TREE_TYPE (gnu_type_temp
)) == ARRAY_TYPE
1620 && TYPE_MULTI_ARRAY_P (TREE_TYPE (gnu_type_temp
));
1621 ndim
++, gnu_type_temp
= TREE_TYPE (gnu_type_temp
))
1624 Dimension
= ndim
+ 1 - Dimension
;
1627 for (i
= 1; i
< Dimension
; i
++)
1628 gnu_type
= TREE_TYPE (gnu_type
);
1630 gcc_assert (TREE_CODE (gnu_type
) == ARRAY_TYPE
);
1632 /* When not optimizing, look up the slot associated with the parameter
1633 and the dimension in the cache and create a new one on failure. */
1634 if (!optimize
&& Present (gnat_param
))
1636 FOR_EACH_VEC_ELT (parm_attr
, f_parm_attr_cache
, i
, pa
)
1637 if (pa
->id
== gnat_param
&& pa
->dim
== Dimension
)
1642 pa
= ggc_alloc_cleared_parm_attr_d ();
1643 pa
->id
= gnat_param
;
1644 pa
->dim
= Dimension
;
1645 VEC_safe_push (parm_attr
, gc
, f_parm_attr_cache
, pa
);
1649 /* Return the cached expression or build a new one. */
1650 if (attribute
== Attr_First
)
1652 if (pa
&& pa
->first
)
1654 gnu_result
= pa
->first
;
1659 = TYPE_MIN_VALUE (TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_type
)));
1662 else if (attribute
== Attr_Last
)
1666 gnu_result
= pa
->last
;
1671 = TYPE_MAX_VALUE (TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_type
)));
1674 else /* attribute == Attr_Range_Length || attribute == Attr_Length */
1676 if (pa
&& pa
->length
)
1678 gnu_result
= pa
->length
;
1683 /* We used to compute the length as max (hb - lb + 1, 0),
1684 which could overflow for some cases of empty arrays, e.g.
1685 when lb == index_type'first. We now compute the length as
1686 (hb >= lb) ? hb - lb + 1 : 0, which would only overflow in
1687 much rarer cases, for extremely large arrays we expect
1688 never to encounter in practice. In addition, the former
1689 computation required the use of potentially constraining
1690 signed arithmetic while the latter doesn't. Note that
1691 the comparison must be done in the original index type,
1692 to avoid any overflow during the conversion. */
1693 tree comp_type
= get_base_type (gnu_result_type
);
1694 tree index_type
= TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_type
));
1695 tree lb
= TYPE_MIN_VALUE (index_type
);
1696 tree hb
= TYPE_MAX_VALUE (index_type
);
1698 = build_binary_op (PLUS_EXPR
, comp_type
,
1699 build_binary_op (MINUS_EXPR
,
1701 convert (comp_type
, hb
),
1702 convert (comp_type
, lb
)),
1703 convert (comp_type
, integer_one_node
));
1705 = build_cond_expr (comp_type
,
1706 build_binary_op (GE_EXPR
,
1710 convert (comp_type
, integer_zero_node
));
1714 /* If this has a PLACEHOLDER_EXPR, qualify it by the object we are
1715 handling. Note that these attributes could not have been used on
1716 an unconstrained array type. */
1717 gnu_result
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (gnu_result
, gnu_prefix
);
1719 /* Cache the expression we have just computed. Since we want to do it
1720 at run time, we force the use of a SAVE_EXPR and let the gimplifier
1721 create the temporary in the outermost binding level. We will make
1722 sure in Subprogram_Body_to_gnu that it is evaluated on all possible
1723 paths by forcing its evaluation on entry of the function. */
1727 = build1 (SAVE_EXPR
, TREE_TYPE (gnu_result
), gnu_result
);
1728 if (attribute
== Attr_First
)
1729 pa
->first
= gnu_result
;
1730 else if (attribute
== Attr_Last
)
1731 pa
->last
= gnu_result
;
1733 pa
->length
= gnu_result
;
1736 /* Set the source location onto the predicate of the condition in the
1737 'Length case but do not do it if the expression is cached to avoid
1738 messing up the debug info. */
1739 else if ((attribute
== Attr_Range_Length
|| attribute
== Attr_Length
)
1740 && TREE_CODE (gnu_result
) == COND_EXPR
1741 && EXPR_P (TREE_OPERAND (gnu_result
, 0)))
1742 set_expr_location_from_node (TREE_OPERAND (gnu_result
, 0),
1748 case Attr_Bit_Position
:
1750 case Attr_First_Bit
:
1754 HOST_WIDE_INT bitsize
;
1755 HOST_WIDE_INT bitpos
;
1757 tree gnu_field_bitpos
;
1758 tree gnu_field_offset
;
1760 enum machine_mode mode
;
1761 int unsignedp
, volatilep
;
1763 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1764 gnu_prefix
= remove_conversions (gnu_prefix
, true);
1765 prefix_unused
= true;
1767 /* We can have 'Bit on any object, but if it isn't a COMPONENT_REF,
1768 the result is 0. Don't allow 'Bit on a bare component, though. */
1769 if (attribute
== Attr_Bit
1770 && TREE_CODE (gnu_prefix
) != COMPONENT_REF
1771 && TREE_CODE (gnu_prefix
) != FIELD_DECL
)
1773 gnu_result
= integer_zero_node
;
1778 gcc_assert (TREE_CODE (gnu_prefix
) == COMPONENT_REF
1779 || (attribute
== Attr_Bit_Position
1780 && TREE_CODE (gnu_prefix
) == FIELD_DECL
));
1782 get_inner_reference (gnu_prefix
, &bitsize
, &bitpos
, &gnu_offset
,
1783 &mode
, &unsignedp
, &volatilep
, false);
1785 if (TREE_CODE (gnu_prefix
) == COMPONENT_REF
)
1787 gnu_field_bitpos
= bit_position (TREE_OPERAND (gnu_prefix
, 1));
1788 gnu_field_offset
= byte_position (TREE_OPERAND (gnu_prefix
, 1));
1790 for (gnu_inner
= TREE_OPERAND (gnu_prefix
, 0);
1791 TREE_CODE (gnu_inner
) == COMPONENT_REF
1792 && DECL_INTERNAL_P (TREE_OPERAND (gnu_inner
, 1));
1793 gnu_inner
= TREE_OPERAND (gnu_inner
, 0))
1796 = size_binop (PLUS_EXPR
, gnu_field_bitpos
,
1797 bit_position (TREE_OPERAND (gnu_inner
, 1)));
1799 = size_binop (PLUS_EXPR
, gnu_field_offset
,
1800 byte_position (TREE_OPERAND (gnu_inner
, 1)));
1803 else if (TREE_CODE (gnu_prefix
) == FIELD_DECL
)
1805 gnu_field_bitpos
= bit_position (gnu_prefix
);
1806 gnu_field_offset
= byte_position (gnu_prefix
);
1810 gnu_field_bitpos
= bitsize_zero_node
;
1811 gnu_field_offset
= size_zero_node
;
1817 gnu_result
= gnu_field_offset
;
1820 case Attr_First_Bit
:
1822 gnu_result
= size_int (bitpos
% BITS_PER_UNIT
);
1826 gnu_result
= bitsize_int (bitpos
% BITS_PER_UNIT
);
1827 gnu_result
= size_binop (PLUS_EXPR
, gnu_result
,
1828 TYPE_SIZE (TREE_TYPE (gnu_prefix
)));
1829 gnu_result
= size_binop (MINUS_EXPR
, gnu_result
,
1833 case Attr_Bit_Position
:
1834 gnu_result
= gnu_field_bitpos
;
1838 /* If this has a PLACEHOLDER_EXPR, qualify it by the object we are
1840 gnu_result
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (gnu_result
, gnu_prefix
);
1847 tree gnu_lhs
= gnat_to_gnu (First (Expressions (gnat_node
)));
1848 tree gnu_rhs
= gnat_to_gnu (Next (First (Expressions (gnat_node
))));
1850 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1851 gnu_result
= build_binary_op (attribute
== Attr_Min
1852 ? MIN_EXPR
: MAX_EXPR
,
1853 gnu_result_type
, gnu_lhs
, gnu_rhs
);
1857 case Attr_Passed_By_Reference
:
1858 gnu_result
= size_int (default_pass_by_ref (gnu_type
)
1859 || must_pass_by_ref (gnu_type
));
1860 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1863 case Attr_Component_Size
:
1864 if (TREE_CODE (gnu_prefix
) == COMPONENT_REF
1865 && TYPE_IS_PADDING_P (TREE_TYPE (TREE_OPERAND (gnu_prefix
, 0))))
1866 gnu_prefix
= TREE_OPERAND (gnu_prefix
, 0);
1868 gnu_prefix
= maybe_implicit_deref (gnu_prefix
);
1869 gnu_type
= TREE_TYPE (gnu_prefix
);
1871 if (TREE_CODE (gnu_type
) == UNCONSTRAINED_ARRAY_TYPE
)
1872 gnu_type
= TREE_TYPE (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (gnu_type
))));
1874 while (TREE_CODE (TREE_TYPE (gnu_type
)) == ARRAY_TYPE
1875 && TYPE_MULTI_ARRAY_P (TREE_TYPE (gnu_type
)))
1876 gnu_type
= TREE_TYPE (gnu_type
);
1878 gcc_assert (TREE_CODE (gnu_type
) == ARRAY_TYPE
);
1880 /* Note this size cannot be self-referential. */
1881 gnu_result
= TYPE_SIZE (TREE_TYPE (gnu_type
));
1882 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1883 prefix_unused
= true;
1886 case Attr_Null_Parameter
:
1887 /* This is just a zero cast to the pointer type for our prefix and
1889 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1891 = build_unary_op (INDIRECT_REF
, NULL_TREE
,
1892 convert (build_pointer_type (gnu_result_type
),
1893 integer_zero_node
));
1894 TREE_PRIVATE (gnu_result
) = 1;
1897 case Attr_Mechanism_Code
:
1900 Entity_Id gnat_obj
= Entity (Prefix (gnat_node
));
1902 prefix_unused
= true;
1903 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1904 if (Present (Expressions (gnat_node
)))
1906 int i
= UI_To_Int (Intval (First (Expressions (gnat_node
))));
1908 for (gnat_obj
= First_Formal (gnat_obj
); i
> 1;
1909 i
--, gnat_obj
= Next_Formal (gnat_obj
))
1913 code
= Mechanism (gnat_obj
);
1914 if (code
== Default
)
1915 code
= ((present_gnu_tree (gnat_obj
)
1916 && (DECL_BY_REF_P (get_gnu_tree (gnat_obj
))
1917 || ((TREE_CODE (get_gnu_tree (gnat_obj
))
1919 && (DECL_BY_COMPONENT_PTR_P
1920 (get_gnu_tree (gnat_obj
))))))
1921 ? By_Reference
: By_Copy
);
1922 gnu_result
= convert (gnu_result_type
, size_int (- code
));
1927 /* Say we have an unimplemented attribute. Then set the value to be
1928 returned to be a zero and hope that's something we can convert to
1929 the type of this attribute. */
1930 post_error ("unimplemented attribute", gnat_node
);
1931 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
1932 gnu_result
= integer_zero_node
;
1936 /* If this is an attribute where the prefix was unused, force a use of it if
1937 it has a side-effect. But don't do it if the prefix is just an entity
1938 name. However, if an access check is needed, we must do it. See second
1939 example in AARM 11.6(5.e). */
1940 if (prefix_unused
&& TREE_SIDE_EFFECTS (gnu_prefix
)
1941 && !Is_Entity_Name (Prefix (gnat_node
)))
1942 gnu_result
= build_compound_expr (TREE_TYPE (gnu_result
), gnu_prefix
,
1945 *gnu_result_type_p
= gnu_result_type
;
1949 /* Subroutine of gnat_to_gnu to translate gnat_node, an N_Case_Statement,
1950 to a GCC tree, which is returned. */
1953 Case_Statement_to_gnu (Node_Id gnat_node
)
1955 tree gnu_result
, gnu_expr
, gnu_label
;
1957 location_t end_locus
;
1958 bool may_fallthru
= false;
1960 gnu_expr
= gnat_to_gnu (Expression (gnat_node
));
1961 gnu_expr
= convert (get_base_type (TREE_TYPE (gnu_expr
)), gnu_expr
);
1963 /* The range of values in a case statement is determined by the rules in
1964 RM 5.4(7-9). In almost all cases, this range is represented by the Etype
1965 of the expression. One exception arises in the case of a simple name that
1966 is parenthesized. This still has the Etype of the name, but since it is
1967 not a name, para 7 does not apply, and we need to go to the base type.
1968 This is the only case where parenthesization affects the dynamic
1969 semantics (i.e. the range of possible values at run time that is covered
1970 by the others alternative).
1972 Another exception is if the subtype of the expression is non-static. In
1973 that case, we also have to use the base type. */
1974 if (Paren_Count (Expression (gnat_node
)) != 0
1975 || !Is_OK_Static_Subtype (Underlying_Type
1976 (Etype (Expression (gnat_node
)))))
1977 gnu_expr
= convert (get_base_type (TREE_TYPE (gnu_expr
)), gnu_expr
);
1979 /* We build a SWITCH_EXPR that contains the code with interspersed
1980 CASE_LABEL_EXPRs for each label. */
1981 if (!Sloc_to_locus (Sloc (gnat_node
) + UI_To_Int (End_Span (gnat_node
)),
1983 end_locus
= input_location
;
1984 gnu_label
= create_artificial_label (end_locus
);
1985 start_stmt_group ();
1987 for (gnat_when
= First_Non_Pragma (Alternatives (gnat_node
));
1988 Present (gnat_when
);
1989 gnat_when
= Next_Non_Pragma (gnat_when
))
1991 bool choices_added_p
= false;
1992 Node_Id gnat_choice
;
1994 /* First compile all the different case choices for the current WHEN
1996 for (gnat_choice
= First (Discrete_Choices (gnat_when
));
1997 Present (gnat_choice
); gnat_choice
= Next (gnat_choice
))
1999 tree gnu_low
= NULL_TREE
, gnu_high
= NULL_TREE
;
2001 switch (Nkind (gnat_choice
))
2004 gnu_low
= gnat_to_gnu (Low_Bound (gnat_choice
));
2005 gnu_high
= gnat_to_gnu (High_Bound (gnat_choice
));
2008 case N_Subtype_Indication
:
2009 gnu_low
= gnat_to_gnu (Low_Bound (Range_Expression
2010 (Constraint (gnat_choice
))));
2011 gnu_high
= gnat_to_gnu (High_Bound (Range_Expression
2012 (Constraint (gnat_choice
))));
2016 case N_Expanded_Name
:
2017 /* This represents either a subtype range or a static value of
2018 some kind; Ekind says which. */
2019 if (IN (Ekind (Entity (gnat_choice
)), Type_Kind
))
2021 tree gnu_type
= get_unpadded_type (Entity (gnat_choice
));
2023 gnu_low
= fold (TYPE_MIN_VALUE (gnu_type
));
2024 gnu_high
= fold (TYPE_MAX_VALUE (gnu_type
));
2028 /* ... fall through ... */
2030 case N_Character_Literal
:
2031 case N_Integer_Literal
:
2032 gnu_low
= gnat_to_gnu (gnat_choice
);
2035 case N_Others_Choice
:
2042 /* If the case value is a subtype that raises Constraint_Error at
2043 run time because of a wrong bound, then gnu_low or gnu_high is
2044 not translated into an INTEGER_CST. In such a case, we need
2045 to ensure that the when statement is not added in the tree,
2046 otherwise it will crash the gimplifier. */
2047 if ((!gnu_low
|| TREE_CODE (gnu_low
) == INTEGER_CST
)
2048 && (!gnu_high
|| TREE_CODE (gnu_high
) == INTEGER_CST
))
2050 add_stmt_with_node (build3
2051 (CASE_LABEL_EXPR
, void_type_node
,
2053 create_artificial_label (input_location
)),
2055 choices_added_p
= true;
2059 /* Push a binding level here in case variables are declared as we want
2060 them to be local to this set of statements instead of to the block
2061 containing the Case statement. */
2062 if (choices_added_p
)
2064 tree group
= build_stmt_group (Statements (gnat_when
), true);
2065 bool group_may_fallthru
= block_may_fallthru (group
);
2067 if (group_may_fallthru
)
2069 tree stmt
= build1 (GOTO_EXPR
, void_type_node
, gnu_label
);
2070 SET_EXPR_LOCATION (stmt
, end_locus
);
2072 may_fallthru
= true;
2077 /* Now emit a definition of the label the cases branch to, if any. */
2079 add_stmt (build1 (LABEL_EXPR
, void_type_node
, gnu_label
));
2080 gnu_result
= build3 (SWITCH_EXPR
, TREE_TYPE (gnu_expr
), gnu_expr
,
2081 end_stmt_group (), NULL_TREE
);
2086 /* Return true if VAL (of type TYPE) can equal the minimum value if MAX is
2087 false, or the maximum value if MAX is true, of TYPE. */
2090 can_equal_min_or_max_val_p (tree val
, tree type
, bool max
)
2092 tree min_or_max_val
= (max
? TYPE_MAX_VALUE (type
) : TYPE_MIN_VALUE (type
));
2094 if (TREE_CODE (min_or_max_val
) != INTEGER_CST
)
2097 if (TREE_CODE (val
) == NOP_EXPR
)
2099 ? TYPE_MAX_VALUE (TREE_TYPE (TREE_OPERAND (val
, 0)))
2100 : TYPE_MIN_VALUE (TREE_TYPE (TREE_OPERAND (val
, 0))));
2102 if (TREE_CODE (val
) != INTEGER_CST
)
2105 return tree_int_cst_equal (val
, min_or_max_val
) == 1;
2108 /* Return true if VAL (of type TYPE) can equal the minimum value of TYPE.
2109 If REVERSE is true, minimum value is taken as maximum value. */
2112 can_equal_min_val_p (tree val
, tree type
, bool reverse
)
2114 return can_equal_min_or_max_val_p (val
, type
, reverse
);
2117 /* Return true if VAL (of type TYPE) can equal the maximum value of TYPE.
2118 If REVERSE is true, maximum value is taken as minimum value. */
2121 can_equal_max_val_p (tree val
, tree type
, bool reverse
)
2123 return can_equal_min_or_max_val_p (val
, type
, !reverse
);
2126 /* Return true if VAL1 can be lower than VAL2. */
2129 can_be_lower_p (tree val1
, tree val2
)
2131 if (TREE_CODE (val1
) == NOP_EXPR
)
2132 val1
= TYPE_MIN_VALUE (TREE_TYPE (TREE_OPERAND (val1
, 0)));
2134 if (TREE_CODE (val1
) != INTEGER_CST
)
2137 if (TREE_CODE (val2
) == NOP_EXPR
)
2138 val2
= TYPE_MAX_VALUE (TREE_TYPE (TREE_OPERAND (val2
, 0)));
2140 if (TREE_CODE (val2
) != INTEGER_CST
)
2143 return tree_int_cst_lt (val1
, val2
);
2146 /* Subroutine of gnat_to_gnu to translate gnat_node, an N_Loop_Statement,
2147 to a GCC tree, which is returned. */
2150 Loop_Statement_to_gnu (Node_Id gnat_node
)
2152 const Node_Id gnat_iter_scheme
= Iteration_Scheme (gnat_node
);
2153 tree gnu_loop_stmt
= build4 (LOOP_STMT
, void_type_node
, NULL_TREE
,
2154 NULL_TREE
, NULL_TREE
, NULL_TREE
);
2155 tree gnu_loop_label
= create_artificial_label (input_location
);
2156 tree gnu_loop_var
= NULL_TREE
, gnu_cond_expr
= NULL_TREE
;
2159 /* Set location information for statement and end label. */
2160 set_expr_location_from_node (gnu_loop_stmt
, gnat_node
);
2161 Sloc_to_locus (Sloc (End_Label (gnat_node
)),
2162 &DECL_SOURCE_LOCATION (gnu_loop_label
));
2163 LOOP_STMT_LABEL (gnu_loop_stmt
) = gnu_loop_label
;
2165 /* Save the end label of this LOOP_STMT in a stack so that a corresponding
2166 N_Exit_Statement can find it. */
2167 VEC_safe_push (tree
, gc
, gnu_loop_label_stack
, gnu_loop_label
);
2169 /* Set the condition under which the loop must keep going.
2170 For the case "LOOP .... END LOOP;" the condition is always true. */
2171 if (No (gnat_iter_scheme
))
2174 /* For the case "WHILE condition LOOP ..... END LOOP;" it's immediate. */
2175 else if (Present (Condition (gnat_iter_scheme
)))
2176 LOOP_STMT_COND (gnu_loop_stmt
)
2177 = gnat_to_gnu (Condition (gnat_iter_scheme
));
2179 /* Otherwise we have an iteration scheme and the condition is given by the
2180 bounds of the subtype of the iteration variable. */
2183 Node_Id gnat_loop_spec
= Loop_Parameter_Specification (gnat_iter_scheme
);
2184 Entity_Id gnat_loop_var
= Defining_Entity (gnat_loop_spec
);
2185 Entity_Id gnat_type
= Etype (gnat_loop_var
);
2186 tree gnu_type
= get_unpadded_type (gnat_type
);
2187 tree gnu_low
= TYPE_MIN_VALUE (gnu_type
);
2188 tree gnu_high
= TYPE_MAX_VALUE (gnu_type
);
2189 tree gnu_base_type
= get_base_type (gnu_type
);
2190 tree gnu_one_node
= convert (gnu_base_type
, integer_one_node
);
2191 tree gnu_first
, gnu_last
;
2192 enum tree_code update_code
, test_code
, shift_code
;
2193 bool reverse
= Reverse_Present (gnat_loop_spec
), fallback
= false;
2195 /* We must disable modulo reduction for the iteration variable, if any,
2196 in order for the loop comparison to be effective. */
2199 gnu_first
= gnu_high
;
2201 update_code
= MINUS_NOMOD_EXPR
;
2202 test_code
= GE_EXPR
;
2203 shift_code
= PLUS_NOMOD_EXPR
;
2207 gnu_first
= gnu_low
;
2208 gnu_last
= gnu_high
;
2209 update_code
= PLUS_NOMOD_EXPR
;
2210 test_code
= LE_EXPR
;
2211 shift_code
= MINUS_NOMOD_EXPR
;
2214 /* We use two different strategies to translate the loop, depending on
2215 whether optimization is enabled.
2217 If it is, we try to generate the canonical form of loop expected by
2218 the loop optimizer, which is the do-while form:
2227 This makes it possible to bypass loop header copying and to turn the
2228 BOTTOM_COND into an inequality test. This should catch (almost) all
2229 loops with constant starting point. If we cannot, we try to generate
2230 the default form, which is:
2238 It will be rotated during loop header copying and an entry test added
2239 to yield the do-while form. This should catch (almost) all loops with
2240 constant ending point. If we cannot, we generate the fallback form:
2249 which works in all cases but for which loop header copying will copy
2250 the BOTTOM_COND, thus adding a third conditional branch.
2252 If optimization is disabled, loop header copying doesn't come into
2253 play and we try to generate the loop forms with the less conditional
2254 branches directly. First, the default form, it should catch (almost)
2255 all loops with constant ending point. Then, if we cannot, we try to
2256 generate the shifted form:
2264 which should catch loops with constant starting point. Otherwise, if
2265 we cannot, we generate the fallback form. */
2269 /* We can use the do-while form if GNU_FIRST-1 doesn't overflow. */
2270 if (!can_equal_min_val_p (gnu_first
, gnu_base_type
, reverse
))
2272 gnu_first
= build_binary_op (shift_code
, gnu_base_type
,
2273 gnu_first
, gnu_one_node
);
2274 LOOP_STMT_TOP_UPDATE_P (gnu_loop_stmt
) = 1;
2275 LOOP_STMT_BOTTOM_COND_P (gnu_loop_stmt
) = 1;
2278 /* Otherwise, we can use the default form if GNU_LAST+1 doesn't. */
2279 else if (!can_equal_max_val_p (gnu_last
, gnu_base_type
, reverse
))
2282 /* Otherwise, use the fallback form. */
2288 /* We can use the default form if GNU_LAST+1 doesn't overflow. */
2289 if (!can_equal_max_val_p (gnu_last
, gnu_base_type
, reverse
))
2292 /* Otherwise, we can use the shifted form if neither GNU_FIRST-1 nor
2294 else if (!can_equal_min_val_p (gnu_first
, gnu_base_type
, reverse
)
2295 && !can_equal_min_val_p (gnu_last
, gnu_base_type
, reverse
))
2297 gnu_first
= build_binary_op (shift_code
, gnu_base_type
,
2298 gnu_first
, gnu_one_node
);
2299 gnu_last
= build_binary_op (shift_code
, gnu_base_type
,
2300 gnu_last
, gnu_one_node
);
2301 LOOP_STMT_TOP_UPDATE_P (gnu_loop_stmt
) = 1;
2304 /* Otherwise, use the fallback form. */
2310 LOOP_STMT_BOTTOM_COND_P (gnu_loop_stmt
) = 1;
2312 /* If we use the BOTTOM_COND, we can turn the test into an inequality
2313 test but we may have to add ENTRY_COND to protect the empty loop. */
2314 if (LOOP_STMT_BOTTOM_COND_P (gnu_loop_stmt
))
2316 test_code
= NE_EXPR
;
2317 if (can_be_lower_p (gnu_high
, gnu_low
))
2320 = build3 (COND_EXPR
, void_type_node
,
2321 build_binary_op (LE_EXPR
, boolean_type_node
,
2323 NULL_TREE
, alloc_stmt_list ());
2324 set_expr_location_from_node (gnu_cond_expr
, gnat_loop_spec
);
2328 /* Open a new nesting level that will surround the loop to declare the
2329 iteration variable. */
2330 start_stmt_group ();
2333 /* Declare the iteration variable and set it to its initial value. */
2334 gnu_loop_var
= gnat_to_gnu_entity (gnat_loop_var
, gnu_first
, 1);
2335 if (DECL_BY_REF_P (gnu_loop_var
))
2336 gnu_loop_var
= build_unary_op (INDIRECT_REF
, NULL_TREE
, gnu_loop_var
);
2338 /* Do all the arithmetics in the base type. */
2339 gnu_loop_var
= convert (gnu_base_type
, gnu_loop_var
);
2341 /* Set either the top or bottom exit condition. */
2342 LOOP_STMT_COND (gnu_loop_stmt
)
2343 = build_binary_op (test_code
, boolean_type_node
, gnu_loop_var
,
2346 /* Set either the top or bottom update statement and give it the source
2347 location of the iteration for better coverage info. */
2348 LOOP_STMT_UPDATE (gnu_loop_stmt
)
2349 = build_binary_op (MODIFY_EXPR
, NULL_TREE
, gnu_loop_var
,
2350 build_binary_op (update_code
, gnu_base_type
,
2351 gnu_loop_var
, gnu_one_node
));
2352 set_expr_location_from_node (LOOP_STMT_UPDATE (gnu_loop_stmt
),
2356 /* If the loop was named, have the name point to this loop. In this case,
2357 the association is not a DECL node, but the end label of the loop. */
2358 if (Present (Identifier (gnat_node
)))
2359 save_gnu_tree (Entity (Identifier (gnat_node
)), gnu_loop_label
, true);
2361 /* Make the loop body into its own block, so any allocated storage will be
2362 released every iteration. This is needed for stack allocation. */
2363 LOOP_STMT_BODY (gnu_loop_stmt
)
2364 = build_stmt_group (Statements (gnat_node
), true);
2365 TREE_SIDE_EFFECTS (gnu_loop_stmt
) = 1;
2367 /* If we declared a variable, then we are in a statement group for that
2368 declaration. Add the LOOP_STMT to it and make that the "loop". */
2371 add_stmt (gnu_loop_stmt
);
2373 gnu_loop_stmt
= end_stmt_group ();
2376 /* If we have an outer COND_EXPR, that's our result and this loop is its
2377 "true" statement. Otherwise, the result is the LOOP_STMT. */
2380 COND_EXPR_THEN (gnu_cond_expr
) = gnu_loop_stmt
;
2381 gnu_result
= gnu_cond_expr
;
2382 recalculate_side_effects (gnu_cond_expr
);
2385 gnu_result
= gnu_loop_stmt
;
2387 VEC_pop (tree
, gnu_loop_label_stack
);
2392 /* Emit statements to establish __gnat_handle_vms_condition as a VMS condition
2393 handler for the current function. */
2395 /* This is implemented by issuing a call to the appropriate VMS specific
2396 builtin. To avoid having VMS specific sections in the global gigi decls
2397 array, we maintain the decls of interest here. We can't declare them
2398 inside the function because we must mark them never to be GC'd, which we
2399 can only do at the global level. */
2401 static GTY(()) tree vms_builtin_establish_handler_decl
= NULL_TREE
;
2402 static GTY(()) tree gnat_vms_condition_handler_decl
= NULL_TREE
;
2405 establish_gnat_vms_condition_handler (void)
2407 tree establish_stmt
;
2409 /* Elaborate the required decls on the first call. Check on the decl for
2410 the gnat condition handler to decide, as this is one we create so we are
2411 sure that it will be non null on subsequent calls. The builtin decl is
2412 looked up so remains null on targets where it is not implemented yet. */
2413 if (gnat_vms_condition_handler_decl
== NULL_TREE
)
2415 vms_builtin_establish_handler_decl
2417 (get_identifier ("__builtin_establish_vms_condition_handler"));
2419 gnat_vms_condition_handler_decl
2420 = create_subprog_decl (get_identifier ("__gnat_handle_vms_condition"),
2422 build_function_type_list (boolean_type_node
,
2426 NULL_TREE
, 0, 1, 1, 0, Empty
);
2428 /* ??? DECL_CONTEXT shouldn't have been set because of DECL_EXTERNAL. */
2429 DECL_CONTEXT (gnat_vms_condition_handler_decl
) = NULL_TREE
;
2432 /* Do nothing if the establish builtin is not available, which might happen
2433 on targets where the facility is not implemented. */
2434 if (vms_builtin_establish_handler_decl
== NULL_TREE
)
2438 = build_call_1_expr (vms_builtin_establish_handler_decl
,
2440 (ADDR_EXPR
, NULL_TREE
,
2441 gnat_vms_condition_handler_decl
));
2443 add_stmt (establish_stmt
);
2446 /* Subroutine of gnat_to_gnu to process gnat_node, an N_Subprogram_Body. We
2447 don't return anything. */
2450 Subprogram_Body_to_gnu (Node_Id gnat_node
)
2452 /* Defining identifier of a parameter to the subprogram. */
2453 Entity_Id gnat_param
;
2454 /* The defining identifier for the subprogram body. Note that if a
2455 specification has appeared before for this body, then the identifier
2456 occurring in that specification will also be a defining identifier and all
2457 the calls to this subprogram will point to that specification. */
2458 Entity_Id gnat_subprog_id
2459 = (Present (Corresponding_Spec (gnat_node
))
2460 ? Corresponding_Spec (gnat_node
) : Defining_Entity (gnat_node
));
2461 /* The FUNCTION_DECL node corresponding to the subprogram spec. */
2462 tree gnu_subprog_decl
;
2463 /* Its RESULT_DECL node. */
2464 tree gnu_result_decl
;
2465 /* Its FUNCTION_TYPE node. */
2466 tree gnu_subprog_type
;
2467 /* The TYPE_CI_CO_LIST of its FUNCTION_TYPE node, if any. */
2469 /* The entry in the CI_CO_LIST that represents a function return, if any. */
2470 tree gnu_return_var_elmt
= NULL_TREE
;
2472 VEC(parm_attr
,gc
) *cache
;
2474 /* If this is a generic object or if it has been eliminated,
2476 if (Ekind (gnat_subprog_id
) == E_Generic_Procedure
2477 || Ekind (gnat_subprog_id
) == E_Generic_Function
2478 || Is_Eliminated (gnat_subprog_id
))
2481 /* If this subprogram acts as its own spec, define it. Otherwise, just get
2482 the already-elaborated tree node. However, if this subprogram had its
2483 elaboration deferred, we will already have made a tree node for it. So
2484 treat it as not being defined in that case. Such a subprogram cannot
2485 have an address clause or a freeze node, so this test is safe, though it
2486 does disable some otherwise-useful error checking. */
2488 = gnat_to_gnu_entity (gnat_subprog_id
, NULL_TREE
,
2489 Acts_As_Spec (gnat_node
)
2490 && !present_gnu_tree (gnat_subprog_id
));
2491 gnu_result_decl
= DECL_RESULT (gnu_subprog_decl
);
2492 gnu_subprog_type
= TREE_TYPE (gnu_subprog_decl
);
2493 gnu_cico_list
= TYPE_CI_CO_LIST (gnu_subprog_type
);
2495 gnu_return_var_elmt
= value_member (void_type_node
, gnu_cico_list
);
2497 /* If the function returns by invisible reference, make it explicit in the
2498 function body. See gnat_to_gnu_entity, E_Subprogram_Type case.
