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[AARCH64][PATCH 1/3] Implementing the variants of the vmulx_ NEON intrinsic
[thirdparty/gcc.git] / gcc / fortran / gfortran.h
CommitLineData
6de9cd9a 1/* gfortran header file
5624e564 2 Copyright (C) 2000-2015 Free Software Foundation, Inc.
6de9cd9a
DN
3 Contributed by Andy Vaught
4
9fc4d79b 5This file is part of GCC.
6de9cd9a 6
9fc4d79b
TS
7GCC is free software; you can redistribute it and/or modify it under
8the terms of the GNU General Public License as published by the Free
d234d788 9Software Foundation; either version 3, or (at your option) any later
9fc4d79b 10version.
6de9cd9a 11
9fc4d79b
TS
12GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13WARRANTY; without even the implied warranty of MERCHANTABILITY or
14FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15for more details.
6de9cd9a
DN
16
17You should have received a copy of the GNU General Public License
d234d788
NC
18along with GCC; see the file COPYING3. If not see
19<http://www.gnu.org/licenses/>. */
6de9cd9a
DN
20
21#ifndef GCC_GFORTRAN_H
22#define GCC_GFORTRAN_H
23
24/* It's probably insane to have this large of a header file, but it
25 seemed like everything had to be recompiled anyway when a change
26 was made to a header file, and there were ordering issues with
27 multiple header files. Besides, Microsoft's winnt.h was 250k last
28 time I looked, so by comparison this is perfectly reasonable. */
29
953bee7c
SB
30#ifndef GCC_CORETYPES_H
31#error "gfortran.h must be included after coretypes.h"
32#endif
33
8e54f6d3
MLI
34/* In order for the format checking to accept the Fortran front end
35 diagnostic framework extensions, you must include this file before
36 diagnostic-core.h, not after. We override the definition of GCC_DIAG_STYLE
37 in c-common.h. */
38#undef GCC_DIAG_STYLE
39#define GCC_DIAG_STYLE __gcc_gfc__
40#if defined(GCC_DIAGNOSTIC_CORE_H)
41#error \
42In order for the format checking to accept the Fortran front end diagnostic \
43framework extensions, you must include this file before diagnostic-core.h, \
44not after.
45#endif
46
d74b97cc
FXC
47/* Declarations common to the front-end and library are put in
48 libgfortran/libgfortran_frontend.h */
49#include "libgfortran.h"
50
51
31043f6c 52#include "intl.h"
5868cbf9 53#include "splay-tree.h"
6de9cd9a 54
6de9cd9a
DN
55/* Major control parameters. */
56
1dde8683 57#define GFC_MAX_SYMBOL_LEN 63 /* Must be at least 63 for F2003. */
6de9cd9a 58#define GFC_LETTERS 26 /* Number of letters in the alphabet. */
6de9cd9a 59
07b3bbf2
TK
60#define MAX_SUBRECORD_LENGTH 2147483639 /* 2**31-9 */
61
62
6de9cd9a
DN
63#define gfc_is_whitespace(c) ((c==' ') || (c=='\t'))
64
6de9cd9a
DN
65/* Stringization. */
66#define stringize(x) expand_macro(x)
67#define expand_macro(x) # x
68
df2fba9e 69/* For the runtime library, a standard prefix is a requirement to
6de9cd9a
DN
70 avoid cluttering the namespace with things nobody asked for. It's
71 ugly to look at and a pain to type when you add the prefix by hand,
72 so we hide it behind a macro. */
73#define PREFIX(x) "_gfortran_" x
5b200ac2 74#define PREFIX_LEN 10
6de9cd9a 75
36085529
TB
76/* A prefix for internal variables, which are not user-visible. */
77#if !defined (NO_DOT_IN_LABEL)
78# define GFC_PREFIX(x) "_F." x
79#elif !defined (NO_DOLLAR_IN_LABEL)
80# define GFC_PREFIX(x) "_F$" x
81#else
82# define GFC_PREFIX(x) "_F_" x
83#endif
84
30aabb86
PT
85#define BLANK_COMMON_NAME "__BLNK__"
86
6de9cd9a
DN
87/* Macro to initialize an mstring structure. */
88#define minit(s, t) { s, NULL, t }
89
90/* Structure for storing strings to be matched by gfc_match_string. */
91typedef struct
92{
93 const char *string;
94 const char *mp;
95 int tag;
96}
97mstring;
98
99
944b8b35 100
6de9cd9a
DN
101/*************************** Enums *****************************/
102
ad7ee6f8
JD
103/* Used when matching and resolving data I/O transfer statements. */
104
a79683d5
TS
105enum io_kind
106{ M_READ, M_WRITE, M_PRINT, M_INQUIRE };
ad7ee6f8 107
6de9cd9a 108
696abb30
JD
109/* These are flags for identifying whether we are reading a character literal
110 between quotes or normal source code. */
4d382327 111
a79683d5
TS
112enum gfc_instring
113{ NONSTRING = 0, INSTRING_WARN, INSTRING_NOWARN };
696abb30 114
8f0d39a8
FXC
115/* This is returned by gfc_notification_std to know if, given the flags
116 that were given (-std=, -pedantic) we should issue an error, a warning
117 or nothing. */
118
a79683d5
TS
119enum notification
120{ SILENT, WARNING, ERROR };
8f0d39a8 121
6de9cd9a
DN
122/* Matchers return one of these three values. The difference between
123 MATCH_NO and MATCH_ERROR is that MATCH_ERROR means that a match was
124 successful, but that something non-syntactic is wrong and an error
125 has already been issued. */
126
a79683d5
TS
127enum match
128{ MATCH_NO = 1, MATCH_YES, MATCH_ERROR };
6de9cd9a 129
696abb30 130/* Used for different Fortran source forms in places like scanner.c. */
a79683d5
TS
131enum gfc_source_form
132{ FORM_FREE, FORM_FIXED, FORM_UNKNOWN };
6de9cd9a 133
6de9cd9a 134/* Expression node types. */
a79683d5 135enum expr_t
6de9cd9a 136{ EXPR_OP = 1, EXPR_FUNCTION, EXPR_CONSTANT, EXPR_VARIABLE,
713485cc 137 EXPR_SUBSTRING, EXPR_STRUCTURE, EXPR_ARRAY, EXPR_NULL, EXPR_COMPCALL, EXPR_PPC
a79683d5 138};
6de9cd9a
DN
139
140/* Array types. */
a79683d5 141enum array_type
6de9cd9a 142{ AS_EXPLICIT = 1, AS_ASSUMED_SHAPE, AS_DEFERRED,
c62c6622
TB
143 AS_ASSUMED_SIZE, AS_IMPLIED_SHAPE, AS_ASSUMED_RANK,
144 AS_UNKNOWN
a79683d5 145};
6de9cd9a 146
a79683d5
TS
147enum ar_type
148{ AR_FULL = 1, AR_ELEMENT, AR_SECTION, AR_UNKNOWN };
6de9cd9a 149
f3e7b9d6
TB
150/* Statement label types. ST_LABEL_DO_TARGET is used for obsolescent warnings
151 related to shared DO terminations and DO targets which are neither END DO
152 nor CONTINUE; otherwise it is identical to ST_LABEL_TARGET. */
a79683d5 153enum gfc_sl_type
f3e7b9d6 154{ ST_LABEL_UNKNOWN = 1, ST_LABEL_TARGET, ST_LABEL_DO_TARGET,
6de9cd9a 155 ST_LABEL_BAD_TARGET, ST_LABEL_FORMAT
a79683d5 156};
6de9cd9a
DN
157
158/* Intrinsic operators. */
a79683d5 159enum gfc_intrinsic_op
6de9cd9a
DN
160{ GFC_INTRINSIC_BEGIN = 0,
161 INTRINSIC_NONE = -1, INTRINSIC_UPLUS = GFC_INTRINSIC_BEGIN,
162 INTRINSIC_UMINUS, INTRINSIC_PLUS, INTRINSIC_MINUS, INTRINSIC_TIMES,
163 INTRINSIC_DIVIDE, INTRINSIC_POWER, INTRINSIC_CONCAT,
164 INTRINSIC_AND, INTRINSIC_OR, INTRINSIC_EQV, INTRINSIC_NEQV,
3bed9dd0 165 /* ==, /=, >, >=, <, <= */
6de9cd9a 166 INTRINSIC_EQ, INTRINSIC_NE, INTRINSIC_GT, INTRINSIC_GE,
4d382327 167 INTRINSIC_LT, INTRINSIC_LE,
3bed9dd0
DF
168 /* .EQ., .NE., .GT., .GE., .LT., .LE. (OS = Old-Style) */
169 INTRINSIC_EQ_OS, INTRINSIC_NE_OS, INTRINSIC_GT_OS, INTRINSIC_GE_OS,
4d382327
AF
170 INTRINSIC_LT_OS, INTRINSIC_LE_OS,
171 INTRINSIC_NOT, INTRINSIC_USER, INTRINSIC_ASSIGN,
3bed9dd0 172 INTRINSIC_PARENTHESES, GFC_INTRINSIC_END /* Sentinel */
a79683d5 173};
6de9cd9a 174
6de9cd9a
DN
175/* This macro is the number of intrinsic operators that exist.
176 Assumptions are made about the numbering of the interface_op enums. */
177#define GFC_INTRINSIC_OPS GFC_INTRINSIC_END
178
179/* Arithmetic results. */
a79683d5 180enum arith
f8e566e5 181{ ARITH_OK = 1, ARITH_OVERFLOW, ARITH_UNDERFLOW, ARITH_NAN,
6bb62671 182 ARITH_DIV0, ARITH_INCOMMENSURATE, ARITH_ASYMMETRIC, ARITH_PROHIBIT
a79683d5 183};
6de9cd9a
DN
184
185/* Statements. */
a79683d5 186enum gfc_statement
6de9cd9a 187{
03af1e4c
DK
188 ST_ARITHMETIC_IF, ST_ALLOCATE, ST_ATTR_DECL, ST_ASSOCIATE,
189 ST_BACKSPACE, ST_BLOCK, ST_BLOCK_DATA,
6de9cd9a
DN
190 ST_CALL, ST_CASE, ST_CLOSE, ST_COMMON, ST_CONTINUE, ST_CONTAINS, ST_CYCLE,
191 ST_DATA, ST_DATA_DECL, ST_DEALLOCATE, ST_DO, ST_ELSE, ST_ELSEIF,
03af1e4c 192 ST_ELSEWHERE, ST_END_ASSOCIATE, ST_END_BLOCK, ST_END_BLOCK_DATA,
4668d6f9
PT
193 ST_ENDDO, ST_IMPLIED_ENDDO, ST_END_FILE, ST_FINAL, ST_FLUSH, ST_END_FORALL,
194 ST_END_FUNCTION, ST_ENDIF, ST_END_INTERFACE, ST_END_MODULE, ST_END_SUBMODULE,
195 ST_END_PROGRAM, ST_END_SELECT, ST_END_SUBROUTINE, ST_END_WHERE, ST_END_TYPE,
196 ST_ENTRY, ST_EQUIVALENCE, ST_ERROR_STOP, ST_EXIT, ST_FORALL, ST_FORALL_BLOCK,
197 ST_FORMAT, ST_FUNCTION, ST_GOTO, ST_IF_BLOCK, ST_IMPLICIT, ST_IMPLICIT_NONE,
198 ST_IMPORT, ST_INQUIRE, ST_INTERFACE, ST_SYNC_ALL, ST_SYNC_MEMORY,
199 ST_SYNC_IMAGES, ST_PARAMETER, ST_MODULE, ST_SUBMODULE, ST_MODULE_PROC,
200 ST_NAMELIST, ST_NULLIFY, ST_OPEN, ST_PAUSE, ST_PRIVATE, ST_PROGRAM, ST_PUBLIC,
201 ST_READ, ST_RETURN, ST_REWIND, ST_STOP, ST_SUBROUTINE, ST_TYPE, ST_USE,
202 ST_WHERE_BLOCK, ST_WHERE, ST_WAIT, ST_WRITE, ST_ASSIGNMENT,
203 ST_POINTER_ASSIGNMENT, ST_SELECT_CASE, ST_SEQUENCE, ST_SIMPLE_IF,
204 ST_STATEMENT_FUNCTION, ST_DERIVED_DECL, ST_LABEL_ASSIGNMENT, ST_ENUM,
205 ST_ENUMERATOR, ST_END_ENUM, ST_SELECT_TYPE, ST_TYPE_IS, ST_CLASS_IS,
41dbbb37
TS
206 ST_OACC_PARALLEL_LOOP, ST_OACC_END_PARALLEL_LOOP, ST_OACC_PARALLEL,
207 ST_OACC_END_PARALLEL, ST_OACC_KERNELS, ST_OACC_END_KERNELS, ST_OACC_DATA,
208 ST_OACC_END_DATA, ST_OACC_HOST_DATA, ST_OACC_END_HOST_DATA, ST_OACC_LOOP,
209 ST_OACC_END_LOOP, ST_OACC_DECLARE, ST_OACC_UPDATE, ST_OACC_WAIT,
210 ST_OACC_CACHE, ST_OACC_KERNELS_LOOP, ST_OACC_END_KERNELS_LOOP,
211 ST_OACC_ENTER_DATA, ST_OACC_EXIT_DATA, ST_OACC_ROUTINE,
20906c66
JJ
212 ST_OMP_ATOMIC, ST_OMP_BARRIER, ST_OMP_CRITICAL, ST_OMP_END_ATOMIC,
213 ST_OMP_END_CRITICAL, ST_OMP_END_DO, ST_OMP_END_MASTER, ST_OMP_END_ORDERED,
214 ST_OMP_END_PARALLEL, ST_OMP_END_PARALLEL_DO, ST_OMP_END_PARALLEL_SECTIONS,
6c7a4dfd
JJ
215 ST_OMP_END_PARALLEL_WORKSHARE, ST_OMP_END_SECTIONS, ST_OMP_END_SINGLE,
216 ST_OMP_END_WORKSHARE, ST_OMP_DO, ST_OMP_FLUSH, ST_OMP_MASTER, ST_OMP_ORDERED,
217 ST_OMP_PARALLEL, ST_OMP_PARALLEL_DO, ST_OMP_PARALLEL_SECTIONS,
218 ST_OMP_PARALLEL_WORKSHARE, ST_OMP_SECTIONS, ST_OMP_SECTION, ST_OMP_SINGLE,
a68ab351 219 ST_OMP_THREADPRIVATE, ST_OMP_WORKSHARE, ST_OMP_TASK, ST_OMP_END_TASK,
dd2fc525
JJ
220 ST_OMP_TASKWAIT, ST_OMP_TASKYIELD, ST_OMP_CANCEL, ST_OMP_CANCELLATION_POINT,
221 ST_OMP_TASKGROUP, ST_OMP_END_TASKGROUP, ST_OMP_SIMD, ST_OMP_END_SIMD,
222 ST_OMP_DO_SIMD, ST_OMP_END_DO_SIMD, ST_OMP_PARALLEL_DO_SIMD,
5f23671d 223 ST_OMP_END_PARALLEL_DO_SIMD, ST_OMP_DECLARE_SIMD, ST_OMP_DECLARE_REDUCTION,
f014c653
JJ
224 ST_OMP_TARGET, ST_OMP_END_TARGET, ST_OMP_TARGET_DATA, ST_OMP_END_TARGET_DATA,
225 ST_OMP_TARGET_UPDATE, ST_OMP_DECLARE_TARGET,
226 ST_OMP_TEAMS, ST_OMP_END_TEAMS, ST_OMP_DISTRIBUTE, ST_OMP_END_DISTRIBUTE,
227 ST_OMP_DISTRIBUTE_SIMD, ST_OMP_END_DISTRIBUTE_SIMD,
228 ST_OMP_DISTRIBUTE_PARALLEL_DO, ST_OMP_END_DISTRIBUTE_PARALLEL_DO,
229 ST_OMP_DISTRIBUTE_PARALLEL_DO_SIMD, ST_OMP_END_DISTRIBUTE_PARALLEL_DO_SIMD,
230 ST_OMP_TARGET_TEAMS, ST_OMP_END_TARGET_TEAMS, ST_OMP_TEAMS_DISTRIBUTE,
231 ST_OMP_END_TEAMS_DISTRIBUTE, ST_OMP_TEAMS_DISTRIBUTE_SIMD,
232 ST_OMP_END_TEAMS_DISTRIBUTE_SIMD, ST_OMP_TARGET_TEAMS_DISTRIBUTE,
233 ST_OMP_END_TARGET_TEAMS_DISTRIBUTE, ST_OMP_TARGET_TEAMS_DISTRIBUTE_SIMD,
234 ST_OMP_END_TARGET_TEAMS_DISTRIBUTE_SIMD, ST_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO,
235 ST_OMP_END_TEAMS_DISTRIBUTE_PARALLEL_DO,
236 ST_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO,
237 ST_OMP_END_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO,
238 ST_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
239 ST_OMP_END_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
240 ST_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
241 ST_OMP_END_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
5f23671d
JJ
242 ST_PROCEDURE, ST_GENERIC, ST_CRITICAL, ST_END_CRITICAL,
243 ST_GET_FCN_CHARACTERISTICS, ST_LOCK, ST_UNLOCK, ST_NONE
a79683d5 244};
6de9cd9a 245
6de9cd9a
DN
246/* Types of interfaces that we can have. Assignment interfaces are
247 considered to be intrinsic operators. */
a79683d5 248enum interface_type
6de9cd9a
DN
249{
250 INTERFACE_NAMELESS = 1, INTERFACE_GENERIC,
9e1d712c 251 INTERFACE_INTRINSIC_OP, INTERFACE_USER_OP, INTERFACE_ABSTRACT
a79683d5 252};
6de9cd9a
DN
253
254/* Symbol flavors: these are all mutually exclusive.
255 10 elements = 4 bits. */
a79683d5 256enum sym_flavor
6de9cd9a
DN
257{
258 FL_UNKNOWN = 0, FL_PROGRAM, FL_BLOCK_DATA, FL_MODULE, FL_VARIABLE,
a8b3b0b6
CR
259 FL_PARAMETER, FL_LABEL, FL_PROCEDURE, FL_DERIVED, FL_NAMELIST,
260 FL_VOID
a79683d5 261};
6de9cd9a
DN
262
263/* Procedure types. 7 elements = 3 bits. */
a79683d5 264enum procedure_type
6de9cd9a
DN
265{ PROC_UNKNOWN, PROC_MODULE, PROC_INTERNAL, PROC_DUMMY,
266 PROC_INTRINSIC, PROC_ST_FUNCTION, PROC_EXTERNAL
a79683d5 267};
6de9cd9a
DN
268
269/* Intent types. */
a79683d5 270enum sym_intent
6de9cd9a 271{ INTENT_UNKNOWN = 0, INTENT_IN, INTENT_OUT, INTENT_INOUT
a79683d5 272};
6de9cd9a
DN
273
274/* Access types. */
a79683d5 275enum gfc_access
5f42ddb0 276{ ACCESS_UNKNOWN = 0, ACCESS_PUBLIC, ACCESS_PRIVATE
a79683d5 277};
6de9cd9a
DN
278
279/* Flags to keep track of where an interface came from.
