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4c4b3eb0 1/* Common declarations for all of libgfortran.
a5544970 2 Copyright (C) 2002-2019 Free Software Foundation, Inc.
6de9cd9a
DN
3 Contributed by Paul Brook <paul@nowt.org>, and
4 Andy Vaught <andy@xena.eas.asu.edu>
5
bb408e87 6This file is part of the GNU Fortran runtime library (libgfortran).
6de9cd9a 7
748086b7
JJ
8Libgfortran is free software; you can redistribute it and/or modify
9it under the terms of the GNU General Public License as published by
10the Free Software Foundation; either version 3, or (at your option)
11any later version.
6de9cd9a 12
57dea9f6 13Libgfortran is distributed in the hope that it will be useful,
6de9cd9a
DN
14but WITHOUT ANY WARRANTY; without even the implied warranty of
15MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
748086b7 16GNU General Public License for more details.
6de9cd9a 17
748086b7
JJ
18Under Section 7 of GPL version 3, you are granted additional
19permissions described in the GCC Runtime Library Exception, version
203.1, as published by the Free Software Foundation.
57dea9f6 21
748086b7
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22You should have received a copy of the GNU General Public License and
23a copy of the GCC Runtime Library Exception along with this program;
24see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
25<http://www.gnu.org/licenses/>. */
6de9cd9a
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26
27#ifndef LIBGFOR_H
28#define LIBGFOR_H
29
196c8bc8
KT
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
38
200809cb
DE
39/* config.h MUST be first because it can affect system headers. */
40#include "config.h"
41
d8163f5c 42#include <stdio.h>
887d9b8b 43#include <stdlib.h>
6de9cd9a 44#include <stddef.h>
cdc5524f 45#include <float.h>
7f763922 46#include <stdarg.h>
f5e3ed2d 47#include <stdbool.h>
6de9cd9a 48
62755fd5
TG
49#if HAVE_COMPLEX_H
50/* Must appear before math.h on VMS systems. */
51# include <complex.h>
52#else
53#define complex __complex__
54#endif
55
56#include <math.h>
57
1ec601bf
FXC
58/* If we're support quad-precision floating-point type, include the
59 header to our support library. */
60#ifdef HAVE_FLOAT128
61# include "quadmath_weak.h"
62#endif
63
196c8bc8
KT
64#ifdef __MINGW32__
65extern float __strtof (const char *, char **);
66#define gfc_strtof __strtof
67extern double __strtod (const char *, char **);
68#define gfc_strtod __strtod
69extern long double __strtold (const char *, char **);
70#define gfc_strtold __strtold
71#else
72#define gfc_strtof strtof
73#define gfc_strtod strtod
74#define gfc_strtold strtold
75#endif
76
d74b97cc
FXC
77#include "../gcc/fortran/libgfortran.h"
78
1409cd0b
FXC
79#include "c99_protos.h"
80
6e4d9244
EB
81#if HAVE_IEEEFP_H
82#include <ieeefp.h>
83#endif
84
4c4b3eb0 85#include "gstdint.h"
3969c39f 86
6de9cd9a
DN
87#if HAVE_SYS_TYPES_H
88#include <sys/types.h>
89#endif
a4384bad 90
edaaef60
JB
91#ifdef HAVE_SYS_UIO_H
92#include <sys/uio.h>
93#endif
94
a4384bad
JB
95#ifdef __MINGW32__
96typedef off64_t gfc_offset;
97#else
81f4be3c 98typedef off_t gfc_offset;
a4384bad 99#endif
6de9cd9a
DN
100
101#ifndef NULL
102#define NULL (void *) 0
103#endif
104
433d6b39
TB
105
106/* The following macros can be used to annotate conditions which are likely or
107 unlikely to be true. Avoid using them when a condition is only slightly
108 more likely/less unlikely than average to avoid the performance penalties of
109 branch misprediction. In addition, as __builtin_expect overrides the compiler
110 heuristic, do not use in conditions where one of the branches ends with a
111 call to a function with __attribute__((noreturn)): the compiler internal
112 heuristic will mark this branch as much less likely as unlikely() would
113 do. */
114
9731c4a3
TB
115#define likely(x) __builtin_expect(!!(x), 1)
116#define unlikely(x) __builtin_expect(!!(x), 0)
6de9cd9a 117
20305b50
TK
118/* This macro can be used to annotate conditions which we know to
119 be true, so that the compiler can optimize based on the condition. */
120
121#define GFC_ASSERT(EXPR) \
122 ((void)(__builtin_expect (!(EXPR), 0) ? __builtin_unreachable (), 0 : 0))
0dce3ca1 123
44720bef
JB
124/* Make sure we have ptrdiff_t. */
125#ifndef HAVE_PTRDIFF_T
126typedef intptr_t ptrdiff_t;
c7d0f4d5
TK
127#endif
128
db8092dc
FXC
129/* On mingw, work around the buggy Windows snprintf() by using the one
130 mingw provides, __mingw_snprintf(). We also provide a prototype for
131 __mingw_snprintf(), because the mingw headers currently don't have one. */
132#if HAVE_MINGW_SNPRINTF
9731c4a3 133extern int __mingw_snprintf (char *, size_t, const char *, ...)
6a21bcbe 134 __attribute__ ((format (gnu_printf, 3, 4)));
db8092dc
FXC
135#undef snprintf
136#define snprintf __mingw_snprintf
d30fe1c5
JB
137/* Fallback to sprintf if target does not have snprintf. */
138#elif !defined(HAVE_SNPRINTF)
139#undef snprintf
140#define snprintf(str, size, ...) sprintf (str, __VA_ARGS__)
db8092dc
FXC
141#endif
142
143
7d7b8bfe
RH
144/* For a library, a standard prefix is a requirement in order to partition
145 the namespace. IPREFIX is for symbols intended to be internal to the
146 library. */
147#define PREFIX(x) _gfortran_ ## x
148#define IPREFIX(x) _gfortrani_ ## x
149
150/* Magic to rename a symbol at the compiler level. You continue to refer
151 to the symbol as OLD in the source, but it'll be named NEW in the asm. */
152#define sym_rename(old, new) sym_rename1(old, __USER_LABEL_PREFIX__, new)
153#define sym_rename1(old, ulp, new) sym_rename2(old, ulp, new)
154#define sym_rename2(old, ulp, new) extern __typeof(old) old __asm__(#ulp #new)
155
156/* There are several classifications of routines:
157
158 (1) Symbols used only within the library,
159 (2) Symbols to be exported from the library,
160 (3) Symbols to be exported from the library, but
161 also used inside the library.
162
163 By telling the compiler about these different classifications we can
164 tightly control the interface seen by the user, and get better code
165 from the compiler at the same time.
166
167 One of the following should be used immediately after the declaration
168 of each symbol:
169
170 internal_proto Marks a symbol used only within the library,
171 and adds IPREFIX to the assembly-level symbol
172 name. The later is important for maintaining
173 the namespace partition for the static library.
174
175 export_proto Marks a symbol to be exported, and adds PREFIX
176 to the assembly-level symbol name.
177
178 export_proto_np Marks a symbol to be exported without adding PREFIX.
179
180 iexport_proto Marks a function to be exported, but with the
181 understanding that it can be used inside as well.
182
183 iexport_data_proto Similarly, marks a data symbol to be exported.
184 Unfortunately, some systems can't play the hidden
185 symbol renaming trick on data symbols, thanks to
186 the horribleness of COPY relocations.
187
188 If iexport_proto or iexport_data_proto is used, you must also use
189 iexport or iexport_data after the *definition* of the symbol. */
190
191#if defined(HAVE_ATTRIBUTE_VISIBILITY)
192# define internal_proto(x) \
193 sym_rename(x, IPREFIX (x)) __attribute__((__visibility__("hidden")))
194#else
195# define internal_proto(x) sym_rename(x, IPREFIX(x))
196#endif
197
198#if defined(HAVE_ATTRIBUTE_VISIBILITY) && defined(HAVE_ATTRIBUTE_ALIAS)
199# define export_proto(x) sym_rename(x, PREFIX(x))
200# define export_proto_np(x) extern char swallow_semicolon
201# define iexport_proto(x) internal_proto(x)
3075a4cd
FXC
202# define iexport(x) iexport1(x, IPREFIX(x))
203# define iexport1(x,y) iexport2(x,y)
204# define iexport2(x,y) \
29d24852 205 extern __typeof(x) PREFIX(x) __attribute__((__alias__(#y), __copy__ (x)))
7d7b8bfe
RH
206#else
207# define export_proto(x) sym_rename(x, PREFIX(x))
208# define export_proto_np(x) extern char swallow_semicolon
209# define iexport_proto(x) export_proto(x)
210# define iexport(x) extern char swallow_semicolon
211#endif
212
213/* TODO: detect the case when we *can* hide the symbol. */
214#define iexport_data_proto(x) export_proto(x)
215#define iexport_data(x) extern char swallow_semicolon
6de9cd9a
DN
216
217/* The only reliable way to get the offset of a field in a struct
218 in a system independent way is via this macro. */
219#ifndef offsetof
220#define offsetof(TYPE, MEMBER) ((size_t) &((TYPE *) 0)->MEMBER)
221#endif
222
b1012ca4
FXC
223/* The C99 classification macros isfinite, isinf, isnan, isnormal
224 and signbit are broken or inconsistent on quite a few targets.
225 So, we use GCC's builtins instead.
e88334a6 226
b1012ca4
FXC
227 Another advantage for GCC's builtins for these type-generic macros
228 is that it handles floating-point types that the system headers
229 may not support (like __float128). */
e88334a6 230
118ea208 231#undef isnan
b1012ca4
FXC
232#define isnan(x) __builtin_isnan(x)
233#undef isfinite
234#define isfinite(x) __builtin_isfinite(x)
235#undef isinf
236#define isinf(x) __builtin_isinf(x)
237#undef isnormal
238#define isnormal(x) __builtin_isnormal(x)
239#undef signbit
240#define signbit(x) __builtin_signbit(x)
69d3c9a4 241
32aa3bff 242#include "kinds.h"
6de9cd9a 243
566ffce8
JD
244/* Define the type used for the current record number for large file I/O.
