1 /* gfortran header file
2    Copyright (C) 2000-2018 Free Software Foundation, Inc.
3    Contributed by Andy Vaught
4 
5 This file is part of GCC.
6 
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
11 
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
15 for more details.
16 
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3.  If not see
19 <http://www.gnu.org/licenses/>.  */
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 
30 #ifndef GCC_CORETYPES_H
31 #error "gfortran.h must be included after coretypes.h"
32 #endif
33 
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 \
42 In order for the format checking to accept the Fortran front end diagnostic \
43 framework extensions, you must include this file before diagnostic-core.h, \
44 not after.
45 #endif
46 
47 /* Declarations common to the front-end and library are put in
48    libgfortran/libgfortran_frontend.h  */
49 #include "libgfortran.h"
50 
51 
52 #include "intl.h"
53 #include "splay-tree.h"
54 
55 /* Major control parameters.  */
56 
57 #define GFC_MAX_SYMBOL_LEN 63   /* Must be at least 63 for F2003.  */
58 #define GFC_LETTERS 26		/* Number of letters in the alphabet.  */
59 
60 #define MAX_SUBRECORD_LENGTH 2147483639   /* 2**31-9 */
61 
62 
63 #define gfc_is_whitespace(c) ((c==' ') || (c=='\t') || (c=='\f'))
64 
65 /* Macros to check for groups of structure-like types and flavors since
66    derived types, structures, maps, unions are often treated similarly. */
67 #define gfc_bt_struct(t) \
68   ((t) == BT_DERIVED || (t) == BT_UNION)
69 #define gfc_fl_struct(f) \
70   ((f) == FL_DERIVED || (f) == FL_UNION || (f) == FL_STRUCT)
71 #define case_bt_struct case BT_DERIVED: case BT_UNION
72 #define case_fl_struct case FL_DERIVED: case FL_UNION: case FL_STRUCT
73 
74 /* Stringization.  */
75 #define stringize(x) expand_macro(x)
76 #define expand_macro(x) # x
77 
78 /* For the runtime library, a standard prefix is a requirement to
79    avoid cluttering the namespace with things nobody asked for.  It's
80    ugly to look at and a pain to type when you add the prefix by hand,
81    so we hide it behind a macro.  */
82 #define PREFIX(x) "_gfortran_" x
83 #define PREFIX_LEN 10
84 
85 /* A prefix for internal variables, which are not user-visible.  */
86 #if !defined (NO_DOT_IN_LABEL)
87 # define GFC_PREFIX(x) "_F." x
88 #elif !defined (NO_DOLLAR_IN_LABEL)
89 # define GFC_PREFIX(x) "_F$" x
90 #else
91 # define GFC_PREFIX(x) "_F_" x
92 #endif
93 
94 #define BLANK_COMMON_NAME "__BLNK__"
95 
96 /* Macro to initialize an mstring structure.  */
97 #define minit(s, t) { s, NULL, t }
98 
99 /* Structure for storing strings to be matched by gfc_match_string.  */
100 typedef struct
101 {
102   const char *string;
103   const char *mp;
104   int tag;
105 }
106 mstring;
107 
108 
109 
110 /*************************** Enums *****************************/
111 
112 /* Used when matching and resolving data I/O transfer statements.  */
113 
114 enum io_kind
115 { M_READ, M_WRITE, M_PRINT, M_INQUIRE };
116 
117 
118 /* These are flags for identifying whether we are reading a character literal
119    between quotes or normal source code.  */
120 
121 enum gfc_instring
122 { NONSTRING = 0, INSTRING_WARN, INSTRING_NOWARN };
123 
124 /* This is returned by gfc_notification_std to know if, given the flags
125    that were given (-std=, -pedantic) we should issue an error, a warning
126    or nothing.  */
127 
128 enum notification
129 { SILENT, WARNING, ERROR };
130 
131 /* Matchers return one of these three values.  The difference between
132    MATCH_NO and MATCH_ERROR is that MATCH_ERROR means that a match was
133    successful, but that something non-syntactic is wrong and an error
134    has already been issued.  */
135 
136 enum match
137 { MATCH_NO = 1, MATCH_YES, MATCH_ERROR };
138 
139 /* Used for different Fortran source forms in places like scanner.c.  */
140 enum gfc_source_form
141 { FORM_FREE, FORM_FIXED, FORM_UNKNOWN };
142 
143 /* Expression node types.  */
144 enum expr_t
145 { EXPR_OP = 1, EXPR_FUNCTION, EXPR_CONSTANT, EXPR_VARIABLE,
146   EXPR_SUBSTRING, EXPR_STRUCTURE, EXPR_ARRAY, EXPR_NULL, EXPR_COMPCALL, EXPR_PPC
147 };
148 
149 /* Array types.  */
150 enum array_type
151 { AS_EXPLICIT = 1, AS_ASSUMED_SHAPE, AS_DEFERRED,
152   AS_ASSUMED_SIZE, AS_IMPLIED_SHAPE, AS_ASSUMED_RANK,
153   AS_UNKNOWN
154 };
155 
156 enum ar_type
157 { AR_FULL = 1, AR_ELEMENT, AR_SECTION, AR_UNKNOWN };
158 
159 /* Statement label types. ST_LABEL_DO_TARGET is used for obsolescent warnings
160    related to shared DO terminations and DO targets which are neither END DO
161    nor CONTINUE; otherwise it is identical to ST_LABEL_TARGET.  */
162 enum gfc_sl_type
163 { ST_LABEL_UNKNOWN = 1, ST_LABEL_TARGET, ST_LABEL_DO_TARGET,
164   ST_LABEL_BAD_TARGET, ST_LABEL_FORMAT
165 };
166 
167 /* Intrinsic operators.  */
168 enum gfc_intrinsic_op
169 { GFC_INTRINSIC_BEGIN = 0,
170   INTRINSIC_NONE = -1, INTRINSIC_UPLUS = GFC_INTRINSIC_BEGIN,
171   INTRINSIC_UMINUS, INTRINSIC_PLUS, INTRINSIC_MINUS, INTRINSIC_TIMES,
172   INTRINSIC_DIVIDE, INTRINSIC_POWER, INTRINSIC_CONCAT,
173   INTRINSIC_AND, INTRINSIC_OR, INTRINSIC_EQV, INTRINSIC_NEQV,
174   /* ==, /=, >, >=, <, <=  */
175   INTRINSIC_EQ, INTRINSIC_NE, INTRINSIC_GT, INTRINSIC_GE,
176   INTRINSIC_LT, INTRINSIC_LE,
177   /* .EQ., .NE., .GT., .GE., .LT., .LE. (OS = Old-Style)  */
178   INTRINSIC_EQ_OS, INTRINSIC_NE_OS, INTRINSIC_GT_OS, INTRINSIC_GE_OS,
179   INTRINSIC_LT_OS, INTRINSIC_LE_OS,
180   INTRINSIC_NOT, INTRINSIC_USER, INTRINSIC_ASSIGN, INTRINSIC_PARENTHESES,
181   GFC_INTRINSIC_END, /* Sentinel */
182   /* User defined derived type pseudo operators. These are set beyond the
183      sentinel so that they are excluded from module_read and module_write.  */
184   INTRINSIC_FORMATTED, INTRINSIC_UNFORMATTED
185 };
186 
187 /* This macro is the number of intrinsic operators that exist.
188    Assumptions are made about the numbering of the interface_op enums.  */
189 #define GFC_INTRINSIC_OPS GFC_INTRINSIC_END
190 
191 /* Arithmetic results.  */
192 enum arith
193 { ARITH_OK = 1, ARITH_OVERFLOW, ARITH_UNDERFLOW, ARITH_NAN,
194   ARITH_DIV0, ARITH_INCOMMENSURATE, ARITH_ASYMMETRIC, ARITH_PROHIBIT,
195   ARITH_WRONGCONCAT
196 };
197 
198 /* Statements.  */
199 enum gfc_statement
200 {
201   ST_ARITHMETIC_IF, ST_ALLOCATE, ST_ATTR_DECL, ST_ASSOCIATE,
202   ST_BACKSPACE, ST_BLOCK, ST_BLOCK_DATA,
203   ST_CALL, ST_CASE, ST_CLOSE, ST_COMMON, ST_CONTINUE, ST_CONTAINS, ST_CYCLE,
204   ST_DATA, ST_DATA_DECL, ST_DEALLOCATE, ST_DO, ST_ELSE, ST_ELSEIF,
205   ST_ELSEWHERE, ST_END_ASSOCIATE, ST_END_BLOCK, ST_END_BLOCK_DATA,
206   ST_ENDDO, ST_IMPLIED_ENDDO, ST_END_FILE, ST_FINAL, ST_FLUSH, ST_END_FORALL,
207   ST_END_FUNCTION, ST_ENDIF, ST_END_INTERFACE, ST_END_MODULE, ST_END_SUBMODULE,
208   ST_END_PROGRAM, ST_END_SELECT, ST_END_SUBROUTINE, ST_END_WHERE, ST_END_TYPE,
209   ST_ENTRY, ST_EQUIVALENCE, ST_ERROR_STOP, ST_EXIT, ST_FORALL, ST_FORALL_BLOCK,
210   ST_FORMAT, ST_FUNCTION, ST_GOTO, ST_IF_BLOCK, ST_IMPLICIT, ST_IMPLICIT_NONE,
211   ST_IMPORT, ST_INQUIRE, ST_INTERFACE, ST_SYNC_ALL, ST_SYNC_MEMORY,
212   ST_SYNC_IMAGES, ST_PARAMETER, ST_MODULE, ST_SUBMODULE, ST_MODULE_PROC,
213   ST_NAMELIST, ST_NULLIFY, ST_OPEN, ST_PAUSE, ST_PRIVATE, ST_PROGRAM, ST_PUBLIC,
214   ST_READ, ST_RETURN, ST_REWIND, ST_STOP, ST_SUBROUTINE, ST_TYPE, ST_USE,
215   ST_WHERE_BLOCK, ST_WHERE, ST_WAIT, ST_WRITE, ST_ASSIGNMENT,
216   ST_POINTER_ASSIGNMENT, ST_SELECT_CASE, ST_SEQUENCE, ST_SIMPLE_IF,
217   ST_STATEMENT_FUNCTION, ST_DERIVED_DECL, ST_LABEL_ASSIGNMENT, ST_ENUM,
218   ST_ENUMERATOR, ST_END_ENUM, ST_SELECT_TYPE, ST_TYPE_IS, ST_CLASS_IS,
219   ST_STRUCTURE_DECL, ST_END_STRUCTURE,
220   ST_UNION, ST_END_UNION, ST_MAP, ST_END_MAP,
221   ST_OACC_PARALLEL_LOOP, ST_OACC_END_PARALLEL_LOOP, ST_OACC_PARALLEL,
222   ST_OACC_END_PARALLEL, ST_OACC_KERNELS, ST_OACC_END_KERNELS, ST_OACC_DATA,
223   ST_OACC_END_DATA, ST_OACC_HOST_DATA, ST_OACC_END_HOST_DATA, ST_OACC_LOOP,
224   ST_OACC_END_LOOP, ST_OACC_DECLARE, ST_OACC_UPDATE, ST_OACC_WAIT,
225   ST_OACC_CACHE, ST_OACC_KERNELS_LOOP, ST_OACC_END_KERNELS_LOOP,
226   ST_OACC_ENTER_DATA, ST_OACC_EXIT_DATA, ST_OACC_ROUTINE,
227   ST_OACC_ATOMIC, ST_OACC_END_ATOMIC,
228   ST_OMP_ATOMIC, ST_OMP_BARRIER, ST_OMP_CRITICAL, ST_OMP_END_ATOMIC,
229   ST_OMP_END_CRITICAL, ST_OMP_END_DO, ST_OMP_END_MASTER, ST_OMP_END_ORDERED,
230   ST_OMP_END_PARALLEL, ST_OMP_END_PARALLEL_DO, ST_OMP_END_PARALLEL_SECTIONS,
231   ST_OMP_END_PARALLEL_WORKSHARE, ST_OMP_END_SECTIONS, ST_OMP_END_SINGLE,
232   ST_OMP_END_WORKSHARE, ST_OMP_DO, ST_OMP_FLUSH, ST_OMP_MASTER, ST_OMP_ORDERED,
233   ST_OMP_PARALLEL, ST_OMP_PARALLEL_DO, ST_OMP_PARALLEL_SECTIONS,
234   ST_OMP_PARALLEL_WORKSHARE, ST_OMP_SECTIONS, ST_OMP_SECTION, ST_OMP_SINGLE,
235   ST_OMP_THREADPRIVATE, ST_OMP_WORKSHARE, ST_OMP_TASK, ST_OMP_END_TASK,
236   ST_OMP_TASKWAIT, ST_OMP_TASKYIELD, ST_OMP_CANCEL, ST_OMP_CANCELLATION_POINT,
237   ST_OMP_TASKGROUP, ST_OMP_END_TASKGROUP, ST_OMP_SIMD, ST_OMP_END_SIMD,
238   ST_OMP_DO_SIMD, ST_OMP_END_DO_SIMD, ST_OMP_PARALLEL_DO_SIMD,
239   ST_OMP_END_PARALLEL_DO_SIMD, ST_OMP_DECLARE_SIMD, ST_OMP_DECLARE_REDUCTION,
240   ST_OMP_TARGET, ST_OMP_END_TARGET, ST_OMP_TARGET_DATA, ST_OMP_END_TARGET_DATA,
241   ST_OMP_TARGET_UPDATE, ST_OMP_DECLARE_TARGET,
242   ST_OMP_TEAMS, ST_OMP_END_TEAMS, ST_OMP_DISTRIBUTE, ST_OMP_END_DISTRIBUTE,
243   ST_OMP_DISTRIBUTE_SIMD, ST_OMP_END_DISTRIBUTE_SIMD,
244   ST_OMP_DISTRIBUTE_PARALLEL_DO, ST_OMP_END_DISTRIBUTE_PARALLEL_DO,
245   ST_OMP_DISTRIBUTE_PARALLEL_DO_SIMD, ST_OMP_END_DISTRIBUTE_PARALLEL_DO_SIMD,
246   ST_OMP_TARGET_TEAMS, ST_OMP_END_TARGET_TEAMS, ST_OMP_TEAMS_DISTRIBUTE,
247   ST_OMP_END_TEAMS_DISTRIBUTE, ST_OMP_TEAMS_DISTRIBUTE_SIMD,
248   ST_OMP_END_TEAMS_DISTRIBUTE_SIMD, ST_OMP_TARGET_TEAMS_DISTRIBUTE,
249   ST_OMP_END_TARGET_TEAMS_DISTRIBUTE, ST_OMP_TARGET_TEAMS_DISTRIBUTE_SIMD,
250   ST_OMP_END_TARGET_TEAMS_DISTRIBUTE_SIMD, ST_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO,
251   ST_OMP_END_TEAMS_DISTRIBUTE_PARALLEL_DO,
252   ST_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO,
253   ST_OMP_END_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO,
254   ST_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
255   ST_OMP_END_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
256   ST_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
257   ST_OMP_END_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
258   ST_OMP_TARGET_PARALLEL, ST_OMP_END_TARGET_PARALLEL,
259   ST_OMP_TARGET_PARALLEL_DO, ST_OMP_END_TARGET_PARALLEL_DO,
260   ST_OMP_TARGET_PARALLEL_DO_SIMD, ST_OMP_END_TARGET_PARALLEL_DO_SIMD,
261   ST_OMP_TARGET_ENTER_DATA, ST_OMP_TARGET_EXIT_DATA,
262   ST_OMP_TARGET_SIMD, ST_OMP_END_TARGET_SIMD,
263   ST_OMP_TASKLOOP, ST_OMP_END_TASKLOOP,
264   ST_OMP_TASKLOOP_SIMD, ST_OMP_END_TASKLOOP_SIMD, ST_OMP_ORDERED_DEPEND,
265   ST_PROCEDURE, ST_GENERIC, ST_CRITICAL, ST_END_CRITICAL,
266   ST_GET_FCN_CHARACTERISTICS, ST_LOCK, ST_UNLOCK, ST_EVENT_POST,
267   ST_EVENT_WAIT, ST_FAIL_IMAGE, ST_FORM_TEAM, ST_CHANGE_TEAM,
268   ST_END_TEAM, ST_SYNC_TEAM, ST_NONE
269 };
270 
271 /* Types of interfaces that we can have.  Assignment interfaces are
272    considered to be intrinsic operators.  */
273 enum interface_type
274 {
275   INTERFACE_NAMELESS = 1, INTERFACE_GENERIC,
276   INTERFACE_INTRINSIC_OP, INTERFACE_USER_OP, INTERFACE_ABSTRACT,
277   INTERFACE_DTIO
278 };
279 
280 /* Symbol flavors: these are all mutually exclusive.
281    12 elements = 4 bits.  */
282 enum sym_flavor
283 {
284   FL_UNKNOWN = 0, FL_PROGRAM, FL_BLOCK_DATA, FL_MODULE, FL_VARIABLE,
285   FL_PARAMETER, FL_LABEL, FL_PROCEDURE, FL_DERIVED, FL_NAMELIST,
286   FL_UNION, FL_STRUCT, FL_VOID
287 };
288 
289 /* Procedure types.  7 elements = 3 bits.  */
290 enum procedure_type
291 { PROC_UNKNOWN, PROC_MODULE, PROC_INTERNAL, PROC_DUMMY,
292   PROC_INTRINSIC, PROC_ST_FUNCTION, PROC_EXTERNAL
293 };
294 
295 /* Intent types.  */
296 enum sym_intent
297 { INTENT_UNKNOWN = 0, INTENT_IN, INTENT_OUT, INTENT_INOUT
298 };
299 
300 /* Access types.  */
301 enum gfc_access
302 { ACCESS_UNKNOWN = 0, ACCESS_PUBLIC, ACCESS_PRIVATE
303 };
304 
305 /* Flags to keep track of where an interface came from.
