* g++.dg/cpp0x/fntmpdefarg2a.C: Move expected warning.
[official-gcc.git] / libgfortran / io / unit.c
blobe62f9b839d4a35eff4e251459082807a8ff8bff5
1 /* Copyright (C) 2002-2017 Free Software Foundation, Inc.
2 Contributed by Andy Vaught
3 F2003 I/O support contributed by Jerry DeLisle
5 This file is part of the GNU Fortran runtime library (libgfortran).
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.
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.
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.
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/>. */
26 #include "io.h"
27 #include "fbuf.h"
28 #include "format.h"
29 #include "unix.h"
30 #include <string.h>
31 #include <assert.h>
34 /* IO locking rules:
35 UNIT_LOCK is a master lock, protecting UNIT_ROOT tree and UNIT_CACHE.
36 Concurrent use of different units should be supported, so
37 each unit has its own lock, LOCK.
38 Open should be atomic with its reopening of units and list_read.c
39 in several places needs find_unit another unit while holding stdin
40 unit's lock, so it must be possible to acquire UNIT_LOCK while holding
41 some unit's lock. Therefore to avoid deadlocks, it is forbidden
42 to acquire unit's private locks while holding UNIT_LOCK, except
43 for freshly created units (where no other thread can get at their
44 address yet) or when using just trylock rather than lock operation.
45 In addition to unit's private lock each unit has a WAITERS counter
46 and CLOSED flag. WAITERS counter must be either only
47 atomically incremented/decremented in all places (if atomic builtins
48 are supported), or protected by UNIT_LOCK in all places (otherwise).
49 CLOSED flag must be always protected by unit's LOCK.
50 After finding a unit in UNIT_CACHE or UNIT_ROOT with UNIT_LOCK held,
51 WAITERS must be incremented to avoid concurrent close from freeing
52 the unit between unlocking UNIT_LOCK and acquiring unit's LOCK.
53 Unit freeing is always done under UNIT_LOCK. If close_unit sees any
54 WAITERS, it doesn't free the unit but instead sets the CLOSED flag
55 and the thread that decrements WAITERS to zero while CLOSED flag is
56 set is responsible for freeing it (while holding UNIT_LOCK).
57 flush_all_units operation is iterating over the unit tree with
58 increasing UNIT_NUMBER while holding UNIT_LOCK and attempting to
59 flush each unit (and therefore needs the unit's LOCK held as well).
60 To avoid deadlocks, it just trylocks the LOCK and if unsuccessful,
61 remembers the current unit's UNIT_NUMBER, unlocks UNIT_LOCK, acquires
62 unit's LOCK and after flushing reacquires UNIT_LOCK and restarts with
63 the smallest UNIT_NUMBER above the last one flushed.
65 If find_unit/find_or_create_unit/find_file/get_unit routines return
66 non-NULL, the returned unit has its private lock locked and when the
67 caller is done with it, it must call either unlock_unit or close_unit
68 on it. unlock_unit or close_unit must be always called only with the
69 private lock held. */
73 /* Table of allocated newunit values. A simple solution would be to
74 map OS file descriptors (fd's) to unit numbers, e.g. with newunit =
75 -fd - 2, however that doesn't work since Fortran allows an existing
76 unit number to be reassociated with a new file. Thus the simple
77 approach may lead to a situation where we'd try to assign a
78 (negative) unit number which already exists. Hence we must keep
79 track of allocated newunit values ourselves. This is the purpose of
80 the newunits array. The indices map to newunit values as newunit =
81 -index + NEWUNIT_FIRST. E.g. newunits[0] having the value true
82 means that a unit with number NEWUNIT_FIRST exists. Similar to
83 POSIX file descriptors, we always allocate the lowest (in absolute
84 value) available unit number.
