* config/rx/rx.c (add_vector_labels): New.
[official-gcc.git] / libgfortran / libgfortran.h
blobb3e8a2e7cfd7c1405b2195f035d72f59bd31572a
1 /* Common declarations for all of libgfortran.
2 Copyright (C) 2002-2014 Free Software Foundation, Inc.
3 Contributed by Paul Brook <paul@nowt.org>, and
4 Andy Vaught <andy@xena.eas.asu.edu>
6 This file is part of the GNU Fortran runtime library (libgfortran).
8 Libgfortran is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
11 any later version.
13 Libgfortran is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 Under Section 7 of GPL version 3, you are granted additional
19 permissions described in the GCC Runtime Library Exception, version
20 3.1, as published by the Free Software Foundation.
22 You should have received a copy of the GNU General Public License and
23 a copy of the GCC Runtime Library Exception along with this program;
24 see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
25 <http://www.gnu.org/licenses/>. */
27 #ifndef LIBGFOR_H
28 #define LIBGFOR_H
30 /* Ensure that ANSI conform stdio is used. This needs to be set before
31 any system header file is included. */
32 #if defined __MINGW32__
33 # define _POSIX 1
34 # define gfc_printf gnu_printf
35 #else
36 # define gfc_printf __printf__
37 #endif
39 /* config.h MUST be first because it can affect system headers. */
40 #include "config.h"
42 #include <stdio.h>
43 #include <stddef.h>
44 #include <float.h>
45 #include <stdarg.h>
46 #include <stdbool.h>
48 #if HAVE_COMPLEX_H
49 /* Must appear before math.h on VMS systems. */
50 # include <complex.h>
51 #else
52 #define complex __complex__
53 #endif
55 #include <math.h>
57 /* If we're support quad-precision floating-point type, include the
58 header to our support library. */
59 #ifdef HAVE_FLOAT128
60 # include "quadmath_weak.h"
61 #endif
63 #ifdef __MINGW32__
64 extern float __strtof (const char *, char **);
65 #define gfc_strtof __strtof
66 extern double __strtod (const char *, char **);
67 #define gfc_strtod __strtod
68 extern long double __strtold (const char *, char **);
69 #define gfc_strtold __strtold
70 #else
71 #define gfc_strtof strtof
72 #define gfc_strtod strtod
73 #define gfc_strtold strtold
74 #endif
76 #include "../gcc/fortran/libgfortran.h"
78 #include "c99_protos.h"
80 #if HAVE_IEEEFP_H
81 #include <ieeefp.h>
82 #endif
84 #include "gstdint.h"
86 #if HAVE_SYS_TYPES_H
87 #include <sys/types.h>
88 #endif
90 #ifdef __MINGW32__
91 typedef off64_t gfc_offset;
92 #else
93 typedef off_t gfc_offset;
94 #endif
96 #ifndef NULL
97 #define NULL (void *) 0
98 #endif
101 /* The following macros can be used to annotate conditions which are likely or
102 unlikely to be true. Avoid using them when a condition is only slightly
103 more likely/less unlikely than average to avoid the performance penalties of
104 branch misprediction. In addition, as __builtin_expect overrides the compiler
105 heuristic, do not use in conditions where one of the branches ends with a
106 call to a function with __attribute__((noreturn)): the compiler internal
107 heuristic will mark this branch as much less likely as unlikely() would
108 do. */
110 #ifndef __GNUC__
111 #define __attribute__(x)
112 #define likely(x) (x)
113 #define unlikely(x) (x)
114 #else
115 #define likely(x) __builtin_expect(!!(x), 1)
116 #define unlikely(x) __builtin_expect(!!(x), 0)
117 #endif
120 /* Make sure we have ptrdiff_t. */
121 #ifndef HAVE_PTRDIFF_T
122 typedef intptr_t ptrdiff_t;
123 #endif
125 /* On mingw, work around the buggy Windows snprintf() by using the one
126 mingw provides, __mingw_snprintf(). We also provide a prototype for
127 __mingw_snprintf(), because the mingw headers currently don't have one. */
128 #if HAVE_MINGW_SNPRINTF
129 extern int __mingw_snprintf (char *, size_t, const char *, ...)
130 __attribute__ ((format (gnu_printf, 3, 4)));
131 #undef snprintf
132 #define snprintf __mingw_snprintf
133 /* Fallback to sprintf if target does not have snprintf. */
134 #elif !defined(HAVE_SNPRINTF)
135 #undef snprintf
136 #define snprintf(str, size, ...) sprintf (str, __VA_ARGS__)
137 #endif
140 /* For a library, a standard prefix is a requirement in order to partition
141 the namespace. IPREFIX is for symbols intended to be internal to the
142 library. */
143 #define PREFIX(x) _gfortran_ ## x
144 #define IPREFIX(x) _gfortrani_ ## x
146 /* Magic to rename a symbol at the compiler level. You continue to refer
147 to the symbol as OLD in the source, but it'll be named NEW in the asm. */
148 #define sym_rename(old, new) sym_rename1(old, __USER_LABEL_PREFIX__, new)
149 #define sym_rename1(old, ulp, new) sym_rename2(old, ulp, new)
150 #define sym_rename2(old, ulp, new) extern __typeof(old) old __asm__(#ulp #new)
152 /* There are several classifications of routines:
154 (1) Symbols used only within the library,
155 (2) Symbols to be exported from the library,
156 (3) Symbols to be exported from the library, but
157 also used inside the library.
159 By telling the compiler about these different classifications we can
160 tightly control the interface seen by the user, and get better code
161 from the compiler at the same time.
163 One of the following should be used immediately after the declaration
164 of each symbol:
166 internal_proto Marks a symbol used only within the library,
167 and adds IPREFIX to the assembly-level symbol
168 name. The later is important for maintaining
169 the namespace partition for the static library.
171 export_proto Marks a symbol to be exported, and adds PREFIX
172 to the assembly-level symbol name.
174 export_proto_np Marks a symbol to be exported without adding PREFIX.
176 iexport_proto Marks a function to be exported, but with the
177 understanding that it can be used inside as well.
179 iexport_data_proto Similarly, marks a data symbol to be exported.
180 Unfortunately, some systems can't play the hidden
181 symbol renaming trick on data symbols, thanks to
182 the horribleness of COPY relocations.