306    3 elements = 2 bits.  */
307 enum ifsrc
308 { IFSRC_UNKNOWN = 0,	/* Interface unknown, only return type may be known.  */
309   IFSRC_DECL,		/* FUNCTION or SUBROUTINE declaration.  */
310   IFSRC_IFBODY		/* INTERFACE statement or PROCEDURE statement
311 			   with explicit interface.  */
312 };
313 
314 /* Whether a SAVE attribute was set explicitly or implicitly.  */
315 enum save_state
316 { SAVE_NONE = 0, SAVE_EXPLICIT, SAVE_IMPLICIT
317 };
318 
319 /* Strings for all symbol attributes.  We use these for dumping the
320    parse tree, in error messages, and also when reading and writing
321    modules.  In symbol.c.  */
322 extern const mstring flavors[];
323 extern const mstring procedures[];
324 extern const mstring intents[];
325 extern const mstring access_types[];
326 extern const mstring ifsrc_types[];
327 extern const mstring save_status[];
328 
329 /* Strings for DTIO procedure names.  In symbol.c.  */
330 extern const mstring dtio_procs[];
331 
332 enum dtio_codes
333 { DTIO_RF = 0, DTIO_WF, DTIO_RUF, DTIO_WUF };
334 
335 /* Enumeration of all the generic intrinsic functions.  Used by the
336    backend for identification of a function.  */
337 
338 enum gfc_isym_id
339 {
340   /* GFC_ISYM_NONE is used for intrinsics which will never be seen by
341      the backend (e.g. KIND).  */
342   GFC_ISYM_NONE = 0,
343   GFC_ISYM_ABORT,
344   GFC_ISYM_ABS,
345   GFC_ISYM_ACCESS,
346   GFC_ISYM_ACHAR,
347   GFC_ISYM_ACOS,
348   GFC_ISYM_ACOSH,
349   GFC_ISYM_ADJUSTL,
350   GFC_ISYM_ADJUSTR,
351   GFC_ISYM_AIMAG,
352   GFC_ISYM_AINT,
353   GFC_ISYM_ALARM,
354   GFC_ISYM_ALL,
355   GFC_ISYM_ALLOCATED,
356   GFC_ISYM_AND,
357   GFC_ISYM_ANINT,
358   GFC_ISYM_ANY,
359   GFC_ISYM_ASIN,
360   GFC_ISYM_ASINH,
361   GFC_ISYM_ASSOCIATED,
362   GFC_ISYM_ATAN,
363   GFC_ISYM_ATAN2,
364   GFC_ISYM_ATANH,
365   GFC_ISYM_ATOMIC_ADD,
366   GFC_ISYM_ATOMIC_AND,
367   GFC_ISYM_ATOMIC_CAS,
368   GFC_ISYM_ATOMIC_DEF,
369   GFC_ISYM_ATOMIC_FETCH_ADD,
370   GFC_ISYM_ATOMIC_FETCH_AND,
371   GFC_ISYM_ATOMIC_FETCH_OR,
372   GFC_ISYM_ATOMIC_FETCH_XOR,
373   GFC_ISYM_ATOMIC_OR,
374   GFC_ISYM_ATOMIC_REF,
375   GFC_ISYM_ATOMIC_XOR,
376   GFC_ISYM_BGE,
377   GFC_ISYM_BGT,
378   GFC_ISYM_BIT_SIZE,
379   GFC_ISYM_BLE,
380   GFC_ISYM_BLT,
381   GFC_ISYM_BTEST,
382   GFC_ISYM_CAF_GET,
383   GFC_ISYM_CAF_SEND,
384   GFC_ISYM_CEILING,
385   GFC_ISYM_CHAR,
386   GFC_ISYM_CHDIR,
387   GFC_ISYM_CHMOD,
388   GFC_ISYM_CMPLX,
389   GFC_ISYM_CO_BROADCAST,
390   GFC_ISYM_CO_MAX,
391   GFC_ISYM_CO_MIN,
392   GFC_ISYM_CO_REDUCE,
393   GFC_ISYM_CO_SUM,
394   GFC_ISYM_COMMAND_ARGUMENT_COUNT,
395   GFC_ISYM_COMPILER_OPTIONS,
396   GFC_ISYM_COMPILER_VERSION,
397   GFC_ISYM_COMPLEX,
398   GFC_ISYM_CONJG,
399   GFC_ISYM_CONVERSION,
400   GFC_ISYM_COS,
401   GFC_ISYM_COSH,
402   GFC_ISYM_COTAN,
403   GFC_ISYM_COUNT,
404   GFC_ISYM_CPU_TIME,
405   GFC_ISYM_CSHIFT,
406   GFC_ISYM_CTIME,
407   GFC_ISYM_C_ASSOCIATED,
408   GFC_ISYM_C_F_POINTER,
409   GFC_ISYM_C_F_PROCPOINTER,
410   GFC_ISYM_C_FUNLOC,
411   GFC_ISYM_C_LOC,
412   GFC_ISYM_C_SIZEOF,
413   GFC_ISYM_DATE_AND_TIME,
414   GFC_ISYM_DBLE,
415   GFC_ISYM_DIGITS,
416   GFC_ISYM_DIM,
417   GFC_ISYM_DOT_PRODUCT,
418   GFC_ISYM_DPROD,
419   GFC_ISYM_DSHIFTL,
420   GFC_ISYM_DSHIFTR,
421   GFC_ISYM_DTIME,
422   GFC_ISYM_EOSHIFT,
423   GFC_ISYM_EPSILON,
424   GFC_ISYM_ERF,
425   GFC_ISYM_ERFC,
426   GFC_ISYM_ERFC_SCALED,
427   GFC_ISYM_ETIME,
428   GFC_ISYM_EVENT_QUERY,
429   GFC_ISYM_EXECUTE_COMMAND_LINE,
430   GFC_ISYM_EXIT,
431   GFC_ISYM_EXP,
432   GFC_ISYM_EXPONENT,
433   GFC_ISYM_EXTENDS_TYPE_OF,
434   GFC_ISYM_FAILED_IMAGES,
435   GFC_ISYM_FDATE,
436   GFC_ISYM_FE_RUNTIME_ERROR,
437   GFC_ISYM_FGET,
438   GFC_ISYM_FGETC,
439   GFC_ISYM_FLOOR,
440   GFC_ISYM_FLUSH,
441   GFC_ISYM_FNUM,
442   GFC_ISYM_FPUT,
443   GFC_ISYM_FPUTC,
444   GFC_ISYM_FRACTION,
445   GFC_ISYM_FREE,
446   GFC_ISYM_FSEEK,
447   GFC_ISYM_FSTAT,
448   GFC_ISYM_FTELL,
449   GFC_ISYM_TGAMMA,
450   GFC_ISYM_GERROR,
451   GFC_ISYM_GETARG,
452   GFC_ISYM_GET_COMMAND,
453   GFC_ISYM_GET_COMMAND_ARGUMENT,
454   GFC_ISYM_GETCWD,
455   GFC_ISYM_GETENV,
456   GFC_ISYM_GET_ENVIRONMENT_VARIABLE,
457   GFC_ISYM_GETGID,
458   GFC_ISYM_GETLOG,
459   GFC_ISYM_GETPID,
460   GFC_ISYM_GET_TEAM,
461   GFC_ISYM_GETUID,
462   GFC_ISYM_GMTIME,
463   GFC_ISYM_HOSTNM,
464   GFC_ISYM_HUGE,
465   GFC_ISYM_HYPOT,
466   GFC_ISYM_IACHAR,
467   GFC_ISYM_IALL,
468   GFC_ISYM_IAND,
469   GFC_ISYM_IANY,
470   GFC_ISYM_IARGC,
471   GFC_ISYM_IBCLR,
472   GFC_ISYM_IBITS,
473   GFC_ISYM_IBSET,
474   GFC_ISYM_ICHAR,
475   GFC_ISYM_IDATE,
476   GFC_ISYM_IEOR,
477   GFC_ISYM_IERRNO,
478   GFC_ISYM_IMAGE_INDEX,
479   GFC_ISYM_IMAGE_STATUS,
480   GFC_ISYM_INDEX,
481   GFC_ISYM_INT,
482   GFC_ISYM_INT2,
483   GFC_ISYM_INT8,
484   GFC_ISYM_IOR,
485   GFC_ISYM_IPARITY,
486   GFC_ISYM_IRAND,
487   GFC_ISYM_ISATTY,
488   GFC_ISYM_IS_IOSTAT_END,
489   GFC_ISYM_IS_IOSTAT_EOR,
490   GFC_ISYM_ISNAN,
491   GFC_ISYM_ISHFT,
492   GFC_ISYM_ISHFTC,
493   GFC_ISYM_ITIME,
494   GFC_ISYM_J0,
495   GFC_ISYM_J1,
496   GFC_ISYM_JN,
497   GFC_ISYM_JN2,
498   GFC_ISYM_KILL,
499   GFC_ISYM_KIND,
500   GFC_ISYM_LBOUND,
501   GFC_ISYM_LCOBOUND,
502   GFC_ISYM_LEADZ,
503   GFC_ISYM_LEN,
504   GFC_ISYM_LEN_TRIM,
505   GFC_ISYM_LGAMMA,
506   GFC_ISYM_LGE,
507   GFC_ISYM_LGT,
508   GFC_ISYM_LINK,
509   GFC_ISYM_LLE,
510   GFC_ISYM_LLT,
511   GFC_ISYM_LOC,
512   GFC_ISYM_LOG,
513   GFC_ISYM_LOG10,
514   GFC_ISYM_LOGICAL,
515   GFC_ISYM_LONG,
516   GFC_ISYM_LSHIFT,
517   GFC_ISYM_LSTAT,
518   GFC_ISYM_LTIME,
519   GFC_ISYM_MALLOC,
520   GFC_ISYM_MASKL,
521   GFC_ISYM_MASKR,
522   GFC_ISYM_MATMUL,
523   GFC_ISYM_MAX,
524   GFC_ISYM_MAXEXPONENT,
525   GFC_ISYM_MAXLOC,
526   GFC_ISYM_MAXVAL,
527   GFC_ISYM_MCLOCK,
528   GFC_ISYM_MCLOCK8,
529   GFC_ISYM_MERGE,
530   GFC_ISYM_MERGE_BITS,
531   GFC_ISYM_MIN,
532   GFC_ISYM_MINEXPONENT,
533   GFC_ISYM_MINLOC,
534   GFC_ISYM_MINVAL,
535   GFC_ISYM_MOD,
536   GFC_ISYM_MODULO,
537   GFC_ISYM_MOVE_ALLOC,
538   GFC_ISYM_MVBITS,
539   GFC_ISYM_NEAREST,
540   GFC_ISYM_NEW_LINE,
541   GFC_ISYM_NINT,
542   GFC_ISYM_NORM2,
543   GFC_ISYM_NOT,
544   GFC_ISYM_NULL,
545   GFC_ISYM_NUM_IMAGES,
546   GFC_ISYM_OR,
547   GFC_ISYM_PACK,
548   GFC_ISYM_PARITY,
549   GFC_ISYM_PERROR,
550   GFC_ISYM_POPCNT,
551   GFC_ISYM_POPPAR,
552   GFC_ISYM_PRECISION,
553   GFC_ISYM_PRESENT,
554   GFC_ISYM_PRODUCT,
555   GFC_ISYM_RADIX,
556   GFC_ISYM_RAND,
557   GFC_ISYM_RANDOM_NUMBER,
558   GFC_ISYM_RANDOM_SEED,
559   GFC_ISYM_RANGE,
560   GFC_ISYM_RANK,
561   GFC_ISYM_REAL,
562   GFC_ISYM_RENAME,
563   GFC_ISYM_REPEAT,
564   GFC_ISYM_RESHAPE,
565   GFC_ISYM_RRSPACING,
566   GFC_ISYM_RSHIFT,
567   GFC_ISYM_SAME_TYPE_AS,
568   GFC_ISYM_SC_KIND,
569   GFC_ISYM_SCALE,
570   GFC_ISYM_SCAN,
571   GFC_ISYM_SECNDS,
572   GFC_ISYM_SECOND,
573   GFC_ISYM_SET_EXPONENT,
574   GFC_ISYM_SHAPE,
575   GFC_ISYM_SHIFTA,
576   GFC_ISYM_SHIFTL,
577   GFC_ISYM_SHIFTR,
578   GFC_ISYM_BACKTRACE,
579   GFC_ISYM_SIGN,
580   GFC_ISYM_SIGNAL,
581   GFC_ISYM_SI_KIND,
582   GFC_ISYM_SIN,
583   GFC_ISYM_SINH,
584   GFC_ISYM_SIZE,
585   GFC_ISYM_SLEEP,
586   GFC_ISYM_SIZEOF,
587   GFC_ISYM_SPACING,
588   GFC_ISYM_SPREAD,
589   GFC_ISYM_SQRT,
590   GFC_ISYM_SRAND,
591   GFC_ISYM_SR_KIND,
592   GFC_ISYM_STAT,
593   GFC_ISYM_STOPPED_IMAGES,
594   GFC_ISYM_STORAGE_SIZE,
595   GFC_ISYM_STRIDE,
596   GFC_ISYM_SUM,
597   GFC_ISYM_SYMLINK,
598   GFC_ISYM_SYMLNK,
599   GFC_ISYM_SYSTEM,
600   GFC_ISYM_SYSTEM_CLOCK,
601   GFC_ISYM_TAN,
602   GFC_ISYM_TANH,
603   GFC_ISYM_TEAM_NUMBER,
604   GFC_ISYM_THIS_IMAGE,
605   GFC_ISYM_TIME,
606   GFC_ISYM_TIME8,
607   GFC_ISYM_TINY,
608   GFC_ISYM_TRAILZ,
609   GFC_ISYM_TRANSFER,
610   GFC_ISYM_TRANSPOSE,
611   GFC_ISYM_TRIM,
612   GFC_ISYM_TTYNAM,
613   GFC_ISYM_UBOUND,
614   GFC_ISYM_UCOBOUND,
615   GFC_ISYM_UMASK,
616   GFC_ISYM_UNLINK,
617   GFC_ISYM_UNPACK,
618   GFC_ISYM_VERIFY,
619   GFC_ISYM_XOR,
620   GFC_ISYM_Y0,
621   GFC_ISYM_Y1,
622   GFC_ISYM_YN,
623   GFC_ISYM_YN2
624 };
625 
626 enum init_local_logical
627 {
628   GFC_INIT_LOGICAL_OFF = 0,
629   GFC_INIT_LOGICAL_FALSE,
630   GFC_INIT_LOGICAL_TRUE
631 };
632 
633 enum init_local_character
634 {
635   GFC_INIT_CHARACTER_OFF = 0,
636   GFC_INIT_CHARACTER_ON
637 };
638 
639 enum init_local_integer
640 {
641   GFC_INIT_INTEGER_OFF = 0,
642   GFC_INIT_INTEGER_ON
643 };
644 
645 enum gfc_reverse
646 {
647   GFC_ENABLE_REVERSE,
648   GFC_FORWARD_SET,
649   GFC_REVERSE_SET,
650   GFC_INHIBIT_REVERSE
651 };
652 
653 enum gfc_param_spec_type
654 {
655   SPEC_EXPLICIT,
656   SPEC_ASSUMED,
657   SPEC_DEFERRED
658 };
659 
660 /************************* Structures *****************************/
661 
662 /* Used for keeping things in balanced binary trees.  */
663 #define BBT_HEADER(self) int priority; struct self *left, *right
664 
665 #define NAMED_INTCST(a,b,c,d) a,
666 #define NAMED_KINDARRAY(a,b,c,d) a,
667 #define NAMED_FUNCTION(a,b,c,d) a,
668 #define NAMED_SUBROUTINE(a,b,c,d) a,
669 #define NAMED_DERIVED_TYPE(a,b,c,d) a,
670 enum iso_fortran_env_symbol
671 {
672   ISOFORTRANENV_INVALID = -1,
673 #include "iso-fortran-env.def"
674   ISOFORTRANENV_LAST, ISOFORTRANENV_NUMBER = ISOFORTRANENV_LAST
675 };
676 #undef NAMED_INTCST
677 #undef NAMED_KINDARRAY
678 #undef NAMED_FUNCTION
679 #undef NAMED_SUBROUTINE
680 #undef NAMED_DERIVED_TYPE
681 
682 #define NAMED_INTCST(a,b,c,d) a,
683 #define NAMED_REALCST(a,b,c,d) a,
684 #define NAMED_CMPXCST(a,b,c,d) a,
685 #define NAMED_LOGCST(a,b,c) a,
686 #define NAMED_CHARKNDCST(a,b,c) a,
687 #define NAMED_CHARCST(a,b,c) a,
688 #define DERIVED_TYPE(a,b,c) a,
689 #define NAMED_FUNCTION(a,b,c,d) a,
690 #define NAMED_SUBROUTINE(a,b,c,d) a,
691 enum iso_c_binding_symbol
692 {
693   ISOCBINDING_INVALID = -1,
694 #include "iso-c-binding.def"
695   ISOCBINDING_LAST,
696   ISOCBINDING_NUMBER = ISOCBINDING_LAST
697 };
698 #undef NAMED_INTCST
699 #undef NAMED_REALCST
700 #undef NAMED_CMPXCST
701 #undef NAMED_LOGCST
702 #undef NAMED_CHARKNDCST
703 #undef NAMED_CHARCST
704 #undef DERIVED_TYPE
705 #undef NAMED_FUNCTION
706 #undef NAMED_SUBROUTINE
707 
708 enum intmod_id
709 {
710   INTMOD_NONE = 0, INTMOD_ISO_FORTRAN_ENV, INTMOD_ISO_C_BINDING,
711   INTMOD_IEEE_FEATURES, INTMOD_IEEE_EXCEPTIONS, INTMOD_IEEE_ARITHMETIC
712 };
713 
714 typedef struct
715 {
716   char name[GFC_MAX_SYMBOL_LEN + 1];
717   int value;  /* Used for both integer and character values.  */
718   bt f90_type;
719 }
720 CInteropKind_t;
721 
722 /* Array of structs, where the structs represent the C interop kinds.
723    The list will be implemented based on a hash of the kind name since
724    these could be accessed multiple times.
725    Declared in trans-types.c as a global, since it's in that file
726    that the list is initialized.  */
727 extern CInteropKind_t c_interop_kinds_table[];
728 
729 
730 /* Structure and list of supported extension attributes.  */
731 typedef enum
732 {
733   EXT_ATTR_DLLIMPORT = 0,
734   EXT_ATTR_DLLEXPORT,
735   EXT_ATTR_STDCALL,
736   EXT_ATTR_CDECL,
737   EXT_ATTR_FASTCALL,
738   EXT_ATTR_NO_ARG_CHECK,
739   EXT_ATTR_LAST, EXT_ATTR_NUM = EXT_ATTR_LAST
740 }
741 ext_attr_id_t;
742 
743 typedef struct
744 {
745   const char *name;
746   unsigned id;
747   const char *middle_end_name;
748 }
749 ext_attr_t;
750 
751 extern const ext_attr_t ext_attr_list[];
752 
753 /* Symbol attribute structure.  */
754 typedef struct
755 {
756   /* Variable attributes.  */
757   unsigned allocatable:1, dimension:1, codimension:1, external:1, intrinsic:1,
758     optional:1, pointer:1, target:1, value:1, volatile_:1, temporary:1,
759     dummy:1, result:1, assign:1, threadprivate:1, not_always_present:1,
760     implied_index:1, subref_array_pointer:1, proc_pointer:1, asynchronous:1,
761     contiguous:1, fe_temp: 1, automatic: 1;
762 
763   /* For CLASS containers, the pointer attribute is sometimes set internally
764      even though it was not directly specified.  In this case, keep the
765      "real" (original) value here.  */
766   unsigned class_pointer:1;
767 
768   ENUM_BITFIELD (save_state) save:2;
769 
770   unsigned data:1,		/* Symbol is named in a DATA statement.  */
771     is_protected:1,		/* Symbol has been marked as protected.  */
772     use_assoc:1,		/* Symbol has been use-associated.  */
773     used_in_submodule:1,	/* Symbol has been use-associated in a
774 				   submodule. Needed since these entities must
775 				   be set host associated to be compliant.  */
776     use_only:1,			/* Symbol has been use-associated, with ONLY.  */
777     use_rename:1,		/* Symbol has been use-associated and renamed.  */
778     imported:1,			/* Symbol has been associated by IMPORT.  */
779     host_assoc:1;		/* Symbol has been host associated.  */
780 
781   unsigned in_namelist:1, in_common:1, in_equivalence:1;
782   unsigned function:1, subroutine:1, procedure:1;
783   unsigned generic:1, generic_copy:1;
784   unsigned implicit_type:1;	/* Type defined via implicit rules.  */
785   unsigned untyped:1;		/* No implicit type could be found.  */
786 
787   unsigned is_bind_c:1;		/* say if is bound to C.  */
788   unsigned extension:8;		/* extension level of a derived type.  */
789   unsigned is_class:1;		/* is a CLASS container.  */
790   unsigned class_ok:1;		/* is a CLASS object with correct attributes.  */
791   unsigned vtab:1;		/* is a derived type vtab, pointed to by CLASS objects.  */
792   unsigned vtype:1;		/* is a derived type of a vtab.  */
793 
794   /* These flags are both in the typespec and attribute.  The attribute
795      list is what gets read from/written to a module file.  The typespec
796      is created from a decl being processed.  */
797   unsigned is_c_interop:1;	/* It's c interoperable.  */
798   unsigned is_iso_c:1;		/* Symbol is from iso_c_binding.  */
799 
800   /* Function/subroutine attributes */
801   unsigned sequence:1, elemental:1, pure:1, recursive:1;
802   unsigned unmaskable:1, masked:1, contained:1, mod_proc:1, abstract:1;
803 
804   /* Set if this is a module function or subroutine. Note that it is an
805      attribute because it appears as a prefix in the declaration like
806      PURE, etc..  */
807   unsigned module_procedure:1;
808 
809   /* Set if a (public) symbol [e.g. generic name] exposes this symbol,
810      which is relevant for private module procedures.  */
811   unsigned public_used:1;
812 
813   /* This is set if a contained procedure could be declared pure.  This is
814      used for certain optimizations that require the result or arguments
815      cannot alias.  Note that this is zero for PURE procedures.  */
816   unsigned implicit_pure:1;
817 
818   /* This is set for a procedure that contains expressions referencing
819      arrays coming from outside its namespace.