2499 Handle the explicit case here and the copy-in/copy-out case below. */
2500 if (TREE_ADDRESSABLE (gnu_subprog_type
) && !gnu_return_var_elmt
)
2502 TREE_TYPE (gnu_result_decl
)
2503 = build_reference_type (TREE_TYPE (gnu_result_decl
));
2504 relayout_decl (gnu_result_decl
);
2507 /* Propagate the debug mode. */
2508 if (!Needs_Debug_Info (gnat_subprog_id
))
2509 DECL_IGNORED_P (gnu_subprog_decl
) = 1;
2511 /* Set the line number in the decl to correspond to that of the body so that
2512 the line number notes are written correctly. */
2513 Sloc_to_locus (Sloc (gnat_node
), &DECL_SOURCE_LOCATION (gnu_subprog_decl
));
2515 /* Initialize the information structure for the function. */
2516 allocate_struct_function (gnu_subprog_decl
, false);
2517 DECL_STRUCT_FUNCTION (gnu_subprog_decl
)->language
2518 = ggc_alloc_cleared_language_function ();
2521 begin_subprog_body (gnu_subprog_decl
);
2523 /* If there are In Out or Out parameters, we need to ensure that the return
2524 statement properly copies them out. We do this by making a new block and
2525 converting any return into a goto to a label at the end of the block. */
2528 tree gnu_return_var
= NULL_TREE
;
2530 VEC_safe_push (tree
, gc
, gnu_return_label_stack
,
2531 create_artificial_label (input_location
));
2533 start_stmt_group ();
2536 /* If this is a function with In Out or Out parameters, we also need a
2537 variable for the return value to be placed. */
2538 if (gnu_return_var_elmt
)
2540 tree gnu_return_type
2541 = TREE_TYPE (TREE_PURPOSE (gnu_return_var_elmt
));
2543 /* If the function returns by invisible reference, make it
2544 explicit in the function body. See gnat_to_gnu_entity,
2545 E_Subprogram_Type case. */
2546 if (TREE_ADDRESSABLE (gnu_subprog_type
))
2547 gnu_return_type
= build_reference_type (gnu_return_type
);
2550 = create_var_decl (get_identifier ("RETVAL"), NULL_TREE
,
2551 gnu_return_type
, NULL_TREE
, false, false,
2552 false, false, NULL
, gnat_subprog_id
);
2553 TREE_VALUE (gnu_return_var_elmt
) = gnu_return_var
;
2556 VEC_safe_push (tree
, gc
, gnu_return_var_stack
, gnu_return_var
);
2558 /* See whether there are parameters for which we don't have a GCC tree
2559 yet. These must be Out parameters. Make a VAR_DECL for them and
2560 put it into TYPE_CI_CO_LIST, which must contain an empty entry too.
2561 We can match up the entries because TYPE_CI_CO_LIST is in the order
2562 of the parameters. */
2563 for (gnat_param
= First_Formal_With_Extras (gnat_subprog_id
);
2564 Present (gnat_param
);
2565 gnat_param
= Next_Formal_With_Extras (gnat_param
))
2566 if (!present_gnu_tree (gnat_param
))
2568 tree gnu_cico_entry
= gnu_cico_list
;
2570 /* Skip any entries that have been already filled in; they must
2571 correspond to In Out parameters. */
2572 while (gnu_cico_entry
&& TREE_VALUE (gnu_cico_entry
))
2573 gnu_cico_entry
= TREE_CHAIN (gnu_cico_entry
);
2575 /* Do any needed references for padded types. */
2576 TREE_VALUE (gnu_cico_entry
)
2577 = convert (TREE_TYPE (TREE_PURPOSE (gnu_cico_entry
)),
2578 gnat_to_gnu_entity (gnat_param
, NULL_TREE
, 1));
2582 VEC_safe_push (tree
, gc
, gnu_return_label_stack
, NULL_TREE
);
2584 /* Get a tree corresponding to the code for the subprogram. */
2585 start_stmt_group ();
2588 /* On VMS, establish our condition handler to possibly turn a condition into
2589 the corresponding exception if the subprogram has a foreign convention or
2592 To ensure proper execution of local finalizations on condition instances,
2593 we must turn a condition into the corresponding exception even if there
2594 is no applicable Ada handler, and need at least one condition handler per
2595 possible call chain involving GNAT code. OTOH, establishing the handler
2596 has a cost so we want to minimize the number of subprograms into which
2597 this happens. The foreign or exported condition is expected to satisfy
2598 all the constraints. */
2599 if (TARGET_ABI_OPEN_VMS
2600 && (Has_Foreign_Convention (gnat_subprog_id
)
2601 || Is_Exported (gnat_subprog_id
)))
2602 establish_gnat_vms_condition_handler ();
2604 process_decls (Declarations (gnat_node
), Empty
, Empty
, true, true);
2606 /* Generate the code of the subprogram itself. A return statement will be
2607 present and any Out parameters will be handled there. */
2608 add_stmt (gnat_to_gnu (Handled_Statement_Sequence (gnat_node
)));
2610 gnu_result
= end_stmt_group ();
2612 /* If we populated the parameter attributes cache, we need to make sure that
2613 the cached expressions are evaluated on all the possible paths leading to
2614 their uses. So we force their evaluation on entry of the function. */
2615 cache
= DECL_STRUCT_FUNCTION (gnu_subprog_decl
)->language
->parm_attr_cache
;
2618 struct parm_attr_d
*pa
;
2621 start_stmt_group ();
2623 FOR_EACH_VEC_ELT (parm_attr
, cache
, i
, pa
)
2626 add_stmt_with_node_force (pa
->first
, gnat_node
);
2628 add_stmt_with_node_force (pa
->last
, gnat_node
);
2630 add_stmt_with_node_force (pa
->length
, gnat_node
);
2633 add_stmt (gnu_result
);
2634 gnu_result
= end_stmt_group ();
2637 /* If we are dealing with a return from an Ada procedure with parameters
2638 passed by copy-in/copy-out, we need to return a record containing the
2639 final values of these parameters. If the list contains only one entry,
2640 return just that entry though.
2642 For a full description of the copy-in/copy-out parameter mechanism, see
2643 the part of the gnat_to_gnu_entity routine dealing with the translation
2646 We need to make a block that contains the definition of that label and
2647 the copying of the return value. It first contains the function, then
2648 the label and copy statement. */
2653 add_stmt (gnu_result
);
2654 add_stmt (build1 (LABEL_EXPR
, void_type_node
,
2655 VEC_last (tree
, gnu_return_label_stack
)));
2657 if (list_length (gnu_cico_list
) == 1)
2658 gnu_retval
= TREE_VALUE (gnu_cico_list
);
2660 gnu_retval
= build_constructor_from_list (TREE_TYPE (gnu_subprog_type
),
2663 add_stmt_with_node (build_return_expr (gnu_result_decl
, gnu_retval
),
2664 End_Label (Handled_Statement_Sequence (gnat_node
)));
2666 gnu_result
= end_stmt_group ();
2669 VEC_pop (tree
, gnu_return_label_stack
);
2671 end_subprog_body (gnu_result
);
2673 /* Attempt setting the end_locus of our GCC body tree, typically a
2674 BIND_EXPR or STATEMENT_LIST, then the end_locus of our GCC subprogram
2675 declaration tree. */
2676 set_end_locus_from_node (gnu_result
, gnat_node
);
2677 set_end_locus_from_node (gnu_subprog_decl
, gnat_node
);
2679 /* Finally annotate the parameters and disconnect the trees for parameters
2680 that we have turned into variables since they are now unusable. */
2681 for (gnat_param
= First_Formal_With_Extras (gnat_subprog_id
);
2682 Present (gnat_param
);
2683 gnat_param
= Next_Formal_With_Extras (gnat_param
))
2685 tree gnu_param
= get_gnu_tree (gnat_param
);
2686 bool is_var_decl
= (TREE_CODE (gnu_param
) == VAR_DECL
);
2688 annotate_object (gnat_param
, TREE_TYPE (gnu_param
), NULL_TREE
,
2689 DECL_BY_REF_P (gnu_param
),
2690 !is_var_decl
&& DECL_BY_DOUBLE_REF_P (gnu_param
));
2693 save_gnu_tree (gnat_param
, NULL_TREE
, false);
2696 if (DECL_FUNCTION_STUB (gnu_subprog_decl
))
2697 build_function_stub (gnu_subprog_decl
, gnat_subprog_id
);
2699 if (gnu_return_var_elmt
)
2700 TREE_VALUE (gnu_return_var_elmt
) = void_type_node
;
2702 mark_out_of_scope (Defining_Unit_Name (Specification (gnat_node
)));
2705 /* Create a temporary variable with PREFIX and TYPE, and return it. */
2708 create_temporary (const char *prefix
, tree type
)
2710 tree gnu_temp
= create_var_decl (create_tmp_var_name (prefix
), NULL_TREE
,
2711 type
, NULL_TREE
, false, false, false, false,
2713 DECL_ARTIFICIAL (gnu_temp
) = 1;
2714 DECL_IGNORED_P (gnu_temp
) = 1;
2719 /* Create a temporary variable with PREFIX and initialize it with GNU_INIT.
2720 Put the initialization statement into GNU_INIT_STMT and annotate it with
2721 the SLOC of GNAT_NODE. Return the temporary variable. */
2724 create_init_temporary (const char *prefix
, tree gnu_init
, tree
*gnu_init_stmt
,
2727 tree gnu_temp
= create_temporary (prefix
, TREE_TYPE (gnu_init
));
2729 *gnu_init_stmt
= build_binary_op (INIT_EXPR
, NULL_TREE
, gnu_temp
, gnu_init
);
2730 set_expr_location_from_node (*gnu_init_stmt
, gnat_node
);
2735 /* Subroutine of gnat_to_gnu to translate gnat_node, either an N_Function_Call
2736 or an N_Procedure_Call_Statement, to a GCC tree, which is returned.
2737 GNU_RESULT_TYPE_P is a pointer to where we should place the result type.
2738 If GNU_TARGET is non-null, this must be a function call on the RHS of a
2739 N_Assignment_Statement and the result is to be placed into that object. */
2742 call_to_gnu (Node_Id gnat_node
, tree
*gnu_result_type_p
, tree gnu_target
)
2744 const bool function_call
= (Nkind (gnat_node
) == N_Function_Call
);
2745 const bool returning_value
= (function_call
&& !gnu_target
);
2746 /* The GCC node corresponding to the GNAT subprogram name. This can either
2747 be a FUNCTION_DECL node if we are dealing with a standard subprogram call,
2748 or an indirect reference expression (an INDIRECT_REF node) pointing to a
2750 tree gnu_subprog
= gnat_to_gnu (Name (gnat_node
));
2751 /* The FUNCTION_TYPE node giving the GCC type of the subprogram. */
2752 tree gnu_subprog_type
= TREE_TYPE (gnu_subprog
);
2753 /* The return type of the FUNCTION_TYPE. */
2754 tree gnu_result_type
= TREE_TYPE (gnu_subprog_type
);
2755 tree gnu_subprog_addr
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_subprog
);
2756 VEC(tree
,gc
) *gnu_actual_vec
= NULL
;
2757 tree gnu_name_list
= NULL_TREE
;
2758 tree gnu_stmt_list
= NULL_TREE
;
2759 tree gnu_after_list
= NULL_TREE
;
2760 tree gnu_retval
= NULL_TREE
;
2761 tree gnu_call
, gnu_result
;
2762 bool went_into_elab_proc
= false;
2763 bool pushed_binding_level
= false;
2764 Entity_Id gnat_formal
;
2765 Node_Id gnat_actual
;
2767 gcc_assert (TREE_CODE (gnu_subprog_type
) == FUNCTION_TYPE
);
2769 /* If we are calling a stubbed function, raise Program_Error, but Elaborate
2770 all our args first. */
2771 if (TREE_CODE (gnu_subprog
) == FUNCTION_DECL
&& DECL_STUBBED_P (gnu_subprog
))
2773 tree call_expr
= build_call_raise (PE_Stubbed_Subprogram_Called
,
2774 gnat_node
, N_Raise_Program_Error
);
2776 for (gnat_actual
= First_Actual (gnat_node
);
2777 Present (gnat_actual
);
2778 gnat_actual
= Next_Actual (gnat_actual
))
2779 add_stmt (gnat_to_gnu (gnat_actual
));
2781 if (returning_value
)
2783 *gnu_result_type_p
= gnu_result_type
;
2784 return build1 (NULL_EXPR
, gnu_result_type
, call_expr
);
2790 /* The only way we can be making a call via an access type is if Name is an
2791 explicit dereference. In that case, get the list of formal args from the
2792 type the access type is pointing to. Otherwise, get the formals from the
2793 entity being called. */
2794 if (Nkind (Name (gnat_node
)) == N_Explicit_Dereference
)
2795 gnat_formal
= First_Formal_With_Extras (Etype (Name (gnat_node
)));
2796 else if (Nkind (Name (gnat_node
)) == N_Attribute_Reference
)
2797 /* Assume here that this must be 'Elab_Body or 'Elab_Spec. */
2798 gnat_formal
= Empty
;
2800 gnat_formal
= First_Formal_With_Extras (Entity (Name (gnat_node
)));
2802 /* The lifetime of the temporaries created for the call ends right after the
2803 return value is copied, so we can give them the scope of the elaboration
2804 routine at top level. */
2805 if (!current_function_decl
)
2807 current_function_decl
= get_elaboration_procedure ();
2808 went_into_elab_proc
= true;
2811 /* First, create the temporary for the return value if we need it: for a
2812 variable-sized return type if there is no target or if this is slice,
2813 because the gimplifier doesn't support these cases; or for a function
2814 with copy-in/copy-out parameters if there is no target, because we'll
2815 need to preserve the return value before copying back the parameters.
2816 This must be done before we push a new binding level around the call
2817 as we will pop it before copying the return value. */
2819 && ((TREE_CODE (TYPE_SIZE (gnu_result_type
)) != INTEGER_CST
2820 && (!gnu_target
|| TREE_CODE (gnu_target
) == ARRAY_RANGE_REF
))
2821 || (!gnu_target
&& TYPE_CI_CO_LIST (gnu_subprog_type
))))
2822 gnu_retval
= create_temporary ("R", gnu_result_type
);
2824 /* Create the list of the actual parameters as GCC expects it, namely a
2825 chain of TREE_LIST nodes in which the TREE_VALUE field of each node
2826 is an expression and the TREE_PURPOSE field is null. But skip Out
2827 parameters not passed by reference and that need not be copied in. */
2828 for (gnat_actual
= First_Actual (gnat_node
);
2829 Present (gnat_actual
);
2830 gnat_formal
= Next_Formal_With_Extras (gnat_formal
),
2831 gnat_actual
= Next_Actual (gnat_actual
))
2833 tree gnu_formal
= present_gnu_tree (gnat_formal
)
2834 ? get_gnu_tree (gnat_formal
) : NULL_TREE
;
2835 tree gnu_formal_type
= gnat_to_gnu_type (Etype (gnat_formal
));
2836 /* In the Out or In Out case, we must suppress conversions that yield
2837 an lvalue but can nevertheless cause the creation of a temporary,
2838 because we need the real object in this case, either to pass its
2839 address if it's passed by reference or as target of the back copy
2840 done after the call if it uses the copy-in/copy-out mechanism.
2841 We do it in the In case too, except for an unchecked conversion
2842 because it alone can cause the actual to be misaligned and the
2843 addressability test is applied to the real object. */
2844 bool suppress_type_conversion
2845 = ((Nkind (gnat_actual
) == N_Unchecked_Type_Conversion
2846 && Ekind (gnat_formal
) != E_In_Parameter
)
2847 || (Nkind (gnat_actual
) == N_Type_Conversion
2848 && Is_Composite_Type (Underlying_Type (Etype (gnat_formal
)))));
2849 Node_Id gnat_name
= suppress_type_conversion
2850 ? Expression (gnat_actual
) : gnat_actual
;
2851 tree gnu_name
= gnat_to_gnu (gnat_name
), gnu_name_type
;
2854 /* If it's possible we may need to use this expression twice, make sure
2855 that any side-effects are handled via SAVE_EXPRs; likewise if we need
2856 to force side-effects before the call.
2857 ??? This is more conservative than we need since we don't need to do
2858 this for pass-by-ref with no conversion. */
2859 if (Ekind (gnat_formal
) != E_In_Parameter
)
2860 gnu_name
= gnat_stabilize_reference (gnu_name
, true, NULL
);
2862 /* If we are passing a non-addressable parameter by reference, pass the
2863 address of a copy. In the Out or In Out case, set up to copy back
2864 out after the call. */
2866 && (DECL_BY_REF_P (gnu_formal
)
2867 || (TREE_CODE (gnu_formal
) == PARM_DECL
2868 && (DECL_BY_COMPONENT_PTR_P (gnu_formal
)
2869 || (DECL_BY_DESCRIPTOR_P (gnu_formal
)))))
2870 && (gnu_name_type
= gnat_to_gnu_type (Etype (gnat_name
)))
2871 && !addressable_p (gnu_name
, gnu_name_type
))
2873 bool in_param
= (Ekind (gnat_formal
) == E_In_Parameter
);
2874 tree gnu_orig
= gnu_name
, gnu_temp
, gnu_stmt
;
2876 /* Do not issue warnings for CONSTRUCTORs since this is not a copy
2877 but sort of an instantiation for them. */
2878 if (TREE_CODE (gnu_name
) == CONSTRUCTOR
)
2881 /* If the type is passed by reference, a copy is not allowed. */
2882 else if (TREE_ADDRESSABLE (gnu_formal_type
))
2883 post_error ("misaligned actual cannot be passed by reference",
2886 /* For users of Starlet we issue a warning because the interface
2887 apparently assumes that by-ref parameters outlive the procedure
2888 invocation. The code still will not work as intended, but we
2889 cannot do much better since low-level parts of the back-end
2890 would allocate temporaries at will because of the misalignment
2891 if we did not do so here. */
2892 else if (Is_Valued_Procedure (Entity (Name (gnat_node
))))
2895 ("?possible violation of implicit assumption", gnat_actual
);
2897 ("?made by pragma Import_Valued_Procedure on &", gnat_actual
,
2898 Entity (Name (gnat_node
)));
2899 post_error_ne ("?because of misalignment of &", gnat_actual
,
2903 /* If the actual type of the object is already the nominal type,
2904 we have nothing to do, except if the size is self-referential
2905 in which case we'll remove the unpadding below. */
2906 if (TREE_TYPE (gnu_name
) == gnu_name_type
2907 && !CONTAINS_PLACEHOLDER_P (TYPE_SIZE (gnu_name_type
)))
2910 /* Otherwise remove the unpadding from all the objects. */
2911 else if (TREE_CODE (gnu_name
) == COMPONENT_REF
2912 && TYPE_IS_PADDING_P
2913 (TREE_TYPE (TREE_OPERAND (gnu_name
, 0))))
2914 gnu_orig
= gnu_name
= TREE_OPERAND (gnu_name
, 0);
2916 /* Otherwise convert to the nominal type of the object if needed.
2917 There are several cases in which we need to make the temporary
2918 using this type instead of the actual type of the object when
2919 they are distinct, because the expectations of the callee would
2920 otherwise not be met:
2921 - if it's a justified modular type,
2922 - if the actual type is a smaller form of it,
2923 - if it's a smaller form of the actual type. */
2924 else if ((TREE_CODE (gnu_name_type
) == RECORD_TYPE
2925 && (TYPE_JUSTIFIED_MODULAR_P (gnu_name_type
)
2926 || smaller_form_type_p (TREE_TYPE (gnu_name
),
2928 || (INTEGRAL_TYPE_P (gnu_name_type
)
2929 && smaller_form_type_p (gnu_name_type
,
2930 TREE_TYPE (gnu_name
))))
2931 gnu_name
= convert (gnu_name_type
, gnu_name
);
2933 /* If this is an In Out or Out parameter and we're returning a value,
2934 we need to create a temporary for the return value because we must
2935 preserve it before copying back at the very end. */
2936 if (!in_param
&& returning_value
&& !gnu_retval
)
2937 gnu_retval
= create_temporary ("R", gnu_result_type
);
2939 /* If we haven't pushed a binding level, push a new one. This will
2940 narrow the lifetime of the temporary we are about to make as much
2941 as possible. The drawback is that we'd need to create a temporary
2942 for the return value, if any (see comment before the loop). So do
2943 it only when this temporary was already created just above. */
2944 if (!pushed_binding_level
&& !(in_param
&& returning_value
))
2946 start_stmt_group ();
2948 pushed_binding_level
= true;
2951 /* Create an explicit temporary holding the copy. */
2953 = create_init_temporary ("A", gnu_name
, &gnu_stmt
, gnat_actual
);
2955 /* But initialize it on the fly like for an implicit temporary as
2956 we aren't necessarily having a statement list. */
2957 gnu_name
= build_compound_expr (TREE_TYPE (gnu_name
), gnu_stmt
,
2960 /* Set up to move the copy back to the original if needed. */
2963 gnu_stmt
= build_binary_op (MODIFY_EXPR
, NULL_TREE
, gnu_orig
,
2965 set_expr_location_from_node (gnu_stmt
, gnat_node
);
2966 append_to_statement_list (gnu_stmt
, &gnu_after_list
);
2970 /* Start from the real object and build the actual. */
2971 gnu_actual
= gnu_name
;
2973 /* If this was a procedure call, we may not have removed any padding.
2974 So do it here for the part we will use as an input, if any. */
2975 if (Ekind (gnat_formal
) != E_Out_Parameter
2976 && TYPE_IS_PADDING_P (TREE_TYPE (gnu_actual
)))
2978 = convert (get_unpadded_type (Etype (gnat_actual
)), gnu_actual
);
2980 /* Put back the conversion we suppressed above in the computation of the
2981 real object. And even if we didn't suppress any conversion there, we
2982 may have suppressed a conversion to the Etype of the actual earlier,
2983 since the parent is a procedure call, so put it back here. */
2984 if (suppress_type_conversion
2985 && Nkind (gnat_actual
) == N_Unchecked_Type_Conversion
)
2987 = unchecked_convert (gnat_to_gnu_type (Etype (gnat_actual
)),
2988 gnu_actual
, No_Truncation (gnat_actual
));
2991 = convert (gnat_to_gnu_type (Etype (gnat_actual
)), gnu_actual
);
2993 /* Make sure that the actual is in range of the formal's type. */
2994 if (Ekind (gnat_formal
) != E_Out_Parameter
2995 && Do_Range_Check (gnat_actual
))
2997 = emit_range_check (gnu_actual
, Etype (gnat_formal
), gnat_actual
);
2999 /* Unless this is an In parameter, we must remove any justified modular
3000 building from GNU_NAME to get an lvalue. */
3001 if (Ekind (gnat_formal
) != E_In_Parameter
3002 && TREE_CODE (gnu_name
) == CONSTRUCTOR
3003 && TREE_CODE (TREE_TYPE (gnu_name
)) == RECORD_TYPE
3004 && TYPE_JUSTIFIED_MODULAR_P (TREE_TYPE (gnu_name
)))
3006 = convert (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (gnu_name
))), gnu_name
);
3008 /* If we have not saved a GCC object for the formal, it means it is an
3009 Out parameter not passed by reference and that need not be copied in.
3010 Otherwise, first see if the parameter is passed by reference. */
3012 && TREE_CODE (gnu_formal
) == PARM_DECL
3013 && DECL_BY_REF_P (gnu_formal
))
3015 if (Ekind (gnat_formal
) != E_In_Parameter
)
3017 /* In Out or Out parameters passed by reference don't use the
3018 copy-in/copy-out mechanism so the address of the real object
3019 must be passed to the function. */
3020 gnu_actual
= gnu_name
;
3022 /* If we have a padded type, be sure we've removed padding. */
3023 if (TYPE_IS_PADDING_P (TREE_TYPE (gnu_actual
)))
3024 gnu_actual
= convert (get_unpadded_type (Etype (gnat_actual
)),
3027 /* If we have the constructed subtype of an aliased object
3028 with an unconstrained nominal subtype, the type of the
3029 actual includes the template, although it is formally
3030 constrained. So we need to convert it back to the real
3031 constructed subtype to retrieve the constrained part
3032 and takes its address. */
3033 if (TREE_CODE (TREE_TYPE (gnu_actual
)) == RECORD_TYPE
3034 && TYPE_CONTAINS_TEMPLATE_P (TREE_TYPE (gnu_actual
))
3035 && Is_Constr_Subt_For_UN_Aliased (Etype (gnat_actual
))
3036 && Is_Array_Type (Etype (gnat_actual
)))
3037 gnu_actual
= convert (gnat_to_gnu_type (Etype (gnat_actual
)),
3041 /* There is no need to convert the actual to the formal's type before
3042 taking its address. The only exception is for unconstrained array
3043 types because of the way we build fat pointers. */
3044 else if (TREE_CODE (gnu_formal_type
) == UNCONSTRAINED_ARRAY_TYPE
)
3045 gnu_actual
= convert (gnu_formal_type
, gnu_actual
);
3047 /* The symmetry of the paths to the type of an entity is broken here
3048 since arguments don't know that they will be passed by ref. */
3049 gnu_formal_type
= TREE_TYPE (get_gnu_tree (gnat_formal
));
3051 if (DECL_BY_DOUBLE_REF_P (gnu_formal
))
3053 = build_unary_op (ADDR_EXPR
, TREE_TYPE (gnu_formal_type
),
3056 gnu_actual
= build_unary_op (ADDR_EXPR
, gnu_formal_type
, gnu_actual
);
3059 && TREE_CODE (gnu_formal
) == PARM_DECL
3060 && DECL_BY_COMPONENT_PTR_P (gnu_formal
))
3062 gnu_formal_type
= TREE_TYPE (get_gnu_tree (gnat_formal
));
3063 gnu_actual
= maybe_implicit_deref (gnu_actual
);
3064 gnu_actual
= maybe_unconstrained_array (gnu_actual
);
3066 if (TYPE_IS_PADDING_P (gnu_formal_type
))
3068 gnu_formal_type
= TREE_TYPE (TYPE_FIELDS (gnu_formal_type
));
3069 gnu_actual
= convert (gnu_formal_type
, gnu_actual
);
3072 /* Take the address of the object and convert to the proper pointer
3073 type. We'd like to actually compute the address of the beginning
3074 of the array using an ADDR_EXPR of an ARRAY_REF, but there's a
3075 possibility that the ARRAY_REF might return a constant and we'd be
3076 getting the wrong address. Neither approach is exactly correct,
3077 but this is the most likely to work in all cases. */
3078 gnu_actual
= build_unary_op (ADDR_EXPR
, gnu_formal_type
, gnu_actual
);
3081 && TREE_CODE (gnu_formal
) == PARM_DECL
3082 && DECL_BY_DESCRIPTOR_P (gnu_formal
))
3084 gnu_actual
= convert (gnu_formal_type
, gnu_actual
);
3086 /* If this is 'Null_Parameter, pass a zero descriptor. */
3087 if ((TREE_CODE (gnu_actual
) == INDIRECT_REF
3088 || TREE_CODE (gnu_actual
) == UNCONSTRAINED_ARRAY_REF
)
3089 && TREE_PRIVATE (gnu_actual
))
3091 = convert (DECL_ARG_TYPE (gnu_formal
), integer_zero_node
);
3093 gnu_actual
= build_unary_op (ADDR_EXPR
, NULL_TREE
,
3095 (TREE_TYPE (TREE_TYPE (gnu_formal
)),
3096 gnu_actual
, gnat_actual
));
3102 if (Ekind (gnat_formal
) != E_In_Parameter
)
3103 gnu_name_list
= tree_cons (NULL_TREE
, gnu_name
, gnu_name_list
);
3105 if (!(gnu_formal
&& TREE_CODE (gnu_formal
) == PARM_DECL
))
3107 /* Make sure side-effects are evaluated before the call. */
3108 if (TREE_SIDE_EFFECTS (gnu_name
))
3109 append_to_statement_list (gnu_name
, &gnu_stmt_list
);
3113 gnu_actual
= convert (gnu_formal_type
, gnu_actual
);
3115 /* If this is 'Null_Parameter, pass a zero even though we are
3116 dereferencing it. */
3117 if (TREE_CODE (gnu_actual
) == INDIRECT_REF
3118 && TREE_PRIVATE (gnu_actual
)
3119 && (gnu_size
= TYPE_SIZE (TREE_TYPE (gnu_actual
)))
3120 && TREE_CODE (gnu_size
) == INTEGER_CST
3121 && compare_tree_int (gnu_size
, BITS_PER_WORD
) <= 0)
3123 = unchecked_convert (DECL_ARG_TYPE (gnu_formal
),
3124 convert (gnat_type_for_size
3125 (TREE_INT_CST_LOW (gnu_size
), 1),
3129 gnu_actual
= convert (DECL_ARG_TYPE (gnu_formal
), gnu_actual
);
3132 VEC_safe_push (tree
, gc
, gnu_actual_vec
, gnu_actual
);
3136 = build_call_vec (gnu_result_type
, gnu_subprog_addr
, gnu_actual_vec
);
3137 set_expr_location_from_node (gnu_call
, gnat_node
);
3139 /* If we have created a temporary for the return value, initialize it. */
3143 = build_binary_op (INIT_EXPR
, NULL_TREE
, gnu_retval
, gnu_call
);
3144 set_expr_location_from_node (gnu_stmt
, gnat_node
);
3145 append_to_statement_list (gnu_stmt
, &gnu_stmt_list
);
3146 gnu_call
= gnu_retval
;
3149 /* If this is a subprogram with copy-in/copy-out parameters, we need to
3150 unpack the valued returned from the function into the In Out or Out
3151 parameters. We deal with the function return (if this is an Ada
3153 if (TYPE_CI_CO_LIST (gnu_subprog_type
))
3155 /* List of FIELD_DECLs associated with the PARM_DECLs of the copy-in/
3156 copy-out parameters. */
3157 tree gnu_cico_list
= TYPE_CI_CO_LIST (gnu_subprog_type
);
3158 const int length
= list_length (gnu_cico_list
);
3160 /* The call sequence must contain one and only one call, even though the
3161 function is pure. Save the result into a temporary if needed. */
3167 /* If we haven't pushed a binding level, push a new one. This
3168 will narrow the lifetime of the temporary we are about to
3169 make as much as possible. */
3170 if (!pushed_binding_level
)
3172 start_stmt_group ();
3174 pushed_binding_level
= true;
3177 = create_init_temporary ("P", gnu_call
, &gnu_stmt
, gnat_node
);
3178 append_to_statement_list (gnu_stmt
, &gnu_stmt_list
);
3181 gnu_name_list
= nreverse (gnu_name_list
);
3184 /* The first entry is for the actual return value if this is a
3185 function, so skip it. */
3186 if (TREE_VALUE (gnu_cico_list
) == void_type_node
)
3187 gnu_cico_list
= TREE_CHAIN (gnu_cico_list
);
3189 if (Nkind (Name (gnat_node
)) == N_Explicit_Dereference
)
3190 gnat_formal
= First_Formal_With_Extras (Etype (Name (gnat_node
)));
3192 gnat_formal
= First_Formal_With_Extras (Entity (Name (gnat_node
)));
3194 for (gnat_actual
= First_Actual (gnat_node
);
3195 Present (gnat_actual
);
3196 gnat_formal
= Next_Formal_With_Extras (gnat_formal
),
3197 gnat_actual
= Next_Actual (gnat_actual
))
3198 /* If we are dealing with a copy-in/copy-out parameter, we must
3199 retrieve its value from the record returned in the call. */
3200 if (!(present_gnu_tree (gnat_formal
)
3201 && TREE_CODE (get_gnu_tree (gnat_formal
)) == PARM_DECL
3202 && (DECL_BY_REF_P (get_gnu_tree (gnat_formal
))
3203 || (TREE_CODE (get_gnu_tree (gnat_formal
)) == PARM_DECL
3204 && ((DECL_BY_COMPONENT_PTR_P (get_gnu_tree (gnat_formal
))
3205 || (DECL_BY_DESCRIPTOR_P
3206 (get_gnu_tree (gnat_formal
))))))))
3207 && Ekind (gnat_formal
) != E_In_Parameter
)
3209 /* Get the value to assign to this Out or In Out parameter. It is
3210 either the result of the function if there is only a single such
3211 parameter or the appropriate field from the record returned. */
3215 : build_component_ref (gnu_call
, NULL_TREE
,
3216 TREE_PURPOSE (gnu_cico_list
), false);
3218 /* If the actual is a conversion, get the inner expression, which
3219 will be the real destination, and convert the result to the
3220 type of the actual parameter. */
3222 = maybe_unconstrained_array (TREE_VALUE (gnu_name_list
));
3224 /* If the result is a padded type, remove the padding. */
3225 if (TYPE_IS_PADDING_P (TREE_TYPE (gnu_result
)))
3227 = convert (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (gnu_result
))),
3230 /* If the actual is a type conversion, the real target object is
3231 denoted by the inner Expression and we need to convert the
3232 result to the associated type.