245 The size must be consistent with the size defined on the compiler side. */
246#ifdef HAVE_GFC_INTEGER_8
91b30ee5 247typedef GFC_INTEGER_8 GFC_IO_INT;
566ffce8
JD
248#else
249#ifdef HAVE_GFC_INTEGER_4
91b30ee5 250typedef GFC_INTEGER_4 GFC_IO_INT;
566ffce8
JD
251#else
252#error "GFC_INTEGER_4 should be available for the library to compile".
253#endif
254#endif
255
da17f559
PB
256/* The following two definitions must be consistent with the types used
257 by the compiler. */
258/* The type used of array indices, amongst other things. */
44720bef 259typedef ptrdiff_t index_type;
4b267817 260
d7177ab2 261/* The type used for the lengths of character variables. */
f622221a 262typedef size_t gfc_charlen_type;
6de9cd9a 263
4b267817
FXC
264/* Definitions of CHARACTER data types:
265 - CHARACTER(KIND=1) corresponds to the C char type,
266 - CHARACTER(KIND=4) corresponds to an unsigned 32-bit integer. */
267typedef GFC_UINTEGER_4 gfc_char4_t;
268
269/* Byte size of character kinds. For the kinds currently supported, it's
270 simply equal to the kind parameter itself. */
271#define GFC_SIZE_OF_CHAR_KIND(kind) (kind)
272
28dc6b33 273#define GFOR_POINTER_TO_L1(p, kind) \
5675291d 274 ((__BYTE_ORDER__ == __ORDER_BIG_ENDIAN__ ? 1: 0) * (kind - 1) + (GFC_LOGICAL_1 *)(p))
6de9cd9a 275
567c915b
TK
276#define GFC_INTEGER_1_HUGE \
277 (GFC_INTEGER_1)((((GFC_UINTEGER_1)1) << 7) - 1)
278#define GFC_INTEGER_2_HUGE \
279 (GFC_INTEGER_2)((((GFC_UINTEGER_2)1) << 15) - 1)
6de9cd9a
DN
280#define GFC_INTEGER_4_HUGE \
281 (GFC_INTEGER_4)((((GFC_UINTEGER_4)1) << 31) - 1)
282#define GFC_INTEGER_8_HUGE \
283 (GFC_INTEGER_8)((((GFC_UINTEGER_8)1) << 63) - 1)
644cb69f
FXC
284#ifdef HAVE_GFC_INTEGER_16
285#define GFC_INTEGER_16_HUGE \
286 (GFC_INTEGER_16)((((GFC_UINTEGER_16)1) << 127) - 1)
287#endif
288
80927a56
JJ
289/* M{IN,AX}{LOC,VAL} need also infinities and NaNs if supported. */
290
291#ifdef __FLT_HAS_INFINITY__
292# define GFC_REAL_4_INFINITY __builtin_inff ()
293#endif
294#ifdef __DBL_HAS_INFINITY__
295# define GFC_REAL_8_INFINITY __builtin_inf ()
296#endif
297#ifdef __LDBL_HAS_INFINITY__
298# ifdef HAVE_GFC_REAL_10
299# define GFC_REAL_10_INFINITY __builtin_infl ()
300# endif
301# ifdef HAVE_GFC_REAL_16
1ec601bf
FXC
302# ifdef GFC_REAL_16_IS_LONG_DOUBLE
303# define GFC_REAL_16_INFINITY __builtin_infl ()
304# else
305# define GFC_REAL_16_INFINITY __builtin_infq ()
306# endif
80927a56
JJ
307# endif
308#endif
309#ifdef __FLT_HAS_QUIET_NAN__
310# define GFC_REAL_4_QUIET_NAN __builtin_nanf ("")
311#endif
312#ifdef __DBL_HAS_QUIET_NAN__
313# define GFC_REAL_8_QUIET_NAN __builtin_nan ("")
314#endif
315#ifdef __LDBL_HAS_QUIET_NAN__
316# ifdef HAVE_GFC_REAL_10
317# define GFC_REAL_10_QUIET_NAN __builtin_nanl ("")
318# endif
319# ifdef HAVE_GFC_REAL_16
1ec601bf
FXC
320# ifdef GFC_REAL_16_IS_LONG_DOUBLE
321# define GFC_REAL_16_QUIET_NAN __builtin_nanl ("")
322# else
323# define GFC_REAL_16_QUIET_NAN nanq ("")
324# endif
80927a56
JJ
325# endif
326#endif
6de9cd9a
DN
327
328typedef struct descriptor_dimension
329{
dfb55fdc 330 index_type _stride;
21d1335b 331 index_type lower_bound;
dfb55fdc 332 index_type _ubound;
6de9cd9a
DN
333}
334descriptor_dimension;
335
7fb43006
PT
336typedef struct dtype_type
337{
338 size_t elem_len;
339 int version;
340 signed char rank;
341 signed char type;
342 signed short attribute;
343}
344dtype_type;
345
e9bfdf18 346#define GFC_ARRAY_DESCRIPTOR(type) \
6de9cd9a 347struct {\
21d1335b 348 type *base_addr;\
efd4dc1a 349 size_t offset;\
7fb43006 350 dtype_type dtype;\
ff3598bc 351 index_type span;\
e9bfdf18 352 descriptor_dimension dim[];\
6de9cd9a
DN
353}
354
355/* Commonly used array descriptor types. */
e9bfdf18
TK
356typedef GFC_ARRAY_DESCRIPTOR (void) gfc_array_void;
357typedef GFC_ARRAY_DESCRIPTOR (char) gfc_array_char;
358typedef GFC_ARRAY_DESCRIPTOR (GFC_INTEGER_1) gfc_array_i1;
359typedef GFC_ARRAY_DESCRIPTOR (GFC_INTEGER_2) gfc_array_i2;
360typedef GFC_ARRAY_DESCRIPTOR (GFC_INTEGER_4) gfc_array_i4;
361typedef GFC_ARRAY_DESCRIPTOR (GFC_INTEGER_8) gfc_array_i8;
01ce9e31 362typedef GFC_ARRAY_DESCRIPTOR (index_type) gfc_array_index_type;
644cb69f 363#ifdef HAVE_GFC_INTEGER_16
e9bfdf18 364typedef GFC_ARRAY_DESCRIPTOR (GFC_INTEGER_16) gfc_array_i16;
644cb69f 365#endif
e9bfdf18
TK
366typedef GFC_ARRAY_DESCRIPTOR (GFC_REAL_4) gfc_array_r4;
367typedef GFC_ARRAY_DESCRIPTOR (GFC_REAL_8) gfc_array_r8;
644cb69f 368#ifdef HAVE_GFC_REAL_10
e9bfdf18 369typedef GFC_ARRAY_DESCRIPTOR (GFC_REAL_10) gfc_array_r10;
644cb69f
FXC
370#endif
371#ifdef HAVE_GFC_REAL_16
e9bfdf18 372typedef GFC_ARRAY_DESCRIPTOR (GFC_REAL_16) gfc_array_r16;
644cb69f 373#endif
e9bfdf18
TK
374typedef GFC_ARRAY_DESCRIPTOR (GFC_COMPLEX_4) gfc_array_c4;
375typedef GFC_ARRAY_DESCRIPTOR (GFC_COMPLEX_8) gfc_array_c8;
644cb69f 376#ifdef HAVE_GFC_COMPLEX_10
e9bfdf18 377typedef GFC_ARRAY_DESCRIPTOR (GFC_COMPLEX_10) gfc_array_c10;
644cb69f
FXC
378#endif
379#ifdef HAVE_GFC_COMPLEX_16
e9bfdf18 380typedef GFC_ARRAY_DESCRIPTOR (GFC_COMPLEX_16) gfc_array_c16;
644cb69f 381#endif
e9bfdf18
TK
382typedef GFC_ARRAY_DESCRIPTOR (GFC_LOGICAL_1) gfc_array_l1;
383typedef GFC_ARRAY_DESCRIPTOR (GFC_LOGICAL_2) gfc_array_l2;
384typedef GFC_ARRAY_DESCRIPTOR (GFC_LOGICAL_4) gfc_array_l4;
385typedef GFC_ARRAY_DESCRIPTOR (GFC_LOGICAL_8) gfc_array_l8;
644cb69f 386#ifdef HAVE_GFC_LOGICAL_16
e9bfdf18 387typedef GFC_ARRAY_DESCRIPTOR (GFC_LOGICAL_16) gfc_array_l16;
644cb69f 388#endif
01ce9e31
TK
389
390typedef GFC_ARRAY_DESCRIPTOR (GFC_UINTEGER_1) gfc_array_s1;
391typedef GFC_ARRAY_DESCRIPTOR (GFC_UINTEGER_4) gfc_array_s4;
6de9cd9a 392
e9bfdf18
TK
393/* These are for when you actually want to declare a descriptor, as
394 opposed to a pointer to it. */
395
396#define GFC_FULL_ARRAY_DESCRIPTOR(r, type) \
397struct {\
398 type *base_addr;\
399 size_t offset;\
400 dtype_type dtype;\
401 index_type span;\
402 descriptor_dimension dim[r];\
403}
404
405typedef GFC_FULL_ARRAY_DESCRIPTOR (GFC_MAX_DIMENSIONS, GFC_INTEGER_4) gfc_full_array_i4;
406
7fb43006
PT
407#define GFC_DESCRIPTOR_RANK(desc) ((desc)->dtype.rank)
408#define GFC_DESCRIPTOR_TYPE(desc) ((desc)->dtype.type)
409#define GFC_DESCRIPTOR_SIZE(desc) ((desc)->dtype.elem_len)
21d1335b 410#define GFC_DESCRIPTOR_DATA(desc) ((desc)->base_addr)
6de9cd9a
DN
411#define GFC_DESCRIPTOR_DTYPE(desc) ((desc)->dtype)
412
21d1335b 413#define GFC_DIMENSION_LBOUND(dim) ((dim).lower_bound)
dfb55fdc
TK
414#define GFC_DIMENSION_UBOUND(dim) ((dim)._ubound)
415#define GFC_DIMENSION_STRIDE(dim) ((dim)._stride)
21d1335b 416#define GFC_DIMENSION_EXTENT(dim) ((dim)._ubound + 1 - (dim).lower_bound)
dfb55fdc
TK
417#define GFC_DIMENSION_SET(dim,lb,ub,str) \
418 do \
419 { \
21d1335b 420 (dim).lower_bound = lb; \
dfb55fdc
TK
421 (dim)._ubound = ub; \
422 (dim)._stride = str; \
423 } while (0)
424
425
21d1335b 426#define GFC_DESCRIPTOR_LBOUND(desc,i) ((desc)->dim[i].lower_bound)
dfb55fdc
TK
427#define GFC_DESCRIPTOR_UBOUND(desc,i) ((desc)->dim[i]._ubound)
428#define GFC_DESCRIPTOR_EXTENT(desc,i) ((desc)->dim[i]._ubound + 1 \