c73b6478 280 3 elements = 2 bits. */
a79683d5 281enum ifsrc
c73b6478
JW
282{ IFSRC_UNKNOWN = 0, /* Interface unknown, only return type may be known. */
283 IFSRC_DECL, /* FUNCTION or SUBROUTINE declaration. */
284 IFSRC_IFBODY /* INTERFACE statement or PROCEDURE statement
285 with explicit interface. */
a79683d5 286};
6de9cd9a 287
86bf520d 288/* Whether a SAVE attribute was set explicitly or implicitly. */
a79683d5 289enum save_state
5349080d 290{ SAVE_NONE = 0, SAVE_EXPLICIT, SAVE_IMPLICIT
a79683d5 291};
5349080d 292
6de9cd9a
DN
293/* Strings for all symbol attributes. We use these for dumping the
294 parse tree, in error messages, and also when reading and writing
295 modules. In symbol.c. */
296extern const mstring flavors[];
297extern const mstring procedures[];
298extern const mstring intents[];
299extern const mstring access_types[];
300extern const mstring ifsrc_types[];
ef7236d2 301extern const mstring save_status[];
6de9cd9a
DN
302
303/* Enumeration of all the generic intrinsic functions. Used by the
304 backend for identification of a function. */
305
cd5ecab6 306enum gfc_isym_id
6de9cd9a
DN
307{
308 /* GFC_ISYM_NONE is used for intrinsics which will never be seen by
df2fba9e 309 the backend (e.g. KIND). */
6de9cd9a 310 GFC_ISYM_NONE = 0,
cd5ecab6 311 GFC_ISYM_ABORT,
6de9cd9a 312 GFC_ISYM_ABS,
a119fc1c 313 GFC_ISYM_ACCESS,
6de9cd9a
DN
314 GFC_ISYM_ACHAR,
315 GFC_ISYM_ACOS,
1e399e23 316 GFC_ISYM_ACOSH,
6de9cd9a
DN
317 GFC_ISYM_ADJUSTL,
318 GFC_ISYM_ADJUSTR,
319 GFC_ISYM_AIMAG,
320 GFC_ISYM_AINT,
cd5ecab6 321 GFC_ISYM_ALARM,
6de9cd9a
DN
322 GFC_ISYM_ALL,
323 GFC_ISYM_ALLOCATED,
5d723e54 324 GFC_ISYM_AND,
cd5ecab6 325 GFC_ISYM_ANINT,
6de9cd9a
DN
326 GFC_ISYM_ANY,
327 GFC_ISYM_ASIN,
1e399e23 328 GFC_ISYM_ASINH,
6de9cd9a
DN
329 GFC_ISYM_ASSOCIATED,
330 GFC_ISYM_ATAN,
331 GFC_ISYM_ATAN2,
cd5ecab6 332 GFC_ISYM_ATANH,
7f4aaf91
TB
333 GFC_ISYM_ATOMIC_ADD,
334 GFC_ISYM_ATOMIC_AND,
335 GFC_ISYM_ATOMIC_CAS,
da661a58 336 GFC_ISYM_ATOMIC_DEF,
7f4aaf91
TB
337 GFC_ISYM_ATOMIC_FETCH_ADD,
338 GFC_ISYM_ATOMIC_FETCH_AND,
339 GFC_ISYM_ATOMIC_FETCH_OR,
340 GFC_ISYM_ATOMIC_FETCH_XOR,
341 GFC_ISYM_ATOMIC_OR,
da661a58 342 GFC_ISYM_ATOMIC_REF,
7f4aaf91 343 GFC_ISYM_ATOMIC_XOR,
88a95a11
FXC
344 GFC_ISYM_BGE,
345 GFC_ISYM_BGT,
cd5ecab6 346 GFC_ISYM_BIT_SIZE,
88a95a11
FXC
347 GFC_ISYM_BLE,
348 GFC_ISYM_BLT,
6de9cd9a 349 GFC_ISYM_BTEST,
8a8d1a16
TB
350 GFC_ISYM_CAF_GET,
351 GFC_ISYM_CAF_SEND,
6de9cd9a
DN
352 GFC_ISYM_CEILING,
353 GFC_ISYM_CHAR,
f77b6ca3 354 GFC_ISYM_CHDIR,
a119fc1c 355 GFC_ISYM_CHMOD,
6de9cd9a 356 GFC_ISYM_CMPLX,
a16ee379 357 GFC_ISYM_CO_BROADCAST,
d62cf3df
TB
358 GFC_ISYM_CO_MAX,
359 GFC_ISYM_CO_MIN,
a16ee379 360 GFC_ISYM_CO_REDUCE,
d62cf3df 361 GFC_ISYM_CO_SUM,
b41b2534 362 GFC_ISYM_COMMAND_ARGUMENT_COUNT,
d000aa67
TB
363 GFC_ISYM_COMPILER_OPTIONS,
364 GFC_ISYM_COMPILER_VERSION,
5d723e54 365 GFC_ISYM_COMPLEX,
6de9cd9a 366 GFC_ISYM_CONJG,
cd5ecab6 367 GFC_ISYM_CONVERSION,
6de9cd9a
DN
368 GFC_ISYM_COS,
369 GFC_ISYM_COSH,
370 GFC_ISYM_COUNT,
cd5ecab6 371 GFC_ISYM_CPU_TIME,
6de9cd9a 372 GFC_ISYM_CSHIFT,
35059811 373 GFC_ISYM_CTIME,
cadddfdd
TB
374 GFC_ISYM_C_ASSOCIATED,
375 GFC_ISYM_C_F_POINTER,
376 GFC_ISYM_C_F_PROCPOINTER,
377 GFC_ISYM_C_FUNLOC,
378 GFC_ISYM_C_LOC,
048510c8 379 GFC_ISYM_C_SIZEOF,
cd5ecab6 380 GFC_ISYM_DATE_AND_TIME,
6de9cd9a 381 GFC_ISYM_DBLE,
cd5ecab6 382 GFC_ISYM_DIGITS,
6de9cd9a
DN
383 GFC_ISYM_DIM,
384 GFC_ISYM_DOT_PRODUCT,
385 GFC_ISYM_DPROD,
88a95a11
FXC
386 GFC_ISYM_DSHIFTL,
387 GFC_ISYM_DSHIFTR,
cd5ecab6 388 GFC_ISYM_DTIME,
6de9cd9a 389 GFC_ISYM_EOSHIFT,
cd5ecab6 390 GFC_ISYM_EPSILON,
e8525382
SK
391 GFC_ISYM_ERF,
392 GFC_ISYM_ERFC,
f489fba1 393 GFC_ISYM_ERFC_SCALED,
2bd74949 394 GFC_ISYM_ETIME,
c14c8155 395 GFC_ISYM_EXECUTE_COMMAND_LINE,
cd5ecab6 396 GFC_ISYM_EXIT,
6de9cd9a
DN
397 GFC_ISYM_EXP,
398 GFC_ISYM_EXPONENT,
cf2b3c22 399 GFC_ISYM_EXTENDS_TYPE_OF,
35059811 400 GFC_ISYM_FDATE,
f1abbf69 401 GFC_ISYM_FE_RUNTIME_ERROR,
5d723e54
FXC
402 GFC_ISYM_FGET,
403 GFC_ISYM_FGETC,
6de9cd9a 404 GFC_ISYM_FLOOR,
cd5ecab6 405 GFC_ISYM_FLUSH,
df65f093 406 GFC_ISYM_FNUM,
5d723e54
FXC
407 GFC_ISYM_FPUT,
408 GFC_ISYM_FPUTC,
6de9cd9a 409 GFC_ISYM_FRACTION,
cd5ecab6
DF
410 GFC_ISYM_FREE,
411 GFC_ISYM_FSEEK,
df65f093 412 GFC_ISYM_FSTAT,
5d723e54 413 GFC_ISYM_FTELL,
7bc19392 414 GFC_ISYM_TGAMMA,
cd5ecab6
DF
415 GFC_ISYM_GERROR,
416 GFC_ISYM_GETARG,
417 GFC_ISYM_GET_COMMAND,
418 GFC_ISYM_GET_COMMAND_ARGUMENT,
a8c60d7f 419 GFC_ISYM_GETCWD,
cd5ecab6
DF
420 GFC_ISYM_GETENV,
421 GFC_ISYM_GET_ENVIRONMENT_VARIABLE,
4c0c6b9f 422 GFC_ISYM_GETGID,
cd5ecab6 423 GFC_ISYM_GETLOG,
4c0c6b9f
SK
424 GFC_ISYM_GETPID,
425 GFC_ISYM_GETUID,
cd5ecab6 426 GFC_ISYM_GMTIME,
f77b6ca3 427 GFC_ISYM_HOSTNM,
cd5ecab6 428 GFC_ISYM_HUGE,
f489fba1 429 GFC_ISYM_HYPOT,
6de9cd9a 430 GFC_ISYM_IACHAR,
195a95c4 431 GFC_ISYM_IALL,
6de9cd9a 432 GFC_ISYM_IAND,
195a95c4 433 GFC_ISYM_IANY,
b41b2534 434 GFC_ISYM_IARGC,
6de9cd9a
DN
435 GFC_ISYM_IBCLR,
436 GFC_ISYM_IBITS,
437 GFC_ISYM_IBSET,
438 GFC_ISYM_ICHAR,
cd5ecab6 439 GFC_ISYM_IDATE,
6de9cd9a 440 GFC_ISYM_IEOR,
f77b6ca3 441 GFC_ISYM_IERRNO,
64f002ed 442 GFC_ISYM_IMAGE_INDEX,
6de9cd9a
DN
443 GFC_ISYM_INDEX,
444 GFC_ISYM_INT,
bf3fb7e4
FXC
445 GFC_ISYM_INT2,
446 GFC_ISYM_INT8,
6de9cd9a 447 GFC_ISYM_IOR,
195a95c4 448 GFC_ISYM_IPARITY,
2bd74949 449 GFC_ISYM_IRAND,
ae8b8789 450 GFC_ISYM_ISATTY,
bae89173
FXC
451 GFC_ISYM_IS_IOSTAT_END,
452 GFC_ISYM_IS_IOSTAT_EOR,
3d97b1af 453 GFC_ISYM_ISNAN,
6de9cd9a
DN
454 GFC_ISYM_ISHFT,
455 GFC_ISYM_ISHFTC,
cd5ecab6
DF
456 GFC_ISYM_ITIME,
457 GFC_ISYM_J0,
458 GFC_ISYM_J1,
459 GFC_ISYM_JN,
29698e0f 460 GFC_ISYM_JN2,
f77b6ca3 461 GFC_ISYM_KILL,
cd5ecab6 462 GFC_ISYM_KIND,
6de9cd9a 463 GFC_ISYM_LBOUND,
64f002ed 464 GFC_ISYM_LCOBOUND,
414f00e9 465 GFC_ISYM_LEADZ,
6de9cd9a
DN
466 GFC_ISYM_LEN,
467 GFC_ISYM_LEN_TRIM,
88607a9a 468 GFC_ISYM_LGAMMA,
6de9cd9a
DN
469 GFC_ISYM_LGE,
470 GFC_ISYM_LGT,
cd5ecab6 471 GFC_ISYM_LINK,
6de9cd9a
DN
472 GFC_ISYM_LLE,
473 GFC_ISYM_LLT,
83d890b9 474 GFC_ISYM_LOC,
bf3fb7e4 475 GFC_ISYM_LOG,
6de9cd9a
DN
476 GFC_ISYM_LOG10,
477 GFC_ISYM_LOGICAL,
bf3fb7e4 478 GFC_ISYM_LONG,
a119fc1c 479 GFC_ISYM_LSHIFT,
bf3fb7e4 480 GFC_ISYM_LSTAT,
cd5ecab6 481 GFC_ISYM_LTIME,
0d519038 482 GFC_ISYM_MALLOC,
88a95a11
FXC
483 GFC_ISYM_MASKL,
484 GFC_ISYM_MASKR,
6de9cd9a
DN
485 GFC_ISYM_MATMUL,
486 GFC_ISYM_MAX,
cd5ecab6 487 GFC_ISYM_MAXEXPONENT,
6de9cd9a
DN
488 GFC_ISYM_MAXLOC,
489 GFC_ISYM_MAXVAL,
bf3fb7e4
FXC
490 GFC_ISYM_MCLOCK,
491 GFC_ISYM_MCLOCK8,
6de9cd9a 492 GFC_ISYM_MERGE,
88a95a11 493 GFC_ISYM_MERGE_BITS,
6de9cd9a 494 GFC_ISYM_MIN,
cd5ecab6 495 GFC_ISYM_MINEXPONENT,
6de9cd9a
DN
496 GFC_ISYM_MINLOC,
497 GFC_ISYM_MINVAL,
498 GFC_ISYM_MOD,
499 GFC_ISYM_MODULO,
cd5ecab6
DF
500 GFC_ISYM_MOVE_ALLOC,
501 GFC_ISYM_MVBITS,
6de9cd9a 502 GFC_ISYM_NEAREST,
cd5ecab6 503 GFC_ISYM_NEW_LINE,
6de9cd9a 504 GFC_ISYM_NINT,
0cd0559e 505 GFC_ISYM_NORM2,
6de9cd9a 506 GFC_ISYM_NOT,
cd5ecab6 507 GFC_ISYM_NULL,
60386f50 508 GFC_ISYM_NUM_IMAGES,
5d723e54 509 GFC_ISYM_OR,
6de9cd9a 510 GFC_ISYM_PACK,
0cd0559e 511 GFC_ISYM_PARITY,
cd5ecab6 512 GFC_ISYM_PERROR,
ad5f4de2
FXC
513 GFC_ISYM_POPCNT,
514 GFC_ISYM_POPPAR,
cd5ecab6 515 GFC_ISYM_PRECISION,
6de9cd9a
DN
516 GFC_ISYM_PRESENT,
517 GFC_ISYM_PRODUCT,
cd5ecab6 518 GFC_ISYM_RADIX,
2bd74949 519 GFC_ISYM_RAND,
cd5ecab6
DF
520 GFC_ISYM_RANDOM_NUMBER,
521 GFC_ISYM_RANDOM_SEED,
522 GFC_ISYM_RANGE,
2514987f 523 GFC_ISYM_RANK,
6de9cd9a 524 GFC_ISYM_REAL,
f77b6ca3 525 GFC_ISYM_RENAME,
6de9cd9a
DN
526 GFC_ISYM_REPEAT,
527 GFC_ISYM_RESHAPE,
528 GFC_ISYM_RRSPACING,
cd5ecab6 529 GFC_ISYM_RSHIFT,
cf2b3c22 530 GFC_ISYM_SAME_TYPE_AS,
a39fafac 531 GFC_ISYM_SC_KIND,
6de9cd9a
DN
532 GFC_ISYM_SCALE,
533 GFC_ISYM_SCAN,
53096259 534 GFC_ISYM_SECNDS,
cd5ecab6 535 GFC_ISYM_SECOND,
6de9cd9a
DN
536 GFC_ISYM_SET_EXPONENT,
537 GFC_ISYM_SHAPE,
88a95a11
FXC
538 GFC_ISYM_SHIFTA,
539 GFC_ISYM_SHIFTL,
540 GFC_ISYM_SHIFTR,
f0f67c96 541 GFC_ISYM_BACKTRACE,
6de9cd9a 542 GFC_ISYM_SIGN,
185d7d97 543 GFC_ISYM_SIGNAL,
cd5ecab6 544 GFC_ISYM_SI_KIND,
6de9cd9a
DN
545 GFC_ISYM_SIN,
546 GFC_ISYM_SINH,
547 GFC_ISYM_SIZE,
cd5ecab6 548 GFC_ISYM_SLEEP,
fd2157ce 549 GFC_ISYM_SIZEOF,
6de9cd9a
DN
550 GFC_ISYM_SPACING,
551 GFC_ISYM_SPREAD,
552 GFC_ISYM_SQRT,
cd5ecab6 553 GFC_ISYM_SRAND,
6de9cd9a 554 GFC_ISYM_SR_KIND,
df65f093 555 GFC_ISYM_STAT,
048510c8 556 GFC_ISYM_STORAGE_SIZE,
0881224e 557 GFC_ISYM_STRIDE,
6de9cd9a 558 GFC_ISYM_SUM,
cd5ecab6 559 GFC_ISYM_SYMLINK,
f77b6ca3 560 GFC_ISYM_SYMLNK,
5b1374e9 561 GFC_ISYM_SYSTEM,
cd5ecab6 562 GFC_ISYM_SYSTEM_CLOCK,
6de9cd9a
DN
563 GFC_ISYM_TAN,
564 GFC_ISYM_TANH,
64f002ed 565 GFC_ISYM_THIS_IMAGE,
f77b6ca3
FXC
566 GFC_ISYM_TIME,
567 GFC_ISYM_TIME8,
cd5ecab6 568 GFC_ISYM_TINY,
414f00e9 569 GFC_ISYM_TRAILZ,
6de9cd9a
DN
570 GFC_ISYM_TRANSFER,
571 GFC_ISYM_TRANSPOSE,
572 GFC_ISYM_TRIM,
25fc05eb 573 GFC_ISYM_TTYNAM,
6de9cd9a 574 GFC_ISYM_UBOUND,
64f002ed 575 GFC_ISYM_UCOBOUND,
d8fe26b2
SK
576 GFC_ISYM_UMASK,
577 GFC_ISYM_UNLINK,
6de9cd9a
DN
578 GFC_ISYM_UNPACK,
579 GFC_ISYM_VERIFY,
5d723e54 580 GFC_ISYM_XOR,
cd5ecab6
DF
581 GFC_ISYM_Y0,
582 GFC_ISYM_Y1,
29698e0f
TB
583 GFC_ISYM_YN,
584 GFC_ISYM_YN2
6de9cd9a 585};
6de9cd9a 586
a79683d5 587enum init_local_logical
51b09ce3
AL
588{
589 GFC_INIT_LOGICAL_OFF = 0,
590 GFC_INIT_LOGICAL_FALSE,
591 GFC_INIT_LOGICAL_TRUE
a79683d5 592};
51b09ce3 593
a79683d5 594enum init_local_character
51b09ce3
AL
595{
596 GFC_INIT_CHARACTER_OFF = 0,
597 GFC_INIT_CHARACTER_ON
a79683d5 598};
51b09ce3 599
a79683d5 600enum init_local_integer
51b09ce3
AL
601{
602 GFC_INIT_INTEGER_OFF = 0,
603 GFC_INIT_INTEGER_ON
a79683d5 604};
51b09ce3 605
a79683d5 606enum gfc_reverse
3d03ead0 607{
aed5574e
PT
608 GFC_ENABLE_REVERSE,
609 GFC_FORWARD_SET,
3d03ead0 610 GFC_REVERSE_SET,
aed5574e 611 GFC_INHIBIT_REVERSE
a79683d5 612};
3d03ead0 613
6de9cd9a
DN
614/************************* Structures *****************************/
615
5cf54585
TS
616/* Used for keeping things in balanced binary trees. */
617#define BBT_HEADER(self) int priority; struct self *left, *right
618
7306b628 619#define NAMED_INTCST(a,b,c,d) a,
be1f1ed9 620#define NAMED_KINDARRAY(a,b,c,d) a,
d000aa67 621#define NAMED_FUNCTION(a,b,c,d) a,
cadddfdd 622#define NAMED_SUBROUTINE(a,b,c,d) a,
fea54935 623#define NAMED_DERIVED_TYPE(a,b,c,d) a,
a79683d5 624enum iso_fortran_env_symbol
a8b3b0b6
CR
625{
626 ISOFORTRANENV_INVALID = -1,
627#include "iso-fortran-env.def"
628 ISOFORTRANENV_LAST, ISOFORTRANENV_NUMBER = ISOFORTRANENV_LAST
a79683d5 629};
d000aa67 630#undef NAMED_INTCST
be1f1ed9 631#undef NAMED_KINDARRAY
d000aa67 632#undef NAMED_FUNCTION
cadddfdd 633#undef NAMED_SUBROUTINE
fea54935 634#undef NAMED_DERIVED_TYPE
a8b3b0b6 635
7306b628 636#define NAMED_INTCST(a,b,c,d) a,
28d0b595
TB
637#define NAMED_REALCST(a,b,c,d) a,
638#define NAMED_CMPXCST(a,b,c,d) a,
a8b3b0b6
CR
639#define NAMED_LOGCST(a,b,c) a,
640#define NAMED_CHARKNDCST(a,b,c) a,
641#define NAMED_CHARCST(a,b,c) a,
642#define DERIVED_TYPE(a,b,c) a,
d000aa67 643#define NAMED_FUNCTION(a,b,c,d) a,
cadddfdd 644#define NAMED_SUBROUTINE(a,b,c,d) a,
a79683d5 645enum iso_c_binding_symbol
a8b3b0b6 646{
4d382327 647 ISOCBINDING_INVALID = -1,
a8b3b0b6
CR
648#include "iso-c-binding.def"
649 ISOCBINDING_LAST,
650 ISOCBINDING_NUMBER = ISOCBINDING_LAST
a79683d5 651};
a8b3b0b6
CR
652#undef NAMED_INTCST
653#undef NAMED_REALCST
654#undef NAMED_CMPXCST
655#undef NAMED_LOGCST
656#undef NAMED_CHARKNDCST
657#undef NAMED_CHARCST
658#undef DERIVED_TYPE
d000aa67 659#undef NAMED_FUNCTION
cadddfdd 660#undef NAMED_SUBROUTINE
a8b3b0b6 661
a79683d5 662enum intmod_id
a8b3b0b6 663{
8b198102
FXC
664 INTMOD_NONE = 0, INTMOD_ISO_FORTRAN_ENV, INTMOD_ISO_C_BINDING,
665 INTMOD_IEEE_FEATURES, INTMOD_IEEE_EXCEPTIONS, INTMOD_IEEE_ARITHMETIC
a79683d5 666};
a8b3b0b6
CR
667
668typedef struct
669{
670 char name[GFC_MAX_SYMBOL_LEN + 1];
671 int value; /* Used for both integer and character values. */
672 bt f90_type;
673}
674CInteropKind_t;
675
676/* Array of structs, where the structs represent the C interop kinds.
677 The list will be implemented based on a hash of the kind name since
678 these could be accessed multiple times.