3233 We also need to convert our gnu assignment target to this type
3234 if the corresponding GNU_NAME was constructed from the GNAT
3235 conversion node and not from the inner Expression. */
3236 if (Nkind (gnat_actual
) == N_Type_Conversion
)
3239 = convert_with_check
3240 (Etype (Expression (gnat_actual
)), gnu_result
,
3241 Do_Overflow_Check (gnat_actual
),
3242 Do_Range_Check (Expression (gnat_actual
)),
3243 Float_Truncate (gnat_actual
), gnat_actual
);
3245 if (!Is_Composite_Type (Underlying_Type (Etype (gnat_formal
))))
3246 gnu_actual
= convert (TREE_TYPE (gnu_result
), gnu_actual
);
3249 /* Unchecked conversions as actuals for Out parameters are not
3250 allowed in user code because they are not variables, but do
3251 occur in front-end expansions. The associated GNU_NAME is
3252 always obtained from the inner expression in such cases. */
3253 else if (Nkind (gnat_actual
) == N_Unchecked_Type_Conversion
)
3254 gnu_result
= unchecked_convert (TREE_TYPE (gnu_actual
),
3256 No_Truncation (gnat_actual
));
3259 if (Do_Range_Check (gnat_actual
))
3261 = emit_range_check (gnu_result
, Etype (gnat_actual
),
3264 if (!(!TREE_CONSTANT (TYPE_SIZE (TREE_TYPE (gnu_actual
)))
3265 && TREE_CONSTANT (TYPE_SIZE (TREE_TYPE (gnu_result
)))))
3266 gnu_result
= convert (TREE_TYPE (gnu_actual
), gnu_result
);
3269 gnu_result
= build_binary_op (MODIFY_EXPR
, NULL_TREE
,
3270 gnu_actual
, gnu_result
);
3271 set_expr_location_from_node (gnu_result
, gnat_node
);
3272 append_to_statement_list (gnu_result
, &gnu_stmt_list
);
3273 gnu_cico_list
= TREE_CHAIN (gnu_cico_list
);
3274 gnu_name_list
= TREE_CHAIN (gnu_name_list
);
3278 /* If this is a function call, the result is the call expression unless a
3279 target is specified, in which case we copy the result into the target
3280 and return the assignment statement. */
3283 /* If this is a function with copy-in/copy-out parameters, extract the
3284 return value from it and update the return type. */
3285 if (TYPE_CI_CO_LIST (gnu_subprog_type
))
3287 tree gnu_elmt
= value_member (void_type_node
,
3288 TYPE_CI_CO_LIST (gnu_subprog_type
));
3289 gnu_call
= build_component_ref (gnu_call
, NULL_TREE
,
3290 TREE_PURPOSE (gnu_elmt
), false);
3291 gnu_result_type
= TREE_TYPE (gnu_call
);
3294 /* If the function returns an unconstrained array or by direct reference,
3295 we have to dereference the pointer. */
3296 if (TYPE_RETURN_UNCONSTRAINED_P (gnu_subprog_type
)
3297 || TYPE_RETURN_BY_DIRECT_REF_P (gnu_subprog_type
))
3298 gnu_call
= build_unary_op (INDIRECT_REF
, NULL_TREE
, gnu_call
);
3302 Node_Id gnat_parent
= Parent (gnat_node
);
3303 enum tree_code op_code
;
3305 /* If range check is needed, emit code to generate it. */
3306 if (Do_Range_Check (gnat_node
))
3308 = emit_range_check (gnu_call
, Etype (Name (gnat_parent
)),
3311 /* ??? If the return type has variable size, then force the return
3312 slot optimization as we would not be able to create a temporary.
3313 Likewise if it was unconstrained as we would copy too much data.
3314 That's what has been done historically. */
3315 if (TREE_CODE (TYPE_SIZE (gnu_result_type
)) != INTEGER_CST
3316 || (TYPE_IS_PADDING_P (gnu_result_type
)
3317 && CONTAINS_PLACEHOLDER_P
3318 (TYPE_SIZE (TREE_TYPE (TYPE_FIELDS (gnu_result_type
))))))
3319 op_code
= INIT_EXPR
;
3321 op_code
= MODIFY_EXPR
;
3324 = build_binary_op (op_code
, NULL_TREE
, gnu_target
, gnu_call
);
3325 set_expr_location_from_node (gnu_call
, gnat_parent
);
3326 append_to_statement_list (gnu_call
, &gnu_stmt_list
);
3329 *gnu_result_type_p
= get_unpadded_type (Etype (gnat_node
));
3332 /* Otherwise, if this is a procedure call statement without copy-in/copy-out
3333 parameters, the result is just the call statement. */
3334 else if (!TYPE_CI_CO_LIST (gnu_subprog_type
))
3335 append_to_statement_list (gnu_call
, &gnu_stmt_list
);
3337 /* Finally, add the copy back statements, if any. */
3338 append_to_statement_list (gnu_after_list
, &gnu_stmt_list
);
3340 if (went_into_elab_proc
)
3341 current_function_decl
= NULL_TREE
;
3343 /* If we have pushed a binding level, pop it and finish up the enclosing
3345 if (pushed_binding_level
)
3347 add_stmt (gnu_stmt_list
);
3349 gnu_result
= end_stmt_group ();
3352 /* Otherwise, retrieve the statement list, if any. */
3353 else if (gnu_stmt_list
)
3354 gnu_result
= gnu_stmt_list
;
3356 /* Otherwise, just return the call expression. */
3360 /* If we nevertheless need a value, make a COMPOUND_EXPR to return it. */
3361 if (returning_value
)
3363 = build_compound_expr (TREE_TYPE (gnu_call
), gnu_result
, gnu_call
);
3368 /* Subroutine of gnat_to_gnu to translate gnat_node, an
3369 N_Handled_Sequence_Of_Statements, to a GCC tree, which is returned. */
3372 Handled_Sequence_Of_Statements_to_gnu (Node_Id gnat_node
)
3374 tree gnu_jmpsave_decl
= NULL_TREE
;
3375 tree gnu_jmpbuf_decl
= NULL_TREE
;
3376 /* If just annotating, ignore all EH and cleanups. */
3377 bool gcc_zcx
= (!type_annotate_only
3378 && Present (Exception_Handlers (gnat_node
))
3379 && Exception_Mechanism
== Back_End_Exceptions
);
3381 = (!type_annotate_only
&& Present (Exception_Handlers (gnat_node
))
3382 && Exception_Mechanism
== Setjmp_Longjmp
);
3383 bool at_end
= !type_annotate_only
&& Present (At_End_Proc (gnat_node
));
3384 bool binding_for_block
= (at_end
|| gcc_zcx
|| setjmp_longjmp
);
3385 tree gnu_inner_block
; /* The statement(s) for the block itself. */
3390 /* The GCC exception handling mechanism can handle both ZCX and SJLJ schemes
3391 and we have our own SJLJ mechanism. To call the GCC mechanism, we call
3392 add_cleanup, and when we leave the binding, end_stmt_group will create
3393 the TRY_FINALLY_EXPR.
3395 ??? The region level calls down there have been specifically put in place
3396 for a ZCX context and currently the order in which things are emitted
3397 (region/handlers) is different from the SJLJ case. Instead of putting
3398 other calls with different conditions at other places for the SJLJ case,
3399 it seems cleaner to reorder things for the SJLJ case and generalize the
3400 condition to make it not ZCX specific.
3402 If there are any exceptions or cleanup processing involved, we need an
3403 outer statement group (for Setjmp_Longjmp) and binding level. */
3404 if (binding_for_block
)
3406 start_stmt_group ();
3410 /* If using setjmp_longjmp, make the variables for the setjmp buffer and save
3411 area for address of previous buffer. Do this first since we need to have
3412 the setjmp buf known for any decls in this block. */
3415 gnu_jmpsave_decl
= create_var_decl (get_identifier ("JMPBUF_SAVE"),
3416 NULL_TREE
, jmpbuf_ptr_type
,
3417 build_call_0_expr (get_jmpbuf_decl
),
3418 false, false, false, false,
3420 DECL_ARTIFICIAL (gnu_jmpsave_decl
) = 1;
3422 /* The __builtin_setjmp receivers will immediately reinstall it. Now
3423 because of the unstructured form of EH used by setjmp_longjmp, there
3424 might be forward edges going to __builtin_setjmp receivers on which
3425 it is uninitialized, although they will never be actually taken. */
3426 TREE_NO_WARNING (gnu_jmpsave_decl
) = 1;
3427 gnu_jmpbuf_decl
= create_var_decl (get_identifier ("JMP_BUF"),
3428 NULL_TREE
, jmpbuf_type
, NULL_TREE
,
3429 false, false, false, false,
3431 DECL_ARTIFICIAL (gnu_jmpbuf_decl
) = 1;
3433 set_block_jmpbuf_decl (gnu_jmpbuf_decl
);
3435 /* When we exit this block, restore the saved value. */
3436 add_cleanup (build_call_1_expr (set_jmpbuf_decl
, gnu_jmpsave_decl
),
3437 End_Label (gnat_node
));
3440 /* If we are to call a function when exiting this block, add a cleanup
3441 to the binding level we made above. Note that add_cleanup is FIFO
3442 so we must register this cleanup after the EH cleanup just above. */
3444 add_cleanup (build_call_0_expr (gnat_to_gnu (At_End_Proc (gnat_node
))),
3445 End_Label (gnat_node
));
3447 /* Now build the tree for the declarations and statements inside this block.
3448 If this is SJLJ, set our jmp_buf as the current buffer. */
3449 start_stmt_group ();
3452 add_stmt (build_call_1_expr (set_jmpbuf_decl
,
3453 build_unary_op (ADDR_EXPR
, NULL_TREE
,
3456 if (Present (First_Real_Statement (gnat_node
)))
3457 process_decls (Statements (gnat_node
), Empty
,
3458 First_Real_Statement (gnat_node
), true, true);
3460 /* Generate code for each statement in the block. */
3461 for (gnat_temp
= (Present (First_Real_Statement (gnat_node
))
3462 ? First_Real_Statement (gnat_node
)
3463 : First (Statements (gnat_node
)));
3464 Present (gnat_temp
); gnat_temp
= Next (gnat_temp
))
3465 add_stmt (gnat_to_gnu (gnat_temp
));
3466 gnu_inner_block
= end_stmt_group ();
3468 /* Now generate code for the two exception models, if either is relevant for
3472 tree
*gnu_else_ptr
= 0;
3475 /* Make a binding level for the exception handling declarations and code
3476 and set up gnu_except_ptr_stack for the handlers to use. */
3477 start_stmt_group ();
3480 VEC_safe_push (tree
, gc
, gnu_except_ptr_stack
,
3481 create_var_decl (get_identifier ("EXCEPT_PTR"), NULL_TREE
,
3482 build_pointer_type (except_type_node
),
3483 build_call_0_expr (get_excptr_decl
),
3484 false, false, false, false,
3487 /* Generate code for each handler. The N_Exception_Handler case does the
3488 real work and returns a COND_EXPR for each handler, which we chain
3490 for (gnat_temp
= First_Non_Pragma (Exception_Handlers (gnat_node
));
3491 Present (gnat_temp
); gnat_temp
= Next_Non_Pragma (gnat_temp
))
3493 gnu_expr
= gnat_to_gnu (gnat_temp
);
3495 /* If this is the first one, set it as the outer one. Otherwise,
3496 point the "else" part of the previous handler to us. Then point
3497 to our "else" part. */
3499 add_stmt (gnu_expr
);
3501 *gnu_else_ptr
= gnu_expr
;
3503 gnu_else_ptr
= &COND_EXPR_ELSE (gnu_expr
);
3506 /* If none of the exception handlers did anything, re-raise but do not
3508 gnu_expr
= build_call_1_expr (raise_nodefer_decl
,
3509 VEC_last (tree
, gnu_except_ptr_stack
));
3510 set_expr_location_from_node
3512 Present (End_Label (gnat_node
)) ? End_Label (gnat_node
) : gnat_node
);
3515 *gnu_else_ptr
= gnu_expr
;
3517 add_stmt (gnu_expr
);
3519 /* End the binding level dedicated to the exception handlers and get the
3520 whole statement group. */
3521 VEC_pop (tree
, gnu_except_ptr_stack
);
3523 gnu_handler
= end_stmt_group ();
3525 /* If the setjmp returns 1, we restore our incoming longjmp value and
3526 then check the handlers. */
3527 start_stmt_group ();
3528 add_stmt_with_node (build_call_1_expr (set_jmpbuf_decl
,
3531 add_stmt (gnu_handler
);
3532 gnu_handler
= end_stmt_group ();
3534 /* This block is now "if (setjmp) ... <handlers> else <block>". */
3535 gnu_result
= build3 (COND_EXPR
, void_type_node
,
3538 build_unary_op (ADDR_EXPR
, NULL_TREE
,
3540 gnu_handler
, gnu_inner_block
);
3546 /* First make a block containing the handlers. */
3547 start_stmt_group ();
3548 for (gnat_temp
= First_Non_Pragma (Exception_Handlers (gnat_node
));
3549 Present (gnat_temp
);
3550 gnat_temp
= Next_Non_Pragma (gnat_temp
))
3551 add_stmt (gnat_to_gnu (gnat_temp
));
3552 gnu_handlers
= end_stmt_group ();
3554 /* Now make the TRY_CATCH_EXPR for the block. */
3555 gnu_result
= build2 (TRY_CATCH_EXPR
, void_type_node
,
3556 gnu_inner_block
, gnu_handlers
);
3559 gnu_result
= gnu_inner_block
;
3561 /* Now close our outer block, if we had to make one. */
3562 if (binding_for_block
)
3564 add_stmt (gnu_result
);
3566 gnu_result
= end_stmt_group ();
3572 /* Subroutine of gnat_to_gnu to translate gnat_node, an N_Exception_Handler,
3573 to a GCC tree, which is returned. This is the variant for Setjmp_Longjmp
3574 exception handling. */
3577 Exception_Handler_to_gnu_sjlj (Node_Id gnat_node
)
3579 /* Unless this is "Others" or the special "Non-Ada" exception for Ada, make
3580 an "if" statement to select the proper exceptions. For "Others", exclude
3581 exceptions where Handled_By_Others is nonzero unless the All_Others flag
3582 is set. For "Non-ada", accept an exception if "Lang" is 'V'. */
3583 tree gnu_choice
= integer_zero_node
;
3584 tree gnu_body
= build_stmt_group (Statements (gnat_node
), false);
3587 for (gnat_temp
= First (Exception_Choices (gnat_node
));
3588 gnat_temp
; gnat_temp
= Next (gnat_temp
))
3592 if (Nkind (gnat_temp
) == N_Others_Choice
)
3594 if (All_Others (gnat_temp
))
3595 this_choice
= integer_one_node
;
3599 (EQ_EXPR
, boolean_type_node
,
3604 (INDIRECT_REF
, NULL_TREE
,
3605 VEC_last (tree
, gnu_except_ptr_stack
)),
3606 get_identifier ("not_handled_by_others"), NULL_TREE
,
3611 else if (Nkind (gnat_temp
) == N_Identifier
3612 || Nkind (gnat_temp
) == N_Expanded_Name
)
3614 Entity_Id gnat_ex_id
= Entity (gnat_temp
);
3617 /* Exception may be a renaming. Recover original exception which is
3618 the one elaborated and registered. */
3619 if (Present (Renamed_Object (gnat_ex_id
)))
3620 gnat_ex_id
= Renamed_Object (gnat_ex_id
);
3622 gnu_expr
= gnat_to_gnu_entity (gnat_ex_id
, NULL_TREE
, 0);
3626 (EQ_EXPR
, boolean_type_node
,
3627 VEC_last (tree
, gnu_except_ptr_stack
),
3628 convert (TREE_TYPE (VEC_last (tree
, gnu_except_ptr_stack
)),
3629 build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_expr
)));
3631 /* If this is the distinguished exception "Non_Ada_Error" (and we are
3632 in VMS mode), also allow a non-Ada exception (a VMS condition) t
3634 if (Is_Non_Ada_Error (Entity (gnat_temp
)))
3637 = build_component_ref
3638 (build_unary_op (INDIRECT_REF
, NULL_TREE
,
3639 VEC_last (tree
, gnu_except_ptr_stack
)),
3640 get_identifier ("lang"), NULL_TREE
, false);
3644 (TRUTH_ORIF_EXPR
, boolean_type_node
,
3645 build_binary_op (EQ_EXPR
, boolean_type_node
, gnu_comp
,
3646 build_int_cst (TREE_TYPE (gnu_comp
), 'V')),
3653 gnu_choice
= build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
,
3654 gnu_choice
, this_choice
);
3657 return build3 (COND_EXPR
, void_type_node
, gnu_choice
, gnu_body
, NULL_TREE
);
3660 /* Subroutine of gnat_to_gnu to translate gnat_node, an N_Exception_Handler,
3661 to a GCC tree, which is returned. This is the variant for ZCX. */
3664 Exception_Handler_to_gnu_zcx (Node_Id gnat_node
)
3666 tree gnu_etypes_list
= NULL_TREE
;
3669 tree gnu_current_exc_ptr
;
3670 tree gnu_incoming_exc_ptr
;
3673 /* We build a TREE_LIST of nodes representing what exception types this
3674 handler can catch, with special cases for others and all others cases.
3676 Each exception type is actually identified by a pointer to the exception
3677 id, or to a dummy object for "others" and "all others". */
3678 for (gnat_temp
= First (Exception_Choices (gnat_node
));
3679 gnat_temp
; gnat_temp
= Next (gnat_temp
))
3681 if (Nkind (gnat_temp
) == N_Others_Choice
)
3684 = All_Others (gnat_temp
) ? all_others_decl
: others_decl
;
3687 = build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_expr
);
3689 else if (Nkind (gnat_temp
) == N_Identifier
3690 || Nkind (gnat_temp
) == N_Expanded_Name
)
3692 Entity_Id gnat_ex_id
= Entity (gnat_temp
);
3694 /* Exception may be a renaming. Recover original exception which is
3695 the one elaborated and registered. */
3696 if (Present (Renamed_Object (gnat_ex_id
)))
3697 gnat_ex_id
= Renamed_Object (gnat_ex_id
);
3699 gnu_expr
= gnat_to_gnu_entity (gnat_ex_id
, NULL_TREE
, 0);
3700 gnu_etype
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_expr
);
3702 /* The Non_Ada_Error case for VMS exceptions is handled
3703 by the personality routine. */
3708 /* The GCC interface expects NULL to be passed for catch all handlers, so
3709 it would be quite tempting to set gnu_etypes_list to NULL if gnu_etype
3710 is integer_zero_node. It would not work, however, because GCC's
3711 notion of "catch all" is stronger than our notion of "others". Until
3712 we correctly use the cleanup interface as well, doing that would
3713 prevent the "all others" handlers from being seen, because nothing
3714 can be caught beyond a catch all from GCC's point of view. */
3715 gnu_etypes_list
= tree_cons (NULL_TREE
, gnu_etype
, gnu_etypes_list
);
3718 start_stmt_group ();
3721 /* Expand a call to the begin_handler hook at the beginning of the handler,
3722 and arrange for a call to the end_handler hook to occur on every possible
3725 The hooks expect a pointer to the low level occurrence. This is required
3726 for our stack management scheme because a raise inside the handler pushes
3727 a new occurrence on top of the stack, which means that this top does not
3728 necessarily match the occurrence this handler was dealing with.
3730 __builtin_eh_pointer references the exception occurrence being
3731 propagated. Upon handler entry, this is the exception for which the
3732 handler is triggered. This might not be the case upon handler exit,
3733 however, as we might have a new occurrence propagated by the handler's
3734 body, and the end_handler hook called as a cleanup in this context.
3736 We use a local variable to retrieve the incoming value at handler entry
3737 time, and reuse it to feed the end_handler hook's argument at exit. */
3740 = build_call_expr (built_in_decls
[BUILT_IN_EH_POINTER
],
3741 1, integer_zero_node
);
3742 gnu_incoming_exc_ptr
= create_var_decl (get_identifier ("EXPTR"), NULL_TREE
,
3743 ptr_type_node
, gnu_current_exc_ptr
,
3744 false, false, false, false,
3747 add_stmt_with_node (build_call_1_expr (begin_handler_decl
,
3748 gnu_incoming_exc_ptr
),
3750 /* ??? We don't seem to have an End_Label at hand to set the location. */
3751 add_cleanup (build_call_1_expr (end_handler_decl
, gnu_incoming_exc_ptr
),
3753 add_stmt_list (Statements (gnat_node
));
3756 return build2 (CATCH_EXPR
, void_type_node
, gnu_etypes_list
,
3760 /* Subroutine of gnat_to_gnu to generate code for an N_Compilation unit. */
3763 Compilation_Unit_to_gnu (Node_Id gnat_node
)
3765 const Node_Id gnat_unit
= Unit (gnat_node
);
3766 const bool body_p
= (Nkind (gnat_unit
) == N_Package_Body
3767 || Nkind (gnat_unit
) == N_Subprogram_Body
);
3768 const Entity_Id gnat_unit_entity
= Defining_Entity (gnat_unit
);
3769 /* Make the decl for the elaboration procedure. */
3770 tree gnu_elab_proc_decl
3771 = create_subprog_decl
3772 (create_concat_name (gnat_unit_entity
, body_p
? "elabb" : "elabs"),
3773 NULL_TREE
, void_ftype
, NULL_TREE
, false, true, false, NULL
, gnat_unit
);
3774 struct elab_info
*info
;
3776 VEC_safe_push (tree
, gc
, gnu_elab_proc_stack
, gnu_elab_proc_decl
);
3777 DECL_ELABORATION_PROC_P (gnu_elab_proc_decl
) = 1;
3779 /* Initialize the information structure for the function. */
3780 allocate_struct_function (gnu_elab_proc_decl
, false);
3783 current_function_decl
= NULL_TREE
;
3785 start_stmt_group ();
3788 /* For a body, first process the spec if there is one. */
3789 if (Nkind (gnat_unit
) == N_Package_Body
3790 || (Nkind (gnat_unit
) == N_Subprogram_Body
&& !Acts_As_Spec (gnat_node
)))
3791 add_stmt (gnat_to_gnu (Library_Unit (gnat_node
)));
3793 if (type_annotate_only
&& gnat_node
== Cunit (Main_Unit
))
3795 elaborate_all_entities (gnat_node
);
3797 if (Nkind (gnat_unit
) == N_Subprogram_Declaration
3798 || Nkind (gnat_unit
) == N_Generic_Package_Declaration
3799 || Nkind (gnat_unit
) == N_Generic_Subprogram_Declaration
)
3803 process_decls (Declarations (Aux_Decls_Node (gnat_node
)), Empty
, Empty
,
3805 add_stmt (gnat_to_gnu (gnat_unit
));
3807 /* If we can inline, generate code for all the inlined subprograms. */
3810 Entity_Id gnat_entity
;
3812 for (gnat_entity
= First_Inlined_Subprogram (gnat_node
);
3813 Present (gnat_entity
);
3814 gnat_entity
= Next_Inlined_Subprogram (gnat_entity
))
3816 Node_Id gnat_body
= Parent (Declaration_Node (gnat_entity
));
3818 if (Nkind (gnat_body
) != N_Subprogram_Body
)
3820 /* ??? This really should always be present. */
3821 if (No (Corresponding_Body (gnat_body
)))
3824 = Parent (Declaration_Node (Corresponding_Body (gnat_body
)));
3827 if (Present (gnat_body
))
3829 /* Define the entity first so we set DECL_EXTERNAL. */
3830 gnat_to_gnu_entity (gnat_entity
, NULL_TREE
, 0);
3831 add_stmt (gnat_to_gnu (gnat_body
));
3836 /* Process any pragmas and actions following the unit. */
3837 add_stmt_list (Pragmas_After (Aux_Decls_Node (gnat_node
)));
3838 add_stmt_list (Actions (Aux_Decls_Node (gnat_node
)));
3839 finalize_from_with_types ();
3841 /* Save away what we've made so far and record this potential elaboration
3843 info
= ggc_alloc_elab_info ();
3844 set_current_block_context (gnu_elab_proc_decl
);
3846 DECL_SAVED_TREE (gnu_elab_proc_decl
) = end_stmt_group ();
3848 set_end_locus_from_node (gnu_elab_proc_decl
, gnat_unit
);
3850 info
->next
= elab_info_list
;
3851 info
->elab_proc
= gnu_elab_proc_decl
;
3852 info
->gnat_node
= gnat_node
;
3853 elab_info_list
= info
;
3855 /* Generate elaboration code for this unit, if necessary, and say whether
3857 VEC_pop (tree
, gnu_elab_proc_stack
);
3859 /* Invalidate the global renaming pointers. This is necessary because
3860 stabilization of the renamed entities may create SAVE_EXPRs which
3861 have been tied to a specific elaboration routine just above. */
3862 invalidate_global_renaming_pointers ();
3865 /* Return true if GNAT_NODE, an unchecked type conversion, is a no-op as far
3866 as gigi is concerned. This is used to avoid conversions on the LHS. */
3869 unchecked_conversion_nop (Node_Id gnat_node
)
3871 Entity_Id from_type
, to_type
;
3873 /* The conversion must be on the LHS of an assignment or an actual parameter
3874 of a call. Otherwise, even if the conversion was essentially a no-op, it
3875 could de facto ensure type consistency and this should be preserved. */
3876 if (!(Nkind (Parent (gnat_node
)) == N_Assignment_Statement
3877 && Name (Parent (gnat_node
)) == gnat_node
)
3878 && !((Nkind (Parent (gnat_node
)) == N_Procedure_Call_Statement
3879 || Nkind (Parent (gnat_node
)) == N_Function_Call
)
3880 && Name (Parent (gnat_node
)) != gnat_node
))
3883 from_type
= Etype (Expression (gnat_node
));
3885 /* We're interested in artificial conversions generated by the front-end
3886 to make private types explicit, e.g. in Expand_Assign_Array. */
3887 if (!Is_Private_Type (from_type
))
3890 from_type
= Underlying_Type (from_type
);
3891 to_type
= Etype (gnat_node
);
3893 /* The direct conversion to the underlying type is a no-op. */
3894 if (to_type
== from_type
)
3897 /* For an array subtype, the conversion to the PAT is a no-op. */
3898 if (Ekind (from_type
) == E_Array_Subtype
3899 && to_type
== Packed_Array_Type (from_type
))
3902 /* For a record subtype, the conversion to the type is a no-op. */
3903 if (Ekind (from_type
) == E_Record_Subtype
3904 && to_type
== Etype (from_type
))
3910 /* This function is the driver of the GNAT to GCC tree transformation process.
3911 It is the entry point of the tree transformer. GNAT_NODE is the root of
3912 some GNAT tree. Return the root of the corresponding GCC tree. If this
3913 is an expression, return the GCC equivalent of the expression. If this
3914 is a statement, return the statement or add it to the current statement
3915 group, in which case anything returned is to be interpreted as occurring
3916 after anything added. */
3919 gnat_to_gnu (Node_Id gnat_node
)
3921 const Node_Kind kind
= Nkind (gnat_node
);
3922 bool went_into_elab_proc
= false;
3923 tree gnu_result
= error_mark_node
; /* Default to no value. */
3924 tree gnu_result_type
= void_type_node
;
3925 tree gnu_expr
, gnu_lhs
, gnu_rhs
;
3928 /* Save node number for error message and set location information. */
3929 error_gnat_node
= gnat_node
;
3930 Sloc_to_locus (Sloc (gnat_node
), &input_location
);
3932 /* If this node is a statement and we are only annotating types, return an
3933 empty statement list. */
3934 if (type_annotate_only
&& IN (kind
, N_Statement_Other_Than_Procedure_Call
))
3935 return alloc_stmt_list ();
3937 /* If this node is a non-static subexpression and we are only annotating
3938 types, make this into a NULL_EXPR. */
3939 if (type_annotate_only
3940 && IN (kind
, N_Subexpr
)
3941 && kind
!= N_Identifier
3942 && !Compile_Time_Known_Value (gnat_node
))
3943 return build1 (NULL_EXPR
, get_unpadded_type (Etype (gnat_node
)),
3944 build_call_raise (CE_Range_Check_Failed
, gnat_node
,
3945 N_Raise_Constraint_Error
));
3947 if ((IN (kind
, N_Statement_Other_Than_Procedure_Call
)
3948 && kind
!= N_Null_Statement
)
3949 || kind
== N_Procedure_Call_Statement
3951 || kind
== N_Implicit_Label_Declaration
3952 || kind
== N_Handled_Sequence_Of_Statements
3953 || (IN (kind
, N_Raise_xxx_Error
) && Ekind (Etype (gnat_node
)) == E_Void
))
3955 tree current_elab_proc
= get_elaboration_procedure ();
3957 /* If this is a statement and we are at top level, it must be part of
3958 the elaboration procedure, so mark us as being in that procedure. */
3959 if (!current_function_decl
)
3961 current_function_decl
= current_elab_proc
;
3962 went_into_elab_proc
= true;
3965 /* If we are in the elaboration procedure, check if we are violating a
3966 No_Elaboration_Code restriction by having a statement there. Don't
3967 check for a possible No_Elaboration_Code restriction violation on
3968 N_Handled_Sequence_Of_Statements, as we want to signal an error on
3969 every nested real statement instead. This also avoids triggering
3970 spurious errors on dummy (empty) sequences created by the front-end
3971 for package bodies in some cases. */
3972 if (current_function_decl
== current_elab_proc
3973 && kind
!= N_Handled_Sequence_Of_Statements
)
3974 Check_Elaboration_Code_Allowed (gnat_node
);
3979 /********************************/
3980 /* Chapter 2: Lexical Elements */
3981 /********************************/
3984 case N_Expanded_Name
:
3985 case N_Operator_Symbol
:
3986 case N_Defining_Identifier
:
3987 gnu_result
= Identifier_to_gnu (gnat_node
, &gnu_result_type
);
3990 case N_Integer_Literal
:
3994 /* Get the type of the result, looking inside any padding and
3995 justified modular types. Then get the value in that type. */
3996 gnu_type
= gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
3998 if (TREE_CODE (gnu_type
) == RECORD_TYPE
3999 && TYPE_JUSTIFIED_MODULAR_P (gnu_type
))
4000 gnu_type
= TREE_TYPE (TYPE_FIELDS (gnu_type
));
4002 gnu_result
= UI_To_gnu (Intval (gnat_node
), gnu_type
);
4004 /* If the result overflows (meaning it doesn't fit in its base type),
4005 abort. We would like to check that the value is within the range
4006 of the subtype, but that causes problems with subtypes whose usage
4007 will raise Constraint_Error and with biased representation, so
4009 gcc_assert (!TREE_OVERFLOW (gnu_result
));
4013 case N_Character_Literal
:
4014 /* If a Entity is present, it means that this was one of the
4015 literals in a user-defined character type. In that case,
4016 just return the value in the CONST_DECL. Otherwise, use the
4017 character code. In that case, the base type should be an
4018 INTEGER_TYPE, but we won't bother checking for that. */
4019 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4020 if (Present (Entity (gnat_node
)))
4021 gnu_result
= DECL_INITIAL (get_gnu_tree (Entity (gnat_node
)));
4024 = build_int_cst_type
4025 (gnu_result_type
, UI_To_CC (Char_Literal_Value (gnat_node
)));
4028 case N_Real_Literal
:
4029 /* If this is of a fixed-point type, the value we want is the
4030 value of the corresponding integer. */
4031 if (IN (Ekind (Underlying_Type (Etype (gnat_node
))), Fixed_Point_Kind
))
4033 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4034 gnu_result
= UI_To_gnu (Corresponding_Integer_Value (gnat_node
),
4036 gcc_assert (!TREE_OVERFLOW (gnu_result
));
4039 /* We should never see a Vax_Float type literal, since the front end
4040 is supposed to transform these using appropriate conversions. */
4041 else if (Vax_Float (Underlying_Type (Etype (gnat_node
))))
4046 Ureal ur_realval
= Realval (gnat_node
);
4048 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4050 /* If the real value is zero, so is the result. Otherwise,
4051 convert it to a machine number if it isn't already. That
4052 forces BASE to 0 or 2 and simplifies the rest of our logic. */
4053 if (UR_Is_Zero (ur_realval
))
4054 gnu_result
= convert (gnu_result_type
, integer_zero_node
);
4057 if (!Is_Machine_Number (gnat_node
))
4059 = Machine (Base_Type (Underlying_Type (Etype (gnat_node
))),
4060 ur_realval
, Round_Even
, gnat_node
);
4063 = UI_To_gnu (Numerator (ur_realval
), gnu_result_type
);
4065 /* If we have a base of zero, divide by the denominator.