86 static bool *newunits;
87 static int newunit_size; /* Total number of elements in the newunits array. */
88 /* Low water indicator for the newunits array. Below the LWI all the
89 units are allocated, above and equal to the LWI there may be both
90 allocated and free units. */
91 static int newunit_lwi;
93 /* Unit numbers assigned with NEWUNIT start from here. */
94 #define NEWUNIT_START -10
96 #define CACHE_SIZE 3
97 static gfc_unit *unit_cache[CACHE_SIZE];
98 gfc_offset max_offset;
99 gfc_unit *unit_root;
100 #ifdef __GTHREAD_MUTEX_INIT
101 __gthread_mutex_t unit_lock = __GTHREAD_MUTEX_INIT;
102 #else
103 __gthread_mutex_t unit_lock;
104 #endif
106 /* We use these filenames for error reporting. */
108 static char stdin_name[] = "stdin";
109 static char stdout_name[] = "stdout";
110 static char stderr_name[] = "stderr";
113 #ifdef HAVE_NEWLOCALE
114 locale_t c_locale;
115 #else
116 /* If we don't have POSIX 2008 per-thread locales, we need to use the
117 traditional setlocale(). To prevent multiple concurrent threads
118 doing formatted I/O from messing up the locale, we need to store a
119 global old_locale, and a counter keeping track of how many threads
120 are currently doing formatted I/O. The first thread saves the old
121 locale, and the last one restores it. */
122 char *old_locale;
123 int old_locale_ctr;
124 #ifdef __GTHREAD_MUTEX_INIT
125 __gthread_mutex_t old_locale_lock = __GTHREAD_MUTEX_INIT;
126 #else
127 __gthread_mutex_t old_locale_lock;
128 #endif
129 #endif
132 /* This implementation is based on Stefan Nilsson's article in the
133 July 1997 Doctor Dobb's Journal, "Treaps in Java". */
135 /* pseudo_random()-- Simple linear congruential pseudorandom number
136 generator. The period of this generator is 44071, which is plenty
137 for our purposes. */
139 static int
140 pseudo_random (void)
142 static int x0 = 5341;
144 x0 = (22611 * x0 + 10) % 44071;
145 return x0;
149 /* rotate_left()-- Rotate the treap left */
151 static gfc_unit *
152 rotate_left (gfc_unit *t)
154 gfc_unit *temp;
156 temp = t->right;
157 t->right = t->right->left;
158 temp->left = t;
160 return temp;
164 /* rotate_right()-- Rotate the treap right */
166 static gfc_unit *
167 rotate_right (gfc_unit *t)
169 gfc_unit *temp;
171 temp = t->left;
172 t->left = t->left->right;
173 temp->right = t;
175 return temp;
179 static int
180 compare (int a, int b)
182 if (a < b)
183 return -1;
184 if (a > b)
185 return 1;
187 return 0;
191 /* insert()-- Recursive insertion function. Returns the updated treap. */
193 static gfc_unit *
194 insert (gfc_unit *new, gfc_unit *t)
196 int c;
198 if (t == NULL)
199 return new;
201 c = compare (new->unit_number, t->unit_number);
203 if (c < 0)
205 t->left = insert (new, t->left);
206 if (t->priority < t->left->priority)
207 t = rotate_right (t);
210 if (c > 0)
212 t->right = insert (new, t->right);
213 if (t->priority < t->right->priority)
214 t = rotate_left (t);
217 if (c == 0)
218 internal_error (NULL, "insert(): Duplicate key found!");
220 return t;
224 /* insert_unit()-- Create a new node, insert it into the treap. */
226 static gfc_unit *
227 insert_unit (int n)
229 gfc_unit *u = xcalloc (1, sizeof (gfc_unit));
230 u->unit_number = n;
231 #ifdef __GTHREAD_MUTEX_INIT
233 __gthread_mutex_t tmp = __GTHREAD_MUTEX_INIT;
234 u->lock = tmp;
236 #else
237 __GTHREAD_MUTEX_INIT_FUNCTION (&u->lock);
238 #endif
239 __gthread_mutex_lock (&u->lock);
240 u->priority = pseudo_random ();
241 unit_root = insert (u, unit_root);
242 return u;
246 /* destroy_unit_mutex()-- Destroy the mutex and free memory of unit. */
248 static void
249 destroy_unit_mutex (gfc_unit *u)
251 __gthread_mutex_destroy (&u->lock);
252 free (u);
256 static gfc_unit *
257 delete_root (gfc_unit *t)
259 gfc_unit *temp;
261 if (t->left == NULL)
262 return t->right;
263 if (t->right == NULL)
264 return t->left;
266 if (t->left->priority > t->right->priority)
268 temp = rotate_right (t);
269 temp->right = delete_root (t);
271 else
273 temp = rotate_left (t);
274 temp->left = delete_root (t);
277 return temp;
281 /* delete_treap()-- Delete an element from a tree. The 'old' value
282 does not necessarily have to point to the element to be deleted, it
283 must just point to a treap structure with the key to be deleted.