21d1335b 429 - (desc)->dim[i].lower_bound)
dfb55fdc
TK
430#define GFC_DESCRIPTOR_EXTENT_BYTES(desc,i) \
431 (GFC_DESCRIPTOR_EXTENT(desc,i) * GFC_DESCRIPTOR_SIZE(desc))
432
433#define GFC_DESCRIPTOR_STRIDE(desc,i) ((desc)->dim[i]._stride)
434#define GFC_DESCRIPTOR_STRIDE_BYTES(desc,i) \
435 (GFC_DESCRIPTOR_STRIDE(desc,i) * GFC_DESCRIPTOR_SIZE(desc))
436
75f2543f
TK
437/* Macros to get both the size and the type with a single masking operation */
438
c276d605 439#define GFC_DTYPE_SIZE_MASK (-((index_type) 1 << GFC_DTYPE_SIZE_SHIFT))
75f2543f
TK
440#define GFC_DTYPE_TYPE_SIZE_MASK (GFC_DTYPE_SIZE_MASK | GFC_DTYPE_TYPE_MASK)
441
7fb43006
PT
442#define GFC_DTYPE_TYPE_SIZE(desc) (( ((desc)->dtype.type << GFC_DTYPE_TYPE_SHIFT) \
443 | ((desc)->dtype.elem_len << GFC_DTYPE_SIZE_SHIFT) ) & GFC_DTYPE_TYPE_SIZE_MASK)
75f2543f 444
fa3c4d47
TK
445/* Macros to set size and type information. */
446
447#define GFC_DTYPE_COPY(a,b) do { (a)->dtype = (b)->dtype; } while(0)
7fb43006
PT
448#define GFC_DTYPE_IS_UNSET(a) (unlikely((a)->dtype.elem_len == 0))
449#define GFC_DTYPE_CLEAR(a) do { (a)->dtype.elem_len = 0; \
450 (a)->dtype.version = 0; \
451 (a)->dtype.rank = 0; \
452 (a)->dtype.type = 0; \
453 (a)->dtype.attribute = 0; \
454} while(0)
fa3c4d47 455
a11930ba 456#define GFC_DTYPE_INTEGER_1 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 457 | (sizeof(GFC_INTEGER_1) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 458#define GFC_DTYPE_INTEGER_2 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 459 | (sizeof(GFC_INTEGER_2) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 460#define GFC_DTYPE_INTEGER_4 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 461 | (sizeof(GFC_INTEGER_4) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 462#define GFC_DTYPE_INTEGER_8 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
463 | (sizeof(GFC_INTEGER_8) << GFC_DTYPE_SIZE_SHIFT))
464#ifdef HAVE_GFC_INTEGER_16
a11930ba 465#define GFC_DTYPE_INTEGER_16 ((BT_INTEGER << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
466 | (sizeof(GFC_INTEGER_16) << GFC_DTYPE_SIZE_SHIFT))
467#endif
468
a11930ba 469#define GFC_DTYPE_LOGICAL_1 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 470 | (sizeof(GFC_LOGICAL_1) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 471#define GFC_DTYPE_LOGICAL_2 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 472 | (sizeof(GFC_LOGICAL_2) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 473#define GFC_DTYPE_LOGICAL_4 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 474 | (sizeof(GFC_LOGICAL_4) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 475#define GFC_DTYPE_LOGICAL_8 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
476 | (sizeof(GFC_LOGICAL_8) << GFC_DTYPE_SIZE_SHIFT))
477#ifdef HAVE_GFC_LOGICAL_16
a11930ba 478#define GFC_DTYPE_LOGICAL_16 ((BT_LOGICAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
479 | (sizeof(GFC_LOGICAL_16) << GFC_DTYPE_SIZE_SHIFT))
480#endif
481
a11930ba 482#define GFC_DTYPE_REAL_4 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 483 | (sizeof(GFC_REAL_4) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 484#define GFC_DTYPE_REAL_8 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
485 | (sizeof(GFC_REAL_8) << GFC_DTYPE_SIZE_SHIFT))
486#ifdef HAVE_GFC_REAL_10
a11930ba 487#define GFC_DTYPE_REAL_10 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
488 | (sizeof(GFC_REAL_10) << GFC_DTYPE_SIZE_SHIFT))
489#endif
490#ifdef HAVE_GFC_REAL_16
a11930ba 491#define GFC_DTYPE_REAL_16 ((BT_REAL << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
492 | (sizeof(GFC_REAL_16) << GFC_DTYPE_SIZE_SHIFT))
493#endif
494
a11930ba 495#define GFC_DTYPE_COMPLEX_4 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
75f2543f 496 | (sizeof(GFC_COMPLEX_4) << GFC_DTYPE_SIZE_SHIFT))
a11930ba 497#define GFC_DTYPE_COMPLEX_8 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
498 | (sizeof(GFC_COMPLEX_8) << GFC_DTYPE_SIZE_SHIFT))
499#ifdef HAVE_GFC_COMPLEX_10
a11930ba 500#define GFC_DTYPE_COMPLEX_10 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
501 | (sizeof(GFC_COMPLEX_10) << GFC_DTYPE_SIZE_SHIFT))
502#endif
503#ifdef HAVE_GFC_COMPLEX_16
a11930ba 504#define GFC_DTYPE_COMPLEX_16 ((BT_COMPLEX << GFC_DTYPE_TYPE_SHIFT) \
75f2543f
TK
505 | (sizeof(GFC_COMPLEX_16) << GFC_DTYPE_SIZE_SHIFT))
506#endif
507
c7d0f4d5
TK
508/* Macros to determine the alignment of pointers. */
509
510#define GFC_UNALIGNED_2(x) (((uintptr_t)(x)) & \
511 (__alignof__(GFC_INTEGER_2) - 1))
512#define GFC_UNALIGNED_4(x) (((uintptr_t)(x)) & \
513 (__alignof__(GFC_INTEGER_4) - 1))
514#define GFC_UNALIGNED_8(x) (((uintptr_t)(x)) & \
515 (__alignof__(GFC_INTEGER_8) - 1))
516#ifdef HAVE_GFC_INTEGER_16
517#define GFC_UNALIGNED_16(x) (((uintptr_t)(x)) & \
518 (__alignof__(GFC_INTEGER_16) - 1))
519#endif
520
c2b00cdc
TK
521#define GFC_UNALIGNED_C4(x) (((uintptr_t)(x)) & \
522 (__alignof__(GFC_COMPLEX_4) - 1))
523
524#define GFC_UNALIGNED_C8(x) (((uintptr_t)(x)) & \
525 (__alignof__(GFC_COMPLEX_8) - 1))
526
6de9cd9a
DN
527/* Runtime library include. */
528#define stringize(x) expand_macro(x)
529#define expand_macro(x) # x
530
531/* Runtime options structure. */
532
533typedef struct
534{
fbac3363 535 int stdin_unit, stdout_unit, stderr_unit, optional_plus;
6de9cd9a
DN
536 int locus;
537
538 int separator_len;
539 const char *separator;
540
67c24a8b 541 int all_unbuffered, unbuffered_preconnected;
de8bd142 542 int fpe, backtrace;
6de9cd9a
DN
543}
544options_t;
545
6de9cd9a 546extern options_t options;
7d7b8bfe 547internal_proto(options);
6de9cd9a 548
de8bd142
JB
549extern void backtrace_handler (int);
550internal_proto(backtrace_handler);
2b840e50 551
6de9cd9a 552
8b67b708
FXC
553/* Compile-time options that will influence the library. */
554
555typedef struct
556{
557 int warn_std;
558 int allow_std;
5f8f5313 559 int pedantic;
eaa90d25 560 int convert;
868d75db 561 int backtrace;
2bb6de3a 562 int sign_zero;
d67ab5ee 563 size_t record_marker;
07b3bbf2 564 int max_subrecord_length;
bdcfceb4 565 int bounds_check;
fa86f4f9 566 int fpe_summary;
8b67b708
FXC
567}
568compile_options_t;
569
570extern compile_options_t compile_options;
571internal_proto(compile_options);
572
e55a7487
AJ
573extern void init_compile_options (void);
574internal_proto(init_compile_options);
8b67b708 575
07b3bbf2 576#define GFC_MAX_SUBRECORD_LENGTH 2147483639 /* 2**31 - 9 */
8b67b708 577
6de9cd9a
DN
578/* Structure for statement options. */
579
580typedef struct
581{
582 const char *name;
583 int value;
584}
585st_option;
586
8b67b708 587
8f0d39a8
FXC
588/* This is returned by notification_std to know if, given the flags
589 that were given (-std=, -pedantic) we should issue an error, a warning
590 or nothing. */
591typedef enum
b2ef02df 592{ NOTIFICATION_SILENT, NOTIFICATION_WARNING, NOTIFICATION_ERROR }
8f0d39a8
FXC
593notification;
594
2e444427 595
6de9cd9a
DN
596/* The filename and line number don't go inside the globals structure.