679 Declared in trans-types.c as a global, since it's in that file
680 that the list is initialized. */
681extern CInteropKind_t c_interop_kinds_table[];
682
08a6b8e0
TB
683
684/* Structure and list of supported extension attributes. */
2b374f55 685typedef enum
08a6b8e0
TB
686{
687 EXT_ATTR_DLLIMPORT = 0,
688 EXT_ATTR_DLLEXPORT,
689 EXT_ATTR_STDCALL,
690 EXT_ATTR_CDECL,
691 EXT_ATTR_FASTCALL,
e7ac6a7c 692 EXT_ATTR_NO_ARG_CHECK,
08a6b8e0 693 EXT_ATTR_LAST, EXT_ATTR_NUM = EXT_ATTR_LAST
2b374f55
TB
694}
695ext_attr_id_t;
08a6b8e0
TB
696
697typedef struct
698{
699 const char *name;
700 unsigned id;
701 const char *middle_end_name;
702}
703ext_attr_t;
704
705extern const ext_attr_t ext_attr_list[];
706
6de9cd9a
DN
707/* Symbol attribute structure. */
708typedef struct
709{
710 /* Variable attributes. */
be59db2d 711 unsigned allocatable:1, dimension:1, codimension:1, external:1, intrinsic:1,
59e36b72 712 optional:1, pointer:1, target:1, value:1, volatile_:1, temporary:1,
e9bd9f7d 713 dummy:1, result:1, assign:1, threadprivate:1, not_always_present:1,
fe4e525c 714 implied_index:1, subref_array_pointer:1, proc_pointer:1, asynchronous:1,
ba8aa6fc 715 contiguous:1, fe_temp: 1;
6de9cd9a 716
41a394bb
DK
717 /* For CLASS containers, the pointer attribute is sometimes set internally
718 even though it was not directly specified. In this case, keep the
719 "real" (original) value here. */
720 unsigned class_pointer:1;
721
5349080d
TB
722 ENUM_BITFIELD (save_state) save:2;
723
6de9cd9a 724 unsigned data:1, /* Symbol is named in a DATA statement. */
8b11b59f 725 is_protected:1, /* Symbol has been marked as protected. */
993ef28f 726 use_assoc:1, /* Symbol has been use-associated. */
4668d6f9
PT
727 used_in_submodule:1, /* Symbol has been use-associated in a
728 submodule. Needed since these entities must
729 be set host associated to be compliant. */
5a8af0b4 730 use_only:1, /* Symbol has been use-associated, with ONLY. */
0e5a218b 731 use_rename:1, /* Symbol has been use-associated and renamed. */
022e30c0 732 imported:1, /* Symbol has been associated by IMPORT. */
4d382327 733 host_assoc:1; /* Symbol has been host associated. */
6de9cd9a 734
30aabb86 735 unsigned in_namelist:1, in_common:1, in_equivalence:1;
69773742
JW
736 unsigned function:1, subroutine:1, procedure:1;
737 unsigned generic:1, generic_copy:1;
d1303acd 738 unsigned implicit_type:1; /* Type defined via implicit rules. */
ebb479cd 739 unsigned untyped:1; /* No implicit type could be found. */
6de9cd9a 740
ebb479cd 741 unsigned is_bind_c:1; /* say if is bound to C. */
7c1dab0d 742 unsigned extension:8; /* extension level of a derived type. */
cf2b3c22 743 unsigned is_class:1; /* is a CLASS container. */
2e23972e 744 unsigned class_ok:1; /* is a CLASS object with correct attributes. */
eece1eb9
PT
745 unsigned vtab:1; /* is a derived type vtab, pointed to by CLASS objects. */
746 unsigned vtype:1; /* is a derived type of a vtab. */
a8b3b0b6
CR
747
748 /* These flags are both in the typespec and attribute. The attribute
749 list is what gets read from/written to a module file. The typespec
750 is created from a decl being processed. */
751 unsigned is_c_interop:1; /* It's c interoperable. */
752 unsigned is_iso_c:1; /* Symbol is from iso_c_binding. */
753
6de9cd9a
DN
754 /* Function/subroutine attributes */
755 unsigned sequence:1, elemental:1, pure:1, recursive:1;
9e1d712c 756 unsigned unmaskable:1, masked:1, contained:1, mod_proc:1, abstract:1;
6de9cd9a 757
4668d6f9
PT
758 /* Set if this is a module function or subroutine. Note that it is an
759 attribute because it appears as a prefix in the declaration like
760 PURE, etc.. */
761 unsigned module_procedure:1;
762
cdd244b8
TB
763 /* Set if a (public) symbol [e.g. generic name] exposes this symbol,
764 which is relevant for private module procedures. */
765 unsigned public_used:1;
766
f1f39033
PT
767 /* This is set if a contained procedure could be declared pure. This is
768 used for certain optimizations that require the result or arguments
769 cannot alias. Note that this is zero for PURE procedures. */
770 unsigned implicit_pure:1;
771
30c931de
PT
772 /* This is set for a procedure that contains expressions referencing
773 arrays coming from outside its namespace.
774 This is used to force the creation of a temporary when the LHS of
775 an array assignment may be used by an elemental procedure appearing
776 on the RHS. */
777 unsigned array_outer_dependency:1;
778
fe58e076
TK
779 /* This is set if the subroutine doesn't return. Currently, this
780 is only possible for intrinsic subroutines. */
781 unsigned noreturn:1;
782
3d79abbd
PB
783 /* Set if this procedure is an alternate entry point. These procedures
784 don't have any code associated, and the backend will turn them into
785 thunks to the master function. */
786 unsigned entry:1;
8b67b708 787
3d79abbd
PB
788 /* Set if this is the master function for a procedure with multiple
789 entry points. */
790 unsigned entry_master:1;
8b67b708 791
d198b59a
JJ
792 /* Set if this is the master function for a function with multiple
793 entry points where characteristics of the entry points differ. */
794 unsigned mixed_entry_master:1;
3d79abbd 795
6de9cd9a
DN
796 /* Set if a function must always be referenced by an explicit interface. */
797 unsigned always_explicit:1;
798
8e54f139
TB
799 /* Set if the symbol is generated and, hence, standard violations
800 shouldn't be flaged. */
801 unsigned artificial:1;
802
6de9cd9a
DN
803 /* Set if the symbol has been referenced in an expression. No further
804 modification of type or type parameters is permitted. */
805 unsigned referenced:1;
806
ecf24057 807 /* Set if this is the symbol for the main program. */
8b67b708
FXC
808 unsigned is_main_program:1;
809
6de9cd9a 810 /* Mutually exclusive multibit attributes. */
5f42ddb0
KG
811 ENUM_BITFIELD (gfc_access) access:2;
812 ENUM_BITFIELD (sym_intent) intent:2;
813 ENUM_BITFIELD (sym_flavor) flavor:4;
814 ENUM_BITFIELD (ifsrc) if_source:2;
6de9cd9a 815
5f42ddb0 816 ENUM_BITFIELD (procedure_type) proc:3;
949446f5 817
83d890b9 818 /* Special attributes for Cray pointers, pointees. */
949446f5 819 unsigned cray_pointer:1, cray_pointee:1;
6de9cd9a 820
4d382327 821 /* The symbol is a derived type with allocatable components, pointer
713485cc
JW
822 components or private components, procedure pointer components,
823 possibly nested. zero_comp is true if the derived type has no
4d382327 824 component at all. defined_assign_comp is true if the derived
8b704316
PT
825 type or a (sub-)component has a typebound defined assignment.
826 unlimited_polymorphic flags the type of the container for these
827 entities. */
713485cc 828 unsigned alloc_comp:1, pointer_comp:1, proc_pointer_comp:1,
4d382327 829 private_comp:1, zero_comp:1, coarray_comp:1, lock_comp:1,
8b704316 830 defined_assign_comp:1, unlimited_polymorphic:1;
77bb16aa 831
aa271860
PT
832 /* This is a temporary selector for SELECT TYPE or an associate
833 variable for SELECT_TYPE or ASSOCIATE. */
834 unsigned select_type_temporary:1, associate_var:1;
8c91ab34 835
5f23671d
JJ
836 /* This is omp_{out,in,priv,orig} artificial variable in
837 !$OMP DECLARE REDUCTION. */
838 unsigned omp_udr_artificial_var:1;
839
f014c653
JJ
840 /* Mentioned in OMP DECLARE TARGET. */
841 unsigned omp_declare_target:1;
842
08a6b8e0
TB
843 /* Attributes set by compiler extensions (!GCC$ ATTRIBUTES). */
844 unsigned ext_attr:EXT_ATTR_NUM;
845
1eee5628
TB
846 /* The namespace where the attribute has been set. */
847 struct gfc_namespace *volatile_ns, *asynchronous_ns;
6de9cd9a
DN
848}
849symbol_attribute;
850
851
8fc541d3
FXC
852/* We need to store source lines as sequences of multibyte source
853 characters. We define here a type wide enough to hold any multibyte
854 source character, just like libcpp does. A 32-bit type is enough. */
855
856#if HOST_BITS_PER_INT >= 32
857typedef unsigned int gfc_char_t;
858#elif HOST_BITS_PER_LONG >= 32
859typedef unsigned long gfc_char_t;
860#elif defined(HAVE_LONG_LONG) && (HOST_BITS_PER_LONGLONG >= 32)
861typedef unsigned long long gfc_char_t;
862#else
863# error "Cannot find an integer type with at least 32 bits"
864#endif
865
866
d4fa05b9 867/* The following three structures are used to identify a location in
949446f5
BF
868 the sources.
869
d4fa05b9
TS
870 gfc_file is used to maintain a tree of the source files and how
871 they include each other
6de9cd9a 872
d4fa05b9
TS
873 gfc_linebuf holds a single line of source code and information
874 which file it resides in
6de9cd9a 875
d4fa05b9 876 locus point to the sourceline and the character in the source
949446f5 877 line.
d4fa05b9 878*/
6de9cd9a 879
949446f5 880typedef struct gfc_file
6de9cd9a 881{
1b271c9b 882 struct gfc_file *next, *up;
d4fa05b9
TS
883 int inclusion_line, line;
884 char *filename;
885} gfc_file;
886
949446f5 887typedef struct gfc_linebuf
d4fa05b9 888{
c8cc8542 889 source_location location;
d4fa05b9
TS
890 struct gfc_file *file;
891 struct gfc_linebuf *next;
892
ba1defa5 893 int truncated;
9e8a6720 894 bool dbg_emitted;
ba1defa5 895
8fc541d3 896 gfc_char_t line[1];
d4fa05b9 897} gfc_linebuf;
4cdf7223
PB
898
899#define gfc_linebuf_header_size (offsetof (gfc_linebuf, line))
900
5ffeb913 901#define gfc_linebuf_linenum(LBUF) (LOCATION_LINE ((LBUF)->location))
5ffeb913 902
949446f5 903typedef struct
d4fa05b9 904{
8fc541d3 905 gfc_char_t *nextc;
d4fa05b9
TS
906 gfc_linebuf *lb;
907} locus;
6de9cd9a 908
0ce0154c
KG
909/* In order for the "gfc" format checking to work correctly, you must
910 have declared a typedef locus first. */
911#if GCC_VERSION >= 4001
912#define ATTRIBUTE_GCC_GFC(m, n) __attribute__ ((__format__ (__gcc_gfc__, m, n))) ATTRIBUTE_NONNULL(m)
913#else
914#define ATTRIBUTE_GCC_GFC(m, n) ATTRIBUTE_NONNULL(m)
915#endif
916
6de9cd9a 917
a3d3c0f5
DK
918/* Suppress error messages or re-enable them. */
919
920void gfc_push_suppress_errors (void);
921void gfc_pop_suppress_errors (void);
6de9cd9a
DN
922
923
924/* Character length structures hold the expression that gives the
925 length of a character variable. We avoid putting these into
926 gfc_typespec because doing so prevents us from doing structure
927 copies and forces us to deallocate any typespecs we create, as well
928 as structures that contain typespecs. They also can have multiple
929 character typespecs pointing to them.
930
931 These structures form a singly linked list within the current
932 namespace and are deallocated with the namespace. It is possible to
933 end up with gfc_charlen structures that have nothing pointing to them. */
934
935typedef struct gfc_charlen
936{
937 struct gfc_expr *length;
938 struct gfc_charlen *next;
c03fc95d 939 bool length_from_typespec; /* Length from explicit array ctor typespec? */
6de9cd9a 940 tree backend_decl;
e69afb29 941 tree passed_length; /* Length argument explicitly passed. */
110eec24
TS
942
943 int resolved;
6de9cd9a
DN
944}
945gfc_charlen;
946
ece3f663 947#define gfc_get_charlen() XCNEW (gfc_charlen)
6de9cd9a 948
bc21d315 949/* Type specification structure. */
6de9cd9a
DN
950typedef struct
951{
952 bt type;
953 int kind;
bc21d315
JW
954
955 union
956 {
957 struct gfc_symbol *derived; /* For derived types only. */
958 gfc_charlen *cl; /* For character types only. */
401fcd3b 959 int pad; /* For hollerith types only. */
bc21d315
JW
960 }
961 u;
962
32d99e68 963 struct gfc_symbol *interface; /* For PROCEDURE declarations. */
a8b3b0b6
CR
964 int is_c_interop;
965 int is_iso_c;
e69afb29
SK
966 bt f90_type;
967 bool deferred;
6de9cd9a
DN
968}
969gfc_typespec;
970
971/* Array specification. */
972typedef struct
973{
c62c6622 974 int rank; /* A scalar has a rank of 0, an assumed-rank array has -1. */
be59db2d 975 int corank;
178f9aa1 976 array_type type, cotype;
6de9cd9a 977 struct gfc_expr *lower[GFC_MAX_DIMENSIONS], *upper[GFC_MAX_DIMENSIONS];
83d890b9
AL
978
979 /* These two fields are used with the Cray Pointer extension. */
980 bool cray_pointee; /* True iff this spec belongs to a cray pointee. */
981 bool cp_was_assumed; /* AS_ASSUMED_SIZE cp arrays are converted to
982 AS_EXPLICIT, but we want to remember that we
983 did this. */
9b7df66f
TK
984
985 bool resolved;
6de9cd9a
DN
986}
987gfc_array_spec;
988
ece3f663 989#define gfc_get_array_spec() XCNEW (gfc_array_spec)
6de9cd9a
DN
990
991
992/* Components of derived types. */
993typedef struct gfc_component
994{
cb9e4f55 995 const char *name;
6de9cd9a
DN
996 gfc_typespec ts;
997
d4b7d0f0 998 symbol_attribute attr;
6de9cd9a
DN
999 gfc_array_spec *as;
1000
1001 tree backend_decl;
b3c1b8a1
MM
1002 /* Used to cache a FIELD_DECL matching this same component
1003 but applied to a different backend containing type that was
1004 generated by gfc_nonrestricted_type. */
1005 tree norestrict_decl;
6de9cd9a
DN
1006 locus loc;
1007 struct gfc_expr *initializer;
1008 struct gfc_component *next;
713485cc 1009
90661f26 1010 /* Needed for procedure pointer components. */
90661f26 1011 struct gfc_typebound_proc *tb;
6de9cd9a
DN
1012}
1013gfc_component;
1014
ece3f663 1015#define gfc_get_component() XCNEW (gfc_component)
6de9cd9a
DN
1016
1017/* Formal argument lists are lists of symbols. */
1018typedef struct gfc_formal_arglist
1019{
4f613946 1020 /* Symbol representing the argument at this position in the arglist. */
6de9cd9a 1021 struct gfc_symbol *sym;
4f613946 1022 /* Points to the next formal argument. */
6de9cd9a
DN
1023 struct gfc_formal_arglist *next;
1024}
1025gfc_formal_arglist;
1026
ece3f663 1027#define gfc_get_formal_arglist() XCNEW (gfc_formal_arglist)
6de9cd9a
DN
1028
1029
1030/* The gfc_actual_arglist structure is for actual arguments. */
1031typedef struct gfc_actual_arglist
1032{
cb9e4f55 1033 const char *name;
6de9cd9a
DN
1034 /* Alternate return label when the expr member is null. */
1035 struct gfc_st_label *label;
1036
1600fe22
TS
1037 /* This is set to the type of an eventual omitted optional
1038 argument. This is used to determine if a hidden string length
1039 argument has to be added to a function call. */
1040 bt missing_arg_type;
1041
6de9cd9a
DN
1042 struct gfc_expr *expr;
1043 struct gfc_actual_arglist *next;
1044}
1045gfc_actual_arglist;
1046
ece3f663 1047#define gfc_get_actual_arglist() XCNEW (gfc_actual_arglist)
6de9cd9a
DN
1048
1049
1050/* Because a symbol can belong to multiple namelists, they must be
1051 linked externally to the symbol itself. */
1052typedef struct gfc_namelist
1053{
1054 struct gfc_symbol *sym;
1055 struct gfc_namelist *next;
1056}
1057gfc_namelist;
1058
ece3f663 1059#define gfc_get_namelist() XCNEW (gfc_namelist)
6de9cd9a 1060
41dbbb37
TS
1061/* Likewise to gfc_namelist, but contains expressions. */
1062typedef struct gfc_expr_list
1063{
1064 struct gfc_expr *expr;
1065 struct gfc_expr_list *next;
1066}
1067gfc_expr_list;
1068
1069#define gfc_get_expr_list() XCNEW (gfc_expr_list)
1070
a79683d5 1071enum gfc_omp_reduction_op
5f23671d
JJ
1072{
1073 OMP_REDUCTION_NONE = -1,
1074 OMP_REDUCTION_PLUS = INTRINSIC_PLUS,
1075 OMP_REDUCTION_MINUS = INTRINSIC_MINUS,
1076 OMP_REDUCTION_TIMES = INTRINSIC_TIMES,
1077 OMP_REDUCTION_AND = INTRINSIC_AND,
1078 OMP_REDUCTION_OR = INTRINSIC_OR,
1079 OMP_REDUCTION_EQV = INTRINSIC_EQV,
1080 OMP_REDUCTION_NEQV = INTRINSIC_NEQV,
1081 OMP_REDUCTION_MAX = GFC_INTRINSIC_END,
1082 OMP_REDUCTION_MIN,
1083 OMP_REDUCTION_IAND,
1084 OMP_REDUCTION_IOR,
1085 OMP_REDUCTION_IEOR,
1086 OMP_REDUCTION_USER
a79683d5 1087};
5f23671d 1088
a79683d5 1089enum gfc_omp_depend_op
f014c653
JJ
1090{
1091 OMP_DEPEND_IN,
1092 OMP_DEPEND_OUT,
1093 OMP_DEPEND_INOUT
a79683d5 1094};
f014c653 1095
a79683d5 1096enum gfc_omp_map_op
f014c653
JJ
1097{
1098 OMP_MAP_ALLOC,
1099 OMP_MAP_TO,
1100 OMP_MAP_FROM,
41dbbb37
TS
1101 OMP_MAP_TOFROM,
1102 OMP_MAP_FORCE_ALLOC,
1103 OMP_MAP_FORCE_DEALLOC,
1104 OMP_MAP_FORCE_TO,
1105 OMP_MAP_FORCE_FROM,
1106 OMP_MAP_FORCE_TOFROM,
1107 OMP_MAP_FORCE_PRESENT,
1108 OMP_MAP_FORCE_DEVICEPTR
a79683d5 1109};
f014c653 1110
dd2fc525
JJ
1111/* For use in OpenMP clauses in case we need extra information
1112 (aligned clause alignment, linear clause step, etc.). */
1113
1114typedef struct gfc_omp_namelist
1115{
1116 struct gfc_symbol *sym;
1117 struct gfc_expr *expr;
f014c653
JJ
1118 union
1119 {
1120 gfc_omp_reduction_op reduction_op;
1121 gfc_omp_depend_op depend_op;
1122 gfc_omp_map_op map_op;
1123 } u;
b46ebd6c 1124 struct gfc_omp_namelist_udr *udr;
dd2fc525 1125 struct gfc_omp_namelist *next;
2ac33bca 1126 locus where;
dd2fc525
JJ
1127}
1128gfc_omp_namelist;
1129
1130#define gfc_get_omp_namelist() XCNEW (gfc_omp_namelist)
1131
6c7a4dfd
JJ
1132enum
1133{
41dbbb37
TS
1134 OMP_LIST_FIRST,
1135 OMP_LIST_PRIVATE = OMP_LIST_FIRST,
6c7a4dfd
JJ
1136 OMP_LIST_FIRSTPRIVATE,
1137 OMP_LIST_LASTPRIVATE,
1138 OMP_LIST_COPYPRIVATE,
1139 OMP_LIST_SHARED,
1140 OMP_LIST_COPYIN,
dd2fc525
JJ
1141 OMP_LIST_UNIFORM,
1142 OMP_LIST_ALIGNED,
1143 OMP_LIST_LINEAR,
f014c653
JJ
1144 OMP_LIST_DEPEND,
1145 OMP_LIST_MAP,
1146 OMP_LIST_TO,
1147 OMP_LIST_FROM,
5f23671d 1148 OMP_LIST_REDUCTION,
41dbbb37
TS
1149 OMP_LIST_DEVICE_RESIDENT,
1150 OMP_LIST_USE_DEVICE,
1151 OMP_LIST_CACHE,
6c7a4dfd
JJ
1152 OMP_LIST_NUM
1153};
1154
1155/* Because a symbol can belong to multiple namelists, they must be
1156 linked externally to the symbol itself. */
24b97832
ILT
1157
1158enum gfc_omp_sched_kind
1159{
1160 OMP_SCHED_NONE,
1161 OMP_SCHED_STATIC,
1162 OMP_SCHED_DYNAMIC,
1163 OMP_SCHED_GUIDED,
1164 OMP_SCHED_RUNTIME,
1165 OMP_SCHED_AUTO
1166};
1167
1168enum gfc_omp_default_sharing
1169{
1170 OMP_DEFAULT_UNKNOWN,
1171 OMP_DEFAULT_NONE,
1172 OMP_DEFAULT_PRIVATE,
1173 OMP_DEFAULT_SHARED,
1174 OMP_DEFAULT_FIRSTPRIVATE
1175};
1176
dd2fc525
JJ
1177enum gfc_omp_proc_bind_kind
1178{
1179 OMP_PROC_BIND_UNKNOWN,
