Thu Nov 2 19:24:37 1995 Roland McGrath <roland@churchy.gnu.ai.mit.edu>
[glibc.git] / stdio-common / vfprintf.c
blob63a51484639678183d3a07fea4339becff65b6e7
1 /* Copyright (C) 1991, 1992, 1993, 1994, 1995 Free Software Foundation, Inc.
2 This file is part of the GNU C Library.
4 The GNU C Library is free software; you can redistribute it and/or
5 modify it under the terms of the GNU Library General Public License as
6 published by the Free Software Foundation; either version 2 of the
7 License, or (at your option) any later version.
9 The GNU C Library is distributed in the hope that it will be useful,
10 but WITHOUT ANY WARRANTY; without even the implied warranty of
11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 Library General Public License for more details.
14 You should have received a copy of the GNU Library General Public
15 License along with the GNU C Library; see the file COPYING.LIB. If
16 not, write to the Free Software Foundation, Inc., 675 Mass Ave,
17 Cambridge, MA 02139, USA. */
19 #include <ctype.h>
20 #include <errno.h>
21 #include <float.h>
22 #include <limits.h>
23 #include <math.h>
24 #include <printf.h>
25 #include <stdarg.h>
26 #include <stdlib.h>
27 #include <string.h>
28 #include <printf.h>
29 #include <stddef.h>
30 #include "_itoa.h"
31 #include "../locale/localeinfo.h"
33 /* Include the shared code for parsing the format string. */
34 #include "printf-parse.h"
37 /* This function from the GNU C library is also used in libio.
38 To compile for use in libio, compile with -DUSE_IN_LIBIO. */
40 #ifdef USE_IN_LIBIO
41 /* This code is for use in libio. */
42 #include <libioP.h>
43 #define PUT(f, s, n) _IO_sputn (f, s, n)
44 #define PAD(padchar) \
45 if (specs[cnt].info.width > 0) \
46 done += _IO_padn (s, padchar, specs[cnt].info.width)
47 #define PUTC(c, f) _IO_putc (c, f)
48 #define vfprintf _IO_vfprintf
49 #define size_t _IO_size_t
50 #define FILE _IO_FILE
51 #define va_list _IO_va_list
52 #undef BUFSIZ
53 #define BUFSIZ _IO_BUFSIZ
54 #define ARGCHECK(s, format) \
55 do \
56 { \
57 /* Check file argument for consistence. */ \
58 CHECK_FILE (s, -1); \
59 if (s->_flags & _IO_NO_WRITES || format == NULL) \
60 { \
61 MAYBE_SET_EINVAL; \
62 return -1; \
63 } \
64 } while (0)
65 #define UNBUFFERED_P(s) ((s)->_IO_file_flags & _IO_UNBUFFERED)
66 #else /* ! USE_IN_LIBIO */
67 /* This code is for use in the GNU C library. */
68 #include <stdio.h>
69 #define PUTC(c, f) putc (c, f)
70 #define PUT(f, s, n) fwrite (s, 1, n, f)
71 ssize_t __printf_pad __P ((FILE *, char pad, size_t n));
72 #define PAD(padchar) \
73 if (specs[cnt].info.width > 0) \
74 { if (__printf_pad (s, padchar, specs[cnt].info.width) == -1) \
75 return -1; else done += specs[cnt].info.width; }
76 #define ARGCHECK(s, format) \
77 do \
78 { \
79 /* Check file argument for consistence. */ \
80 if (!__validfp(s) || !s->__mode.__write || format == NULL) \
81 { \
82 errno = EINVAL; \
83 return -1; \
84 } \
85 if (!s->__seen) \
86 { \
87 if (__flshfp (s, EOF) == EOF) \
88 return -1; \
89 } \
90 } while (0)
91 #define UNBUFFERED_P(s) ((s)->__buffer == NULL)
92 #endif /* USE_IN_LIBIO */
95 #define outchar(x) \
96 do \
97 { \
98 register const int outc = (x); \
99 if (putc (outc, s) == EOF) \
100 return -1; \
101 else \
102 ++done; \
103 } while (0)
105 #define outstring(string, len) \
106 do \
108 if (len > 20) \
110 if (PUT (s, string, len) != len) \
111 return -1; \
112 done += len; \
114 else \
116 register const char *cp = string; \
117 register int l = len; \
118 while (l-- > 0) \
119 outchar (*cp++); \
121 } while (0)
123 /* Helper function to provide temporary buffering for unbuffered streams. */
124 static int buffered_vfprintf __P ((FILE *stream, const char *fmt, va_list));
126 static printf_function printf_unknown;
128 extern printf_function **__printf_function_table;
130 static char *group_number __P ((char *, char *, const char *, wchar_t));
134 vfprintf (s, format, ap)
135 register FILE *s;
136 const char *format;
137 va_list ap;
139 /* The character used as thousands separator. */
140 wchar_t thousands_sep;
142 /* The string describing the size of groups of digits. */
143 const char *grouping;
145 /* Array with information about the needed arguments. This has to be
146 dynamically extendable. */
147 size_t nspecs;
148 size_t nspecs_max;
149 struct printf_spec *specs;
151 /* The number of arguments the format string requests. This will
152 determine the size of the array needed to store the argument
153 attributes. */
154 size_t nargs;
155 int *args_type;
156 union printf_arg *args_value;
158 /* Positional parameters refer to arguments directly. This could also
159 determine the maximum number of arguments. Track the maximum number. */
160 size_t max_ref_arg;
162 /* End of leading constant string. */