597 They are set by the rest of the program and must be linked to. */
598
7d7b8bfe
RH
599/* Location of the current library call (optional). */
600extern unsigned line;
601iexport_data_proto(line);
6de9cd9a 602
6de9cd9a 603extern char *filename;
7d7b8bfe 604iexport_data_proto(filename);
6de9cd9a
DN
605
606
0dce3ca1
FXC
607#define CHARACTER2(name) \
608 gfc_charlen_type name ## _len; \
609 char * name
610
611typedef struct st_parameter_common
612{
613 GFC_INTEGER_4 flags;
614 GFC_INTEGER_4 unit;
615 const char *filename;
616 GFC_INTEGER_4 line;
617 CHARACTER2 (iomsg);
618 GFC_INTEGER_4 *iostat;
619}
620st_parameter_common;
621
622#undef CHARACTER2
623
624#define IOPARM_LIBRETURN_MASK (3 << 0)
625#define IOPARM_LIBRETURN_OK (0 << 0)
626#define IOPARM_LIBRETURN_ERROR (1 << 0)
627#define IOPARM_LIBRETURN_END (2 << 0)
628#define IOPARM_LIBRETURN_EOR (3 << 0)
629#define IOPARM_ERR (1 << 2)
630#define IOPARM_END (1 << 3)
631#define IOPARM_EOR (1 << 4)
632#define IOPARM_HAS_IOSTAT (1 << 5)
633#define IOPARM_HAS_IOMSG (1 << 6)
634
635#define IOPARM_COMMON_MASK ((1 << 7) - 1)
636
0ef33d44 637/* Make sure to keep in sync with io/io.h (st_parameter_open). */
0dce3ca1
FXC
638#define IOPARM_OPEN_HAS_RECL_IN (1 << 7)
639#define IOPARM_OPEN_HAS_FILE (1 << 8)
640#define IOPARM_OPEN_HAS_STATUS (1 << 9)
641#define IOPARM_OPEN_HAS_ACCESS (1 << 10)
642#define IOPARM_OPEN_HAS_FORM (1 << 11)
643#define IOPARM_OPEN_HAS_BLANK (1 << 12)
644#define IOPARM_OPEN_HAS_POSITION (1 << 13)
645#define IOPARM_OPEN_HAS_ACTION (1 << 14)
646#define IOPARM_OPEN_HAS_DELIM (1 << 15)
647#define IOPARM_OPEN_HAS_PAD (1 << 16)
648#define IOPARM_OPEN_HAS_CONVERT (1 << 17)
10256cbe
JD
649#define IOPARM_OPEN_HAS_DECIMAL (1 << 18)
650#define IOPARM_OPEN_HAS_ENCODING (1 << 19)
651#define IOPARM_OPEN_HAS_ROUND (1 << 20)
652#define IOPARM_OPEN_HAS_SIGN (1 << 21)
653#define IOPARM_OPEN_HAS_ASYNCHRONOUS (1 << 22)
dcfddbd4 654#define IOPARM_OPEN_HAS_NEWUNIT (1 << 23)
0ef33d44
FR
655#define IOPARM_OPEN_HAS_READONLY (1 << 24)
656#define IOPARM_OPEN_HAS_CC (1 << 25)
657#define IOPARM_OPEN_HAS_SHARE (1 << 26)
0dce3ca1 658
cb13c288
JD
659/* library start function and end macro. These can be expanded if needed
660 in the future. cmp is st_parameter_common *cmp */
f2ae4b2b 661
0dce3ca1 662extern void library_start (st_parameter_common *);
7d7b8bfe 663internal_proto(library_start);
6de9cd9a 664
5e805e44 665#define library_end()
6de9cd9a 666
cb13c288
JD
667/* main.c */
668
669extern void stupid_function_name_for_static_linking (void);
670internal_proto(stupid_function_name_for_static_linking);
671
7d7b8bfe 672extern void set_args (int, char **);
fa10ccb2 673iexport_proto(set_args);
6de9cd9a 674
7d7b8bfe
RH
675extern void get_args (int *, char ***);
676internal_proto(get_args);
6de9cd9a 677
868d75db
FXC
678/* backtrace.c */
679
1b0b9fcb 680extern void show_backtrace (bool);
ad4f95e3
FXC
681internal_proto(show_backtrace);
682
868d75db 683
6de9cd9a 684/* error.c */
6de9cd9a 685
486024b1
JD
686#if defined(HAVE_GFC_REAL_16)
687#define GFC_LARGEST_BUF (sizeof (GFC_REAL_16))
b2ef02df
KT
688#elif defined(HAVE_GFC_INTEGER_16)
689#define GFC_LARGEST_BUF (sizeof (GFC_INTEGER_LARGEST))
486024b1
JD
690#elif defined(HAVE_GFC_REAL_10)
691#define GFC_LARGEST_BUF (sizeof (GFC_REAL_10))
692#else
693#define GFC_LARGEST_BUF (sizeof (GFC_INTEGER_LARGEST))
694#endif
695
1449b8cb 696#define GFC_ITOA_BUF_SIZE (sizeof (GFC_INTEGER_LARGEST) * 3 + 2)
486024b1
JD
697#define GFC_XTOA_BUF_SIZE (GFC_LARGEST_BUF * 2 + 1)
698#define GFC_OTOA_BUF_SIZE (GFC_LARGEST_BUF * 3 + 1)
699#define GFC_BTOA_BUF_SIZE (GFC_LARGEST_BUF * 8 + 1)
1449b8cb 700
77777b33 701extern _Noreturn void sys_abort (void);
de8bd142 702internal_proto(sys_abort);
eedeea04 703
71cda9ca
JB
704extern _Noreturn void exit_error (int);
705internal_proto(exit_error);
706
1028b2bd
JB
707extern ssize_t estr_write (const char *);
708internal_proto(estr_write);
709
edaaef60
JB
710#if !defined(HAVE_WRITEV) && !defined(HAVE_SYS_UIO_H)
711struct iovec {
712 void *iov_base; /* Starting address */
713 size_t iov_len; /* Number of bytes to transfer */
714};
715#endif
716
717extern ssize_t estr_writev (const struct iovec *iov, int iovcnt);
718internal_proto(estr_writev);
1028b2bd
JB
719
720extern int st_printf (const char *, ...)
721 __attribute__((format (gfc_printf, 1, 2)));
722internal_proto(st_printf);
723
f9bfed22
JB
724extern const char *gfc_xtoa (GFC_UINTEGER_LARGEST, char *, size_t);
725internal_proto(gfc_xtoa);
6de9cd9a 726
77777b33 727extern _Noreturn void os_error (const char *);
1529b8d9 728iexport_proto(os_error);
6de9cd9a 729
0dce3ca1 730extern void show_locus (st_parameter_common *);
7d7b8bfe 731internal_proto(show_locus);
6de9cd9a 732
77777b33
FXC
733extern _Noreturn void runtime_error (const char *, ...)
734 __attribute__ ((format (gfc_printf, 1, 2)));
7d7b8bfe 735iexport_proto(runtime_error);
6de9cd9a 736
77777b33
FXC
737extern _Noreturn void runtime_error_at (const char *, const char *, ...)
738 __attribute__ ((format (gfc_printf, 2, 3)));
cb13c288
JD
739iexport_proto(runtime_error_at);
740
9731c4a3 741extern void runtime_warning_at (const char *, const char *, ...)
196c8bc8 742 __attribute__ ((format (gfc_printf, 2, 3)));
0d52899f
TB
743iexport_proto(runtime_warning_at);
744
77777b33 745extern _Noreturn void internal_error (st_parameter_common *, const char *);
7d7b8bfe 746internal_proto(internal_error);
6de9cd9a 747
7d7b8bfe
RH
748extern const char *translate_error (int);
749internal_proto(translate_error);
6de9cd9a 750
0dce3ca1 751extern void generate_error (st_parameter_common *, int, const char *);
cb13c288 752iexport_proto(generate_error);
6de9cd9a 753
2b4c9065
NK
754extern bool generate_error_common (st_parameter_common *, int, const char *);
755iexport_proto(generate_error_common);
756
fc5f5bb7
JD
757extern void generate_warning (st_parameter_common *, const char *);
758internal_proto(generate_warning);
759
f5e3ed2d 760extern bool notify_std (st_parameter_common *, int, const char *);
2e444427
JD
761internal_proto(notify_std);
762
0dce3ca1
FXC
763extern notification notification_std(int);
764internal_proto(notification_std);
765
723553bd
JB
766extern char *gf_strerror (int, char *, size_t);
767internal_proto(gf_strerror);
768
944b8b35
FXC
769/* fpu.c */
770
771extern void set_fpu (void);
772internal_proto(set_fpu);
82a4f54c 773
8b198102
FXC
774extern int get_fpu_trap_exceptions (void);
775internal_proto(get_fpu_trap_exceptions);
776
777extern void set_fpu_trap_exceptions (int, int);
778internal_proto(set_fpu_trap_exceptions);
779
780extern int support_fpu_trap (int);
781internal_proto(support_fpu_trap);
782
fa86f4f9
TB
783extern int get_fpu_except_flags (void);
784internal_proto(get_fpu_except_flags);
944b8b35 785
8b198102
FXC
786extern void set_fpu_except_flags (int, int);
787internal_proto(set_fpu_except_flags);
788
789extern int support_fpu_flag (int);
790internal_proto(support_fpu_flag);
791
792extern void set_fpu_rounding_mode (int);
82a4f54c
TB
793internal_proto(set_fpu_rounding_mode);
794
795extern int get_fpu_rounding_mode (void);
796internal_proto(get_fpu_rounding_mode);
797
8b198102
FXC
798extern int support_fpu_rounding_mode (int);
799internal_proto(support_fpu_rounding_mode);
800
801extern void get_fpu_state (void *);
802internal_proto(get_fpu_state);
803
804extern void set_fpu_state (void *);
805internal_proto(set_fpu_state);
806
f5168e47
FXC
807extern int get_fpu_underflow_mode (void);
808internal_proto(get_fpu_underflow_mode);
809
810extern void set_fpu_underflow_mode (int);
811internal_proto(set_fpu_underflow_mode);
812
813extern int support_fpu_underflow_control (int);
814internal_proto(support_fpu_underflow_control);
815
6de9cd9a
DN
816/* memory.c */
817
1a0fd3d3
JB
818extern void *xmalloc (size_t) __attribute__ ((malloc));
819internal_proto(xmalloc);
6de9cd9a 820
92e6f3a4
JB
821extern void *xmallocarray (size_t, size_t) __attribute__ ((malloc));
822internal_proto(xmallocarray);
823
f4471acb
JB
824extern void *xcalloc (size_t, size_t) __attribute__ ((malloc));
825internal_proto(xcalloc);
826
d74fd3c7
JB
827extern void *xrealloc (void *, size_t);
828internal_proto(xrealloc);
f4471acb 829
6de9cd9a
DN
830/* environ.c */
831
7d7b8bfe
RH
832extern void init_variables (void);
833internal_proto(init_variables);
6de9cd9a 834
0dce3ca1
FXC
835unit_convert get_unformatted_convert (int);
836internal_proto(get_unformatted_convert);
837
68ee9c08 838/* Secure getenv() which returns NULL if running as SUID/SGID. */