1180 OMP_PROC_BIND_MASTER,
1181 OMP_PROC_BIND_SPREAD,
1182 OMP_PROC_BIND_CLOSE
1183};
1184
1185enum gfc_omp_cancel_kind
1186{
1187 OMP_CANCEL_UNKNOWN,
1188 OMP_CANCEL_PARALLEL,
1189 OMP_CANCEL_SECTIONS,
1190 OMP_CANCEL_DO,
1191 OMP_CANCEL_TASKGROUP
1192};
1193
6c7a4dfd
JJ
1194typedef struct gfc_omp_clauses
1195{
1196 struct gfc_expr *if_expr;
20906c66 1197 struct gfc_expr *final_expr;
6c7a4dfd 1198 struct gfc_expr *num_threads;
dd2fc525 1199 gfc_omp_namelist *lists[OMP_LIST_NUM];
24b97832 1200 enum gfc_omp_sched_kind sched_kind;
6c7a4dfd 1201 struct gfc_expr *chunk_size;
24b97832 1202 enum gfc_omp_default_sharing default_sharing;
a68ab351 1203 int collapse;
20906c66 1204 bool nowait, ordered, untied, mergeable;
dd2fc525
JJ
1205 bool inbranch, notinbranch;
1206 enum gfc_omp_cancel_kind cancel;
1207 enum gfc_omp_proc_bind_kind proc_bind;
1208 struct gfc_expr *safelen_expr;
1209 struct gfc_expr *simdlen_expr;
f014c653
JJ
1210 struct gfc_expr *num_teams;
1211 struct gfc_expr *device;
1212 struct gfc_expr *thread_limit;
1213 enum gfc_omp_sched_kind dist_sched_kind;
1214 struct gfc_expr *dist_chunk_size;
41dbbb37
TS
1215
1216 /* OpenACC. */
1217 struct gfc_expr *async_expr;
1218 struct gfc_expr *gang_expr;
1219 struct gfc_expr *worker_expr;
1220 struct gfc_expr *vector_expr;
1221 struct gfc_expr *num_gangs_expr;
1222 struct gfc_expr *num_workers_expr;
1223 struct gfc_expr *vector_length_expr;
1224 gfc_expr_list *wait_list;
1225 gfc_expr_list *tile_list;
1226 unsigned async:1, gang:1, worker:1, vector:1, seq:1, independent:1;
1227 unsigned wait:1, par_auto:1, gang_static:1;
1228 locus loc;
1229
6c7a4dfd
JJ
1230}
1231gfc_omp_clauses;
1232
ece3f663 1233#define gfc_get_omp_clauses() XCNEW (gfc_omp_clauses)
6c7a4dfd 1234
6de9cd9a 1235
dd2fc525
JJ
1236/* Node in the linked list used for storing !$omp declare simd constructs. */
1237
1238typedef struct gfc_omp_declare_simd
1239{
1240 struct gfc_omp_declare_simd *next;
1241 locus where; /* Where the !$omp declare simd construct occurred. */
1242
1243 gfc_symbol *proc_name;
1244
1245 gfc_omp_clauses *clauses;
1246}
1247gfc_omp_declare_simd;
1248#define gfc_get_omp_declare_simd() XCNEW (gfc_omp_declare_simd)
1249
5f23671d
JJ
1250typedef struct gfc_omp_udr
1251{
1252 struct gfc_omp_udr *next;
1253 locus where; /* Where the !$omp declare reduction construct occurred. */
1254
1255 const char *name;
1256 gfc_typespec ts;
1257 gfc_omp_reduction_op rop;
1258
1259 struct gfc_symbol *omp_out;
1260 struct gfc_symbol *omp_in;
1261 struct gfc_namespace *combiner_ns;
1262
1263 struct gfc_symbol *omp_priv;
1264 struct gfc_symbol *omp_orig;
1265 struct gfc_namespace *initializer_ns;
1266}
1267gfc_omp_udr;
1268#define gfc_get_omp_udr() XCNEW (gfc_omp_udr)
dd2fc525 1269
b46ebd6c
JJ
1270typedef struct gfc_omp_namelist_udr
1271{
1272 struct gfc_omp_udr *udr;
1273 struct gfc_code *combiner;
1274 struct gfc_code *initializer;
1275}
1276gfc_omp_namelist_udr;
1277#define gfc_get_omp_namelist_udr() XCNEW (gfc_omp_namelist_udr)
1278
d80c695f
TS
1279/* The gfc_st_label structure is a BBT attached to a namespace that
1280 records the usage of statement labels within that space. */
1281
6de9cd9a
DN
1282typedef struct gfc_st_label
1283{
5cf54585
TS
1284 BBT_HEADER(gfc_st_label);
1285
6de9cd9a
DN
1286 int value;
1287
1288 gfc_sl_type defined, referenced;
1289
1290 struct gfc_expr *format;
1291
1292 tree backend_decl;
1293
1294 locus where;
388902da
LK
1295
1296 gfc_namespace *ns;
6de9cd9a
DN
1297}
1298gfc_st_label;
1299
1300
1301/* gfc_interface()-- Interfaces are lists of symbols strung together. */
1302typedef struct gfc_interface
1303{
1304 struct gfc_symbol *sym;
1305 locus where;
1306 struct gfc_interface *next;
1307}
1308gfc_interface;
1309
ece3f663 1310#define gfc_get_interface() XCNEW (gfc_interface)
6de9cd9a 1311
6de9cd9a
DN
1312/* User operator nodes. These are like stripped down symbols. */
1313typedef struct
1314{
cb9e4f55 1315 const char *name;
6de9cd9a 1316
8b11b59f 1317 gfc_interface *op;
6de9cd9a
DN
1318 struct gfc_namespace *ns;
1319 gfc_access access;
1320}
1321gfc_user_op;
1322
30b608eb 1323
e157f736
DK
1324/* A list of specific bindings that are associated with a generic spec. */
1325typedef struct gfc_tbp_generic
1326{
1327 /* The parser sets specific_st, upon resolution we look for the corresponding
1328 gfc_typebound_proc and set specific for further use. */
1329 struct gfc_symtree* specific_st;
1330 struct gfc_typebound_proc* specific;
1331
1332 struct gfc_tbp_generic* next;
218e1228 1333 bool is_operator;
e157f736
DK
1334}
1335gfc_tbp_generic;
1336
1337#define gfc_get_tbp_generic() XCNEW (gfc_tbp_generic)
1338
1339
30b608eb 1340/* Data needed for type-bound procedures. */
e157f736 1341typedef struct gfc_typebound_proc
30b608eb 1342{
e157f736
DK
1343 locus where; /* Where the PROCEDURE/GENERIC definition was. */
1344
1345 union
1346 {
b0e5fa94 1347 struct gfc_symtree* specific; /* The interface if DEFERRED. */
e157f736
DK
1348 gfc_tbp_generic* generic;
1349 }
1350 u;
30b608eb
DK
1351
1352 gfc_access access;
90661f26 1353 const char* pass_arg; /* Argument-name for PASS. NULL if not specified. */
30b608eb 1354
e157f736
DK
1355 /* The overridden type-bound proc (or GENERIC with this name in the
1356 parent-type) or NULL if non. */
1357 struct gfc_typebound_proc* overridden;
1358
30b608eb
DK
1359 /* Once resolved, we use the position of pass_arg in the formal arglist of
1360 the binding-target procedure to identify it. The first argument has
8e1f752a 1361 number 1 here, the second 2, and so on. */
30b608eb
DK
1362 unsigned pass_arg_num;
1363
1364 unsigned nopass:1; /* Whether we have NOPASS (PASS otherwise). */
1365 unsigned non_overridable:1;
b0e5fa94 1366 unsigned deferred:1;
e157f736
DK
1367 unsigned is_generic:1;
1368 unsigned function:1, subroutine:1;
b82657f4 1369 unsigned error:1; /* Ignore it, when an error occurred during resolution. */
90661f26 1370 unsigned ppc:1;
30b608eb
DK
1371}
1372gfc_typebound_proc;
1373
1374
6de9cd9a
DN
1375/* Symbol nodes. These are important things. They are what the
1376 standard refers to as "entities". The possibly multiple names that
1377 refer to the same entity are accomplished by a binary tree of
1378 symtree structures that is balanced by the red-black method-- more
1379 than one symtree node can point to any given symbol. */
1380
1381typedef struct gfc_symbol
1382{
cb9e4f55
TS
1383 const char *name; /* Primary name, before renaming */
1384 const char *module; /* Module this symbol came from */
6de9cd9a
DN
1385 locus declared_at;
1386
1387 gfc_typespec ts;
1388 symbol_attribute attr;
1389
32d99e68 1390 /* The formal member points to the formal argument list if the
6de9cd9a
DN
1391 symbol is a function or subroutine name. If the symbol is a
1392 generic name, the generic member points to the list of
1393 interfaces. */
1394
1395 gfc_interface *generic;
1396 gfc_access component_access;
1397
1398 gfc_formal_arglist *formal;
1399 struct gfc_namespace *formal_ns;
34523524
DK
1400 struct gfc_namespace *f2k_derived;
1401
6de9cd9a
DN
1402 struct gfc_expr *value; /* Parameter/Initializer value */
1403 gfc_array_spec *as;
1404 struct gfc_symbol *result; /* function result symbol */
1405 gfc_component *components; /* Derived type components */
1406
83d890b9
AL
1407 /* Defined only for Cray pointees; points to their pointer. */
1408 struct gfc_symbol *cp_pointer;
1409
cf2b3c22
TB
1410 int entry_id; /* Used in resolve.c for entries. */
1411
7c1dab0d
JW
1412 /* CLASS hashed name for declared and dynamic types in the class. */
1413 int hash_value;
cf2b3c22 1414
9056bd70 1415 struct gfc_symbol *common_next; /* Links for COMMON syms */
30aabb86 1416
a70ba41f
MM
1417 /* This is only used for pointer comparisons to check if symbols
1418 are in the same common block.
1419 In opposition to common_block, the common_head pointer takes into account
1420 equivalences: if A is in a common block C and A and B are in equivalence,
1421 then both A and B have common_head pointing to C, while A's common_block
1422 points to C and B's is NULL. */
30aabb86
PT
1423 struct gfc_common_head* common_head;
1424
6de9cd9a
DN
1425 /* Make sure setup code for dummy arguments is generated in the correct
1426 order. */
1427 int dummy_order;
1428
1429 gfc_namelist *namelist, *namelist_tail;
1430
1431 /* Change management fields. Symbols that might be modified by the
1432 current statement have the mark member nonzero and are kept in a
1433 singly linked list through the tlink field. Of these symbols,
1434 symbols with old_symbol equal to NULL are symbols created within
1435 the current statement. Otherwise, old_symbol points to a copy of
1436 the old symbol. */
1437
1438 struct gfc_symbol *old_symbol, *tlink;
8b11b59f 1439 unsigned mark:1, gfc_new:1;
5291e69a
PB
1440 /* Nonzero if all equivalences associated with this symbol have been
1441 processed. */
1442 unsigned equiv_built:1;
31708dc6
RS
1443 /* Set if this variable is used as an index name in a FORALL. */
1444 unsigned forall_index:1;
4af8d042
MM
1445 /* Used to avoid multiple resolutions of a single symbol. */
1446 unsigned resolved:1;
4668d6f9
PT
1447 /* Set if this is a module function or subroutine with the
1448 abreviated declaration in a submodule. */
1449 unsigned abr_modproc_decl:1;
4af8d042 1450
6de9cd9a
DN
1451 int refs;
1452 struct gfc_namespace *ns; /* namespace containing this symbol */
1453
1454 tree backend_decl;
4d382327 1455
a8b3b0b6
CR
1456 /* Identity of the intrinsic module the symbol comes from, or
1457 INTMOD_NONE if it's not imported from a intrinsic module. */
1458 intmod_id from_intmod;
1459 /* Identity of the symbol from intrinsic modules, from enums maintained
1460 separately by each intrinsic module. Used together with from_intmod,
1461 it uniquely identifies a symbol from an intrinsic module. */
1462 int intmod_sym_id;
1463
1464 /* This may be repetitive, since the typespec now has a binding
1465 label field. */
9975a30b 1466 const char* binding_label;
a8b3b0b6
CR
1467 /* Store a reference to the common_block, if this symbol is in one. */
1468 struct gfc_common_head *common_block;
03af1e4c
DK
1469
1470 /* Link to corresponding association-list if this is an associate name. */
1471 struct gfc_association_list *assoc;
6de9cd9a
DN
1472}
1473gfc_symbol;
1474
dd355a42
MM
1475
1476struct gfc_undo_change_set
1477{
1478 vec<gfc_symbol *> syms;
1479 vec<gfc_typebound_proc *> tbps;
ab68a73e 1480 gfc_undo_change_set *previous;
dd355a42
MM
1481};
1482
1483
9056bd70 1484/* This structure is used to keep track of symbols in common blocks. */
30aabb86 1485typedef struct gfc_common_head
9056bd70
TS
1486{
1487 locus where;
f014c653 1488 char use_assoc, saved, threadprivate, omp_declare_target;
53814b8f 1489 char name[GFC_MAX_SYMBOL_LEN + 1];
30aabb86 1490 struct gfc_symbol *head;
9975a30b 1491 const char* binding_label;
a8b3b0b6 1492 int is_bind_c;
6f79f4d1 1493 int refs;
949446f5 1494}
9056bd70
TS
1495gfc_common_head;
1496
ece3f663 1497#define gfc_get_common_head() XCNEW (gfc_common_head)
9056bd70
TS
1498
1499
3d79abbd
PB
1500/* A list of all the alternate entry points for a procedure. */
1501
1502typedef struct gfc_entry_list
1503{
1504 /* The symbol for this entry point. */
1505 gfc_symbol *sym;
1506 /* The zero-based id of this entry point. */
1507 int id;
1508 /* The LABEL_EXPR marking this entry point. */
1509 tree label;
1933ba0f 1510 /* The next item in the list. */
3d79abbd
PB
1511 struct gfc_entry_list *next;
1512}
1513gfc_entry_list;
1514
93acb62c 1515#define gfc_get_entry_list() XCNEW (gfc_entry_list)
9056bd70 1516
a64f5186
JJ
1517/* Lists of rename info for the USE statement. */
1518
1519typedef struct gfc_use_rename
1520{
1521 char local_name[GFC_MAX_SYMBOL_LEN + 1], use_name[GFC_MAX_SYMBOL_LEN + 1];
1522 struct gfc_use_rename *next;
1523 int found;
1524 gfc_intrinsic_op op;
1525 locus where;
1526}
1527gfc_use_rename;
1528
1529#define gfc_get_use_rename() XCNEW (gfc_use_rename);
1530
1531/* A list of all USE statements in a namespace. */
1532
1533typedef struct gfc_use_list
1534{
1535 const char *module_name;
3d5dc929 1536 const char *submodule_name;
e9078ebb
TB
1537 bool intrinsic;
1538 bool non_intrinsic;
1539 bool only_flag;
a64f5186 1540 struct gfc_use_rename *rename;
9268ba9a 1541 locus where;
a64f5186
JJ
1542 /* Next USE statement. */
1543 struct gfc_use_list *next;
1544}
1545gfc_use_list;
1546
93acb62c 1547#define gfc_get_use_list() XCNEW (gfc_use_list)
a64f5186 1548
6de9cd9a
DN
1549/* Within a namespace, symbols are pointed to by symtree nodes that
1550 are linked together in a balanced binary tree. There can be
1551 several symtrees pointing to the same symbol node via USE
1552 statements. */
1553
6de9cd9a
DN
1554typedef struct gfc_symtree
1555{
1556 BBT_HEADER (gfc_symtree);
cb9e4f55 1557 const char *name;
6de9cd9a
DN
1558 int ambiguous;
1559 union
1560 {
1561 gfc_symbol *sym; /* Symbol associated with this node */
1562 gfc_user_op *uop;
9056bd70 1563 gfc_common_head *common;
e34ccb4c 1564 gfc_typebound_proc *tb;
5f23671d 1565 gfc_omp_udr *omp_udr;
6de9cd9a
DN
1566 }
1567 n;
6de9cd9a
DN
1568}
1569gfc_symtree;
1570
6b887797
PT
1571/* A linked list of derived types in the namespace. */
1572typedef struct gfc_dt_list
1573{
1574 struct gfc_symbol *derived;
1575 struct gfc_dt_list *next;
1576}
1577gfc_dt_list;
1578
ece3f663 1579#define gfc_get_dt_list() XCNEW (gfc_dt_list)
6b887797 1580
7453378e
PT
1581 /* A list of all derived types. */
1582 extern gfc_dt_list *gfc_derived_types;
6b887797 1583
9abe5e56
DK
1584/* A namespace describes the contents of procedure, module, interface block
1585 or BLOCK construct. */
3d79abbd
PB
1586/* ??? Anything else use these? */
1587
6de9cd9a
DN
1588typedef struct gfc_namespace
1589{
4f613946
TS
1590 /* Tree containing all the symbols in this namespace. */
1591 gfc_symtree *sym_root;
1592 /* Tree containing all the user-defined operators in the namespace. */
1593 gfc_symtree *uop_root;
1594 /* Tree containing all the common blocks. */
949446f5 1595 gfc_symtree *common_root;
5f23671d
JJ
1596 /* Tree containing all the OpenMP user defined reductions. */
1597 gfc_symtree *omp_udr_root;
e34ccb4c
DK
1598
1599 /* Tree containing type-bound procedures. */
1600 gfc_symtree *tb_sym_root;
94747289
DK
1601 /* Type-bound user operators. */
1602 gfc_symtree *tb_uop_root;
1603 /* For derived-types, store type-bound intrinsic operators here. */
1604 gfc_typebound_proc *tb_op[GFC_INTRINSIC_OPS];
34523524
DK
1605 /* Linked list of finalizer procedures. */
1606 struct gfc_finalizer *finalizers;
6de9cd9a 1607
4f613946 1608 /* If set_flag[letter] is set, an implicit type has been set for letter. */
6de9cd9a 1609 int set_flag[GFC_LETTERS];
4f613946
TS
1610 /* Keeps track of the implicit types associated with the letters. */
1611 gfc_typespec default_type[GFC_LETTERS];
52f49934
DK
1612 /* Store the positions of IMPLICIT statements. */
1613 locus implicit_loc[GFC_LETTERS];
6de9cd9a 1614
4f613946 1615 /* If this is a namespace of a procedure, this points to the procedure. */
6de9cd9a 1616 struct gfc_symbol *proc_name;
4f613946
TS
1617 /* If this is the namespace of a unit which contains executable
1618 code, this points to it. */
6de9cd9a 1619 struct gfc_code *code;
4f613946
TS
1620
1621 /* Points to the equivalences set up in this namespace. */
31fee91e 1622 struct gfc_equiv *equiv, *old_equiv;
61321991
PT
1623
1624 /* Points to the equivalence groups produced by trans_common. */
1625 struct gfc_equiv_list *equiv_lists;
1626
a1ee985f 1627 gfc_interface *op[GFC_INTRINSIC_OPS];
4f613946
TS
1628
1629 /* Points to the parent namespace, i.e. the namespace of a module or
1630 procedure in which the procedure belonging to this namespace is
1631 contained. The parent namespace points to this namespace either
1632 directly via CONTAINED, or indirectly via the chain built by
1633 SIBLING. */
1634 struct gfc_namespace *parent;
1635 /* CONTAINED points to the first contained namespace. Sibling
1636 namespaces are chained via SIBLING. */
1637 struct gfc_namespace *contained, *sibling;
1638
1639 gfc_common_head blank_common;
6de9cd9a
DN
1640 gfc_access default_access, operator_access[GFC_INTRINSIC_OPS];
1641
1642 gfc_st_label *st_labels;
294fbfc8
TS
1643 /* This list holds information about all the data initializers in
1644 this namespace. */
d5e2274d 1645 struct gfc_data *data, *old_data;
6de9cd9a 1646
41dbbb37
TS
1647 /* !$ACC DECLARE clauses. */
1648 gfc_omp_clauses *oacc_declare_clauses;
1649
27f31e39 1650 gfc_charlen *cl_list, *old_cl_list;
6de9cd9a 1651
3af8d8cb
PT
1652 gfc_dt_list *derived_types;
1653
4c1f4f52 1654 int save_all, seen_save, seen_implicit_none;
3d79abbd
PB
1655
1656 /* Normally we don't need to refcount namespaces. However when we read
1657 a module containing a function with multiple entry points, this
1658 will appear as several functions with the same formal namespace. */
1659 int refs;
1660
1661 /* A list of all alternate entry points to this procedure (or NULL). */
1662 gfc_entry_list *entries;
0de4325e 1663
a64f5186
JJ
1664 /* A list of USE statements in this namespace. */
1665 gfc_use_list *use_stmts;
1666
dd2fc525
JJ
1667 /* Linked list of !$omp declare simd constructs. */
1668 struct gfc_omp_declare_simd *omp_declare_simd;
1669
0de4325e 1670 /* Set to 1 if namespace is a BLOCK DATA program unit. */
9abe5e56 1671 unsigned is_block_data:1;
8998be20
TB
1672
1673 /* Set to 1 if namespace is an interface body with "IMPORT" used. */
9abe5e56 1674 unsigned has_import_set:1;
71a7778c 1675
8b7a967e
TB
1676 /* Set to 1 if the namespace uses "IMPLICT NONE (export)". */
1677 unsigned has_implicit_none_export:1;
1678
204803dc
JR
1679 /* Set to 1 if resolved has been called for this namespace.