284 Returns the new root node of the tree. */
286 static gfc_unit *
287 delete_treap (gfc_unit *old, gfc_unit *t)
289 int c;
291 if (t == NULL)
292 return NULL;
294 c = compare (old->unit_number, t->unit_number);
296 if (c < 0)
297 t->left = delete_treap (old, t->left);
298 if (c > 0)
299 t->right = delete_treap (old, t->right);
300 if (c == 0)
301 t = delete_root (t);
303 return t;
307 /* delete_unit()-- Delete a unit from a tree */
309 static void
310 delete_unit (gfc_unit *old)
312 unit_root = delete_treap (old, unit_root);
316 /* get_gfc_unit()-- Given an integer, return a pointer to the unit
317 structure. Returns NULL if the unit does not exist,
318 otherwise returns a locked unit. */
320 static gfc_unit *
321 get_gfc_unit (int n, int do_create)
323 gfc_unit *p;
324 int c, created = 0;
326 __gthread_mutex_lock (&unit_lock);
327 retry:
328 for (c = 0; c < CACHE_SIZE; c++)
329 if (unit_cache[c] != NULL && unit_cache[c]->unit_number == n)
331 p = unit_cache[c];
332 goto found;
335 p = unit_root;
336 while (p != NULL)
338 c = compare (n, p->unit_number);
339 if (c < 0)
340 p = p->left;
341 if (c > 0)
342 p = p->right;
343 if (c == 0)
344 break;
347 if (p == NULL && do_create)
349 p = insert_unit (n);
350 created = 1;
353 if (p != NULL)
355 for (c = 0; c < CACHE_SIZE - 1; c++)
356 unit_cache[c] = unit_cache[c + 1];
358 unit_cache[CACHE_SIZE - 1] = p;
361 if (created)
363 /* Newly created units have their lock held already
364 from insert_unit. Just unlock UNIT_LOCK and return. */
365 __gthread_mutex_unlock (&unit_lock);
366 return p;
369 found:
370 if (p != NULL && (p->child_dtio == 0))
372 /* Fast path. */
373 if (! __gthread_mutex_trylock (&p->lock))
375 /* assert (p->closed == 0); */
376 __gthread_mutex_unlock (&unit_lock);
377 return p;
380 inc_waiting_locked (p);
384 __gthread_mutex_unlock (&unit_lock);
386 if (p != NULL && (p->child_dtio == 0))
388 __gthread_mutex_lock (&p->lock);
389 if (p->closed)
391 __gthread_mutex_lock (&unit_lock);
392 __gthread_mutex_unlock (&p->lock);
393 if (predec_waiting_locked (p) == 0)
394 destroy_unit_mutex (p);
395 goto retry;
398 dec_waiting_unlocked (p);
400 return p;
404 gfc_unit *
405 find_unit (int n)
407 return get_gfc_unit (n, 0);
411 gfc_unit *
412 find_or_create_unit (int n)
414 return get_gfc_unit (n, 1);
418 /* Helper function to check rank, stride, format string, and namelist.