227e441f 839#ifndef HAVE_SECURE_GETENV
d86e68e2 840#if defined(HAVE_GETUID) && defined(HAVE_GETEUID) \
68ee9c08
JB
841 && defined(HAVE_GETGID) && defined(HAVE_GETEGID)
842#define FALLBACK_SECURE_GETENV
843extern char *secure_getenv (const char *);
844internal_proto(secure_getenv);
845#else
846#define secure_getenv getenv
847#endif
227e441f 848#endif
68ee9c08 849
6de9cd9a
DN
850/* string.c */
851
88fdfd5a 852extern int find_option (st_parameter_common *, const char *, gfc_charlen_type,
5e805e44 853 const st_option *, const char *);
7d7b8bfe 854internal_proto(find_option);
6de9cd9a 855
88fdfd5a 856extern gfc_charlen_type fstrlen (const char *, gfc_charlen_type);
7d7b8bfe 857internal_proto(fstrlen);
6de9cd9a 858
88fdfd5a 859extern gfc_charlen_type fstrcpy (char *, gfc_charlen_type, const char *, gfc_charlen_type);
7d7b8bfe 860internal_proto(fstrcpy);
6de9cd9a 861
88fdfd5a 862extern gfc_charlen_type cf_strcpy (char *, gfc_charlen_type, const char *);
7d7b8bfe 863internal_proto(cf_strcpy);
6de9cd9a 864
79617d7e
TK
865extern gfc_charlen_type string_len_trim (gfc_charlen_type, const char *);
866export_proto(string_len_trim);
867
868extern gfc_charlen_type string_len_trim_char4 (gfc_charlen_type,
869 const gfc_char4_t *);
870export_proto(string_len_trim_char4);
871
4269f19c
JB
872extern char *fc_strdup(const char *, gfc_charlen_type);
873internal_proto(fc_strdup);
874
581d2326
JB
875extern char *fc_strdup_notrim(const char *, gfc_charlen_type);
876internal_proto(fc_strdup_notrim);
877
1b0b9fcb
JB
878extern const char *gfc_itoa(GFC_INTEGER_LARGEST, char *, size_t);
879internal_proto(gfc_itoa);
880
25a5e756
FXC
881/* io/intrinsics.c */
882
883extern void flush_all_units (void);
884internal_proto(flush_all_units);
885
6de9cd9a
DN
886/* io.c */
887
7d7b8bfe
RH
888extern void init_units (void);
889internal_proto(init_units);
6de9cd9a 890
7d7b8bfe
RH
891extern void close_units (void);
892internal_proto(close_units);
6de9cd9a 893
ee4ac5b0
FXC
894extern int unit_to_fd (int);
895internal_proto(unit_to_fd);
896
87557722
JD
897extern char * filename_from_unit (int);
898internal_proto(filename_from_unit);
899
6de9cd9a 900/* stop.c */
7d7b8bfe 901
dffb1e22 902extern _Noreturn void stop_string (const char *, size_t, bool);
6d1b0f92 903export_proto(stop_string);
6de9cd9a
DN
904
905/* reshape_packed.c */
6de9cd9a 906
7d7b8bfe
RH
907extern void reshape_packed (char *, index_type, const char *, index_type,
908 const char *, index_type);
909internal_proto(reshape_packed);
6de9cd9a 910
8e1d7686
TK
911/* Repacking functions. These are called internally by internal_pack
912 and internal_unpack. */
913
914GFC_INTEGER_1 *internal_pack_1 (gfc_array_i1 *);
915internal_proto(internal_pack_1);
916
917GFC_INTEGER_2 *internal_pack_2 (gfc_array_i2 *);
918internal_proto(internal_pack_2);
6de9cd9a 919
6de9cd9a 920GFC_INTEGER_4 *internal_pack_4 (gfc_array_i4 *);
7d7b8bfe 921internal_proto(internal_pack_4);
6de9cd9a 922
6de9cd9a 923GFC_INTEGER_8 *internal_pack_8 (gfc_array_i8 *);
7d7b8bfe 924internal_proto(internal_pack_8);
6de9cd9a 925
0618ee31 926#if defined HAVE_GFC_INTEGER_16
e82726f9
AJ
927GFC_INTEGER_16 *internal_pack_16 (gfc_array_i16 *);
928internal_proto(internal_pack_16);
0618ee31 929#endif
e82726f9 930
8e1d7686
TK
931GFC_REAL_4 *internal_pack_r4 (gfc_array_r4 *);
932internal_proto(internal_pack_r4);
933
934GFC_REAL_8 *internal_pack_r8 (gfc_array_r8 *);
935internal_proto(internal_pack_r8);
936
937#if defined HAVE_GFC_REAL_10
938GFC_REAL_10 *internal_pack_r10 (gfc_array_r10 *);
939internal_proto(internal_pack_r10);
940#endif
941
942#if defined HAVE_GFC_REAL_16
943GFC_REAL_16 *internal_pack_r16 (gfc_array_r16 *);
944internal_proto(internal_pack_r16);
945#endif
946
39328081
TK
947GFC_COMPLEX_4 *internal_pack_c4 (gfc_array_c4 *);
948internal_proto(internal_pack_c4);
949
950GFC_COMPLEX_8 *internal_pack_c8 (gfc_array_c8 *);
951internal_proto(internal_pack_c8);
952
0618ee31 953#if defined HAVE_GFC_COMPLEX_10
e82726f9
AJ
954GFC_COMPLEX_10 *internal_pack_c10 (gfc_array_c10 *);
955internal_proto(internal_pack_c10);
0618ee31 956#endif
e82726f9 957
8e1d7686
TK
958#if defined HAVE_GFC_COMPLEX_16
959GFC_COMPLEX_16 *internal_pack_c16 (gfc_array_c16 *);
960internal_proto(internal_pack_c16);
961#endif
962
963extern void internal_unpack_1 (gfc_array_i1 *, const GFC_INTEGER_1 *);
964internal_proto(internal_unpack_1);
965
966extern void internal_unpack_2 (gfc_array_i2 *, const GFC_INTEGER_2 *);
967internal_proto(internal_unpack_2);
968
7d7b8bfe
RH
969extern void internal_unpack_4 (gfc_array_i4 *, const GFC_INTEGER_4 *);
970internal_proto(internal_unpack_4);
6de9cd9a 971
7d7b8bfe
RH
972extern void internal_unpack_8 (gfc_array_i8 *, const GFC_INTEGER_8 *);
973internal_proto(internal_unpack_8);
f814193b 974
0618ee31 975#if defined HAVE_GFC_INTEGER_16
e82726f9
AJ
976extern void internal_unpack_16 (gfc_array_i16 *, const GFC_INTEGER_16 *);
977internal_proto(internal_unpack_16);
0618ee31 978#endif
e82726f9 979
8e1d7686
TK
980extern void internal_unpack_r4 (gfc_array_r4 *, const GFC_REAL_4 *);
981internal_proto(internal_unpack_r4);
982
983extern void internal_unpack_r8 (gfc_array_r8 *, const GFC_REAL_8 *);
984internal_proto(internal_unpack_r8);
985
986#if defined HAVE_GFC_REAL_10
987extern void internal_unpack_r10 (gfc_array_r10 *, const GFC_REAL_10 *);
988internal_proto(internal_unpack_r10);
989#endif
990
991#if defined HAVE_GFC_REAL_16
992extern void internal_unpack_r16 (gfc_array_r16 *, const GFC_REAL_16 *);
993internal_proto(internal_unpack_r16);
994#endif
995
39328081
TK
996extern void internal_unpack_c4 (gfc_array_c4 *, const GFC_COMPLEX_4 *);
997internal_proto(internal_unpack_c4);
998
999extern void internal_unpack_c8 (gfc_array_c8 *, const GFC_COMPLEX_8 *);
1000internal_proto(internal_unpack_c8);
1001
0618ee31 1002#if defined HAVE_GFC_COMPLEX_10
e82726f9
AJ
1003extern void internal_unpack_c10 (gfc_array_c10 *, const GFC_COMPLEX_10 *);
1004internal_proto(internal_unpack_c10);
0618ee31 1005#endif
e82726f9 1006
f53c2bfa
FXC
1007#if defined HAVE_GFC_COMPLEX_16
1008extern void internal_unpack_c16 (gfc_array_c16 *, const GFC_COMPLEX_16 *);
1009internal_proto(internal_unpack_c16);
1010#endif
1011
3ef2513a
TK
1012/* Internal auxiliary functions for the pack intrinsic. */
1013
1014extern void pack_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1015 const gfc_array_l1 *, const gfc_array_i1 *);
1016internal_proto(pack_i1);
1017
1018extern void pack_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1019 const gfc_array_l1 *, const gfc_array_i2 *);
1020internal_proto(pack_i2);
1021
1022extern void pack_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1023 const gfc_array_l1 *, const gfc_array_i4 *);
1024internal_proto(pack_i4);
1025
1026extern void pack_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1027 const gfc_array_l1 *, const gfc_array_i8 *);
1028internal_proto(pack_i8);
1029
1030#ifdef HAVE_GFC_INTEGER_16
1031extern void pack_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1032 const gfc_array_l1 *, const gfc_array_i16 *);
1033internal_proto(pack_i16);
1034#endif
1035
1036extern void pack_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1037 const gfc_array_l1 *, const gfc_array_r4 *);
1038internal_proto(pack_r4);
1039
1040extern void pack_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1041 const gfc_array_l1 *, const gfc_array_r8 *);
1042internal_proto(pack_r8);
1043
1044#ifdef HAVE_GFC_REAL_10
1045extern void pack_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1046 const gfc_array_l1 *, const gfc_array_r10 *);
1047internal_proto(pack_r10);
1048#endif
1049
1050#ifdef HAVE_GFC_REAL_16
1051extern void pack_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1052 const gfc_array_l1 *, const gfc_array_r16 *);
1053internal_proto(pack_r16);
1054#endif
1055
1056extern void pack_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1057 const gfc_array_l1 *, const gfc_array_c4 *);
1058internal_proto(pack_c4);
1059
1060extern void pack_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1061 const gfc_array_l1 *, const gfc_array_c8 *);
1062internal_proto(pack_c8);
1063
1064#ifdef HAVE_GFC_REAL_10
1065extern void pack_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1066 const gfc_array_l1 *, const gfc_array_c10 *);
1067internal_proto(pack_c10);
1068#endif
1069
1070#ifdef HAVE_GFC_REAL_16
1071extern void pack_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1072 const gfc_array_l1 *, const gfc_array_c16 *);