820      This is used to force the creation of a temporary when the LHS of
821      an array assignment may be used by an elemental procedure appearing
822      on the RHS.  */
823   unsigned array_outer_dependency:1;
824 
825   /* This is set if the subroutine doesn't return.  Currently, this
826      is only possible for intrinsic subroutines.  */
827   unsigned noreturn:1;
828 
829   /* Set if this procedure is an alternate entry point.  These procedures
830      don't have any code associated, and the backend will turn them into
831      thunks to the master function.  */
832   unsigned entry:1;
833 
834   /* Set if this is the master function for a procedure with multiple
835      entry points.  */
836   unsigned entry_master:1;
837 
838   /* Set if this is the master function for a function with multiple
839      entry points where characteristics of the entry points differ.  */
840   unsigned mixed_entry_master:1;
841 
842   /* Set if a function must always be referenced by an explicit interface.  */
843   unsigned always_explicit:1;
844 
845   /* Set if the symbol is generated and, hence, standard violations
846      shouldn't be flaged.  */
847   unsigned artificial:1;
848 
849   /* Set if the symbol has been referenced in an expression.  No further
850      modification of type or type parameters is permitted.  */
851   unsigned referenced:1;
852 
853   /* Set if this is the symbol for the main program.  */
854   unsigned is_main_program:1;
855 
856   /* Mutually exclusive multibit attributes.  */
857   ENUM_BITFIELD (gfc_access) access:2;
858   ENUM_BITFIELD (sym_intent) intent:2;
859   ENUM_BITFIELD (sym_flavor) flavor:4;
860   ENUM_BITFIELD (ifsrc) if_source:2;
861 
862   ENUM_BITFIELD (procedure_type) proc:3;
863 
864   /* Special attributes for Cray pointers, pointees.  */
865   unsigned cray_pointer:1, cray_pointee:1;
866 
867   /* The symbol is a derived type with allocatable components, pointer
868      components or private components, procedure pointer components,
869      possibly nested.  zero_comp is true if the derived type has no
870      component at all.  defined_assign_comp is true if the derived
871      type or a (sub-)component has a typebound defined assignment.
872      unlimited_polymorphic flags the type of the container for these
873      entities.  */
874   unsigned alloc_comp:1, pointer_comp:1, proc_pointer_comp:1,
875 	   private_comp:1, zero_comp:1, coarray_comp:1, lock_comp:1,
876 	   event_comp:1, defined_assign_comp:1, unlimited_polymorphic:1,
877 	   has_dtio_procs:1, caf_token:1;
878 
879   /* This is a temporary selector for SELECT TYPE or an associate
880      variable for SELECT_TYPE or ASSOCIATE.  */
881   unsigned select_type_temporary:1, associate_var:1;
882 
883   /* These are the attributes required for parameterized derived
884      types.  */
885   unsigned pdt_kind:1, pdt_len:1, pdt_type:1, pdt_template:1,
886 	   pdt_array:1, pdt_string:1;
887 
888   /* This is omp_{out,in,priv,orig} artificial variable in
889      !$OMP DECLARE REDUCTION.  */
890   unsigned omp_udr_artificial_var:1;
891 
892   /* Mentioned in OMP DECLARE TARGET.  */
893   unsigned omp_declare_target:1;
894   unsigned omp_declare_target_link:1;
895 
896   /* Mentioned in OACC DECLARE.  */
897   unsigned oacc_declare_create:1;
898   unsigned oacc_declare_copyin:1;
899   unsigned oacc_declare_deviceptr:1;
900   unsigned oacc_declare_device_resident:1;
901   unsigned oacc_declare_link:1;
902 
903   /* This is an OpenACC acclerator function at level N - 1  */
904   unsigned oacc_function:3;
905 
906   /* Attributes set by compiler extensions (!GCC$ ATTRIBUTES).  */
907   unsigned ext_attr:EXT_ATTR_NUM;
908 
909   /* The namespace where the attribute has been set.  */
910   struct gfc_namespace *volatile_ns, *asynchronous_ns;
911 }
912 symbol_attribute;
913 
914 
915 /* We need to store source lines as sequences of multibyte source
916    characters. We define here a type wide enough to hold any multibyte
917    source character, just like libcpp does.  A 32-bit type is enough.  */
918 
919 #if HOST_BITS_PER_INT >= 32
920 typedef unsigned int gfc_char_t;
921 #elif HOST_BITS_PER_LONG >= 32
922 typedef unsigned long gfc_char_t;
923 #elif defined(HAVE_LONG_LONG) && (HOST_BITS_PER_LONGLONG >= 32)
924 typedef unsigned long long gfc_char_t;
925 #else
926 # error "Cannot find an integer type with at least 32 bits"
927 #endif
928 
929 
930 /* The following three structures are used to identify a location in
931    the sources.
932 
933    gfc_file is used to maintain a tree of the source files and how
934    they include each other
935 
936    gfc_linebuf holds a single line of source code and information
937    which file it resides in
938 
939    locus point to the sourceline and the character in the source
940    line.
941 */
942 
943 typedef struct gfc_file
944 {
945   struct gfc_file *next, *up;
946   int inclusion_line, line;
947   char *filename;
948 } gfc_file;
949 
950 typedef struct gfc_linebuf
951 {
952   source_location location;
953   struct gfc_file *file;
954   struct gfc_linebuf *next;
955 
956   int truncated;
957   bool dbg_emitted;
958 
959   gfc_char_t line[1];
960 } gfc_linebuf;
961 
962 #define gfc_linebuf_header_size (offsetof (gfc_linebuf, line))
963 
964 #define gfc_linebuf_linenum(LBUF) (LOCATION_LINE ((LBUF)->location))
965 
966 typedef struct
967 {
968   gfc_char_t *nextc;
969   gfc_linebuf *lb;
970 } locus;
971 
972 /* In order for the "gfc" format checking to work correctly, you must
973    have declared a typedef locus first.  */
974 #if GCC_VERSION >= 4001
975 #define ATTRIBUTE_GCC_GFC(m, n) __attribute__ ((__format__ (__gcc_gfc__, m, n))) ATTRIBUTE_NONNULL(m)
976 #else
977 #define ATTRIBUTE_GCC_GFC(m, n) ATTRIBUTE_NONNULL(m)
978 #endif
979 
980 
981 /* Suppress error messages or re-enable them.  */
982 
983 void gfc_push_suppress_errors (void);
984 void gfc_pop_suppress_errors (void);
985 
986 
987 /* Character length structures hold the expression that gives the
988    length of a character variable.  We avoid putting these into
989    gfc_typespec because doing so prevents us from doing structure
990    copies and forces us to deallocate any typespecs we create, as well
991    as structures that contain typespecs.  They also can have multiple
992    character typespecs pointing to them.
993 
994    These structures form a singly linked list within the current
995    namespace and are deallocated with the namespace.  It is possible to
996    end up with gfc_charlen structures that have nothing pointing to them.  */
997 
998 typedef struct gfc_charlen
999 {
1000   struct gfc_expr *length;
1001   struct gfc_charlen *next;
1002   bool length_from_typespec; /* Length from explicit array ctor typespec?  */
1003   tree backend_decl;
1004   tree passed_length; /* Length argument explicitly passed.  */
1005 
1006   int resolved;
1007 }
1008 gfc_charlen;
1009 
1010 #define gfc_get_charlen() XCNEW (gfc_charlen)
1011 
1012 /* Type specification structure.  */
1013 typedef struct
1014 {
1015   bt type;
1016   int kind;
1017 
1018   union
1019   {
1020     struct gfc_symbol *derived;	/* For derived types only.  */
1021     gfc_charlen *cl;		/* For character types only.  */
1022     int pad;			/* For hollerith types only.  */
1023   }
1024   u;
1025 
1026   struct gfc_symbol *interface;	/* For PROCEDURE declarations.  */
1027   int is_c_interop;
1028   int is_iso_c;
1029   bt f90_type;
1030   bool deferred;
1031   gfc_symbol *interop_kind;
1032 }
1033 gfc_typespec;
1034 
1035 /* Array specification.  */
1036 typedef struct
1037 {
1038   int rank;	/* A scalar has a rank of 0, an assumed-rank array has -1.  */
1039   int corank;
1040   array_type type, cotype;
1041   struct gfc_expr *lower[GFC_MAX_DIMENSIONS], *upper[GFC_MAX_DIMENSIONS];
1042 
1043   /* These two fields are used with the Cray Pointer extension.  */
1044   bool cray_pointee; /* True iff this spec belongs to a cray pointee.  */
1045   bool cp_was_assumed; /* AS_ASSUMED_SIZE cp arrays are converted to
1046 			AS_EXPLICIT, but we want to remember that we
1047 			did this.  */
1048 
1049   bool resolved;
1050 }
1051 gfc_array_spec;
1052 
1053 #define gfc_get_array_spec() XCNEW (gfc_array_spec)
1054 
1055 
1056 /* Components of derived types.  */
1057 typedef struct gfc_component
1058 {
1059   const char *name;
1060   gfc_typespec ts;
1061 
1062   symbol_attribute attr;
1063   gfc_array_spec *as;
1064 
1065   tree backend_decl;
1066   /* Used to cache a FIELD_DECL matching this same component
1067      but applied to a different backend containing type that was
1068      generated by gfc_nonrestricted_type.  */
1069   tree norestrict_decl;
1070   locus loc;
1071   struct gfc_expr *initializer;
1072   /* Used in parameterized derived type declarations to store parameterized
1073      kind expressions.  */
1074   struct gfc_expr *kind_expr;
1075   struct gfc_actual_arglist *param_list;
1076 
1077   struct gfc_component *next;
1078 
1079   /* Needed for procedure pointer components.  */
1080   struct gfc_typebound_proc *tb;
1081   /* When allocatable/pointer and in a coarray the associated token.  */
1082   tree caf_token;
1083   bool finalized;
1084 }
1085 gfc_component;
1086 
1087 #define gfc_get_component() XCNEW (gfc_component)
1088 
1089 /* Formal argument lists are lists of symbols.  */
1090 typedef struct gfc_formal_arglist
1091 {
1092   /* Symbol representing the argument at this position in the arglist.  */
1093   struct gfc_symbol *sym;
1094   /* Points to the next formal argument.  */
1095   struct gfc_formal_arglist *next;
1096 }
1097 gfc_formal_arglist;
1098 
1099 #define gfc_get_formal_arglist() XCNEW (gfc_formal_arglist)
1100 
1101 
1102 /* The gfc_actual_arglist structure is for actual arguments and
1103    for type parameter specification lists.  */
1104 typedef struct gfc_actual_arglist
1105 {
1106   const char *name;
1107   /* Alternate return label when the expr member is null.  */
1108   struct gfc_st_label *label;
1109 
1110   /* This is set to the type of an eventual omitted optional
1111      argument. This is used to determine if a hidden string length
1112      argument has to be added to a function call.  */
1113   bt missing_arg_type;
1114 
1115   gfc_param_spec_type spec_type;
1116 
1117   struct gfc_expr *expr;
1118   struct gfc_actual_arglist *next;
1119 }
1120 gfc_actual_arglist;
1121 
1122 #define gfc_get_actual_arglist() XCNEW (gfc_actual_arglist)
1123 
1124 
1125 /* Because a symbol can belong to multiple namelists, they must be
1126    linked externally to the symbol itself.  */
1127 typedef struct gfc_namelist
1128 {
1129   struct gfc_symbol *sym;
1130   struct gfc_namelist *next;
1131 }
1132 gfc_namelist;
1133 
1134 #define gfc_get_namelist() XCNEW (gfc_namelist)
1135 
1136 /* Likewise to gfc_namelist, but contains expressions.  */
1137 typedef struct gfc_expr_list
1138 {
1139   struct gfc_expr *expr;
1140   struct gfc_expr_list *next;
1141 }
1142 gfc_expr_list;
1143 
1144 #define gfc_get_expr_list() XCNEW (gfc_expr_list)
1145 
1146 enum gfc_omp_reduction_op
1147 {
1148   OMP_REDUCTION_NONE = -1,
1149   OMP_REDUCTION_PLUS = INTRINSIC_PLUS,
1150   OMP_REDUCTION_MINUS = INTRINSIC_MINUS,
1151   OMP_REDUCTION_TIMES = INTRINSIC_TIMES,
1152   OMP_REDUCTION_AND = INTRINSIC_AND,
1153   OMP_REDUCTION_OR = INTRINSIC_OR,
1154   OMP_REDUCTION_EQV = INTRINSIC_EQV,
1155   OMP_REDUCTION_NEQV = INTRINSIC_NEQV,
1156   OMP_REDUCTION_MAX = GFC_INTRINSIC_END,
1157   OMP_REDUCTION_MIN,
1158   OMP_REDUCTION_IAND,
1159   OMP_REDUCTION_IOR,
1160   OMP_REDUCTION_IEOR,
1161   OMP_REDUCTION_USER
1162 };
1163 
1164 enum gfc_omp_depend_op
1165 {
1166   OMP_DEPEND_IN,
1167   OMP_DEPEND_OUT,
1168   OMP_DEPEND_INOUT,
1169   OMP_DEPEND_SINK_FIRST,
1170   OMP_DEPEND_SINK
1171 };
1172 
1173 enum gfc_omp_map_op
1174 {
1175   OMP_MAP_ALLOC,
1176   OMP_MAP_TO,
1177   OMP_MAP_FROM,
1178   OMP_MAP_TOFROM,
1179   OMP_MAP_DELETE,
1180   OMP_MAP_FORCE_ALLOC,
1181   OMP_MAP_FORCE_TO,
1182   OMP_MAP_FORCE_FROM,
1183   OMP_MAP_FORCE_TOFROM,
1184   OMP_MAP_FORCE_PRESENT,
1185   OMP_MAP_FORCE_DEVICEPTR,
1186   OMP_MAP_DEVICE_RESIDENT,
1187   OMP_MAP_LINK,
1188   OMP_MAP_RELEASE,
1189   OMP_MAP_ALWAYS_TO,
1190   OMP_MAP_ALWAYS_FROM,
1191   OMP_MAP_ALWAYS_TOFROM
1192 };
1193 
1194 enum gfc_omp_linear_op
1195 {
1196   OMP_LINEAR_DEFAULT,
1197   OMP_LINEAR_REF,
1198   OMP_LINEAR_VAL,
1199   OMP_LINEAR_UVAL
1200 };
1201 
1202 /* For use in OpenMP clauses in case we need extra information
1203    (aligned clause alignment, linear clause step, etc.).  */
1204 
1205 typedef struct gfc_omp_namelist
1206 {
1207   struct gfc_symbol *sym;
1208   struct gfc_expr *expr;
1209   union
1210     {
1211       gfc_omp_reduction_op reduction_op;
1212       gfc_omp_depend_op depend_op;
1213       gfc_omp_map_op map_op;
1214       gfc_omp_linear_op linear_op;
1215       struct gfc_common_head *common;
1216     } u;
1217   struct gfc_omp_namelist_udr *udr;
1218   struct gfc_omp_namelist *next;
1219   locus where;
1220 }
1221 gfc_omp_namelist;
1222 
1223 #define gfc_get_omp_namelist() XCNEW (gfc_omp_namelist)
1224 
1225 enum
1226 {
1227   OMP_LIST_FIRST,
1228   OMP_LIST_PRIVATE = OMP_LIST_FIRST,
1229   OMP_LIST_FIRSTPRIVATE,
1230   OMP_LIST_LASTPRIVATE,
1231   OMP_LIST_COPYPRIVATE,
1232   OMP_LIST_SHARED,
1233   OMP_LIST_COPYIN,
1234   OMP_LIST_UNIFORM,
1235   OMP_LIST_ALIGNED,
1236   OMP_LIST_LINEAR,
1237   OMP_LIST_DEPEND,
1238   OMP_LIST_MAP,
1239   OMP_LIST_TO,
1240   OMP_LIST_FROM,
1241   OMP_LIST_REDUCTION,
1242   OMP_LIST_DEVICE_RESIDENT,
1243   OMP_LIST_LINK,
1244   OMP_LIST_USE_DEVICE,
1245   OMP_LIST_CACHE,
1246   OMP_LIST_IS_DEVICE_PTR,
1247   OMP_LIST_USE_DEVICE_PTR,
1248   OMP_LIST_NUM
1249 };
1250 
1251 /* Because a symbol can belong to multiple namelists, they must be
1252    linked externally to the symbol itself.  */
1253 
1254 enum gfc_omp_sched_kind
1255 {
1256   OMP_SCHED_NONE,
1257   OMP_SCHED_STATIC,
1258   OMP_SCHED_DYNAMIC,
1259   OMP_SCHED_GUIDED,
1260   OMP_SCHED_RUNTIME,
1261   OMP_SCHED_AUTO
1262 };
1263 
1264 enum gfc_omp_default_sharing
1265 {
1266   OMP_DEFAULT_UNKNOWN,
1267   OMP_DEFAULT_NONE,
1268   OMP_DEFAULT_PRIVATE,
1269   OMP_DEFAULT_SHARED,
1270   OMP_DEFAULT_FIRSTPRIVATE,
1271   OMP_DEFAULT_PRESENT
1272 };
1273 
1274 enum gfc_omp_proc_bind_kind
1275 {
1276   OMP_PROC_BIND_UNKNOWN,
1277   OMP_PROC_BIND_MASTER,
1278   OMP_PROC_BIND_SPREAD,
1279   OMP_PROC_BIND_CLOSE
1280 };
1281 
1282 enum gfc_omp_cancel_kind
1283 {
1284   OMP_CANCEL_UNKNOWN,
1285   OMP_CANCEL_PARALLEL,
1286   OMP_CANCEL_SECTIONS,
1287   OMP_CANCEL_DO,
1288   OMP_CANCEL_TASKGROUP
1289 };
1290 
1291 enum gfc_omp_if_kind
1292 {
1293   OMP_IF_PARALLEL,
1294   OMP_IF_TASK,
1295   OMP_IF_TASKLOOP,
1296   OMP_IF_TARGET,
1297   OMP_IF_TARGET_DATA,
1298   OMP_IF_TARGET_UPDATE,
1299   OMP_IF_TARGET_ENTER_DATA,
1300   OMP_IF_TARGET_EXIT_DATA,
1301   OMP_IF_LAST
1302 };
1303 
1304 typedef struct gfc_omp_clauses
1305 {
1306   struct gfc_expr *if_expr;
1307   struct gfc_expr *final_expr;
1308   struct gfc_expr *num_threads;
1309   gfc_omp_namelist *lists[OMP_LIST_NUM];
1310   enum gfc_omp_sched_kind sched_kind;
1311   struct gfc_expr *chunk_size;
1312   enum gfc_omp_default_sharing default_sharing;
1313   int collapse, orderedc;
1314   bool nowait, ordered, untied, mergeable;
1315   bool inbranch, notinbranch, defaultmap, nogroup;
1316   bool sched_simd, sched_monotonic, sched_nonmonotonic;
1317   bool simd, threads, depend_source;
1318   enum gfc_omp_cancel_kind cancel;
1319   enum gfc_omp_proc_bind_kind proc_bind;
1320   struct gfc_expr *safelen_expr;
1321   struct gfc_expr *simdlen_expr;
1322   struct gfc_expr *num_teams;
1323   struct gfc_expr *device;
1324   struct gfc_expr *thread_limit;
1325   struct gfc_expr *grainsize;
1326   struct gfc_expr *hint;
1327   struct gfc_expr *num_tasks;
1328   struct gfc_expr *priority;
1329   struct gfc_expr *if_exprs[OMP_IF_LAST];
1330   enum gfc_omp_sched_kind dist_sched_kind;
1331   struct gfc_expr *dist_chunk_size;
1332   const char *critical_name;
1333 
1334   /* OpenACC. */
1335   struct gfc_expr *async_expr;
1336   struct gfc_expr *gang_static_expr;
1337   struct gfc_expr *gang_num_expr;
1338   struct gfc_expr *worker_expr;
1339   struct gfc_expr *vector_expr;
1340   struct gfc_expr *num_gangs_expr;
1341   struct gfc_expr *num_workers_expr;
1342   struct gfc_expr *vector_length_expr;
1343   gfc_expr_list *wait_list;
1344   gfc_expr_list *tile_list;
1345   unsigned async:1, gang:1, worker:1, vector:1, seq:1, independent:1;
1346   unsigned wait:1, par_auto:1, gang_static:1;
1347   locus loc;
1348 
1349 }
1350 gfc_omp_clauses;
1351 