419 This is used for optimization. You can't trim out blanks or shorten
420 the string if trailing spaces are significant. */
421 static bool
422 is_trim_ok (st_parameter_dt *dtp)
424 /* Check rank and stride. */
425 if (dtp->internal_unit_desc)
426 return false;
427 /* Format strings can not have 'BZ' or '/'. */
428 if (dtp->common.flags & IOPARM_DT_HAS_FORMAT)
430 char *p = dtp->format;
431 off_t i;
432 if (dtp->common.flags & IOPARM_DT_HAS_BLANK)
433 return false;
434 for (i = 0; i < dtp->format_len; i++)
436 if (p[i] == '/') return false;
437 if (p[i] == 'b' || p[i] == 'B')
438 if (p[i+1] == 'z' || p[i+1] == 'Z')
439 return false;
442 if (dtp->u.p.ionml) /* A namelist. */
443 return false;
444 return true;
448 gfc_unit *
449 set_internal_unit (st_parameter_dt *dtp, gfc_unit *iunit, int kind)
451 gfc_offset start_record = 0;
453 iunit->unit_number = dtp->common.unit;
454 iunit->recl = dtp->internal_unit_len;
455 iunit->internal_unit = dtp->internal_unit;
456 iunit->internal_unit_len = dtp->internal_unit_len;
457 iunit->internal_unit_kind = kind;
459 /* As an optimization, adjust the unit record length to not
460 include trailing blanks. This will not work under certain conditions
461 where trailing blanks have significance. */
462 if (dtp->u.p.mode == READING && is_trim_ok (dtp))
464 int len;
465 if (kind == 1)
466 len = string_len_trim (iunit->internal_unit_len,
467 iunit->internal_unit);
468 else
469 len = string_len_trim_char4 (iunit->internal_unit_len,
470 (const gfc_char4_t*) iunit->internal_unit);
471 iunit->internal_unit_len = len;
472 iunit->recl = iunit->internal_unit_len;
475 /* Set up the looping specification from the array descriptor, if any. */
477 if (is_array_io (dtp))
479 iunit->rank = GFC_DESCRIPTOR_RANK (dtp->internal_unit_desc);
480 iunit->ls = (array_loop_spec *)
481 xmallocarray (iunit->rank, sizeof (array_loop_spec));
482 iunit->internal_unit_len *=
483 init_loop_spec (dtp->internal_unit_desc, iunit->ls, &start_record);
485 start_record *= iunit->recl;
488 /* Set initial values for unit parameters. */
489 if (kind == 4)
490 iunit->s = open_internal4 (iunit->internal_unit - start_record,
491 iunit->internal_unit_len, -start_record);
492 else
493 iunit->s = open_internal (iunit->internal_unit - start_record,
494 iunit->internal_unit_len, -start_record);
496 iunit->bytes_left = iunit->recl;
497 iunit->last_record=0;
498 iunit->maxrec=0;
499 iunit->current_record=0;
500 iunit->read_bad = 0;
501 iunit->endfile = NO_ENDFILE;
503 /* Set flags for the internal unit. */
505 iunit->flags.access = ACCESS_SEQUENTIAL;
506 iunit->flags.action = ACTION_READWRITE;
507 iunit->flags.blank = BLANK_NULL;
508 iunit->flags.form = FORM_FORMATTED;
509 iunit->flags.pad = PAD_YES;
510 iunit->flags.status = STATUS_UNSPECIFIED;
511 iunit->flags.sign = SIGN_UNSPECIFIED;
512 iunit->flags.decimal = DECIMAL_POINT;
513 iunit->flags.delim = DELIM_UNSPECIFIED;
514 iunit->flags.encoding = ENCODING_DEFAULT;
515 iunit->flags.async = ASYNC_NO;
516 iunit->flags.round = ROUND_UNSPECIFIED;
