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1 /* Copyright (C) 2002-2019 Free Software Foundation, Inc.
2 Contributed by Andy Vaught
3 F2003 I/O support contributed by Jerry DeLisle
4
5 This file is part of the GNU Fortran runtime library (libgfortran).
6
7 Libgfortran is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
10 any later version.
11
12 Libgfortran is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 Under Section 7 of GPL version 3, you are granted additional
18 permissions described in the GCC Runtime Library Exception, version
19 3.1, as published by the Free Software Foundation.
20
21 You should have received a copy of the GNU General Public License and
22 a copy of the GCC Runtime Library Exception along with this program;
23 see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
24 <http://www.gnu.org/licenses/>. */
25
26 #ifndef GFOR_IO_H
27 #define GFOR_IO_H
28
29 /* IO library include. */
30
31 #include "libgfortran.h"
32
33 #include <gthr.h>
34
35
36 /* POSIX 2008 specifies that the extended locale stuff is found in
37 locale.h, but some systems have them in xlocale.h. */
38
39 #include <locale.h>
40
41 #ifdef HAVE_XLOCALE_H
42 #include <xlocale.h>
43 #endif
44
45
46 /* Forward declarations. */
47 struct st_parameter_dt;
48 typedef struct stream stream;
49 struct fbuf;
50 struct format_data;
51 typedef struct fnode fnode;
52 struct gfc_unit;
53
54 #ifdef HAVE_NEWLOCALE
55 /* We have POSIX 2008 extended locale stuff. */
56 extern locale_t c_locale;
57 internal_proto(c_locale);
58 #else
59 extern char* old_locale;
60 internal_proto(old_locale);
61 extern int old_locale_ctr;
62 internal_proto(old_locale_ctr);
63 extern __gthread_mutex_t old_locale_lock;
64 internal_proto(old_locale_lock);
65 #endif
66
67
68 /* Macros for testing what kinds of I/O we are doing. */
69
70 #define is_array_io(dtp) ((dtp)->internal_unit_desc)
71
72 #define is_internal_unit(dtp) ((dtp)->u.p.unit_is_internal)
73
74 #define is_stream_io(dtp) ((dtp)->u.p.current_unit->flags.access == ACCESS_STREAM)
75
76 #define is_char4_unit(dtp) ((dtp)->u.p.current_unit->internal_unit_kind == 4)
77
78 /* The array_loop_spec contains the variables for the loops over index ranges
79 that are encountered. */
80
81 typedef struct array_loop_spec
82 {
83 /* Index counter for this dimension. */
84 index_type idx;
85
86 /* Start for the index counter. */
87 index_type start;
88
89 /* End for the index counter. */
90 index_type end;
91
92 /* Step for the index counter. */
93 index_type step;
94 }
95 array_loop_spec;
96
97 /* User defined input/output iomsg length. */
98
99 #define IOMSG_LEN 256
100
101 /* Subroutine formatted_dtio (struct, unit, iotype, v_list, iostat,
102 iomsg, (_iotype), (_iomsg)) */
103 typedef void (*formatted_dtio)(void *, GFC_INTEGER_4 *, char *,
104 gfc_full_array_i4 *,
105 GFC_INTEGER_4 *, char *,
106 gfc_charlen_type, gfc_charlen_type);
107
108 /* Subroutine unformatted_dtio (struct, unit, iostat, iomsg, (_iomsg)) */
109 typedef void (*unformatted_dtio)(void *, GFC_INTEGER_4 *, GFC_INTEGER_4 *,
110 char *, gfc_charlen_type);
111
112 /* The dtio calls for namelist require a CLASS object to be built. */
113 typedef struct gfc_class
114 {
115 void *data;
116 void *vptr;
117 index_type len;
118 }
119 gfc_class;
120
121
122 /* A structure to build a hash table for format data. */
123
124 #define FORMAT_HASH_SIZE 16
125
126 typedef struct format_hash_entry
127 {
128 char *key;
129 gfc_charlen_type key_len;
130 struct format_data *hashed_fmt;
131 }
132 format_hash_entry;
133
134 /* Representation of a namelist object in libgfortran
135
136 Namelist Records
137 &GROUPNAME OBJECT=value[s] [,OBJECT=value[s]].../
138 or
139 &GROUPNAME OBJECT=value[s] [,OBJECT=value[s]]...&END
140
141 The object can be a fully qualified, compound name for an intrinsic
142 type, derived types or derived type components. So, a substring
143 a(:)%b(4)%ch(2:4)(1:7) has to be treated correctly in namelist
144 read. Hence full information about the structure of the object has
145 to be available to list_read.c and write.