1073internal_proto(pack_c16);
1074#endif
1075
3478bba4
TK
1076/* Internal auxiliary functions for the unpack intrinsic. */
1077
1078extern void unpack0_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1079 const gfc_array_l1 *, const GFC_INTEGER_1 *);
1080internal_proto(unpack0_i1);
1081
1082extern void unpack0_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1083 const gfc_array_l1 *, const GFC_INTEGER_2 *);
1084internal_proto(unpack0_i2);
1085
1086extern void unpack0_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1087 const gfc_array_l1 *, const GFC_INTEGER_4 *);
1088internal_proto(unpack0_i4);
1089
1090extern void unpack0_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1091 const gfc_array_l1 *, const GFC_INTEGER_8 *);
1092internal_proto(unpack0_i8);
1093
1094#ifdef HAVE_GFC_INTEGER_16
1095
1096extern void unpack0_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1097 const gfc_array_l1 *, const GFC_INTEGER_16 *);
1098internal_proto(unpack0_i16);
1099
1100#endif
1101
1102extern void unpack0_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1103 const gfc_array_l1 *, const GFC_REAL_4 *);
1104internal_proto(unpack0_r4);
1105
1106extern void unpack0_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1107 const gfc_array_l1 *, const GFC_REAL_8 *);
1108internal_proto(unpack0_r8);
1109
1110#ifdef HAVE_GFC_REAL_10
1111
1112extern void unpack0_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1113 const gfc_array_l1 *, const GFC_REAL_10 *);
1114internal_proto(unpack0_r10);
1115
1116#endif
1117
1118#ifdef HAVE_GFC_REAL_16
1119
1120extern void unpack0_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1121 const gfc_array_l1 *, const GFC_REAL_16 *);
1122internal_proto(unpack0_r16);
1123
1124#endif
1125
1126extern void unpack0_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1127 const gfc_array_l1 *, const GFC_COMPLEX_4 *);
1128internal_proto(unpack0_c4);
1129
1130extern void unpack0_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1131 const gfc_array_l1 *, const GFC_COMPLEX_8 *);
1132internal_proto(unpack0_c8);
1133
1134#ifdef HAVE_GFC_COMPLEX_10
1135
1136extern void unpack0_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1137 const gfc_array_l1 *mask, const GFC_COMPLEX_10 *);
1138internal_proto(unpack0_c10);
1139
1140#endif
1141
1142#ifdef HAVE_GFC_COMPLEX_16
1143
1144extern void unpack0_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1145 const gfc_array_l1 *, const GFC_COMPLEX_16 *);
1146internal_proto(unpack0_c16);
1147
1148#endif
1149
1150extern void unpack1_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1151 const gfc_array_l1 *, const gfc_array_i1 *);
1152internal_proto(unpack1_i1);
1153
1154extern void unpack1_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1155 const gfc_array_l1 *, const gfc_array_i2 *);
1156internal_proto(unpack1_i2);
1157
1158extern void unpack1_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1159 const gfc_array_l1 *, const gfc_array_i4 *);
1160internal_proto(unpack1_i4);
1161
1162extern void unpack1_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1163 const gfc_array_l1 *, const gfc_array_i8 *);
1164internal_proto(unpack1_i8);
1165
1166#ifdef HAVE_GFC_INTEGER_16
1167extern void unpack1_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1168 const gfc_array_l1 *, const gfc_array_i16 *);
1169internal_proto(unpack1_i16);
1170#endif
1171
1172extern void unpack1_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1173 const gfc_array_l1 *, const gfc_array_r4 *);
1174internal_proto(unpack1_r4);
1175
1176extern void unpack1_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1177 const gfc_array_l1 *, const gfc_array_r8 *);
1178internal_proto(unpack1_r8);
1179
1180#ifdef HAVE_GFC_REAL_10
1181extern void unpack1_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1182 const gfc_array_l1 *, const gfc_array_r10 *);
1183internal_proto(unpack1_r10);
1184#endif
1185
1186#ifdef HAVE_GFC_REAL_16
1187extern void unpack1_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1188 const gfc_array_l1 *, const gfc_array_r16 *);
1189internal_proto(unpack1_r16);
1190#endif
1191
1192extern void unpack1_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1193 const gfc_array_l1 *, const gfc_array_c4 *);
1194internal_proto(unpack1_c4);
1195
1196extern void unpack1_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1197 const gfc_array_l1 *, const gfc_array_c8 *);
1198internal_proto(unpack1_c8);
1199
1200#ifdef HAVE_GFC_COMPLEX_10
1201extern void unpack1_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1202 const gfc_array_l1 *, const gfc_array_c10 *);
1203internal_proto(unpack1_c10);
1204#endif
1205
1206#ifdef HAVE_GFC_COMPLEX_16
1207extern void unpack1_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1208 const gfc_array_l1 *, const gfc_array_c16 *);
1209internal_proto(unpack1_c16);
1210#endif
1211
75f2543f
TK
1212/* Helper functions for spread. */
1213
1214extern void spread_i1 (gfc_array_i1 *, const gfc_array_i1 *,
1215 const index_type, const index_type);
1216internal_proto(spread_i1);
1217
1218extern void spread_i2 (gfc_array_i2 *, const gfc_array_i2 *,
1219 const index_type, const index_type);
1220internal_proto(spread_i2);
1221
1222extern void spread_i4 (gfc_array_i4 *, const gfc_array_i4 *,
1223 const index_type, const index_type);
1224internal_proto(spread_i4);
1225
1226extern void spread_i8 (gfc_array_i8 *, const gfc_array_i8 *,
1227 const index_type, const index_type);
1228internal_proto(spread_i8);
1229
1230#ifdef HAVE_GFC_INTEGER_16
1231extern void spread_i16 (gfc_array_i16 *, const gfc_array_i16 *,
1232 const index_type, const index_type);
1233internal_proto(spread_i16);
1234
1235#endif
1236
1237extern void spread_r4 (gfc_array_r4 *, const gfc_array_r4 *,
1238 const index_type, const index_type);
1239internal_proto(spread_r4);
1240
1241extern void spread_r8 (gfc_array_r8 *, const gfc_array_r8 *,
1242 const index_type, const index_type);
1243internal_proto(spread_r8);
1244
1245#ifdef HAVE_GFC_REAL_10
1246extern void spread_r10 (gfc_array_r10 *, const gfc_array_r10 *,
1247 const index_type, const index_type);
1248internal_proto(spread_r10);
1249
1250#endif
1251
1252#ifdef HAVE_GFC_REAL_16
1253extern void spread_r16 (gfc_array_r16 *, const gfc_array_r16 *,
1254 const index_type, const index_type);
1255internal_proto(spread_r16);
1256
1257#endif
1258
1259extern void spread_c4 (gfc_array_c4 *, const gfc_array_c4 *,
1260 const index_type, const index_type);
1261internal_proto(spread_c4);
1262
1263extern void spread_c8 (gfc_array_c8 *, const gfc_array_c8 *,
1264 const index_type, const index_type);
1265internal_proto(spread_c8);
1266
1267#ifdef HAVE_GFC_COMPLEX_10
1268extern void spread_c10 (gfc_array_c10 *, const gfc_array_c10 *,
1269 const index_type, const index_type);
1270internal_proto(spread_c10);
1271
1272#endif
1273
1274#ifdef HAVE_GFC_COMPLEX_16
1275extern void spread_c16 (gfc_array_c16 *, const gfc_array_c16 *,
1276 const index_type, const index_type);
1277internal_proto(spread_c16);
1278
1279#endif
1280
1281extern void spread_scalar_i1 (gfc_array_i1 *, const GFC_INTEGER_1 *,
1282 const index_type, const index_type);
1283internal_proto(spread_scalar_i1);
1284
1285extern void spread_scalar_i2 (gfc_array_i2 *, const GFC_INTEGER_2 *,
1286 const index_type, const index_type);
1287internal_proto(spread_scalar_i2);
1288
1289extern void spread_scalar_i4 (gfc_array_i4 *, const GFC_INTEGER_4 *,
1290 const index_type, const index_type);
1291internal_proto(spread_scalar_i4);
1292
1293extern void spread_scalar_i8 (gfc_array_i8 *, const GFC_INTEGER_8 *,
1294 const index_type, const index_type);
1295internal_proto(spread_scalar_i8);
1296
1297#ifdef HAVE_GFC_INTEGER_16
1298extern void spread_scalar_i16 (gfc_array_i16 *, const GFC_INTEGER_16 *,
1299 const index_type, const index_type);
1300internal_proto(spread_scalar_i16);
1301
1302#endif
1303
1304extern void spread_scalar_r4 (gfc_array_r4 *, const GFC_REAL_4 *,
1305 const index_type, const index_type);
1306internal_proto(spread_scalar_r4);
1307
1308extern void spread_scalar_r8 (gfc_array_r8 *, const GFC_REAL_8 *,
1309 const index_type, const index_type);
1310internal_proto(spread_scalar_r8);
1311
1312#ifdef HAVE_GFC_REAL_10
1313extern void spread_scalar_r10 (gfc_array_r10 *, const GFC_REAL_10 *,
1314 const index_type, const index_type);
1315internal_proto(spread_scalar_r10);
1316
1317#endif
1318
1319#ifdef HAVE_GFC_REAL_16