1352 #define gfc_get_omp_clauses() XCNEW (gfc_omp_clauses)
1353 
1354 
1355 /* Node in the linked list used for storing !$oacc declare constructs.  */
1356 
1357 typedef struct gfc_oacc_declare
1358 {
1359   struct gfc_oacc_declare *next;
1360   bool module_var;
1361   gfc_omp_clauses *clauses;
1362   locus loc;
1363 }
1364 gfc_oacc_declare;
1365 
1366 #define gfc_get_oacc_declare() XCNEW (gfc_oacc_declare)
1367 
1368 
1369 /* Node in the linked list used for storing !$omp declare simd constructs.  */
1370 
1371 typedef struct gfc_omp_declare_simd
1372 {
1373   struct gfc_omp_declare_simd *next;
1374   locus where; /* Where the !$omp declare simd construct occurred.  */
1375 
1376   gfc_symbol *proc_name;
1377 
1378   gfc_omp_clauses *clauses;
1379 }
1380 gfc_omp_declare_simd;
1381 #define gfc_get_omp_declare_simd() XCNEW (gfc_omp_declare_simd)
1382 
1383 typedef struct gfc_omp_udr
1384 {
1385   struct gfc_omp_udr *next;
1386   locus where; /* Where the !$omp declare reduction construct occurred.  */
1387 
1388   const char *name;
1389   gfc_typespec ts;
1390   gfc_omp_reduction_op rop;
1391 
1392   struct gfc_symbol *omp_out;
1393   struct gfc_symbol *omp_in;
1394   struct gfc_namespace *combiner_ns;
1395 
1396   struct gfc_symbol *omp_priv;
1397   struct gfc_symbol *omp_orig;
1398   struct gfc_namespace *initializer_ns;
1399 }
1400 gfc_omp_udr;
1401 #define gfc_get_omp_udr() XCNEW (gfc_omp_udr)
1402 
1403 typedef struct gfc_omp_namelist_udr
1404 {
1405   struct gfc_omp_udr *udr;
1406   struct gfc_code *combiner;
1407   struct gfc_code *initializer;
1408 }
1409 gfc_omp_namelist_udr;
1410 #define gfc_get_omp_namelist_udr() XCNEW (gfc_omp_namelist_udr)
1411 
1412 /* The gfc_st_label structure is a BBT attached to a namespace that
1413    records the usage of statement labels within that space.  */
1414 
1415 typedef struct gfc_st_label
1416 {
1417   BBT_HEADER(gfc_st_label);
1418 
1419   int value;
1420 
1421   gfc_sl_type defined, referenced;
1422 
1423   struct gfc_expr *format;
1424 
1425   tree backend_decl;
1426 
1427   locus where;
1428 
1429   gfc_namespace *ns;
1430 }
1431 gfc_st_label;
1432 
1433 
1434 /* gfc_interface()-- Interfaces are lists of symbols strung together.  */
1435 typedef struct gfc_interface
1436 {
1437   struct gfc_symbol *sym;
1438   locus where;
1439   struct gfc_interface *next;
1440 }
1441 gfc_interface;
1442 
1443 #define gfc_get_interface() XCNEW (gfc_interface)
1444 
1445 /* User operator nodes.  These are like stripped down symbols.  */
1446 typedef struct
1447 {
1448   const char *name;
1449 
1450   gfc_interface *op;
1451   struct gfc_namespace *ns;
1452   gfc_access access;
1453 }
1454 gfc_user_op;
1455 
1456 
1457 /* A list of specific bindings that are associated with a generic spec.  */
1458 typedef struct gfc_tbp_generic
1459 {
1460   /* The parser sets specific_st, upon resolution we look for the corresponding
1461      gfc_typebound_proc and set specific for further use.  */
1462   struct gfc_symtree* specific_st;
1463   struct gfc_typebound_proc* specific;
1464 
1465   struct gfc_tbp_generic* next;
1466   bool is_operator;
1467 }
1468 gfc_tbp_generic;
1469 
1470 #define gfc_get_tbp_generic() XCNEW (gfc_tbp_generic)
1471 
1472 
1473 /* Data needed for type-bound procedures.  */
1474 typedef struct gfc_typebound_proc
1475 {
1476   locus where; /* Where the PROCEDURE/GENERIC definition was.  */
1477 
1478   union
1479   {
1480     struct gfc_symtree* specific; /* The interface if DEFERRED.  */
1481     gfc_tbp_generic* generic;
1482   }
1483   u;
1484 
1485   gfc_access access;
1486   const char* pass_arg; /* Argument-name for PASS.  NULL if not specified.  */
1487 
1488   /* The overridden type-bound proc (or GENERIC with this name in the
1489      parent-type) or NULL if non.  */
1490   struct gfc_typebound_proc* overridden;
1491 
1492   /* Once resolved, we use the position of pass_arg in the formal arglist of
1493      the binding-target procedure to identify it.  The first argument has
1494      number 1 here, the second 2, and so on.  */
1495   unsigned pass_arg_num;
1496 
1497   unsigned nopass:1; /* Whether we have NOPASS (PASS otherwise).  */
1498   unsigned non_overridable:1;
1499   unsigned deferred:1;
1500   unsigned is_generic:1;
1501   unsigned function:1, subroutine:1;
1502   unsigned error:1; /* Ignore it, when an error occurred during resolution.  */
1503   unsigned ppc:1;
1504 }
1505 gfc_typebound_proc;
1506 
1507 
1508 /* Symbol nodes.  These are important things.  They are what the
1509    standard refers to as "entities".  The possibly multiple names that
1510    refer to the same entity are accomplished by a binary tree of
1511    symtree structures that is balanced by the red-black method-- more
1512    than one symtree node can point to any given symbol.  */
1513 
1514 typedef struct gfc_symbol
1515 {
1516   const char *name;	/* Primary name, before renaming */
1517   const char *module;	/* Module this symbol came from */
1518   locus declared_at;
1519 
1520   gfc_typespec ts;
1521   symbol_attribute attr;
1522 
1523   /* The formal member points to the formal argument list if the
1524      symbol is a function or subroutine name.  If the symbol is a
1525      generic name, the generic member points to the list of
1526      interfaces.  */
1527 
1528   gfc_interface *generic;
1529   gfc_access component_access;
1530 
1531   gfc_formal_arglist *formal;
1532   struct gfc_namespace *formal_ns;
1533   struct gfc_namespace *f2k_derived;
1534 
1535   /* List of PDT parameter expressions  */
1536   struct gfc_actual_arglist *param_list;
1537 
1538   struct gfc_expr *value;	/* Parameter/Initializer value */
1539   gfc_array_spec *as;
1540   struct gfc_symbol *result;	/* function result symbol */
1541   gfc_component *components;	/* Derived type components */
1542 
1543   /* Defined only for Cray pointees; points to their pointer.  */
1544   struct gfc_symbol *cp_pointer;
1545 
1546   int entry_id;			/* Used in resolve.c for entries.  */
1547 
1548   /* CLASS hashed name for declared and dynamic types in the class.  */
1549   int hash_value;
1550 
1551   struct gfc_symbol *common_next;	/* Links for COMMON syms */
1552 
1553   /* This is only used for pointer comparisons to check if symbols
1554      are in the same common block.
1555      In opposition to common_block, the common_head pointer takes into account
1556      equivalences: if A is in a common block C and A and B are in equivalence,
1557      then both A and B have common_head pointing to C, while A's common_block
1558      points to C and B's is NULL.  */
1559   struct gfc_common_head* common_head;
1560 
1561   /* Make sure setup code for dummy arguments is generated in the correct
1562      order.  */
1563   int dummy_order;
1564 
1565   gfc_namelist *namelist, *namelist_tail;
1566 
1567   /* Change management fields.  Symbols that might be modified by the
1568      current statement have the mark member nonzero.  Of these symbols,
1569      symbols with old_symbol equal to NULL are symbols created within
1570      the current statement.  Otherwise, old_symbol points to a copy of
1571      the old symbol. gfc_new is used in symbol.c to flag new symbols.  */
1572   struct gfc_symbol *old_symbol;
1573   unsigned mark:1, gfc_new:1;
1574 
1575   /* The tlink field is used in the front end to carry the module
1576      declaration of separate module procedures so that the characteristics
1577      can be compared with the corresponding declaration in a submodule. In
1578      translation this field carries a linked list of symbols that require
1579      deferred initialization.  */
1580   struct gfc_symbol *tlink;
1581 
1582   /* Nonzero if all equivalences associated with this symbol have been
1583      processed.  */
1584   unsigned equiv_built:1;
1585   /* Set if this variable is used as an index name in a FORALL.  */
1586   unsigned forall_index:1;
1587   /* Set if the symbol is used in a function result specification .  */
1588   unsigned fn_result_spec:1;
1589   /* Used to avoid multiple resolutions of a single symbol.  */
1590   unsigned resolved:1;
1591   /* Set if this is a module function or subroutine with the
1592      abreviated declaration in a submodule.  */
1593   unsigned abr_modproc_decl:1;
1594 
1595   int refs;
1596   struct gfc_namespace *ns;	/* namespace containing this symbol */
1597 
1598   tree backend_decl;
1599 
1600   /* Identity of the intrinsic module the symbol comes from, or
1601      INTMOD_NONE if it's not imported from a intrinsic module.  */
1602   intmod_id from_intmod;
1603   /* Identity of the symbol from intrinsic modules, from enums maintained
1604      separately by each intrinsic module.  Used together with from_intmod,
1605      it uniquely identifies a symbol from an intrinsic module.  */
1606   int intmod_sym_id;
1607 
1608   /* This may be repetitive, since the typespec now has a binding
1609      label field.  */
1610   const char* binding_label;
1611   /* Store a reference to the common_block, if this symbol is in one.  */
1612   struct gfc_common_head *common_block;
1613 
1614   /* Link to corresponding association-list if this is an associate name.  */
1615   struct gfc_association_list *assoc;
1616 }
1617 gfc_symbol;
1618 
1619 
1620 struct gfc_undo_change_set
1621 {
1622   vec<gfc_symbol *> syms;
1623   vec<gfc_typebound_proc *> tbps;
1624   gfc_undo_change_set *previous;
1625 };
1626 
1627 
1628 /* This structure is used to keep track of symbols in common blocks.  */
1629 typedef struct gfc_common_head
1630 {
1631   locus where;
1632   char use_assoc, saved, threadprivate;
1633   unsigned char omp_declare_target : 1;
1634   unsigned char omp_declare_target_link : 1;
1635   char name[GFC_MAX_SYMBOL_LEN + 1];
1636   struct gfc_symbol *head;
1637   const char* binding_label;
1638   int is_bind_c;
1639   int refs;
1640 }
1641 gfc_common_head;
1642 
1643 #define gfc_get_common_head() XCNEW (gfc_common_head)
1644 
1645 
1646 /* A list of all the alternate entry points for a procedure.  */
1647 
1648 typedef struct gfc_entry_list
1649 {
1650   /* The symbol for this entry point.  */
1651   gfc_symbol *sym;
1652   /* The zero-based id of this entry point.  */
1653   int id;
1654   /* The LABEL_EXPR marking this entry point.  */
1655   tree label;
1656   /* The next item in the list.  */
1657   struct gfc_entry_list *next;
1658 }
1659 gfc_entry_list;
1660 
1661 #define gfc_get_entry_list() XCNEW (gfc_entry_list)
1662 
1663 /* Lists of rename info for the USE statement.  */
1664 
1665 typedef struct gfc_use_rename
1666 {
1667   char local_name[GFC_MAX_SYMBOL_LEN + 1], use_name[GFC_MAX_SYMBOL_LEN + 1];
1668   struct gfc_use_rename *next;
1669   int found;
1670   gfc_intrinsic_op op;
1671   locus where;
1672 }
1673 gfc_use_rename;
1674 
1675 #define gfc_get_use_rename() XCNEW (gfc_use_rename);
1676 
1677 /* A list of all USE statements in a namespace.  */
1678 
1679 typedef struct gfc_use_list
1680 {
1681   const char *module_name;
1682   const char *submodule_name;
1683   bool intrinsic;
1684   bool non_intrinsic;
1685   bool only_flag;
1686   struct gfc_use_rename *rename;
1687   locus where;
1688   /* Next USE statement.  */
1689   struct gfc_use_list *next;
1690 }
1691 gfc_use_list;
1692 
1693 #define gfc_get_use_list() XCNEW (gfc_use_list)
1694 
1695 /* Within a namespace, symbols are pointed to by symtree nodes that
1696    are linked together in a balanced binary tree.  There can be
1697    several symtrees pointing to the same symbol node via USE
1698    statements.  */
1699 
1700 typedef struct gfc_symtree
1701 {
1702   BBT_HEADER (gfc_symtree);
1703   const char *name;
1704   int ambiguous;
1705   union
1706   {
1707     gfc_symbol *sym;		/* Symbol associated with this node */
1708     gfc_user_op *uop;
1709     gfc_common_head *common;
1710     gfc_typebound_proc *tb;
1711     gfc_omp_udr *omp_udr;
1712   }
1713   n;
1714 }
1715 gfc_symtree;
1716 
1717 /* A linked list of derived types in the namespace.  */
1718 typedef struct gfc_dt_list
1719 {
1720   struct gfc_symbol *derived;
1721   struct gfc_dt_list *next;
1722 }
1723 gfc_dt_list;
1724 
1725 #define gfc_get_dt_list() XCNEW (gfc_dt_list)
1726 
1727   /* A list of all derived types.  */
1728   extern gfc_dt_list *gfc_derived_types;
1729 
1730 typedef struct gfc_oacc_routine_name
1731 {
1732   struct gfc_symbol *sym;
1733   struct gfc_omp_clauses *clauses;
1734   struct gfc_oacc_routine_name *next;
1735 }
1736 gfc_oacc_routine_name;
1737 
1738 #define gfc_get_oacc_routine_name() XCNEW (gfc_oacc_routine_name)
1739 
1740 /* A namespace describes the contents of procedure, module, interface block
1741    or BLOCK construct.  */
1742 /* ??? Anything else use these?  */
1743 
1744 typedef struct gfc_namespace
1745 {
1746   /* Tree containing all the symbols in this namespace.  */
1747   gfc_symtree *sym_root;
1748   /* Tree containing all the user-defined operators in the namespace.  */
1749   gfc_symtree *uop_root;
1750   /* Tree containing all the common blocks.  */
1751   gfc_symtree *common_root;
1752   /* Tree containing all the OpenMP user defined reductions.  */
1753   gfc_symtree *omp_udr_root;
1754 
1755   /* Tree containing type-bound procedures.  */
1756   gfc_symtree *tb_sym_root;
1757   /* Type-bound user operators.  */
1758   gfc_symtree *tb_uop_root;
1759   /* For derived-types, store type-bound intrinsic operators here.  */
1760   gfc_typebound_proc *tb_op[GFC_INTRINSIC_OPS];
1761   /* Linked list of finalizer procedures.  */
1762   struct gfc_finalizer *finalizers;
1763 
1764   /* If set_flag[letter] is set, an implicit type has been set for letter.  */
1765   int set_flag[GFC_LETTERS];
1766   /* Keeps track of the implicit types associated with the letters.  */
1767   gfc_typespec default_type[GFC_LETTERS];
1768   /* Store the positions of IMPLICIT statements.  */
1769   locus implicit_loc[GFC_LETTERS];
1770 
1771   /* If this is a namespace of a procedure, this points to the procedure.  */
1772   struct gfc_symbol *proc_name;
1773   /* If this is the namespace of a unit which contains executable
1774      code, this points to it.  */
1775   struct gfc_code *code;
1776 
1777   /* Points to the equivalences set up in this namespace.  */
1778   struct gfc_equiv *equiv, *old_equiv;
1779 
1780   /* Points to the equivalence groups produced by trans_common.  */
1781   struct gfc_equiv_list *equiv_lists;
1782 
1783   gfc_interface *op[GFC_INTRINSIC_OPS];
1784 
1785   /* Points to the parent namespace, i.e. the namespace of a module or
1786      procedure in which the procedure belonging to this namespace is
1787      contained. The parent namespace points to this namespace either
1788      directly via CONTAINED, or indirectly via the chain built by
1789      SIBLING.  */
1790   struct gfc_namespace *parent;
1791   /* CONTAINED points to the first contained namespace. Sibling
1792      namespaces are chained via SIBLING.  */
1793   struct gfc_namespace  *contained, *sibling;
1794 
1795   gfc_common_head blank_common;
1796   gfc_access default_access, operator_access[GFC_INTRINSIC_OPS];
1797 
1798   gfc_st_label *st_labels;
1799   /* This list holds information about all the data initializers in
1800      this namespace.  */
1801   struct gfc_data *data, *old_data;
1802 
1803   /* !$ACC DECLARE.  */
1804   gfc_oacc_declare *oacc_declare;
1805 
1806   /* !$ACC ROUTINE clauses.  */
1807   gfc_omp_clauses *oacc_routine_clauses;
1808 
1809   /* !$ACC ROUTINE names.  */
1810   gfc_oacc_routine_name *oacc_routine_names;
1811 
1812   gfc_charlen *cl_list;
1813 
1814   gfc_dt_list *derived_types;
1815 
1816   int save_all, seen_save, seen_implicit_none;
1817 
1818   /* Normally we don't need to refcount namespaces.  However when we read
1819      a module containing a function with multiple entry points, this
1820      will appear as several functions with the same formal namespace.  */
1821   int refs;
1822 
1823   /* A list of all alternate entry points to this procedure (or NULL).  */
1824   gfc_entry_list *entries;
1825 
1826   /* A list of USE statements in this namespace.  */
1827   gfc_use_list *use_stmts;
1828 
1829   /* Linked list of !$omp declare simd constructs.  */
1830   struct gfc_omp_declare_simd *omp_declare_simd;
1831 
1832   /* Set to 1 if namespace is a BLOCK DATA program unit.  */
1833   unsigned is_block_data:1;
1834 
1835   /* Set to 1 if namespace is an interface body with "IMPORT" used.  */
1836   unsigned has_import_set:1;
1837 
1838   /* Set to 1 if the namespace uses "IMPLICT NONE (export)".  */
1839   unsigned has_implicit_none_export:1;
1840 
1841   /* Set to 1 if resolved has been called for this namespace.