146
147 These requirements are met by the following data structures.
148
149 namelist_info type contains all the scalar information about the
150 object and arrays of descriptor_dimension and array_loop_spec types for
151 arrays. */
152
153 typedef struct namelist_type
154 {
155 /* Object type. */
156 bt type;
157
158 /* Object name. */
159 char * var_name;
160
161 /* Address for the start of the object's data. */
162 void * mem_pos;
163
164 /* Address of specific DTIO subroutine. */
165 void * dtio_sub;
166
167 /* Address of vtable if dtio_sub non-null. */
168 void * vtable;
169
170 /* Flag to show that a read is to be attempted for this node. */
171 int touched;
172
173 /* Length of intrinsic type in bytes. */
174 int len;
175
176 /* Rank of the object. */
177 int var_rank;
178
179 /* Overall size of the object in bytes. */
180 index_type size;
181
182 /* Length of character string. */
183 index_type string_length;
184
185 descriptor_dimension * dim;
186 array_loop_spec * ls;
187 struct namelist_type * next;
188 }
189 namelist_info;
190
191 /* Options for the OPEN statement. */
192
193 typedef enum
194 { ACCESS_SEQUENTIAL, ACCESS_DIRECT, ACCESS_APPEND, ACCESS_STREAM,
195 ACCESS_UNSPECIFIED
196 }
197 unit_access;
198
199 typedef enum
200 { ACTION_READ, ACTION_WRITE, ACTION_READWRITE,
201 ACTION_UNSPECIFIED
202 }
203 unit_action;
204
205 typedef enum
206 { BLANK_NULL, BLANK_ZERO, BLANK_UNSPECIFIED }
207 unit_blank;
208
209 typedef enum
210 { DELIM_NONE, DELIM_APOSTROPHE, DELIM_QUOTE,
211 DELIM_UNSPECIFIED
212 }
213 unit_delim;
214
215 typedef enum
216 { FORM_FORMATTED, FORM_UNFORMATTED, FORM_UNSPECIFIED }
217 unit_form;
218
219 typedef enum
220 { POSITION_ASIS, POSITION_REWIND, POSITION_APPEND,
221 POSITION_UNSPECIFIED
222 }
223 unit_position;
224
225 typedef enum
226 { STATUS_UNKNOWN, STATUS_OLD, STATUS_NEW, STATUS_SCRATCH,
227 STATUS_REPLACE, STATUS_UNSPECIFIED
228 }
229 unit_status;
230
231 typedef enum
232 { PAD_YES, PAD_NO, PAD_UNSPECIFIED }
233 unit_pad;
234
235 typedef enum
236 { DECIMAL_POINT, DECIMAL_COMMA, DECIMAL_UNSPECIFIED }
237 unit_decimal;
238
239 typedef enum
240 { ENCODING_UTF8, ENCODING_DEFAULT, ENCODING_UNSPECIFIED }
241 unit_encoding;
242
243 typedef enum
244 { ROUND_UP = GFC_FPE_UPWARD,
245 ROUND_DOWN = GFC_FPE_DOWNWARD,
246 ROUND_ZERO = GFC_FPE_TOWARDZERO,
247 ROUND_NEAREST = GFC_FPE_TONEAREST,
248 ROUND_COMPATIBLE = 10, /* round away from zero. */
249 ROUND_PROCDEFINED, /* Here as ROUND_NEAREST. */
250 ROUND_UNSPECIFIED /* Should never occur. */
251 }
252 unit_round;
253
254 /* NOTE: unit_sign must correspond with the sign_status enumerator in
255 st_parameter_dt to not break the ABI. */
256 typedef enum
257 { SIGN_PROCDEFINED, SIGN_SUPPRESS, SIGN_PLUS, SIGN_UNSPECIFIED }
258 unit_sign;
259
260 typedef enum
261 { ADVANCE_YES, ADVANCE_NO, ADVANCE_UNSPECIFIED }
262 unit_advance;
263
264 typedef enum
265 {READING, WRITING, LIST_READING, LIST_WRITING}
266 unit_mode;
267
268 typedef enum
269 { ASYNC_YES, ASYNC_NO, ASYNC_UNSPECIFIED }
270 unit_async;
271
272 typedef enum
273 { SHARE_DENYRW, SHARE_DENYNONE,
274 SHARE_UNSPECIFIED
275 }
276 unit_share;
277
278 typedef enum
279 { CC_LIST, CC_FORTRAN, CC_NONE,
280 CC_UNSPECIFIED
281 }
282 unit_cc;
283
284 /* End-of-record types for CC_FORTRAN. */
285 typedef enum
286 { CCF_DEFAULT=0x0,
287 CCF_OVERPRINT=0x1,
288 CCF_ONE_LF=0x2,
289 CCF_TWO_LF=0x4,
290 CCF_PAGE_FEED=0x8,
291 CCF_PROMPT=0x10,
292 CCF_OVERPRINT_NOA=0x20,
293 } /* 6 bits */
294 cc_fortran;
295
296 typedef enum
297 { SIGN_S, SIGN_SS, SIGN_SP }
298 unit_sign_s;
299
300 /* Make sure to keep st_parameter_* in sync with gcc/fortran/ioparm.def. */