1320extern void spread_scalar_r16 (gfc_array_r16 *, const GFC_REAL_16 *,
1321 const index_type, const index_type);
1322internal_proto(spread_scalar_r16);
1323
1324#endif
1325
1326extern void spread_scalar_c4 (gfc_array_c4 *, const GFC_COMPLEX_4 *,
1327 const index_type, const index_type);
1328internal_proto(spread_scalar_c4);
1329
1330extern void spread_scalar_c8 (gfc_array_c8 *, const GFC_COMPLEX_8 *,
1331 const index_type, const index_type);
1332internal_proto(spread_scalar_c8);
1333
1334#ifdef HAVE_GFC_COMPLEX_10
1335extern void spread_scalar_c10 (gfc_array_c10 *, const GFC_COMPLEX_10 *,
1336 const index_type, const index_type);
1337internal_proto(spread_scalar_c10);
1338
1339#endif
1340
1341#ifdef HAVE_GFC_COMPLEX_16
1342extern void spread_scalar_c16 (gfc_array_c16 *, const GFC_COMPLEX_16 *,
1343 const index_type, const index_type);
1344internal_proto(spread_scalar_c16);
1345
1346#endif
1347
6de9cd9a
DN
1348/* string_intrinsics.c */
1349
4b267817
FXC
1350extern int compare_string (gfc_charlen_type, const char *,
1351 gfc_charlen_type, const char *);
7d7b8bfe 1352iexport_proto(compare_string);
6de9cd9a 1353
4b267817
FXC
1354extern int compare_string_char4 (gfc_charlen_type, const gfc_char4_t *,
1355 gfc_charlen_type, const gfc_char4_t *);
1356iexport_proto(compare_string_char4);
1357
e7898e54
TK
1358extern int memcmp_char4 (const void *, const void *, size_t);
1359internal_proto(memcmp_char4);
1360
1361
abdef811
BD
1362/* random.c */
1363
34b4bc5c
FXC
1364extern void random_seed_i4 (GFC_INTEGER_4 * size, gfc_array_i4 * put,
1365 gfc_array_i4 * get);
1366iexport_proto(random_seed_i4);
1367extern void random_seed_i8 (GFC_INTEGER_8 * size, gfc_array_i8 * put,
1368 gfc_array_i8 * get);
1369iexport_proto(random_seed_i8);
abdef811 1370
6c167c45
VL
1371/* size.c */
1372
e9bfdf18 1373typedef GFC_ARRAY_DESCRIPTOR (void) array_t;
6c167c45 1374
7d7b8bfe
RH
1375extern index_type size0 (const array_t * array);
1376iexport_proto(size0);
6c167c45 1377
419af57c
TK
1378/* is_contiguous.c */
1379
1380extern GFC_LOGICAL_4 is_contiguous0 (const array_t * const restrict array);
1381iexport_proto(is_contiguous0);
1382
16bff921
TK
1383/* bounds.c */
1384
1385extern void bounds_equal_extents (array_t *, array_t *, const char *,
1386 const char *);
1387internal_proto(bounds_equal_extents);
1388
1389extern void bounds_reduced_extents (array_t *, array_t *, int, const char *,
1390 const char *intrinsic);
1391internal_proto(bounds_reduced_extents);
1392
1393extern void bounds_iforeach_return (array_t *, array_t *, const char *);
1394internal_proto(bounds_iforeach_return);
1395
1396extern void bounds_ifunction_return (array_t *, const index_type *,
1397 const char *, const char *);
1398internal_proto(bounds_ifunction_return);
1399
8c39b987
TK
1400extern index_type count_0 (const gfc_array_l1 *);
1401
1402internal_proto(count_0);
1403
c2b00cdc
TK
1404/* Internal auxiliary functions for cshift */
1405
44720bef 1406void cshift0_i1 (gfc_array_i1 *, const gfc_array_i1 *, ptrdiff_t, int);
c2b00cdc
TK
1407internal_proto(cshift0_i1);
1408
44720bef 1409void cshift0_i2 (gfc_array_i2 *, const gfc_array_i2 *, ptrdiff_t, int);
c2b00cdc
TK
1410internal_proto(cshift0_i2);
1411
44720bef 1412void cshift0_i4 (gfc_array_i4 *, const gfc_array_i4 *, ptrdiff_t, int);
c2b00cdc
TK
1413internal_proto(cshift0_i4);
1414
44720bef 1415void cshift0_i8 (gfc_array_i8 *, const gfc_array_i8 *, ptrdiff_t, int);
c2b00cdc
TK
1416internal_proto(cshift0_i8);
1417
1418#ifdef HAVE_GFC_INTEGER_16
44720bef 1419void cshift0_i16 (gfc_array_i16 *, const gfc_array_i16 *, ptrdiff_t, int);
c2b00cdc
TK
1420internal_proto(cshift0_i16);
1421#endif
1422
44720bef 1423void cshift0_r4 (gfc_array_r4 *, const gfc_array_r4 *, ptrdiff_t, int);
c2b00cdc
TK
1424internal_proto(cshift0_r4);
1425
44720bef 1426void cshift0_r8 (gfc_array_r8 *, const gfc_array_r8 *, ptrdiff_t, int);
c2b00cdc
TK
1427internal_proto(cshift0_r8);
1428
1429#ifdef HAVE_GFC_REAL_10
44720bef 1430void cshift0_r10 (gfc_array_r10 *, const gfc_array_r10 *, ptrdiff_t, int);
c2b00cdc
TK
1431internal_proto(cshift0_r10);
1432#endif
1433
1434#ifdef HAVE_GFC_REAL_16
44720bef 1435void cshift0_r16 (gfc_array_r16 *, const gfc_array_r16 *, ptrdiff_t, int);
c2b00cdc
TK
1436internal_proto(cshift0_r16);
1437#endif
1438
44720bef 1439void cshift0_c4 (gfc_array_c4 *, const gfc_array_c4 *, ptrdiff_t, int);
c2b00cdc
TK
1440internal_proto(cshift0_c4);
1441
44720bef 1442void cshift0_c8 (gfc_array_c8 *, const gfc_array_c8 *, ptrdiff_t, int);
c2b00cdc
TK
1443internal_proto(cshift0_c8);
1444
1445#ifdef HAVE_GFC_COMPLEX_10
44720bef 1446void cshift0_c10 (gfc_array_c10 *, const gfc_array_c10 *, ptrdiff_t, int);
c2b00cdc
TK
1447internal_proto(cshift0_c10);
1448#endif
1449
1450#ifdef HAVE_GFC_COMPLEX_16
44720bef 1451void cshift0_c16 (gfc_array_c16 *, const gfc_array_c16 *, ptrdiff_t, int);
c2b00cdc
TK
1452internal_proto(cshift0_c16);
1453#endif
1454
e56e3fda
TK
1455#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_INTEGER_1)
1456void cshift1_4_i1 (gfc_array_i1 * const restrict,
1457 const gfc_array_i1 * const restrict,
1458 const gfc_array_i4 * const restrict,
1459 const GFC_INTEGER_4 * const restrict);
1460internal_proto(cshift1_4_i1);
1461#endif
1462
1463#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_INTEGER_2)
1464void cshift1_4_i2 (gfc_array_i2 * const restrict,
1465 const gfc_array_i2 * const restrict,
1466 const gfc_array_i4 * const restrict,
1467 const GFC_INTEGER_4 * const restrict);
1468internal_proto(cshift1_4_i2);
1469#endif
1470
1471#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_INTEGER_4)
1472void cshift1_4_i4 (gfc_array_i4 * const restrict,
1473 const gfc_array_i4 * const restrict,
1474 const gfc_array_i4 * const restrict,
1475 const GFC_INTEGER_4 * const restrict);
1476internal_proto(cshift1_4_i4);
1477#endif
1478
1479#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_INTEGER_8)
1480void cshift1_4_i8 (gfc_array_i8 * const restrict,
1481 const gfc_array_i8 * const restrict,
1482 const gfc_array_i4 * const restrict,
1483 const GFC_INTEGER_4 * const restrict);
1484internal_proto(cshift1_4_i8);
1485#endif
1486
1487#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_INTEGER_16)
1488void cshift1_4_i16 (gfc_array_i16 * const restrict,
1489 const gfc_array_i16 * const restrict,
1490 const gfc_array_i4 * const restrict,
1491 const GFC_INTEGER_4 * const restrict);
1492internal_proto(cshift1_4_i16);
1493#endif
1494
1495#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_INTEGER_1)
1496void cshift1_8_i1 (gfc_array_i1 * const restrict,
1497 const gfc_array_i1 * const restrict,
1498 const gfc_array_i8 * const restrict,
1499 const GFC_INTEGER_8 * const restrict);
1500internal_proto(cshift1_8_i1);
1501#endif
1502
1503#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_INTEGER_2)
1504void cshift1_8_i2 (gfc_array_i2 * const restrict,
1505 const gfc_array_i2 * const restrict,
1506 const gfc_array_i8 * const restrict,
1507 const GFC_INTEGER_8 * const restrict);
1508internal_proto(cshift1_8_i2);
1509#endif
1510
1511#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_INTEGER_4)
1512void cshift1_8_i4 (gfc_array_i4 * const restrict,
1513 const gfc_array_i4 * const restrict,
1514 const gfc_array_i8 * const restrict,
1515 const GFC_INTEGER_8 * const restrict);
1516internal_proto(cshift1_8_i4);
1517#endif
1518
1519#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_INTEGER_8)
1520void cshift1_8_i8 (gfc_array_i8 * const restrict,
1521 const gfc_array_i8 * const restrict,
1522 const gfc_array_i8 * const restrict,
1523 const GFC_INTEGER_8 * const restrict);
1524internal_proto(cshift1_8_i8);
1525#endif
1526
1527#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_INTEGER_16)
1528void cshift1_8_i16 (gfc_array_i16 * const restrict,
1529 const gfc_array_i16 * const restrict,
1530 const gfc_array_i8 * const restrict,
1531 const GFC_INTEGER_8 * const restrict);
1532internal_proto(cshift1_8_i16);
1533#endif
1534
1535#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_INTEGER_1)
1536void cshift1_16_i1 (gfc_array_i1 * const restrict,
1537 const gfc_array_i1 * const restrict,
1538 const gfc_array_i16 * const restrict,
1539 const GFC_INTEGER_16 * const restrict);
1540internal_proto(cshift1_16_i1);
1541#endif
1542
1543#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_INTEGER_2)
1544void cshift1_16_i2 (gfc_array_i2 * const restrict,
1545 const gfc_array_i2 * const restrict,
1546 const gfc_array_i16 * const restrict,
1547 const GFC_INTEGER_16 * const restrict);
