1 /* Translation of constants
2 Copyright (C) 2002-2013 Free Software Foundation, Inc.
3 Contributed by Paul Brook
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
21 /* trans-const.c -- convert constant values */
25 #include "coretypes.h"
28 #include "diagnostic-core.h" /* For fatal_error. */
29 #include "double-int.h"
32 #include "trans-const.h"
33 #include "trans-types.h"
34 #include "target-memory.h"
36 tree gfc_rank_cst
[GFC_MAX_DIMENSIONS
+ 1];
38 /* Build a constant with given type from an int_cst. */
41 gfc_build_const (tree type
, tree intval
)
46 switch (TREE_CODE (type
))
49 val
= convert (type
, intval
);
53 val
= build_real_from_int_cst (type
, intval
);
57 val
= build_real_from_int_cst (TREE_TYPE (type
), intval
);
58 zero
= build_real_from_int_cst (TREE_TYPE (type
), integer_zero_node
);
59 val
= build_complex (type
, val
, zero
);
68 /* Build a string constant with C char type. */
71 gfc_build_string_const (int length
, const char *s
)
76 str
= build_string (length
, s
);
77 len
= size_int (length
);
79 build_array_type (gfc_character1_type_node
,
80 build_range_type (gfc_charlen_type_node
,
86 /* Build a string constant with a type given by its kind; take care of
87 non-default character kinds. */
90 gfc_build_wide_string_const (int kind
, int length
, const gfc_char_t
*string
)
97 i
= gfc_validate_kind (BT_CHARACTER
, kind
, false);
98 size
= length
* gfc_character_kinds
[i
].bit_size
/ 8;
100 s
= XCNEWVAR (char, size
);
101 gfc_encode_character (kind
, length
, string
, (unsigned char *) s
, size
);
103 str
= build_string (size
, s
);
106 len
= size_int (length
);
108 build_array_type (gfc_get_char_type (kind
),
109 build_range_type (gfc_charlen_type_node
,
110 size_one_node
, len
));
115 /* Build a Fortran character constant from a zero-terminated string.
116 There a two version of this function, one that translates the string
117 and one that doesn't. */
119 gfc_build_cstring_const (const char *string
)
121 return gfc_build_string_const (strlen (string
) + 1, string
);
125 gfc_build_localized_cstring_const (const char *msgid
)
127 const char *localized
= _(msgid
);
128 return gfc_build_string_const (strlen (localized
) + 1, localized
);
132 /* Return a string constant with the given length. Used for static
133 initializers. The constant will be padded or truncated to match
137 gfc_conv_string_init (tree length
, gfc_expr
* expr
)
145 gcc_assert (expr
->expr_type
== EXPR_CONSTANT
);
146 gcc_assert (expr
->ts
.type
== BT_CHARACTER
);
147 gcc_assert (INTEGER_CST_P (length
));
148 gcc_assert (TREE_INT_CST_HIGH (length
) == 0);
150 len
= TREE_INT_CST_LOW (length
);
151 slen
= expr
->value
.character
.length
;
155 s
= gfc_get_wide_string (len
);
156 memcpy (s
, expr
->value
.character
.string
, slen
* sizeof (gfc_char_t
));
157 gfc_wide_memset (&s
[slen
], ' ', len
- slen
);
161 s
= expr
->value
.character
.string
;
163 str
= gfc_build_wide_string_const (expr
->ts
.kind
, len
, s
);
172 /* Create a tree node for the string length if it is constant. */
175 gfc_conv_const_charlen (gfc_charlen
* cl
)
177 if (!cl
|| cl
->backend_decl
)
180 if (cl
->length
&& cl