301
302 #define CHARACTER1(name) \
303 char * name; \
304 gfc_charlen_type name ## _len
305 #define CHARACTER2(name) \
306 gfc_charlen_type name ## _len; \
307 char * name
308
309 typedef struct
310 {
311 st_parameter_common common;
312 GFC_IO_INT recl_in;
313 CHARACTER2 (file);
314 CHARACTER1 (status);
315 CHARACTER2 (access);
316 CHARACTER1 (form);
317 CHARACTER2 (blank);
318 CHARACTER1 (position);
319 CHARACTER2 (action);
320 CHARACTER1 (delim);
321 CHARACTER2 (pad);
322 CHARACTER1 (convert);
323 CHARACTER2 (decimal);
324 CHARACTER1 (encoding);
325 CHARACTER2 (round);
326 CHARACTER1 (sign);
327 CHARACTER2 (asynchronous);
328 GFC_INTEGER_4 *newunit;
329 GFC_INTEGER_4 readonly;
330 CHARACTER2 (cc);
331 CHARACTER1 (share);
332 }
333 st_parameter_open;
334
335 #define IOPARM_CLOSE_HAS_STATUS (1 << 7)
336
337 typedef struct
338 {
339 st_parameter_common common;
340 CHARACTER1 (status);
341 }
342 st_parameter_close;
343
344 typedef struct
345 {
346 st_parameter_common common;
347 }
348 st_parameter_filepos;
349
350 #define IOPARM_INQUIRE_HAS_EXIST (1 << 7)
351 #define IOPARM_INQUIRE_HAS_OPENED (1 << 8)
352 #define IOPARM_INQUIRE_HAS_NUMBER (1 << 9)
353 #define IOPARM_INQUIRE_HAS_NAMED (1 << 10)
354 #define IOPARM_INQUIRE_HAS_NEXTREC (1 << 11)
355 #define IOPARM_INQUIRE_HAS_RECL_OUT (1 << 12)
356 #define IOPARM_INQUIRE_HAS_STRM_POS_OUT (1 << 13)
357 #define IOPARM_INQUIRE_HAS_FILE (1 << 14)
358 #define IOPARM_INQUIRE_HAS_ACCESS (1 << 15)
359 #define IOPARM_INQUIRE_HAS_FORM (1 << 16)
360 #define IOPARM_INQUIRE_HAS_BLANK (1 << 17)
361 #define IOPARM_INQUIRE_HAS_POSITION (1 << 18)
362 #define IOPARM_INQUIRE_HAS_ACTION (1 << 19)
363 #define IOPARM_INQUIRE_HAS_DELIM (1 << 20)
364 #define IOPARM_INQUIRE_HAS_PAD (1 << 21)
365 #define IOPARM_INQUIRE_HAS_NAME (1 << 22)
366 #define IOPARM_INQUIRE_HAS_SEQUENTIAL (1 << 23)
367 #define IOPARM_INQUIRE_HAS_DIRECT (1 << 24)
368 #define IOPARM_INQUIRE_HAS_FORMATTED (1 << 25)
369 #define IOPARM_INQUIRE_HAS_UNFORMATTED (1 << 26)
370 #define IOPARM_INQUIRE_HAS_READ (1 << 27)
371 #define IOPARM_INQUIRE_HAS_WRITE (1 << 28)
372 #define IOPARM_INQUIRE_HAS_READWRITE (1 << 29)
373 #define IOPARM_INQUIRE_HAS_CONVERT (1 << 30)
374 #define IOPARM_INQUIRE_HAS_FLAGS2 (1u << 31)
375
376 #define IOPARM_INQUIRE_HAS_ASYNCHRONOUS (1 << 0)
377 #define IOPARM_INQUIRE_HAS_DECIMAL (1 << 1)
378 #define IOPARM_INQUIRE_HAS_ENCODING (1 << 2)
379 #define IOPARM_INQUIRE_HAS_ROUND (1 << 3)
380 #define IOPARM_INQUIRE_HAS_SIGN (1 << 4)
381 #define IOPARM_INQUIRE_HAS_PENDING (1 << 5)
382 #define IOPARM_INQUIRE_HAS_SIZE (1 << 6)
383 #define IOPARM_INQUIRE_HAS_ID (1 << 7)
384 #define IOPARM_INQUIRE_HAS_IQSTREAM (1 << 8)
385 #define IOPARM_INQUIRE_HAS_SHARE (1 << 9)
386 #define IOPARM_INQUIRE_HAS_CC (1 << 10)
387
388 typedef struct
389 {
390 st_parameter_common common;
391 GFC_INTEGER_4 *exist, *opened, *number, *named;
392 GFC_IO_INT *nextrec, *recl_out, *strm_pos_out;
393 CHARACTER1 (file);
394 CHARACTER2 (access);
395 CHARACTER1 (form);
396 CHARACTER2 (blank);
397 CHARACTER1 (position);
398 CHARACTER2 (action);
399 CHARACTER1 (delim);
400 CHARACTER2 (pad);
401 CHARACTER1 (name);
402 CHARACTER2 (sequential);
403 CHARACTER1 (direct);
404 CHARACTER2 (formatted);
405 CHARACTER1 (unformatted);
406 CHARACTER2 (read);
407 CHARACTER1 (write);
408 CHARACTER2 (readwrite);
409 CHARACTER1 (convert);
410 GFC_INTEGER_4 flags2;
411 CHARACTER1 (asynchronous);
412 CHARACTER2 (decimal);
413 CHARACTER1 (encoding);
414 CHARACTER2 (round);
415 CHARACTER1 (sign);
416 GFC_INTEGER_4 *pending;
417 GFC_IO_INT *size;
418 GFC_INTEGER_4 *id;
419 CHARACTER1 (iqstream);