1842      Holds -1 during resolution.  */
1843   signed resolved:2;
1844 
1845   /* Set when resolve_types has been called for this namespace.  */
1846   unsigned types_resolved:1;
1847 
1848   /* Set to 1 if code has been generated for this namespace.  */
1849   unsigned translated:1;
1850 
1851   /* Set to 1 if symbols in this namespace should be 'construct entities',
1852      i.e. for BLOCK local variables.  */
1853   unsigned construct_entities:1;
1854 
1855   /* Set to 1 for !$OMP DECLARE REDUCTION namespaces.  */
1856   unsigned omp_udr_ns:1;
1857 
1858   /* Set to 1 for !$ACC ROUTINE namespaces.  */
1859   unsigned oacc_routine:1;
1860 
1861   /* Set to 1 if there are any calls to procedures with implicit interface.  */
1862   unsigned implicit_interface_calls:1;
1863 }
1864 gfc_namespace;
1865 
1866 extern gfc_namespace *gfc_current_ns;
1867 extern gfc_namespace *gfc_global_ns_list;
1868 
1869 /* Global symbols are symbols of global scope. Currently we only use
1870    this to detect collisions already when parsing.
1871    TODO: Extend to verify procedure calls.  */
1872 
1873 enum gfc_symbol_type
1874 {
1875   GSYM_UNKNOWN=1, GSYM_PROGRAM, GSYM_FUNCTION, GSYM_SUBROUTINE,
1876   GSYM_MODULE, GSYM_COMMON, GSYM_BLOCK_DATA
1877 };
1878 
1879 typedef struct gfc_gsymbol
1880 {
1881   BBT_HEADER(gfc_gsymbol);
1882 
1883   const char *name;
1884   const char *sym_name;
1885   const char *mod_name;
1886   const char *binding_label;
1887   enum gfc_symbol_type type;
1888 
1889   int defined, used;
1890   bool bind_c;
1891   locus where;
1892   gfc_namespace *ns;
1893 }
1894 gfc_gsymbol;
1895 
1896 extern gfc_gsymbol *gfc_gsym_root;
1897 
1898 /* Information on interfaces being built.  */
1899 typedef struct
1900 {
1901   interface_type type;
1902   gfc_symbol *sym;
1903   gfc_namespace *ns;
1904   gfc_user_op *uop;
1905   gfc_intrinsic_op op;
1906 }
1907 gfc_interface_info;
1908 
1909 extern gfc_interface_info current_interface;
1910 
1911 
1912 /* Array reference.  */
1913 
1914 enum gfc_array_ref_dimen_type
1915 {
1916   DIMEN_ELEMENT = 1, DIMEN_RANGE, DIMEN_VECTOR, DIMEN_STAR, DIMEN_THIS_IMAGE, DIMEN_UNKNOWN
1917 };
1918 
1919 typedef struct gfc_array_ref
1920 {
1921   ar_type type;
1922   int dimen;			/* # of components in the reference */
1923   int codimen;
1924   bool in_allocate;		/* For coarray checks. */
1925   gfc_expr *team;
1926   gfc_expr *stat;
1927   locus where;
1928   gfc_array_spec *as;
1929 
1930   locus c_where[GFC_MAX_DIMENSIONS];	/* All expressions can be NULL */
1931   struct gfc_expr *start[GFC_MAX_DIMENSIONS], *end[GFC_MAX_DIMENSIONS],
1932     *stride[GFC_MAX_DIMENSIONS];
1933 
1934   enum gfc_array_ref_dimen_type dimen_type[GFC_MAX_DIMENSIONS];
1935 }
1936 gfc_array_ref;
1937 
1938 #define gfc_get_array_ref() XCNEW (gfc_array_ref)
1939 
1940 
1941 /* Component reference nodes.  A variable is stored as an expression
1942    node that points to the base symbol.  After that, a singly linked
1943    list of component reference nodes gives the variable's complete
1944    resolution.  The array_ref component may be present and comes
1945    before the component component.  */
1946 
1947 enum ref_type
1948   { REF_ARRAY, REF_COMPONENT, REF_SUBSTRING };
1949 
1950 typedef struct gfc_ref
1951 {
1952   ref_type type;
1953 
1954   union
1955   {
1956     struct gfc_array_ref ar;
1957 
1958     struct
1959     {
1960       gfc_component *component;
1961       gfc_symbol *sym;
1962     }
1963     c;
1964 
1965     struct
1966     {
1967       struct gfc_expr *start, *end;	/* Substring */
1968       gfc_charlen *length;
1969     }
1970     ss;
1971 
1972   }
1973   u;
1974 
1975   struct gfc_ref *next;
1976 }
1977 gfc_ref;
1978 
1979 #define gfc_get_ref() XCNEW (gfc_ref)
1980 
1981 
1982 /* Structures representing intrinsic symbols and their arguments lists.  */
1983 typedef struct gfc_intrinsic_arg
1984 {
1985   char name[GFC_MAX_SYMBOL_LEN + 1];
1986 
1987   gfc_typespec ts;
1988   unsigned optional:1, value:1;
1989   ENUM_BITFIELD (sym_intent) intent:2;
1990   gfc_actual_arglist *actual;
1991 
1992   struct gfc_intrinsic_arg *next;
1993 
1994 }
1995 gfc_intrinsic_arg;
1996 
1997 
1998 /* Specifies the various kinds of check functions used to verify the
1999    argument lists of intrinsic functions. fX with X an integer refer
2000    to check functions of intrinsics with X arguments. f1m is used for
2001    the MAX and MIN intrinsics which can have an arbitrary number of
2002    arguments, f4ml is used for the MINLOC and MAXLOC intrinsics as
2003    these have special semantics.  */
2004 
2005 typedef union
2006 {
2007   bool (*f0)(void);
2008   bool (*f1)(struct gfc_expr *);
2009   bool (*f1m)(gfc_actual_arglist *);
2010   bool (*f2)(struct gfc_expr *, struct gfc_expr *);
2011   bool (*f3)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *);
2012   bool (*f5ml)(gfc_actual_arglist *);
2013   bool (*f3red)(gfc_actual_arglist *);
2014   bool (*f4)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
2015 	    struct gfc_expr *);
2016   bool (*f5)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
2017 	    struct gfc_expr *, struct gfc_expr *);
2018 }
2019 gfc_check_f;
2020 
2021 /* Like gfc_check_f, these specify the type of the simplification
2022    function associated with an intrinsic. The fX are just like in
2023    gfc_check_f. cc is used for type conversion functions.  */
2024 
2025 typedef union
2026 {
2027   struct gfc_expr *(*f0)(void);
2028   struct gfc_expr *(*f1)(struct gfc_expr *);
2029   struct gfc_expr *(*f2)(struct gfc_expr *, struct gfc_expr *);
2030   struct gfc_expr *(*f3)(struct gfc_expr *, struct gfc_expr *,
2031 			 struct gfc_expr *);
2032   struct gfc_expr *(*f4)(struct gfc_expr *, struct gfc_expr *,
2033 			 struct gfc_expr *, struct gfc_expr *);
2034   struct gfc_expr *(*f5)(struct gfc_expr *, struct gfc_expr *,
2035 			 struct gfc_expr *, struct gfc_expr *,
2036 			 struct gfc_expr *);
2037   struct gfc_expr *(*cc)(struct gfc_expr *, bt, int);
2038 }
2039 gfc_simplify_f;
2040 
2041 /* Again like gfc_check_f, these specify the type of the resolution
2042    function associated with an intrinsic. The fX are just like in
2043    gfc_check_f. f1m is used for MIN and MAX, s1 is used for abort().  */
2044 
2045 typedef union
2046 {
2047   void (*f0)(struct gfc_expr *);
2048   void (*f1)(struct gfc_expr *, struct gfc_expr *);
2049   void (*f1m)(struct gfc_expr *, struct gfc_actual_arglist *);
2050   void (*f2)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *);
2051   void (*f3)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
2052 	     struct gfc_expr *);
2053   void (*f4)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
2054 	     struct gfc_expr *, struct gfc_expr *);
2055   void (*f5)(struct gfc_expr *, struct gfc_expr *, struct gfc_expr *,
2056 	     struct gfc_expr *, struct gfc_expr *, struct gfc_expr *);
2057   void (*s1)(struct gfc_code *);
2058 }
2059 gfc_resolve_f;
2060 
2061 
2062 typedef struct gfc_intrinsic_sym
2063 {
2064   const char *name, *lib_name;
2065   gfc_intrinsic_arg *formal;
2066   gfc_typespec ts;
2067   unsigned elemental:1, inquiry:1, transformational:1, pure:1,
2068     generic:1, specific:1, actual_ok:1, noreturn:1, conversion:1,
2069     from_module:1, vararg:1;
2070 
2071   int standard;
2072 
2073   gfc_simplify_f simplify;
2074   gfc_check_f check;
2075   gfc_resolve_f resolve;
2076   struct gfc_intrinsic_sym *specific_head, *next;
2077   gfc_isym_id id;
2078 
2079 }
2080 gfc_intrinsic_sym;
2081 
2082 
2083 /* Expression nodes.  The expression node types deserve explanations,
2084    since the last couple can be easily misconstrued:
2085 
2086    EXPR_OP         Operator node pointing to one or two other nodes
2087    EXPR_FUNCTION   Function call, symbol points to function's name
2088    EXPR_CONSTANT   A scalar constant: Logical, String, Real, Int or Complex
2089    EXPR_VARIABLE   An Lvalue with a root symbol and possible reference list
2090 		   which expresses structure, array and substring refs.
2091    EXPR_NULL       The NULL pointer value (which also has a basic type).
2092    EXPR_SUBSTRING  A substring of a constant string
2093    EXPR_STRUCTURE  A structure constructor
2094    EXPR_ARRAY      An array constructor.
2095    EXPR_COMPCALL   Function (or subroutine) call of a procedure pointer
2096 		   component or type-bound procedure.  */
2097 
2098 #include <mpfr.h>
2099 #include <mpc.h>
2100 #define GFC_RND_MODE GMP_RNDN
2101 #define GFC_MPC_RND_MODE MPC_RNDNN
2102 
2103 typedef splay_tree gfc_constructor_base;
2104 
2105 
2106 /* This should be an unsigned variable of type size_t.  But to handle
2107    compiling to a 64-bit target from a 32-bit host, we need to use a
2108    HOST_WIDE_INT.  Also, occasionally the string length field is used
2109    as a flag with values -1 and -2, see e.g. gfc_add_assign_aux_vars.
2110    So it needs to be signed.  */
2111 typedef HOST_WIDE_INT gfc_charlen_t;
2112 
2113 typedef struct gfc_expr
2114 {
2115   expr_t expr_type;
2116 
2117   gfc_typespec ts;	/* These two refer to the overall expression */
2118 
2119   int rank;		/* 0 indicates a scalar, -1 an assumed-rank array.  */
2120   mpz_t *shape;		/* Can be NULL if shape is unknown at compile time */
2121 
2122   /* Nonnull for functions and structure constructors, may also used to hold the
2123      base-object for component calls.  */
2124   gfc_symtree *symtree;
2125 
2126   gfc_ref *ref;
2127 
2128   locus where;
2129 
2130   /* Used to store the base expression in component calls, when the expression
2131      is not a variable.  */
2132   struct gfc_expr *base_expr;
2133 
2134   /* is_boz is true if the integer is regarded as BOZ bit pattern and is_snan
2135      denotes a signalling not-a-number.  */
2136   unsigned int is_boz : 1, is_snan : 1;
2137 
2138   /* Sometimes, when an error has been emitted, it is necessary to prevent
2139       it from recurring.  */
2140   unsigned int error : 1;
2141 
2142   /* Mark an expression where a user operator has been substituted by
2143      a function call in interface.c(gfc_extend_expr).  */
2144   unsigned int user_operator : 1;
2145 
2146   /* Mark an expression as being a MOLD argument of ALLOCATE.  */
2147   unsigned int mold : 1;
2148 
2149   /* Will require finalization after use.  */
2150   unsigned int must_finalize : 1;
2151 
2152   /* Set this if no warning should be given somewhere in a lower level.  */
2153 
2154   unsigned int do_not_warn : 1;
2155   /* If an expression comes from a Hollerith constant or compile-time
2156      evaluation of a transfer statement, it may have a prescribed target-
2157      memory representation, and these cannot always be backformed from
2158      the value.  */
2159   struct
2160   {
2161     gfc_charlen_t length;
2162     char *string;
2163   }
2164   representation;
2165 
2166   union
2167   {
2168     int logical;
2169 
2170     io_kind iokind;
2171 
2172     mpz_t integer;
2173 
2174     mpfr_t real;
2175 
2176     mpc_t complex;
2177 
2178     struct
2179     {
2180       gfc_intrinsic_op op;
2181       gfc_user_op *uop;
2182       struct gfc_expr *op1, *op2;
2183     }
2184     op;
2185 
2186     struct
2187     {
2188       gfc_actual_arglist *actual;
2189       const char *name;	/* Points to the ultimate name of the function */
2190       gfc_intrinsic_sym *isym;
2191       gfc_symbol *esym;
2192     }
2193     function;
2194 
2195     struct
2196     {
2197       gfc_actual_arglist* actual;
2198       const char* name;
2199       /* Base-object, whose component was called.  NULL means that it should
2200 	 be taken from symtree/ref.  */
2201       struct gfc_expr* base_object;
2202       gfc_typebound_proc* tbp; /* Should overlap with esym.  */
2203 
2204       /* For type-bound operators, we want to call PASS procedures but already
2205 	 have the full arglist; mark this, so that it is not extended by the
2206 	 PASS argument.  */
2207       unsigned ignore_pass:1;
2208 
2209       /* Do assign-calls rather than calls, that is appropriate dependency
2210 	 checking.  */
2211       unsigned assign:1;
2212     }
2213     compcall;
2214 
2215     struct
2216     {
2217       gfc_charlen_t length;
2218       gfc_char_t *string;
2219     }
2220     character;
2221 
2222     gfc_constructor_base constructor;
2223   }
2224   value;
2225 
2226   /* Used to store PDT expression lists associated with expressions.  */
2227   gfc_actual_arglist *param_list;
2228 
2229 }
2230 gfc_expr;
2231 
2232 
2233 #define gfc_get_shape(rank) (XCNEWVEC (mpz_t, (rank)))
2234 
2235 /* Structures for information associated with different kinds of
2236    numbers.  The first set of integer parameters define all there is
2237    to know about a particular kind.  The rest of the elements are
2238    computed from the first elements.  */
2239 
2240 typedef struct
2241 {
2242   /* Values really representable by the target.  */
2243   mpz_t huge, pedantic_min_int, min_int;
2244 
2245   int kind, radix, digits, bit_size, range;
2246 
2247   /* True if the C type of the given name maps to this precision.
2248      Note that more than one bit can be set.  */
2249   unsigned int c_char : 1;
2250   unsigned int c_short : 1;
2251   unsigned int c_int : 1;
2252   unsigned int c_long : 1;
2253   unsigned int c_long_long : 1;
2254 }
2255 gfc_integer_info;
2256 
2257 extern gfc_integer_info gfc_integer_kinds[];
2258 
2259 
2260 typedef struct
2261 {
2262   int kind, bit_size;
2263 
2264   /* True if the C++ type bool, C99 type _Bool, maps to this precision.  */
2265   unsigned int c_bool : 1;
2266 }
2267 gfc_logical_info;
2268 
2269 extern gfc_logical_info gfc_logical_kinds[];
2270 
2271 
2272 typedef struct
2273 {
2274   mpfr_t epsilon, huge, tiny, subnormal;
2275   int kind, radix, digits, min_exponent, max_exponent;
2276   int range, precision;
2277 
2278   /* The precision of the type as reported by GET_MODE_PRECISION.  */
2279   int mode_precision;
2280 
2281   /* True if the C type of the given name maps to this precision.
2282      Note that more than one bit can be set.  */
2283   unsigned int c_float : 1;
2284   unsigned int c_double : 1;
2285   unsigned int c_long_double : 1;
2286   unsigned int c_float128 : 1;
2287 }
2288 gfc_real_info;
2289 
2290 extern gfc_real_info gfc_real_kinds[];
2291 
2292 typedef struct
2293 {
2294   int kind, bit_size;
2295   const char *name;
2296 }
2297 gfc_character_info;
2298 
2299 extern gfc_character_info gfc_character_kinds[];
2300 
2301 
2302 /* Equivalence structures.  Equivalent lvalues are linked along the
2303    *eq pointer, equivalence sets are strung along the *next node.  */
2304 typedef struct gfc_equiv
2305 {
2306   struct gfc_equiv *next, *eq;
2307   gfc_expr *expr;
2308   const char *module;
2309   int used;
2310 }
2311 gfc_equiv;
2312 
2313 #define gfc_get_equiv() XCNEW (gfc_equiv)
2314 
2315 /* Holds a single equivalence member after processing.  */
2316 typedef struct gfc_equiv_info
2317 {
2318   gfc_symbol *sym;
2319   HOST_WIDE_INT offset;
2320   HOST_WIDE_INT length;
2321   struct gfc_equiv_info *next;
2322 } gfc_equiv_info;
2323 
2324 /* Holds equivalence groups, after they have been processed.  */
2325 typedef struct gfc_equiv_list
2326 {
2327   gfc_equiv_info *equiv;
2328   struct gfc_equiv_list *next;
2329 } gfc_equiv_list;
2330 
2331 /* gfc_case stores the selector list of a case statement.  The *low
2332    and *high pointers can point to the same expression in the case of
2333    a single value.  If *high is NULL, the selection is from *low
2334    upwards, if *low is NULL the selection is *high downwards.