->length
->expr_type
== EXPR_CONSTANT
)
182 cl
->backend_decl
= gfc_conv_mpz_to_tree (cl
->length
->value
.integer
,
183 cl
->length
->ts
.kind
);
184 cl
->backend_decl
= fold_convert (gfc_charlen_type_node
,
190 gfc_init_constants (void)
194 for (n
= 0; n
<= GFC_MAX_DIMENSIONS
; n
++)
195 gfc_rank_cst
[n
] = build_int_cst (gfc_array_index_type
, n
);
198 /* Converts a GMP integer into a backend tree node. */
201 gfc_conv_mpz_to_tree (mpz_t i
, int kind
)
203 double_int val
= mpz_get_double_int (gfc_get_int_type (kind
), i
, true);
204 return double_int_to_tree (gfc_get_int_type (kind
), val
);
207 /* Converts a backend tree into a GMP integer. */
210 gfc_conv_tree_to_mpz (mpz_t i
, tree source
)
212 double_int val
= tree_to_double_int (source
);
213 mpz_set_double_int (i
, val
, TYPE_UNSIGNED (TREE_TYPE (source
)));
216 /* Converts a real constant into backend form. */
219 gfc_conv_mpfr_to_tree (mpfr_t f
, int kind
, int is_snan
)
223 REAL_VALUE_TYPE real
;
225 n
= gfc_validate_kind (BT_REAL
, kind
, false);
226 gcc_assert (gfc_real_kinds
[n
].radix
== 2);
228 type
= gfc_get_real_type (kind
);
229 if (mpfr_nan_p (f
) && is_snan
)
230 real_from_string (&real
, "SNaN");
232 real_from_mpfr (&real
, f
, type
, GFC_RND_MODE
);
234 return build_real (type
, real
);
237 /* Returns a real constant that is +Infinity if the target
238 supports infinities for this floating-point mode, and
239 +HUGE_VAL otherwise (the largest representable number). */
242 gfc_build_inf_or_huge (tree type
, int kind
)
244 if (HONOR_INFINITIES (TYPE_MODE (type
)))
246 REAL_VALUE_TYPE real
;
248 return build_real (type
, real
);
252 int k
= gfc_validate_kind (BT_REAL
, kind
, false);
253 return gfc_conv_mpfr_to_tree (gfc_real_kinds
[k
].huge
, kind
, 0);
257 /* Converts a backend tree into a real constant. */
260 gfc_conv_tree_to_mpfr (mpfr_ptr f
, tree source
)
262 mpfr_from_real (f
, TREE_REAL_CST_PTR (source
), GFC_RND_MODE
);
265 /* Translate any literal constant to a tree. Constants never have
266 pre or post chains. Character literal constants are special
267 special because they have a value and a length, so they cannot be
268 returned as a single tree. It is up to the caller to set the
269 length somewhere if necessary.
271 Returns the translated constant, or aborts if it gets a type it
275 gfc_conv_constant_to_tree (gfc_expr
* expr
)
279 gcc_assert (expr
->expr_type
== EXPR_CONSTANT
);
281 /* If it is has a prescribed memory representation, we build a string
282 constant and VIEW_CONVERT to its type. */
284 switch (expr
->ts
.type
)
287 if (expr
->representation
.string
)
288 return fold_build1_loc (input_location
, VIEW_CONVERT_EXPR
,
289 gfc_get_int_type (expr
->ts
.kind
),
290 gfc_build_string_const (expr
->representation
.length
,
291 expr
->representation
.string
));
293 return gfc_conv_mpz_to_tree (expr
->value
.integer
, expr
->ts
.kind
);
296 if (expr
->representation
.string
)
297 return fold_build1_loc (input_location
, VIEW_CONVERT_EXPR
,
298 gfc_get_real_type (expr
->ts
.kind
),
299 gfc_build_string_const (expr
->representation
.length
,
300 expr
->representation
.string
));