4066 Otherwise, the base must be 2 and we scale the value, which
4067 we know can fit in the mantissa of the type (hence the use
4068 of that type above). */
4069 if (No (Rbase (ur_realval
)))
4071 = build_binary_op (RDIV_EXPR
,
4072 get_base_type (gnu_result_type
),
4074 UI_To_gnu (Denominator (ur_realval
),
4078 REAL_VALUE_TYPE tmp
;
4080 gcc_assert (Rbase (ur_realval
) == 2);
4081 real_ldexp (&tmp
, &TREE_REAL_CST (gnu_result
),
4082 - UI_To_Int (Denominator (ur_realval
)));
4083 gnu_result
= build_real (gnu_result_type
, tmp
);
4087 /* Now see if we need to negate the result. Do it this way to
4088 properly handle -0. */
4089 if (UR_Is_Negative (Realval (gnat_node
)))
4091 = build_unary_op (NEGATE_EXPR
, get_base_type (gnu_result_type
),
4097 case N_String_Literal
:
4098 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4099 if (TYPE_PRECISION (TREE_TYPE (gnu_result_type
)) == HOST_BITS_PER_CHAR
)
4101 String_Id gnat_string
= Strval (gnat_node
);
4102 int length
= String_Length (gnat_string
);
4105 if (length
>= ALLOCA_THRESHOLD
)
4106 string
= XNEWVEC (char, length
+ 1);
4108 string
= (char *) alloca (length
+ 1);
4110 /* Build the string with the characters in the literal. Note
4111 that Ada strings are 1-origin. */
4112 for (i
= 0; i
< length
; i
++)
4113 string
[i
] = Get_String_Char (gnat_string
, i
+ 1);
4115 /* Put a null at the end of the string in case it's in a context
4116 where GCC will want to treat it as a C string. */
4119 gnu_result
= build_string (length
, string
);
4121 /* Strings in GCC don't normally have types, but we want
4122 this to not be converted to the array type. */
4123 TREE_TYPE (gnu_result
) = gnu_result_type
;
4125 if (length
>= ALLOCA_THRESHOLD
)
4130 /* Build a list consisting of each character, then make
4132 String_Id gnat_string
= Strval (gnat_node
);
4133 int length
= String_Length (gnat_string
);
4135 tree gnu_idx
= TYPE_MIN_VALUE (TYPE_DOMAIN (gnu_result_type
));
4136 VEC(constructor_elt
,gc
) *gnu_vec
4137 = VEC_alloc (constructor_elt
, gc
, length
);
4139 for (i
= 0; i
< length
; i
++)
4141 tree t
= build_int_cst (TREE_TYPE (gnu_result_type
),
4142 Get_String_Char (gnat_string
, i
+ 1));
4144 CONSTRUCTOR_APPEND_ELT (gnu_vec
, gnu_idx
, t
);
4145 gnu_idx
= int_const_binop (PLUS_EXPR
, gnu_idx
, integer_one_node
,
4149 gnu_result
= gnat_build_constructor (gnu_result_type
, gnu_vec
);
4154 gnu_result
= Pragma_to_gnu (gnat_node
);
4157 /**************************************/
4158 /* Chapter 3: Declarations and Types */
4159 /**************************************/
4161 case N_Subtype_Declaration
:
4162 case N_Full_Type_Declaration
:
4163 case N_Incomplete_Type_Declaration
:
4164 case N_Private_Type_Declaration
:
4165 case N_Private_Extension_Declaration
:
4166 case N_Task_Type_Declaration
:
4167 process_type (Defining_Entity (gnat_node
));
4168 gnu_result
= alloc_stmt_list ();
4171 case N_Object_Declaration
:
4172 case N_Exception_Declaration
:
4173 gnat_temp
= Defining_Entity (gnat_node
);
4174 gnu_result
= alloc_stmt_list ();
4176 /* If we are just annotating types and this object has an unconstrained
4177 or task type, don't elaborate it. */
4178 if (type_annotate_only
4179 && (((Is_Array_Type (Etype (gnat_temp
))
4180 || Is_Record_Type (Etype (gnat_temp
)))
4181 && !Is_Constrained (Etype (gnat_temp
)))
4182 || Is_Concurrent_Type (Etype (gnat_temp
))))
4185 if (Present (Expression (gnat_node
))
4186 && !(kind
== N_Object_Declaration
&& No_Initialization (gnat_node
))
4187 && (!type_annotate_only
4188 || Compile_Time_Known_Value (Expression (gnat_node
))))
4190 gnu_expr
= gnat_to_gnu (Expression (gnat_node
));
4191 if (Do_Range_Check (Expression (gnat_node
)))
4193 = emit_range_check (gnu_expr
, Etype (gnat_temp
), gnat_node
);
4195 /* If this object has its elaboration delayed, we must force
4196 evaluation of GNU_EXPR right now and save it for when the object
4198 if (Present (Freeze_Node (gnat_temp
)))
4200 if (TREE_CONSTANT (gnu_expr
))
4202 else if (global_bindings_p ())
4204 = create_var_decl (create_concat_name (gnat_temp
, "init"),
4205 NULL_TREE
, TREE_TYPE (gnu_expr
), gnu_expr
,
4206 false, false, false, false,
4209 gnu_expr
= gnat_save_expr (gnu_expr
);
4211 save_gnu_tree (gnat_node
, gnu_expr
, true);
4215 gnu_expr
= NULL_TREE
;
4217 if (type_annotate_only
&& gnu_expr
&& TREE_CODE (gnu_expr
) == ERROR_MARK
)
4218 gnu_expr
= NULL_TREE
;
4220 /* If this is a deferred constant with an address clause, we ignore the
4221 full view since the clause is on the partial view and we cannot have
4222 2 different GCC trees for the object. The only bits of the full view
4223 we will use is the initializer, but it will be directly fetched. */
4224 if (Ekind(gnat_temp
) == E_Constant
4225 && Present (Address_Clause (gnat_temp
))
4226 && Present (Full_View (gnat_temp
)))
4227 save_gnu_tree (Full_View (gnat_temp
), error_mark_node
, true);
4229 if (No (Freeze_Node (gnat_temp
)))
4230 gnat_to_gnu_entity (gnat_temp
, gnu_expr
, 1);
4233 case N_Object_Renaming_Declaration
:
4234 gnat_temp
= Defining_Entity (gnat_node
);
4236 /* Don't do anything if this renaming is handled by the front end or if
4237 we are just annotating types and this object has a composite or task
4238 type, don't elaborate it. We return the result in case it has any
4239 SAVE_EXPRs in it that need to be evaluated here. */
4240 if (!Is_Renaming_Of_Object (gnat_temp
)
4241 && ! (type_annotate_only
4242 && (Is_Array_Type (Etype (gnat_temp
))
4243 || Is_Record_Type (Etype (gnat_temp
))
4244 || Is_Concurrent_Type (Etype (gnat_temp
)))))
4246 = gnat_to_gnu_entity (gnat_temp
,
4247 gnat_to_gnu (Renamed_Object (gnat_temp
)), 1);
4249 gnu_result
= alloc_stmt_list ();
4252 case N_Implicit_Label_Declaration
:
4253 gnat_to_gnu_entity (Defining_Entity (gnat_node
), NULL_TREE
, 1);
4254 gnu_result
= alloc_stmt_list ();
4257 case N_Exception_Renaming_Declaration
:
4258 case N_Number_Declaration
:
4259 case N_Package_Renaming_Declaration
:
4260 case N_Subprogram_Renaming_Declaration
:
4261 /* These are fully handled in the front end. */
4262 gnu_result
= alloc_stmt_list ();
4265 /*************************************/
4266 /* Chapter 4: Names and Expressions */
4267 /*************************************/
4269 case N_Explicit_Dereference
:
4270 gnu_result
= gnat_to_gnu (Prefix (gnat_node
));
4271 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4272 gnu_result
= build_unary_op (INDIRECT_REF
, NULL_TREE
, gnu_result
);
4275 case N_Indexed_Component
:
4277 tree gnu_array_object
= gnat_to_gnu (Prefix (gnat_node
));
4281 Node_Id
*gnat_expr_array
;
4283 gnu_array_object
= maybe_implicit_deref (gnu_array_object
);
4285 /* Convert vector inputs to their representative array type, to fit
4286 what the code below expects. */
4287 gnu_array_object
= maybe_vector_array (gnu_array_object
);
4289 gnu_array_object
= maybe_unconstrained_array (gnu_array_object
);
4291 /* If we got a padded type, remove it too. */
4292 if (TYPE_IS_PADDING_P (TREE_TYPE (gnu_array_object
)))
4294 = convert (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (gnu_array_object
))),
4297 gnu_result
= gnu_array_object
;
4299 /* First compute the number of dimensions of the array, then
4300 fill the expression array, the order depending on whether
4301 this is a Convention_Fortran array or not. */
4302 for (ndim
= 1, gnu_type
= TREE_TYPE (gnu_array_object
);
4303 TREE_CODE (TREE_TYPE (gnu_type
)) == ARRAY_TYPE
4304 && TYPE_MULTI_ARRAY_P (TREE_TYPE (gnu_type
));
4305 ndim
++, gnu_type
= TREE_TYPE (gnu_type
))
4308 gnat_expr_array
= XALLOCAVEC (Node_Id
, ndim
);
4310 if (TYPE_CONVENTION_FORTRAN_P (TREE_TYPE (gnu_array_object
)))
4311 for (i
= ndim
- 1, gnat_temp
= First (Expressions (gnat_node
));
4313 i
--, gnat_temp
= Next (gnat_temp
))
4314 gnat_expr_array
[i
] = gnat_temp
;
4316 for (i
= 0, gnat_temp
= First (Expressions (gnat_node
));
4318 i
++, gnat_temp
= Next (gnat_temp
))
4319 gnat_expr_array
[i
] = gnat_temp
;
4321 for (i
= 0, gnu_type
= TREE_TYPE (gnu_array_object
);
4322 i
< ndim
; i
++, gnu_type
= TREE_TYPE (gnu_type
))
4324 gcc_assert (TREE_CODE (gnu_type
) == ARRAY_TYPE
);
4325 gnat_temp
= gnat_expr_array
[i
];
4326 gnu_expr
= gnat_to_gnu (gnat_temp
);
4328 if (Do_Range_Check (gnat_temp
))
4331 (gnu_array_object
, gnu_expr
,
4332 TYPE_MIN_VALUE (TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_type
))),
4333 TYPE_MAX_VALUE (TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_type
))),
4336 gnu_result
= build_binary_op (ARRAY_REF
, NULL_TREE
,
4337 gnu_result
, gnu_expr
);
4341 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4346 Node_Id gnat_range_node
= Discrete_Range (gnat_node
);
4349 gnu_result
= gnat_to_gnu (Prefix (gnat_node
));
4350 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4352 /* Do any implicit dereferences of the prefix and do any needed
4354 gnu_result
= maybe_implicit_deref (gnu_result
);
4355 gnu_result
= maybe_unconstrained_array (gnu_result
);
4356 gnu_type
= TREE_TYPE (gnu_result
);
4357 if (Do_Range_Check (gnat_range_node
))
4359 /* Get the bounds of the slice. */
4361 = TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_result_type
));
4362 tree gnu_min_expr
= TYPE_MIN_VALUE (gnu_index_type
);
4363 tree gnu_max_expr
= TYPE_MAX_VALUE (gnu_index_type
);
4364 /* Get the permitted bounds. */
4365 tree gnu_base_index_type
4366 = TYPE_INDEX_TYPE (TYPE_DOMAIN (gnu_type
));
4367 tree gnu_base_min_expr
= SUBSTITUTE_PLACEHOLDER_IN_EXPR
4368 (TYPE_MIN_VALUE (gnu_base_index_type
), gnu_result
);
4369 tree gnu_base_max_expr
= SUBSTITUTE_PLACEHOLDER_IN_EXPR
4370 (TYPE_MAX_VALUE (gnu_base_index_type
), gnu_result
);
4371 tree gnu_expr_l
, gnu_expr_h
, gnu_expr_type
;
4373 gnu_min_expr
= gnat_protect_expr (gnu_min_expr
);
4374 gnu_max_expr
= gnat_protect_expr (gnu_max_expr
);
4376 /* Derive a good type to convert everything to. */
4377 gnu_expr_type
= get_base_type (gnu_index_type
);
4379 /* Test whether the minimum slice value is too small. */
4380 gnu_expr_l
= build_binary_op (LT_EXPR
, boolean_type_node
,
4381 convert (gnu_expr_type
,
4383 convert (gnu_expr_type
,
4384 gnu_base_min_expr
));
4386 /* Test whether the maximum slice value is too large. */
4387 gnu_expr_h
= build_binary_op (GT_EXPR
, boolean_type_node
,
4388 convert (gnu_expr_type
,
4390 convert (gnu_expr_type
,
4391 gnu_base_max_expr
));
4393 /* Build a slice index check that returns the low bound,
4394 assuming the slice is not empty. */
4395 gnu_expr
= emit_check
4396 (build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
,
4397 gnu_expr_l
, gnu_expr_h
),
4398 gnu_min_expr
, CE_Index_Check_Failed
, gnat_node
);
4400 /* Build a conditional expression that does the index checks and
4401 returns the low bound if the slice is not empty (max >= min),
4402 and returns the naked low bound otherwise (max < min), unless
4403 it is non-constant and the high bound is; this prevents VRP
4404 from inferring bogus ranges on the unlikely path. */
4405 gnu_expr
= fold_build3 (COND_EXPR
, gnu_expr_type
,
4406 build_binary_op (GE_EXPR
, gnu_expr_type
,
4407 convert (gnu_expr_type
,
4409 convert (gnu_expr_type
,
4412 TREE_CODE (gnu_min_expr
) != INTEGER_CST
4413 && TREE_CODE (gnu_max_expr
) == INTEGER_CST
4414 ? gnu_max_expr
: gnu_min_expr
);
4417 /* Simply return the naked low bound. */
4418 gnu_expr
= TYPE_MIN_VALUE (TYPE_DOMAIN (gnu_result_type
));
4420 /* If this is a slice with non-constant size of an array with constant
4421 size, set the maximum size for the allocation of temporaries. */
4422 if (!TREE_CONSTANT (TYPE_SIZE_UNIT (gnu_result_type
))
4423 && TREE_CONSTANT (TYPE_SIZE_UNIT (gnu_type
)))
4424 TYPE_ARRAY_MAX_SIZE (gnu_result_type
) = TYPE_SIZE_UNIT (gnu_type
);
4426 gnu_result
= build_binary_op (ARRAY_RANGE_REF
, gnu_result_type
,
4427 gnu_result
, gnu_expr
);
4431 case N_Selected_Component
:
4433 tree gnu_prefix
= gnat_to_gnu (Prefix (gnat_node
));
4434 Entity_Id gnat_field
= Entity (Selector_Name (gnat_node
));
4435 Entity_Id gnat_pref_type
= Etype (Prefix (gnat_node
));
4438 while (IN (Ekind (gnat_pref_type
), Incomplete_Or_Private_Kind
)
4439 || IN (Ekind (gnat_pref_type
), Access_Kind
))
4441 if (IN (Ekind (gnat_pref_type
), Incomplete_Or_Private_Kind
))
4442 gnat_pref_type
= Underlying_Type (gnat_pref_type
);
4443 else if (IN (Ekind (gnat_pref_type
), Access_Kind
))
4444 gnat_pref_type
= Designated_Type (gnat_pref_type
);
4447 gnu_prefix
= maybe_implicit_deref (gnu_prefix
);
4449 /* For discriminant references in tagged types always substitute the
4450 corresponding discriminant as the actual selected component. */
4451 if (Is_Tagged_Type (gnat_pref_type
))
4452 while (Present (Corresponding_Discriminant (gnat_field
)))
4453 gnat_field
= Corresponding_Discriminant (gnat_field
);
4455 /* For discriminant references of untagged types always substitute the
4456 corresponding stored discriminant. */
4457 else if (Present (Corresponding_Discriminant (gnat_field
)))
4458 gnat_field
= Original_Record_Component (gnat_field
);
4460 /* Handle extracting the real or imaginary part of a complex.
4461 The real part is the first field and the imaginary the last. */
4462 if (TREE_CODE (TREE_TYPE (gnu_prefix
)) == COMPLEX_TYPE
)
4463 gnu_result
= build_unary_op (Present (Next_Entity (gnat_field
))
4464 ? REALPART_EXPR
: IMAGPART_EXPR
,
4465 NULL_TREE
, gnu_prefix
);
4468 gnu_field
= gnat_to_gnu_field_decl (gnat_field
);
4470 /* If there are discriminants, the prefix might be evaluated more
4471 than once, which is a problem if it has side-effects. */
4472 if (Has_Discriminants (Is_Access_Type (Etype (Prefix (gnat_node
)))
4473 ? Designated_Type (Etype
4474 (Prefix (gnat_node
)))
4475 : Etype (Prefix (gnat_node
))))
4476 gnu_prefix
= gnat_stabilize_reference (gnu_prefix
, false, NULL
);
4479 = build_component_ref (gnu_prefix
, NULL_TREE
, gnu_field
,
4480 (Nkind (Parent (gnat_node
))
4481 == N_Attribute_Reference
)
4482 && lvalue_required_for_attribute_p
4483 (Parent (gnat_node
)));
4486 gcc_assert (gnu_result
);
4487 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4491 case N_Attribute_Reference
:
4493 /* The attribute designator. */
4494 const int attr
= Get_Attribute_Id (Attribute_Name (gnat_node
));
4496 /* The Elab_Spec and Elab_Body attributes are special in that Prefix
4497 is a unit, not an object with a GCC equivalent. */
4498 if (attr
== Attr_Elab_Spec
|| attr
== Attr_Elab_Body
)
4500 create_subprog_decl (create_concat_name
4501 (Entity (Prefix (gnat_node
)),
4502 attr
== Attr_Elab_Body
? "elabb" : "elabs"),
4503 NULL_TREE
, void_ftype
, NULL_TREE
, false,
4504 true, true, NULL
, gnat_node
);
4506 gnu_result
= Attribute_to_gnu (gnat_node
, &gnu_result_type
, attr
);
4511 /* Like 'Access as far as we are concerned. */
4512 gnu_result
= gnat_to_gnu (Prefix (gnat_node
));
4513 gnu_result
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_result
);
4514 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4518 case N_Extension_Aggregate
:
4522 /* ??? It is wrong to evaluate the type now, but there doesn't
4523 seem to be any other practical way of doing it. */
4525 gcc_assert (!Expansion_Delayed (gnat_node
));
4527 gnu_aggr_type
= gnu_result_type
4528 = get_unpadded_type (Etype (gnat_node
));
4530 if (TREE_CODE (gnu_result_type
) == RECORD_TYPE
4531 && TYPE_CONTAINS_TEMPLATE_P (gnu_result_type
))
4533 = TREE_TYPE (TREE_CHAIN (TYPE_FIELDS (gnu_result_type
)));
4534 else if (TREE_CODE (gnu_result_type
) == VECTOR_TYPE
)
4535 gnu_aggr_type
= TYPE_REPRESENTATIVE_ARRAY (gnu_result_type
);
4537 if (Null_Record_Present (gnat_node
))
4538 gnu_result
= gnat_build_constructor (gnu_aggr_type
, NULL
);
4540 else if (TREE_CODE (gnu_aggr_type
) == RECORD_TYPE
4541 || TREE_CODE (gnu_aggr_type
) == UNION_TYPE
)
4543 = assoc_to_constructor (Etype (gnat_node
),
4544 First (Component_Associations (gnat_node
)),
4546 else if (TREE_CODE (gnu_aggr_type
) == ARRAY_TYPE
)
4547 gnu_result
= pos_to_constructor (First (Expressions (gnat_node
)),
4549 Component_Type (Etype (gnat_node
)));
4550 else if (TREE_CODE (gnu_aggr_type
) == COMPLEX_TYPE
)
4553 (COMPLEX_EXPR
, gnu_aggr_type
,
4554 gnat_to_gnu (Expression (First
4555 (Component_Associations (gnat_node
)))),
4556 gnat_to_gnu (Expression
4558 (First (Component_Associations (gnat_node
))))));
4562 gnu_result
= convert (gnu_result_type
, gnu_result
);
4567 if (TARGET_VTABLE_USES_DESCRIPTORS
4568 && Ekind (Etype (gnat_node
)) == E_Access_Subprogram_Type
4569 && Is_Dispatch_Table_Entity (Etype (gnat_node
)))
4570 gnu_result
= null_fdesc_node
;
4572 gnu_result
= null_pointer_node
;
4573 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4576 case N_Type_Conversion
:
4577 case N_Qualified_Expression
:
4578 /* Get the operand expression. */
4579 gnu_result
= gnat_to_gnu (Expression (gnat_node
));
4580 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4583 = convert_with_check (Etype (gnat_node
), gnu_result
,
4584 Do_Overflow_Check (gnat_node
),
4585 Do_Range_Check (Expression (gnat_node
)),
4586 kind
== N_Type_Conversion
4587 && Float_Truncate (gnat_node
), gnat_node
);
4590 case N_Unchecked_Type_Conversion
:
4591 gnu_result
= gnat_to_gnu (Expression (gnat_node
));
4593 /* Skip further processing if the conversion is deemed a no-op. */
4594 if (unchecked_conversion_nop (gnat_node
))
4596 gnu_result_type
= TREE_TYPE (gnu_result
);
4600 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4602 /* If the result is a pointer type, see if we are improperly
4603 converting to a stricter alignment. */
4604 if (STRICT_ALIGNMENT
&& POINTER_TYPE_P (gnu_result_type
)
4605 && IN (Ekind (Etype (gnat_node
)), Access_Kind
))
4607 unsigned int align
= known_alignment (gnu_result
);
4608 tree gnu_obj_type
= TREE_TYPE (gnu_result_type
);
4609 unsigned int oalign
= TYPE_ALIGN (gnu_obj_type
);
4611 if (align
!= 0 && align
< oalign
&& !TYPE_ALIGN_OK (gnu_obj_type
))
4612 post_error_ne_tree_2
4613 ("?source alignment (^) '< alignment of & (^)",
4614 gnat_node
, Designated_Type (Etype (gnat_node
)),
4615 size_int (align
/ BITS_PER_UNIT
), oalign
/ BITS_PER_UNIT
);
4618 /* If we are converting a descriptor to a function pointer, first
4619 build the pointer. */
4620 if (TARGET_VTABLE_USES_DESCRIPTORS
4621 && TREE_TYPE (gnu_result
) == fdesc_type_node
4622 && POINTER_TYPE_P (gnu_result_type
))
4623 gnu_result
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_result
);
4625 gnu_result
= unchecked_convert (gnu_result_type
, gnu_result
,
4626 No_Truncation (gnat_node
));
4632 tree gnu_obj
= gnat_to_gnu (Left_Opnd (gnat_node
));
4633 Node_Id gnat_range
= Right_Opnd (gnat_node
);
4634 tree gnu_low
, gnu_high
;
4636 /* GNAT_RANGE is either an N_Range node or an identifier denoting a
4638 if (Nkind (gnat_range
) == N_Range
)
4640 gnu_low
= gnat_to_gnu (Low_Bound (gnat_range
));
4641 gnu_high
= gnat_to_gnu (High_Bound (gnat_range
));
4643 else if (Nkind (gnat_range
) == N_Identifier
4644 || Nkind (gnat_range
) == N_Expanded_Name
)
4646 tree gnu_range_type
= get_unpadded_type (Entity (gnat_range
));
4648 gnu_low
= TYPE_MIN_VALUE (gnu_range_type
);
4649 gnu_high
= TYPE_MAX_VALUE (gnu_range_type
);
4654 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4656 /* If LOW and HIGH are identical, perform an equality test. Otherwise,
4657 ensure that GNU_OBJ is evaluated only once and perform a full range
4659 if (operand_equal_p (gnu_low
, gnu_high
, 0))
4661 = build_binary_op (EQ_EXPR
, gnu_result_type
, gnu_obj
, gnu_low
);
4665 gnu_obj
= gnat_protect_expr (gnu_obj
);
4666 t1
= build_binary_op (GE_EXPR
, gnu_result_type
, gnu_obj
, gnu_low
);
4668 set_expr_location_from_node (t1
, gnat_node
);
4669 t2
= build_binary_op (LE_EXPR
, gnu_result_type
, gnu_obj
, gnu_high
);
4671 set_expr_location_from_node (t2
, gnat_node
);
4673 = build_binary_op (TRUTH_ANDIF_EXPR
, gnu_result_type
, t1
, t2
);
4676 if (kind
== N_Not_In
)
4678 = invert_truthvalue_loc (EXPR_LOCATION (gnu_result
), gnu_result
);
4683 gnu_lhs
= gnat_to_gnu (Left_Opnd (gnat_node
));
4684 gnu_rhs
= gnat_to_gnu (Right_Opnd (gnat_node
));
4685 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4686 gnu_result
= build_binary_op (FLOAT_TYPE_P (gnu_result_type
)
4688 : (Rounded_Result (gnat_node
)
4689 ? ROUND_DIV_EXPR
: TRUNC_DIV_EXPR
),
4690 gnu_result_type
, gnu_lhs
, gnu_rhs
);
4693 case N_Op_Or
: case N_Op_And
: case N_Op_Xor
:
4694 /* These can either be operations on booleans or on modular types.
4695 Fall through for boolean types since that's the way GNU_CODES is
4697 if (IN (Ekind (Underlying_Type (Etype (gnat_node
))),
4698 Modular_Integer_Kind
))
4701 = (kind
== N_Op_Or
? BIT_IOR_EXPR
4702 : kind
== N_Op_And
? BIT_AND_EXPR
4705 gnu_lhs
= gnat_to_gnu (Left_Opnd (gnat_node
));
4706 gnu_rhs
= gnat_to_gnu (Right_Opnd (gnat_node
));
4707 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4708 gnu_result
= build_binary_op (code
, gnu_result_type
,
4713 /* ... fall through ... */
4715 case N_Op_Eq
: case N_Op_Ne
: case N_Op_Lt
:
4716 case N_Op_Le
: case N_Op_Gt
: case N_Op_Ge
:
4717 case N_Op_Add
: case N_Op_Subtract
: case N_Op_Multiply
:
4718 case N_Op_Mod
: case N_Op_Rem
:
4719 case N_Op_Rotate_Left
:
4720 case N_Op_Rotate_Right
:
4721 case N_Op_Shift_Left
:
4722 case N_Op_Shift_Right
:
4723 case N_Op_Shift_Right_Arithmetic
:
4724 case N_And_Then
: case N_Or_Else
:
4726 enum tree_code code
= gnu_codes
[kind
];
4727 bool ignore_lhs_overflow
= false;
4728 location_t saved_location
= input_location
;
4731 gnu_lhs
= gnat_to_gnu (Left_Opnd (gnat_node
));
4732 gnu_rhs
= gnat_to_gnu (Right_Opnd (gnat_node
));
4733 gnu_type
= gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4735 /* Pending generic support for efficient vector logical operations in
4736 GCC, convert vectors to their representative array type view and
4738 gnu_lhs
= maybe_vector_array (gnu_lhs
);
4739 gnu_rhs
= maybe_vector_array (gnu_rhs
);
4741 /* If this is a comparison operator, convert any references to
4742 an unconstrained array value into a reference to the
4744 if (TREE_CODE_CLASS (code
) == tcc_comparison
)
4746 gnu_lhs
= maybe_unconstrained_array (gnu_lhs
);
4747 gnu_rhs
= maybe_unconstrained_array (gnu_rhs
);
4750 /* If the result type is a private type, its full view may be a
4751 numeric subtype. The representation we need is that of its base
4752 type, given that it is the result of an arithmetic operation. */
4753 else if (Is_Private_Type (Etype (gnat_node
)))
4754 gnu_type
= gnu_result_type
4755 = get_unpadded_type (Base_Type (Full_View (Etype (gnat_node
))));
4757 /* If this is a shift whose count is not guaranteed to be correct,
4758 we need to adjust the shift count. */
4759 if (IN (kind
, N_Op_Shift
) && !Shift_Count_OK (gnat_node
))
4761 tree gnu_count_type
= get_base_type (TREE_TYPE (gnu_rhs
));
4763 = convert (gnu_count_type
, TYPE_SIZE (gnu_type
));
4765 if (kind
== N_Op_Rotate_Left
|| kind
== N_Op_Rotate_Right
)
4766 gnu_rhs
= build_binary_op (TRUNC_MOD_EXPR
, gnu_count_type
,
4767 gnu_rhs
, gnu_max_shift
);
4768 else if (kind
== N_Op_Shift_Right_Arithmetic
)
4771 (MIN_EXPR
, gnu_count_type
,
4772 build_binary_op (MINUS_EXPR
,
4775 convert (gnu_count_type
,
4780 /* For right shifts, the type says what kind of shift to do,
4781 so we may need to choose a different type. In this case,
4782 we have to ignore integer overflow lest it propagates all
4783 the way down and causes a CE to be explicitly raised. */
4784 if (kind
== N_Op_Shift_Right
&& !TYPE_UNSIGNED (gnu_type
))
4786 gnu_type
= gnat_unsigned_type (gnu_type
);
4787 ignore_lhs_overflow
= true;
4789 else if (kind
== N_Op_Shift_Right_Arithmetic
4790 && TYPE_UNSIGNED (gnu_type
))
4792 gnu_type
= gnat_signed_type (gnu_type
);
4793 ignore_lhs_overflow
= true;
4796 if (gnu_type
!= gnu_result_type
)
4798 tree gnu_old_lhs
= gnu_lhs
;
4799 gnu_lhs
= convert (gnu_type
, gnu_lhs
);
4800 if (TREE_CODE (gnu_lhs
) == INTEGER_CST
&& ignore_lhs_overflow
)
4801 TREE_OVERFLOW (gnu_lhs
) = TREE_OVERFLOW (gnu_old_lhs
);
4802 gnu_rhs
= convert (gnu_type
, gnu_rhs
);
4805 /* Instead of expanding overflow checks for addition, subtraction
4806 and multiplication itself, the front end will leave this to
4807 the back end when Backend_Overflow_Checks_On_Target is set.