1680 Holds -1 during resolution. */
1681 signed resolved:2;
3af8d8cb 1682
2b91aea8
MM
1683 /* Set when resolve_types has been called for this namespace. */
1684 unsigned types_resolved:1;
1685
3af8d8cb 1686 /* Set to 1 if code has been generated for this namespace. */
9abe5e56
DK
1687 unsigned translated:1;
1688
1689 /* Set to 1 if symbols in this namespace should be 'construct entities',
1690 i.e. for BLOCK local variables. */
1691 unsigned construct_entities:1;
5f23671d
JJ
1692
1693 /* Set to 1 for !$OMP DECLARE REDUCTION namespaces. */
1694 unsigned omp_udr_ns:1;
6de9cd9a
DN
1695}
1696gfc_namespace;
1697
1698extern gfc_namespace *gfc_current_ns;
71a7778c 1699extern gfc_namespace *gfc_global_ns_list;
6de9cd9a 1700
c9543002
TS
1701/* Global symbols are symbols of global scope. Currently we only use
1702 this to detect collisions already when parsing.
1703 TODO: Extend to verify procedure calls. */
1704
32e8bb8e
ILT
1705enum gfc_symbol_type
1706{
1707 GSYM_UNKNOWN=1, GSYM_PROGRAM, GSYM_FUNCTION, GSYM_SUBROUTINE,
1708 GSYM_MODULE, GSYM_COMMON, GSYM_BLOCK_DATA
1709};
1710
c9543002
TS
1711typedef struct gfc_gsymbol
1712{
1713 BBT_HEADER(gfc_gsymbol);
1714
973a384d 1715 const char *name;
a8b3b0b6
CR
1716 const char *sym_name;
1717 const char *mod_name;
1718 const char *binding_label;
32e8bb8e 1719 enum gfc_symbol_type type;
c9543002
TS
1720
1721 int defined, used;
1722 locus where;
71a7778c 1723 gfc_namespace *ns;
c9543002
TS
1724}
1725gfc_gsymbol;
1726
1727extern gfc_gsymbol *gfc_gsym_root;
6de9cd9a
DN
1728
1729/* Information on interfaces being built. */
1730typedef struct
1731{
1732 interface_type type;
1733 gfc_symbol *sym;
1734 gfc_namespace *ns;
1735 gfc_user_op *uop;
1736 gfc_intrinsic_op op;
1737}
1738gfc_interface_info;
1739
1740extern gfc_interface_info current_interface;
1741
1742
1743/* Array reference. */
32e8bb8e
ILT
1744
1745enum gfc_array_ref_dimen_type
1746{
a3935ffc 1747 DIMEN_ELEMENT = 1, DIMEN_RANGE, DIMEN_VECTOR, DIMEN_STAR, DIMEN_THIS_IMAGE, DIMEN_UNKNOWN
32e8bb8e
ILT
1748};
1749
6de9cd9a
DN
1750typedef struct gfc_array_ref
1751{
1752 ar_type type;
1753 int dimen; /* # of components in the reference */
d3a9eea2
TB
1754 int codimen;
1755 bool in_allocate; /* For coarray checks. */
6de9cd9a
DN
1756 locus where;
1757 gfc_array_spec *as;
1758
1759 locus c_where[GFC_MAX_DIMENSIONS]; /* All expressions can be NULL */
1760 struct gfc_expr *start[GFC_MAX_DIMENSIONS], *end[GFC_MAX_DIMENSIONS],
1761 *stride[GFC_MAX_DIMENSIONS];
1762
32e8bb8e 1763 enum gfc_array_ref_dimen_type dimen_type[GFC_MAX_DIMENSIONS];
6de9cd9a
DN
1764}
1765gfc_array_ref;
1766
ece3f663 1767#define gfc_get_array_ref() XCNEW (gfc_array_ref)
6de9cd9a
DN
1768
1769
1770/* Component reference nodes. A variable is stored as an expression
1771 node that points to the base symbol. After that, a singly linked
1772 list of component reference nodes gives the variable's complete
1773 resolution. The array_ref component may be present and comes
1774 before the component component. */
1775
a79683d5
TS
1776enum ref_type
1777 { REF_ARRAY, REF_COMPONENT, REF_SUBSTRING };
6de9cd9a
DN
1778
1779typedef struct gfc_ref
1780{
1781 ref_type type;
1782
1783 union
1784 {
1785 struct gfc_array_ref ar;
1786
1787 struct
1788 {
1789 gfc_component *component;
1790 gfc_symbol *sym;
1791 }
1792 c;
1793
1794 struct
1795 {
1796 struct gfc_expr *start, *end; /* Substring */
1797 gfc_charlen *length;
1798 }
1799 ss;
1800
1801 }
1802 u;
1803
1804 struct gfc_ref *next;
1805}
1806gfc_ref;
1807
ece3f663 1808#define gfc_get_ref() XCNEW (gfc_ref)
6de9cd9a
DN
1809
1810
1811/* Structures representing intrinsic symbols and their arguments lists. */
1812typedef struct gfc_intrinsic_arg
1813{
1814 char name[GFC_MAX_SYMBOL_LEN + 1];
1815
1816 gfc_typespec ts;
47b99694 1817 unsigned optional:1, value:1;
23e38561 1818 ENUM_BITFIELD (sym_intent) intent:2;
6de9cd9a
DN
1819 gfc_actual_arglist *actual;
1820
1821 struct gfc_intrinsic_arg *next;
1822
1823}
1824gfc_intrinsic_arg;
1825
1826
4f613946
TS
1827/* Specifies the various kinds of check functions used to verify the
1828 argument lists of intrinsic functions. fX with X an integer refer
1829 to check functions of intrinsics with X arguments. f1m is used for
1830 the MAX and MIN intrinsics which can have an arbitrary number of
1831 arguments, f3ml is used for the MINLOC and MAXLOC intrinsics as
1832 these have special semantics. */
1833
6de9cd9a
DN
1834typedef union
1835{
524af0d6
JB
1836 bool (*f0)(void);
1837 bool (*f1)(struct gfc_expr *);
1838 bool (*f1m)(gfc_actual_arglist *);
1839 bool (*f2)(struct gfc_expr *, struct gfc_expr *);
1840 bool (*f3)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *);
1841 bool (*f3ml)(gfc_actual_arglist *);
1842 bool (*f3red)(gfc_actual_arglist *);
1843 bool (*f4)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
6de9cd9a 1844 struct gfc_expr *);
524af0d6 1845 bool (*f5)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
6de9cd9a
DN
1846 struct gfc_expr *, struct gfc_expr *);
1847}
1848gfc_check_f;
1849
4f613946
TS
1850/* Like gfc_check_f, these specify the type of the simplification
1851 function associated with an intrinsic. The fX are just like in
1852 gfc_check_f. cc is used for type conversion functions. */
6de9cd9a
DN
1853
1854typedef union
1855{
4c0c6b9f 1856 struct gfc_expr *(*f0)(void);
6de9cd9a
DN
1857 struct gfc_expr *(*f1)(struct gfc_expr *);
1858 struct gfc_expr *(*f2)(struct gfc_expr *, struct gfc_expr *);
1859 struct gfc_expr *(*f3)(struct gfc_expr *, struct gfc_expr *,
1860 struct gfc_expr *);
1861 struct gfc_expr *(*f4)(struct gfc_expr *, struct gfc_expr *,
1862 struct gfc_expr *, struct gfc_expr *);
1863 struct gfc_expr *(*f5)(struct gfc_expr *, struct gfc_expr *,
1864 struct gfc_expr *, struct gfc_expr *,
1865 struct gfc_expr *);
1866 struct gfc_expr *(*cc)(struct gfc_expr *, bt, int);
1867}
1868gfc_simplify_f;
1869
4f613946 1870/* Again like gfc_check_f, these specify the type of the resolution
13795658 1871 function associated with an intrinsic. The fX are just like in
66e4ab31 1872 gfc_check_f. f1m is used for MIN and MAX, s1 is used for abort(). */
6de9cd9a
DN
1873
1874typedef union
1875{
1876 void (*f0)(struct gfc_expr *);
1877 void (*f1)(struct gfc_expr *, struct gfc_expr *);
1878 void (*f1m)(struct gfc_expr *, struct gfc_actual_arglist *);
1879 void (*f2)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *);
1880 void (*f3)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
1881 struct gfc_expr *);
1882 void (*f4)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
1883 struct gfc_expr *, struct gfc_expr *);
1884 void (*f5)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
1885 struct gfc_expr *, struct gfc_expr *, struct gfc_expr *);
1886 void (*s1)(struct gfc_code *);
1887}
1888gfc_resolve_f;
1889
1890
1891typedef struct gfc_intrinsic_sym
1892{
cb9e4f55 1893 const char *name, *lib_name;
6de9cd9a
DN
1894 gfc_intrinsic_arg *formal;
1895 gfc_typespec ts;
4d382327 1896 unsigned elemental:1, inquiry:1, transformational:1, pure:1,
d000aa67 1897 generic:1, specific:1, actual_ok:1, noreturn:1, conversion:1,
f1abbf69 1898 from_module:1, vararg:1;
e1633d82
DF
1899
1900 int standard;
6de9cd9a
DN
1901
1902 gfc_simplify_f simplify;
1903 gfc_check_f check;
1904 gfc_resolve_f resolve;
1905 struct gfc_intrinsic_sym *specific_head, *next;
cd5ecab6 1906 gfc_isym_id id;
6de9cd9a
DN
1907
1908}
1909gfc_intrinsic_sym;
1910
1911
1912/* Expression nodes. The expression node types deserve explanations,
1913 since the last couple can be easily misconstrued:
1914
1915 EXPR_OP Operator node pointing to one or two other nodes
1916 EXPR_FUNCTION Function call, symbol points to function's name
1917 EXPR_CONSTANT A scalar constant: Logical, String, Real, Int or Complex
1918 EXPR_VARIABLE An Lvalue with a root symbol and possible reference list
8e1f752a 1919 which expresses structure, array and substring refs.
6de9cd9a
DN
1920 EXPR_NULL The NULL pointer value (which also has a basic type).
1921 EXPR_SUBSTRING A substring of a constant string
1922 EXPR_STRUCTURE A structure constructor
8e1f752a
DK
1923 EXPR_ARRAY An array constructor.
1924 EXPR_COMPCALL Function (or subroutine) call of a procedure pointer
1925 component or type-bound procedure. */
6de9cd9a 1926
f8e566e5 1927#include <mpfr.h>
eb6f9a86 1928#include <mpc.h>
f8e566e5 1929#define GFC_RND_MODE GMP_RNDN
f6b855df 1930#define GFC_MPC_RND_MODE MPC_RNDNN
6de9cd9a 1931
b7e75771
JD
1932typedef splay_tree gfc_constructor_base;
1933
6de9cd9a
DN
1934typedef struct gfc_expr
1935{
1936 expr_t expr_type;
1937
1938 gfc_typespec ts; /* These two refer to the overall expression */
1939
c62c6622 1940 int rank; /* 0 indicates a scalar, -1 an assumed-rank array. */
6de9cd9a
DN
1941 mpz_t *shape; /* Can be NULL if shape is unknown at compile time */
1942
4a44a72d
DK
1943 /* Nonnull for functions and structure constructors, may also used to hold the
1944 base-object for component calls. */
6de9cd9a
DN
1945 gfc_symtree *symtree;
1946
6de9cd9a
DN
1947 gfc_ref *ref;
1948
6de9cd9a
DN
1949 locus where;
1950
94fae14b
PT
1951 /* Used to store the base expression in component calls, when the expression
1952 is not a variable. */
32a9b8e0 1953 struct gfc_expr *base_expr;
94fae14b 1954
62732c30 1955 /* is_boz is true if the integer is regarded as BOZ bit pattern and is_snan
346a77d1 1956 denotes a signalling not-a-number. */
712efae1 1957 unsigned int is_boz : 1, is_snan : 1;
20585ad6 1958
ebb479cd
PT
1959 /* Sometimes, when an error has been emitted, it is necessary to prevent
1960 it from recurring. */
1961 unsigned int error : 1;
4d382327 1962
94bff632 1963 /* Mark an expression where a user operator has been substituted by
a1ab6660
PT
1964 a function call in interface.c(gfc_extend_expr). */
1965 unsigned int user_operator : 1;
ebb479cd 1966
94bff632
JW
1967 /* Mark an expression as being a MOLD argument of ALLOCATE. */
1968 unsigned int mold : 1;
4d382327 1969
43a68a9d
PT
1970 /* Will require finalization after use. */
1971 unsigned int must_finalize : 1;
1972
20585ad6
BM
1973 /* If an expression comes from a Hollerith constant or compile-time
1974 evaluation of a transfer statement, it may have a prescribed target-
1975 memory representation, and these cannot always be backformed from
1976 the value. */
1977 struct
1978 {
1979 int length;
1980 char *string;
1981 }
1982 representation;
1983
6de9cd9a
DN
1984 union
1985 {
6de9cd9a 1986 int logical;
20585ad6 1987
ad7ee6f8
JD
1988 io_kind iokind;
1989
f8e566e5
SK
1990 mpz_t integer;
1991
1992 mpfr_t real;
6de9cd9a 1993
d0d92baf 1994 mpc_t complex;
6de9cd9a 1995
58b03ab2
TS
1996 struct
1997 {
a1ee985f 1998 gfc_intrinsic_op op;
58b03ab2
TS
1999 gfc_user_op *uop;
2000 struct gfc_expr *op1, *op2;
2001 }
2002 op;
2003
6de9cd9a
DN
2004 struct
2005 {
2006 gfc_actual_arglist *actual;
6b25a558 2007 const char *name; /* Points to the ultimate name of the function */
6de9cd9a
DN
2008 gfc_intrinsic_sym *isym;
2009 gfc_symbol *esym;
2010 }
2011 function;
2012
8e1f752a
DK
2013 struct
2014 {
2015 gfc_actual_arglist* actual;
e157f736 2016 const char* name;
4a44a72d
DK
2017 /* Base-object, whose component was called. NULL means that it should
2018 be taken from symtree/ref. */
2019 struct gfc_expr* base_object;
2020 gfc_typebound_proc* tbp; /* Should overlap with esym. */
2021
2022 /* For type-bound operators, we want to call PASS procedures but already
2023 have the full arglist; mark this, so that it is not extended by the
2024 PASS argument. */
2025 unsigned ignore_pass:1;
2026
2027 /* Do assign-calls rather than calls, that is appropriate dependency
2028 checking. */
2029 unsigned assign:1;
8e1f752a
DK
2030 }
2031 compcall;
2032
6de9cd9a
DN
2033 struct
2034 {
2035 int length;
00660189 2036 gfc_char_t *string;
6de9cd9a
DN
2037 }
2038 character;
2039
b7e75771 2040 gfc_constructor_base constructor;
6de9cd9a
DN
2041 }
2042 value;
2043
2044}
2045gfc_expr;
2046
2047
93acb62c 2048#define gfc_get_shape(rank) (XCNEWVEC (mpz_t, (rank)))
6de9cd9a
DN
2049
2050/* Structures for information associated with different kinds of
2051 numbers. The first set of integer parameters define all there is
2052 to know about a particular kind. The rest of the elements are
2053 computed from the first elements. */
2054
2055typedef struct
2056{
e2cad04b 2057 /* Values really representable by the target. */
7bee49dc 2058 mpz_t huge, pedantic_min_int, min_int;
e2cad04b
RH
2059
2060 int kind, radix, digits, bit_size, range;
2061
2062 /* True if the C type of the given name maps to this precision.
2063 Note that more than one bit can be set. */
2064 unsigned int c_char : 1;
2065 unsigned int c_short : 1;
2066 unsigned int c_int : 1;
2067 unsigned int c_long : 1;
2068 unsigned int c_long_long : 1;
6de9cd9a
DN
2069}
2070gfc_integer_info;
2071
2072extern gfc_integer_info gfc_integer_kinds[];
2073
2074
2075typedef struct
2076{
2077 int kind, bit_size;
2078
e2cad04b
RH
2079 /* True if the C++ type bool, C99 type _Bool, maps to this precision. */
2080 unsigned int c_bool : 1;
6de9cd9a
DN
2081}
2082gfc_logical_info;
2083
2084extern gfc_logical_info gfc_logical_kinds[];
2085
2086
2087typedef struct
2088{
2d0aa65f 2089 mpfr_t epsilon, huge, tiny, subnormal;
6de9cd9a 2090 int kind, radix, digits, min_exponent, max_exponent;
6de9cd9a 2091 int range, precision;
e2cad04b
RH
2092
2093 /* The precision of the type as reported by GET_MODE_PRECISION. */
2094 int mode_precision;
2095
2096 /* True if the C type of the given name maps to this precision.
2097 Note that more than one bit can be set. */
2098 unsigned int c_float : 1;
2099 unsigned int c_double : 1;
2100 unsigned int c_long_double : 1;
a3c85b74 2101 unsigned int c_float128 : 1;
6de9cd9a
DN
2102}
2103gfc_real_info;
2104
2105extern gfc_real_info gfc_real_kinds[];
2106
374929b2
FXC
2107typedef struct
2108{
2109 int kind, bit_size;
2110 const char *name;
2111}
2112gfc_character_info;
2113
2114extern gfc_character_info gfc_character_kinds[];
2115
6de9cd9a
DN
2116
2117/* Equivalence structures. Equivalent lvalues are linked along the
2118 *eq pointer, equivalence sets are strung along the *next node. */
2119typedef struct gfc_equiv
2120{
2121 struct gfc_equiv *next, *eq;
2122 gfc_expr *expr;
30aabb86 2123 const char *module;
6de9cd9a
DN
2124 int used;
2125}
2126gfc_equiv;
2127
ece3f663 2128#define gfc_get_equiv() XCNEW (gfc_equiv)
6de9cd9a 2129
61321991
PT
2130/* Holds a single equivalence member after processing. */
2131typedef struct gfc_equiv_info
2132{
2133 gfc_symbol *sym;
2134 HOST_WIDE_INT offset;
37311e71 2135 HOST_WIDE_INT length;
61321991
PT
2136 struct gfc_equiv_info *next;
2137} gfc_equiv_info;
2138
2139/* Holds equivalence groups, after they have been processed. */
2140typedef struct gfc_equiv_list
2141{
2142 gfc_equiv_info *equiv;
2143 struct gfc_equiv_list *next;
2144} gfc_equiv_list;
6de9cd9a
DN
2145
2146/* gfc_case stores the selector list of a case statement. The *low
2147 and *high pointers can point to the same expression in the case of
2148 a single value. If *high is NULL, the selection is from *low
2149 upwards, if *low is NULL the selection is *high downwards.