2335 
2336    This structure has separate fields to allow single and double linked
2337    lists of CASEs at the same time.  The singe linked list along the NEXT
2338    field is a list of cases for a single CASE label.  The double linked
2339    list along the LEFT/RIGHT fields is used to detect overlap and to
2340    build a table of the cases for SELECT constructs with a CHARACTER
2341    case expression.  */
2342 
2343 typedef struct gfc_case
2344 {
2345   /* Where we saw this case.  */
2346   locus where;
2347   int n;
2348 
2349   /* Case range values.  If (low == high), it's a single value.  If one of
2350      the labels is NULL, it's an unbounded case.  If both are NULL, this
2351      represents the default case.  */
2352   gfc_expr *low, *high;
2353 
2354   /* Only used for SELECT TYPE.  */
2355   gfc_typespec ts;
2356 
2357   /* Next case label in the list of cases for a single CASE label.  */
2358   struct gfc_case *next;
2359 
2360   /* Used for detecting overlap, and for code generation.  */
2361   struct gfc_case *left, *right;
2362 
2363   /* True if this case label can never be matched.  */
2364   int unreachable;
2365 }
2366 gfc_case;
2367 
2368 #define gfc_get_case() XCNEW (gfc_case)
2369 
2370 
2371 typedef struct
2372 {
2373   gfc_expr *var, *start, *end, *step;
2374   unsigned short unroll;
2375 }
2376 gfc_iterator;
2377 
2378 #define gfc_get_iterator() XCNEW (gfc_iterator)
2379 
2380 
2381 /* Allocation structure for ALLOCATE, DEALLOCATE and NULLIFY statements.  */
2382 
2383 typedef struct gfc_alloc
2384 {
2385   gfc_expr *expr;
2386   struct gfc_alloc *next;
2387 }
2388 gfc_alloc;
2389 
2390 #define gfc_get_alloc() XCNEW (gfc_alloc)
2391 
2392 
2393 typedef struct
2394 {
2395   gfc_expr *unit, *file, *status, *access, *form, *recl,
2396     *blank, *position, *action, *delim, *pad, *iostat, *iomsg, *convert,
2397     *decimal, *encoding, *round, *sign, *asynchronous, *id, *newunit,
2398     *share, *cc;
2399   char readonly;
2400   gfc_st_label *err;
2401 }
2402 gfc_open;
2403 
2404 
2405 typedef struct
2406 {
2407   gfc_expr *unit, *status, *iostat, *iomsg;
2408   gfc_st_label *err;
2409 }
2410 gfc_close;
2411 
2412 
2413 typedef struct
2414 {
2415   gfc_expr *unit, *iostat, *iomsg;
2416   gfc_st_label *err;
2417 }
2418 gfc_filepos;
2419 
2420 
2421 typedef struct
2422 {
2423   gfc_expr *unit, *file, *iostat, *exist, *opened, *number, *named,
2424     *name, *access, *sequential, *direct, *form, *formatted,
2425     *unformatted, *recl, *nextrec, *blank, *position, *action, *read,
2426     *write, *readwrite, *delim, *pad, *iolength, *iomsg, *convert, *strm_pos,
2427     *asynchronous, *decimal, *encoding, *pending, *round, *sign, *size, *id,
2428     *iqstream, *share, *cc;
2429 
2430   gfc_st_label *err;
2431 
2432 }
2433 gfc_inquire;
2434 
2435 
2436 typedef struct
2437 {
2438   gfc_expr *unit, *iostat, *iomsg, *id;
2439   gfc_st_label *err, *end, *eor;
2440 }
2441 gfc_wait;
2442 
2443 
2444 typedef struct
2445 {
2446   gfc_expr *io_unit, *format_expr, *rec, *advance, *iostat, *size, *iomsg,
2447 	   *id, *pos, *asynchronous, *blank, *decimal, *delim, *pad, *round,
2448 	   *sign, *extra_comma, *dt_io_kind, *udtio;
2449   char dec_ext;
2450 
2451   gfc_symbol *namelist;
2452   /* A format_label of `format_asterisk' indicates the "*" format */
2453   gfc_st_label *format_label;
2454   gfc_st_label *err, *end, *eor;
2455 
2456   locus eor_where, end_where, err_where;
2457 }
2458 gfc_dt;
2459 
2460 
2461 typedef struct gfc_forall_iterator
2462 {
2463   gfc_expr *var, *start, *end, *stride;
2464   struct gfc_forall_iterator *next;
2465 }
2466 gfc_forall_iterator;
2467 
2468 
2469 /* Linked list to store associations in an ASSOCIATE statement.  */
2470 
2471 typedef struct gfc_association_list
2472 {
2473   struct gfc_association_list *next;
2474 
2475   /* Whether this is association to a variable that can be changed; otherwise,
2476      it's association to an expression and the name may not be used as
2477      lvalue.  */
2478   unsigned variable:1;
2479 
2480   /* True if this struct is currently only linked to from a gfc_symbol rather
2481      than as part of a real list in gfc_code->ext.block.assoc.  This may
2482      happen for SELECT TYPE temporaries and must be considered
2483      for memory handling.  */
2484   unsigned dangling:1;
2485 
2486   /* True when the rank of the target expression is guessed during parsing.  */
2487   unsigned rankguessed:1;
2488 
2489   char name[GFC_MAX_SYMBOL_LEN + 1];
2490   gfc_symtree *st; /* Symtree corresponding to name.  */
2491   locus where;
2492 
2493   gfc_expr *target;
2494 }
2495 gfc_association_list;
2496 #define gfc_get_association_list() XCNEW (gfc_association_list)
2497 
2498 
2499 /* Executable statements that fill gfc_code structures.  */
2500 enum gfc_exec_op
2501 {
2502   EXEC_NOP = 1, EXEC_END_NESTED_BLOCK, EXEC_END_BLOCK, EXEC_ASSIGN,
2503   EXEC_LABEL_ASSIGN, EXEC_POINTER_ASSIGN, EXEC_CRITICAL, EXEC_ERROR_STOP,
2504   EXEC_GOTO, EXEC_CALL, EXEC_COMPCALL, EXEC_ASSIGN_CALL, EXEC_RETURN,
2505   EXEC_ENTRY, EXEC_PAUSE, EXEC_STOP, EXEC_CONTINUE, EXEC_INIT_ASSIGN,
2506   EXEC_IF, EXEC_ARITHMETIC_IF, EXEC_DO, EXEC_DO_CONCURRENT, EXEC_DO_WHILE,
2507   EXEC_SELECT, EXEC_BLOCK, EXEC_FORALL, EXEC_WHERE, EXEC_CYCLE, EXEC_EXIT,
2508   EXEC_CALL_PPC, EXEC_ALLOCATE, EXEC_DEALLOCATE, EXEC_END_PROCEDURE,
2509   EXEC_SELECT_TYPE, EXEC_SYNC_ALL, EXEC_SYNC_MEMORY, EXEC_SYNC_IMAGES,
2510   EXEC_OPEN, EXEC_CLOSE, EXEC_WAIT,
2511   EXEC_READ, EXEC_WRITE, EXEC_IOLENGTH, EXEC_TRANSFER, EXEC_DT_END,
2512   EXEC_BACKSPACE, EXEC_ENDFILE, EXEC_INQUIRE, EXEC_REWIND, EXEC_FLUSH,
2513   EXEC_FORM_TEAM, EXEC_CHANGE_TEAM, EXEC_END_TEAM, EXEC_SYNC_TEAM,
2514   EXEC_LOCK, EXEC_UNLOCK, EXEC_EVENT_POST, EXEC_EVENT_WAIT, EXEC_FAIL_IMAGE,
2515   EXEC_OACC_KERNELS_LOOP, EXEC_OACC_PARALLEL_LOOP, EXEC_OACC_ROUTINE,
2516   EXEC_OACC_PARALLEL, EXEC_OACC_KERNELS, EXEC_OACC_DATA, EXEC_OACC_HOST_DATA,
2517   EXEC_OACC_LOOP, EXEC_OACC_UPDATE, EXEC_OACC_WAIT, EXEC_OACC_CACHE,
2518   EXEC_OACC_ENTER_DATA, EXEC_OACC_EXIT_DATA, EXEC_OACC_ATOMIC,
2519   EXEC_OACC_DECLARE,
2520   EXEC_OMP_CRITICAL, EXEC_OMP_DO, EXEC_OMP_FLUSH, EXEC_OMP_MASTER,
2521   EXEC_OMP_ORDERED, EXEC_OMP_PARALLEL, EXEC_OMP_PARALLEL_DO,
2522   EXEC_OMP_PARALLEL_SECTIONS, EXEC_OMP_PARALLEL_WORKSHARE,
2523   EXEC_OMP_SECTIONS, EXEC_OMP_SINGLE, EXEC_OMP_WORKSHARE,
2524   EXEC_OMP_ATOMIC, EXEC_OMP_BARRIER, EXEC_OMP_END_NOWAIT,
2525   EXEC_OMP_END_SINGLE, EXEC_OMP_TASK, EXEC_OMP_TASKWAIT,
2526   EXEC_OMP_TASKYIELD, EXEC_OMP_CANCEL, EXEC_OMP_CANCELLATION_POINT,
2527   EXEC_OMP_TASKGROUP, EXEC_OMP_SIMD, EXEC_OMP_DO_SIMD,
2528   EXEC_OMP_PARALLEL_DO_SIMD, EXEC_OMP_TARGET, EXEC_OMP_TARGET_DATA,
2529   EXEC_OMP_TEAMS, EXEC_OMP_DISTRIBUTE, EXEC_OMP_DISTRIBUTE_SIMD,
2530   EXEC_OMP_DISTRIBUTE_PARALLEL_DO, EXEC_OMP_DISTRIBUTE_PARALLEL_DO_SIMD,
2531   EXEC_OMP_TARGET_TEAMS, EXEC_OMP_TEAMS_DISTRIBUTE,
2532   EXEC_OMP_TEAMS_DISTRIBUTE_SIMD, EXEC_OMP_TARGET_TEAMS_DISTRIBUTE,
2533   EXEC_OMP_TARGET_TEAMS_DISTRIBUTE_SIMD,
2534   EXEC_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO,
2535   EXEC_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO,
2536   EXEC_OMP_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
2537   EXEC_OMP_TARGET_TEAMS_DISTRIBUTE_PARALLEL_DO_SIMD,
2538   EXEC_OMP_TARGET_UPDATE, EXEC_OMP_END_CRITICAL,
2539   EXEC_OMP_TARGET_ENTER_DATA, EXEC_OMP_TARGET_EXIT_DATA,
2540   EXEC_OMP_TARGET_PARALLEL, EXEC_OMP_TARGET_PARALLEL_DO,
2541   EXEC_OMP_TARGET_PARALLEL_DO_SIMD, EXEC_OMP_TARGET_SIMD,
2542   EXEC_OMP_TASKLOOP, EXEC_OMP_TASKLOOP_SIMD
2543 };
2544 
2545 enum gfc_omp_atomic_op
2546 {
2547   GFC_OMP_ATOMIC_UPDATE = 0,
2548   GFC_OMP_ATOMIC_READ = 1,
2549   GFC_OMP_ATOMIC_WRITE = 2,
2550   GFC_OMP_ATOMIC_CAPTURE = 3,
2551   GFC_OMP_ATOMIC_MASK = 3,
2552   GFC_OMP_ATOMIC_SEQ_CST = 4,
2553   GFC_OMP_ATOMIC_SWAP = 8
2554 };
2555 
2556 typedef struct gfc_code
2557 {
2558   gfc_exec_op op;
2559 
2560   struct gfc_code *block, *next;
2561   locus loc;
2562 
2563   gfc_st_label *here, *label1, *label2, *label3;
2564   gfc_symtree *symtree;
2565   gfc_expr *expr1, *expr2, *expr3, *expr4;
2566   /* A name isn't sufficient to identify a subroutine, we need the actual
2567      symbol for the interface definition.
2568   const char *sub_name;  */
2569   gfc_symbol *resolved_sym;
2570   gfc_intrinsic_sym *resolved_isym;
2571 
2572   union
2573   {
2574     gfc_actual_arglist *actual;
2575     gfc_iterator *iterator;
2576 
2577     struct
2578     {
2579       gfc_typespec ts;
2580       gfc_alloc *list;
2581       /* Take the array specification from expr3 to allocate arrays
2582 	 without an explicit array specification.  */
2583       unsigned arr_spec_from_expr3:1;
2584     }
2585     alloc;
2586 
2587     struct
2588     {
2589       gfc_namespace *ns;
2590       gfc_association_list *assoc;
2591       gfc_case *case_list;
2592     }
2593     block;
2594 
2595     gfc_open *open;
2596     gfc_close *close;
2597     gfc_filepos *filepos;
2598     gfc_inquire *inquire;
2599     gfc_wait *wait;
2600     gfc_dt *dt;
2601     gfc_forall_iterator *forall_iterator;
2602     struct gfc_code *which_construct;
2603     int stop_code;
2604     gfc_entry_list *entry;
2605     gfc_oacc_declare *oacc_declare;
2606     gfc_omp_clauses *omp_clauses;
2607     const char *omp_name;
2608     gfc_omp_namelist *omp_namelist;
2609     bool omp_bool;
2610     gfc_omp_atomic_op omp_atomic;
2611   }
2612   ext;		/* Points to additional structures required by statement */
2613 
2614   /* Cycle and break labels in constructs.  */
2615   tree cycle_label;
2616   tree exit_label;
2617 }
2618 gfc_code;
2619 
2620 
2621 /* Storage for DATA statements.  */
2622 typedef struct gfc_data_variable
2623 {
2624   gfc_expr *expr;
2625   gfc_iterator iter;
2626   struct gfc_data_variable *list, *next;
2627 }
2628 gfc_data_variable;
2629 
2630 
2631 typedef struct gfc_data_value
2632 {
2633   mpz_t repeat;
2634   gfc_expr *expr;
2635   struct gfc_data_value *next;
2636 }
2637 gfc_data_value;
2638 
2639 
2640 typedef struct gfc_data
2641 {
2642   gfc_data_variable *var;
2643   gfc_data_value *value;
2644   locus where;
2645 
2646   struct gfc_data *next;
2647 }
2648 gfc_data;
2649 
2650 
2651 /* Structure for holding compile options */
2652 typedef struct
2653 {
2654   char *module_dir;
2655   gfc_source_form source_form;
2656   int max_continue_fixed;
2657   int max_continue_free;
2658   int max_identifier_length;
2659 
2660   int max_errors;
2661 
2662   int flag_preprocessed;
2663   int flag_d_lines;
2664   int flag_init_integer;
2665   int flag_init_integer_value;
2666   int flag_init_logical;
2667   int flag_init_character;
2668   char flag_init_character_value;
2669 
2670   int fpe;
2671   int fpe_summary;
2672   int rtcheck;
2673 
2674   int warn_std;
2675   int allow_std;
2676 }
2677 gfc_option_t;
2678 
2679 extern gfc_option_t gfc_option;
2680 
2681 /* Constructor nodes for array and structure constructors.  */
2682 typedef struct gfc_constructor
2683 {
2684   gfc_constructor_base base;
2685   mpz_t offset;               /* Offset within a constructor, used as
2686 				 key within base. */
2687 
2688   gfc_expr *expr;
2689   gfc_iterator *iterator;
2690   locus where;
2691 
2692   union
2693   {
2694      gfc_component *component; /* Record the component being initialized.  */
2695   }
2696   n;
2697   mpz_t repeat; /* Record the repeat number of initial values in data
2698 		  statement like "data a/5*10/".  */
2699 }
2700 gfc_constructor;
2701 
2702 
2703 typedef struct iterator_stack
2704 {
2705   gfc_symtree *variable;
2706   mpz_t value;
2707   struct iterator_stack *prev;
2708 }
2709 iterator_stack;
2710 extern iterator_stack *iter_stack;
2711 
2712 
2713 /* Used for (possibly nested) SELECT TYPE statements.  */
2714 typedef struct gfc_select_type_stack
2715 {
2716   gfc_symbol *selector;			/* Current selector variable.  */
2717   gfc_symtree *tmp;			/* Current temporary variable.  */
2718   struct gfc_select_type_stack *prev;	/* Previous element on stack.  */
2719 }
2720 gfc_select_type_stack;
2721 extern gfc_select_type_stack *select_type_stack;
2722 #define gfc_get_select_type_stack() XCNEW (gfc_select_type_stack)
2723 
2724 
2725 /* Node in the linked list used for storing finalizer procedures.  */
2726 
2727 typedef struct gfc_finalizer
2728 {
2729   struct gfc_finalizer* next;
2730   locus where; /* Where the FINAL declaration occurred.  */
2731 
2732   /* Up to resolution, we want the gfc_symbol, there we lookup the corresponding
2733      symtree and later need only that.  This way, we can access and call the
2734      finalizers from every context as they should be "always accessible".  I
2735      don't make this a union because we need the information whether proc_sym is
2736      still referenced or not for dereferencing it on deleting a gfc_finalizer
2737      structure.  */
2738   gfc_symbol*  proc_sym;
2739   gfc_symtree* proc_tree;
2740 }
2741 gfc_finalizer;
2742 #define gfc_get_finalizer() XCNEW (gfc_finalizer)
2743 
2744 
2745 /************************ Function prototypes *************************/
2746 
2747 /* decl.c */
2748 bool gfc_in_match_data (void);
2749 match gfc_match_char_spec (gfc_typespec *);
2750 extern int directive_unroll;
2751 
2752 /* Handling Parameterized Derived Types  */
2753 bool gfc_insert_kind_parameter_exprs (gfc_expr *);
2754 bool gfc_insert_parameter_exprs (gfc_expr *, gfc_actual_arglist *);
2755 match gfc_get_pdt_instance (gfc_actual_arglist *, gfc_symbol **,
2756 			    gfc_actual_arglist **);
2757 
2758 /* scanner.c */
2759 void gfc_scanner_done_1 (void);
2760 void gfc_scanner_init_1 (void);
2761 
2762 void gfc_add_include_path (const char *, bool, bool, bool);
2763 void gfc_add_intrinsic_modules_path (const char *);
2764 void gfc_release_include_path (void);
2765 FILE *gfc_open_included_file (const char *, bool, bool);
2766 
2767 int gfc_at_end (void);
2768 int gfc_at_eof (void);
2769 int gfc_at_bol (void);
2770 int gfc_at_eol (void);
2771 void gfc_advance_line (void);
2772 int gfc_check_include (void);
2773 int gfc_define_undef_line (void);
2774 
2775 int gfc_wide_is_printable (gfc_char_t);
2776 int gfc_wide_is_digit (gfc_char_t);
2777 int gfc_wide_fits_in_byte (gfc_char_t);
2778 gfc_char_t gfc_wide_tolower (gfc_char_t);
2779 gfc_char_t gfc_wide_toupper (gfc_char_t);
2780 size_t gfc_wide_strlen (const gfc_char_t *);
2781 int gfc_wide_strncasecmp (const gfc_char_t *, const char *, size_t);
2782 gfc_char_t *gfc_wide_memset (gfc_char_t *, gfc_char_t, size_t);
2783 char *gfc_widechar_to_char (const gfc_char_t *, int);
2784 gfc_char_t *gfc_char_to_widechar (const char *);
2785 
2786 #define gfc_get_wide_string(n) XCNEWVEC (gfc_char_t, n)
2787 
2788 void gfc_skip_comments (void);
2789 gfc_char_t gfc_next_char_literal (gfc_instring);
2790 gfc_char_t gfc_next_char (void);
2791 char gfc_next_ascii_char (void);
2792 gfc_char_t gfc_peek_char (void);
2793 char gfc_peek_ascii_char (void);
2794 void gfc_error_recovery (void);
2795 void gfc_gobble_whitespace (void);
2796 bool gfc_new_file (void);
2797 const char * gfc_read_orig_filename (const char *, const char **);
2798 
2799 extern gfc_source_form gfc_current_form;
2800 extern const char *gfc_source_file;
2801 extern locus gfc_current_locus;
2802 
2803 void gfc_start_source_files (void);
2804 void gfc_end_source_files (void);
2805 
2806 /* misc.c */
2807 void gfc_clear_ts (gfc_typespec *);
2808 FILE *gfc_open_file (const char *);
2809 const char *gfc_basic_typename (bt);
2810 const char *gfc_typename (gfc_typespec *);
2811 const char *gfc_op2string (gfc_intrinsic_op);
2812 const char *gfc_code2string (const mstring *, int);
2813 int gfc_string2code (const mstring *, const char *);
2814 const char *gfc_intent_string (sym_intent);
2815 
2816 void gfc_init_1 (void);
2817 void gfc_init_2 (void);
2818 void gfc_done_1 (void);
2819 void gfc_done_2 (void);
2820 
2821 int get_c_kind (const char *, CInteropKind_t *);
2822 
2823 const char *gfc_closest_fuzzy_match (const char *, char **);
2824 static inline void
vec_push(char ** & optr,size_t & osz,const char * elt)2825 vec_push (char **&optr, size_t &osz, const char *elt)
2826 {
2827   /* {auto,}vec.safe_push () replacement.  Don't ask..  */
2828   // if (strlen (elt) < 4) return; premature optimization: eliminated by cutoff
2829   optr = XRESIZEVEC (char *, optr, osz + 2);
2830   optr[osz] = CONST_CAST (char *, elt);
2831   optr[++osz] = NULL;
2832 }
2833 
2834 HOST_WIDE_INT gfc_mpz_get_hwi (mpz_t);
2835 void gfc_mpz_set_hwi (mpz_t, const HOST_WIDE_INT);
2836 
2837 /* options.c */
2838 unsigned int gfc_option_lang_mask (void);
2839 void gfc_init_options_struct (struct gcc_options *);
2840 void gfc_init_options (unsigned int,
2841 		       struct cl_decoded_option *);
2842 bool gfc_handle_option (size_t, const char *, int, int, location_t,
2843 			const struct cl_option_handlers *);
2844 bool gfc_post_options (const char **);
2845 char *gfc_get_option_string (void);
2846 
2847 /* f95-lang.c */
2848 void gfc_maybe_initialize_eh (void);
2849 
2850 /* iresolve.c */
2851 const char * gfc_get_string (const char *, ...) ATTRIBUTE_PRINTF_1;
2852 bool gfc_find_sym_in_expr (gfc_symbol *, gfc_expr *);
2853 
2854 /* error.c */
2855 void gfc_error_init_1 (void);
2856 void gfc_diagnostics_init (void);
2857 void gfc_diagnostics_finish (void);
2858 void gfc_buffer_error (bool);
2859 
2860 const char *gfc_print_wide_char (gfc_char_t);
2861 
2862 bool gfc_warning (int opt, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
2863 bool gfc_warning_now (int opt, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
2864 bool gfc_warning_internal (int opt, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
2865 bool gfc_warning_now_at (location_t loc, int opt, const char *gmsgid, ...)