4808 As the GCC back end itself does not know yet how to properly
4809 do overflow checking, do it here. The goal is to push
4810 the expansions further into the back end over time. */
4811 if (Do_Overflow_Check (gnat_node
) && Backend_Overflow_Checks_On_Target
4812 && (kind
== N_Op_Add
4813 || kind
== N_Op_Subtract
4814 || kind
== N_Op_Multiply
)
4815 && !TYPE_UNSIGNED (gnu_type
)
4816 && !FLOAT_TYPE_P (gnu_type
))
4817 gnu_result
= build_binary_op_trapv (code
, gnu_type
,
4818 gnu_lhs
, gnu_rhs
, gnat_node
);
4821 /* Some operations, e.g. comparisons of arrays, generate complex
4822 trees that need to be annotated while they are being built. */
4823 input_location
= saved_location
;
4824 gnu_result
= build_binary_op (code
, gnu_type
, gnu_lhs
, gnu_rhs
);
4827 /* If this is a logical shift with the shift count not verified,
4828 we must return zero if it is too large. We cannot compensate
4829 above in this case. */
4830 if ((kind
== N_Op_Shift_Left
|| kind
== N_Op_Shift_Right
)
4831 && !Shift_Count_OK (gnat_node
))
4835 build_binary_op (GE_EXPR
, boolean_type_node
,
4837 convert (TREE_TYPE (gnu_rhs
),
4838 TYPE_SIZE (gnu_type
))),
4839 convert (gnu_type
, integer_zero_node
),
4844 case N_Conditional_Expression
:
4846 tree gnu_cond
= gnat_to_gnu (First (Expressions (gnat_node
)));
4847 tree gnu_true
= gnat_to_gnu (Next (First (Expressions (gnat_node
))));
4849 = gnat_to_gnu (Next (Next (First (Expressions (gnat_node
)))));
4851 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4853 = build_cond_expr (gnu_result_type
, gnu_cond
, gnu_true
, gnu_false
);
4858 gnu_result
= gnat_to_gnu (Right_Opnd (gnat_node
));
4859 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4863 /* This case can apply to a boolean or a modular type.
4864 Fall through for a boolean operand since GNU_CODES is set
4865 up to handle this. */
4866 if (Is_Modular_Integer_Type (Etype (gnat_node
))
4867 || (Ekind (Etype (gnat_node
)) == E_Private_Type
4868 && Is_Modular_Integer_Type (Full_View (Etype (gnat_node
)))))
4870 gnu_expr
= gnat_to_gnu (Right_Opnd (gnat_node
));
4871 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4872 gnu_result
= build_unary_op (BIT_NOT_EXPR
, gnu_result_type
,
4877 /* ... fall through ... */
4879 case N_Op_Minus
: case N_Op_Abs
:
4880 gnu_expr
= gnat_to_gnu (Right_Opnd (gnat_node
));
4882 if (Ekind (Etype (gnat_node
)) != E_Private_Type
)
4883 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4885 gnu_result_type
= get_unpadded_type (Base_Type
4886 (Full_View (Etype (gnat_node
))));
4888 if (Do_Overflow_Check (gnat_node
)
4889 && !TYPE_UNSIGNED (gnu_result_type
)
4890 && !FLOAT_TYPE_P (gnu_result_type
))
4892 = build_unary_op_trapv (gnu_codes
[kind
],
4893 gnu_result_type
, gnu_expr
, gnat_node
);
4895 gnu_result
= build_unary_op (gnu_codes
[kind
],
4896 gnu_result_type
, gnu_expr
);
4903 bool ignore_init_type
= false;
4905 gnat_temp
= Expression (gnat_node
);
4907 /* The Expression operand can either be an N_Identifier or
4908 Expanded_Name, which must represent a type, or a
4909 N_Qualified_Expression, which contains both the object type and an
4910 initial value for the object. */
4911 if (Nkind (gnat_temp
) == N_Identifier
4912 || Nkind (gnat_temp
) == N_Expanded_Name
)
4913 gnu_type
= gnat_to_gnu_type (Entity (gnat_temp
));
4914 else if (Nkind (gnat_temp
) == N_Qualified_Expression
)
4916 Entity_Id gnat_desig_type
4917 = Designated_Type (Underlying_Type (Etype (gnat_node
)));
4919 ignore_init_type
= Has_Constrained_Partial_View (gnat_desig_type
);
4920 gnu_init
= gnat_to_gnu (Expression (gnat_temp
));
4922 gnu_init
= maybe_unconstrained_array (gnu_init
);
4923 if (Do_Range_Check (Expression (gnat_temp
)))
4925 = emit_range_check (gnu_init
, gnat_desig_type
, gnat_temp
);
4927 if (Is_Elementary_Type (gnat_desig_type
)
4928 || Is_Constrained (gnat_desig_type
))
4930 gnu_type
= gnat_to_gnu_type (gnat_desig_type
);
4931 gnu_init
= convert (gnu_type
, gnu_init
);
4935 gnu_type
= gnat_to_gnu_type (Etype (Expression (gnat_temp
)));
4936 if (TREE_CODE (gnu_type
) == UNCONSTRAINED_ARRAY_TYPE
)
4937 gnu_type
= TREE_TYPE (gnu_init
);
4939 gnu_init
= convert (gnu_type
, gnu_init
);
4945 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
4946 return build_allocator (gnu_type
, gnu_init
, gnu_result_type
,
4947 Procedure_To_Call (gnat_node
),
4948 Storage_Pool (gnat_node
), gnat_node
,
4953 /**************************/
4954 /* Chapter 5: Statements */
4955 /**************************/
4958 gnu_result
= build1 (LABEL_EXPR
, void_type_node
,
4959 gnat_to_gnu (Identifier (gnat_node
)));
4962 case N_Null_Statement
:
4963 /* When not optimizing, turn null statements from source into gotos to
4964 the next statement that the middle-end knows how to preserve. */
4965 if (!optimize
&& Comes_From_Source (gnat_node
))
4967 tree stmt
, label
= create_label_decl (NULL_TREE
);
4968 start_stmt_group ();
4969 stmt
= build1 (GOTO_EXPR
, void_type_node
, label
);
4970 set_expr_location_from_node (stmt
, gnat_node
);
4972 stmt
= build1 (LABEL_EXPR
, void_type_node
, label
);
4973 set_expr_location_from_node (stmt
, gnat_node
);
4975 gnu_result
= end_stmt_group ();
4978 gnu_result
= alloc_stmt_list ();
4981 case N_Assignment_Statement
:
4982 /* Get the LHS and RHS of the statement and convert any reference to an
4983 unconstrained array into a reference to the underlying array. */
4984 gnu_lhs
= maybe_unconstrained_array (gnat_to_gnu (Name (gnat_node
)));
4986 /* If the type has a size that overflows, convert this into raise of
4987 Storage_Error: execution shouldn't have gotten here anyway. */
4988 if (TREE_CODE (TYPE_SIZE_UNIT (TREE_TYPE (gnu_lhs
))) == INTEGER_CST
4989 && TREE_OVERFLOW (TYPE_SIZE_UNIT (TREE_TYPE (gnu_lhs
))))
4990 gnu_result
= build_call_raise (SE_Object_Too_Large
, gnat_node
,
4991 N_Raise_Storage_Error
);
4992 else if (Nkind (Expression (gnat_node
)) == N_Function_Call
)
4994 = call_to_gnu (Expression (gnat_node
), &gnu_result_type
, gnu_lhs
);
4998 = maybe_unconstrained_array (gnat_to_gnu (Expression (gnat_node
)));
5000 /* If range check is needed, emit code to generate it. */
5001 if (Do_Range_Check (Expression (gnat_node
)))
5002 gnu_rhs
= emit_range_check (gnu_rhs
, Etype (Name (gnat_node
)),
5006 = build_binary_op (MODIFY_EXPR
, NULL_TREE
, gnu_lhs
, gnu_rhs
);
5008 /* If the type being assigned is an array type and the two sides are
5009 not completely disjoint, play safe and use memmove. But don't do
5010 it for a bit-packed array as it might not be byte-aligned. */
5011 if (TREE_CODE (gnu_result
) == MODIFY_EXPR
5012 && Is_Array_Type (Etype (Name (gnat_node
)))
5013 && !Is_Bit_Packed_Array (Etype (Name (gnat_node
)))
5014 && !(Forwards_OK (gnat_node
) && Backwards_OK (gnat_node
)))
5016 tree to
, from
, size
, to_ptr
, from_ptr
, t
;
5018 to
= TREE_OPERAND (gnu_result
, 0);
5019 from
= TREE_OPERAND (gnu_result
, 1);
5021 size
= TYPE_SIZE_UNIT (TREE_TYPE (from
));
5022 size
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (size
, from
);
5024 to_ptr
= build_fold_addr_expr (to
);
5025 from_ptr
= build_fold_addr_expr (from
);
5027 t
= implicit_built_in_decls
[BUILT_IN_MEMMOVE
];
5028 gnu_result
= build_call_expr (t
, 3, to_ptr
, from_ptr
, size
);
5033 case N_If_Statement
:
5035 tree
*gnu_else_ptr
; /* Point to put next "else if" or "else". */
5037 /* Make the outer COND_EXPR. Avoid non-determinism. */
5038 gnu_result
= build3 (COND_EXPR
, void_type_node
,
5039 gnat_to_gnu (Condition (gnat_node
)),
5040 NULL_TREE
, NULL_TREE
);
5041 COND_EXPR_THEN (gnu_result
)
5042 = build_stmt_group (Then_Statements (gnat_node
), false);
5043 TREE_SIDE_EFFECTS (gnu_result
) = 1;
5044 gnu_else_ptr
= &COND_EXPR_ELSE (gnu_result
);
5046 /* Now make a COND_EXPR for each of the "else if" parts. Put each
5047 into the previous "else" part and point to where to put any
5048 outer "else". Also avoid non-determinism. */
5049 if (Present (Elsif_Parts (gnat_node
)))
5050 for (gnat_temp
= First (Elsif_Parts (gnat_node
));
5051 Present (gnat_temp
); gnat_temp
= Next (gnat_temp
))
5053 gnu_expr
= build3 (COND_EXPR
, void_type_node
,
5054 gnat_to_gnu (Condition (gnat_temp
)),
5055 NULL_TREE
, NULL_TREE
);
5056 COND_EXPR_THEN (gnu_expr
)
5057 = build_stmt_group (Then_Statements (gnat_temp
), false);
5058 TREE_SIDE_EFFECTS (gnu_expr
) = 1;
5059 set_expr_location_from_node (gnu_expr
, gnat_temp
);
5060 *gnu_else_ptr
= gnu_expr
;
5061 gnu_else_ptr
= &COND_EXPR_ELSE (gnu_expr
);
5064 *gnu_else_ptr
= build_stmt_group (Else_Statements (gnat_node
), false);
5068 case N_Case_Statement
:
5069 gnu_result
= Case_Statement_to_gnu (gnat_node
);
5072 case N_Loop_Statement
:
5073 gnu_result
= Loop_Statement_to_gnu (gnat_node
);
5076 case N_Block_Statement
:
5077 start_stmt_group ();
5079 process_decls (Declarations (gnat_node
), Empty
, Empty
, true, true);
5080 add_stmt (gnat_to_gnu (Handled_Statement_Sequence (gnat_node
)));
5082 gnu_result
= end_stmt_group ();
5084 if (Present (Identifier (gnat_node
)))
5085 mark_out_of_scope (Entity (Identifier (gnat_node
)));
5088 case N_Exit_Statement
:
5090 = build2 (EXIT_STMT
, void_type_node
,
5091 (Present (Condition (gnat_node
))
5092 ? gnat_to_gnu (Condition (gnat_node
)) : NULL_TREE
),
5093 (Present (Name (gnat_node
))
5094 ? get_gnu_tree (Entity (Name (gnat_node
)))
5095 : VEC_last (tree
, gnu_loop_label_stack
)));
5098 case N_Return_Statement
:
5100 tree gnu_ret_val
, gnu_ret_obj
;
5102 /* If the subprogram is a function, we must return the expression. */
5103 if (Present (Expression (gnat_node
)))
5105 tree gnu_subprog_type
= TREE_TYPE (current_function_decl
);
5106 tree gnu_ret_type
= TREE_TYPE (gnu_subprog_type
);
5107 tree gnu_result_decl
= DECL_RESULT (current_function_decl
);
5108 gnu_ret_val
= gnat_to_gnu (Expression (gnat_node
));
5110 /* If this function has copy-in/copy-out parameters, get the real
5111 variable and type for the return. See Subprogram_to_gnu. */
5112 if (TYPE_CI_CO_LIST (gnu_subprog_type
))
5114 gnu_result_decl
= VEC_last (tree
, gnu_return_var_stack
);
5115 gnu_ret_type
= TREE_TYPE (gnu_result_decl
);
5118 /* Do not remove the padding from GNU_RET_VAL if the inner type is
5119 self-referential since we want to allocate the fixed size. */
5120 if (TREE_CODE (gnu_ret_val
) == COMPONENT_REF
5121 && TYPE_IS_PADDING_P
5122 (TREE_TYPE (TREE_OPERAND (gnu_ret_val
, 0)))
5123 && CONTAINS_PLACEHOLDER_P
5124 (TYPE_SIZE (TREE_TYPE (gnu_ret_val
))))
5125 gnu_ret_val
= TREE_OPERAND (gnu_ret_val
, 0);
5127 /* If the subprogram returns by direct reference, return a pointer
5128 to the return value. */
5129 if (TYPE_RETURN_BY_DIRECT_REF_P (gnu_subprog_type
)
5130 || By_Ref (gnat_node
))
5131 gnu_ret_val
= build_unary_op (ADDR_EXPR
, NULL_TREE
, gnu_ret_val
);
5133 /* Otherwise, if it returns an unconstrained array, we have to
5134 allocate a new version of the result and return it. */
5135 else if (TYPE_RETURN_UNCONSTRAINED_P (gnu_subprog_type
))
5137 gnu_ret_val
= maybe_unconstrained_array (gnu_ret_val
);
5138 gnu_ret_val
= build_allocator (TREE_TYPE (gnu_ret_val
),
5139 gnu_ret_val
, gnu_ret_type
,
5140 Procedure_To_Call (gnat_node
),
5141 Storage_Pool (gnat_node
),
5145 /* If the subprogram returns by invisible reference, dereference
5146 the pointer it is passed using the type of the return value
5147 and build the copy operation manually. This ensures that we
5148 don't copy too much data, for example if the return type is
5149 unconstrained with a maximum size. */
5150 if (TREE_ADDRESSABLE (gnu_subprog_type
))
5153 = build_unary_op (INDIRECT_REF
, TREE_TYPE (gnu_ret_val
),
5155 gnu_result
= build_binary_op (MODIFY_EXPR
, NULL_TREE
,
5156 gnu_ret_obj
, gnu_ret_val
);
5157 add_stmt_with_node (gnu_result
, gnat_node
);
5158 gnu_ret_val
= NULL_TREE
;
5159 gnu_ret_obj
= gnu_result_decl
;
5162 /* Otherwise, build a regular return. */
5164 gnu_ret_obj
= gnu_result_decl
;
5168 gnu_ret_val
= NULL_TREE
;
5169 gnu_ret_obj
= NULL_TREE
;
5172 /* If we have a return label defined, convert this into a branch to
5173 that label. The return proper will be handled elsewhere. */
5174 if (VEC_last (tree
, gnu_return_label_stack
))
5177 add_stmt (build_binary_op (MODIFY_EXPR
, NULL_TREE
, gnu_ret_obj
,
5180 gnu_result
= build1 (GOTO_EXPR
, void_type_node
,
5181 VEC_last (tree
, gnu_return_label_stack
));
5182 /* When not optimizing, make sure the return is preserved. */
5183 if (!optimize
&& Comes_From_Source (gnat_node
))
5184 DECL_ARTIFICIAL (VEC_last (tree
, gnu_return_label_stack
)) = 0;
5188 gnu_result
= build_return_expr (gnu_ret_obj
, gnu_ret_val
);
5192 case N_Goto_Statement
:
5193 gnu_result
= build1 (GOTO_EXPR
, void_type_node
,
5194 gnat_to_gnu (Name (gnat_node
)));
5197 /***************************/
5198 /* Chapter 6: Subprograms */
5199 /***************************/
5201 case N_Subprogram_Declaration
:
5202 /* Unless there is a freeze node, declare the subprogram. We consider
5203 this a "definition" even though we're not generating code for
5204 the subprogram because we will be making the corresponding GCC
5207 if (No (Freeze_Node (Defining_Entity (Specification (gnat_node
)))))
5208 gnat_to_gnu_entity (Defining_Entity (Specification (gnat_node
)),
5210 gnu_result
= alloc_stmt_list ();
5213 case N_Abstract_Subprogram_Declaration
:
5214 /* This subprogram doesn't exist for code generation purposes, but we
5215 have to elaborate the types of any parameters and result, unless
5216 they are imported types (nothing to generate in this case).
5218 The parameter list may contain types with freeze nodes, e.g. not null
5219 subtypes, so the subprogram itself may carry a freeze node, in which
5220 case its elaboration must be deferred. */
5222 /* Process the parameter types first. */
5223 if (No (Freeze_Node (Defining_Entity (Specification (gnat_node
)))))
5225 = First_Formal_With_Extras
5226 (Defining_Entity (Specification (gnat_node
)));
5227 Present (gnat_temp
);
5228 gnat_temp
= Next_Formal_With_Extras (gnat_temp
))
5229 if (Is_Itype (Etype (gnat_temp
))
5230 && !From_With_Type (Etype (gnat_temp
)))
5231 gnat_to_gnu_entity (Etype (gnat_temp
), NULL_TREE
, 0);
5233 /* Then the result type, set to Standard_Void_Type for procedures. */
5235 Entity_Id gnat_temp_type
5236 = Etype (Defining_Entity (Specification (gnat_node
)));
5238 if (Is_Itype (gnat_temp_type
) && !From_With_Type (gnat_temp_type
))
5239 gnat_to_gnu_entity (Etype (gnat_temp_type
), NULL_TREE
, 0);
5242 gnu_result
= alloc_stmt_list ();
5245 case N_Defining_Program_Unit_Name
:
5246 /* For a child unit identifier go up a level to get the specification.
5247 We get this when we try to find the spec of a child unit package
5248 that is the compilation unit being compiled. */
5249 gnu_result
= gnat_to_gnu (Parent (gnat_node
));
5252 case N_Subprogram_Body
:
5253 Subprogram_Body_to_gnu (gnat_node
);
5254 gnu_result
= alloc_stmt_list ();
5257 case N_Function_Call
:
5258 case N_Procedure_Call_Statement
:
5259 gnu_result
= call_to_gnu (gnat_node
, &gnu_result_type
, NULL_TREE
);
5262 /************************/
5263 /* Chapter 7: Packages */
5264 /************************/
5266 case N_Package_Declaration
:
5267 gnu_result
= gnat_to_gnu (Specification (gnat_node
));
5270 case N_Package_Specification
:
5272 start_stmt_group ();
5273 process_decls (Visible_Declarations (gnat_node
),
5274 Private_Declarations (gnat_node
), Empty
, true, true);
5275 gnu_result
= end_stmt_group ();
5278 case N_Package_Body
:
5280 /* If this is the body of a generic package - do nothing. */
5281 if (Ekind (Corresponding_Spec (gnat_node
)) == E_Generic_Package
)
5283 gnu_result
= alloc_stmt_list ();
5287 start_stmt_group ();
5288 process_decls (Declarations (gnat_node
), Empty
, Empty
, true, true);
5290 if (Present (Handled_Statement_Sequence (gnat_node
)))
5291 add_stmt (gnat_to_gnu (Handled_Statement_Sequence (gnat_node
)));
5293 gnu_result
= end_stmt_group ();
5296 /********************************/
5297 /* Chapter 8: Visibility Rules */
5298 /********************************/
5300 case N_Use_Package_Clause
:
5301 case N_Use_Type_Clause
:
5302 /* Nothing to do here - but these may appear in list of declarations. */
5303 gnu_result
= alloc_stmt_list ();
5306 /*********************/
5307 /* Chapter 9: Tasks */
5308 /*********************/
5310 case N_Protected_Type_Declaration
:
5311 gnu_result
= alloc_stmt_list ();
5314 case N_Single_Task_Declaration
:
5315 gnat_to_gnu_entity (Defining_Entity (gnat_node
), NULL_TREE
, 1);
5316 gnu_result
= alloc_stmt_list ();
5319 /*********************************************************/
5320 /* Chapter 10: Program Structure and Compilation Issues */
5321 /*********************************************************/
5323 case N_Compilation_Unit
:
5324 /* This is not called for the main unit on which gigi is invoked. */
5325 Compilation_Unit_to_gnu (gnat_node
);
5326 gnu_result
= alloc_stmt_list ();
5329 case N_Subprogram_Body_Stub
:
5330 case N_Package_Body_Stub
:
5331 case N_Protected_Body_Stub
:
5332 case N_Task_Body_Stub
:
5333 /* Simply process whatever unit is being inserted. */
5334 gnu_result
= gnat_to_gnu (Unit (Library_Unit (gnat_node
)));
5338 gnu_result
= gnat_to_gnu (Proper_Body (gnat_node
));
5341 /***************************/
5342 /* Chapter 11: Exceptions */
5343 /***************************/
5345 case N_Handled_Sequence_Of_Statements
:
5346 /* If there is an At_End procedure attached to this node, and the EH
5347 mechanism is SJLJ, we must have at least a corresponding At_End
5348 handler, unless the No_Exception_Handlers restriction is set. */
5349 gcc_assert (type_annotate_only
5350 || Exception_Mechanism
!= Setjmp_Longjmp
5351 || No (At_End_Proc (gnat_node
))
5352 || Present (Exception_Handlers (gnat_node
))
5353 || No_Exception_Handlers_Set ());
5355 gnu_result
= Handled_Sequence_Of_Statements_to_gnu (gnat_node
);
5358 case N_Exception_Handler
:
5359 if (Exception_Mechanism
== Setjmp_Longjmp
)
5360 gnu_result
= Exception_Handler_to_gnu_sjlj (gnat_node
);
5361 else if (Exception_Mechanism
== Back_End_Exceptions
)
5362 gnu_result
= Exception_Handler_to_gnu_zcx (gnat_node
);
5368 case N_Push_Constraint_Error_Label
:
5369 push_exception_label_stack (&gnu_constraint_error_label_stack
,
5370 Exception_Label (gnat_node
));
5373 case N_Push_Storage_Error_Label
:
5374 push_exception_label_stack (&gnu_storage_error_label_stack
,
5375 Exception_Label (gnat_node
));
5378 case N_Push_Program_Error_Label
:
5379 push_exception_label_stack (&gnu_program_error_label_stack
,
5380 Exception_Label (gnat_node
));
5383 case N_Pop_Constraint_Error_Label
:
5384 VEC_pop (tree
, gnu_constraint_error_label_stack
);
5387 case N_Pop_Storage_Error_Label
:
5388 VEC_pop (tree
, gnu_storage_error_label_stack
);
5391 case N_Pop_Program_Error_Label
:
5392 VEC_pop (tree
, gnu_program_error_label_stack
);
5395 /******************************/
5396 /* Chapter 12: Generic Units */
5397 /******************************/
5399 case N_Generic_Function_Renaming_Declaration
:
5400 case N_Generic_Package_Renaming_Declaration
:
5401 case N_Generic_Procedure_Renaming_Declaration
:
5402 case N_Generic_Package_Declaration
:
5403 case N_Generic_Subprogram_Declaration
:
5404 case N_Package_Instantiation
:
5405 case N_Procedure_Instantiation
:
5406 case N_Function_Instantiation
:
5407 /* These nodes can appear on a declaration list but there is nothing to
5408 to be done with them. */
5409 gnu_result
= alloc_stmt_list ();
5412 /**************************************************/
5413 /* Chapter 13: Representation Clauses and */
5414 /* Implementation-Dependent Features */
5415 /**************************************************/
5417 case N_Attribute_Definition_Clause
:
5418 gnu_result
= alloc_stmt_list ();
5420 /* The only one we need to deal with is 'Address since, for the others,
5421 the front-end puts the information elsewhere. */
5422 if (Get_Attribute_Id (Chars (gnat_node
)) != Attr_Address
)
5425 /* And we only deal with 'Address if the object has a Freeze node. */
5426 gnat_temp
= Entity (Name (gnat_node
));
5427 if (No (Freeze_Node (gnat_temp
)))
5430 /* Get the value to use as the address and save it as the equivalent
5431 for the object. When it is frozen, gnat_to_gnu_entity will do the
5433 save_gnu_tree (gnat_temp
, gnat_to_gnu (Expression (gnat_node
)), true);
5436 case N_Enumeration_Representation_Clause
:
5437 case N_Record_Representation_Clause
:
5439 /* We do nothing with these. SEM puts the information elsewhere. */
5440 gnu_result
= alloc_stmt_list ();
5443 case N_Code_Statement
:
5444 if (!type_annotate_only
)
5446 tree gnu_template
= gnat_to_gnu (Asm_Template (gnat_node
));
5447 tree gnu_inputs
= NULL_TREE
, gnu_outputs
= NULL_TREE
;
5448 tree gnu_clobbers
= NULL_TREE
, tail
;
5449 bool allows_mem
, allows_reg
, fake
;
5450 int ninputs
, noutputs
, i
;
5451 const char **oconstraints
;
5452 const char *constraint
;
5455 /* First retrieve the 3 operand lists built by the front-end. */
5456 Setup_Asm_Outputs (gnat_node
);
5457 while (Present (gnat_temp
= Asm_Output_Variable ()))
5459 tree gnu_value
= gnat_to_gnu (gnat_temp
);
5460 tree gnu_constr
= build_tree_list (NULL_TREE
, gnat_to_gnu
5461 (Asm_Output_Constraint ()));
5463 gnu_outputs
= tree_cons (gnu_constr
, gnu_value
, gnu_outputs
);
5467 Setup_Asm_Inputs (gnat_node
);
5468 while (Present (gnat_temp
= Asm_Input_Value ()))
5470 tree gnu_value
= gnat_to_gnu (gnat_temp
);
5471 tree gnu_constr
= build_tree_list (NULL_TREE
, gnat_to_gnu
5472 (Asm_Input_Constraint ()));
5474 gnu_inputs
= tree_cons (gnu_constr
, gnu_value
, gnu_inputs
);
5478 Clobber_Setup (gnat_node
);
5479 while ((clobber
= Clobber_Get_Next ()))
5481 = tree_cons (NULL_TREE
,
5482 build_string (strlen (clobber
) + 1, clobber
),
5485 /* Then perform some standard checking and processing on the
5486 operands. In particular, mark them addressable if needed. */
5487 gnu_outputs
= nreverse (gnu_outputs
);
5488 noutputs
= list_length (gnu_outputs
);
5489 gnu_inputs
= nreverse (gnu_inputs
);
5490 ninputs
= list_length (gnu_inputs
);
5491 oconstraints
= XALLOCAVEC (const char *, noutputs
);
5493 for (i
= 0, tail
= gnu_outputs
; tail
; ++i
, tail
= TREE_CHAIN (tail
))
5495 tree output
= TREE_VALUE (tail
);
5497 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (tail
)));
5498 oconstraints
[i
] = constraint
;
5500 if (parse_output_constraint (&constraint
, i
, ninputs
, noutputs
,
5501 &allows_mem
, &allows_reg
, &fake
))
5503 /* If the operand is going to end up in memory,
5504 mark it addressable. Note that we don't test
5505 allows_mem like in the input case below; this
5506 is modelled on the C front-end. */
5508 && !gnat_mark_addressable (output
))
5509 output
= error_mark_node
;
5512 output
= error_mark_node
;
5514 TREE_VALUE (tail
) = output
;
5517 for (i
= 0, tail
= gnu_inputs
; tail
; ++i
, tail
= TREE_CHAIN (tail
))
5519 tree input
= TREE_VALUE (tail
);
5521 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (tail
)));
5523 if (parse_input_constraint (&constraint
, i
, ninputs
, noutputs
,
5525 &allows_mem
, &allows_reg
))
5527 /* If the operand is going to end up in memory,
5528 mark it addressable. */
5529 if (!allows_reg
&& allows_mem
5530 && !gnat_mark_addressable (input
))
5531 input
= error_mark_node
;
5534 input
= error_mark_node
;
5536 TREE_VALUE (tail
) = input
;
5539 gnu_result
= build5 (ASM_EXPR
, void_type_node
,
5540 gnu_template
, gnu_outputs
,
5541 gnu_inputs
, gnu_clobbers
, NULL_TREE
);
5542 ASM_VOLATILE_P (gnu_result
) = Is_Asm_Volatile (gnat_node
);
5545 gnu_result
= alloc_stmt_list ();
5553 case N_Expression_With_Actions
:
5554 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
5555 /* This construct doesn't define a scope so we don't wrap the statement
5556 list in a BIND_EXPR; however, we wrap it in a SAVE_EXPR to protect it
5558 gnu_result
= build_stmt_group (Actions (gnat_node
), false);
5559 gnu_result
= build1 (SAVE_EXPR
, void_type_node
, gnu_result
);
5560 TREE_SIDE_EFFECTS (gnu_result
) = 1;
5561 gnu_expr
= gnat_to_gnu (Expression (gnat_node
));
5563 = build_compound_expr (TREE_TYPE (gnu_expr
), gnu_result
, gnu_expr
);
5566 case N_Freeze_Entity
:
5567 start_stmt_group ();
5568 process_freeze_entity (gnat_node
);
5569 process_decls (Actions (gnat_node
), Empty
, Empty
, true, true);
5570 gnu_result
= end_stmt_group ();
5573 case N_Itype_Reference
:
5574 if (!present_gnu_tree (Itype (gnat_node
)))
5575 process_type (Itype (gnat_node
));
5577 gnu_result
= alloc_stmt_list ();
5580 case N_Free_Statement
:
5581 if (!type_annotate_only
)
5583 tree gnu_ptr
= gnat_to_gnu (Expression (gnat_node
));
5584 tree gnu_ptr_type
= TREE_TYPE (gnu_ptr
);
5586 tree gnu_actual_obj_type
= 0;
5589 /* If this is a thin pointer, we must dereference it to create
5590 a fat pointer, then go back below to a thin pointer. The
5591 reason for this is that we need a fat pointer someplace in
5592 order to properly compute the size. */
5593 if (TYPE_IS_THIN_POINTER_P (TREE_TYPE (gnu_ptr
)))
5594 gnu_ptr
= build_unary_op (ADDR_EXPR
, NULL_TREE
,
5595 build_unary_op (INDIRECT_REF
, NULL_TREE
,
5598 /* If this is an unconstrained array, we know the object must
5599 have been allocated with the template in front of the object.