420 CHARACTER2 (share);
421 CHARACTER1 (cc);
422 }
423 st_parameter_inquire;
424
425
426 #define IOPARM_DT_LIST_FORMAT (1 << 7)
427 #define IOPARM_DT_NAMELIST_READ_MODE (1 << 8)
428 #define IOPARM_DT_HAS_REC (1 << 9)
429 #define IOPARM_DT_HAS_SIZE (1 << 10)
430 #define IOPARM_DT_HAS_IOLENGTH (1 << 11)
431 #define IOPARM_DT_HAS_FORMAT (1 << 12)
432 #define IOPARM_DT_HAS_ADVANCE (1 << 13)
433 #define IOPARM_DT_HAS_INTERNAL_UNIT (1 << 14)
434 #define IOPARM_DT_HAS_NAMELIST_NAME (1 << 15)
435 #define IOPARM_DT_HAS_ID (1 << 16)
436 #define IOPARM_DT_HAS_POS (1 << 17)
437 #define IOPARM_DT_HAS_ASYNCHRONOUS (1 << 18)
438 #define IOPARM_DT_HAS_BLANK (1 << 19)
439 #define IOPARM_DT_HAS_DECIMAL (1 << 20)
440 #define IOPARM_DT_HAS_DELIM (1 << 21)
441 #define IOPARM_DT_HAS_PAD (1 << 22)
442 #define IOPARM_DT_HAS_ROUND (1 << 23)
443 #define IOPARM_DT_HAS_SIGN (1 << 24)
444 #define IOPARM_DT_HAS_F2003 (1 << 25)
445 #define IOPARM_DT_HAS_UDTIO (1 << 26)
446 #define IOPARM_DT_DEC_EXT (1 << 27)
447 /* Internal use bit. */
448 #define IOPARM_DT_IONML_SET (1u << 31)
449
450
451 typedef struct st_parameter_dt
452 {
453 st_parameter_common common;
454 GFC_IO_INT rec;
455 GFC_IO_INT *size, *iolength;
456 gfc_array_char *internal_unit_desc;
457 CHARACTER1 (format);
458 CHARACTER2 (advance);
459 CHARACTER1 (internal_unit);
460 CHARACTER2 (namelist_name);
461 GFC_INTEGER_4 *id;
462 GFC_IO_INT pos;
463 CHARACTER1 (asynchronous);
464 CHARACTER2 (blank);
465 CHARACTER1 (decimal);
466 CHARACTER2 (delim);
467 CHARACTER1 (pad);
468 CHARACTER2 (round);
469 CHARACTER1 (sign);
470 /* Private part of the structure. The compiler just needs
471 to reserve enough space. */
472 union
473 {
474 struct
475 {
476 void (*transfer) (struct st_parameter_dt *, bt, void *, int,
477 size_t, size_t);
478 struct gfc_unit *current_unit;
479 /* Item number in a formatted data transfer. Also used in namelist
480 read_logical as an index into line_buffer. */
481 int item_count;
482 unit_mode mode;
483 unit_blank blank_status;
484 unit_sign sign_status;
485 int scale_factor;
486 /* Maximum righthand column written to. */
487 int max_pos;
488 /* Number of skips + spaces to be done for T and X-editing. */
489 int skips;
490 /* Number of spaces to be done for T and X-editing. */
491 int pending_spaces;
492 /* Whether an EOR condition was encountered. Value is:
493 0 if no EOR was encountered
494 1 if an EOR was encountered due to a 1-byte marker (LF)
495 2 if an EOR was encountered due to a 2-bytes marker (CRLF) */
496 int sf_seen_eor;
497 unit_advance advance_status;
498 unsigned reversion_flag : 1; /* Format reversion has occurred. */
499 unsigned first_item : 1;
500 unsigned seen_dollar : 1;
501 unsigned eor_condition : 1;
502 unsigned no_leading_blank : 1;
503 unsigned char_flag : 1;
504 unsigned input_complete : 1;
505 unsigned at_eol : 1;
506 unsigned comma_flag : 1;
507 /* A namelist specific flag used in the list directed library
508 to flag that calls are being made from namelist read (e.g. to
509 ignore comments or to treat '/' as a terminator) */
510 unsigned namelist_mode : 1;
511 /* A namelist specific flag used in the list directed library
512 to flag read errors and return, so that an attempt can be
513 made to read a new object name. */
514 unsigned nml_read_error : 1;
515 /* A sequential formatted read specific flag used to signal that a
516 character string is being read so don't use commas to shorten a
517 formatted field width. */
518 unsigned sf_read_comma : 1;
519 /* A namelist specific flag used to enable reading input from
520 line_buffer for logical reads. */