2866   ATTRIBUTE_GCC_GFC(3,4);
2867 
2868 void gfc_clear_warning (void);
2869 void gfc_warning_check (void);
2870 
2871 void gfc_error_opt (int opt, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
2872 void gfc_error (const char *, ...) ATTRIBUTE_GCC_GFC(1,2);
2873 void gfc_error_now (const char *, ...) ATTRIBUTE_GCC_GFC(1,2);
2874 void gfc_fatal_error (const char *, ...) ATTRIBUTE_NORETURN ATTRIBUTE_GCC_GFC(1,2);
2875 void gfc_internal_error (const char *, ...) ATTRIBUTE_NORETURN ATTRIBUTE_GCC_GFC(1,2);
2876 void gfc_clear_error (void);
2877 bool gfc_error_check (void);
2878 bool gfc_error_flag_test (void);
2879 
2880 notification gfc_notification_std (int);
2881 bool gfc_notify_std (int, const char *, ...) ATTRIBUTE_GCC_GFC(2,3);
2882 
2883 /* A general purpose syntax error.  */
2884 #define gfc_syntax_error(ST)	\
2885   gfc_error ("Syntax error in %s statement at %C", gfc_ascii_statement (ST));
2886 
2887 #include "pretty-print.h"  /* For output_buffer.  */
2888 struct gfc_error_buffer
2889 {
2890   bool flag;
2891   output_buffer buffer;
gfc_error_buffergfc_error_buffer2892   gfc_error_buffer(void) : flag(false), buffer() {}
2893 };
2894 
2895 void gfc_push_error (gfc_error_buffer *);
2896 void gfc_pop_error (gfc_error_buffer *);
2897 void gfc_free_error (gfc_error_buffer *);
2898 
2899 void gfc_get_errors (int *, int *);
2900 void gfc_errors_to_warnings (bool);
2901 
2902 /* arith.c */
2903 void gfc_arith_init_1 (void);
2904 void gfc_arith_done_1 (void);
2905 arith gfc_check_integer_range (mpz_t p, int kind);
2906 bool gfc_check_character_range (gfc_char_t, int);
2907 
2908 extern bool gfc_seen_div0;
2909 
2910 /* trans-types.c */
2911 bool gfc_check_any_c_kind (gfc_typespec *);
2912 int gfc_validate_kind (bt, int, bool);
2913 int gfc_get_int_kind_from_width_isofortranenv (int size);
2914 int gfc_get_real_kind_from_width_isofortranenv (int size);
2915 tree gfc_get_union_type (gfc_symbol *);
2916 tree gfc_get_derived_type (gfc_symbol * derived, int codimen = 0);
2917 extern int gfc_index_integer_kind;
2918 extern int gfc_default_integer_kind;
2919 extern int gfc_max_integer_kind;
2920 extern int gfc_default_real_kind;
2921 extern int gfc_default_double_kind;
2922 extern int gfc_default_character_kind;
2923 extern int gfc_default_logical_kind;
2924 extern int gfc_default_complex_kind;
2925 extern int gfc_c_int_kind;
2926 extern int gfc_atomic_int_kind;
2927 extern int gfc_atomic_logical_kind;
2928 extern int gfc_intio_kind;
2929 extern int gfc_charlen_int_kind;
2930 extern int gfc_size_kind;
2931 extern int gfc_numeric_storage_size;
2932 extern int gfc_character_storage_size;
2933 
2934 #define gfc_logical_4_kind 4
2935 #define gfc_integer_4_kind 4
2936 
2937 /* symbol.c */
2938 void gfc_clear_new_implicit (void);
2939 bool gfc_add_new_implicit_range (int, int);
2940 bool gfc_merge_new_implicit (gfc_typespec *);
2941 void gfc_set_implicit_none (bool, bool, locus *);
2942 void gfc_check_function_type (gfc_namespace *);
2943 bool gfc_is_intrinsic_typename (const char *);
2944 
2945 gfc_typespec *gfc_get_default_type (const char *, gfc_namespace *);
2946 bool gfc_set_default_type (gfc_symbol *, int, gfc_namespace *);
2947 
2948 void gfc_set_sym_referenced (gfc_symbol *);
2949 
2950 bool gfc_add_attribute (symbol_attribute *, locus *);
2951 bool gfc_add_ext_attribute (symbol_attribute *, ext_attr_id_t, locus *);
2952 bool gfc_add_allocatable (symbol_attribute *, locus *);
2953 bool gfc_add_codimension (symbol_attribute *, const char *, locus *);
2954 bool gfc_add_contiguous (symbol_attribute *, const char *, locus *);
2955 bool gfc_add_dimension (symbol_attribute *, const char *, locus *);
2956 bool gfc_add_external (symbol_attribute *, locus *);
2957 bool gfc_add_intrinsic (symbol_attribute *, locus *);
2958 bool gfc_add_optional (symbol_attribute *, locus *);
2959 bool gfc_add_kind (symbol_attribute *, locus *);
2960 bool gfc_add_len (symbol_attribute *, locus *);
2961 bool gfc_add_pointer (symbol_attribute *, locus *);
2962 bool gfc_add_cray_pointer (symbol_attribute *, locus *);
2963 bool gfc_add_cray_pointee (symbol_attribute *, locus *);
2964 match gfc_mod_pointee_as (gfc_array_spec *);
2965 bool gfc_add_protected (symbol_attribute *, const char *, locus *);
2966 bool gfc_add_result (symbol_attribute *, const char *, locus *);
2967 bool gfc_add_automatic (symbol_attribute *, const char *, locus *);
2968 bool gfc_add_save (symbol_attribute *, save_state, const char *, locus *);
2969 bool gfc_add_threadprivate (symbol_attribute *, const char *, locus *);
2970 bool gfc_add_omp_declare_target (symbol_attribute *, const char *, locus *);
2971 bool gfc_add_omp_declare_target_link (symbol_attribute *, const char *,
2972 				      locus *);
2973 bool gfc_add_saved_common (symbol_attribute *, locus *);
2974 bool gfc_add_target (symbol_attribute *, locus *);
2975 bool gfc_add_dummy (symbol_attribute *, const char *, locus *);
2976 bool gfc_add_generic (symbol_attribute *, const char *, locus *);
2977 bool gfc_add_common (symbol_attribute *, locus *);
2978 bool gfc_add_in_common (symbol_attribute *, const char *, locus *);
2979 bool gfc_add_in_equivalence (symbol_attribute *, const char *, locus *);
2980 bool gfc_add_data (symbol_attribute *, const char *, locus *);
2981 bool gfc_add_in_namelist (symbol_attribute *, const char *, locus *);
2982 bool gfc_add_sequence (symbol_attribute *, const char *, locus *);
2983 bool gfc_add_elemental (symbol_attribute *, locus *);
2984 bool gfc_add_pure (symbol_attribute *, locus *);
2985 bool gfc_add_recursive (symbol_attribute *, locus *);
2986 bool gfc_add_function (symbol_attribute *, const char *, locus *);
2987 bool gfc_add_subroutine (symbol_attribute *, const char *, locus *);
2988 bool gfc_add_volatile (symbol_attribute *, const char *, locus *);
2989 bool gfc_add_asynchronous (symbol_attribute *, const char *, locus *);
2990 bool gfc_add_proc (symbol_attribute *attr, const char *name, locus *where);
2991 bool gfc_add_abstract (symbol_attribute* attr, locus* where);
2992 
2993 bool gfc_add_access (symbol_attribute *, gfc_access, const char *, locus *);
2994 bool gfc_add_is_bind_c (symbol_attribute *, const char *, locus *, int);
2995 bool gfc_add_extension (symbol_attribute *, locus *);
2996 bool gfc_add_value (symbol_attribute *, const char *, locus *);
2997 bool gfc_add_flavor (symbol_attribute *, sym_flavor, const char *, locus *);
2998 bool gfc_add_entry (symbol_attribute *, const char *, locus *);
2999 bool gfc_add_procedure (symbol_attribute *, procedure_type,
3000 		       const char *, locus *);
3001 bool gfc_add_intent (symbol_attribute *, sym_intent, locus *);
3002 bool gfc_add_explicit_interface (gfc_symbol *, ifsrc,
3003 				gfc_formal_arglist *, locus *);
3004 bool gfc_add_type (gfc_symbol *, gfc_typespec *, locus *);
3005 
3006 void gfc_clear_attr (symbol_attribute *);
3007 bool gfc_missing_attr (symbol_attribute *, locus *);
3008 bool gfc_copy_attr (symbol_attribute *, symbol_attribute *, locus *);
3009 int gfc_copy_dummy_sym (gfc_symbol **, gfc_symbol *, int);
3010 bool gfc_add_component (gfc_symbol *, const char *, gfc_component **);
3011 gfc_symbol *gfc_use_derived (gfc_symbol *);
3012 gfc_symtree *gfc_use_derived_tree (gfc_symtree *);
3013 gfc_component *gfc_find_component (gfc_symbol *, const char *, bool, bool,
3014                                    gfc_ref **);
3015 
3016 gfc_st_label *gfc_get_st_label (int);
3017 void gfc_free_st_label (gfc_st_label *);
3018 void gfc_define_st_label (gfc_st_label *, gfc_sl_type, locus *);
3019 bool gfc_reference_st_label (gfc_st_label *, gfc_sl_type);
3020 
3021 gfc_namespace *gfc_get_namespace (gfc_namespace *, int);
3022 gfc_symtree *gfc_new_symtree (gfc_symtree **, const char *);
3023 gfc_symtree *gfc_find_symtree (gfc_symtree *, const char *);
3024 void gfc_delete_symtree (gfc_symtree **, const char *);
3025 gfc_symtree *gfc_get_unique_symtree (gfc_namespace *);
3026 gfc_user_op *gfc_get_uop (const char *);
3027 gfc_user_op *gfc_find_uop (const char *, gfc_namespace *);
3028 void gfc_free_symbol (gfc_symbol *);
3029 void gfc_release_symbol (gfc_symbol *);
3030 gfc_symbol *gfc_new_symbol (const char *, gfc_namespace *);
3031 gfc_symtree* gfc_find_symtree_in_proc (const char *, gfc_namespace *);
3032 int gfc_find_symbol (const char *, gfc_namespace *, int, gfc_symbol **);
3033 int gfc_find_sym_tree (const char *, gfc_namespace *, int, gfc_symtree **);
3034 int gfc_get_symbol (const char *, gfc_namespace *, gfc_symbol **);
3035 bool gfc_verify_c_interop (gfc_typespec *);
3036 bool gfc_verify_c_interop_param (gfc_symbol *);
3037 bool verify_bind_c_sym (gfc_symbol *, gfc_typespec *, int, gfc_common_head *);
3038 bool verify_bind_c_derived_type (gfc_symbol *);
3039 bool verify_com_block_vars_c_interop (gfc_common_head *);
3040 gfc_symtree *generate_isocbinding_symbol (const char *, iso_c_binding_symbol,
3041 					  const char *, gfc_symtree *, bool);
3042 void gfc_save_symbol_data (gfc_symbol *);
3043 int gfc_get_sym_tree (const char *, gfc_namespace *, gfc_symtree **, bool);
3044 int gfc_get_ha_symbol (const char *, gfc_symbol **);
3045 int gfc_get_ha_sym_tree (const char *, gfc_symtree **);
3046 
3047 void gfc_new_undo_checkpoint (gfc_undo_change_set &);
3048 void gfc_drop_last_undo_checkpoint (void);
3049 void gfc_restore_last_undo_checkpoint (void);
3050 void gfc_undo_symbols (void);
3051 void gfc_commit_symbols (void);
3052 void gfc_commit_symbol (gfc_symbol *);
3053 gfc_charlen *gfc_new_charlen (gfc_namespace *, gfc_charlen *);
3054 void gfc_free_charlen (gfc_charlen *, gfc_charlen *);
3055 void gfc_free_namespace (gfc_namespace *);
3056 
3057 void gfc_symbol_init_2 (void);
3058 void gfc_symbol_done_2 (void);
3059 
3060 void gfc_traverse_symtree (gfc_symtree *, void (*)(gfc_symtree *));
3061 void gfc_traverse_ns (gfc_namespace *, void (*)(gfc_symbol *));
3062 void gfc_traverse_user_op (gfc_namespace *, void (*)(gfc_user_op *));
3063 void gfc_save_all (gfc_namespace *);
3064 
3065 void gfc_enforce_clean_symbol_state (void);
3066 void gfc_free_dt_list (void);
3067 
3068 
3069 gfc_gsymbol *gfc_get_gsymbol (const char *, bool bind_c);
3070 gfc_gsymbol *gfc_find_gsymbol (gfc_gsymbol *, const char *);
3071 gfc_gsymbol *gfc_find_case_gsymbol (gfc_gsymbol *, const char *);
3072 
3073 gfc_typebound_proc* gfc_get_typebound_proc (gfc_typebound_proc*);
3074 gfc_symbol* gfc_get_derived_super_type (gfc_symbol*);
3075 gfc_symbol* gfc_get_ultimate_derived_super_type (gfc_symbol*);
3076 bool gfc_type_is_extension_of (gfc_symbol *, gfc_symbol *);
3077 bool gfc_type_compatible (gfc_typespec *, gfc_typespec *);
3078 
3079 void gfc_copy_formal_args_intr (gfc_symbol *, gfc_intrinsic_sym *,
3080 				gfc_actual_arglist *);
3081 
3082 void gfc_free_finalizer (gfc_finalizer *el); /* Needed in resolve.c, too  */
3083 
3084 bool gfc_check_symbol_typed (gfc_symbol*, gfc_namespace*, bool, locus);
3085 gfc_namespace* gfc_find_proc_namespace (gfc_namespace*);
3086 
3087 bool gfc_is_associate_pointer (gfc_symbol*);
3088 gfc_symbol * gfc_find_dt_in_generic (gfc_symbol *);
3089 gfc_formal_arglist *gfc_sym_get_dummy_args (gfc_symbol *);
3090 
3091 /* intrinsic.c -- true if working in an init-expr, false otherwise.  */
3092 extern bool gfc_init_expr_flag;
3093 
3094 /* Given a symbol that we have decided is intrinsic, mark it as such
3095    by placing it into a special module that is otherwise impossible to
3096    read or write.  */
3097 
3098 #define gfc_intrinsic_symbol(SYM) SYM->module = gfc_get_string ("(intrinsic)")
3099 
3100 void gfc_intrinsic_init_1 (void);
3101 void gfc_intrinsic_done_1 (void);
3102 
3103 char gfc_type_letter (bt);
3104 gfc_symbol * gfc_get_intrinsic_sub_symbol (const char *);
3105 bool gfc_convert_type (gfc_expr *, gfc_typespec *, int);
3106 bool gfc_convert_type_warn (gfc_expr *, gfc_typespec *, int, int);
3107 bool gfc_convert_chartype (gfc_expr *, gfc_typespec *);
3108 int gfc_generic_intrinsic (const char *);
3109 int gfc_specific_intrinsic (const char *);
3110 bool gfc_is_intrinsic (gfc_symbol*, int, locus);
3111 int gfc_intrinsic_actual_ok (const char *, const bool);
3112 gfc_intrinsic_sym *gfc_find_function (const char *);
3113 gfc_intrinsic_sym *gfc_find_subroutine (const char *);
3114 gfc_intrinsic_sym *gfc_intrinsic_function_by_id (gfc_isym_id);
3115 gfc_intrinsic_sym *gfc_intrinsic_subroutine_by_id (gfc_isym_id);
3116 gfc_isym_id gfc_isym_id_by_intmod (intmod_id, int);
3117 gfc_isym_id gfc_isym_id_by_intmod_sym (gfc_symbol *);
3118 
3119 
3120 match gfc_intrinsic_func_interface (gfc_expr *, int);
3121 match gfc_intrinsic_sub_interface (gfc_code *, int);
3122 
3123 void gfc_warn_intrinsic_shadow (const gfc_symbol*, bool, bool);
3124 bool gfc_check_intrinsic_standard (const gfc_intrinsic_sym*, const char**,
3125 				      bool, locus);
3126 
3127 /* match.c -- FIXME */
3128 void gfc_free_iterator (gfc_iterator *, int);
3129 void gfc_free_forall_iterator (gfc_forall_iterator *);
3130 void gfc_free_alloc_list (gfc_alloc *);
3131 void gfc_free_namelist (gfc_namelist *);
3132 void gfc_free_omp_namelist (gfc_omp_namelist *);
3133 void gfc_free_equiv (gfc_equiv *);
3134 void gfc_free_equiv_until (gfc_equiv *, gfc_equiv *);
3135 void gfc_free_data (gfc_data *);
3136 void gfc_reject_data (gfc_namespace *);
3137 void gfc_free_case_list (gfc_case *);
3138 
3139 /* matchexp.c -- FIXME too?  */
3140 gfc_expr *gfc_get_parentheses (gfc_expr *);
3141 
3142 /* openmp.c */
3143 struct gfc_omp_saved_state { void *ptrs[2]; int ints[1]; };
3144 void gfc_free_omp_clauses (gfc_omp_clauses *);
3145 void gfc_free_oacc_declare_clauses (struct gfc_oacc_declare *);
3146 void gfc_free_omp_declare_simd (gfc_omp_declare_simd *);
3147 void gfc_free_omp_declare_simd_list (gfc_omp_declare_simd *);
3148 void gfc_free_omp_udr (gfc_omp_udr *);
3149 gfc_omp_udr *gfc_omp_udr_find (gfc_symtree *, gfc_typespec *);
3150 void gfc_resolve_omp_directive (gfc_code *, gfc_namespace *);
3151 void gfc_resolve_do_iterator (gfc_code *, gfc_symbol *, bool);
3152 void gfc_resolve_omp_local_vars (gfc_namespace *);
3153 void gfc_resolve_omp_parallel_blocks (gfc_code *, gfc_namespace *);
3154 void gfc_resolve_omp_do_blocks (gfc_code *, gfc_namespace *);
3155 void gfc_resolve_omp_declare_simd (gfc_namespace *);
3156 void gfc_resolve_omp_udrs (gfc_symtree *);
3157 void gfc_omp_save_and_clear_state (struct gfc_omp_saved_state *);
3158 void gfc_omp_restore_state (struct gfc_omp_saved_state *);
3159 void gfc_free_expr_list (gfc_expr_list *);
3160 void gfc_resolve_oacc_directive (gfc_code *, gfc_namespace *);
3161 void gfc_resolve_oacc_declare (gfc_namespace *);
3162 void gfc_resolve_oacc_parallel_loop_blocks (gfc_code *, gfc_namespace *);
3163 void gfc_resolve_oacc_blocks (gfc_code *, gfc_namespace *);