5600 So pass the template address, but get the total size. Do this
5601 by converting to a thin pointer. */
5602 if (TYPE_IS_FAT_POINTER_P (TREE_TYPE (gnu_ptr
)))
5604 = convert (build_pointer_type
5605 (TYPE_OBJECT_RECORD_TYPE
5606 (TYPE_UNCONSTRAINED_ARRAY (TREE_TYPE (gnu_ptr
)))),
5609 gnu_obj_type
= TREE_TYPE (TREE_TYPE (gnu_ptr
));
5611 if (Present (Actual_Designated_Subtype (gnat_node
)))
5614 = gnat_to_gnu_type (Actual_Designated_Subtype (gnat_node
));
5616 if (TYPE_IS_FAT_OR_THIN_POINTER_P (gnu_ptr_type
))
5618 = build_unc_object_type_from_ptr (gnu_ptr_type
,
5619 gnu_actual_obj_type
,
5620 get_identifier ("DEALLOC"),
5624 gnu_actual_obj_type
= gnu_obj_type
;
5626 gnu_obj_size
= TYPE_SIZE_UNIT (gnu_actual_obj_type
);
5628 if (TREE_CODE (gnu_obj_type
) == RECORD_TYPE
5629 && TYPE_CONTAINS_TEMPLATE_P (gnu_obj_type
))
5631 tree gnu_char_ptr_type
5632 = build_pointer_type (unsigned_char_type_node
);
5633 tree gnu_pos
= byte_position (TYPE_FIELDS (gnu_obj_type
));
5634 gnu_ptr
= convert (gnu_char_ptr_type
, gnu_ptr
);
5635 gnu_ptr
= build_binary_op (POINTER_PLUS_EXPR
, gnu_char_ptr_type
,
5640 = build_call_alloc_dealloc (gnu_ptr
, gnu_obj_size
, gnu_obj_type
,
5641 Procedure_To_Call (gnat_node
),
5642 Storage_Pool (gnat_node
),
5647 case N_Raise_Constraint_Error
:
5648 case N_Raise_Program_Error
:
5649 case N_Raise_Storage_Error
:
5651 const int reason
= UI_To_Int (Reason (gnat_node
));
5652 const Node_Id cond
= Condition (gnat_node
);
5653 bool handled
= false;
5655 if (type_annotate_only
)
5657 gnu_result
= alloc_stmt_list ();
5661 gnu_result_type
= get_unpadded_type (Etype (gnat_node
));
5663 if (Exception_Extra_Info
5664 && !No_Exception_Handlers_Set ()
5665 && !get_exception_label (kind
)
5666 && TREE_CODE (gnu_result_type
) == VOID_TYPE
5669 if (reason
== CE_Access_Check_Failed
)
5671 gnu_result
= build_call_raise_column (reason
, gnat_node
);
5674 else if ((reason
== CE_Index_Check_Failed
5675 || reason
== CE_Range_Check_Failed
5676 || reason
== CE_Invalid_Data
)
5677 && Nkind (cond
) == N_Op_Not
5678 && Nkind (Right_Opnd (cond
)) == N_In
5679 && Nkind (Right_Opnd (Right_Opnd (cond
))) == N_Range
)
5681 Node_Id op
= Right_Opnd (cond
); /* N_In node */
5682 Node_Id index
= Left_Opnd (op
);
5683 Node_Id type
= Etype (index
);
5686 && Known_Esize (type
)
5687 && UI_To_Int (Esize (type
)) <= 32)
5689 Node_Id right_op
= Right_Opnd (op
);
5691 = build_call_raise_range
5693 gnat_to_gnu (index
), /* index */
5694 gnat_to_gnu (Low_Bound (right_op
)), /* first */
5695 gnat_to_gnu (High_Bound (right_op
))); /* last */
5703 set_expr_location_from_node (gnu_result
, gnat_node
);
5704 gnu_result
= build3 (COND_EXPR
, void_type_node
,
5706 gnu_result
, alloc_stmt_list ());
5710 gnu_result
= build_call_raise (reason
, gnat_node
, kind
);
5712 /* If the type is VOID, this is a statement, so we need to generate
5713 the code for the call. Handle a Condition, if there is one. */
5714 if (TREE_CODE (gnu_result_type
) == VOID_TYPE
)
5716 set_expr_location_from_node (gnu_result
, gnat_node
);
5718 gnu_result
= build3 (COND_EXPR
, void_type_node
,
5720 gnu_result
, alloc_stmt_list ());
5723 gnu_result
= build1 (NULL_EXPR
, gnu_result_type
, gnu_result
);
5728 case N_Validate_Unchecked_Conversion
:
5730 Entity_Id gnat_target_type
= Target_Type (gnat_node
);
5731 tree gnu_source_type
= gnat_to_gnu_type (Source_Type (gnat_node
));
5732 tree gnu_target_type
= gnat_to_gnu_type (gnat_target_type
);
5734 /* No need for any warning in this case. */
5735 if (!flag_strict_aliasing
)
5738 /* If the result is a pointer type, see if we are either converting
5739 from a non-pointer or from a pointer to a type with a different
5740 alias set and warn if so. If the result is defined in the same
5741 unit as this unchecked conversion, we can allow this because we
5742 can know to make the pointer type behave properly. */
5743 else if (POINTER_TYPE_P (gnu_target_type
)
5744 && !In_Same_Source_Unit (gnat_target_type
, gnat_node
)
5745 && !No_Strict_Aliasing (Underlying_Type (gnat_target_type
)))
5747 tree gnu_source_desig_type
= POINTER_TYPE_P (gnu_source_type
)
5748 ? TREE_TYPE (gnu_source_type
)
5750 tree gnu_target_desig_type
= TREE_TYPE (gnu_target_type
);
5752 if ((TYPE_DUMMY_P (gnu_target_desig_type
)
5753 || get_alias_set (gnu_target_desig_type
) != 0)
5754 && (!POINTER_TYPE_P (gnu_source_type
)
5755 || (TYPE_DUMMY_P (gnu_source_desig_type
)
5756 != TYPE_DUMMY_P (gnu_target_desig_type
))
5757 || (TYPE_DUMMY_P (gnu_source_desig_type
)
5758 && gnu_source_desig_type
!= gnu_target_desig_type
)
5759 || !alias_sets_conflict_p
5760 (get_alias_set (gnu_source_desig_type
),
5761 get_alias_set (gnu_target_desig_type
))))
5764 ("?possible aliasing problem for type&",
5765 gnat_node
, Target_Type (gnat_node
));
5767 ("\\?use -fno-strict-aliasing switch for references",
5770 ("\\?or use `pragma No_Strict_Aliasing (&);`",
5771 gnat_node
, Target_Type (gnat_node
));
5775 /* But if the result is a fat pointer type, we have no mechanism to
5776 do that, so we unconditionally warn in problematic cases. */
5777 else if (TYPE_IS_FAT_POINTER_P (gnu_target_type
))
5779 tree gnu_source_array_type
5780 = TYPE_IS_FAT_POINTER_P (gnu_source_type
)
5781 ? TREE_TYPE (TREE_TYPE (TYPE_FIELDS (gnu_source_type
)))
5783 tree gnu_target_array_type
5784 = TREE_TYPE (TREE_TYPE (TYPE_FIELDS (gnu_target_type
)));
5786 if ((TYPE_DUMMY_P (gnu_target_array_type
)
5787 || get_alias_set (gnu_target_array_type
) != 0)
5788 && (!TYPE_IS_FAT_POINTER_P (gnu_source_type
)
5789 || (TYPE_DUMMY_P (gnu_source_array_type
)
5790 != TYPE_DUMMY_P (gnu_target_array_type
))
5791 || (TYPE_DUMMY_P (gnu_source_array_type
)
5792 && gnu_source_array_type
!= gnu_target_array_type
)
5793 || !alias_sets_conflict_p
5794 (get_alias_set (gnu_source_array_type
),
5795 get_alias_set (gnu_target_array_type
))))
5798 ("?possible aliasing problem for type&",
5799 gnat_node
, Target_Type (gnat_node
));
5801 ("\\?use -fno-strict-aliasing switch for references",
5806 gnu_result
= alloc_stmt_list ();
5810 /* SCIL nodes require no processing for GCC. Other nodes should only
5811 be present when annotating types. */
5812 gcc_assert (IN (kind
, N_SCIL_Node
) || type_annotate_only
);
5813 gnu_result
= alloc_stmt_list ();
5816 /* If we pushed the processing of the elaboration routine, pop it back. */
5817 if (went_into_elab_proc
)
5818 current_function_decl
= NULL_TREE
;
5820 /* When not optimizing, turn boolean rvalues B into B != false tests
5821 so that the code just below can put the location information of the
5822 reference to B on the inequality operator for better debug info. */
5824 && TREE_CODE (gnu_result
) != INTEGER_CST
5825 && (kind
== N_Identifier
5826 || kind
== N_Expanded_Name
5827 || kind
== N_Explicit_Dereference
5828 || kind
== N_Function_Call
5829 || kind
== N_Indexed_Component
5830 || kind
== N_Selected_Component
)
5831 && TREE_CODE (get_base_type (gnu_result_type
)) == BOOLEAN_TYPE
5832 && !lvalue_required_p (gnat_node
, gnu_result_type
, false, false, false))
5833 gnu_result
= build_binary_op (NE_EXPR
, gnu_result_type
,
5834 convert (gnu_result_type
, gnu_result
),
5835 convert (gnu_result_type
,
5836 boolean_false_node
));
5838 /* Set the location information on the result. Note that we may have
5839 no result if we tried to build a CALL_EXPR node to a procedure with
5840 no side-effects and optimization is enabled. */
5841 if (gnu_result
&& EXPR_P (gnu_result
))
5842 set_gnu_expr_location_from_node (gnu_result
, gnat_node
);
5844 /* If we're supposed to return something of void_type, it means we have
5845 something we're elaborating for effect, so just return. */
5846 if (TREE_CODE (gnu_result_type
) == VOID_TYPE
)
5849 /* If the result is a constant that overflowed, raise Constraint_Error. */
5850 if (TREE_CODE (gnu_result
) == INTEGER_CST
&& TREE_OVERFLOW (gnu_result
))
5852 post_error ("?`Constraint_Error` will be raised at run time", gnat_node
);
5854 = build1 (NULL_EXPR
, gnu_result_type
,
5855 build_call_raise (CE_Overflow_Check_Failed
, gnat_node
,
5856 N_Raise_Constraint_Error
));
5859 /* If our result has side-effects and is of an unconstrained type,
5860 make a SAVE_EXPR so that we can be sure it will only be referenced
5861 once. Note we must do this before any conversions. */
5862 if (TREE_SIDE_EFFECTS (gnu_result
)
5863 && (TREE_CODE (gnu_result_type
) == UNCONSTRAINED_ARRAY_TYPE
5864 || CONTAINS_PLACEHOLDER_P (TYPE_SIZE (gnu_result_type
))))
5865 gnu_result
= gnat_stabilize_reference (gnu_result
, false, NULL
);
5867 /* Now convert the result to the result type, unless we are in one of the
5870 1. If this is the Name of an assignment statement or a parameter of
5871 a procedure call, return the result almost unmodified since the
5872 RHS will have to be converted to our type in that case, unless
5873 the result type has a simpler size. Likewise if there is just
5874 a no-op unchecked conversion in-between. Similarly, don't convert
5875 integral types that are the operands of an unchecked conversion
5876 since we need to ignore those conversions (for 'Valid).
5878 2. If we have a label (which doesn't have any well-defined type), a
5879 field or an error, return the result almost unmodified. Similarly,
5880 if the two types are record types with the same name, don't convert.
5881 This will be the case when we are converting from a packable version
5882 of a type to its original type and we need those conversions to be
5883 NOPs in order for assignments into these types to work properly.
5885 3. If the type is void or if we have no result, return error_mark_node
5886 to show we have no result.
5888 4. Finally, if the type of the result is already correct. */
5890 if (Present (Parent (gnat_node
))
5891 && ((Nkind (Parent (gnat_node
)) == N_Assignment_Statement
5892 && Name (Parent (gnat_node
)) == gnat_node
)
5893 || (Nkind (Parent (gnat_node
)) == N_Unchecked_Type_Conversion
5894 && unchecked_conversion_nop (Parent (gnat_node
)))
5895 || (Nkind (Parent (gnat_node
)) == N_Procedure_Call_Statement
5896 && Name (Parent (gnat_node
)) != gnat_node
)
5897 || Nkind (Parent (gnat_node
)) == N_Parameter_Association
5898 || (Nkind (Parent (gnat_node
)) == N_Unchecked_Type_Conversion
5899 && !AGGREGATE_TYPE_P (gnu_result_type
)
5900 && !AGGREGATE_TYPE_P (TREE_TYPE (gnu_result
))))
5901 && !(TYPE_SIZE (gnu_result_type
)
5902 && TYPE_SIZE (TREE_TYPE (gnu_result
))
5903 && (AGGREGATE_TYPE_P (gnu_result_type
)
5904 == AGGREGATE_TYPE_P (TREE_TYPE (gnu_result
)))
5905 && ((TREE_CODE (TYPE_SIZE (gnu_result_type
)) == INTEGER_CST
5906 && (TREE_CODE (TYPE_SIZE (TREE_TYPE (gnu_result
)))
5908 || (TREE_CODE (TYPE_SIZE (gnu_result_type
)) != INTEGER_CST
5909 && !CONTAINS_PLACEHOLDER_P (TYPE_SIZE (gnu_result_type
))
5910 && (CONTAINS_PLACEHOLDER_P
5911 (TYPE_SIZE (TREE_TYPE (gnu_result
))))))
5912 && !(TREE_CODE (gnu_result_type
) == RECORD_TYPE
5913 && TYPE_JUSTIFIED_MODULAR_P (gnu_result_type
))))
5915 /* Remove padding only if the inner object is of self-referential
5916 size: in that case it must be an object of unconstrained type
5917 with a default discriminant and we want to avoid copying too
5919 if (TYPE_IS_PADDING_P (TREE_TYPE (gnu_result
))
5920 && CONTAINS_PLACEHOLDER_P (TYPE_SIZE (TREE_TYPE (TYPE_FIELDS
5921 (TREE_TYPE (gnu_result
))))))
5922 gnu_result
= convert (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (gnu_result
))),
5926 else if (TREE_CODE (gnu_result
) == LABEL_DECL
5927 || TREE_CODE (gnu_result
) == FIELD_DECL
5928 || TREE_CODE (gnu_result
) == ERROR_MARK
5929 || (TYPE_NAME (gnu_result_type
)
5930 == TYPE_NAME (TREE_TYPE (gnu_result
))
5931 && TREE_CODE (gnu_result_type
) == RECORD_TYPE
5932 && TREE_CODE (TREE_TYPE (gnu_result
)) == RECORD_TYPE
))
5934 /* Remove any padding. */
5935 if (TYPE_IS_PADDING_P (TREE_TYPE (gnu_result
)))
5936 gnu_result
= convert (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (gnu_result
))),
5940 else if (gnu_result
== error_mark_node
|| gnu_result_type
== void_type_node
)
5941 gnu_result
= error_mark_node
;
5943 else if (gnu_result_type
!= TREE_TYPE (gnu_result
))
5944 gnu_result
= convert (gnu_result_type
, gnu_result
);
5946 /* We don't need any NOP_EXPR or NON_LVALUE_EXPR on the result. */
5947 while ((TREE_CODE (gnu_result
) == NOP_EXPR
5948 || TREE_CODE (gnu_result
) == NON_LVALUE_EXPR
)
5949 && TREE_TYPE (TREE_OPERAND (gnu_result
, 0)) == TREE_TYPE (gnu_result
))
5950 gnu_result
= TREE_OPERAND (gnu_result
, 0);
5955 /* Subroutine of above to push the exception label stack. GNU_STACK is
5956 a pointer to the stack to update and GNAT_LABEL, if present, is the
5957 label to push onto the stack. */
5960 push_exception_label_stack (VEC(tree
,gc
) **gnu_stack
, Entity_Id gnat_label
)
5962 tree gnu_label
= (Present (gnat_label
)
5963 ? gnat_to_gnu_entity (gnat_label
, NULL_TREE
, 0)
5966 VEC_safe_push (tree
, gc
, *gnu_stack
, gnu_label
);
5969 /* Record the current code position in GNAT_NODE. */
5972 record_code_position (Node_Id gnat_node
)
5974 tree stmt_stmt
= build1 (STMT_STMT
, void_type_node
, NULL_TREE
);
5976 add_stmt_with_node (stmt_stmt
, gnat_node
);
5977 save_gnu_tree (gnat_node
, stmt_stmt
, true);
5980 /* Insert the code for GNAT_NODE at the position saved for that node. */
5983 insert_code_for (Node_Id gnat_node
)
5985 STMT_STMT_STMT (get_gnu_tree (gnat_node
)) = gnat_to_gnu (gnat_node
);
5986 save_gnu_tree (gnat_node
, NULL_TREE
, true);
5989 /* Start a new statement group chained to the previous group. */
5992 start_stmt_group (void)
5994 struct stmt_group
*group
= stmt_group_free_list
;
5996 /* First see if we can get one from the free list. */
5998 stmt_group_free_list
= group
->previous
;
6000 group
= ggc_alloc_stmt_group ();
6002 group
->previous
= current_stmt_group
;
6003 group
->stmt_list
= group
->block
= group
->cleanups
= NULL_TREE
;
6004 current_stmt_group
= group
;
6007 /* Add GNU_STMT to the current statement group. If it is an expression with
6008 no effects, it is ignored. */
6011 add_stmt (tree gnu_stmt
)
6013 append_to_statement_list (gnu_stmt
, ¤t_stmt_group
->stmt_list
);
6016 /* Similar, but the statement is always added, regardless of side-effects. */
6019 add_stmt_force (tree gnu_stmt
)
6021 append_to_statement_list_force (gnu_stmt
, ¤t_stmt_group
->stmt_list
);
6024 /* Like add_stmt, but set the location of GNU_STMT to that of GNAT_NODE. */
6027 add_stmt_with_node (tree gnu_stmt
, Node_Id gnat_node
)
6029 if (Present (gnat_node
))
6030 set_expr_location_from_node (gnu_stmt
, gnat_node
);
6031 add_stmt (gnu_stmt
);
6034 /* Similar, but the statement is always added, regardless of side-effects. */
6037 add_stmt_with_node_force (tree gnu_stmt
, Node_Id gnat_node
)
6039 if (Present (gnat_node
))
6040 set_expr_location_from_node (gnu_stmt
, gnat_node
);
6041 add_stmt_force (gnu_stmt
);
6044 /* Add a declaration statement for GNU_DECL to the current statement group.
6045 Get SLOC from Entity_Id. */
6048 add_decl_expr (tree gnu_decl
, Entity_Id gnat_entity
)
6050 tree type
= TREE_TYPE (gnu_decl
);
6051 tree gnu_stmt
, gnu_init
, t
;
6053 /* If this is a variable that Gigi is to ignore, we may have been given
6054 an ERROR_MARK. So test for it. We also might have been given a
6055 reference for a renaming. So only do something for a decl. Also
6056 ignore a TYPE_DECL for an UNCONSTRAINED_ARRAY_TYPE. */
6057 if (!DECL_P (gnu_decl
)
6058 || (TREE_CODE (gnu_decl
) == TYPE_DECL
6059 && TREE_CODE (type
) == UNCONSTRAINED_ARRAY_TYPE
))
6062 gnu_stmt
= build1 (DECL_EXPR
, void_type_node
, gnu_decl
);
6064 /* If we are global, we don't want to actually output the DECL_EXPR for
6065 this decl since we already have evaluated the expressions in the
6066 sizes and positions as globals and doing it again would be wrong. */
6067 if (global_bindings_p ())
6069 /* Mark everything as used to prevent node sharing with subprograms.
6070 Note that walk_tree knows how to deal with TYPE_DECL, but neither
6071 VAR_DECL nor CONST_DECL. This appears to be somewhat arbitrary. */
6072 MARK_VISITED (gnu_stmt
);
6073 if (TREE_CODE (gnu_decl
) == VAR_DECL
6074 || TREE_CODE (gnu_decl
) == CONST_DECL
)
6076 MARK_VISITED (DECL_SIZE (gnu_decl
));
6077 MARK_VISITED (DECL_SIZE_UNIT (gnu_decl
));
6078 MARK_VISITED (DECL_INITIAL (gnu_decl
));
6080 /* In any case, we have to deal with our own TYPE_ADA_SIZE field. */
6081 else if (TREE_CODE (gnu_decl
) == TYPE_DECL
6082 && ((TREE_CODE (type
) == RECORD_TYPE
6083 && !TYPE_FAT_POINTER_P (type
))
6084 || TREE_CODE (type
) == UNION_TYPE
6085 || TREE_CODE (type
) == QUAL_UNION_TYPE
))
6086 MARK_VISITED (TYPE_ADA_SIZE (type
));
6088 else if (!DECL_EXTERNAL (gnu_decl
))
6089 add_stmt_with_node (gnu_stmt
, gnat_entity
);
6091 /* If this is a variable and an initializer is attached to it, it must be
6092 valid for the context. Similar to init_const in create_var_decl_1. */
6093 if (TREE_CODE (gnu_decl
) == VAR_DECL
6094 && (gnu_init
= DECL_INITIAL (gnu_decl
)) != NULL_TREE
6095 && (!gnat_types_compatible_p (type
, TREE_TYPE (gnu_init
))
6096 || (TREE_STATIC (gnu_decl
)
6097 && !initializer_constant_valid_p (gnu_init
,
6098 TREE_TYPE (gnu_init
)))))
6100 /* If GNU_DECL has a padded type, convert it to the unpadded
6101 type so the assignment is done properly. */
6102 if (TYPE_IS_PADDING_P (type
))
6103 t
= convert (TREE_TYPE (TYPE_FIELDS (type
)), gnu_decl
);
6107 gnu_stmt
= build_binary_op (INIT_EXPR
, NULL_TREE
, t
, gnu_init
);
6109 DECL_INITIAL (gnu_decl
) = NULL_TREE
;
6110 if (TREE_READONLY (gnu_decl
))
6112 TREE_READONLY (gnu_decl
) = 0;
6113 DECL_READONLY_ONCE_ELAB (gnu_decl
) = 1;
6116 add_stmt_with_node (gnu_stmt
, gnat_entity
);
6120 /* Callback for walk_tree to mark the visited trees rooted at *TP. */
6123 mark_visited_r (tree
*tp
, int *walk_subtrees
, void *data ATTRIBUTE_UNUSED
)
6127 if (TREE_VISITED (t
))
6130 /* Don't mark a dummy type as visited because we want to mark its sizes
6131 and fields once it's filled in. */
6132 else if (!TYPE_IS_DUMMY_P (t
))
6133 TREE_VISITED (t
) = 1;
6136 TYPE_SIZES_GIMPLIFIED (t
) = 1;
6141 /* Mark nodes rooted at T with TREE_VISITED and types as having their
6142 sized gimplified. We use this to indicate all variable sizes and
6143 positions in global types may not be shared by any subprogram. */
6146 mark_visited (tree t
)
6148 walk_tree (&t
, mark_visited_r
, NULL
, NULL
);
6151 /* Add GNU_CLEANUP, a cleanup action, to the current code group and
6152 set its location to that of GNAT_NODE if present. */
6155 add_cleanup (tree gnu_cleanup
, Node_Id gnat_node
)
6157 if (Present (gnat_node
))
6158 set_expr_location_from_node (gnu_cleanup
, gnat_node
);
6159 append_to_statement_list (gnu_cleanup
, ¤t_stmt_group
->cleanups
);
6162 /* Set the BLOCK node corresponding to the current code group to GNU_BLOCK. */
6165 set_block_for_group (tree gnu_block
)
6167 gcc_assert (!current_stmt_group
->block
);
6168 current_stmt_group
->block
= gnu_block
;
6171 /* Return code corresponding to the current code group. It is normally
6172 a STATEMENT_LIST, but may also be a BIND_EXPR or TRY_FINALLY_EXPR if
6173 BLOCK or cleanups were set. */
6176 end_stmt_group (void)
6178 struct stmt_group
*group
= current_stmt_group
;
6179 tree gnu_retval
= group
->stmt_list
;
6181 /* If this is a null list, allocate a new STATEMENT_LIST. Then, if there
6182 are cleanups, make a TRY_FINALLY_EXPR. Last, if there is a BLOCK,
6183 make a BIND_EXPR. Note that we nest in that because the cleanup may
6184 reference variables in the block. */
6185 if (gnu_retval
== NULL_TREE
)
6186 gnu_retval
= alloc_stmt_list ();
6188 if (group
->cleanups
)
6189 gnu_retval
= build2 (TRY_FINALLY_EXPR
, void_type_node
, gnu_retval
,
6192 if (current_stmt_group
->block
)
6193 gnu_retval
= build3 (BIND_EXPR
, void_type_node
, BLOCK_VARS (group
->block
),
6194 gnu_retval
, group
->block
);
6196 /* Remove this group from the stack and add it to the free list. */
6197 current_stmt_group
= group
->previous
;
6198 group
->previous
= stmt_group_free_list
;
6199 stmt_group_free_list
= group
;
6204 /* Add a list of statements from GNAT_LIST, a possibly-empty list of
6208 add_stmt_list (List_Id gnat_list
)
6212 if (Present (gnat_list
))
6213 for (gnat_node
= First (gnat_list
); Present (gnat_node
);
6214 gnat_node
= Next (gnat_node
))
6215 add_stmt (gnat_to_gnu (gnat_node
));
6218 /* Build a tree from GNAT_LIST, a possibly-empty list of statements.
6219 If BINDING_P is true, push and pop a binding level around the list. */
6222 build_stmt_group (List_Id gnat_list
, bool binding_p
)
6224 start_stmt_group ();
6228 add_stmt_list (gnat_list
);
6232 return end_stmt_group ();
6235 /* Generate GIMPLE in place for the expression at *EXPR_P. */
6238 gnat_gimplify_expr (tree
*expr_p
, gimple_seq
*pre_p
,
6239 gimple_seq
*post_p ATTRIBUTE_UNUSED
)
6241 tree expr
= *expr_p
;
6244 if (IS_ADA_STMT (expr
))
6245 return gnat_gimplify_stmt (expr_p
);
6247 switch (TREE_CODE (expr
))
6250 /* If this is for a scalar, just make a VAR_DECL for it. If for
6251 an aggregate, get a null pointer of the appropriate type and
6253 if (AGGREGATE_TYPE_P (TREE_TYPE (expr
)))
6254 *expr_p
= build1 (INDIRECT_REF
, TREE_TYPE (expr
),
6255 convert (build_pointer_type (TREE_TYPE (expr
)),
6256 integer_zero_node
));
6259 *expr_p
= create_tmp_var (TREE_TYPE (expr
), NULL
);
6260 TREE_NO_WARNING (*expr_p
) = 1;
6263 gimplify_and_add (TREE_OPERAND (expr
, 0), pre_p
);
6266 case UNCONSTRAINED_ARRAY_REF
:
6267 /* We should only do this if we are just elaborating for side-effects,
6268 but we can't know that yet. */
6269 *expr_p
= TREE_OPERAND (*expr_p
, 0);
6273 op
= TREE_OPERAND (expr
, 0);
6275 /* If we are taking the address of a constant CONSTRUCTOR, make sure it
6276 is put into static memory. We know that it's going to be read-only
6277 given the semantics we have and it must be in static memory when the
6278 reference is in an elaboration procedure. */
6279 if (TREE_CODE (op
) == CONSTRUCTOR
&& TREE_CONSTANT (op
))
6281 tree addr
= build_fold_addr_expr (tree_output_constant_def (op
));
6282 *expr_p
= fold_convert (TREE_TYPE (expr
), addr
);
6286 /* Otherwise, if we are taking the address of a non-constant CONSTRUCTOR
6287 or of a call, explicitly create the local temporary. That's required
6288 if the type is passed by reference. */
6289 if (TREE_CODE (op
) == CONSTRUCTOR
|| TREE_CODE (op
) == CALL_EXPR
)
6291 tree mod
, new_var
= create_tmp_var_raw (TREE_TYPE (op
), "C");
6292 TREE_ADDRESSABLE (new_var
) = 1;
6293 gimple_add_tmp_var (new_var
);
6295 mod
= build2 (INIT_EXPR
, TREE_TYPE (new_var
), new_var
, op
);
6296 gimplify_and_add (mod
, pre_p
);
6298 TREE_OPERAND (expr
, 0) = new_var
;
6299 recompute_tree_invariant_for_addr_expr (expr
);
6303 return GS_UNHANDLED
;
6306 op
= DECL_EXPR_DECL (expr
);
6308 /* The expressions for the RM bounds must be gimplified to ensure that
6309 they are properly elaborated. See gimplify_decl_expr. */
6310 if ((TREE_CODE (op
) == TYPE_DECL
|| TREE_CODE (op
) == VAR_DECL
)
6311 && !TYPE_SIZES_GIMPLIFIED (TREE_TYPE (op
)))
6312 switch (TREE_CODE (TREE_TYPE (op
)))
6319 tree type
= TYPE_MAIN_VARIANT (TREE_TYPE (op
)), t
, val
;
6321 val
= TYPE_RM_MIN_VALUE (type
);
6324 gimplify_one_sizepos (&val
, pre_p
);
6325 for (t
= type
; t
; t
= TYPE_NEXT_VARIANT (t
))
6326 SET_TYPE_RM_MIN_VALUE (t
, val
);
6329 val
= TYPE_RM_MAX_VALUE (type
);
6332 gimplify_one_sizepos (&val
, pre_p
);
6333 for (t
= type
; t
; t
= TYPE_NEXT_VARIANT (t
))
6334 SET_TYPE_RM_MAX_VALUE (t
, val
);
6344 /* ... fall through ... */
6347 return GS_UNHANDLED
;
6351 /* Generate GIMPLE in place for the statement at *STMT_P. */
6353 static enum gimplify_status
6354 gnat_gimplify_stmt (tree
*stmt_p
)
6356 tree stmt
= *stmt_p
;
6358 switch (TREE_CODE (stmt
))
6361 *stmt_p
= STMT_STMT_STMT (stmt
);
6366 tree gnu_start_label
= create_artificial_label (input_location
);
6367 tree gnu_cond
= LOOP_STMT_COND (stmt
);
6368 tree gnu_update
= LOOP_STMT_UPDATE (stmt
);
6369 tree gnu_end_label
= LOOP_STMT_LABEL (stmt
);
6372 /* Build the condition expression from the test, if any. */
6375 = build3 (COND_EXPR
, void_type_node
, gnu_cond
, alloc_stmt_list (),
6376 build1 (GOTO_EXPR
, void_type_node
, gnu_end_label
));
6378 /* Set to emit the statements of the loop. */
6379 *stmt_p
= NULL_TREE
;
6381 /* We first emit the start label and then a conditional jump to the
6382 end label if there's a top condition, then the update if it's at
6383 the top, then the body of the loop, then a conditional jump to
6384 the end label if there's a bottom condition, then the update if
6385 it's at the bottom, and finally a jump to the start label and the
6386 definition of the end label. */
6387 append_to_statement_list (build1 (LABEL_EXPR
, void_type_node
,
6391 if (gnu_cond
&& !LOOP_STMT_BOTTOM_COND_P (stmt
))
6392 append_to_statement_list (gnu_cond
, stmt_p
);
6394 if (gnu_update
&& LOOP_STMT_TOP_UPDATE_P (stmt
))
6395 append_to_statement_list (gnu_update
, stmt_p
);
6397 append_to_statement_list (LOOP_STMT_BODY (stmt
), stmt_p
);
6399 if (gnu_cond
&& LOOP_STMT_BOTTOM_COND_P (stmt
))
6400 append_to_statement_list (gnu_cond
, stmt_p
);
6402 if (gnu_update
&& !LOOP_STMT_TOP_UPDATE_P (stmt
))
6403 append_to_statement_list (gnu_update
, stmt_p
);
6405 t
= build1 (GOTO_EXPR
, void_type_node
, gnu_start_label
);
6406 SET_EXPR_LOCATION (t
, DECL_SOURCE_LOCATION (gnu_end_label
));
6407 append_to_statement_list (t
, stmt_p
);
6409 append_to_statement_list (build1 (LABEL_EXPR
, void_type_node
,
6416 /* Build a statement to jump to the corresponding end label, then
6417 see if it needs to be conditional. */
6418 *stmt_p
= build1 (GOTO_EXPR
, void_type_node
, EXIT_STMT_LABEL (stmt
));
6419 if (EXIT_STMT_COND (stmt
))
6420 *stmt_p
= build3 (COND_EXPR
, void_type_node
,
6421 EXIT_STMT_COND (stmt
), *stmt_p
, alloc_stmt_list ());
6429 /* Force references to each of the entities in packages withed by GNAT_NODE.