521 unsigned line_buffer_enabled : 1;
522 /* An internal unit specific flag used to identify that the associated
523 unit is internal. */
524 unsigned unit_is_internal : 1;
525 /* An internal unit specific flag to signify an EOF condition for list
526 directed read. */
527 unsigned at_eof : 1;
528 /* Used for g0 floating point output. */
529 unsigned g0_no_blanks : 1;
530 /* Used to signal use of free_format_data. */
531 unsigned format_not_saved : 1;
532 /* A flag used to identify when a non-standard expanded namelist read
533 has occurred. */
534 unsigned expanded_read : 1;
535 /* Flag to indicate if the statement has async="YES". */
536 unsigned async : 1;
537 /* 12 unused bits. */
538
539 int child_saved_iostat;
540 int nml_delim;
541 int repeat_count;
542 int saved_length;
543 int saved_used;
544 bt saved_type;
545 char *saved_string;
546 char *scratch;
547 char *line_buffer;
548 struct format_data *fmt;
549 namelist_info *ionml;
550 #ifdef HAVE_NEWLOCALE
551 locale_t old_locale;
552 #endif
553 /* Current position within the look-ahead line buffer. */
554 int line_buffer_pos;
555 /* Storage area for values except for strings. Must be
556 large enough to hold a complex value (two reals) of the
557 largest kind. */
558 char value[32];
559 GFC_IO_INT not_used; /* Needed for alignment. */
560 formatted_dtio fdtio_ptr;
561 unformatted_dtio ufdtio_ptr;
562 /* With CC_FORTRAN, the first character of a record determines the
563 style of record end (and start) to use. We must mark down the type
564 when we write first in write_a so we remember the end type later in
565 next_record_w. */
566 struct
567 {
568 unsigned type : 6; /* See enum cc_fortran. */
569 unsigned len : 2; /* Always 0, 1, or 2. */
570 /* The union is updated after start-of-record is written. */
571 union
572 {
573 char start; /* Output character for start of record. */
574 char end; /* Output character for end of record. */
575 } u;
576 } cc;
577 } p;
578 /* This pad size must be equal to the pad_size declared in
579 trans-io.c (gfc_build_io_library_fndecls). The above structure
580 must be smaller or equal to this array. */
581 char pad[16 * sizeof (char *) + 32 * sizeof (int)];
582 } u;
583 }
584 st_parameter_dt;
585
586 /* Ensure st_parameter_dt's u.pad is bigger or equal to u.p. */
587 extern char check_st_parameter_dt[sizeof (((st_parameter_dt *) 0)->u.pad)
588 >= sizeof (((st_parameter_dt *) 0)->u.p)
589 ? 1 : -1];
590
591 #define IOPARM_WAIT_HAS_ID (1 << 7)
592
593 typedef struct
594 {
595 st_parameter_common common;
596 GFC_INTEGER_4 *id;
597 }
598 st_parameter_wait;
599
600
601 #undef CHARACTER1
602 #undef CHARACTER2
603
604 typedef struct
605 {
606 unit_access access;
607 unit_action action;
608 unit_blank blank;
609 unit_delim delim;
610 unit_form form;
611 int is_notpadded;
612 unit_position position;
613 unit_status status;
614 unit_pad pad;
615 unit_convert convert;
616 int has_recl;
617 unit_decimal decimal;
618 unit_encoding encoding;
619 unit_round round;
620 unit_sign sign;
621 unit_async async;
622 unit_share share;
623 unit_cc cc;
624 int readonly;
625 }
626 unit_flags;
627
628
629 typedef struct gfc_unit
630 {
631 int unit_number;
632 stream *s;
633
634 /* Treap links. */
635 struct gfc_unit *left, *right;
636 int priority;
637
638 int read_bad, current_record, saved_pos, previous_nonadvancing_write;
639
640 enum
641 { NO_ENDFILE, AT_ENDFILE, AFTER_ENDFILE }
642 endfile;
643
644 unit_mode mode;
645 unit_flags flags;
646 unit_pad pad_status;
647 unit_decimal decimal_status;
648 unit_delim delim_status;
649 unit_round round_status;
650
651 /* recl -- Record length of the file.