184 If iexport_proto or iexport_data_proto is used, you must also use
185 iexport or iexport_data after the *definition* of the symbol. */
187 #if defined(HAVE_ATTRIBUTE_VISIBILITY)
188 # define internal_proto(x) \
189 sym_rename(x, IPREFIX (x)) __attribute__((__visibility__("hidden")))
190 #else
191 # define internal_proto(x) sym_rename(x, IPREFIX(x))
192 #endif
194 #if defined(HAVE_ATTRIBUTE_VISIBILITY) && defined(HAVE_ATTRIBUTE_ALIAS)
195 # define export_proto(x) sym_rename(x, PREFIX(x))
196 # define export_proto_np(x) extern char swallow_semicolon
197 # define iexport_proto(x) internal_proto(x)
198 # define iexport(x) iexport1(x, IPREFIX(x))
199 # define iexport1(x,y) iexport2(x,y)
200 # define iexport2(x,y) \
201 extern __typeof(x) PREFIX(x) __attribute__((__alias__(#y)))
202 #else
203 # define export_proto(x) sym_rename(x, PREFIX(x))
204 # define export_proto_np(x) extern char swallow_semicolon
205 # define iexport_proto(x) export_proto(x)
206 # define iexport(x) extern char swallow_semicolon
207 #endif
209 /* TODO: detect the case when we *can* hide the symbol. */
210 #define iexport_data_proto(x) export_proto(x)
211 #define iexport_data(x) extern char swallow_semicolon
213 /* The only reliable way to get the offset of a field in a struct
214 in a system independent way is via this macro. */
215 #ifndef offsetof
216 #define offsetof(TYPE, MEMBER) ((size_t) &((TYPE *) 0)->MEMBER)
217 #endif
219 /* The C99 classification macros isfinite, isinf, isnan, isnormal
220 and signbit are broken or inconsistent on quite a few targets.
221 So, we use GCC's builtins instead.
223 Another advantage for GCC's builtins for these type-generic macros
224 is that it handles floating-point types that the system headers
225 may not support (like __float128). */
227 #undef isnan
228 #define isnan(x) __builtin_isnan(x)
229 #undef isfinite
230 #define isfinite(x) __builtin_isfinite(x)
231 #undef isinf
232 #define isinf(x) __builtin_isinf(x)
233 #undef isnormal
234 #define isnormal(x) __builtin_isnormal(x)
235 #undef signbit
236 #define signbit(x) __builtin_signbit(x)
238 /* TODO: find the C99 version of these an move into above ifdef. */
239 #define REALPART(z) (__real__(z))
240 #define IMAGPART(z) (__imag__(z))
241 #define COMPLEX_ASSIGN(z_, r_, i_) {__real__(z_) = (r_); __imag__(z_) = (i_);}
243 #include "kinds.h"
245 /* Define the type used for the current record number for large file I/O.
246 The size must be consistent with the size defined on the compiler side. */
247 #ifdef HAVE_GFC_INTEGER_8
248 typedef GFC_INTEGER_8 GFC_IO_INT;
249 #else
250 #ifdef HAVE_GFC_INTEGER_4
251 typedef GFC_INTEGER_4 GFC_IO_INT;
252 #else
253 #error "GFC_INTEGER_4 should be available for the library to compile".
254 #endif
255 #endif
257 /* The following two definitions must be consistent with the types used
258 by the compiler. */
259 /* The type used of array indices, amongst other things. */
260 typedef ptrdiff_t index_type;
262 /* The type used for the lengths of character variables. */
263 typedef GFC_INTEGER_4 gfc_charlen_type;
265 /* Definitions of CHARACTER data types:
266 - CHARACTER(KIND=1) corresponds to the C char type,
267 - CHARACTER(KIND=4) corresponds to an unsigned 32-bit integer. */
268 typedef GFC_UINTEGER_4 gfc_char4_t;
270 /* Byte size of character kinds. For the kinds currently supported, it's
271 simply equal to the kind parameter itself. */
272 #define GFC_SIZE_OF_CHAR_KIND(kind) (kind)
274 /* This will be 0 on little-endian machines and one on big-endian machines. */
275 extern int big_endian;
276 internal_proto(big_endian);
278 #define GFOR_POINTER_TO_L1(p, kind) \
279 (big_endian * (kind - 1) + (GFC_LOGICAL_1 *)(p))
281 #define GFC_INTEGER_1_HUGE \
282 (GFC_INTEGER_1)((((GFC_UINTEGER_1)1) << 7) - 1)
283 #define GFC_INTEGER_2_HUGE \
284 (GFC_INTEGER_2)((((GFC_UINTEGER_2)1) << 15) - 1)
285 #define GFC_INTEGER_4_HUGE \
286 (GFC_INTEGER_4)((((GFC_UINTEGER_4)1) << 31) - 1)
287 #define GFC_INTEGER_8_HUGE \
288 (GFC_INTEGER_8)((((GFC_UINTEGER_8)1) << 63) - 1)
289 #ifdef HAVE_GFC_INTEGER_16
290 #define GFC_INTEGER_16_HUGE \
291 (GFC_INTEGER_16)((((GFC_UINTEGER_16)1) << 127) - 1)
292 #endif
294 /* M{IN,AX}{LOC,VAL} need also infinities and NaNs if supported. */
296 #ifdef __FLT_HAS_INFINITY__
297 # define GFC_REAL_4_INFINITY __builtin_inff ()
298 #endif
299 #ifdef __DBL_HAS_INFINITY__
300 # define GFC_REAL_8_INFINITY __builtin_inf ()
301 #endif
302 #ifdef __LDBL_HAS_INFINITY__
303 # ifdef HAVE_GFC_REAL_10
304 # define GFC_REAL_10_INFINITY __builtin_infl ()
305 # endif
306 # ifdef HAVE_GFC_REAL_16
307 # ifdef GFC_REAL_16_IS_LONG_DOUBLE
308 # define GFC_REAL_16_INFINITY __builtin_infl ()
309 # else
310 # define GFC_REAL_16_INFINITY __builtin_infq ()
311 # endif
312 # endif
313 #endif
314 #ifdef __FLT_HAS_QUIET_NAN__
315 # define GFC_REAL_4_QUIET_NAN __builtin_nanf ("")
316 #endif
317 #ifdef __DBL_HAS_QUIET_NAN__
318 # define GFC_REAL_8_QUIET_NAN __builtin_nan ("")
319 #endif
320 #ifdef __LDBL_HAS_QUIET_NAN__
321 # ifdef HAVE_GFC_REAL_10
322 # define GFC_REAL_10_QUIET_NAN __builtin_nanl ("")
323 # endif
324 # ifdef HAVE_GFC_REAL_16
325 # ifdef GFC_REAL_16_IS_LONG_DOUBLE
326 # define GFC_REAL_16_QUIET_NAN __builtin_nanl ("")
327 # else
328 # define GFC_REAL_16_QUIET_NAN nanq ("")
329 # endif
330 # endif
331 #endif
333 typedef struct descriptor_dimension
335 index_type _stride;
336 index_type lower_bound;
337 index_type _ubound;
340 descriptor_dimension;
342 #define GFC_ARRAY_DESCRIPTOR(r, type) \
343 struct {\
344 type *base_addr;\
345 size_t offset;\
346 index_type dtype;\
347 descriptor_dimension dim[r];\
350 /* Commonly used array descriptor types. */
351 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, void) gfc_array_void;
352 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, char) gfc_array_char;
353 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_INTEGER_1) gfc_array_i1;