2150
410d1a45
SK
2151 This structure has separate fields to allow single and double linked
2152 lists of CASEs at the same time. The singe linked list along the NEXT
6de9cd9a
DN
2153 field is a list of cases for a single CASE label. The double linked
2154 list along the LEFT/RIGHT fields is used to detect overlap and to
2155 build a table of the cases for SELECT constructs with a CHARACTER
2156 case expression. */
2157
2158typedef struct gfc_case
2159{
2160 /* Where we saw this case. */
2161 locus where;
2162 int n;
2163
2164 /* Case range values. If (low == high), it's a single value. If one of
2165 the labels is NULL, it's an unbounded case. If both are NULL, this
2166 represents the default case. */
2167 gfc_expr *low, *high;
2168
cf2b3c22
TB
2169 /* Only used for SELECT TYPE. */
2170 gfc_typespec ts;
2171
6de9cd9a
DN
2172 /* Next case label in the list of cases for a single CASE label. */
2173 struct gfc_case *next;
2174
2175 /* Used for detecting overlap, and for code generation. */
2176 struct gfc_case *left, *right;
2177
2178 /* True if this case label can never be matched. */
2179 int unreachable;
2180}
2181gfc_case;
2182
ece3f663 2183#define gfc_get_case() XCNEW (gfc_case)
6de9cd9a
DN
2184
2185
2186typedef struct
2187{
2188 gfc_expr *var, *start, *end, *step;
2189}
2190gfc_iterator;
2191
ece3f663 2192#define gfc_get_iterator() XCNEW (gfc_iterator)
6de9cd9a
DN
2193
2194
f7b529fa 2195/* Allocation structure for ALLOCATE, DEALLOCATE and NULLIFY statements. */
6de9cd9a
DN
2196
2197typedef struct gfc_alloc
2198{
2199 gfc_expr *expr;
2200 struct gfc_alloc *next;
2201}
2202gfc_alloc;
2203
ece3f663 2204#define gfc_get_alloc() XCNEW (gfc_alloc)
6de9cd9a
DN
2205
2206
2207typedef struct
2208{
2209 gfc_expr *unit, *file, *status, *access, *form, *recl,
6f0f0b2e 2210 *blank, *position, *action, *delim, *pad, *iostat, *iomsg, *convert,
9ad55c33 2211 *decimal, *encoding, *round, *sign, *asynchronous, *id, *newunit;
6de9cd9a
DN
2212 gfc_st_label *err;
2213}
2214gfc_open;
2215
2216
2217typedef struct
2218{
7aba8abe 2219 gfc_expr *unit, *status, *iostat, *iomsg;
6de9cd9a
DN
2220 gfc_st_label *err;
2221}
2222gfc_close;
2223
2224
2225typedef struct
2226{
7aba8abe 2227 gfc_expr *unit, *iostat, *iomsg;
6de9cd9a
DN
2228 gfc_st_label *err;
2229}
2230gfc_filepos;
2231
2232
2233typedef struct
2234{
2235 gfc_expr *unit, *file, *iostat, *exist, *opened, *number, *named,
2236 *name, *access, *sequential, *direct, *form, *formatted,
2237 *unformatted, *recl, *nextrec, *blank, *position, *action, *read,
6f0f0b2e 2238 *write, *readwrite, *delim, *pad, *iolength, *iomsg, *convert, *strm_pos,
93e8af19
JD
2239 *asynchronous, *decimal, *encoding, *pending, *round, *sign, *size, *id,
2240 *iqstream;
6de9cd9a
DN
2241
2242 gfc_st_label *err;
2243
2244}
2245gfc_inquire;
2246
2247
2248typedef struct
2249{
6f0f0b2e
JD
2250 gfc_expr *unit, *iostat, *iomsg, *id;
2251 gfc_st_label *err, *end, *eor;
2252}
2253gfc_wait;
2254
2255
2256typedef struct
2257{
2258 gfc_expr *io_unit, *format_expr, *rec, *advance, *iostat, *size, *iomsg,
2259 *id, *pos, *asynchronous, *blank, *decimal, *delim, *pad, *round,
8e8dc060 2260 *sign, *extra_comma, *dt_io_kind;
6de9cd9a
DN
2261
2262 gfc_symbol *namelist;
2263 /* A format_label of `format_asterisk' indicates the "*" format */
2264 gfc_st_label *format_label;
2265 gfc_st_label *err, *end, *eor;
2266
e0e85e06 2267 locus eor_where, end_where, err_where;
6de9cd9a
DN
2268}
2269gfc_dt;
2270
2271
2272typedef struct gfc_forall_iterator
2273{
2274 gfc_expr *var, *start, *end, *stride;
2275 struct gfc_forall_iterator *next;
2276}
2277gfc_forall_iterator;
2278
2279
03af1e4c
DK
2280/* Linked list to store associations in an ASSOCIATE statement. */
2281
2282typedef struct gfc_association_list
2283{
4d382327 2284 struct gfc_association_list *next;
03af1e4c
DK
2285
2286 /* Whether this is association to a variable that can be changed; otherwise,
2287 it's association to an expression and the name may not be used as
2288 lvalue. */
2289 unsigned variable:1;
2290
3e78238a
DK
2291 /* True if this struct is currently only linked to from a gfc_symbol rather
2292 than as part of a real list in gfc_code->ext.block.assoc. This may
2293 happen for SELECT TYPE temporaries and must be considered
2294 for memory handling. */
2295 unsigned dangling:1;
2296
03af1e4c
DK
2297 char name[GFC_MAX_SYMBOL_LEN + 1];
2298 gfc_symtree *st; /* Symtree corresponding to name. */
571d54de
DK
2299 locus where;
2300
03af1e4c
DK
2301 gfc_expr *target;
2302}
2303gfc_association_list;
2304#define gfc_get_association_list() XCNEW (gfc_association_list)
2305
2306
6de9cd9a 2307/* Executable statements that fill gfc_code structures. */
a79683d5 2308enum gfc_exec_op
6de9cd9a 2309{
df1a69f6
MM
2310 EXEC_NOP = 1, EXEC_END_NESTED_BLOCK, EXEC_END_BLOCK, EXEC_ASSIGN,
2311 EXEC_LABEL_ASSIGN, EXEC_POINTER_ASSIGN, EXEC_CRITICAL, EXEC_ERROR_STOP,
8e1f752a
DK
2312 EXEC_GOTO, EXEC_CALL, EXEC_COMPCALL, EXEC_ASSIGN_CALL, EXEC_RETURN,
2313 EXEC_ENTRY, EXEC_PAUSE, EXEC_STOP, EXEC_CONTINUE, EXEC_INIT_ASSIGN,
8c6a85e3
TB
2314 EXEC_IF, EXEC_ARITHMETIC_IF, EXEC_DO, EXEC_DO_CONCURRENT, EXEC_DO_WHILE,
2315 EXEC_SELECT, EXEC_BLOCK, EXEC_FORALL, EXEC_WHERE, EXEC_CYCLE, EXEC_EXIT,
2316 EXEC_CALL_PPC, EXEC_ALLOCATE, EXEC_DEALLOCATE, EXEC_END_PROCEDURE,
2317 EXEC_SELECT_TYPE, EXEC_SYNC_ALL, EXEC_SYNC_MEMORY, EXEC_SYNC_IMAGES,
6f0f0b2e 2318 EXEC_OPEN, EXEC_CLOSE, EXEC_WAIT,
6de9cd9a 2319 EXEC_READ, EXEC_WRITE, EXEC_IOLENGTH, EXEC_TRANSFER, EXEC_DT_END,
6c7a4dfd 2320 EXEC_BACKSPACE, EXEC_ENDFILE, EXEC_INQUIRE, EXEC_REWIND, EXEC_FLUSH,
5493aa17 2321 EXEC_LOCK, EXEC_UNLOCK,
41dbbb37
TS
2322 EXEC_OACC_KERNELS_LOOP, EXEC_OACC_PARALLEL_LOOP,
2323 EXEC_OACC_PARALLEL, EXEC_OACC_KERNELS, EXEC_OACC_DATA, EXEC_OACC_HOST_DATA,
2324 EXEC_OACC_LOOP, EXEC_OACC_UPDATE, EXEC_OACC_WAIT, EXEC_OACC_CACHE,
2325 EXEC_OACC_ENTER_DATA, EXEC_OACC_EXIT_DATA,
6c7a4dfd
JJ
2326 EXEC_OMP_CRITICAL, EXEC_OMP_DO, EXEC_OMP_FLUSH, EXEC_OMP_MASTER,
2327 EXEC_OMP_ORDERED, EXEC_OMP_PARALLEL, EXEC_OMP_PARALLEL_DO,
2328 EXEC_OMP_PARALLEL_SECTIONS, EXEC_OMP_PARALLEL_WORKSHARE,
2329 EXEC_OMP_SECTIONS, EXEC_OMP_SINGLE, EXEC_OMP_WORKSHARE,
2330 EXEC_OMP_ATOMIC, EXEC_OMP_BARRIER, EXEC_OMP_END_NOWAIT,
20906c66 2331 EXEC_OMP_END_SINGLE, EXEC_OMP_TASK, EXEC_OMP_TASKWAIT,
dd2fc525
JJ
2332 EXEC_OMP_TASKYIELD, EXEC_OMP_CANCEL, EXEC_OMP_CANCELLATION_POINT,
2333 EXEC_OMP_TASKGROUP, EXEC_OMP_SIMD, EXEC_OMP_DO_SIMD,
f014c653
JJ
2334 EXEC_OMP_PARALLEL_DO_SIMD, EXEC_OMP_TARGET, EXEC_OMP_TARGET_DATA,
2335 EXEC_OMP_TEAMS, EXEC_OMP_DISTRIBUTE, EXEC_OMP_DISTRIBUTE_SIMD,
2336 EXEC_OMP_DISTRIBUTE_PARALLEL_DO, EXEC_OMP_DISTRIBUTE_PARALLEL_DO_SIMD,
2337 EXEC_OMP_TARGET_TEAMS, EXEC_OMP_TEAMS_DISTRIBUTE,
2338 EXEC_OMP_TEAMS_DISTRIBUTE_SIMD, EXEC_OMP_TARGET_TEAMS_DISTRIBUTE,
2339 EXEC_OMP_TARGET_TEAMS_DISTRIBUTE_SIMD,
2340 EXEC_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO,
2341 EXEC_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO,
2342 EXEC_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
2343 EXEC_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
2344 EXEC_OMP_TARGET_UPDATE
a79683d5 2345};
6de9cd9a 2346
a79683d5 2347enum gfc_omp_atomic_op
20906c66 2348{
dd2fc525
JJ
2349 GFC_OMP_ATOMIC_UPDATE = 0,
2350 GFC_OMP_ATOMIC_READ = 1,
2351 GFC_OMP_ATOMIC_WRITE = 2,
2352 GFC_OMP_ATOMIC_CAPTURE = 3,
2353 GFC_OMP_ATOMIC_MASK = 3,
2354 GFC_OMP_ATOMIC_SEQ_CST = 4,
2355 GFC_OMP_ATOMIC_SWAP = 8
a79683d5 2356};
20906c66 2357
6de9cd9a
DN
2358typedef struct gfc_code
2359{
2360 gfc_exec_op op;
2361
2362 struct gfc_code *block, *next;
2363 locus loc;
2364
79bd1948 2365 gfc_st_label *here, *label1, *label2, *label3;
6de9cd9a 2366 gfc_symtree *symtree;
5493aa17 2367 gfc_expr *expr1, *expr2, *expr3, *expr4;
6de9cd9a
DN
2368 /* A name isn't sufficient to identify a subroutine, we need the actual
2369 symbol for the interface definition.
2370 const char *sub_name; */
2371 gfc_symbol *resolved_sym;
12f681a0 2372 gfc_intrinsic_sym *resolved_isym;
6de9cd9a
DN
2373
2374 union
2375 {
2376 gfc_actual_arglist *actual;
6de9cd9a 2377 gfc_iterator *iterator;
cf2b3c22
TB
2378
2379 struct
2380 {
2381 gfc_typespec ts;
2382 gfc_alloc *list;
1792349b
AV
2383 /* Take the array specification from expr3 to allocate arrays
2384 without an explicit array specification. */
2385 unsigned arr_spec_from_expr3:1;
cf2b3c22
TB
2386 }
2387 alloc;
2388
03af1e4c
DK
2389 struct
2390 {
2391 gfc_namespace *ns;
2392 gfc_association_list *assoc;
29a63d67 2393 gfc_case *case_list;
03af1e4c
DK
2394 }
2395 block;
2396
6de9cd9a
DN
2397 gfc_open *open;
2398 gfc_close *close;
2399 gfc_filepos *filepos;
2400 gfc_inquire *inquire;
6f0f0b2e 2401 gfc_wait *wait;
6de9cd9a
DN
2402 gfc_dt *dt;
2403 gfc_forall_iterator *forall_iterator;
e5ca9693 2404 struct gfc_code *which_construct;
6de9cd9a 2405 int stop_code;
3d79abbd 2406 gfc_entry_list *entry;
6c7a4dfd
JJ
2407 gfc_omp_clauses *omp_clauses;
2408 const char *omp_name;
dd2fc525 2409 gfc_omp_namelist *omp_namelist;
6c7a4dfd 2410 bool omp_bool;
20906c66 2411 gfc_omp_atomic_op omp_atomic;
6de9cd9a
DN
2412 }
2413 ext; /* Points to additional structures required by statement */
2414
e5ca9693 2415 /* Cycle and break labels in constructs. */
e7041633
NF
2416 tree cycle_label;
2417 tree exit_label;
6de9cd9a
DN
2418}
2419gfc_code;
2420
2421
2422/* Storage for DATA statements. */
2423typedef struct gfc_data_variable
2424{
2425 gfc_expr *expr;
2426 gfc_iterator iter;
2427 struct gfc_data_variable *list, *next;
2428}
2429gfc_data_variable;
2430
2431
2432typedef struct gfc_data_value
2433{
f2112868 2434 mpz_t repeat;
6de9cd9a 2435 gfc_expr *expr;
6de9cd9a
DN
2436 struct gfc_data_value *next;
2437}
2438gfc_data_value;
2439
2440
2441typedef struct gfc_data
2442{
2443 gfc_data_variable *var;
2444 gfc_data_value *value;
2445 locus where;
2446
2447 struct gfc_data *next;
2448}
2449gfc_data;
2450
6de9cd9a
DN
2451
2452/* Structure for holding compile options */
2453typedef struct
2454{
6de9cd9a
DN
2455 char *module_dir;
2456 gfc_source_form source_form;
5a06474c
JD
2457 int max_continue_fixed;
2458 int max_continue_free;
6de9cd9a 2459 int max_identifier_length;
6de9cd9a 2460
3f139fcf 2461 int max_errors;
6de9cd9a 2462
2d7c7df6 2463 int flag_preprocessed;
e0bcf78c 2464 int flag_d_lines;
51b09ce3
AL
2465 int flag_init_integer;
2466 int flag_init_integer_value;
51b09ce3
AL
2467 int flag_init_logical;
2468 int flag_init_character;
2469 char flag_init_character_value;
6de9cd9a 2470
944b8b35 2471 int fpe;
fa86f4f9 2472 int fpe_summary;
d3d3011f 2473 int rtcheck;
944b8b35 2474
6de9cd9a
DN
2475 int warn_std;
2476 int allow_std;
2477}
2478gfc_option_t;
2479
2480extern gfc_option_t gfc_option;
2481
6de9cd9a
DN
2482/* Constructor nodes for array and structure constructors. */
2483typedef struct gfc_constructor
2484{
b7e75771
JD
2485 gfc_constructor_base base;
2486 mpz_t offset; /* Offset within a constructor, used as
2487 key within base. */
2488
6de9cd9a
DN
2489 gfc_expr *expr;
2490 gfc_iterator *iterator;
2491 locus where;
b7e75771
JD
2492
2493 union
6de9cd9a 2494 {
b7e75771 2495 gfc_component *component; /* Record the component being initialized. */
6de9cd9a
DN
2496 }
2497 n;
21ea4922
JJ
2498 mpz_t repeat; /* Record the repeat number of initial values in data
2499 statement like "data a/5*10/". */
6de9cd9a
DN
2500}
2501gfc_constructor;
2502
2503
2504typedef struct iterator_stack
2505{
2506 gfc_symtree *variable;
2507 mpz_t value;
2508 struct iterator_stack *prev;
2509}
2510iterator_stack;
2511extern iterator_stack *iter_stack;
2512
34523524 2513
7431bf06
JW
2514/* Used for (possibly nested) SELECT TYPE statements. */
2515typedef struct gfc_select_type_stack
2516{
2517 gfc_symbol *selector; /* Current selector variable. */
2518 gfc_symtree *tmp; /* Current temporary variable. */
2519 struct gfc_select_type_stack *prev; /* Previous element on stack. */
2520}
2521gfc_select_type_stack;
2522extern gfc_select_type_stack *select_type_stack;
2523#define gfc_get_select_type_stack() XCNEW (gfc_select_type_stack)
2524
2525
34523524
DK
2526/* Node in the linked list used for storing finalizer procedures. */
2527
2528typedef struct gfc_finalizer
2529{
2530 struct gfc_finalizer* next;
df2fba9e 2531 locus where; /* Where the FINAL declaration occurred. */
f6fad28e
DK
2532
2533 /* Up to resolution, we want the gfc_symbol, there we lookup the corresponding
2534 symtree and later need only that. This way, we can access and call the
2535 finalizers from every context as they should be "always accessible". I
2536 don't make this a union because we need the information whether proc_sym is
2537 still referenced or not for dereferencing it on deleting a gfc_finalizer
2538 structure. */
2539 gfc_symbol* proc_sym;
4d382327 2540 gfc_symtree* proc_tree;
34523524
DK
2541}
2542gfc_finalizer;
f6fad28e
DK
2543#define gfc_get_finalizer() XCNEW (gfc_finalizer)
2544
34523524 2545
6de9cd9a
DN
2546/************************ Function prototypes *************************/
2547
2220652d
PT
2548/* decl.c */
2549bool gfc_in_match_data (void);
8234e5e0 2550match gfc_match_char_spec (gfc_typespec *);
2220652d 2551
6de9cd9a
DN
2552/* scanner.c */
2553void gfc_scanner_done_1 (void);
2554void gfc_scanner_init_1 (void);
2555
308f961b 2556void gfc_add_include_path (const char *, bool, bool, bool);
31198773 2557void gfc_add_intrinsic_modules_path (const char *);
6de9cd9a 2558void gfc_release_include_path (void);
31198773 2559FILE *gfc_open_included_file (const char *, bool, bool);
6de9cd9a 2560
6de9cd9a
DN
2561int gfc_at_end (void);
2562int gfc_at_eof (void);
2563int gfc_at_bol (void);
2564int gfc_at_eol (void);
2565void gfc_advance_line (void);
2566int gfc_check_include (void);
9e8a6720 2567int gfc_define_undef_line (void);
6de9cd9a 2568
8fc541d3
FXC
2569int gfc_wide_is_printable (gfc_char_t);
2570int gfc_wide_is_digit (gfc_char_t);
2571int gfc_wide_fits_in_byte (gfc_char_t);
2572gfc_char_t gfc_wide_tolower (gfc_char_t);
00660189 2573gfc_char_t gfc_wide_toupper (gfc_char_t);
8fc541d3 2574size_t gfc_wide_strlen (const gfc_char_t *);
00660189
FXC
2575int gfc_wide_strncasecmp (const gfc_char_t *, const char *, size_t);
2576gfc_char_t *gfc_wide_memset (gfc_char_t *, gfc_char_t, size_t);
2577char *gfc_widechar_to_char (const gfc_char_t *, int);
2578gfc_char_t *gfc_char_to_widechar (const char *);
2579
ece3f663 2580#define gfc_get_wide_string(n) XCNEWVEC (gfc_char_t, n)
8fc541d3 2581
6de9cd9a 2582void gfc_skip_comments (void);
696abb30 2583gfc_char_t gfc_next_char_literal (gfc_instring);
8fc541d3
FXC
2584gfc_char_t gfc_next_char (void);
2585char gfc_next_ascii_char (void);
2586gfc_char_t gfc_peek_char (void);
2587char gfc_peek_ascii_char (void);
6de9cd9a
DN
2588void gfc_error_recovery (void);
2589void gfc_gobble_whitespace (void);
524af0d6 2590bool gfc_new_file (void);
2d7c7df6 2591const char * gfc_read_orig_filename (const char *, const char **);
6de9cd9a 2592
d4fa05b9 2593extern gfc_source_form gfc_current_form;
e0bcf78c 2594extern const char *gfc_source_file;
63645982 2595extern locus gfc_current_locus;
6de9cd9a 2596
60332588
JJ
2597void gfc_start_source_files (void);
2598void gfc_end_source_files (void);
2599
6de9cd9a 2600/* misc.c */
6de9cd9a
DN
2601void gfc_clear_ts (gfc_typespec *);
2602FILE *gfc_open_file (const char *);
6de9cd9a
DN
2603const char *gfc_basic_typename (bt);
2604const char *gfc_typename (gfc_typespec *);
ba3ba492 2605const char *gfc_op2string (gfc_intrinsic_op);
6de9cd9a
DN
2606const char *gfc_code2string (const mstring *, int);
2607int gfc_string2code (const mstring *, const char *);
2608const char *gfc_intent_string (sym_intent);
2609
2610void gfc_init_1 (void);
2611void gfc_init_2 (void);
2612void gfc_done_1 (void);
2613void gfc_done_2 (void);
2614
a8b3b0b6
CR
2615int get_c_kind (const char *, CInteropKind_t *);
2616
6de9cd9a 2617/* options.c */
7a9bf9a4 2618unsigned int gfc_option_lang_mask (void);
a75bfaa6 2619void gfc_init_options_struct (struct gcc_options *);
7a9bf9a4
JM
2620void gfc_init_options (unsigned int,
2621 struct cl_decoded_option *);
a4d8c676 2622bool gfc_handle_option (size_t, const char *, int, int, location_t,
5f20c657 2623 const struct cl_option_handlers *);
6de9cd9a 2624bool gfc_post_options (const char **);
41804a5b 2625char *gfc_get_option_string (void);
6de9cd9a 2626
602b8523
TB
2627/* f95-lang.c */
2628void gfc_maybe_initialize_eh (void);
2629
6de9cd9a 2630/* iresolve.c */
6b25a558 2631const char * gfc_get_string (const char *, ...) ATTRIBUTE_PRINTF_1;
a68ab351 2632bool gfc_find_sym_in_expr (gfc_symbol *, gfc_expr *);
6de9cd9a
DN
2633
2634/* error.c */
6de9cd9a 2635void gfc_error_init_1 (void);
3aa34c1d
MLI
2636void gfc_diagnostics_init (void);
2637void gfc_diagnostics_finish (void);
0f447a6e 2638void gfc_buffer_error (bool);
6de9cd9a 2639
00660189
FXC
2640const char *gfc_print_wide_char (gfc_char_t);
2641
48749dbc 2642bool gfc_warning (int opt, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
4daa149b 2643bool gfc_warning_now (int opt, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
2a2703a2
MLI
2644bool gfc_warning_now_at (location_t loc, int opt, const char *gmsgid, ...)