518 /* Initialize the data transfer parameters. */
520 dtp->u.p.advance_status = ADVANCE_YES;
521 dtp->u.p.seen_dollar = 0;
522 dtp->u.p.skips = 0;
523 dtp->u.p.pending_spaces = 0;
524 dtp->u.p.max_pos = 0;
525 dtp->u.p.at_eof = 0;
526 return iunit;
530 /* get_unit()-- Returns the unit structure associated with the integer
531 unit or the internal file. */
533 gfc_unit *
534 get_unit (st_parameter_dt *dtp, int do_create)
536 gfc_unit *unit;
538 if ((dtp->common.flags & IOPARM_DT_HAS_INTERNAL_UNIT) != 0)
540 int kind;
541 if (dtp->common.unit == GFC_INTERNAL_UNIT)
542 kind = 1;
543 else if (dtp->common.unit == GFC_INTERNAL_UNIT4)
544 kind = 4;
545 else
546 internal_error (&dtp->common, "get_unit(): Bad internal unit KIND");
548 dtp->u.p.unit_is_internal = 1;
549 dtp->common.unit = newunit_alloc ();
550 unit = get_gfc_unit (dtp->common.unit, do_create);
551 set_internal_unit (dtp, unit, kind);
552 fbuf_init (unit, 128);
553 return unit;
556 /* Has to be an external unit. */
557 dtp->u.p.unit_is_internal = 0;
558 dtp->internal_unit = NULL;
559 dtp->internal_unit_desc = NULL;
561 /* For an external unit with unit number < 0 creating it on the fly
562 is not allowed, such units must be created with
563 OPEN(NEWUNIT=...). */
564 if (dtp->common.unit < 0)
565 return get_gfc_unit (dtp->common.unit, 0);
567 return get_gfc_unit (dtp->common.unit, do_create);
571 /*************************/
572 /* Initialize everything. */
574 void
575 init_units (void)
577 gfc_unit *u;
578 unsigned int i;
580 #ifdef HAVE_NEWLOCALE
581 c_locale = newlocale (0, "C", 0);
582 #else
583 #ifndef __GTHREAD_MUTEX_INIT
584 __GTHREAD_MUTEX_INIT_FUNCTION (&old_locale_lock);
585 #endif
586 #endif
588 #ifndef __GTHREAD_MUTEX_INIT
589 __GTHREAD_MUTEX_INIT_FUNCTION (&unit_lock);
590 #endif
592 if (options.stdin_unit >= 0)
593 { /* STDIN */
594 u = insert_unit (options.stdin_unit);
595 u->s = input_stream ();
597 u->flags.action = ACTION_READ;
599 u->flags.access = ACCESS_SEQUENTIAL;
600 u->flags.form = FORM_FORMATTED;
601 u->flags.status = STATUS_OLD;
602 u->flags.blank = BLANK_NULL;
603 u->flags.pad = PAD_YES;
604 u->flags.position = POSITION_ASIS;
605 u->flags.sign = SIGN_UNSPECIFIED;
606 u->flags.decimal = DECIMAL_POINT;
607 u->flags.delim = DELIM_UNSPECIFIED;
608 u->flags.encoding = ENCODING_DEFAULT;
609 u->flags.async = ASYNC_NO;
610 u->flags.round = ROUND_UNSPECIFIED;
611 u->flags.share = SHARE_UNSPECIFIED;
612 u->flags.cc = CC_LIST;
614 u->recl = options.default_recl;
615 u->endfile = NO_ENDFILE;
617 u->filename = strdup (stdin_name);
619 fbuf_init (u, 0);
621 __gthread_mutex_unlock (&u->lock);
624 if (options.stdout_unit >= 0)
625 { /* STDOUT */
626 u = insert_unit (options.stdout_unit);
627 u->s = output_stream ();
629 u->flags.action = ACTION_WRITE;
631 u->flags.access = ACCESS_SEQUENTIAL;
632 u->flags.form = FORM_FORMATTED;
633 u->flags.status = STATUS_OLD;
634 u->flags.blank = BLANK_NULL;
635 u->flags.position = POSITION_ASIS;
636 u->flags.sign = SIGN_UNSPECIFIED;
637 u->flags.decimal = DECIMAL_POINT;