354 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_INTEGER_2) gfc_array_i2;
355 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_INTEGER_4) gfc_array_i4;
356 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_INTEGER_8) gfc_array_i8;
357 #ifdef HAVE_GFC_INTEGER_16
358 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_INTEGER_16) gfc_array_i16;
359 #endif
360 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_REAL_4) gfc_array_r4;
361 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_REAL_8) gfc_array_r8;
362 #ifdef HAVE_GFC_REAL_10
363 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_REAL_10) gfc_array_r10;
364 #endif
365 #ifdef HAVE_GFC_REAL_16
366 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_REAL_16) gfc_array_r16;
367 #endif
368 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_COMPLEX_4) gfc_array_c4;
369 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_COMPLEX_8) gfc_array_c8;
370 #ifdef HAVE_GFC_COMPLEX_10
371 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_COMPLEX_10) gfc_array_c10;
372 #endif
373 #ifdef HAVE_GFC_COMPLEX_16
374 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_COMPLEX_16) gfc_array_c16;
375 #endif
376 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_LOGICAL_1) gfc_array_l1;
377 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_LOGICAL_2) gfc_array_l2;
378 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_LOGICAL_4) gfc_array_l4;
379 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_LOGICAL_8) gfc_array_l8;
380 #ifdef HAVE_GFC_LOGICAL_16
381 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_LOGICAL_16) gfc_array_l16;
382 #endif
385 #define GFC_DESCRIPTOR_RANK(desc) ((desc)->dtype & GFC_DTYPE_RANK_MASK)
386 #define GFC_DESCRIPTOR_TYPE(desc) (((desc)->dtype & GFC_DTYPE_TYPE_MASK) \
387 >> GFC_DTYPE_TYPE_SHIFT)
388 #define GFC_DESCRIPTOR_SIZE(desc) ((desc)->dtype >> GFC_DTYPE_SIZE_SHIFT)
389 #define GFC_DESCRIPTOR_DATA(desc) ((desc)->base_addr)
390 #define GFC_DESCRIPTOR_DTYPE(desc) ((desc)->dtype)
392 #define GFC_DIMENSION_LBOUND(dim) ((dim).lower_bound)
393 #define GFC_DIMENSION_UBOUND(dim) ((dim)._ubound)
394 #define GFC_DIMENSION_STRIDE(dim) ((dim)._stride)
395 #define GFC_DIMENSION_EXTENT(dim) ((dim)._ubound + 1 - (dim).lower_bound)
396 #define GFC_DIMENSION_SET(dim,lb,ub,str) \
397 do \
399 (dim).lower_bound = lb; \
400 (dim)._ubound = ub; \
401 (dim)._stride = str; \
402 } while (0)
405 #define GFC_DESCRIPTOR_LBOUND(desc,i) ((desc)->dim[i].lower_bound)
406 #define GFC_DESCRIPTOR_UBOUND(desc,i) ((desc)->dim[i]._ubound)
407 #define GFC_DESCRIPTOR_EXTENT(desc,i) ((desc)->dim[i]._ubound + 1 \
408 - (desc)->dim[i].lower_bound)
409 #define GFC_DESCRIPTOR_EXTENT_BYTES(desc,i) \
410 (GFC_DESCRIPTOR_EXTENT(desc,i) * GFC_DESCRIPTOR_SIZE(desc))
412 #define GFC_DESCRIPTOR_STRIDE(desc,i) ((desc)->dim[i]._stride)
413 #define GFC_DESCRIPTOR_STRIDE_BYTES(desc,i) \
414 (GFC_DESCRIPTOR_STRIDE(desc,i) * GFC_DESCRIPTOR_SIZE(desc))
416 /* Macros to get both the size and the type with a single masking operation */
418 #define GFC_DTYPE_SIZE_MASK \
419 ((~((index_type) 0) >> GFC_DTYPE_SIZE_SHIFT) << GFC_DTYPE_SIZE_SHIFT)
420 #define GFC_DTYPE_TYPE_SIZE_MASK (GFC_DTYPE_SIZE_MASK | GFC_DTYPE_TYPE_MASK)
422 #define GFC_DTYPE_TYPE_SIZE(desc) ((desc)->dtype & GFC_DTYPE_TYPE_SIZE_MASK)
424 #define GFC_DTYPE_INTEGER_1 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
425 | (sizeof(GFC_INTEGER_1) << GFC_DTYPE_SIZE_SHIFT))
426 #define GFC_DTYPE_INTEGER_2 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
427 | (sizeof(GFC_INTEGER_2) << GFC_DTYPE_SIZE_SHIFT))
428 #define GFC_DTYPE_INTEGER_4 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
429 | (sizeof(GFC_INTEGER_4) << GFC_DTYPE_SIZE_SHIFT))
430 #define GFC_DTYPE_INTEGER_8 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
431 | (sizeof(GFC_INTEGER_8) << GFC_DTYPE_SIZE_SHIFT))
432 #ifdef HAVE_GFC_INTEGER_16
433 #define GFC_DTYPE_INTEGER_16 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
434 | (sizeof(GFC_INTEGER_16) << GFC_DTYPE_SIZE_SHIFT))
435 #endif
437 #define GFC_DTYPE_LOGICAL_1 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
438 | (sizeof(GFC_LOGICAL_1) << GFC_DTYPE_SIZE_SHIFT))
439 #define GFC_DTYPE_LOGICAL_2 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
440 | (sizeof(GFC_LOGICAL_2) << GFC_DTYPE_SIZE_SHIFT))
441 #define GFC_DTYPE_LOGICAL_4 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
442 | (sizeof(GFC_LOGICAL_4) << GFC_DTYPE_SIZE_SHIFT))
443 #define GFC_DTYPE_LOGICAL_8 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
444 | (sizeof(GFC_LOGICAL_8) << GFC_DTYPE_SIZE_SHIFT))
445 #ifdef HAVE_GFC_LOGICAL_16
446 #define GFC_DTYPE_LOGICAL_16 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
447 | (sizeof(GFC_LOGICAL_16) << GFC_DTYPE_SIZE_SHIFT))
448 #endif
450 #define GFC_DTYPE_REAL_4 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
451 | (sizeof(GFC_REAL_4) << GFC_DTYPE_SIZE_SHIFT))
452 #define GFC_DTYPE_REAL_8 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
453 | (sizeof(GFC_REAL_8) << GFC_DTYPE_SIZE_SHIFT))
454 #ifdef HAVE_GFC_REAL_10
455 #define GFC_DTYPE_REAL_10 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
456 | (sizeof(GFC_REAL_10) << GFC_DTYPE_SIZE_SHIFT))
457 #endif
458 #ifdef HAVE_GFC_REAL_16
459 #define GFC_DTYPE_REAL_16 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
460 | (sizeof(GFC_REAL_16) << GFC_DTYPE_SIZE_SHIFT))
461 #endif
463 #define GFC_DTYPE_COMPLEX_4 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
464 | (sizeof(GFC_COMPLEX_4) << GFC_DTYPE_SIZE_SHIFT))
465 #define GFC_DTYPE_COMPLEX_8 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
466 | (sizeof(GFC_COMPLEX_8) << GFC_DTYPE_SIZE_SHIFT))
467 #ifdef HAVE_GFC_COMPLEX_10
468 #define GFC_DTYPE_COMPLEX_10 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
469 | (sizeof(GFC_COMPLEX_10) << GFC_DTYPE_SIZE_SHIFT))