652 last_record -- Last record number read or written
653 maxrec -- Maximum record number in a direct access file
654 bytes_left -- Bytes left in current record.
655 strm_pos -- Current position in file for STREAM I/O.
656 recl_subrecord -- Maximum length for subrecord.
657 bytes_left_subrecord -- Bytes left in current subrecord. */
658 gfc_offset recl, last_record, maxrec, bytes_left, strm_pos,
659 recl_subrecord, bytes_left_subrecord;
660
661 /* Set to 1 if we have read a subrecord. */
662
663 int continued;
664
665 /* Contains the pointer to the async unit. */
666 struct async_unit *au;
667
668 __gthread_mutex_t lock;
669 /* Number of threads waiting to acquire this unit's lock.
670 When non-zero, close_unit doesn't only removes the unit
671 from the UNIT_ROOT tree, but doesn't free it and the
672 last of the waiting threads will do that.
673 This must be either atomically increased/decreased, or
674 always guarded by UNIT_LOCK. */
675 int waiting;
676 /* Flag set by close_unit if the unit as been closed.
677 Must be manipulated under unit's lock. */
678 int closed;
679
680 /* For traversing arrays */
681 array_loop_spec *ls;
682 int rank;
683
684 /* Name of the file at the time OPEN was executed, as a
685 null-terminated C string. */
686 char *filename;
687
688 /* The format hash table. */
689 struct format_hash_entry format_hash_table[FORMAT_HASH_SIZE];
690
691 /* Formatting buffer. */
692 struct fbuf *fbuf;
693
694 /* Function pointer, points to list_read worker functions. */
695 int (*next_char_fn_ptr) (st_parameter_dt *);
696 void (*push_char_fn_ptr) (st_parameter_dt *, int);
697
698 /* Internal unit char string data. */
699 char * internal_unit;
700 gfc_charlen_type internal_unit_len;
701 gfc_array_char *string_unit_desc;
702 int internal_unit_kind;
703
704 /* DTIO Parent/Child procedure, 0 = parent, >0 = child level. */
705 int child_dtio;
706
707 /* Used for ungetc() style functionality. Possible values
708 are an unsigned char, EOF, or EOF - 1 used to mark the
709 field as not valid. */
710 int last_char;
711 bool has_size;
712 GFC_IO_INT size_used;
713 }
714 gfc_unit;
715
716 typedef struct gfc_saved_unit
717 {
718 GFC_INTEGER_4 unit_number;
719 gfc_unit *unit;
720 }
721 gfc_saved_unit;
722
723 /* TEMP_FAILURE_RETRY macro from glibc. */
724
725 #ifndef TEMP_FAILURE_RETRY
726 /* Evaluate EXPRESSION, and repeat as long as it returns -1 with `errno'
727 set to EINTR. */
728
729 # define TEMP_FAILURE_RETRY(expression) \
730 (__extension__ \
731 ({ long int __result; \
732 do __result = (long int) (expression); \
733 while (__result == -1L && errno == EINTR); \
734 __result; }))
735 #endif
736
737
738 /* unit.c */
739
740 /* Maximum file offset, computed at library initialization time. */
741 extern gfc_offset max_offset;
742 internal_proto(max_offset);
743
744 /* Default RECL for sequential access if not given in OPEN statement,
745 computed at library initialization time. */
746 extern gfc_offset default_recl;
747 internal_proto(default_recl);
748
749 /* Unit tree root. */
750 extern gfc_unit *unit_root;
751 internal_proto(unit_root);
752
753 extern __gthread_mutex_t unit_lock;
754 internal_proto(unit_lock);
755
756 extern int close_unit (gfc_unit *);
757 internal_proto(close_unit);
758
759 extern gfc_unit *set_internal_unit (st_parameter_dt *, gfc_unit *, int);
760 internal_proto(set_internal_unit);
761
762 extern void stash_internal_unit (st_parameter_dt *);
763 internal_proto(stash_internal_unit);
764
765 extern gfc_unit *find_unit (int);
766 internal_proto(find_unit);
767
768 extern gfc_unit *find_or_create_unit (int);
769 internal_proto(find_or_create_unit);
770
771 extern gfc_unit *get_unit (st_parameter_dt *, int);
772 internal_proto(get_unit);
773
774 extern void unlock_unit(gfc_unit *);
775 internal_proto(unlock_unit);
776
777 extern void finish_last_advance_record (gfc_unit *u);
778 internal_proto(finish_last_advance_record);
779
780 extern int unit_truncate(gfc_unit *, gfc_offset, st_parameter_common *);
781 internal_proto(unit_truncate);
782
783 extern int newunit_alloc (void);
784 internal_proto(newunit_alloc);
785
786 extern void newunit_free (int);