1548internal_proto(cshift1_16_i2);
1549#endif
1550
1551#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_INTEGER_4)
1552void cshift1_16_i4 (gfc_array_i4 * const restrict,
1553 const gfc_array_i4 * const restrict,
1554 const gfc_array_i16 * const restrict,
1555 const GFC_INTEGER_16 * const restrict);
1556internal_proto(cshift1_16_i4);
1557#endif
1558
1559#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_INTEGER_8)
1560void cshift1_16_i8 (gfc_array_i8 * const restrict,
1561 const gfc_array_i8 * const restrict,
1562 const gfc_array_i16 * const restrict,
1563 const GFC_INTEGER_16 * const restrict);
1564internal_proto(cshift1_16_i8);
1565#endif
1566
1567#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_INTEGER_16)
1568void cshift1_16_i16 (gfc_array_i16 * const restrict,
1569 const gfc_array_i16 * const restrict,
1570 const gfc_array_i16 * const restrict,
1571 const GFC_INTEGER_16 * const restrict);
1572internal_proto(cshift1_16_i16);
1573#endif
1574
1575#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_REAL_4)
1576void cshift1_4_r4 (gfc_array_r4 * const restrict,
1577 const gfc_array_r4 * const restrict,
1578 const gfc_array_i4 * const restrict,
1579 const GFC_INTEGER_4 * const restrict);
1580internal_proto(cshift1_4_r4);
1581#endif
1582
1583#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_REAL_8)
1584void cshift1_4_r8 (gfc_array_r8 * const restrict,
1585 const gfc_array_r8 * const restrict,
1586 const gfc_array_i4 * const restrict,
1587 const GFC_INTEGER_4 * const restrict);
1588internal_proto(cshift1_4_r8);
1589#endif
1590
1591#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_REAL_10)
1592void cshift1_4_r10 (gfc_array_r10 * const restrict,
1593 const gfc_array_r10 * const restrict,
1594 const gfc_array_i4 * const restrict,
1595 const GFC_INTEGER_4 * const restrict);
1596internal_proto(cshift1_4_r10);
1597#endif
1598
1599#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_REAL_16)
1600void cshift1_4_r16 (gfc_array_r16 * const restrict,
1601 const gfc_array_r16 * const restrict,
1602 const gfc_array_i4 * const restrict,
1603 const GFC_INTEGER_4 * const restrict);
1604internal_proto(cshift1_4_r16);
1605#endif
1606
1607#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_REAL_4)
1608void cshift1_8_r4 (gfc_array_r4 * const restrict,
1609 const gfc_array_r4 * const restrict,
1610 const gfc_array_i8 * const restrict,
1611 const GFC_INTEGER_8 * const restrict);
1612internal_proto(cshift1_8_r4);
1613#endif
1614
1615#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_REAL_8)
1616void cshift1_8_r8 (gfc_array_r8 * const restrict,
1617 const gfc_array_r8 * const restrict,
1618 const gfc_array_i8 * const restrict,
1619 const GFC_INTEGER_8 * const restrict);
1620internal_proto(cshift1_8_r8);
1621#endif
1622
1623#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_REAL_10)
1624void cshift1_8_r10 (gfc_array_r10 * const restrict,
1625 const gfc_array_r10 * const restrict,
1626 const gfc_array_i8 * const restrict,
1627 const GFC_INTEGER_8 * const restrict);
1628internal_proto(cshift1_8_r10);
1629#endif
1630
1631#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_REAL_16)
1632void cshift1_8_r16 (gfc_array_r16 * const restrict,
1633 const gfc_array_r16 * const restrict,
1634 const gfc_array_i8 * const restrict,
1635 const GFC_INTEGER_8 * const restrict);
1636internal_proto(cshift1_8_r16);
1637#endif
1638
1639#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_REAL_4)
1640void cshift1_16_r4 (gfc_array_r4 * const restrict,
1641 const gfc_array_r4 * const restrict,
1642 const gfc_array_i16 * const restrict,
1643 const GFC_INTEGER_16 * const restrict);
1644internal_proto(cshift1_16_r4);
1645#endif
1646
1647#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_REAL_8)
1648void cshift1_16_r8 (gfc_array_r8 * const restrict,
1649 const gfc_array_r8 * const restrict,
1650 const gfc_array_i16 * const restrict,
1651 const GFC_INTEGER_16 * const restrict);
1652internal_proto(cshift1_16_r8);
1653#endif
1654
1655#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_REAL_10)
1656void cshift1_16_r10 (gfc_array_r10 * const restrict,
1657 const gfc_array_r10 * const restrict,
1658 const gfc_array_i16 * const restrict,
1659 const GFC_INTEGER_16 * const restrict);
1660internal_proto(cshift1_16_r10);
1661#endif
1662
1663#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_REAL_16)
1664void cshift1_16_r16 (gfc_array_r16 * const restrict,
1665 const gfc_array_r16 * const restrict,
1666 const gfc_array_i16 * const restrict,
1667 const GFC_INTEGER_16 * const restrict);
1668internal_proto(cshift1_16_r16);
1669#endif
1670
1671#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_COMPLEX_4)
1672void cshift1_4_c4 (gfc_array_c4 * const restrict,
1673 const gfc_array_c4 * const restrict,
1674 const gfc_array_i4 * const restrict,
1675 const GFC_INTEGER_4 * const restrict);
1676internal_proto(cshift1_4_c4);
1677#endif
1678
1679#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_COMPLEX_8)
1680void cshift1_4_c8 (gfc_array_c8 * const restrict,
1681 const gfc_array_c8 * const restrict,
1682 const gfc_array_i4 * const restrict,
1683 const GFC_INTEGER_4 * const restrict);
1684internal_proto(cshift1_4_c8);
1685#endif
1686
1687#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_COMPLEX_10)
1688void cshift1_4_c10 (gfc_array_c10 * const restrict,
1689 const gfc_array_c10 * const restrict,
1690 const gfc_array_i4 * const restrict,
1691 const GFC_INTEGER_4 * const restrict);
1692internal_proto(cshift1_4_c10);
1693#endif
1694
1695#if defined (HAVE_GFC_INTEGER_4) && defined (HAVE_GFC_COMPLEX_16)
1696void cshift1_4_c16 (gfc_array_c16 * const restrict,
1697 const gfc_array_c16 * const restrict,
1698 const gfc_array_i4 * const restrict,
1699 const GFC_INTEGER_4 * const restrict);
1700internal_proto(cshift1_4_c16);
1701#endif
1702
1703#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_COMPLEX_4)
1704void cshift1_8_c4 (gfc_array_c4 * const restrict,
1705 const gfc_array_c4 * const restrict,
1706 const gfc_array_i8 * const restrict,
1707 const GFC_INTEGER_8 * const restrict);
1708internal_proto(cshift1_8_c4);
1709#endif
1710
1711#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_COMPLEX_8)
1712void cshift1_8_c8 (gfc_array_c8 * const restrict,
1713 const gfc_array_c8 * const restrict,
1714 const gfc_array_i8 * const restrict,
1715 const GFC_INTEGER_8 * const restrict);
1716internal_proto(cshift1_8_c8);
1717#endif
1718
1719#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_COMPLEX_10)
1720void cshift1_8_c10 (gfc_array_c10 * const restrict,
1721 const gfc_array_c10 * const restrict,
1722 const gfc_array_i8 * const restrict,
1723 const GFC_INTEGER_8 * const restrict);
1724internal_proto(cshift1_8_c10);
1725#endif
1726
1727#if defined (HAVE_GFC_INTEGER_8) && defined (HAVE_GFC_COMPLEX_16)
1728void cshift1_8_c16 (gfc_array_c16 * const restrict,
1729 const gfc_array_c16 * const restrict,
1730 const gfc_array_i8 * const restrict,
1731 const GFC_INTEGER_8 * const restrict);
1732internal_proto(cshift1_8_c16);
1733#endif
1734
1735#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_COMPLEX_4)
1736void cshift1_16_c4 (gfc_array_c4 * const restrict,
1737 const gfc_array_c4 * const restrict,
1738 const gfc_array_i16 * const restrict,
1739 const GFC_INTEGER_16 * const restrict);
1740internal_proto(cshift1_16_c4);
1741#endif
1742
1743#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_COMPLEX_8)
1744void cshift1_16_c8 (gfc_array_c8 * const restrict,
1745 const gfc_array_c8 * const restrict,
1746 const gfc_array_i16 * const restrict,
1747 const GFC_INTEGER_16 * const restrict);
1748internal_proto(cshift1_16_c8);
1749#endif
1750
1751#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_COMPLEX_10)
1752void cshift1_16_c10 (gfc_array_c10 * const restrict,
1753 const gfc_array_c10 * const restrict,
1754 const gfc_array_i16 * const restrict,
1755 const GFC_INTEGER_16 * const restrict);
1756internal_proto(cshift1_16_c10);
1757#endif
1758
1759#if defined (HAVE_GFC_INTEGER_16) && defined (HAVE_GFC_COMPLEX_16)
1760void cshift1_16_c16 (gfc_array_c16 * const restrict,
1761 const gfc_array_c16 * const restrict,
1762 const gfc_array_i16 * const restrict,
1763 const GFC_INTEGER_16 * const restrict);
1764internal_proto(cshift1_16_c16);
1765#endif
1766
01ce9e31
TK
1767/* We always have these. */
1768
1769#define HAVE_GFC_UINTEGER_1 1
1770#define HAVE_GFC_UINTEGER_4 1
e56e3fda 1771
69d3c9a4 1772#endif /* LIBGFOR_H */