470 #endif
471 #ifdef HAVE_GFC_COMPLEX_16
472 #define GFC_DTYPE_COMPLEX_16 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
473 | (sizeof(GFC_COMPLEX_16) << GFC_DTYPE_SIZE_SHIFT))
474 #endif
476 #define GFC_DTYPE_DERIVED_1 ((BT_DERIVED << GFC_DTYPE_TYPE_SHIFT) \
477 | (sizeof(GFC_INTEGER_1) << GFC_DTYPE_SIZE_SHIFT))
478 #define GFC_DTYPE_DERIVED_2 ((BT_DERIVED << GFC_DTYPE_TYPE_SHIFT) \
479 | (sizeof(GFC_INTEGER_2) << GFC_DTYPE_SIZE_SHIFT))
480 #define GFC_DTYPE_DERIVED_4 ((BT_DERIVED << GFC_DTYPE_TYPE_SHIFT) \
481 | (sizeof(GFC_INTEGER_4) << GFC_DTYPE_SIZE_SHIFT))
482 #define GFC_DTYPE_DERIVED_8 ((BT_DERIVED << GFC_DTYPE_TYPE_SHIFT) \
483 | (sizeof(GFC_INTEGER_8) << GFC_DTYPE_SIZE_SHIFT))
484 #ifdef HAVE_GFC_INTEGER_16
485 #define GFC_DTYPE_DERIVED_16 ((BT_DERIVED << GFC_DTYPE_TYPE_SHIFT) \
486 | (sizeof(GFC_INTEGER_16) << GFC_DTYPE_SIZE_SHIFT))
487 #endif
489 /* Macros to determine the alignment of pointers. */
491 #define GFC_UNALIGNED_2(x) (((uintptr_t)(x)) & \
492 (__alignof__(GFC_INTEGER_2) - 1))
493 #define GFC_UNALIGNED_4(x) (((uintptr_t)(x)) & \
494 (__alignof__(GFC_INTEGER_4) - 1))
495 #define GFC_UNALIGNED_8(x) (((uintptr_t)(x)) & \
496 (__alignof__(GFC_INTEGER_8) - 1))
497 #ifdef HAVE_GFC_INTEGER_16
498 #define GFC_UNALIGNED_16(x) (((uintptr_t)(x)) & \
499 (__alignof__(GFC_INTEGER_16) - 1))
500 #endif
502 #define GFC_UNALIGNED_C4(x) (((uintptr_t)(x)) & \
503 (__alignof__(GFC_COMPLEX_4) - 1))
505 #define GFC_UNALIGNED_C8(x) (((uintptr_t)(x)) & \
506 (__alignof__(GFC_COMPLEX_8) - 1))
508 /* Runtime library include. */
509 #define stringize(x) expand_macro(x)
510 #define expand_macro(x) # x
512 /* Runtime options structure. */
514 typedef struct
516 int stdin_unit, stdout_unit, stderr_unit, optional_plus;
517 int locus;
519 int separator_len;
520 const char *separator;
522 int all_unbuffered, unbuffered_preconnected, default_recl;
523 int fpe, backtrace;
525 options_t;
527 extern options_t options;
528 internal_proto(options);
530 extern void backtrace_handler (int);
531 internal_proto(backtrace_handler);
534 /* Compile-time options that will influence the library. */
536 typedef struct
538 int warn_std;
539 int allow_std;
540 int pedantic;
541 int convert;
542 int backtrace;
543 int sign_zero;
544 size_t record_marker;
545 int max_subrecord_length;
546 int bounds_check;
547 int fpe_summary;
549 compile_options_t;
551 extern compile_options_t compile_options;
552 internal_proto(compile_options);
554 extern void init_compile_options (void);
555 internal_proto(init_compile_options);
557 #define GFC_MAX_SUBRECORD_LENGTH 2147483639 /* 2**31 - 9 */
559 /* Structure for statement options. */
561 typedef struct
563 const char *name;
564 int value;
566 st_option;
569 /* This is returned by notification_std to know if, given the flags
570 that were given (-std=, -pedantic) we should issue an error, a warning
571 or nothing. */
572 typedef enum
573 { NOTIFICATION_SILENT, NOTIFICATION_WARNING, NOTIFICATION_ERROR }
574 notification;
577 /* The filename and line number don't go inside the globals structure.
578 They are set by the rest of the program and must be linked to. */
580 /* Location of the current library call (optional). */
581 extern unsigned line;
582 iexport_data_proto(line);
584 extern char *filename;
585 iexport_data_proto(filename);
587 /* Avoid conflicting prototypes of alloca() in system headers by using
588 GCC's builtin alloca(). */
589 #define gfc_alloca(x) __builtin_alloca(x)
592 /* The default value of record length for preconnected units is defined
593 here. This value can be overriden by an environment variable.
594 Default value is 1 Gb. */
595 #define DEFAULT_RECL 1073741824
598 #define CHARACTER2(name) \
599 gfc_charlen_type name ## _len; \
600 char * name
602 typedef struct st_parameter_common
604 GFC_INTEGER_4 flags;
605 GFC_INTEGER_4 unit;
606 const char *filename;
607 GFC_INTEGER_4 line;
608 CHARACTER2 (iomsg);
609 GFC_INTEGER_4 *iostat;
611 st_parameter_common;
613 #undef CHARACTER2
615 #define IOPARM_LIBRETURN_MASK (3 << 0)
616 #define IOPARM_LIBRETURN_OK (0 << 0)
617 #define IOPARM_LIBRETURN_ERROR (1 << 0)
618 #define IOPARM_LIBRETURN_END (2 << 0)
619 #define IOPARM_LIBRETURN_EOR (3 << 0)
620 #define IOPARM_ERR (1 << 2)
621 #define IOPARM_END (1 << 3)
622 #define IOPARM_EOR (1 << 4)
623 #define IOPARM_HAS_IOSTAT (1 << 5)
624 #define IOPARM_HAS_IOMSG (1 << 6)
626 #define IOPARM_COMMON_MASK ((1 << 7) - 1)
628 #define IOPARM_OPEN_HAS_RECL_IN (1 << 7)
629 #define IOPARM_OPEN_HAS_FILE (1 << 8)
630 #define IOPARM_OPEN_HAS_STATUS (1 << 9)
631 #define IOPARM_OPEN_HAS_ACCESS (1 << 10)
632 #define IOPARM_OPEN_HAS_FORM (1 << 11)
633 #define IOPARM_OPEN_HAS_BLANK (1 << 12)
634 #define IOPARM_OPEN_HAS_POSITION (1 << 13)
635 #define IOPARM_OPEN_HAS_ACTION (1 << 14)
636 #define IOPARM_OPEN_HAS_DELIM (1 << 15)
637 #define IOPARM_OPEN_HAS_PAD (1 << 16)
638 #define IOPARM_OPEN_HAS_CONVERT (1 << 17)
639 #define IOPARM_OPEN_HAS_DECIMAL (1 << 18)
640 #define IOPARM_OPEN_HAS_ENCODING (1 << 19)
641 #define IOPARM_OPEN_HAS_ROUND (1 << 20)
642 #define IOPARM_OPEN_HAS_SIGN (1 << 21)
643 #define IOPARM_OPEN_HAS_ASYNCHRONOUS (1 << 22)
644 #define IOPARM_OPEN_HAS_NEWUNIT (1 << 23)
646 /* library start function and end macro. These can be expanded if needed
647 in the future. cmp is st_parameter_common *cmp */
649 extern void library_start (st_parameter_common *);
650 internal_proto(library_start);
652 #define library_end()
654 /* main.c */
656 extern void stupid_function_name_for_static_linking (void);
657 internal_proto(stupid_function_name_for_static_linking);
659 extern void set_args (int, char **);
660 iexport_proto(set_args);
662 extern void get_args (int *, char ***);
663 internal_proto(get_args);
665 extern void store_exe_path (const char *);
666 export_proto(store_exe_path);
668 extern char * full_exe_path (void);
669 internal_proto(full_exe_path);