2645 ATTRIBUTE_GCC_GFC(3,4);
8e54f6d3 2646
6de9cd9a
DN
2647void gfc_clear_warning (void);
2648void gfc_warning_check (void);
2649
0ce0154c
KG
2650void gfc_error (const char *, ...) ATTRIBUTE_GCC_GFC(1,2);
2651void gfc_error_now (const char *, ...) ATTRIBUTE_GCC_GFC(1,2);
2652void gfc_fatal_error (const char *, ...) ATTRIBUTE_NORETURN ATTRIBUTE_GCC_GFC(1,2);
2653void gfc_internal_error (const char *, ...) ATTRIBUTE_NORETURN ATTRIBUTE_GCC_GFC(1,2);
6de9cd9a 2654void gfc_clear_error (void);
b5a9fd3e 2655bool gfc_error_check (void);
0f447a6e 2656bool gfc_error_flag_test (void);
6de9cd9a 2657
8f0d39a8 2658notification gfc_notification_std (int);
524af0d6 2659bool gfc_notify_std (int, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
6de9cd9a
DN
2660
2661/* A general purpose syntax error. */
2662#define gfc_syntax_error(ST) \
2663 gfc_error ("Syntax error in %s statement at %C", gfc_ascii_statement (ST));
2664
fea70c99
MLI
2665#include "pretty-print.h" /* For output_buffer. */
2666struct gfc_error_buffer
2667{
2668 bool flag;
2669 output_buffer buffer;
2670 gfc_error_buffer(void) : flag(false), buffer() {}
2671};
2672
2673void gfc_push_error (gfc_error_buffer *);
2674void gfc_pop_error (gfc_error_buffer *);
2675void gfc_free_error (gfc_error_buffer *);
6de9cd9a 2676
6de9cd9a 2677void gfc_get_errors (int *, int *);
f4031599 2678void gfc_errors_to_warnings (bool);
6de9cd9a
DN
2679
2680/* arith.c */
2681void gfc_arith_init_1 (void);
2682void gfc_arith_done_1 (void);
25d8f0a2 2683arith gfc_check_integer_range (mpz_t p, int kind);
d393bbd7 2684bool gfc_check_character_range (gfc_char_t, int);
6de9cd9a 2685
5e8e542f 2686/* trans-types.c */
524af0d6 2687bool gfc_check_any_c_kind (gfc_typespec *);
e7a2d5fb 2688int gfc_validate_kind (bt, int, bool);
e0a6661b
FXC
2689int gfc_get_int_kind_from_width_isofortranenv (int size);
2690int gfc_get_real_kind_from_width_isofortranenv (int size);
7c1dab0d 2691tree gfc_get_derived_type (gfc_symbol * derived);
6de9cd9a 2692extern int gfc_index_integer_kind;
9d64df18 2693extern int gfc_default_integer_kind;
f4e7375a 2694extern int gfc_max_integer_kind;
9d64df18
TS
2695extern int gfc_default_real_kind;
2696extern int gfc_default_double_kind;
2697extern int gfc_default_character_kind;
2698extern int gfc_default_logical_kind;
2699extern int gfc_default_complex_kind;
e8525382 2700extern int gfc_c_int_kind;
da661a58
TB
2701extern int gfc_atomic_int_kind;
2702extern int gfc_atomic_logical_kind;
014ec6ee 2703extern int gfc_intio_kind;
f1412ca5 2704extern int gfc_charlen_int_kind;
39f87c03
FXC
2705extern int gfc_numeric_storage_size;
2706extern int gfc_character_storage_size;
6de9cd9a
DN
2707
2708/* symbol.c */
2709void gfc_clear_new_implicit (void);
524af0d6
JB
2710bool gfc_add_new_implicit_range (int, int);
2711bool gfc_merge_new_implicit (gfc_typespec *);
a6c63173 2712void gfc_set_implicit_none (bool, bool, locus *);
e9bd9f7d 2713void gfc_check_function_type (gfc_namespace *);
e9c06563 2714bool gfc_is_intrinsic_typename (const char *);
6de9cd9a 2715
713485cc 2716gfc_typespec *gfc_get_default_type (const char *, gfc_namespace *);
524af0d6 2717bool gfc_set_default_type (gfc_symbol *, int, gfc_namespace *);
6de9cd9a 2718
66e4ab31 2719void gfc_set_sym_referenced (gfc_symbol *);
6de9cd9a 2720
524af0d6
JB
2721bool gfc_add_attribute (symbol_attribute *, locus *);
2722bool gfc_add_ext_attribute (symbol_attribute *, ext_attr_id_t, locus *);
2723bool gfc_add_allocatable (symbol_attribute *, locus *);
2724bool gfc_add_codimension (symbol_attribute *, const char *, locus *);
2725bool gfc_add_contiguous (symbol_attribute *, const char *, locus *);
2726bool gfc_add_dimension (symbol_attribute *, const char *, locus *);
2727bool gfc_add_external (symbol_attribute *, locus *);
2728bool gfc_add_intrinsic (symbol_attribute *, locus *);
2729bool gfc_add_optional (symbol_attribute *, locus *);
2730bool gfc_add_pointer (symbol_attribute *, locus *);
2731bool gfc_add_cray_pointer (symbol_attribute *, locus *);
2732bool gfc_add_cray_pointee (symbol_attribute *, locus *);
32e8bb8e 2733match gfc_mod_pointee_as (gfc_array_spec *);
524af0d6
JB
2734bool gfc_add_protected (symbol_attribute *, const char *, locus *);
2735bool gfc_add_result (symbol_attribute *, const char *, locus *);
2736bool gfc_add_save (symbol_attribute *, save_state, const char *, locus *);
2737bool gfc_add_threadprivate (symbol_attribute *, const char *, locus *);
f014c653 2738bool gfc_add_omp_declare_target (symbol_attribute *, const char *, locus *);
524af0d6
JB
2739bool gfc_add_saved_common (symbol_attribute *, locus *);
2740bool gfc_add_target (symbol_attribute *, locus *);
2741bool gfc_add_dummy (symbol_attribute *, const char *, locus *);
2742bool gfc_add_generic (symbol_attribute *, const char *, locus *);
2743bool gfc_add_common (symbol_attribute *, locus *);
2744bool gfc_add_in_common (symbol_attribute *, const char *, locus *);
2745bool gfc_add_in_equivalence (symbol_attribute *, const char *, locus *);
2746bool gfc_add_data (symbol_attribute *, const char *, locus *);
2747bool gfc_add_in_namelist (symbol_attribute *, const char *, locus *);
2748bool gfc_add_sequence (symbol_attribute *, const char *, locus *);
2749bool gfc_add_elemental (symbol_attribute *, locus *);
2750bool gfc_add_pure (symbol_attribute *, locus *);
2751bool gfc_add_recursive (symbol_attribute *, locus *);
2752bool gfc_add_function (symbol_attribute *, const char *, locus *);
2753bool gfc_add_subroutine (symbol_attribute *, const char *, locus *);
2754bool gfc_add_volatile (symbol_attribute *, const char *, locus *);
2755bool gfc_add_asynchronous (symbol_attribute *, const char *, locus *);
2756bool gfc_add_proc (symbol_attribute *attr, const char *name, locus *where);
2757bool gfc_add_abstract (symbol_attribute* attr, locus* where);
2758
2759bool gfc_add_access (symbol_attribute *, gfc_access, const char *, locus *);
2760bool gfc_add_is_bind_c (symbol_attribute *, const char *, locus *, int);
2761bool gfc_add_extension (symbol_attribute *, locus *);
2762bool gfc_add_value (symbol_attribute *, const char *, locus *);
2763bool gfc_add_flavor (symbol_attribute *, sym_flavor, const char *, locus *);
2764bool gfc_add_entry (symbol_attribute *, const char *, locus *);
2765bool gfc_add_procedure (symbol_attribute *, procedure_type,
231b2fcc 2766 const char *, locus *);
524af0d6
JB
2767bool gfc_add_intent (symbol_attribute *, sym_intent, locus *);
2768bool gfc_add_explicit_interface (gfc_symbol *, ifsrc,
6de9cd9a 2769 gfc_formal_arglist *, locus *);
524af0d6 2770bool gfc_add_type (gfc_symbol *, gfc_typespec *, locus *);
6de9cd9a
DN
2771
2772void gfc_clear_attr (symbol_attribute *);
524af0d6
JB
2773bool gfc_missing_attr (symbol_attribute *, locus *);
2774bool gfc_copy_attr (symbol_attribute *, symbol_attribute *, locus *);
4668d6f9 2775int gfc_copy_dummy_sym (gfc_symbol **, gfc_symbol *, int);
524af0d6 2776bool gfc_add_component (gfc_symbol *, const char *, gfc_component **);
6de9cd9a
DN
2777gfc_symbol *gfc_use_derived (gfc_symbol *);
2778gfc_symtree *gfc_use_derived_tree (gfc_symtree *);
9d1210f4 2779gfc_component *gfc_find_component (gfc_symbol *, const char *, bool, bool);
6de9cd9a
DN
2780
2781gfc_st_label *gfc_get_st_label (int);
2782void gfc_free_st_label (gfc_st_label *);
2783void gfc_define_st_label (gfc_st_label *, gfc_sl_type, locus *);
524af0d6 2784bool gfc_reference_st_label (gfc_st_label *, gfc_sl_type);
6de9cd9a 2785
0366dfe9 2786gfc_namespace *gfc_get_namespace (gfc_namespace *, int);
6de9cd9a
DN
2787gfc_symtree *gfc_new_symtree (gfc_symtree **, const char *);
2788gfc_symtree *gfc_find_symtree (gfc_symtree *, const char *);
a99d95a2 2789void gfc_delete_symtree (gfc_symtree **, const char *);
aa84a9a5 2790gfc_symtree *gfc_get_unique_symtree (gfc_namespace *);
6de9cd9a
DN
2791gfc_user_op *gfc_get_uop (const char *);
2792gfc_user_op *gfc_find_uop (const char *, gfc_namespace *);
2793void gfc_free_symbol (gfc_symbol *);
3cb595ac 2794void gfc_release_symbol (gfc_symbol *);
6de9cd9a 2795gfc_symbol *gfc_new_symbol (const char *, gfc_namespace *);
61b644c2 2796gfc_symtree* gfc_find_symtree_in_proc (const char *, gfc_namespace *);
6de9cd9a
DN
2797int gfc_find_symbol (const char *, gfc_namespace *, int, gfc_symbol **);
2798int gfc_find_sym_tree (const char *, gfc_namespace *, int, gfc_symtree **);
2799int gfc_get_symbol (const char *, gfc_namespace *, gfc_symbol **);
524af0d6
JB
2800bool gfc_verify_c_interop (gfc_typespec *);
2801bool gfc_verify_c_interop_param (gfc_symbol *);
2802bool verify_bind_c_sym (gfc_symbol *, gfc_typespec *, int, gfc_common_head *);
2803bool verify_bind_c_derived_type (gfc_symbol *);
2804bool verify_com_block_vars_c_interop (gfc_common_head *);
cadddfdd
TB
2805gfc_symtree *generate_isocbinding_symbol (const char *, iso_c_binding_symbol,
2806 const char *, gfc_symtree *, bool);
44c57c2f 2807void gfc_save_symbol_data (gfc_symbol *);
08a6b8e0 2808int gfc_get_sym_tree (const char *, gfc_namespace *, gfc_symtree **, bool);
6de9cd9a
DN
2809int gfc_get_ha_symbol (const char *, gfc_symbol **);
2810int gfc_get_ha_sym_tree (const char *, gfc_symtree **);
2811
ab68a73e
MM
2812void gfc_new_undo_checkpoint (gfc_undo_change_set &);
2813void gfc_drop_last_undo_checkpoint (void);
2814void gfc_restore_last_undo_checkpoint (void);
6de9cd9a
DN
2815void gfc_undo_symbols (void);
2816void gfc_commit_symbols (void);
66e4ab31 2817void gfc_commit_symbol (gfc_symbol *);
b76e28c6 2818gfc_charlen *gfc_new_charlen (gfc_namespace *, gfc_charlen *);
27f31e39 2819void gfc_free_charlen (gfc_charlen *, gfc_charlen *);
6de9cd9a
DN
2820void gfc_free_namespace (gfc_namespace *);
2821
2822void gfc_symbol_init_2 (void);
2823void gfc_symbol_done_2 (void);
2824
9056bd70 2825void gfc_traverse_symtree (gfc_symtree *, void (*)(gfc_symtree *));
6de9cd9a
DN
2826void gfc_traverse_ns (gfc_namespace *, void (*)(gfc_symbol *));
2827void gfc_traverse_user_op (gfc_namespace *, void (*)(gfc_user_op *));
2828void gfc_save_all (gfc_namespace *);
2829
4bc20f3a 2830void gfc_enforce_clean_symbol_state (void);
71a7778c
PT
2831void gfc_free_dt_list (void);
2832
6de9cd9a 2833
cb9e4f55
TS
2834gfc_gsymbol *gfc_get_gsymbol (const char *);
2835gfc_gsymbol *gfc_find_gsymbol (gfc_gsymbol *, const char *);
c9543002 2836
3e15518b 2837gfc_typebound_proc* gfc_get_typebound_proc (gfc_typebound_proc*);
30b608eb 2838gfc_symbol* gfc_get_derived_super_type (gfc_symbol*);
cf2b3c22
TB
2839gfc_symbol* gfc_get_ultimate_derived_super_type (gfc_symbol*);
2840bool gfc_type_is_extension_of (gfc_symbol *, gfc_symbol *);
e74f1cc8 2841bool gfc_type_compatible (gfc_typespec *, gfc_typespec *);
30b608eb 2842
8fdcb6a9
TB
2843void gfc_copy_formal_args_intr (gfc_symbol *, gfc_intrinsic_sym *,
2844 gfc_actual_arglist *);
69773742 2845
34523524
DK
2846void gfc_free_finalizer (gfc_finalizer *el); /* Needed in resolve.c, too */
2847
524af0d6 2848bool gfc_check_symbol_typed (gfc_symbol*, gfc_namespace*, bool, locus);
52bf62f9 2849gfc_namespace* gfc_find_proc_namespace (gfc_namespace*);
f37e928c 2850
571d54de 2851bool gfc_is_associate_pointer (gfc_symbol*);
c3f34952 2852gfc_symbol * gfc_find_dt_in_generic (gfc_symbol *);
4cbc9039 2853gfc_formal_arglist *gfc_sym_get_dummy_args (gfc_symbol *);
571d54de 2854
f2cbd86c
DF
2855/* intrinsic.c -- true if working in an init-expr, false otherwise. */
2856extern bool gfc_init_expr_flag;
6de9cd9a
DN
2857
2858/* Given a symbol that we have decided is intrinsic, mark it as such
2859 by placing it into a special module that is otherwise impossible to
2860 read or write. */
2861
cb9e4f55 2862#define gfc_intrinsic_symbol(SYM) SYM->module = gfc_get_string ("(intrinsic)")
6de9cd9a
DN
2863
2864void gfc_intrinsic_init_1 (void);
2865void gfc_intrinsic_done_1 (void);
2866
2867char gfc_type_letter (bt);
2868gfc_symbol * gfc_get_intrinsic_sub_symbol (const char *);
524af0d6
JB
2869bool gfc_convert_type (gfc_expr *, gfc_typespec *, int);
2870bool gfc_convert_type_warn (gfc_expr *, gfc_typespec *, int, int);
2871bool gfc_convert_chartype (gfc_expr *, gfc_typespec *);
6de9cd9a
DN
2872int gfc_generic_intrinsic (const char *);
2873int gfc_specific_intrinsic (const char *);
c3005b0f 2874bool gfc_is_intrinsic (gfc_symbol*, int, locus);
0e7e7e6e 2875int gfc_intrinsic_actual_ok (const char *, const bool);
6de9cd9a 2876gfc_intrinsic_sym *gfc_find_function (const char *);
cd5ecab6 2877gfc_intrinsic_sym *gfc_find_subroutine (const char *);
d000aa67 2878gfc_intrinsic_sym *gfc_intrinsic_function_by_id (gfc_isym_id);
cadddfdd
TB
2879gfc_intrinsic_sym *gfc_intrinsic_subroutine_by_id (gfc_isym_id);
2880gfc_isym_id gfc_isym_id_by_intmod (intmod_id, int);
2881gfc_isym_id gfc_isym_id_by_intmod_sym (gfc_symbol *);
2882
6de9cd9a
DN
2883
2884match gfc_intrinsic_func_interface (gfc_expr *, int);
2885match gfc_intrinsic_sub_interface (gfc_code *, int);
2886
c3005b0f 2887void gfc_warn_intrinsic_shadow (const gfc_symbol*, bool, bool);
524af0d6 2888bool gfc_check_intrinsic_standard (const gfc_intrinsic_sym*, const char**,
17b1d2a0 2889 bool, locus);
c3005b0f 2890
6de9cd9a
DN
2891/* match.c -- FIXME */
2892void gfc_free_iterator (gfc_iterator *, int);
2893void gfc_free_forall_iterator (gfc_forall_iterator *);
2894void gfc_free_alloc_list (gfc_alloc *);
2895void gfc_free_namelist (gfc_namelist *);
dd2fc525 2896void gfc_free_omp_namelist (gfc_omp_namelist *);
6de9cd9a 2897void gfc_free_equiv (gfc_equiv *);
31fee91e 2898void gfc_free_equiv_until (gfc_equiv *, gfc_equiv *);
6de9cd9a 2899void gfc_free_data (gfc_data *);
d5e2274d 2900void gfc_reject_data (gfc_namespace *);
6de9cd9a
DN
2901void gfc_free_case_list (gfc_case *);
2902
b6398823
PT
2903/* matchexp.c -- FIXME too? */
2904gfc_expr *gfc_get_parentheses (gfc_expr *);
2905
6c7a4dfd 2906/* openmp.c */
c7d3bb76 2907struct gfc_omp_saved_state { void *ptrs[2]; int ints[1]; };
6c7a4dfd 2908void gfc_free_omp_clauses (gfc_omp_clauses *);
dd2fc525
JJ
2909void gfc_free_omp_declare_simd (gfc_omp_declare_simd *);
2910void gfc_free_omp_declare_simd_list (gfc_omp_declare_simd *);
5f23671d
JJ
2911void gfc_free_omp_udr (gfc_omp_udr *);
2912gfc_omp_udr *gfc_omp_udr_find (gfc_symtree *, gfc_typespec *);
6c7a4dfd
JJ
2913void gfc_resolve_omp_directive (gfc_code *, gfc_namespace *);
2914void gfc_resolve_do_iterator (gfc_code *, gfc_symbol *);
2915void gfc_resolve_omp_parallel_blocks (gfc_code *, gfc_namespace *);
2916void gfc_resolve_omp_do_blocks (gfc_code *, gfc_namespace *);
dd2fc525 2917void gfc_resolve_omp_declare_simd (gfc_namespace *);
5f23671d 2918void gfc_resolve_omp_udrs (gfc_symtree *);
c7d3bb76
JJ
2919void gfc_omp_save_and_clear_state (struct gfc_omp_saved_state *);
2920void gfc_omp_restore_state (struct gfc_omp_saved_state *);
41dbbb37
TS
2921void gfc_free_expr_list (gfc_expr_list *);
2922void gfc_resolve_oacc_directive (gfc_code *, gfc_namespace *);
2923void gfc_resolve_oacc_declare (gfc_namespace *);