302 return gfc_conv_mpfr_to_tree (expr
->value
.real
, expr
->ts
.kind
, expr
->is_snan
);
305 if (expr
->representation
.string
)
307 tree tmp
= fold_build1_loc (input_location
, VIEW_CONVERT_EXPR
,
308 gfc_get_int_type (expr
->ts
.kind
),
309 gfc_build_string_const (expr
->representation
.length
,
310 expr
->representation
.string
));
311 if (!integer_zerop (tmp
) && !integer_onep (tmp
))
312 gfc_warning ("Assigning value other than 0 or 1 to LOGICAL"
313 " has undefined result at %L", &expr
->where
);
314 return fold_convert (gfc_get_logical_type (expr
->ts
.kind
), tmp
);
317 return build_int_cst (gfc_get_logical_type (expr
->ts
.kind
),
318 expr
->value
.logical
);
321 if (expr
->representation
.string
)
322 return fold_build1_loc (input_location
, VIEW_CONVERT_EXPR
,
323 gfc_get_complex_type (expr
->ts
.kind
),
324 gfc_build_string_const (expr
->representation
.length
,
325 expr
->representation
.string
));
328 tree real
= gfc_conv_mpfr_to_tree (mpc_realref (expr
->value
.complex),
329 expr
->ts
.kind
, expr
->is_snan
);
330 tree imag
= gfc_conv_mpfr_to_tree (mpc_imagref (expr
->value
.complex),
331 expr
->ts
.kind
, expr
->is_snan
);
333 return build_complex (gfc_typenode_for_spec (&expr
->ts
),
338 res
= gfc_build_wide_string_const (expr
->ts
.kind
,
339 expr
->value
.character
.length
,
340 expr
->value
.character
.string
);
344 return gfc_build_string_const (expr
->representation
.length
,
345 expr
->representation
.string
);
348 fatal_error ("gfc_conv_constant_to_tree(): invalid type: %s",
349 gfc_typename (&expr
->ts
));
354 /* Like gfc_conv_constant_to_tree, but for a simplified expression.
355 We can handle character literal constants here as well. */
358 gfc_conv_constant (gfc_se
* se
, gfc_expr
* expr
)
362 /* We may be receiving an expression for C_NULL_PTR or C_NULL_FUNPTR. If
363 so, the expr_type will not yet be an EXPR_CONSTANT. We need to make
365 if (expr
->ts
.type
== BT_DERIVED
&& expr
->ts
.u
.derived
366 && expr
->ts
.u
.derived
->attr
.is_iso_c
)
368 if (expr
->symtree
->n
.sym
->intmod_sym_id
== ISOCBINDING_NULL_PTR
369 || expr
->symtree
->n
.sym
->intmod_sym_id
== ISOCBINDING_NULL_FUNPTR
)
371 /* Create a new EXPR_CONSTANT expression for our local uses. */
372 expr
= gfc_get_int_expr (gfc_default_integer_kind
, NULL
, 0);
376 if (expr
->expr_type
!= EXPR_CONSTANT
)
378 gfc_expr
*e
= gfc_get_int_expr (gfc_default_integer_kind
, NULL
, 0);
379 gfc_error ("non-constant initialization expression at %L", &expr
->where
);
380 se
->expr
= gfc_conv_constant_to_tree (e
);
387 gfc_ss_info
*ss_info
;
390 gcc_assert (ss
!= gfc_ss_terminator
);
391 gcc_assert (ss_info
->type
== GFC_SS_SCALAR
);
392 gcc_assert (ss_info
->expr
== expr
);
394 se
->expr
= ss_info
->data
.scalar
.value
;
395 se
->string_length
= ss_info
->string_length
;
396 gfc_advance_se_ss_chain (se
);
400 /* Translate the constant and put it in the simplifier structure. */
401 se
->expr
= gfc_conv_constant_to_tree (expr
);
403 /* If this is a CHARACTER string, set its length in the simplifier
405 if (expr
->ts
.type
== BT_CHARACTER
)
406 se
->string_length
= TYPE_MAX_VALUE (TYPE_DOMAIN (TREE_TYPE (se
->expr
)));