671 extern void find_addr2line (void);
672 internal_proto(find_addr2line);
674 /* backtrace.c */
676 extern void backtrace (void);
677 iexport_proto(backtrace);
679 /* error.c */
681 #if defined(HAVE_GFC_REAL_16)
682 #define GFC_LARGEST_BUF (sizeof (GFC_REAL_16))
683 #elif defined(HAVE_GFC_INTEGER_16)
684 #define GFC_LARGEST_BUF (sizeof (GFC_INTEGER_LARGEST))
685 #elif defined(HAVE_GFC_REAL_10)
686 #define GFC_LARGEST_BUF (sizeof (GFC_REAL_10))
687 #else
688 #define GFC_LARGEST_BUF (sizeof (GFC_INTEGER_LARGEST))
689 #endif
691 #define GFC_ITOA_BUF_SIZE (sizeof (GFC_INTEGER_LARGEST) * 3 + 2)
692 #define GFC_XTOA_BUF_SIZE (GFC_LARGEST_BUF * 2 + 1)
693 #define GFC_OTOA_BUF_SIZE (GFC_LARGEST_BUF * 3 + 1)
694 #define GFC_BTOA_BUF_SIZE (GFC_LARGEST_BUF * 8 + 1)
696 extern void sys_abort (void) __attribute__ ((noreturn));
697 internal_proto(sys_abort);
699 extern ssize_t estr_write (const char *);
700 internal_proto(estr_write);
702 extern int st_vprintf (const char *, va_list);
703 internal_proto(st_vprintf);
705 extern int st_printf (const char *, ...)
706 __attribute__((format (gfc_printf, 1, 2)));
707 internal_proto(st_printf);
709 extern const char *gfc_xtoa (GFC_UINTEGER_LARGEST, char *, size_t);
710 internal_proto(gfc_xtoa);
712 extern void os_error (const char *) __attribute__ ((noreturn));
713 iexport_proto(os_error);
715 extern void show_locus (st_parameter_common *);
716 internal_proto(show_locus);
718 extern void runtime_error (const char *, ...)
719 __attribute__ ((noreturn, format (gfc_printf, 1, 2)));
720 iexport_proto(runtime_error);
722 extern void runtime_error_at (const char *, const char *, ...)
723 __attribute__ ((noreturn, format (gfc_printf, 2, 3)));
724 iexport_proto(runtime_error_at);
726 extern void runtime_warning_at (const char *, const char *, ...)
727 __attribute__ ((format (gfc_printf, 2, 3)));
728 iexport_proto(runtime_warning_at);
730 extern void internal_error (st_parameter_common *, const char *)
731 __attribute__ ((noreturn));
732 internal_proto(internal_error);
734 extern const char *translate_error (int);
735 internal_proto(translate_error);
737 extern void generate_error (st_parameter_common *, int, const char *);
738 iexport_proto(generate_error);
740 extern void generate_warning (st_parameter_common *, const char *);
741 internal_proto(generate_warning);
743 extern bool notify_std (st_parameter_common *, int, const char *);
744 internal_proto(notify_std);
746 extern notification notification_std(int);
747 internal_proto(notification_std);
749 extern char *gf_strerror (int, char *, size_t);
750 internal_proto(gf_strerror);
752 /* fpu.c */
754 extern void set_fpu (void);
755 internal_proto(set_fpu);
757 extern int get_fpu_except_flags (void);
758 internal_proto(get_fpu_except_flags);
760 extern void set_fpu_rounding_mode (int round);
761 internal_proto(set_fpu_rounding_mode);
763 extern int get_fpu_rounding_mode (void);
764 internal_proto(get_fpu_rounding_mode);
766 /* memory.c */
768 extern void *xmalloc (size_t) __attribute__ ((malloc));
769 internal_proto(xmalloc);
771 extern void *xcalloc (size_t, size_t) __attribute__ ((malloc));
772 internal_proto(xcalloc);
774 extern void *xrealloc (void *, size_t);
775 internal_proto(xrealloc);
777 /* environ.c */
779 extern int check_buffered (int);
780 internal_proto(check_buffered);
782 extern void init_variables (void);
783 internal_proto(init_variables);
785 extern void show_variables (void);
786 internal_proto(show_variables);
788 unit_convert get_unformatted_convert (int);
789 internal_proto(get_unformatted_convert);
791 /* Secure getenv() which returns NULL if running as SUID/SGID. */
792 #ifndef HAVE_SECURE_GETENV
793 #ifdef HAVE___SECURE_GETENV
794 #define secure_getenv __secure_getenv
795 #elif defined(HAVE_GETUID) && defined(HAVE_GETEUID) \
796 && defined(HAVE_GETGID) && defined(HAVE_GETEGID)
797 #define FALLBACK_SECURE_GETENV
798 extern char *secure_getenv (const char *);
799 internal_proto(secure_getenv);
800 #else
801 #define secure_getenv getenv
802 #endif
803 #endif
805 /* string.c */
807 extern int find_option (st_parameter_common *, const char *, gfc_charlen_type,
808 const st_option *, const char *);
809 internal_proto(find_option);
811 extern gfc_charlen_type fstrlen (const char *, gfc_charlen_type);
812 internal_proto(fstrlen);
814 extern gfc_charlen_type fstrcpy (char *, gfc_charlen_type, const char *, gfc_charlen_type);
815 internal_proto(fstrcpy);
817 extern gfc_charlen_type cf_strcpy (char *, gfc_charlen_type, const char *);
818 internal_proto(cf_strcpy);
820 extern gfc_charlen_type string_len_trim (gfc_charlen_type, const char *);
821 export_proto(string_len_trim);
823 extern gfc_charlen_type string_len_trim_char4 (gfc_charlen_type,
824 const gfc_char4_t *);
825 export_proto(string_len_trim_char4);
827 extern char *fc_strdup(const char *, gfc_charlen_type);
828 internal_proto(fc_strdup);
830 /* io/intrinsics.c */
832 extern void flush_all_units (void);
833 internal_proto(flush_all_units);
835 /* io.c */
837 extern void init_units (void);
838 internal_proto(init_units);
840 extern void close_units (void);
841 internal_proto(close_units);
843 extern int unit_to_fd (int);
844 internal_proto(unit_to_fd);
846 extern char * filename_from_unit (int);
847 internal_proto(filename_from_unit);
849 /* stop.c */
851 extern void stop_string (const char *, GFC_INTEGER_4)
852 __attribute__ ((noreturn));
853 export_proto(stop_string);
855 /* reshape_packed.c */
857 extern void reshape_packed (char *, index_type, const char *, index_type,
858 const char *, index_type);
859 internal_proto(reshape_packed);
861 /* Repacking functions. These are called internally by internal_pack
862 and internal_unpack. */
864 GFC_INTEGER_1 *internal_pack_1 (gfc_array_i1 *);
865 internal_proto(internal_pack_1);
867 GFC_INTEGER_2 *internal_pack_2 (gfc_array_i2 *);
868 internal_proto(internal_pack_2);