2924void gfc_resolve_oacc_parallel_loop_blocks (gfc_code *, gfc_namespace *);
2925void gfc_resolve_oacc_blocks (gfc_code *, gfc_namespace *);
6c7a4dfd 2926
6de9cd9a
DN
2927/* expr.c */
2928void gfc_free_actual_arglist (gfc_actual_arglist *);
2929gfc_actual_arglist *gfc_copy_actual_arglist (gfc_actual_arglist *);
2930const char *gfc_extract_int (gfc_expr *, int *);
1d6b7f39 2931bool is_subref_array (gfc_expr *);
fe4e525c 2932bool gfc_is_simply_contiguous (gfc_expr *, bool);
524af0d6 2933bool gfc_check_init_expr (gfc_expr *);
6de9cd9a
DN
2934
2935gfc_expr *gfc_build_conversion (gfc_expr *);
2936void gfc_free_ref_list (gfc_ref *);
dcea1b2f 2937void gfc_type_convert_binary (gfc_expr *, int);
6de9cd9a 2938int gfc_is_constant_expr (gfc_expr *);
524af0d6 2939bool gfc_simplify_expr (gfc_expr *, int);
4075a94e 2940int gfc_has_vector_index (gfc_expr *);
6de9cd9a
DN
2941
2942gfc_expr *gfc_get_expr (void);
b7e75771
JD
2943gfc_expr *gfc_get_array_expr (bt type, int kind, locus *);
2944gfc_expr *gfc_get_null_expr (locus *);
2945gfc_expr *gfc_get_operator_expr (locus *, gfc_intrinsic_op,gfc_expr *, gfc_expr *);
2946gfc_expr *gfc_get_structure_constructor_expr (bt, int, locus *);
2947gfc_expr *gfc_get_constant_expr (bt, int, locus *);
2948gfc_expr *gfc_get_character_expr (int, locus *, const char *, int len);
2949gfc_expr *gfc_get_int_expr (int, locus *, int);
2950gfc_expr *gfc_get_logical_expr (int, locus *, bool);
2951gfc_expr *gfc_get_iokind_expr (locus *, io_kind);
2952
7d7212ec
MM
2953void gfc_clear_shape (mpz_t *shape, int rank);
2954void gfc_free_shape (mpz_t **shape, int rank);
6de9cd9a
DN
2955void gfc_free_expr (gfc_expr *);
2956void gfc_replace_expr (gfc_expr *, gfc_expr *);
6de9cd9a 2957mpz_t *gfc_copy_shape (mpz_t *, int);
94538bd1 2958mpz_t *gfc_copy_shape_excluding (mpz_t *, int, gfc_expr *);
6de9cd9a 2959gfc_expr *gfc_copy_expr (gfc_expr *);
8e1f752a 2960gfc_ref* gfc_copy_ref (gfc_ref*);
6de9cd9a 2961
524af0d6 2962bool gfc_specification_expr (gfc_expr *);
6de9cd9a
DN
2963
2964int gfc_numeric_ts (gfc_typespec *);
2965int gfc_kind_max (gfc_expr *, gfc_expr *);
2966
524af0d6
JB
2967bool gfc_check_conformance (gfc_expr *, gfc_expr *, const char *, ...) ATTRIBUTE_PRINTF_3;
2968bool gfc_check_assign (gfc_expr *, gfc_expr *, int);
2969bool gfc_check_pointer_assign (gfc_expr *, gfc_expr *);
2970bool gfc_check_assign_symbol (gfc_symbol *, gfc_component *, gfc_expr *);
6de9cd9a 2971
16e520b6 2972bool gfc_has_default_initializer (gfc_symbol *);
54b4ba60 2973gfc_expr *gfc_default_initializer (gfc_typespec *);
294fbfc8 2974gfc_expr *gfc_get_variable_expr (gfc_symtree *);
4d382327 2975void gfc_add_full_array_ref (gfc_expr *, gfc_array_spec *);
0d87fa8c 2976gfc_expr * gfc_lval_expr_from_sym (gfc_symbol *);
294fbfc8 2977
b7d1d8b4
PT
2978gfc_array_spec *gfc_get_full_arrayspec_from_expr (gfc_expr *expr);
2979
640670c7
PT
2980bool gfc_traverse_expr (gfc_expr *, gfc_symbol *,
2981 bool (*)(gfc_expr *, gfc_symbol *, int*),
2982 int);
66e4ab31 2983void gfc_expr_set_symbols_referenced (gfc_expr *);
524af0d6 2984bool gfc_expr_check_typed (gfc_expr*, gfc_namespace*, bool);
f37e928c 2985
2a573572
MM
2986gfc_component * gfc_get_proc_ptr_comp (gfc_expr *);
2987bool gfc_is_proc_ptr_comp (gfc_expr *);
43a68a9d
PT
2988bool gfc_is_alloc_class_scalar_function (gfc_expr *);
2989bool gfc_is_alloc_class_array_function (gfc_expr *);
713485cc 2990
badd9e69 2991bool gfc_ref_this_image (gfc_ref *ref);
d3a9eea2 2992bool gfc_is_coindexed (gfc_expr *);
394d3a2e 2993bool gfc_is_coarray (gfc_expr *);
4dc694b2 2994int gfc_get_corank (gfc_expr *);
d3a9eea2
TB
2995bool gfc_has_ultimate_allocatable (gfc_expr *);
2996bool gfc_has_ultimate_pointer (gfc_expr *);
2997
6838c137
TB
2998gfc_expr* gfc_build_intrinsic_call (gfc_namespace *, gfc_isym_id, const char*,
2999 locus, unsigned, ...);
524af0d6 3000bool gfc_check_vardef_context (gfc_expr*, bool, bool, bool, const char*);
69dcd06a 3001
d3a9eea2 3002
6de9cd9a
DN
3003/* st.c */
3004extern gfc_code new_st;
3005
3006void gfc_clear_new_st (void);
11e5274a 3007gfc_code *gfc_get_code (gfc_exec_op);
6de9cd9a
DN
3008gfc_code *gfc_append_code (gfc_code *, gfc_code *);
3009void gfc_free_statement (gfc_code *);
3010void gfc_free_statements (gfc_code *);
03af1e4c 3011void gfc_free_association_list (gfc_association_list *);
6de9cd9a
DN
3012
3013/* resolve.c */
524af0d6 3014bool gfc_resolve_expr (gfc_expr *);
6de9cd9a 3015void gfc_resolve (gfc_namespace *);
b46ebd6c 3016void gfc_resolve_code (gfc_code *, gfc_namespace *);
6c7a4dfd 3017void gfc_resolve_blocks (gfc_code *, gfc_namespace *);
6de9cd9a
DN
3018int gfc_impure_variable (gfc_symbol *);
3019int gfc_pure (gfc_symbol *);
f1f39033 3020int gfc_implicit_pure (gfc_symbol *);
ccd7751b 3021void gfc_unset_implicit_pure (gfc_symbol *);
6de9cd9a 3022int gfc_elemental (gfc_symbol *);
524af0d6
JB
3023bool gfc_resolve_iterator (gfc_iterator *, bool, bool);
3024bool find_forall_index (gfc_expr *, gfc_symbol *, int);
3025bool gfc_resolve_index (gfc_expr *, int);
3026bool gfc_resolve_dim_arg (gfc_expr *);
4213f93b 3027int gfc_is_formal_arg (void);
07368af0 3028void gfc_resolve_substring_charlen (gfc_expr *);
a8b3b0b6 3029match gfc_iso_c_sub_interface(gfc_code *, gfc_symbol *);
cf2b3c22 3030gfc_expr *gfc_expr_to_initialize (gfc_expr *);
2dda89a8 3031bool gfc_type_is_extensible (gfc_symbol *);
524af0d6 3032bool gfc_resolve_intrinsic (gfc_symbol *, locus *);
96486998 3033bool gfc_explicit_interface_required (gfc_symbol *, char *, int);
ce96d372 3034extern int gfc_do_concurrent_flag;
a8b3b0b6 3035
6de9cd9a
DN
3036
3037/* array.c */
b7e75771
JD
3038gfc_iterator *gfc_copy_iterator (gfc_iterator *);
3039
6de9cd9a
DN
3040void gfc_free_array_spec (gfc_array_spec *);
3041gfc_array_ref *gfc_copy_array_ref (gfc_array_ref *);
3042
524af0d6 3043bool gfc_set_array_spec (gfc_symbol *, gfc_array_spec *, locus *);
6de9cd9a 3044gfc_array_spec *gfc_copy_array_spec (gfc_array_spec *);
524af0d6 3045bool gfc_resolve_array_spec (gfc_array_spec *, int);
6de9cd9a
DN
3046
3047int gfc_compare_array_spec (gfc_array_spec *, gfc_array_spec *);
3048
6de9cd9a 3049void gfc_simplify_iterator_var (gfc_expr *);
524af0d6 3050bool gfc_expand_constructor (gfc_expr *, bool);
6de9cd9a
DN
3051int gfc_constant_ac (gfc_expr *);
3052int gfc_expanded_ac (gfc_expr *);
524af0d6
JB
3053bool gfc_resolve_character_array_constructor (gfc_expr *);
3054bool gfc_resolve_array_constructor (gfc_expr *);
3055bool gfc_check_constructor_type (gfc_expr *);
3056bool gfc_check_iter_variable (gfc_expr *);
3057bool gfc_check_constructor (gfc_expr *, bool (*)(gfc_expr *));
3058bool gfc_array_size (gfc_expr *, mpz_t *);
3059bool gfc_array_dimen_size (gfc_expr *, int, mpz_t *);
3060bool gfc_array_ref_shape (gfc_array_ref *, mpz_t *);
6de9cd9a 3061gfc_array_ref *gfc_find_array_ref (gfc_expr *);
66e4ab31 3062tree gfc_conv_array_initializer (tree type, gfc_expr *);
524af0d6
JB
3063bool spec_size (gfc_array_spec *, mpz_t *);
3064bool spec_dimen_size (gfc_array_spec *, int, mpz_t *);
4077d207 3065int gfc_is_compile_time_shape (gfc_array_spec *);
6de9cd9a 3066
524af0d6 3067bool gfc_ref_dimen_size (gfc_array_ref *, int dimen, mpz_t *, mpz_t *);
543af7ab
TK
3068
3069
6de9cd9a
DN
3070/* interface.c -- FIXME: some of these should be in symbol.c */
3071void gfc_free_interface (gfc_interface *);
e0e85e06 3072int gfc_compare_derived_types (gfc_symbol *, gfc_symbol *);
6de9cd9a 3073int gfc_compare_types (gfc_typespec *, gfc_typespec *);
4668d6f9
PT
3074bool gfc_check_dummy_characteristics (gfc_symbol *, gfc_symbol *,
3075 bool, char *, int);
3076bool gfc_check_result_characteristics (gfc_symbol *, gfc_symbol *,
3077 char *, int);
889dc035 3078int gfc_compare_interfaces (gfc_symbol*, gfc_symbol*, const char *, int, int,
6f3ab30d 3079 char *, int, const char *, const char *);
6de9cd9a 3080void gfc_check_interfaces (gfc_namespace *);
524af0d6 3081bool gfc_procedure_use (gfc_symbol *, gfc_actual_arglist **, locus *);
7e196f89 3082void gfc_ppc_use (gfc_component *, gfc_actual_arglist **, locus *);
6de9cd9a
DN
3083gfc_symbol *gfc_search_interface (gfc_interface *, int,
3084 gfc_actual_arglist **);
eaee02a5 3085match gfc_extend_expr (gfc_expr *);
6de9cd9a 3086void gfc_free_formal_arglist (gfc_formal_arglist *);
524af0d6
JB
3087bool gfc_extend_assign (gfc_code *, gfc_namespace *);
3088bool gfc_check_new_interface (gfc_interface *, gfc_symbol *, locus);
3089bool gfc_add_interface (gfc_symbol *);
2b77e908
FXC
3090gfc_interface *gfc_current_interface_head (void);
3091void gfc_set_current_interface_head (gfc_interface *);
f6fad28e 3092gfc_symtree* gfc_find_sym_in_symtree (gfc_symbol*);
f0ac18b7 3093bool gfc_arglist_matches_symbol (gfc_actual_arglist**, gfc_symbol*);
94747289 3094bool gfc_check_operator_interface (gfc_symbol*, gfc_intrinsic_op, locus);
03af1e4c 3095int gfc_has_vector_subscript (gfc_expr*);
fb03a37e 3096gfc_intrinsic_op gfc_equivalent_op (gfc_intrinsic_op);
524af0d6 3097bool gfc_check_typebound_override (gfc_symtree*, gfc_symtree*);
6de9cd9a
DN
3098
3099/* io.c */
3100extern gfc_st_label format_asterisk;
3101
3102void gfc_free_open (gfc_open *);
524af0d6 3103bool gfc_resolve_open (gfc_open *);
6de9cd9a 3104void gfc_free_close (gfc_close *);
524af0d6 3105bool gfc_resolve_close (gfc_close *);
6de9cd9a 3106void gfc_free_filepos (gfc_filepos *);
524af0d6 3107bool gfc_resolve_filepos (gfc_filepos *);
6de9cd9a 3108void gfc_free_inquire (gfc_inquire *);
524af0d6 3109bool gfc_resolve_inquire (gfc_inquire *);
6de9cd9a 3110void gfc_free_dt (gfc_dt *);
524af0d6 3111bool gfc_resolve_dt (gfc_dt *, locus *);
6f0f0b2e 3112void gfc_free_wait (gfc_wait *);
524af0d6 3113bool gfc_resolve_wait (gfc_wait *);
6de9cd9a
DN
3114
3115/* module.c */
3116void gfc_module_init_2 (void);
3117void gfc_module_done_2 (void);
3118void gfc_dump_module (const char *, int);
6e2062b0 3119bool gfc_check_symbol_access (gfc_symbol *);
a64f5186 3120void gfc_free_use_stmts (gfc_use_list *);
6de9cd9a
DN
3121
3122/* primary.c */
3123symbol_attribute gfc_variable_attr (gfc_expr *, gfc_typespec *);
3124symbol_attribute gfc_expr_attr (gfc_expr *);
eb77cddf 3125match gfc_match_rvalue (gfc_expr **);
713485cc 3126match gfc_match_varspec (gfc_expr*, int, bool, bool);
8fc541d3 3127int gfc_check_digit (char, int);
2d71b918 3128bool gfc_is_function_return_value (gfc_symbol *, gfc_namespace *);
524af0d6 3129bool gfc_convert_to_structure_constructor (gfc_expr *, gfc_symbol *,
c3f34952
TB
3130 gfc_expr **,
3131 gfc_actual_arglist **, bool);
6de9cd9a
DN
3132
3133/* trans.c */
3134void gfc_generate_code (gfc_namespace *);
3135void gfc_generate_module_code (gfc_namespace *);
3136
9645e798
MM
3137/* trans-intrinsic.c */
3138bool gfc_inline_intrinsic_function_p (gfc_expr *);
3139
6de9cd9a
DN
3140/* bbt.c */
3141typedef int (*compare_fn) (void *, void *);
3142void gfc_insert_bbt (void *, void *, compare_fn);
3143void gfc_delete_bbt (void *, void *, compare_fn);
3144
3145/* dump-parse-tree.c */
6c1abb5c 3146void gfc_dump_parse_tree (gfc_namespace *, FILE *);
6de9cd9a
DN
3147
3148/* parse.c */
524af0d6 3149bool gfc_parse_file (void);
ca39e6f2 3150void gfc_global_used (gfc_gsymbol *, locus *);
3e78238a 3151gfc_namespace* gfc_build_block_ns (gfc_namespace *);
6de9cd9a 3152
2990f854 3153/* dependency.c */
2757d5ec 3154int gfc_dep_compare_functions (gfc_expr *, gfc_expr *, bool);
2990f854 3155int gfc_dep_compare_expr (gfc_expr *, gfc_expr *);
eab19a1a 3156bool gfc_dep_difference (gfc_expr *, gfc_expr *, mpz_t *);
2990f854 3157
fb5bc08b 3158/* check.c */
524af0d6
JB
3159bool gfc_check_same_strlen (const gfc_expr*, const gfc_expr*, const char*);
3160bool gfc_calculate_transfer_sizes (gfc_expr*, gfc_expr*, gfc_expr*,
86dbed7d 3161 size_t*, size_t*, size_t*);
fb5bc08b 3162
d15bac21 3163/* class.c */
37da591f 3164void gfc_fix_class_refs (gfc_expr *e);
d15bac21 3165void gfc_add_component_ref (gfc_expr *, const char *);
c49ea23d 3166void gfc_add_class_array_ref (gfc_expr *);
b04533af
JW
3167#define gfc_add_data_component(e) gfc_add_component_ref(e,"_data")
3168#define gfc_add_vptr_component(e) gfc_add_component_ref(e,"_vptr")
34d9d749 3169#define gfc_add_len_component(e) gfc_add_component_ref(e,"_len")
b04533af
JW
3170#define gfc_add_hash_component(e) gfc_add_component_ref(e,"_hash")
3171#define gfc_add_size_component(e) gfc_add_component_ref(e,"_size")
3172#define gfc_add_def_init_component(e) gfc_add_component_ref(e,"_def_init")
86035eec 3173#define gfc_add_final_component(e) gfc_add_component_ref(e,"_final")
c49ea23d
PT
3174bool gfc_is_class_array_ref (gfc_expr *, bool *);
3175bool gfc_is_class_scalar_expr (gfc_expr *);
5bf5fa56 3176bool gfc_is_class_container_ref (gfc_expr *e);
2cc6320d 3177gfc_expr *gfc_class_initializer (gfc_typespec *, gfc_expr *);
4fa02692 3178unsigned int gfc_hash_value (gfc_symbol *);
5b384b3d 3179gfc_expr *gfc_get_len_component (gfc_expr *e);
524af0d6 3180bool gfc_build_class_symbol (gfc_typespec *, symbol_attribute *,
9b6da3c7 3181 gfc_array_spec **);
88ce8031 3182gfc_symbol *gfc_find_derived_vtab (gfc_symbol *);
7289d1c9 3183gfc_symbol *gfc_find_vtab (gfc_typespec *);
524af0d6 3184gfc_symtree* gfc_find_typebound_proc (gfc_symbol*, bool*,
d15bac21 3185 const char*, bool, locus*);
524af0d6 3186gfc_symtree* gfc_find_typebound_user_op (gfc_symbol*, bool*,
d15bac21 3187 const char*, bool, locus*);
524af0d6 3188gfc_typebound_proc* gfc_find_typebound_intrinsic_op (gfc_symbol*, bool*,
d15bac21
JW
3189 gfc_intrinsic_op, bool,
3190 locus*);
3191gfc_symtree* gfc_get_tbp_symtree (gfc_symtree**, const char*);
86035eec 3192bool gfc_is_finalizable (gfc_symbol *, gfc_expr **);
d15bac21 3193
7a08eda1 3194#define CLASS_DATA(sym) sym->ts.u.derived->components
8b704316
PT
3195#define UNLIMITED_POLY(sym) \
3196 (sym != NULL && sym->ts.type == BT_CLASS \
3197 && CLASS_DATA (sym) \
3198 && CLASS_DATA (sym)->ts.u.derived \
3199 && CLASS_DATA (sym)->ts.u.derived->attr.unlimited_polymorphic)
f3b0bb7a
AV
3200#define IS_CLASS_ARRAY(sym) \
3201 (sym->ts.type == BT_CLASS \
3202 && CLASS_DATA (sym) \
3203 && CLASS_DATA (sym)->attr.dimension \
3204 && !CLASS_DATA (sym)->attr.class_pointer)
7a08eda1 3205
601d98be
TK
3206/* frontend-passes.c */
3207
3208void gfc_run_passes (gfc_namespace *);
3209
4d42b5cd
JJ
3210typedef int (*walk_code_fn_t) (gfc_code **, int *, void *);
3211typedef int (*walk_expr_fn_t) (gfc_expr **, int *, void *);
3212
5f23671d 3213int gfc_dummy_code_callback (gfc_code **, int *, void *);
4d42b5cd
JJ
3214int gfc_expr_walker (gfc_expr **, walk_expr_fn_t, void *);
3215int gfc_code_walker (gfc_code **, walk_code_fn_t, walk_expr_fn_t, void *);
3216
d01b2c21
TK
3217/* simplify.c */
3218
3219void gfc_convert_mpz_to_signed (mpz_t, int);
0e360db9 3220gfc_expr *gfc_simplify_ieee_functions (gfc_expr *);
d01b2c21 3221
f1abbf69
TK
3222/* trans-array.c */
3223
3224bool gfc_is_reallocatable_lhs (gfc_expr *);
3225
53814b8f 3226#endif /* GCC_GFORTRAN_H */