6430 Operate recursively but check that we aren't elaborating something more
6433 This routine is exclusively called in type_annotate mode, to compute DDA
6434 information for types in withed units, for ASIS use. */
6437 elaborate_all_entities (Node_Id gnat_node
)
6439 Entity_Id gnat_with_clause
, gnat_entity
;
6441 /* Process each unit only once. As we trace the context of all relevant
6442 units transitively, including generic bodies, we may encounter the
6443 same generic unit repeatedly. */
6444 if (!present_gnu_tree (gnat_node
))
6445 save_gnu_tree (gnat_node
, integer_zero_node
, true);
6447 /* Save entities in all context units. A body may have an implicit_with
6448 on its own spec, if the context includes a child unit, so don't save
6450 for (gnat_with_clause
= First (Context_Items (gnat_node
));
6451 Present (gnat_with_clause
);
6452 gnat_with_clause
= Next (gnat_with_clause
))
6453 if (Nkind (gnat_with_clause
) == N_With_Clause
6454 && !present_gnu_tree (Library_Unit (gnat_with_clause
))
6455 && Library_Unit (gnat_with_clause
) != Library_Unit (Cunit (Main_Unit
)))
6457 elaborate_all_entities (Library_Unit (gnat_with_clause
));
6459 if (Ekind (Entity (Name (gnat_with_clause
))) == E_Package
)
6461 for (gnat_entity
= First_Entity (Entity (Name (gnat_with_clause
)));
6462 Present (gnat_entity
);
6463 gnat_entity
= Next_Entity (gnat_entity
))
6464 if (Is_Public (gnat_entity
)
6465 && Convention (gnat_entity
) != Convention_Intrinsic
6466 && Ekind (gnat_entity
) != E_Package
6467 && Ekind (gnat_entity
) != E_Package_Body
6468 && Ekind (gnat_entity
) != E_Operator
6469 && !(IN (Ekind (gnat_entity
), Type_Kind
)
6470 && !Is_Frozen (gnat_entity
))
6471 && !((Ekind (gnat_entity
) == E_Procedure
6472 || Ekind (gnat_entity
) == E_Function
)
6473 && Is_Intrinsic_Subprogram (gnat_entity
))
6474 && !IN (Ekind (gnat_entity
), Named_Kind
)
6475 && !IN (Ekind (gnat_entity
), Generic_Unit_Kind
))
6476 gnat_to_gnu_entity (gnat_entity
, NULL_TREE
, 0);
6478 else if (Ekind (Entity (Name (gnat_with_clause
))) == E_Generic_Package
)
6481 = Corresponding_Body (Unit (Library_Unit (gnat_with_clause
)));
6483 /* Retrieve compilation unit node of generic body. */
6484 while (Present (gnat_body
)
6485 && Nkind (gnat_body
) != N_Compilation_Unit
)
6486 gnat_body
= Parent (gnat_body
);
6488 /* If body is available, elaborate its context. */
6489 if (Present (gnat_body
))
6490 elaborate_all_entities (gnat_body
);
6494 if (Nkind (Unit (gnat_node
)) == N_Package_Body
)
6495 elaborate_all_entities (Library_Unit (gnat_node
));
6498 /* Do the processing of GNAT_NODE, an N_Freeze_Entity. */
6501 process_freeze_entity (Node_Id gnat_node
)
6503 const Entity_Id gnat_entity
= Entity (gnat_node
);
6504 const Entity_Kind kind
= Ekind (gnat_entity
);
6505 tree gnu_old
, gnu_new
;
6507 /* If this is a package, we need to generate code for the package. */
6508 if (kind
== E_Package
)
6511 (Parent (Corresponding_Body
6512 (Parent (Declaration_Node (gnat_entity
)))));
6516 /* Don't do anything for class-wide types as they are always transformed
6517 into their root type. */
6518 if (kind
== E_Class_Wide_Type
)
6521 /* Check for an old definition. This freeze node might be for an Itype. */
6523 = present_gnu_tree (gnat_entity
) ? get_gnu_tree (gnat_entity
) : NULL_TREE
;
6525 /* If this entity has an address representation clause, GNU_OLD is the
6526 address, so discard it here. */
6527 if (Present (Address_Clause (gnat_entity
)))
6528 gnu_old
= NULL_TREE
;
6530 /* Don't do anything for subprograms that may have been elaborated before
6531 their freeze nodes. This can happen, for example, because of an inner
6532 call in an instance body or because of previous compilation of a spec
6533 for inlining purposes. */
6535 && ((TREE_CODE (gnu_old
) == FUNCTION_DECL
6536 && (kind
== E_Function
|| kind
== E_Procedure
))
6537 || (TREE_CODE (TREE_TYPE (gnu_old
)) == FUNCTION_TYPE
6538 && kind
== E_Subprogram_Type
)))
6541 /* If we have a non-dummy type old tree, we have nothing to do, except
6542 aborting if this is the public view of a private type whose full view was
6543 not delayed, as this node was never delayed as it should have been. We
6544 let this happen for concurrent types and their Corresponding_Record_Type,
6545 however, because each might legitimately be elaborated before its own
6546 freeze node, e.g. while processing the other. */
6548 && !(TREE_CODE (gnu_old
) == TYPE_DECL
6549 && TYPE_IS_DUMMY_P (TREE_TYPE (gnu_old
))))
6551 gcc_assert ((IN (kind
, Incomplete_Or_Private_Kind
)
6552 && Present (Full_View (gnat_entity
))
6553 && No (Freeze_Node (Full_View (gnat_entity
))))
6554 || Is_Concurrent_Type (gnat_entity
)
6555 || (IN (kind
, Record_Kind
)
6556 && Is_Concurrent_Record_Type (gnat_entity
)));
6560 /* Reset the saved tree, if any, and elaborate the object or type for real.
6561 If there is a full view, elaborate it and use the result. And, if this
6562 is the root type of a class-wide type, reuse it for the latter. */
6565 save_gnu_tree (gnat_entity
, NULL_TREE
, false);
6566 if (IN (kind
, Incomplete_Or_Private_Kind
)
6567 && Present (Full_View (gnat_entity
))
6568 && present_gnu_tree (Full_View (gnat_entity
)))
6569 save_gnu_tree (Full_View (gnat_entity
), NULL_TREE
, false);
6570 if (IN (kind
, Type_Kind
)
6571 && Present (Class_Wide_Type (gnat_entity
))
6572 && Root_Type (Class_Wide_Type (gnat_entity
)) == gnat_entity
)
6573 save_gnu_tree (Class_Wide_Type (gnat_entity
), NULL_TREE
, false);
6576 if (IN (kind
, Incomplete_Or_Private_Kind
)
6577 && Present (Full_View (gnat_entity
)))
6579 gnu_new
= gnat_to_gnu_entity (Full_View (gnat_entity
), NULL_TREE
, 1);
6581 /* Propagate back-annotations from full view to partial view. */
6582 if (Unknown_Alignment (gnat_entity
))
6583 Set_Alignment (gnat_entity
, Alignment (Full_View (gnat_entity
)));
6585 if (Unknown_Esize (gnat_entity
))
6586 Set_Esize (gnat_entity
, Esize (Full_View (gnat_entity
)));
6588 if (Unknown_RM_Size (gnat_entity
))
6589 Set_RM_Size (gnat_entity
, RM_Size (Full_View (gnat_entity
)));
6591 /* The above call may have defined this entity (the simplest example
6592 of this is when we have a private enumeral type since the bounds
6593 will have the public view). */
6594 if (!present_gnu_tree (gnat_entity
))
6595 save_gnu_tree (gnat_entity
, gnu_new
, false);
6600 = (Nkind (Declaration_Node (gnat_entity
)) == N_Object_Declaration
6601 && present_gnu_tree (Declaration_Node (gnat_entity
)))
6602 ? get_gnu_tree (Declaration_Node (gnat_entity
)) : NULL_TREE
;
6604 gnu_new
= gnat_to_gnu_entity (gnat_entity
, gnu_init
, 1);
6607 if (IN (kind
, Type_Kind
)
6608 && Present (Class_Wide_Type (gnat_entity
))
6609 && Root_Type (Class_Wide_Type (gnat_entity
)) == gnat_entity
)
6610 save_gnu_tree (Class_Wide_Type (gnat_entity
), gnu_new
, false);
6612 /* If we have an old type and we've made pointers to this type, update those
6613 pointers. If this is a Taft amendment type in the main unit, we need to
6614 mark the type as used since other units referencing it don't see the full
6615 declaration and, therefore, cannot mark it as used themselves. */
6618 update_pointer_to (TYPE_MAIN_VARIANT (TREE_TYPE (gnu_old
)),
6619 TREE_TYPE (gnu_new
));
6620 if (DECL_TAFT_TYPE_P (gnu_old
))
6621 used_types_insert (TREE_TYPE (gnu_new
));
6625 /* Elaborate decls in the lists GNAT_DECLS and GNAT_DECLS2, if present.
6626 We make two passes, one to elaborate anything other than bodies (but
6627 we declare a function if there was no spec). The second pass
6628 elaborates the bodies.
6630 GNAT_END_LIST gives the element in the list past the end. Normally,
6631 this is Empty, but can be First_Real_Statement for a
6632 Handled_Sequence_Of_Statements.
6634 We make a complete pass through both lists if PASS1P is true, then make
6635 the second pass over both lists if PASS2P is true. The lists usually
6636 correspond to the public and private parts of a package. */
6639 process_decls (List_Id gnat_decls
, List_Id gnat_decls2
,
6640 Node_Id gnat_end_list
, bool pass1p
, bool pass2p
)
6642 List_Id gnat_decl_array
[2];
6646 gnat_decl_array
[0] = gnat_decls
, gnat_decl_array
[1] = gnat_decls2
;
6649 for (i
= 0; i
<= 1; i
++)
6650 if (Present (gnat_decl_array
[i
]))
6651 for (gnat_decl
= First (gnat_decl_array
[i
]);
6652 gnat_decl
!= gnat_end_list
; gnat_decl
= Next (gnat_decl
))
6654 /* For package specs, we recurse inside the declarations,
6655 thus taking the two pass approach inside the boundary. */
6656 if (Nkind (gnat_decl
) == N_Package_Declaration
6657 && (Nkind (Specification (gnat_decl
)
6658 == N_Package_Specification
)))
6659 process_decls (Visible_Declarations (Specification (gnat_decl
)),
6660 Private_Declarations (Specification (gnat_decl
)),
6661 Empty
, true, false);
6663 /* Similarly for any declarations in the actions of a
6665 else if (Nkind (gnat_decl
) == N_Freeze_Entity
)
6667 process_freeze_entity (gnat_decl
);
6668 process_decls (Actions (gnat_decl
), Empty
, Empty
, true, false);
6671 /* Package bodies with freeze nodes get their elaboration deferred
6672 until the freeze node, but the code must be placed in the right
6673 place, so record the code position now. */
6674 else if (Nkind (gnat_decl
) == N_Package_Body
6675 && Present (Freeze_Node (Corresponding_Spec (gnat_decl
))))
6676 record_code_position (gnat_decl
);
6678 else if (Nkind (gnat_decl
) == N_Package_Body_Stub
6679 && Present (Library_Unit (gnat_decl
))
6680 && Present (Freeze_Node
6683 (Library_Unit (gnat_decl
)))))))
6684 record_code_position
6685 (Proper_Body (Unit (Library_Unit (gnat_decl
))));
6687 /* We defer most subprogram bodies to the second pass. */
6688 else if (Nkind (gnat_decl
) == N_Subprogram_Body
)
6690 if (Acts_As_Spec (gnat_decl
))
6692 Node_Id gnat_subprog_id
= Defining_Entity (gnat_decl
);
6694 if (Ekind (gnat_subprog_id
) != E_Generic_Procedure
6695 && Ekind (gnat_subprog_id
) != E_Generic_Function
)
6696 gnat_to_gnu_entity (gnat_subprog_id
, NULL_TREE
, 1);
6700 /* For bodies and stubs that act as their own specs, the entity
6701 itself must be elaborated in the first pass, because it may
6702 be used in other declarations. */
6703 else if (Nkind (gnat_decl
) == N_Subprogram_Body_Stub
)
6705 Node_Id gnat_subprog_id
6706 = Defining_Entity (Specification (gnat_decl
));
6708 if (Ekind (gnat_subprog_id
) != E_Subprogram_Body
6709 && Ekind (gnat_subprog_id
) != E_Generic_Procedure
6710 && Ekind (gnat_subprog_id
) != E_Generic_Function
)
6711 gnat_to_gnu_entity (gnat_subprog_id
, NULL_TREE
, 1);
6714 /* Concurrent stubs stand for the corresponding subprogram bodies,
6715 which are deferred like other bodies. */
6716 else if (Nkind (gnat_decl
) == N_Task_Body_Stub
6717 || Nkind (gnat_decl
) == N_Protected_Body_Stub
)
6721 add_stmt (gnat_to_gnu (gnat_decl
));
6724 /* Here we elaborate everything we deferred above except for package bodies,
6725 which are elaborated at their freeze nodes. Note that we must also
6726 go inside things (package specs and freeze nodes) the first pass did. */
6728 for (i
= 0; i
<= 1; i
++)
6729 if (Present (gnat_decl_array
[i
]))
6730 for (gnat_decl
= First (gnat_decl_array
[i
]);
6731 gnat_decl
!= gnat_end_list
; gnat_decl
= Next (gnat_decl
))
6733 if (Nkind (gnat_decl
) == N_Subprogram_Body
6734 || Nkind (gnat_decl
) == N_Subprogram_Body_Stub
6735 || Nkind (gnat_decl
) == N_Task_Body_Stub
6736 || Nkind (gnat_decl
) == N_Protected_Body_Stub
)
6737 add_stmt (gnat_to_gnu (gnat_decl
));
6739 else if (Nkind (gnat_decl
) == N_Package_Declaration
6740 && (Nkind (Specification (gnat_decl
)
6741 == N_Package_Specification
)))
6742 process_decls (Visible_Declarations (Specification (gnat_decl
)),
6743 Private_Declarations (Specification (gnat_decl
)),
6744 Empty
, false, true);
6746 else if (Nkind (gnat_decl
) == N_Freeze_Entity
)
6747 process_decls (Actions (gnat_decl
), Empty
, Empty
, false, true);
6751 /* Make a unary operation of kind CODE using build_unary_op, but guard
6752 the operation by an overflow check. CODE can be one of NEGATE_EXPR
6753 or ABS_EXPR. GNU_TYPE is the type desired for the result. Usually
6754 the operation is to be performed in that type. GNAT_NODE is the gnat
6755 node conveying the source location for which the error should be
6759 build_unary_op_trapv (enum tree_code code
, tree gnu_type
, tree operand
,
6762 gcc_assert (code
== NEGATE_EXPR
|| code
== ABS_EXPR
);
6764 operand
= gnat_protect_expr (operand
);
6766 return emit_check (build_binary_op (EQ_EXPR
, boolean_type_node
,
6767 operand
, TYPE_MIN_VALUE (gnu_type
)),
6768 build_unary_op (code
, gnu_type
, operand
),
6769 CE_Overflow_Check_Failed
, gnat_node
);
6772 /* Make a binary operation of kind CODE using build_binary_op, but guard
6773 the operation by an overflow check. CODE can be one of PLUS_EXPR,
6774 MINUS_EXPR or MULT_EXPR. GNU_TYPE is the type desired for the result.
6775 Usually the operation is to be performed in that type. GNAT_NODE is
6776 the GNAT node conveying the source location for which the error should
6780 build_binary_op_trapv (enum tree_code code
, tree gnu_type
, tree left
,
6781 tree right
, Node_Id gnat_node
)
6783 tree lhs
= gnat_protect_expr (left
);
6784 tree rhs
= gnat_protect_expr (right
);
6785 tree type_max
= TYPE_MAX_VALUE (gnu_type
);
6786 tree type_min
= TYPE_MIN_VALUE (gnu_type
);
6789 tree zero
= convert (gnu_type
, integer_zero_node
);
6794 int precision
= TYPE_PRECISION (gnu_type
);
6796 gcc_assert (!(precision
& (precision
- 1))); /* ensure power of 2 */
6798 /* Prefer a constant or known-positive rhs to simplify checks. */
6799 if (!TREE_CONSTANT (rhs
)
6800 && commutative_tree_code (code
)
6801 && (TREE_CONSTANT (lhs
) || (!tree_expr_nonnegative_p (rhs
)
6802 && tree_expr_nonnegative_p (lhs
))))
6809 rhs_lt_zero
= tree_expr_nonnegative_p (rhs
)
6810 ? boolean_false_node
6811 : build_binary_op (LT_EXPR
, boolean_type_node
, rhs
, zero
);
6813 /* ??? Should use more efficient check for operand_equal_p (lhs, rhs, 0) */
6815 /* Try a few strategies that may be cheaper than the general
6816 code at the end of the function, if the rhs is not known.
6818 - Call library function for 64-bit multiplication (complex)
6819 - Widen, if input arguments are sufficiently small
6820 - Determine overflow using wrapped result for addition/subtraction. */
6822 if (!TREE_CONSTANT (rhs
))
6824 /* Even for add/subtract double size to get another base type. */
6825 int needed_precision
= precision
* 2;
6827 if (code
== MULT_EXPR
&& precision
== 64)
6829 tree int_64
= gnat_type_for_size (64, 0);
6831 return convert (gnu_type
, build_call_2_expr (mulv64_decl
,
6832 convert (int_64
, lhs
),
6833 convert (int_64
, rhs
)));
6836 else if (needed_precision
<= BITS_PER_WORD
6837 || (code
== MULT_EXPR
6838 && needed_precision
<= LONG_LONG_TYPE_SIZE
))
6840 tree wide_type
= gnat_type_for_size (needed_precision
, 0);
6842 tree wide_result
= build_binary_op (code
, wide_type
,
6843 convert (wide_type
, lhs
),
6844 convert (wide_type
, rhs
));
6846 tree check
= build_binary_op
6847 (TRUTH_ORIF_EXPR
, boolean_type_node
,
6848 build_binary_op (LT_EXPR
, boolean_type_node
, wide_result
,
6849 convert (wide_type
, type_min
)),
6850 build_binary_op (GT_EXPR
, boolean_type_node
, wide_result
,
6851 convert (wide_type
, type_max
)));
6853 tree result
= convert (gnu_type
, wide_result
);
6856 emit_check (check
, result
, CE_Overflow_Check_Failed
, gnat_node
);
6859 else if (code
== PLUS_EXPR
|| code
== MINUS_EXPR
)
6861 tree unsigned_type
= gnat_type_for_size (precision
, 1);
6862 tree wrapped_expr
= convert
6863 (gnu_type
, build_binary_op (code
, unsigned_type
,
6864 convert (unsigned_type
, lhs
),
6865 convert (unsigned_type
, rhs
)));
6867 tree result
= convert
6868 (gnu_type
, build_binary_op (code
, gnu_type
, lhs
, rhs
));
6870 /* Overflow when (rhs < 0) ^ (wrapped_expr < lhs)), for addition
6871 or when (rhs < 0) ^ (wrapped_expr > lhs) for subtraction. */
6872 tree check
= build_binary_op
6873 (TRUTH_XOR_EXPR
, boolean_type_node
, rhs_lt_zero
,
6874 build_binary_op (code
== PLUS_EXPR
? LT_EXPR
: GT_EXPR
,
6875 boolean_type_node
, wrapped_expr
, lhs
));
6878 emit_check (check
, result
, CE_Overflow_Check_Failed
, gnat_node
);
6885 /* When rhs >= 0, overflow when lhs > type_max - rhs. */
6886 check_pos
= build_binary_op (GT_EXPR
, boolean_type_node
, lhs
,
6887 build_binary_op (MINUS_EXPR
, gnu_type
,
6890 /* When rhs < 0, overflow when lhs < type_min - rhs. */
6891 check_neg
= build_binary_op (LT_EXPR
, boolean_type_node
, lhs
,
6892 build_binary_op (MINUS_EXPR
, gnu_type
,
6897 /* When rhs >= 0, overflow when lhs < type_min + rhs. */
6898 check_pos
= build_binary_op (LT_EXPR
, boolean_type_node
, lhs
,
6899 build_binary_op (PLUS_EXPR
, gnu_type
,
6902 /* When rhs < 0, overflow when lhs > type_max + rhs. */
6903 check_neg
= build_binary_op (GT_EXPR
, boolean_type_node
, lhs
,
6904 build_binary_op (PLUS_EXPR
, gnu_type
,
6909 /* The check here is designed to be efficient if the rhs is constant,
6910 but it will work for any rhs by using integer division.
6911 Four different check expressions determine whether X * C overflows,
6914 C > 0 => X > type_max / C || X < type_min / C
6915 C == -1 => X == type_min
6916 C < -1 => X > type_min / C || X < type_max / C */
6918 tmp1
= build_binary_op (TRUNC_DIV_EXPR
, gnu_type
, type_max
, rhs
);
6919 tmp2
= build_binary_op (TRUNC_DIV_EXPR
, gnu_type
, type_min
, rhs
);
6922 = build_binary_op (TRUTH_ANDIF_EXPR
, boolean_type_node
,
6923 build_binary_op (NE_EXPR
, boolean_type_node
, zero
,
6925 build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
,
6926 build_binary_op (GT_EXPR
,
6929 build_binary_op (LT_EXPR
,
6934 = fold_build3 (COND_EXPR
, boolean_type_node
,
6935 build_binary_op (EQ_EXPR
, boolean_type_node
, rhs
,
6936 build_int_cst (gnu_type
, -1)),
6937 build_binary_op (EQ_EXPR
, boolean_type_node
, lhs
,
6939 build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
,
6940 build_binary_op (GT_EXPR
,
6943 build_binary_op (LT_EXPR
,
6952 gnu_expr
= build_binary_op (code
, gnu_type
, lhs
, rhs
);
6954 /* If we can fold the expression to a constant, just return it.
6955 The caller will deal with overflow, no need to generate a check. */
6956 if (TREE_CONSTANT (gnu_expr
))
6959 check
= fold_build3 (COND_EXPR
, boolean_type_node
, rhs_lt_zero
, check_neg
,
6962 return emit_check (check
, gnu_expr
, CE_Overflow_Check_Failed
, gnat_node
);
6965 /* Emit code for a range check. GNU_EXPR is the expression to be checked,
6966 GNAT_RANGE_TYPE the gnat type or subtype containing the bounds against
6967 which we have to check. GNAT_NODE is the GNAT node conveying the source
6968 location for which the error should be signaled. */
6971 emit_range_check (tree gnu_expr
, Entity_Id gnat_range_type
, Node_Id gnat_node
)
6973 tree gnu_range_type
= get_unpadded_type (gnat_range_type
);
6974 tree gnu_low
= TYPE_MIN_VALUE (gnu_range_type
);
6975 tree gnu_high
= TYPE_MAX_VALUE (gnu_range_type
);
6976 tree gnu_compare_type
= get_base_type (TREE_TYPE (gnu_expr
));
6978 /* If GNU_EXPR has GNAT_RANGE_TYPE as its base type, no check is needed.
6979 This can for example happen when translating 'Val or 'Value. */
6980 if (gnu_compare_type
== gnu_range_type
)
6983 /* If GNU_EXPR has an integral type that is narrower than GNU_RANGE_TYPE,
6984 we can't do anything since we might be truncating the bounds. No
6985 check is needed in this case. */
6986 if (INTEGRAL_TYPE_P (TREE_TYPE (gnu_expr
))
6987 && (TYPE_PRECISION (gnu_compare_type
)
6988 < TYPE_PRECISION (get_base_type (gnu_range_type
))))
6991 /* Checked expressions must be evaluated only once. */
6992 gnu_expr
= gnat_protect_expr (gnu_expr
);
6994 /* Note that the form of the check is
6995 (not (expr >= lo)) or (not (expr <= hi))
6996 the reason for this slightly convoluted form is that NaNs
6997 are not considered to be in range in the float case. */
6999 (build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
,
7001 (build_binary_op (GE_EXPR
, boolean_type_node
,
7002 convert (gnu_compare_type
, gnu_expr
),
7003 convert (gnu_compare_type
, gnu_low
))),
7005 (build_binary_op (LE_EXPR
, boolean_type_node
,
7006 convert (gnu_compare_type
, gnu_expr
),
7007 convert (gnu_compare_type
,
7009 gnu_expr
, CE_Range_Check_Failed
, gnat_node
);
7012 /* Emit code for an index check. GNU_ARRAY_OBJECT is the array object which
7013 we are about to index, GNU_EXPR is the index expression to be checked,
7014 GNU_LOW and GNU_HIGH are the lower and upper bounds against which GNU_EXPR
7015 has to be checked. Note that for index checking we cannot simply use the
7016 emit_range_check function (although very similar code needs to be generated
7017 in both cases) since for index checking the array type against which we are
7018 checking the indices may be unconstrained and consequently we need to get
7019 the actual index bounds from the array object itself (GNU_ARRAY_OBJECT).
7020 The place where we need to do that is in subprograms having unconstrained
7021 array formal parameters. GNAT_NODE is the GNAT node conveying the source
7022 location for which the error should be signaled. */
7025 emit_index_check (tree gnu_array_object
, tree gnu_expr
, tree gnu_low
,
7026 tree gnu_high
, Node_Id gnat_node
)
7028 tree gnu_expr_check
;
7030 /* Checked expressions must be evaluated only once. */
7031 gnu_expr
= gnat_protect_expr (gnu_expr
);
7033 /* Must do this computation in the base type in case the expression's
7034 type is an unsigned subtypes. */
7035 gnu_expr_check
= convert (get_base_type (TREE_TYPE (gnu_expr
)), gnu_expr
);
7037 /* If GNU_LOW or GNU_HIGH are a PLACEHOLDER_EXPR, qualify them by
7038 the object we are handling. */
7039 gnu_low
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (gnu_low
, gnu_array_object
);
7040 gnu_high
= SUBSTITUTE_PLACEHOLDER_IN_EXPR (gnu_high
, gnu_array_object
);
7043 (build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
,
7044 build_binary_op (LT_EXPR
, boolean_type_node
,
7046 convert (TREE_TYPE (gnu_expr_check
),
7048 build_binary_op (GT_EXPR
, boolean_type_node
,
7050 convert (TREE_TYPE (gnu_expr_check
),
7052 gnu_expr
, CE_Index_Check_Failed
, gnat_node
);
7055 /* GNU_COND contains the condition corresponding to an access, discriminant or
7056 range check of value GNU_EXPR. Build a COND_EXPR that returns GNU_EXPR if
7057 GNU_COND is false and raises a CONSTRAINT_ERROR if GNU_COND is true.
7058 REASON is the code that says why the exception was raised. GNAT_NODE is
7059 the GNAT node conveying the source location for which the error should be
7063 emit_check (tree gnu_cond
, tree gnu_expr
, int reason
, Node_Id gnat_node
)
7066 = build_call_raise (reason
, gnat_node
, N_Raise_Constraint_Error
);
7068 = fold_build3 (COND_EXPR
, TREE_TYPE (gnu_expr
), gnu_cond
,
7069 build2 (COMPOUND_EXPR
, TREE_TYPE (gnu_expr
), gnu_call
,
7070 convert (TREE_TYPE (gnu_expr
), integer_zero_node
)),
7073 /* GNU_RESULT has side effects if and only if GNU_EXPR has:
7074 we don't need to evaluate it just for the check. */
7075 TREE_SIDE_EFFECTS (gnu_result
) = TREE_SIDE_EFFECTS (gnu_expr
);
7080 /* Return an expression that converts GNU_EXPR to GNAT_TYPE, doing overflow
7081 checks if OVERFLOW_P is true and range checks if RANGE_P is true.
7082 GNAT_TYPE is known to be an integral type. If TRUNCATE_P true, do a
7083 float to integer conversion with truncation; otherwise round.
7084 GNAT_NODE is the GNAT node conveying the source location for which the
7085 error should be signaled. */
7088 convert_with_check (Entity_Id gnat_type
, tree gnu_expr
, bool overflowp
,
7089 bool rangep
, bool truncatep
, Node_Id gnat_node
)
7091 tree gnu_type
= get_unpadded_type (gnat_type
);
7092 tree gnu_in_type
= TREE_TYPE (gnu_expr
);
7093 tree gnu_in_basetype
= get_base_type (gnu_in_type
);
7094 tree gnu_base_type
= get_base_type (gnu_type
);
7095 tree gnu_result
= gnu_expr
;
7097 /* If we are not doing any checks, the output is an integral type, and
7098 the input is not a floating type, just do the conversion. This
7099 shortcut is required to avoid problems with packed array types
7100 and simplifies code in all cases anyway. */
7101 if (!rangep
&& !overflowp
&& INTEGRAL_TYPE_P (gnu_base_type
)
7102 && !FLOAT_TYPE_P (gnu_in_type
))
7103 return convert (gnu_type
, gnu_expr
);
7105 /* First convert the expression to its base type. This
7106 will never generate code, but makes the tests below much simpler.
7107 But don't do this if converting from an integer type to an unconstrained
7108 array type since then we need to get the bounds from the original
7110 if (TREE_CODE (gnu_type
) != UNCONSTRAINED_ARRAY_TYPE
)
7111 gnu_result
= convert (gnu_in_basetype
, gnu_result
);
7113 /* If overflow checks are requested, we need to be sure the result will
7114 fit in the output base type. But don't do this if the input
7115 is integer and the output floating-point. */
7117 && !(FLOAT_TYPE_P (gnu_base_type
) && INTEGRAL_TYPE_P (gnu_in_basetype
)))
7119 /* Ensure GNU_EXPR only gets evaluated once. */
7120 tree gnu_input
= gnat_protect_expr (gnu_result
);
7121 tree gnu_cond
= integer_zero_node
;
7122 tree gnu_in_lb
= TYPE_MIN_VALUE (gnu_in_basetype
);
7123 tree gnu_in_ub
= TYPE_MAX_VALUE (gnu_in_basetype
);
7124 tree gnu_out_lb
= TYPE_MIN_VALUE (gnu_base_type
);
7125 tree gnu_out_ub
= TYPE_MAX_VALUE (gnu_base_type
);
7127 /* Convert the lower bounds to signed types, so we're sure we're
7128 comparing them properly. Likewise, convert the upper bounds
7129 to unsigned types. */
7130 if (INTEGRAL_TYPE_P (gnu_in_basetype
) && TYPE_UNSIGNED (gnu_in_basetype
))
7131 gnu_in_lb
= convert (gnat_signed_type (gnu_in_basetype
), gnu_in_lb
);
7133 if (INTEGRAL_TYPE_P (gnu_in_basetype
)
7134 && !TYPE_UNSIGNED (gnu_in_basetype
))
7135 gnu_in_ub
= convert (gnat_unsigned_type (gnu_in_basetype
), gnu_in_ub
);
7137 if (INTEGRAL_TYPE_P (gnu_base_type
) && TYPE_UNSIGNED (gnu_base_type
))
7138 gnu_out_lb
= convert (gnat_signed_type (gnu_base_type
), gnu_out_lb
);
7140 if (INTEGRAL_TYPE_P (gnu_base_type
) && !TYPE_UNSIGNED (gnu_base_type
))
7141 gnu_out_ub
= convert (gnat_unsigned_type (gnu_base_type
), gnu_out_ub
);
7143 /* Check each bound separately and only if the result bound
7144 is tighter than the bound on the input type. Note that all the
7145 types are base types, so the bounds must be constant. Also,
7146 the comparison is done in the base type of the input, which
7147 always has the proper signedness. First check for input
7148 integer (which means output integer), output float (which means
7149 both float), or mixed, in which case we always compare.