638 u->flags.delim = DELIM_UNSPECIFIED;
639 u->flags.encoding = ENCODING_DEFAULT;
640 u->flags.async = ASYNC_NO;
641 u->flags.round = ROUND_UNSPECIFIED;
642 u->flags.share = SHARE_UNSPECIFIED;
643 u->flags.cc = CC_LIST;
645 u->recl = options.default_recl;
646 u->endfile = AT_ENDFILE;
648 u->filename = strdup (stdout_name);
650 fbuf_init (u, 0);
652 __gthread_mutex_unlock (&u->lock);
655 if (options.stderr_unit >= 0)
656 { /* STDERR */
657 u = insert_unit (options.stderr_unit);
658 u->s = error_stream ();
660 u->flags.action = ACTION_WRITE;
662 u->flags.access = ACCESS_SEQUENTIAL;
663 u->flags.form = FORM_FORMATTED;
664 u->flags.status = STATUS_OLD;
665 u->flags.blank = BLANK_NULL;
666 u->flags.position = POSITION_ASIS;
667 u->flags.sign = SIGN_UNSPECIFIED;
668 u->flags.decimal = DECIMAL_POINT;
669 u->flags.encoding = ENCODING_DEFAULT;
670 u->flags.async = ASYNC_NO;
671 u->flags.round = ROUND_UNSPECIFIED;
672 u->flags.share = SHARE_UNSPECIFIED;
673 u->flags.cc = CC_LIST;
675 u->recl = options.default_recl;
676 u->endfile = AT_ENDFILE;
678 u->filename = strdup (stderr_name);
680 fbuf_init (u, 256); /* 256 bytes should be enough, probably not doing
681 any kind of exotic formatting to stderr. */
683 __gthread_mutex_unlock (&u->lock);
686 /* Calculate the maximum file offset in a portable manner.
687 max will be the largest signed number for the type gfc_offset.
688 set a 1 in the LSB and keep a running sum, stopping at MSB-1 bit. */
689 max_offset = 0;
690 for (i = 0; i < sizeof (max_offset) * 8 - 1; i++)
691 max_offset = max_offset + ((gfc_offset) 1 << i);
695 static int
696 close_unit_1 (gfc_unit *u, int locked)
698 int i, rc;
700 /* If there are previously written bytes from a write with ADVANCE="no"
701 Reposition the buffer before closing. */
702 if (u->previous_nonadvancing_write)
703 finish_last_advance_record (u);
705 rc = (u->s == NULL) ? 0 : sclose (u->s) == -1;
707 u->closed = 1;
708 if (!locked)
709 __gthread_mutex_lock (&unit_lock);
711 for (i = 0; i < CACHE_SIZE; i++)
712 if (unit_cache[i] == u)
713 unit_cache[i] = NULL;
715 delete_unit (u);
717 free (u->filename);
718 u->filename = NULL;
720 free_format_hash_table (u);
721 fbuf_destroy (u);
723 if (u->unit_number <= NEWUNIT_START)
724 newunit_free (u->unit_number);
726 if (!locked)
727 __gthread_mutex_unlock (&u->lock);
729 /* If there are any threads waiting in find_unit for this unit,
730 avoid freeing the memory, the last such thread will free it
731 instead. */
732 if (u->waiting == 0)
733 destroy_unit_mutex (u);
735 if (!locked)
736 __gthread_mutex_unlock (&unit_lock);
738 return rc;
741 void
742 unlock_unit (gfc_unit *u)
744 __gthread_mutex_unlock (&u->lock);
747 /* close_unit()-- Close a unit. The stream is closed, and any memory
748 associated with the stream is freed. Returns nonzero on I/O error.
749 Should be called with the u->lock locked. */
752 close_unit (gfc_unit *u)
754 return close_unit_1 (u, 0);
758 /* close_units()-- Delete units on completion. We just keep deleting
759 the root of the treap until there is nothing left.