870 GFC_INTEGER_4 *internal_pack_4 (gfc_array_i4 *);
871 internal_proto(internal_pack_4);
873 GFC_INTEGER_8 *internal_pack_8 (gfc_array_i8 *);
874 internal_proto(internal_pack_8);
876 #if defined HAVE_GFC_INTEGER_16
877 GFC_INTEGER_16 *internal_pack_16 (gfc_array_i16 *);
878 internal_proto(internal_pack_16);
879 #endif
881 GFC_REAL_4 *internal_pack_r4 (gfc_array_r4 *);
882 internal_proto(internal_pack_r4);
884 GFC_REAL_8 *internal_pack_r8 (gfc_array_r8 *);
885 internal_proto(internal_pack_r8);
887 #if defined HAVE_GFC_REAL_10
888 GFC_REAL_10 *internal_pack_r10 (gfc_array_r10 *);
889 internal_proto(internal_pack_r10);
890 #endif
892 #if defined HAVE_GFC_REAL_16
893 GFC_REAL_16 *internal_pack_r16 (gfc_array_r16 *);
894 internal_proto(internal_pack_r16);
895 #endif
897 GFC_COMPLEX_4 *internal_pack_c4 (gfc_array_c4 *);
898 internal_proto(internal_pack_c4);
900 GFC_COMPLEX_8 *internal_pack_c8 (gfc_array_c8 *);
901 internal_proto(internal_pack_c8);
903 #if defined HAVE_GFC_COMPLEX_10
904 GFC_COMPLEX_10 *internal_pack_c10 (gfc_array_c10 *);
905 internal_proto(internal_pack_c10);
906 #endif
908 #if defined HAVE_GFC_COMPLEX_16
909 GFC_COMPLEX_16 *internal_pack_c16 (gfc_array_c16 *);
910 internal_proto(internal_pack_c16);
911 #endif
913 extern void internal_unpack_1 (gfc_array_i1 *, const GFC_INTEGER_1 *);
914 internal_proto(internal_unpack_1);
916 extern void internal_unpack_2 (gfc_array_i2 *, const GFC_INTEGER_2 *);
917 internal_proto(internal_unpack_2);
919 extern void internal_unpack_4 (gfc_array_i4 *, const GFC_INTEGER_4 *);
920 internal_proto(internal_unpack_4);
922 extern void internal_unpack_8 (gfc_array_i8 *, const GFC_INTEGER_8 *);
923 internal_proto(internal_unpack_8);
925 #if defined HAVE_GFC_INTEGER_16
926 extern void internal_unpack_16 (gfc_array_i16 *, const GFC_INTEGER_16 *);
927 internal_proto(internal_unpack_16);
928 #endif
930 extern void internal_unpack_r4 (gfc_array_r4 *, const GFC_REAL_4 *);
931 internal_proto(internal_unpack_r4);
933 extern void internal_unpack_r8 (gfc_array_r8 *, const GFC_REAL_8 *);
934 internal_proto(internal_unpack_r8);
936 #if defined HAVE_GFC_REAL_10
937 extern void internal_unpack_r10 (gfc_array_r10 *, const GFC_REAL_10 *);
938 internal_proto(internal_unpack_r10);
939 #endif
941 #if defined HAVE_GFC_REAL_16
942 extern void internal_unpack_r16 (gfc_array_r16 *, const GFC_REAL_16 *);
943 internal_proto(internal_unpack_r16);
944 #endif
946 extern void internal_unpack_c4 (gfc_array_c4 *, const GFC_COMPLEX_4 *);
947 internal_proto(internal_unpack_c4);
949 extern void internal_unpack_c8 (gfc_array_c8 *, const GFC_COMPLEX_8 *);
950 internal_proto(internal_unpack_c8);
952 #if defined HAVE_GFC_COMPLEX_10
953 extern void internal_unpack_c10 (gfc_array_c10 *, const GFC_COMPLEX_10 *);
954 internal_proto(internal_unpack_c10);
955 #endif
957 #if defined HAVE_GFC_COMPLEX_16
958 extern void internal_unpack_c16 (gfc_array_c16 *, const GFC_COMPLEX_16 *);
959 internal_proto(internal_unpack_c16);
960 #endif
962 /* Internal auxiliary functions for the pack intrinsic. */
964 extern void pack_i1 (gfc_array_i1 *, const gfc_array_i1 *,
965 const gfc_array_l1 *, const gfc_array_i1 *);
966 internal_proto(pack_i1);
968 extern void pack_i2 (gfc_array_i2 *, const gfc_array_i2 *,
969 const gfc_array_l1 *, const gfc_array_i2 *);
970 internal_proto(pack_i2);
972 extern void pack_i4 (gfc_array_i4 *, const gfc_array_i4 *,
973 const gfc_array_l1 *, const gfc_array_i4 *);
974 internal_proto(pack_i4);
976 extern void pack_i8 (gfc_array_i8 *, const gfc_array_i8 *,
977 const gfc_array_l1 *, const gfc_array_i8 *);
978 internal_proto(pack_i8);
980 #ifdef HAVE_GFC_INTEGER_16
981 extern void pack_i16 (gfc_array_i16 *, const gfc_array_i16 *,
982 const gfc_array_l1 *, const gfc_array_i16 *);
983 internal_proto(pack_i16);
984 #endif
986 extern void pack_r4 (gfc_array_r4 *, const gfc_array_r4 *,
987 const gfc_array_l1 *, const gfc_array_r4 *);
988 internal_proto(pack_r4);
990 extern void pack_r8 (gfc_array_r8 *, const gfc_array_r8 *,
991 const gfc_array_l1 *, const gfc_array_r8 *);
992 internal_proto(pack_r8);
994 #ifdef HAVE_GFC_REAL_10
995 extern void pack_r10 (gfc_array_r10 *, const gfc_array_r10 *,
996 const gfc_array_l1 *, const gfc_array_r10 *);
997 internal_proto(pack_r10);
998 #endif
1000 #ifdef HAVE_GFC_REAL_16
1001 extern void pack_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1002 const gfc_array_l1 *, const gfc_array_r16 *);
1003 internal_proto(pack_r16);
1004 #endif
1006 extern void pack_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1007 const gfc_array_l1 *, const gfc_array_c4 *);
1008 internal_proto(pack_c4);
1010 extern void pack_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1011 const gfc_array_l1 *, const gfc_array_c8 *);
1012 internal_proto(pack_c8);
1014 #ifdef HAVE_GFC_REAL_10
1015 extern void pack_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1016 const gfc_array_l1 *, const gfc_array_c10 *);
1017 internal_proto(pack_c10);
1018 #endif
1020 #ifdef HAVE_GFC_REAL_16
1021 extern void pack_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1022 const gfc_array_l1 *, const gfc_array_c16 *);
1023 internal_proto(pack_c16);
1024 #endif
1026 /* Internal auxiliary functions for the unpack intrinsic. */
1028 extern void unpack0_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1029 const gfc_array_l1 *, const GFC_INTEGER_1 *);
1030 internal_proto(unpack0_i1);
1032 extern void unpack0_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1033 const gfc_array_l1 *, const GFC_INTEGER_2 *);
1034 internal_proto(unpack0_i2);
1036 extern void unpack0_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1037 const gfc_array_l1 *, const GFC_INTEGER_4 *);
1038 internal_proto(unpack0_i4);
1040 extern void unpack0_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1041 const gfc_array_l1 *, const GFC_INTEGER_8 *);
1042 internal_proto(unpack0_i8);