787 internal_proto(newunit_free);
788
789
790 /* open.c */
791
792 extern gfc_unit *new_unit (st_parameter_open *, gfc_unit *, unit_flags *);
793 internal_proto(new_unit);
794
795
796 /* transfer.c */
797
798 #define SCRATCH_SIZE 300
799
800 extern const char *type_name (bt);
801 internal_proto(type_name);
802
803 extern void * read_block_form (st_parameter_dt *, size_t *);
804 internal_proto(read_block_form);
805
806 extern void * read_block_form4 (st_parameter_dt *, size_t *);
807 internal_proto(read_block_form4);
808
809 extern void *write_block (st_parameter_dt *, size_t);
810 internal_proto(write_block);
811
812 extern gfc_offset next_array_record (st_parameter_dt *, array_loop_spec *,
813 int*);
814 internal_proto(next_array_record);
815
816 extern gfc_offset init_loop_spec (gfc_array_char *, array_loop_spec *,
817 gfc_offset *);
818 internal_proto(init_loop_spec);
819
820 extern void next_record (st_parameter_dt *, int);
821 internal_proto(next_record);
822
823 extern void st_wait (st_parameter_wait *);
824 export_proto (st_wait);
825
826 extern void st_wait_async (st_parameter_wait *);
827 export_proto (st_wait_async);
828
829 extern void hit_eof (st_parameter_dt *);
830 internal_proto(hit_eof);
831
832 extern void transfer_array_inner (st_parameter_dt *, gfc_array_char *, int,
833 gfc_charlen_type);
834 internal_proto (transfer_array_inner);
835
836 /* read.c */
837
838 extern void set_integer (void *, GFC_INTEGER_LARGEST, int);
839 internal_proto(set_integer);
840
841 extern GFC_UINTEGER_LARGEST si_max (int);
842 internal_proto(si_max);
843
844 extern int convert_real (st_parameter_dt *, void *, const char *, int);
845 internal_proto(convert_real);
846
847 extern int convert_infnan (st_parameter_dt *, void *, const char *, int);
848 internal_proto(convert_infnan);
849
850 extern void read_a (st_parameter_dt *, const fnode *, char *, size_t);
851 internal_proto(read_a);
852
853 extern void read_a_char4 (st_parameter_dt *, const fnode *, char *, size_t);
854 internal_proto(read_a);
855
856 extern void read_f (st_parameter_dt *, const fnode *, char *, int);
857 internal_proto(read_f);
858
859 extern void read_l (st_parameter_dt *, const fnode *, char *, int);
860 internal_proto(read_l);
861
862 extern void read_x (st_parameter_dt *, size_t);
863 internal_proto(read_x);
864
865 extern void read_radix (st_parameter_dt *, const fnode *, char *, int, int);
866 internal_proto(read_radix);
867
868 extern void read_decimal (st_parameter_dt *, const fnode *, char *, int);
869 internal_proto(read_decimal);
870
871 extern void read_user_defined (st_parameter_dt *, void *);
872 internal_proto(read_user_defined);
873
874 extern void read_user_defined (st_parameter_dt *, void *);
875 internal_proto(read_user_defined);
876
877 /* list_read.c */
878
879 extern void list_formatted_read (st_parameter_dt *, bt, void *, int, size_t,
880 size_t);
881 internal_proto(list_formatted_read);
882
883 extern void finish_list_read (st_parameter_dt *);
884 internal_proto(finish_list_read);
885
886 extern void namelist_read (st_parameter_dt *);
887 internal_proto(namelist_read);
888
889 extern void namelist_write (st_parameter_dt *);
890 internal_proto(namelist_write);
891
892 /* write.c */
893
894 extern void write_a (st_parameter_dt *, const fnode *, const char *, size_t);
895 internal_proto(write_a);
896
897 extern void write_a_char4 (st_parameter_dt *, const fnode *, const char *, size_t);
898 internal_proto(write_a_char4);
899
900 extern void write_b (st_parameter_dt *, const fnode *, const char *, int);
901 internal_proto(write_b);
902
903 extern void write_d (st_parameter_dt *, const fnode *, const char *, int);
904 internal_proto(write_d);
905
906 extern void write_e (st_parameter_dt *, const fnode *, const char *, int);
907 internal_proto(write_e);
908
909 extern void write_en (st_parameter_dt *, const fnode *, const char *, int);
910 internal_proto(write_en);
911
912 extern void write_es (st_parameter_dt *, const fnode *, const char *, int);
913 internal_proto(write_es);
914
915 extern void write_f (st_parameter_dt *, const fnode *, const char *, int);
916 internal_proto(write_f);
917