7150 Note that we have to do the comparison which would *fail* in the
7151 case of an error since if it's an FP comparison and one of the
7152 values is a NaN or Inf, the comparison will fail. */
7153 if (INTEGRAL_TYPE_P (gnu_in_basetype
)
7154 ? tree_int_cst_lt (gnu_in_lb
, gnu_out_lb
)
7155 : (FLOAT_TYPE_P (gnu_base_type
)
7156 ? REAL_VALUES_LESS (TREE_REAL_CST (gnu_in_lb
),
7157 TREE_REAL_CST (gnu_out_lb
))
7161 (build_binary_op (GE_EXPR
, boolean_type_node
,
7162 gnu_input
, convert (gnu_in_basetype
,
7165 if (INTEGRAL_TYPE_P (gnu_in_basetype
)
7166 ? tree_int_cst_lt (gnu_out_ub
, gnu_in_ub
)
7167 : (FLOAT_TYPE_P (gnu_base_type
)
7168 ? REAL_VALUES_LESS (TREE_REAL_CST (gnu_out_ub
),
7169 TREE_REAL_CST (gnu_in_lb
))
7172 = build_binary_op (TRUTH_ORIF_EXPR
, boolean_type_node
, gnu_cond
,
7174 (build_binary_op (LE_EXPR
, boolean_type_node
,
7176 convert (gnu_in_basetype
,
7179 if (!integer_zerop (gnu_cond
))
7180 gnu_result
= emit_check (gnu_cond
, gnu_input
,
7181 CE_Overflow_Check_Failed
, gnat_node
);
7184 /* Now convert to the result base type. If this is a non-truncating
7185 float-to-integer conversion, round. */
7186 if (INTEGRAL_TYPE_P (gnu_base_type
) && FLOAT_TYPE_P (gnu_in_basetype
)
7189 REAL_VALUE_TYPE half_minus_pred_half
, pred_half
;
7190 tree gnu_conv
, gnu_zero
, gnu_comp
, calc_type
;
7191 tree gnu_pred_half
, gnu_add_pred_half
, gnu_subtract_pred_half
;
7192 const struct real_format
*fmt
;
7194 /* The following calculations depend on proper rounding to even
7195 of each arithmetic operation. In order to prevent excess
7196 precision from spoiling this property, use the widest hardware
7197 floating-point type if FP_ARITH_MAY_WIDEN is true. */
7199 = FP_ARITH_MAY_WIDEN
? longest_float_type_node
: gnu_in_basetype
;
7201 /* FIXME: Should not have padding in the first place. */
7202 if (TYPE_IS_PADDING_P (calc_type
))
7203 calc_type
= TREE_TYPE (TYPE_FIELDS (calc_type
));
7205 /* Compute the exact value calc_type'Pred (0.5) at compile time. */
7206 fmt
= REAL_MODE_FORMAT (TYPE_MODE (calc_type
));
7207 real_2expN (&half_minus_pred_half
, -(fmt
->p
) - 1, TYPE_MODE (calc_type
));
7208 REAL_ARITHMETIC (pred_half
, MINUS_EXPR
, dconsthalf
,
7209 half_minus_pred_half
);
7210 gnu_pred_half
= build_real (calc_type
, pred_half
);
7212 /* If the input is strictly negative, subtract this value
7213 and otherwise add it from the input. For 0.5, the result
7214 is exactly between 1.0 and the machine number preceding 1.0
7215 (for calc_type). Since the last bit of 1.0 is even, this 0.5
7216 will round to 1.0, while all other number with an absolute
7217 value less than 0.5 round to 0.0. For larger numbers exactly
7218 halfway between integers, rounding will always be correct as
7219 the true mathematical result will be closer to the higher
7220 integer compared to the lower one. So, this constant works
7221 for all floating-point numbers.
7223 The reason to use the same constant with subtract/add instead
7224 of a positive and negative constant is to allow the comparison
7225 to be scheduled in parallel with retrieval of the constant and
7226 conversion of the input to the calc_type (if necessary). */
7228 gnu_zero
= convert (gnu_in_basetype
, integer_zero_node
);
7229 gnu_result
= gnat_protect_expr (gnu_result
);
7230 gnu_conv
= convert (calc_type
, gnu_result
);
7232 = fold_build2 (GE_EXPR
, boolean_type_node
, gnu_result
, gnu_zero
);
7234 = fold_build2 (PLUS_EXPR
, calc_type
, gnu_conv
, gnu_pred_half
);
7235 gnu_subtract_pred_half
7236 = fold_build2 (MINUS_EXPR
, calc_type
, gnu_conv
, gnu_pred_half
);
7237 gnu_result
= fold_build3 (COND_EXPR
, calc_type
, gnu_comp
,
7238 gnu_add_pred_half
, gnu_subtract_pred_half
);
7241 if (TREE_CODE (gnu_base_type
) == INTEGER_TYPE
7242 && TYPE_HAS_ACTUAL_BOUNDS_P (gnu_base_type
)
7243 && TREE_CODE (gnu_result
) == UNCONSTRAINED_ARRAY_REF
)
7244 gnu_result
= unchecked_convert (gnu_base_type
, gnu_result
, false);
7246 gnu_result
= convert (gnu_base_type
, gnu_result
);
7248 /* Finally, do the range check if requested. Note that if the result type
7249 is a modular type, the range check is actually an overflow check. */
7251 || (TREE_CODE (gnu_base_type
) == INTEGER_TYPE
7252 && TYPE_MODULAR_P (gnu_base_type
) && overflowp
))
7253 gnu_result
= emit_range_check (gnu_result
, gnat_type
, gnat_node
);
7255 return convert (gnu_type
, gnu_result
);
7258 /* Return true if GNU_EXPR can be directly addressed. This is the case
7259 unless it is an expression involving computation or if it involves a
7260 reference to a bitfield or to an object not sufficiently aligned for
7261 its type. If GNU_TYPE is non-null, return true only if GNU_EXPR can
7262 be directly addressed as an object of this type.
7264 *** Notes on addressability issues in the Ada compiler ***
7266 This predicate is necessary in order to bridge the gap between Gigi
7267 and the middle-end about addressability of GENERIC trees. A tree
7268 is said to be addressable if it can be directly addressed, i.e. if
7269 its address can be taken, is a multiple of the type's alignment on
7270 strict-alignment architectures and returns the first storage unit
7271 assigned to the object represented by the tree.
7273 In the C family of languages, everything is in practice addressable
7274 at the language level, except for bit-fields. This means that these
7275 compilers will take the address of any tree that doesn't represent
7276 a bit-field reference and expect the result to be the first storage
7277 unit assigned to the object. Even in cases where this will result
7278 in unaligned accesses at run time, nothing is supposed to be done
7279 and the program is considered as erroneous instead (see PR c/18287).
7281 The implicit assumptions made in the middle-end are in keeping with
7282 the C viewpoint described above:
7283 - the address of a bit-field reference is supposed to be never
7284 taken; the compiler (generally) will stop on such a construct,
7285 - any other tree is addressable if it is formally addressable,
7286 i.e. if it is formally allowed to be the operand of ADDR_EXPR.
7288 In Ada, the viewpoint is the opposite one: nothing is addressable
7289 at the language level unless explicitly declared so. This means
7290 that the compiler will both make sure that the trees representing
7291 references to addressable ("aliased" in Ada parlance) objects are
7292 addressable and make no real attempts at ensuring that the trees
7293 representing references to non-addressable objects are addressable.
7295 In the first case, Ada is effectively equivalent to C and handing
7296 down the direct result of applying ADDR_EXPR to these trees to the
7297 middle-end works flawlessly. In the second case, Ada cannot afford
7298 to consider the program as erroneous if the address of trees that
7299 are not addressable is requested for technical reasons, unlike C;
7300 as a consequence, the Ada compiler must arrange for either making
7301 sure that this address is not requested in the middle-end or for
7302 compensating by inserting temporaries if it is requested in Gigi.
7304 The first goal can be achieved because the middle-end should not
7305 request the address of non-addressable trees on its own; the only
7306 exception is for the invocation of low-level block operations like
7307 memcpy, for which the addressability requirements are lower since
7308 the type's alignment can be disregarded. In practice, this means
7309 that Gigi must make sure that such operations cannot be applied to
7310 non-BLKmode bit-fields.
7312 The second goal is achieved by means of the addressable_p predicate,
7313 which computes whether a temporary must be inserted by Gigi when the
7314 address of a tree is requested; if so, the address of the temporary
7315 will be used in lieu of that of the original tree and some glue code
7316 generated to connect everything together. */
7319 addressable_p (tree gnu_expr
, tree gnu_type
)
7321 /* For an integral type, the size of the actual type of the object may not
7322 be greater than that of the expected type, otherwise an indirect access
7323 in the latter type wouldn't correctly set all the bits of the object. */
7325 && INTEGRAL_TYPE_P (gnu_type
)
7326 && smaller_form_type_p (gnu_type
, TREE_TYPE (gnu_expr
)))
7329 /* The size of the actual type of the object may not be smaller than that
7330 of the expected type, otherwise an indirect access in the latter type
7331 would be larger than the object. But only record types need to be
7332 considered in practice for this case. */
7334 && TREE_CODE (gnu_type
) == RECORD_TYPE
7335 && smaller_form_type_p (TREE_TYPE (gnu_expr
), gnu_type
))
7338 switch (TREE_CODE (gnu_expr
))
7344 /* All DECLs are addressable: if they are in a register, we can force
7348 case UNCONSTRAINED_ARRAY_REF
:
7350 /* Taking the address of a dereference yields the original pointer. */
7355 /* Taking the address yields a pointer to the constant pool. */
7359 /* Taking the address of a static constructor yields a pointer to the
7360 tree constant pool. */
7361 return TREE_STATIC (gnu_expr
) ? true : false;
7372 /* All rvalues are deemed addressable since taking their address will
7373 force a temporary to be created by the middle-end. */
7377 /* The address of a compound expression is that of its 2nd operand. */
7378 return addressable_p (TREE_OPERAND (gnu_expr
, 1), gnu_type
);
7381 /* We accept &COND_EXPR as soon as both operands are addressable and
7382 expect the outcome to be the address of the selected operand. */
7383 return (addressable_p (TREE_OPERAND (gnu_expr
, 1), NULL_TREE
)
7384 && addressable_p (TREE_OPERAND (gnu_expr
, 2), NULL_TREE
));
7387 return (((!DECL_BIT_FIELD (TREE_OPERAND (gnu_expr
, 1))
7388 /* Even with DECL_BIT_FIELD cleared, we have to ensure that
7389 the field is sufficiently aligned, in case it is subject
7390 to a pragma Component_Alignment. But we don't need to
7391 check the alignment of the containing record, as it is
7392 guaranteed to be not smaller than that of its most
7393 aligned field that is not a bit-field. */
7394 && (!STRICT_ALIGNMENT
7395 || DECL_ALIGN (TREE_OPERAND (gnu_expr
, 1))
7396 >= TYPE_ALIGN (TREE_TYPE (gnu_expr
))))
7397 /* The field of a padding record is always addressable. */
7398 || TYPE_PADDING_P (TREE_TYPE (TREE_OPERAND (gnu_expr
, 0))))
7399 && addressable_p (TREE_OPERAND (gnu_expr
, 0), NULL_TREE
));
7401 case ARRAY_REF
: case ARRAY_RANGE_REF
:
7402 case REALPART_EXPR
: case IMAGPART_EXPR
:
7404 return addressable_p (TREE_OPERAND (gnu_expr
, 0), NULL_TREE
);
7407 return (AGGREGATE_TYPE_P (TREE_TYPE (gnu_expr
))
7408 && addressable_p (TREE_OPERAND (gnu_expr
, 0), NULL_TREE
));
7410 case VIEW_CONVERT_EXPR
:
7412 /* This is addressable if we can avoid a copy. */
7413 tree type
= TREE_TYPE (gnu_expr
);
7414 tree inner_type
= TREE_TYPE (TREE_OPERAND (gnu_expr
, 0));
7415 return (((TYPE_MODE (type
) == TYPE_MODE (inner_type
)
7416 && (!STRICT_ALIGNMENT
7417 || TYPE_ALIGN (type
) <= TYPE_ALIGN (inner_type
)
7418 || TYPE_ALIGN (inner_type
) >= BIGGEST_ALIGNMENT
))
7419 || ((TYPE_MODE (type
) == BLKmode
7420 || TYPE_MODE (inner_type
) == BLKmode
)
7421 && (!STRICT_ALIGNMENT
7422 || TYPE_ALIGN (type
) <= TYPE_ALIGN (inner_type
)
7423 || TYPE_ALIGN (inner_type
) >= BIGGEST_ALIGNMENT
7424 || TYPE_ALIGN_OK (type
)
7425 || TYPE_ALIGN_OK (inner_type
))))
7426 && addressable_p (TREE_OPERAND (gnu_expr
, 0), NULL_TREE
));
7434 /* Do the processing for the declaration of a GNAT_ENTITY, a type. If
7435 a separate Freeze node exists, delay the bulk of the processing. Otherwise
7436 make a GCC type for GNAT_ENTITY and set up the correspondence. */
7439 process_type (Entity_Id gnat_entity
)
7442 = present_gnu_tree (gnat_entity
) ? get_gnu_tree (gnat_entity
) : 0;
7445 /* If we are to delay elaboration of this type, just do any
7446 elaborations needed for expressions within the declaration and
7447 make a dummy type entry for this node and its Full_View (if
7448 any) in case something points to it. Don't do this if it
7449 has already been done (the only way that can happen is if
7450 the private completion is also delayed). */
7451 if (Present (Freeze_Node (gnat_entity
))
7452 || (IN (Ekind (gnat_entity
), Incomplete_Or_Private_Kind
)
7453 && Present (Full_View (gnat_entity
))
7454 && Freeze_Node (Full_View (gnat_entity
))
7455 && !present_gnu_tree (Full_View (gnat_entity
))))
7457 elaborate_entity (gnat_entity
);
7461 tree gnu_decl
= TYPE_STUB_DECL (make_dummy_type (gnat_entity
));
7462 save_gnu_tree (gnat_entity
, gnu_decl
, false);
7463 if (IN (Ekind (gnat_entity
), Incomplete_Or_Private_Kind
)
7464 && Present (Full_View (gnat_entity
)))
7466 if (Has_Completion_In_Body (gnat_entity
))
7467 DECL_TAFT_TYPE_P (gnu_decl
) = 1;
7468 save_gnu_tree (Full_View (gnat_entity
), gnu_decl
, false);
7475 /* If we saved away a dummy type for this node it means that this
7476 made the type that corresponds to the full type of an incomplete
7477 type. Clear that type for now and then update the type in the
7481 gcc_assert (TREE_CODE (gnu_old
) == TYPE_DECL
7482 && TYPE_IS_DUMMY_P (TREE_TYPE (gnu_old
)));
7484 save_gnu_tree (gnat_entity
, NULL_TREE
, false);
7487 /* Now fully elaborate the type. */
7488 gnu_new
= gnat_to_gnu_entity (gnat_entity
, NULL_TREE
, 1);
7489 gcc_assert (TREE_CODE (gnu_new
) == TYPE_DECL
);
7491 /* If we have an old type and we've made pointers to this type, update those
7492 pointers. If this is a Taft amendment type in the main unit, we need to
7493 mark the type as used since other units referencing it don't see the full
7494 declaration and, therefore, cannot mark it as used themselves. */
7497 update_pointer_to (TYPE_MAIN_VARIANT (TREE_TYPE (gnu_old
)),
7498 TREE_TYPE (gnu_new
));
7499 if (DECL_TAFT_TYPE_P (gnu_old
))
7500 used_types_insert (TREE_TYPE (gnu_new
));
7503 /* If this is a record type corresponding to a task or protected type
7504 that is a completion of an incomplete type, perform a similar update
7505 on the type. ??? Including protected types here is a guess. */
7506 if (IN (Ekind (gnat_entity
), Record_Kind
)
7507 && Is_Concurrent_Record_Type (gnat_entity
)
7508 && present_gnu_tree (Corresponding_Concurrent_Type (gnat_entity
)))
7511 = get_gnu_tree (Corresponding_Concurrent_Type (gnat_entity
));
7513 save_gnu_tree (Corresponding_Concurrent_Type (gnat_entity
),
7515 save_gnu_tree (Corresponding_Concurrent_Type (gnat_entity
),
7518 update_pointer_to (TYPE_MAIN_VARIANT (TREE_TYPE (gnu_task_old
)),
7519 TREE_TYPE (gnu_new
));
7523 /* GNAT_ENTITY is the type of the resulting constructors,
7524 GNAT_ASSOC is the front of the Component_Associations of an N_Aggregate,
7525 and GNU_TYPE is the GCC type of the corresponding record.
7527 Return a CONSTRUCTOR to build the record. */
7530 assoc_to_constructor (Entity_Id gnat_entity
, Node_Id gnat_assoc
, tree gnu_type
)
7532 tree gnu_list
, gnu_result
;
7534 /* We test for GNU_FIELD being empty in the case where a variant
7535 was the last thing since we don't take things off GNAT_ASSOC in
7536 that case. We check GNAT_ASSOC in case we have a variant, but it
7539 for (gnu_list
= NULL_TREE
; Present (gnat_assoc
);
7540 gnat_assoc
= Next (gnat_assoc
))
7542 Node_Id gnat_field
= First (Choices (gnat_assoc
));
7543 tree gnu_field
= gnat_to_gnu_field_decl (Entity (gnat_field
));
7544 tree gnu_expr
= gnat_to_gnu (Expression (gnat_assoc
));
7546 /* The expander is supposed to put a single component selector name
7547 in every record component association. */
7548 gcc_assert (No (Next (gnat_field
)));
7550 /* Ignore fields that have Corresponding_Discriminants since we'll
7551 be setting that field in the parent. */
7552 if (Present (Corresponding_Discriminant (Entity (gnat_field
)))
7553 && Is_Tagged_Type (Scope (Entity (gnat_field
))))
7556 /* Also ignore discriminants of Unchecked_Unions. */
7557 else if (Is_Unchecked_Union (gnat_entity
)
7558 && Ekind (Entity (gnat_field
)) == E_Discriminant
)
7561 /* Before assigning a value in an aggregate make sure range checks
7562 are done if required. Then convert to the type of the field. */
7563 if (Do_Range_Check (Expression (gnat_assoc
)))
7564 gnu_expr
= emit_range_check (gnu_expr
, Etype (gnat_field
), Empty
);
7566 gnu_expr
= convert (TREE_TYPE (gnu_field
), gnu_expr
);
7568 /* Add the field and expression to the list. */
7569 gnu_list
= tree_cons (gnu_field
, gnu_expr
, gnu_list
);
7572 gnu_result
= extract_values (gnu_list
, gnu_type
);
7574 #ifdef ENABLE_CHECKING
7578 /* Verify every entry in GNU_LIST was used. */
7579 for (gnu_field
= gnu_list
; gnu_field
; gnu_field
= TREE_CHAIN (gnu_field
))
7580 gcc_assert (TREE_ADDRESSABLE (gnu_field
));
7587 /* Build a possibly nested constructor for array aggregates. GNAT_EXPR is
7588 the first element of an array aggregate. It may itself be an aggregate.
7589 GNU_ARRAY_TYPE is the GCC type corresponding to the array aggregate.
7590 GNAT_COMPONENT_TYPE is the type of the array component; it is needed
7591 for range checking. */
7594 pos_to_constructor (Node_Id gnat_expr
, tree gnu_array_type
,
7595 Entity_Id gnat_component_type
)
7597 tree gnu_index
= TYPE_MIN_VALUE (TYPE_DOMAIN (gnu_array_type
));
7599 VEC(constructor_elt
,gc
) *gnu_expr_vec
= NULL
;
7601 for ( ; Present (gnat_expr
); gnat_expr
= Next (gnat_expr
))
7603 /* If the expression is itself an array aggregate then first build the
7604 innermost constructor if it is part of our array (multi-dimensional
7606 if (Nkind (gnat_expr
) == N_Aggregate
7607 && TREE_CODE (TREE_TYPE (gnu_array_type
)) == ARRAY_TYPE
7608 && TYPE_MULTI_ARRAY_P (TREE_TYPE (gnu_array_type
)))
7609 gnu_expr
= pos_to_constructor (First (Expressions (gnat_expr
)),
7610 TREE_TYPE (gnu_array_type
),
7611 gnat_component_type
);
7614 gnu_expr
= gnat_to_gnu (gnat_expr
);
7616 /* Before assigning the element to the array, make sure it is
7618 if (Do_Range_Check (gnat_expr
))
7619 gnu_expr
= emit_range_check (gnu_expr
, gnat_component_type
, Empty
);
7622 CONSTRUCTOR_APPEND_ELT (gnu_expr_vec
, gnu_index
,
7623 convert (TREE_TYPE (gnu_array_type
), gnu_expr
));
7625 gnu_index
= int_const_binop (PLUS_EXPR
, gnu_index
, integer_one_node
, 0);
7628 return gnat_build_constructor (gnu_array_type
, gnu_expr_vec
);
7631 /* Subroutine of assoc_to_constructor: VALUES is a list of field associations,
7632 some of which are from RECORD_TYPE. Return a CONSTRUCTOR consisting
7633 of the associations that are from RECORD_TYPE. If we see an internal
7634 record, make a recursive call to fill it in as well. */
7637 extract_values (tree values
, tree record_type
)
7640 VEC(constructor_elt
,gc
) *v
= NULL
;
7642 for (field
= TYPE_FIELDS (record_type
); field
; field
= DECL_CHAIN (field
))
7646 /* _Parent is an internal field, but may have values in the aggregate,
7647 so check for values first. */
7648 if ((tem
= purpose_member (field
, values
)))
7650 value
= TREE_VALUE (tem
);
7651 TREE_ADDRESSABLE (tem
) = 1;
7654 else if (DECL_INTERNAL_P (field
))
7656 value
= extract_values (values
, TREE_TYPE (field
));
7657 if (TREE_CODE (value
) == CONSTRUCTOR
7658 && VEC_empty (constructor_elt
, CONSTRUCTOR_ELTS (value
)))
7662 /* If we have a record subtype, the names will match, but not the
7663 actual FIELD_DECLs. */
7664 for (tem
= values
; tem
; tem
= TREE_CHAIN (tem
))
7665 if (DECL_NAME (TREE_PURPOSE (tem
)) == DECL_NAME (field
))
7667 value
= convert (TREE_TYPE (field
), TREE_VALUE (tem
));
7668 TREE_ADDRESSABLE (tem
) = 1;
7674 CONSTRUCTOR_APPEND_ELT (v
, field
, value
);
7677 return gnat_build_constructor (record_type
, v
);
7680 /* EXP is to be treated as an array or record. Handle the cases when it is
7681 an access object and perform the required dereferences. */
7684 maybe_implicit_deref (tree exp
)
7686 /* If the type is a pointer, dereference it. */
7687 if (POINTER_TYPE_P (TREE_TYPE (exp
))
7688 || TYPE_IS_FAT_POINTER_P (TREE_TYPE (exp
)))
7689 exp
= build_unary_op (INDIRECT_REF
, NULL_TREE
, exp
);
7691 /* If we got a padded type, remove it too. */
7692 if (TYPE_IS_PADDING_P (TREE_TYPE (exp
)))
7693 exp
= convert (TREE_TYPE (TYPE_FIELDS (TREE_TYPE (exp
))), exp
);
7698 /* Convert SLOC into LOCUS. Return true if SLOC corresponds to a source code
7699 location and false if it doesn't. In the former case, set the Gigi global
7700 variable REF_FILENAME to the simple debug file name as given by sinput. */
7703 Sloc_to_locus (Source_Ptr Sloc
, location_t
*locus
)
7705 if (Sloc
== No_Location
)
7708 if (Sloc
<= Standard_Location
)
7710 *locus
= BUILTINS_LOCATION
;
7715 Source_File_Index file
= Get_Source_File_Index (Sloc
);
7716 Logical_Line_Number line
= Get_Logical_Line_Number (Sloc
);
7717 Column_Number column
= Get_Column_Number (Sloc
);
7718 struct line_map
*map
= &line_table
->maps
[file
- 1];
7720 /* Translate the location according to the line-map.h formula. */
7721 *locus
= map
->start_location
7722 + ((line
- map
->to_line
) << map
->column_bits
)
7723 + (column
& ((1 << map
->column_bits
) - 1));
7727 = IDENTIFIER_POINTER
7729 (Get_Name_String (Debug_Source_Name (Get_Source_File_Index (Sloc
)))));;
7734 /* Similar to set_expr_location, but start with the Sloc of GNAT_NODE and
7735 don't do anything if it doesn't correspond to a source location. */
7738 set_expr_location_from_node (tree node
, Node_Id gnat_node
)
7742 if (!Sloc_to_locus (Sloc (gnat_node
), &locus
))
7745 SET_EXPR_LOCATION (node
, locus
);
7748 /* More elaborate version of set_expr_location_from_node to be used in more
7749 general contexts, for example the result of the translation of a generic
7753 set_gnu_expr_location_from_node (tree node
, Node_Id gnat_node
)
7755 /* Set the location information on the node if it is a real expression.
7756 References can be reused for multiple GNAT nodes and they would get
7757 the location information of their last use. Also make sure not to
7758 overwrite an existing location as it is probably more precise. */
7760 switch (TREE_CODE (node
))
7763 case NON_LVALUE_EXPR
:
7767 if (EXPR_P (TREE_OPERAND (node
, 1)))
7768 set_gnu_expr_location_from_node (TREE_OPERAND (node
, 1), gnat_node
);
7770 /* ... fall through ... */
7773 if (!REFERENCE_CLASS_P (node
) && !EXPR_HAS_LOCATION (node
))
7775 set_expr_location_from_node (node
, gnat_node
);
7776 set_end_locus_from_node (node
, gnat_node
);
7782 /* Return a colon-separated list of encodings contained in encoded Ada
7786 extract_encoding (const char *name
)
7788 char *encoding
= (char *) ggc_alloc_atomic (strlen (name
));
7789 get_encoding (name
, encoding
);
7793 /* Extract the Ada name from an encoded name. */
7796 decode_name (const char *name
)
7798 char *decoded
= (char *) ggc_alloc_atomic (strlen (name
) * 2 + 60);
7799 __gnat_decode (name
, decoded
, 0);
7803 /* Post an error message. MSG is the error message, properly annotated.
7804 NODE is the node at which to post the error and the node to use for the
7805 '&' substitution. */
7808 post_error (const char *msg
, Node_Id node
)
7810 String_Template temp
;
7813 temp
.Low_Bound
= 1, temp
.High_Bound
= strlen (msg
);
7814 fp
.Array
= msg
, fp
.Bounds
= &temp
;
7816 Error_Msg_N (fp
, node
);
7819 /* Similar to post_error, but NODE is the node at which to post the error and
7820 ENT is the node to use for the '&' substitution. */
7823 post_error_ne (const char *msg
, Node_Id node
, Entity_Id ent
)
7825 String_Template temp
;
7828 temp
.Low_Bound
= 1, temp
.High_Bound
= strlen (msg
);
7829 fp
.Array
= msg
, fp
.Bounds
= &temp
;
7831 Error_Msg_NE (fp
, node
, ent
);
7834 /* Similar to post_error_ne, but NUM is the number to use for the '^'. */
7837 post_error_ne_num (const char *msg
, Node_Id node
, Entity_Id ent
, int num
)
7839 Error_Msg_Uint_1
= UI_From_Int (num
);
7840 post_error_ne (msg
, node
, ent
);
7843 /* Set the end_locus information for GNU_NODE, if any, from an explicit end
7844 location associated with GNAT_NODE or GNAT_NODE itself, whichever makes
7845 most sense. Return true if a sensible assignment was performed. */
7848 set_end_locus_from_node (tree gnu_node
, Node_Id gnat_node
)
7850 Node_Id gnat_end_label
= Empty
;
7851 location_t end_locus
;
7853 /* Pick the GNAT node of which we'll take the sloc to assign to the GCC node
7854 end_locus when there is one. We consider only GNAT nodes with a possible
7855 End_Label attached. If the End_Label actually was unassigned, fallback
7856 on the orginal node. We'd better assign an explicit sloc associated with
7857 the outer construct in any case. */
7859 switch (Nkind (gnat_node
))
7861 case N_Package_Body
:
7862 case N_Subprogram_Body
:
7863 case N_Block_Statement
:
7864 gnat_end_label
= End_Label (Handled_Statement_Sequence (gnat_node
));
7867 case N_Package_Declaration
:
7868 gnat_end_label
= End_Label (Specification (gnat_node
));
7875 gnat_node
= Present (gnat_end_label
) ? gnat_end_label
: gnat_node
;
7877 /* Some expanded subprograms have neither an End_Label nor a Sloc
7878 attached. Notify that to callers. */
7880 if (!Sloc_to_locus (Sloc (gnat_node
), &end_locus
))
7883 switch (TREE_CODE (gnu_node
))
7886 BLOCK_SOURCE_END_LOCATION (BIND_EXPR_BLOCK (gnu_node
)) = end_locus
;
7890 DECL_STRUCT_FUNCTION (gnu_node
)->function_end_locus
= end_locus
;
7898 /* Similar to post_error_ne, but T is a GCC tree representing the number to
7899 write. If T represents a constant, the text inside curly brackets in
7900 MSG will be output (presumably including a '^'). Otherwise it will not
7901 be output and the text inside square brackets will be output instead. */
7904 post_error_ne_tree (const char *msg
, Node_Id node
, Entity_Id ent
, tree t
)
7906 char *new_msg
= XALLOCAVEC (char, strlen (msg
) + 1);
7907 char start_yes
, end_yes
, start_no
, end_no
;
7911 if (TREE_CODE (t
) == INTEGER_CST
)
7913 Error_Msg_Uint_1
= UI_From_gnu (t
);
7914 start_yes
= '{', end_yes
= '}', start_no
= '[', end_no
= ']';
7917 start_yes
= '[', end_yes
= ']', start_no
= '{', end_no
= '}';
7919 for (p
= msg
, q
= new_msg
; *p
; p
++)
7921 if (*p
== start_yes
)
7922 for (p
++; *p
!= end_yes
; p
++)
7924 else if (*p
== start_no
)
7925 for (p
++; *p
!= end_no
; p
++)
7933 post_error_ne (new_msg
, node
, ent
);
7936 /* Similar to post_error_ne_tree, but NUM is a second integer to write. */
7939 post_error_ne_tree_2 (const char *msg
, Node_Id node
, Entity_Id ent
, tree t
,
7942 Error_Msg_Uint_2
= UI_From_Int (num
);
7943 post_error_ne_tree (msg
, node
, ent
, t
);
7946 /* Initialize the table that maps GNAT codes to GCC codes for simple
7947 binary and unary operations. */
7950 init_code_table (void)
7952 gnu_codes
[N_And_Then
] = TRUTH_ANDIF_EXPR
;
7953 gnu_codes
[N_Or_Else
] = TRUTH_ORIF_EXPR
;
7955 gnu_codes
[N_Op_And
] = TRUTH_AND_EXPR
;
7956 gnu_codes
[N_Op_Or
] = TRUTH_OR_EXPR
;
7957 gnu_codes
[N_Op_Xor
] = TRUTH_XOR_EXPR
;
7958 gnu_codes
[N_Op_Eq
] = EQ_EXPR
;
7959 gnu_codes
[N_Op_Ne
] = NE_EXPR
;
7960 gnu_codes
[N_Op_Lt
] = LT_EXPR
;
7961 gnu_codes
[N_Op_Le
] = LE_EXPR
;
7962 gnu_codes
[N_Op_Gt
] = GT_EXPR
;
7963 gnu_codes
[N_Op_Ge
] = GE_EXPR
;
7964 gnu_codes
[N_Op_Add
] = PLUS_EXPR
;
7965 gnu_codes
[N_Op_Subtract
] = MINUS_EXPR
;
7966 gnu_codes
[N_Op_Multiply
] = MULT_EXPR
;
7967 gnu_codes
[N_Op_Mod
] = FLOOR_MOD_EXPR
;
7968 gnu_codes
[N_Op_Rem
] = TRUNC_MOD_EXPR
;
7969 gnu_codes
[N_Op_Minus
] = NEGATE_EXPR
;
7970 gnu_codes
[N_Op_Abs
] = ABS_EXPR
;
7971 gnu_codes
[N_Op_Not
] = TRUTH_NOT_EXPR
;
7972 gnu_codes
[N_Op_Rotate_Left
] = LROTATE_EXPR
;
7973 gnu_codes
[N_Op_Rotate_Right
] = RROTATE_EXPR
;
7974 gnu_codes
[N_Op_Shift_Left
] = LSHIFT_EXPR
;
7975 gnu_codes
[N_Op_Shift_Right
] = RSHIFT_EXPR
;
7976 gnu_codes
[N_Op_Shift_Right_Arithmetic
] = RSHIFT_EXPR
;
7979 /* Return a label to branch to for the exception type in KIND or NULL_TREE
7983 get_exception_label (char kind
)
7985 if (kind
== N_Raise_Constraint_Error
)
7986 return VEC_last (tree
, gnu_constraint_error_label_stack
);
7987 else if (kind
== N_Raise_Storage_Error
)
7988 return VEC_last (tree
, gnu_storage_error_label_stack
);
7989 else if (kind
== N_Raise_Program_Error
)
7990 return VEC_last (tree
, gnu_program_error_label_stack
);
7995 /* Return the decl for the current elaboration procedure. */
7998 get_elaboration_procedure (void)
8000 return VEC_last (tree
, gnu_elab_proc_stack
);
8003 #include "gt-ada-trans.h"