1044 #ifdef HAVE_GFC_INTEGER_16
1046 extern void unpack0_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1047 const gfc_array_l1 *, const GFC_INTEGER_16 *);
1048 internal_proto(unpack0_i16);
1050 #endif
1052 extern void unpack0_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1053 const gfc_array_l1 *, const GFC_REAL_4 *);
1054 internal_proto(unpack0_r4);
1056 extern void unpack0_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1057 const gfc_array_l1 *, const GFC_REAL_8 *);
1058 internal_proto(unpack0_r8);
1060 #ifdef HAVE_GFC_REAL_10
1062 extern void unpack0_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1063 const gfc_array_l1 *, const GFC_REAL_10 *);
1064 internal_proto(unpack0_r10);
1066 #endif
1068 #ifdef HAVE_GFC_REAL_16
1070 extern void unpack0_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1071 const gfc_array_l1 *, const GFC_REAL_16 *);
1072 internal_proto(unpack0_r16);
1074 #endif
1076 extern void unpack0_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1077 const gfc_array_l1 *, const GFC_COMPLEX_4 *);
1078 internal_proto(unpack0_c4);
1080 extern void unpack0_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1081 const gfc_array_l1 *, const GFC_COMPLEX_8 *);
1082 internal_proto(unpack0_c8);
1084 #ifdef HAVE_GFC_COMPLEX_10
1086 extern void unpack0_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1087 const gfc_array_l1 *mask, const GFC_COMPLEX_10 *);
1088 internal_proto(unpack0_c10);
1090 #endif
1092 #ifdef HAVE_GFC_COMPLEX_16
1094 extern void unpack0_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1095 const gfc_array_l1 *, const GFC_COMPLEX_16 *);
1096 internal_proto(unpack0_c16);
1098 #endif
1100 extern void unpack1_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1101 const gfc_array_l1 *, const gfc_array_i1 *);
1102 internal_proto(unpack1_i1);
1104 extern void unpack1_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1105 const gfc_array_l1 *, const gfc_array_i2 *);
1106 internal_proto(unpack1_i2);
1108 extern void unpack1_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1109 const gfc_array_l1 *, const gfc_array_i4 *);
1110 internal_proto(unpack1_i4);
1112 extern void unpack1_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1113 const gfc_array_l1 *, const gfc_array_i8 *);
1114 internal_proto(unpack1_i8);
1116 #ifdef HAVE_GFC_INTEGER_16
1117 extern void unpack1_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1118 const gfc_array_l1 *, const gfc_array_i16 *);
1119 internal_proto(unpack1_i16);
1120 #endif
1122 extern void unpack1_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1123 const gfc_array_l1 *, const gfc_array_r4 *);
1124 internal_proto(unpack1_r4);
1126 extern void unpack1_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1127 const gfc_array_l1 *, const gfc_array_r8 *);
1128 internal_proto(unpack1_r8);
1130 #ifdef HAVE_GFC_REAL_10
1131 extern void unpack1_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1132 const gfc_array_l1 *, const gfc_array_r10 *);
1133 internal_proto(unpack1_r10);
1134 #endif
1136 #ifdef HAVE_GFC_REAL_16
1137 extern void unpack1_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1138 const gfc_array_l1 *, const gfc_array_r16 *);
1139 internal_proto(unpack1_r16);
1140 #endif
1142 extern void unpack1_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1143 const gfc_array_l1 *, const gfc_array_c4 *);
1144 internal_proto(unpack1_c4);
1146 extern void unpack1_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1147 const gfc_array_l1 *, const gfc_array_c8 *);
1148 internal_proto(unpack1_c8);
1150 #ifdef HAVE_GFC_COMPLEX_10
1151 extern void unpack1_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1152 const gfc_array_l1 *, const gfc_array_c10 *);
1153 internal_proto(unpack1_c10);
1154 #endif
1156 #ifdef HAVE_GFC_COMPLEX_16
1157 extern void unpack1_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1158 const gfc_array_l1 *, const gfc_array_c16 *);
1159 internal_proto(unpack1_c16);
1160 #endif
1162 /* Helper functions for spread. */
1164 extern void spread_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1165 const index_type, const index_type);
1166 internal_proto(spread_i1);
1168 extern void spread_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1169 const index_type, const index_type);
1170 internal_proto(spread_i2);
1172 extern void spread_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1173 const index_type, const index_type);
1174 internal_proto(spread_i4);
1176 extern void spread_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1177 const index_type, const index_type);
1178 internal_proto(spread_i8);
1180 #ifdef HAVE_GFC_INTEGER_16
1181 extern void spread_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1182 const index_type, const index_type);
1183 internal_proto(spread_i16);
1185 #endif
1187 extern void spread_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1188 const index_type, const index_type);
1189 internal_proto(spread_r4);
1191 extern void spread_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1192 const index_type, const index_type);
1193 internal_proto(spread_r8);
1195 #ifdef HAVE_GFC_REAL_10
1196 extern void spread_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1197 const index_type, const index_type);
1198 internal_proto(spread_r10);
1200 #endif
1202 #ifdef HAVE_GFC_REAL_16
1203 extern void spread_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1204 const index_type, const index_type);
1205 internal_proto(spread_r16);
1207 #endif
1209 extern void spread_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1210 const index_type, const index_type);
1211 internal_proto(spread_c4);
1213 extern void spread_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1214 const index_type, const index_type);
1215 internal_proto(spread_c8);
1217 #ifdef HAVE_GFC_COMPLEX_10