3164 
3165 /* expr.c */
3166 void gfc_free_actual_arglist (gfc_actual_arglist *);
3167 gfc_actual_arglist *gfc_copy_actual_arglist (gfc_actual_arglist *);
3168 
3169 bool gfc_extract_int (gfc_expr *, int *, int = 0);
3170 bool gfc_extract_hwi (gfc_expr *, HOST_WIDE_INT *, int = 0);
3171 
3172 bool is_subref_array (gfc_expr *);
3173 bool gfc_is_simply_contiguous (gfc_expr *, bool, bool);
3174 bool gfc_check_init_expr (gfc_expr *);
3175 
3176 gfc_expr *gfc_build_conversion (gfc_expr *);
3177 void gfc_free_ref_list (gfc_ref *);
3178 void gfc_type_convert_binary (gfc_expr *, int);
3179 bool gfc_is_constant_expr (gfc_expr *);
3180 bool gfc_simplify_expr (gfc_expr *, int);
3181 int gfc_has_vector_index (gfc_expr *);
3182 
3183 gfc_expr *gfc_get_expr (void);
3184 gfc_expr *gfc_get_array_expr (bt type, int kind, locus *);
3185 gfc_expr *gfc_get_null_expr (locus *);
3186 gfc_expr *gfc_get_operator_expr (locus *, gfc_intrinsic_op,gfc_expr *, gfc_expr *);
3187 gfc_expr *gfc_get_structure_constructor_expr (bt, int, locus *);
3188 gfc_expr *gfc_get_constant_expr (bt, int, locus *);
3189 gfc_expr *gfc_get_character_expr (int, locus *, const char *, gfc_charlen_t len);
3190 gfc_expr *gfc_get_int_expr (int, locus *, HOST_WIDE_INT);
3191 gfc_expr *gfc_get_logical_expr (int, locus *, bool);
3192 gfc_expr *gfc_get_iokind_expr (locus *, io_kind);
3193 
3194 void gfc_clear_shape (mpz_t *shape, int rank);
3195 void gfc_free_shape (mpz_t **shape, int rank);
3196 void gfc_free_expr (gfc_expr *);
3197 void gfc_replace_expr (gfc_expr *, gfc_expr *);
3198 mpz_t *gfc_copy_shape (mpz_t *, int);
3199 mpz_t *gfc_copy_shape_excluding (mpz_t *, int, gfc_expr *);
3200 gfc_expr *gfc_copy_expr (gfc_expr *);
3201 gfc_ref* gfc_copy_ref (gfc_ref*);
3202 
3203 bool gfc_specification_expr (gfc_expr *);
3204 
3205 int gfc_numeric_ts (gfc_typespec *);
3206 int gfc_kind_max (gfc_expr *, gfc_expr *);
3207 
3208 bool gfc_check_conformance (gfc_expr *, gfc_expr *, const char *, ...) ATTRIBUTE_PRINTF_3;
3209 bool gfc_check_assign (gfc_expr *, gfc_expr *, int, bool c = true);
3210 bool gfc_check_pointer_assign (gfc_expr *, gfc_expr *, bool is_init_expr = false);
3211 bool gfc_check_assign_symbol (gfc_symbol *, gfc_component *, gfc_expr *);
3212 
3213 gfc_expr *gfc_build_default_init_expr (gfc_typespec *, locus *);
3214 gfc_expr *gfc_build_init_expr (gfc_typespec *, locus *, bool);
3215 void gfc_apply_init (gfc_typespec *, symbol_attribute *, gfc_expr *);
3216 bool gfc_has_default_initializer (gfc_symbol *);
3217 gfc_expr *gfc_default_initializer (gfc_typespec *);
3218 gfc_expr *gfc_generate_initializer (gfc_typespec *, bool);
3219 gfc_expr *gfc_get_variable_expr (gfc_symtree *);
3220 void gfc_add_full_array_ref (gfc_expr *, gfc_array_spec *);
3221 gfc_expr * gfc_lval_expr_from_sym (gfc_symbol *);
3222 
3223 gfc_array_spec *gfc_get_full_arrayspec_from_expr (gfc_expr *expr);
3224 
3225 bool gfc_traverse_expr (gfc_expr *, gfc_symbol *,
3226 			bool (*)(gfc_expr *, gfc_symbol *, int*),
3227 			int);
3228 void gfc_expr_set_symbols_referenced (gfc_expr *);
3229 bool gfc_expr_check_typed (gfc_expr*, gfc_namespace*, bool);
3230 bool gfc_derived_parameter_expr (gfc_expr *);
3231 gfc_param_spec_type gfc_spec_list_type (gfc_actual_arglist *, gfc_symbol *);
3232 gfc_component * gfc_get_proc_ptr_comp (gfc_expr *);
3233 bool gfc_is_proc_ptr_comp (gfc_expr *);
3234 bool gfc_is_alloc_class_scalar_function (gfc_expr *);
3235 bool gfc_is_class_array_function (gfc_expr *);
3236 
3237 bool gfc_ref_this_image (gfc_ref *ref);
3238 bool gfc_is_coindexed (gfc_expr *);
3239 bool gfc_is_coarray (gfc_expr *);
3240 int gfc_get_corank (gfc_expr *);
3241 bool gfc_has_ultimate_allocatable (gfc_expr *);
3242 bool gfc_has_ultimate_pointer (gfc_expr *);
3243 gfc_expr* gfc_find_team_co (gfc_expr *);
3244 gfc_expr* gfc_find_stat_co (gfc_expr *);
3245 gfc_expr* gfc_build_intrinsic_call (gfc_namespace *, gfc_isym_id, const char*,
3246 				    locus, unsigned, ...);
3247 bool gfc_check_vardef_context (gfc_expr*, bool, bool, bool, const char*);
3248 
3249 
3250 /* st.c */
3251 extern gfc_code new_st;
3252 
3253 void gfc_clear_new_st (void);
3254 gfc_code *gfc_get_code (gfc_exec_op);
3255 gfc_code *gfc_append_code (gfc_code *, gfc_code *);
3256 void gfc_free_statement (gfc_code *);
3257 void gfc_free_statements (gfc_code *);
3258 void gfc_free_association_list (gfc_association_list *);
3259 
3260 /* resolve.c */
3261 bool gfc_resolve_expr (gfc_expr *);
3262 void gfc_resolve (gfc_namespace *);
3263 void gfc_resolve_code (gfc_code *, gfc_namespace *);
3264 void gfc_resolve_blocks (gfc_code *, gfc_namespace *);
3265 int gfc_impure_variable (gfc_symbol *);
3266 int gfc_pure (gfc_symbol *);
3267 int gfc_implicit_pure (gfc_symbol *);
3268 void gfc_unset_implicit_pure (gfc_symbol *);
3269 int gfc_elemental (gfc_symbol *);
3270 bool gfc_resolve_iterator (gfc_iterator *, bool, bool);
3271 bool find_forall_index (gfc_expr *, gfc_symbol *, int);
3272 bool gfc_resolve_index (gfc_expr *, int);
3273 bool gfc_resolve_dim_arg (gfc_expr *);
3274 bool gfc_is_formal_arg (void);
3275 void gfc_resolve_substring_charlen (gfc_expr *);
3276 match gfc_iso_c_sub_interface(gfc_code *, gfc_symbol *);
3277 gfc_expr *gfc_expr_to_initialize (gfc_expr *);
3278 bool gfc_type_is_extensible (gfc_symbol *);
3279 bool gfc_resolve_intrinsic (gfc_symbol *, locus *);
3280 bool gfc_explicit_interface_required (gfc_symbol *, char *, int);
3281 extern int gfc_do_concurrent_flag;
3282 const char* gfc_lookup_function_fuzzy (const char *, gfc_symtree *);
3283 
3284 
3285 /* array.c */
3286 gfc_iterator *gfc_copy_iterator (gfc_iterator *);
3287 
3288 void gfc_free_array_spec (gfc_array_spec *);
3289 gfc_array_ref *gfc_copy_array_ref (gfc_array_ref *);
3290 
3291 bool gfc_set_array_spec (gfc_symbol *, gfc_array_spec *, locus *);
3292 gfc_array_spec *gfc_copy_array_spec (gfc_array_spec *);
3293 bool gfc_resolve_array_spec (gfc_array_spec *, int);
3294 
3295 int gfc_compare_array_spec (gfc_array_spec *, gfc_array_spec *);
3296 
3297 void gfc_simplify_iterator_var (gfc_expr *);
3298 bool gfc_expand_constructor (gfc_expr *, bool);
3299 int gfc_constant_ac (gfc_expr *);
3300 int gfc_expanded_ac (gfc_expr *);
3301 bool gfc_resolve_character_array_constructor (gfc_expr *);
3302 bool gfc_resolve_array_constructor (gfc_expr *);
3303 bool gfc_check_constructor_type (gfc_expr *);
3304 bool gfc_check_iter_variable (gfc_expr *);
3305 bool gfc_check_constructor (gfc_expr *, bool (*)(gfc_expr *));
3306 bool gfc_array_size (gfc_expr *, mpz_t *);
3307 bool gfc_array_dimen_size (gfc_expr *, int, mpz_t *);
3308 bool gfc_array_ref_shape (gfc_array_ref *, mpz_t *);
3309 gfc_array_ref *gfc_find_array_ref (gfc_expr *, bool a = false);
3310 tree gfc_conv_array_initializer (tree type, gfc_expr *);
3311 bool spec_size (gfc_array_spec *, mpz_t *);
3312 bool spec_dimen_size (gfc_array_spec *, int, mpz_t *);
3313 bool gfc_is_compile_time_shape (gfc_array_spec *);
3314 
3315 bool gfc_ref_dimen_size (gfc_array_ref *, int dimen, mpz_t *, mpz_t *);
3316 
3317 
3318 /* interface.c -- FIXME: some of these should be in symbol.c */
3319 void gfc_free_interface (gfc_interface *);
3320 bool gfc_compare_derived_types (gfc_symbol *, gfc_symbol *);
3321 bool gfc_compare_types (gfc_typespec *, gfc_typespec *);
3322 bool gfc_check_dummy_characteristics (gfc_symbol *, gfc_symbol *,
3323 				      bool, char *, int);
3324 bool gfc_check_result_characteristics (gfc_symbol *, gfc_symbol *,
3325 				       char *, int);
3326 bool gfc_compare_interfaces (gfc_symbol*, gfc_symbol*, const char *, int, int,
3327 			     char *, int, const char *, const char *);
3328 void gfc_check_interfaces (gfc_namespace *);
3329 bool gfc_procedure_use (gfc_symbol *, gfc_actual_arglist **, locus *);
3330 void gfc_ppc_use (gfc_component *, gfc_actual_arglist **, locus *);
3331 gfc_symbol *gfc_search_interface (gfc_interface *, int,
3332 				  gfc_actual_arglist **);
3333 match gfc_extend_expr (gfc_expr *);
3334 void gfc_free_formal_arglist (gfc_formal_arglist *);
3335 bool gfc_extend_assign (gfc_code *, gfc_namespace *);
3336 bool gfc_check_new_interface (gfc_interface *, gfc_symbol *, locus);
3337 bool gfc_add_interface (gfc_symbol *);
3338 gfc_interface *gfc_current_interface_head (void);
3339 void gfc_set_current_interface_head (gfc_interface *);
3340 gfc_symtree* gfc_find_sym_in_symtree (gfc_symbol*);
3341 bool gfc_arglist_matches_symbol (gfc_actual_arglist**, gfc_symbol*);
3342 bool gfc_check_operator_interface (gfc_symbol*, gfc_intrinsic_op, locus);
3343 bool gfc_has_vector_subscript (gfc_expr*);
3344 gfc_intrinsic_op gfc_equivalent_op (gfc_intrinsic_op);
3345 bool gfc_check_typebound_override (gfc_symtree*, gfc_symtree*);
3346 void gfc_check_dtio_interfaces (gfc_symbol*);
3347 gfc_symtree* gfc_find_typebound_dtio_proc (gfc_symbol *, bool, bool);
3348 gfc_symbol* gfc_find_specific_dtio_proc (gfc_symbol*, bool, bool);
3349 
3350 
3351 /* io.c */
3352 extern gfc_st_label format_asterisk;
3353 
3354 void gfc_free_open (gfc_open *);
3355 bool gfc_resolve_open (gfc_open *);
3356 void gfc_free_close (gfc_close *);
3357 bool gfc_resolve_close (gfc_close *);
3358 void gfc_free_filepos (gfc_filepos *);
3359 bool gfc_resolve_filepos (gfc_filepos *, locus *);
3360 void gfc_free_inquire (gfc_inquire *);
3361 bool gfc_resolve_inquire (gfc_inquire *);
3362 void gfc_free_dt (gfc_dt *);
3363 bool gfc_resolve_dt (gfc_dt *, locus *);
3364 void gfc_free_wait (gfc_wait *);
3365 bool gfc_resolve_wait (gfc_wait *);
3366 extern bool async_io_dt;
3367 
3368 /* module.c */
3369 void gfc_module_init_2 (void);
3370 void gfc_module_done_2 (void);
3371 void gfc_dump_module (const char *, int);
3372 bool gfc_check_symbol_access (gfc_symbol *);
3373 void gfc_free_use_stmts (gfc_use_list *);
3374 const char *gfc_dt_lower_string (const char *);
3375 const char *gfc_dt_upper_string (const char *);
3376 
3377 /* primary.c */
3378 symbol_attribute gfc_variable_attr (gfc_expr *, gfc_typespec *);
3379 symbol_attribute gfc_expr_attr (gfc_expr *);
3380 symbol_attribute gfc_caf_attr (gfc_expr *, bool i = false, bool *r = NULL);
3381 match gfc_match_rvalue (gfc_expr **);
3382 match gfc_match_varspec (gfc_expr*, int, bool, bool);
3383 int gfc_check_digit (char, int);
3384 bool gfc_is_function_return_value (gfc_symbol *, gfc_namespace *);
3385 bool gfc_convert_to_structure_constructor (gfc_expr *, gfc_symbol *,
3386 					      gfc_expr **,
3387 					      gfc_actual_arglist **, bool);
3388 
3389 /* trans.c */
3390 void gfc_generate_code (gfc_namespace *);
3391 void gfc_generate_module_code (gfc_namespace *);
3392 
3393 /* trans-intrinsic.c */
3394 bool gfc_inline_intrinsic_function_p (gfc_expr *);
3395 
3396 /* bbt.c */
3397 typedef int (*compare_fn) (void *, void *);
3398 void gfc_insert_bbt (void *, void *, compare_fn);
3399 void gfc_delete_bbt (void *, void *, compare_fn);
3400 
3401 /* dump-parse-tree.c */
3402 void gfc_dump_parse_tree (gfc_namespace *, FILE *);
3403 void gfc_dump_c_prototypes (gfc_namespace *, FILE *);
3404 
3405 /* parse.c */
3406 bool gfc_parse_file (void);
3407 void gfc_global_used (gfc_gsymbol *, locus *);
3408 gfc_namespace* gfc_build_block_ns (gfc_namespace *);
3409 
3410 /* dependency.c */
3411 int gfc_dep_compare_functions (gfc_expr *, gfc_expr *, bool);
3412 int gfc_dep_compare_expr (gfc_expr *, gfc_expr *);
3413 bool gfc_dep_difference (gfc_expr *, gfc_expr *, mpz_t *);
3414 
3415 /* check.c */
3416 bool gfc_check_same_strlen (const gfc_expr*, const gfc_expr*, const char*);
3417 bool gfc_calculate_transfer_sizes (gfc_expr*, gfc_expr*, gfc_expr*,
3418 				      size_t*, size_t*, size_t*);
3419 
3420 /* class.c */
3421 void gfc_fix_class_refs (gfc_expr *e);
3422 void gfc_add_component_ref (gfc_expr *, const char *);
3423 void gfc_add_class_array_ref (gfc_expr *);
3424 #define gfc_add_data_component(e)     gfc_add_component_ref(e,"_data")
3425 #define gfc_add_vptr_component(e)     gfc_add_component_ref(e,"_vptr")
3426 #define gfc_add_len_component(e)      gfc_add_component_ref(e,"_len")
3427 #define gfc_add_hash_component(e)     gfc_add_component_ref(e,"_hash")
3428 #define gfc_add_size_component(e)     gfc_add_component_ref(e,"_size")
3429 #define gfc_add_def_init_component(e) gfc_add_component_ref(e,"_def_init")
3430 #define gfc_add_final_component(e)    gfc_add_component_ref(e,"_final")
3431 bool gfc_is_class_array_ref (gfc_expr *, bool *);
3432 bool gfc_is_class_scalar_expr (gfc_expr *);
3433 bool gfc_is_class_container_ref (gfc_expr *e);
3434 gfc_expr *gfc_class_initializer (gfc_typespec *, gfc_expr *);
3435 unsigned int gfc_hash_value (gfc_symbol *);
3436 gfc_expr *gfc_get_len_component (gfc_expr *e, int);
3437 bool gfc_build_class_symbol (gfc_typespec *, symbol_attribute *,
3438 			     gfc_array_spec **);
3439 gfc_symbol *gfc_find_derived_vtab (gfc_symbol *);
3440 gfc_symbol *gfc_find_vtab (gfc_typespec *);
3441 gfc_symtree* gfc_find_typebound_proc (gfc_symbol*, bool*,
3442 				      const char*, bool, locus*);
3443 gfc_symtree* gfc_find_typebound_user_op (gfc_symbol*, bool*,
3444 					 const char*, bool, locus*);
3445 gfc_typebound_proc* gfc_find_typebound_intrinsic_op (gfc_symbol*, bool*,
3446 						     gfc_intrinsic_op, bool,
3447 						     locus*);
3448 gfc_symtree* gfc_get_tbp_symtree (gfc_symtree**, const char*);
3449 bool gfc_is_finalizable (gfc_symbol *, gfc_expr **);
3450 
3451 #define CLASS_DATA(sym) sym->ts.u.derived->components
3452 #define UNLIMITED_POLY(sym) \
3453 	(sym != NULL && sym->ts.type == BT_CLASS \
3454 	 && CLASS_DATA (sym) \
3455 	 && CLASS_DATA (sym)->ts.u.derived \
3456 	 && CLASS_DATA (sym)->ts.u.derived->attr.unlimited_polymorphic)
3457 #define IS_CLASS_ARRAY(sym) \
3458 	(sym->ts.type == BT_CLASS \
3459 	 && CLASS_DATA (sym) \
3460 	 && CLASS_DATA (sym)->attr.dimension \
3461 	 && !CLASS_DATA (sym)->attr.class_pointer)
3462 
3463 /* frontend-passes.c */
3464 
3465 void gfc_run_passes (gfc_namespace *);
3466 
3467 typedef int (*walk_code_fn_t) (gfc_code **, int *, void *);
3468 typedef int (*walk_expr_fn_t) (gfc_expr **, int *, void *);
3469 
3470 int gfc_dummy_code_callback (gfc_code **, int *, void *);
3471 int gfc_expr_walker (gfc_expr **, walk_expr_fn_t, void *);
3472 int gfc_code_walker (gfc_code **, walk_code_fn_t, walk_expr_fn_t, void *);
3473 
3474 /* simplify.c */
3475 
3476 void gfc_convert_mpz_to_signed (mpz_t, int);
3477 gfc_expr *gfc_simplify_ieee_functions (gfc_expr *);
3478 bool gfc_is_size_zero_array (gfc_expr *);
3479 
3480 /* trans-array.c  */
3481 
3482 bool gfc_is_reallocatable_lhs (gfc_expr *);
3483 
3484 /* trans-decl.c */
3485 
3486 void finish_oacc_declare (gfc_namespace *, gfc_symbol *, bool);
3487 
3488 #endif /* GCC_GFORTRAN_H  */
3489