760 Not sure what to do with locking here. Some other thread might be
761 holding some unit's lock and perhaps hold it indefinitely
762 (e.g. waiting for input from some pipe) and close_units shouldn't
763 delay the program too much. */
765 void
766 close_units (void)
768 __gthread_mutex_lock (&unit_lock);
769 while (unit_root != NULL)
770 close_unit_1 (unit_root, 1);
771 __gthread_mutex_unlock (&unit_lock);
773 free (newunits);
775 #ifdef HAVE_FREELOCALE
776 freelocale (c_locale);
777 #endif
781 /* High level interface to truncate a file, i.e. flush format buffers,
782 and generate an error or set some flags. Just like POSIX
783 ftruncate, returns 0 on success, -1 on failure. */
786 unit_truncate (gfc_unit *u, gfc_offset pos, st_parameter_common *common)
788 int ret;
790 /* Make sure format buffer is flushed. */
791 if (u->flags.form == FORM_FORMATTED)
793 if (u->mode == READING)
794 pos += fbuf_reset (u);
795 else
796 fbuf_flush (u, u->mode);
799 /* struncate() should flush the stream buffer if necessary, so don't
800 bother calling sflush() here. */
801 ret = struncate (u->s, pos);
803 if (ret != 0)
804 generate_error (common, LIBERROR_OS, NULL);
805 else
807 u->endfile = AT_ENDFILE;
808 u->flags.position = POSITION_APPEND;
811 return ret;
815 /* filename_from_unit()-- If the unit_number exists, return a pointer to the
816 name of the associated file, otherwise return the empty string. The caller
817 must free memory allocated for the filename string. */
819 char *
820 filename_from_unit (int n)
822 gfc_unit *u;
823 int c;
825 /* Find the unit. */
826 u = unit_root;
827 while (u != NULL)
829 c = compare (n, u->unit_number);
830 if (c < 0)
831 u = u->left;
832 if (c > 0)
833 u = u->right;
834 if (c == 0)
835 break;
838 /* Get the filename. */
839 if (u != NULL && u->filename != NULL)
840 return strdup (u->filename);
841 else
842 return (char *) NULL;
845 void
846 finish_last_advance_record (gfc_unit *u)
849 if (u->saved_pos > 0)
850 fbuf_seek (u, u->saved_pos, SEEK_CUR);
852 if (!(u->unit_number == options.stdout_unit
853 || u->unit_number == options.stderr_unit))
855 #ifdef HAVE_CRLF
856 const int len = 2;
857 #else
858 const int len = 1;
859 #endif
860 char *p = fbuf_alloc (u, len);
861 if (!p)
862 os_error ("Completing record after ADVANCE_NO failed");
863 #ifdef HAVE_CRLF
864 *(p++) = '\r';
865 #endif
866 *p = '\n';
869 fbuf_flush (u, u->mode);
873 /* Assign a negative number for NEWUNIT in OPEN statements or for
874 internal units. */
876 newunit_alloc (void)
878 __gthread_mutex_lock (&unit_lock);
879 if (!newunits)
881 newunits = xcalloc (16, 1);
882 newunit_size = 16;
885 /* Search for the next available newunit. */
886 for (int ii = newunit_lwi; ii < newunit_size; ii++)
888 if (!newunits[ii])
890 newunits[ii] = true;
891 newunit_lwi = ii + 1;
892 __gthread_mutex_unlock (&unit_lock);
893 return -ii + NEWUNIT_START;
897 /* Search failed, bump size of array and allocate the first
898 available unit. */
899 int old_size = newunit_size;
900 newunit_size *= 2;
901 newunits = xrealloc (newunits, newunit_size);
902 memset (newunits + old_size, 0, old_size);
903 newunits[old_size] = true;
904 newunit_lwi = old_size + 1;
905 __gthread_mutex_unlock (&unit_lock);
906 return -old_size + NEWUNIT_START;
910 /* Free a previously allocated newunit= unit number. unit_lock must
911 be held when calling. */
913 void
914 newunit_free (int unit)
916 int ind = -unit + NEWUNIT_START;
917 assert(ind >= 0 && ind < newunit_size);
918 newunits[ind] = false;
919 if (ind < newunit_lwi)
920 newunit_lwi = ind;