1218 extern void spread_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1219 const index_type, const index_type);
1220 internal_proto(spread_c10);
1222 #endif
1224 #ifdef HAVE_GFC_COMPLEX_16
1225 extern void spread_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1226 const index_type, const index_type);
1227 internal_proto(spread_c16);
1229 #endif
1231 extern void spread_scalar_i1 (gfc_array_i1 *, const GFC_INTEGER_1 *,
1232 const index_type, const index_type);
1233 internal_proto(spread_scalar_i1);
1235 extern void spread_scalar_i2 (gfc_array_i2 *, const GFC_INTEGER_2 *,
1236 const index_type, const index_type);
1237 internal_proto(spread_scalar_i2);
1239 extern void spread_scalar_i4 (gfc_array_i4 *, const GFC_INTEGER_4 *,
1240 const index_type, const index_type);
1241 internal_proto(spread_scalar_i4);
1243 extern void spread_scalar_i8 (gfc_array_i8 *, const GFC_INTEGER_8 *,
1244 const index_type, const index_type);
1245 internal_proto(spread_scalar_i8);
1247 #ifdef HAVE_GFC_INTEGER_16
1248 extern void spread_scalar_i16 (gfc_array_i16 *, const GFC_INTEGER_16 *,
1249 const index_type, const index_type);
1250 internal_proto(spread_scalar_i16);
1252 #endif
1254 extern void spread_scalar_r4 (gfc_array_r4 *, const GFC_REAL_4 *,
1255 const index_type, const index_type);
1256 internal_proto(spread_scalar_r4);
1258 extern void spread_scalar_r8 (gfc_array_r8 *, const GFC_REAL_8 *,
1259 const index_type, const index_type);
1260 internal_proto(spread_scalar_r8);
1262 #ifdef HAVE_GFC_REAL_10
1263 extern void spread_scalar_r10 (gfc_array_r10 *, const GFC_REAL_10 *,
1264 const index_type, const index_type);
1265 internal_proto(spread_scalar_r10);
1267 #endif
1269 #ifdef HAVE_GFC_REAL_16
1270 extern void spread_scalar_r16 (gfc_array_r16 *, const GFC_REAL_16 *,
1271 const index_type, const index_type);
1272 internal_proto(spread_scalar_r16);
1274 #endif
1276 extern void spread_scalar_c4 (gfc_array_c4 *, const GFC_COMPLEX_4 *,
1277 const index_type, const index_type);
1278 internal_proto(spread_scalar_c4);
1280 extern void spread_scalar_c8 (gfc_array_c8 *, const GFC_COMPLEX_8 *,
1281 const index_type, const index_type);
1282 internal_proto(spread_scalar_c8);
1284 #ifdef HAVE_GFC_COMPLEX_10
1285 extern void spread_scalar_c10 (gfc_array_c10 *, const GFC_COMPLEX_10 *,
1286 const index_type, const index_type);
1287 internal_proto(spread_scalar_c10);
1289 #endif
1291 #ifdef HAVE_GFC_COMPLEX_16
1292 extern void spread_scalar_c16 (gfc_array_c16 *, const GFC_COMPLEX_16 *,
1293 const index_type, const index_type);
1294 internal_proto(spread_scalar_c16);
1296 #endif
1298 /* string_intrinsics.c */
1300 extern int compare_string (gfc_charlen_type, const char *,
1301 gfc_charlen_type, const char *);
1302 iexport_proto(compare_string);
1304 extern int compare_string_char4 (gfc_charlen_type, const gfc_char4_t *,
1305 gfc_charlen_type, const gfc_char4_t *);
1306 iexport_proto(compare_string_char4);
1308 extern int memcmp_char4 (const void *, const void *, size_t);
1309 internal_proto(memcmp_char4);
1312 /* random.c */
1314 extern void random_seed_i4 (GFC_INTEGER_4 * size, gfc_array_i4 * put,
1315 gfc_array_i4 * get);
1316 iexport_proto(random_seed_i4);
1317 extern void random_seed_i8 (GFC_INTEGER_8 * size, gfc_array_i8 * put,
1318 gfc_array_i8 * get);
1319 iexport_proto(random_seed_i8);
1321 /* size.c */
1323 typedef GFC_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, void) array_t;
1325 extern index_type size0 (const array_t * array);
1326 iexport_proto(size0);
1328 /* bounds.c */
1330 extern void bounds_equal_extents (array_t *, array_t *, const char *,
1331 const char *);
1332 internal_proto(bounds_equal_extents);
1334 extern void bounds_reduced_extents (array_t *, array_t *, int, const char *,
1335 const char *intrinsic);
1336 internal_proto(bounds_reduced_extents);
1338 extern void bounds_iforeach_return (array_t *, array_t *, const char *);
1339 internal_proto(bounds_iforeach_return);
1341 extern void bounds_ifunction_return (array_t *, const index_type *,
1342 const char *, const char *);
1343 internal_proto(bounds_ifunction_return);
1345 extern index_type count_0 (const gfc_array_l1 *);
1347 internal_proto(count_0);
1349 /* Internal auxiliary functions for cshift */
1351 void cshift0_i1 (gfc_array_i1 *, const gfc_array_i1 *, ptrdiff_t, int);
1352 internal_proto(cshift0_i1);
1354 void cshift0_i2 (gfc_array_i2 *, const gfc_array_i2 *, ptrdiff_t, int);
1355 internal_proto(cshift0_i2);
1357 void cshift0_i4 (gfc_array_i4 *, const gfc_array_i4 *, ptrdiff_t, int);
1358 internal_proto(cshift0_i4);
1360 void cshift0_i8 (gfc_array_i8 *, const gfc_array_i8 *, ptrdiff_t, int);
1361 internal_proto(cshift0_i8);
1363 #ifdef HAVE_GFC_INTEGER_16
1364 void cshift0_i16 (gfc_array_i16 *, const gfc_array_i16 *, ptrdiff_t, int);
1365 internal_proto(cshift0_i16);
1366 #endif
1368 void cshift0_r4 (gfc_array_r4 *, const gfc_array_r4 *, ptrdiff_t, int);
1369 internal_proto(cshift0_r4);
1371 void cshift0_r8 (gfc_array_r8 *, const gfc_array_r8 *, ptrdiff_t, int);
1372 internal_proto(cshift0_r8);
1374 #ifdef HAVE_GFC_REAL_10
1375 void cshift0_r10 (gfc_array_r10 *, const gfc_array_r10 *, ptrdiff_t, int);
1376 internal_proto(cshift0_r10);
1377 #endif
1379 #ifdef HAVE_GFC_REAL_16
1380 void cshift0_r16 (gfc_array_r16 *, const gfc_array_r16 *, ptrdiff_t, int);
1381 internal_proto(cshift0_r16);
1382 #endif
1384 void cshift0_c4 (gfc_array_c4 *, const gfc_array_c4 *, ptrdiff_t, int);
1385 internal_proto(cshift0_c4);
1387 void cshift0_c8 (gfc_array_c8 *, const gfc_array_c8 *, ptrdiff_t, int);
1388 internal_proto(cshift0_c8);
1390 #ifdef HAVE_GFC_COMPLEX_10
1391 void cshift0_c10 (gfc_array_c10 *, const gfc_array_c10 *, ptrdiff_t, int);
1392 internal_proto(cshift0_c10);
1393 #endif
1395 #ifdef HAVE_GFC_COMPLEX_16
1396 void cshift0_c16 (gfc_array_c16 *, const gfc_array_c16 *, ptrdiff_t, int);
1397 internal_proto(cshift0_c16);
1398 #endif
1400 #endif /* LIBGFOR_H */