918 extern void write_i (st_parameter_dt *, const fnode *, const char *, int);
919 internal_proto(write_i);
920
921 extern void write_l (st_parameter_dt *, const fnode *, char *, int);
922 internal_proto(write_l);
923
924 extern void write_o (st_parameter_dt *, const fnode *, const char *, int);
925 internal_proto(write_o);
926
927 extern void write_real (st_parameter_dt *, const char *, int);
928 internal_proto(write_real);
929
930 extern void write_real_g0 (st_parameter_dt *, const char *, int, int);
931 internal_proto(write_real_g0);
932
933 extern void write_x (st_parameter_dt *, int, int);
934 internal_proto(write_x);
935
936 extern void write_z (st_parameter_dt *, const fnode *, const char *, int);
937 internal_proto(write_z);
938
939 extern void write_user_defined (st_parameter_dt *, void *);
940 internal_proto(write_user_defined);
941
942 extern void write_user_defined (st_parameter_dt *, void *);
943 internal_proto(write_user_defined);
944
945 extern void list_formatted_write (st_parameter_dt *, bt, void *, int, size_t,
946 size_t);
947 internal_proto(list_formatted_write);
948
949 /* size_from_kind.c */
950 extern size_t size_from_real_kind (int);
951 internal_proto(size_from_real_kind);
952
953 extern size_t size_from_complex_kind (int);
954 internal_proto(size_from_complex_kind);
955
956
957 /* lock.c */
958 extern void free_ionml (st_parameter_dt *);
959 internal_proto(free_ionml);
960
961 static inline void
962 inc_waiting_locked (gfc_unit *u)
963 {
964 #ifdef HAVE_ATOMIC_FETCH_ADD
965 (void) __atomic_fetch_add (&u->waiting, 1, __ATOMIC_RELAXED);
966 #else
967 u->waiting++;
968 #endif
969 }
970
971 static inline int
972 predec_waiting_locked (gfc_unit *u)
973 {
974 #ifdef HAVE_ATOMIC_FETCH_ADD
975 /* Note that the pattern
976
977 if (predec_waiting_locked (u) == 0)
978 // destroy u
979
980 could be further optimized by making this be an __ATOMIC_RELEASE,
981 and then inserting a
982
983 __atomic_thread_fence (__ATOMIC_ACQUIRE);
984
985 inside the branch before destroying. But for now, lets keep it
986 simple. */
987 return __atomic_add_fetch (&u->waiting, -1, __ATOMIC_ACQ_REL);
988 #else
989 return --u->waiting;
990 #endif
991 }
992
993 static inline void
994 dec_waiting_unlocked (gfc_unit *u)
995 {
996 #ifdef HAVE_ATOMIC_FETCH_ADD
997 (void) __atomic_fetch_add (&u->waiting, -1, __ATOMIC_RELAXED);
998 #else
999 __gthread_mutex_lock (&unit_lock);
1000 u->waiting--;
1001 __gthread_mutex_unlock (&unit_lock);
1002 #endif
1003 }
1004
1005
1006 static inline void
1007 memset4 (gfc_char4_t *p, gfc_char4_t c, int k)
1008 {
1009 int j;
1010 for (j = 0; j < k; j++)
1011 *p++ = c;
1012 }
1013
1014 /* Used in width fields to indicate that the default should be used */
1015 #define DEFAULT_WIDTH -1
1016
1017 /* Defaults for certain format field descriptors. These are decided based on
1018 * the type of the value being formatted.
1019 *
1020 * The behaviour here is modelled on the Oracle Fortran compiler. At the time
1021 * of writing, the details were available at this URL:
1022 *
1023 * https://docs.oracle.com/cd/E19957-01/805-4939/6j4m0vnc3/index.html#z4000743746d
1024 */
1025
1026 static inline int
1027 default_width_for_integer (int kind)
1028 {
1029 switch (kind)
1030 {
1031 case 1:
1032 case 2: return 7;
1033 case 4: return 12;
1034 case 8: return 23;
1035 case 16: return 44;
1036 default: return 0;
1037 }
1038 }
1039
1040 static inline int
1041 default_width_for_float (int kind)
1042 {
1043 switch (kind)
1044 {
1045 case 4: return 15;
1046 case 8: return 25;
1047 case 16: return 42;
1048 default: return 0;
1049 }
1050 }
1051
1052 static inline int
1053 default_precision_for_float (int kind)
1054 {
1055 switch (kind)
1056 {
1057 case 4: return 7;
1058 case 8: return 16;
1059 case 16: return 33;
1060 default: return 0;
1061 }
1062 }
1063
1064 #endif
1065
1066 extern void
1067 st_write_done_worker (st_parameter_dt *);
1068 internal_proto (st_write_done_worker);
1069
1070 extern void
1071 st_read_done_worker (st_parameter_dt *);
1072 internal_proto (st_read_done_worker);
1073
1074 extern void
1075 data_transfer_init_worker (st_parameter_dt *, int);
1076 internal_proto (data_transfer_init_worker);