163 const char *lead_str_end;
165 /* Number of characters written. */
166 register size_t done = 0;
168 /* Running pointer through format string. */
169 const char *f;
171 /* Just a counter. */
172 int cnt;
174 ARGCHECK (s, format);
176 if (UNBUFFERED_P (s))
177 /* Use a helper function which will allocate a local temporary buffer
178 for the stream and then call us again. */
179 return buffered_vfprintf (s, format, ap);
181 /* Reset multibyte characters to their initial state. */
182 (void) mblen ((char *) NULL, 0);
184 /* Figure out the thousands separator character. */
185 if (mbtowc (&thousands_sep, _NL_CURRENT (LC_NUMERIC, THOUSANDS_SEP),
186 strlen (_NL_CURRENT (LC_NUMERIC, THOUSANDS_SEP))) <= 0)
187 thousands_sep = (wchar_t) *_NL_CURRENT (LC_NUMERIC, THOUSANDS_SEP);
188 grouping = _NL_CURRENT (LC_NUMERIC, GROUPING);
189 if (*grouping == '\0' || *grouping == CHAR_MAX || thousands_sep == L'\0')
190 grouping = NULL;
192 nspecs_max = 32; /* A more or less arbitrary start value. */
193 specs = alloca (nspecs_max * sizeof (struct printf_spec));
194 nspecs = 0;
195 nargs = 0;
196 max_ref_arg = 0;
198 /* Find the first format specifier. */
199 lead_str_end = find_spec (format);
201 for (f = lead_str_end; *f != '\0'; f = specs[nspecs++].next_fmt)
203 if (nspecs >= nspecs_max)
205 /* Extend the array of format specifiers. */
206 struct printf_spec *old = specs;
208 nspecs_max *= 2;
209 specs = alloca (nspecs_max * sizeof (struct printf_spec));
210 if (specs == &old[nspecs])
211 /* Stack grows up, OLD was the last thing allocated; extend it. */
212 nspecs_max += nspecs_max / 2;
213 else
215 /* Copy the old array's elements to the new space. */
216 memcpy (specs, old, nspecs * sizeof (struct printf_spec));
217 if (old == &specs[nspecs])
218 /* Stack grows down, OLD was just below the new SPECS.
219 We can use that space when the new space runs out. */
220 nspecs_max += nspecs_max / 2;
224 /* Parse the format specifier. */
225 nargs += parse_one_spec (f, nargs, &specs[nspecs], &max_ref_arg);
228 /* Determine the number of arguments the format string consumes. */
229 nargs = MAX (nargs, max_ref_arg);
231 /* Allocate memory for the argument descriptions. */
232 args_type = alloca (nargs * sizeof (int));
233 args_value = alloca (nargs * sizeof (union printf_arg));
235 /* XXX Could do sanity check here:
236 Initialize args_type elts to zero.
237 If any is still zero after this loop, format is invalid. */
239 /* Fill in the types of all the arguments. */
240 for (cnt = 0; cnt < nspecs; ++cnt)
242 /* If the width is determined by an argument this is an int. */
243 if (specs[cnt].width_arg != -1)
244 args_type[specs[cnt].width_arg] = PA_INT;
246 /* If the precision is determined by an argument this is an int. */
247 if (specs[cnt].prec_arg != -1)
248 args_type[specs[cnt].prec_arg] = PA_INT;
250 switch (specs[cnt].ndata_args)
252 case 0: /* No arguments. */
253 break;
254 case 1: /* One argument; we already have the type. */
255 args_type[specs[cnt].data_arg] = specs[cnt].data_arg_type;
256 break;
257 default:
258 /* We have more than one argument for this format spec. We must
259 call the arginfo function again to determine all the types. */
260 (void) (*__printf_arginfo_table[specs[cnt].info.spec])
261 (&specs[cnt].info,
262 specs[cnt].ndata_args, &args_type[specs[cnt].data_arg]);
263 break;
267 /* Now we know all the types and the order. Fill in the argument values. */
268 for (cnt = 0; cnt < nargs; ++cnt)
269 switch (args_type[cnt])
271 #define T(tag, mem, type) \
272 case tag: \
273 args_value[cnt].mem = va_arg (ap, type); \
274 break
276 T (PA_CHAR, pa_char, int); /* Promoted. */
277 T (PA_INT|PA_FLAG_SHORT, pa_short_int, int); /* Promoted. */
278 T (PA_INT, pa_int, int);
279 T (PA_INT|PA_FLAG_LONG, pa_long_int, long int);
280 T (PA_INT|PA_FLAG_LONG_LONG, pa_long_long_int, long long int);
281 T (PA_FLOAT, pa_float, double); /* Promoted. */
282 T (PA_DOUBLE, pa_double, double);
283 T (PA_DOUBLE|PA_FLAG_LONG_DOUBLE, pa_long_double, long double);
284 T (PA_STRING, pa_string, const char *);
285 T (PA_POINTER, pa_pointer, void *);
286 #undef T
287 default:
288 if ((args_type[cnt] & PA_FLAG_PTR) != 0)
289 args_value[cnt].pa_pointer = va_arg (ap, void *);
290 break;
293 /* Write the literal text before the first format. */
294 outstring (format, lead_str_end - format);
296 /* Now walk through all format specifiers and process them. */
297 for (cnt = 0; cnt < nspecs; ++cnt)
299 printf_function *function; /* Auxiliary function to do output. */
300 int is_neg; /* Decimal integer is negative. */
301 int base; /* Base of a number to be written. */
302 unsigned long long int num; /* Integral number to be written. */
303 const char *str; /* String to be written. */
304 char errorbuf[1024]; /* Buffer sometimes used by %m. */
306 if (specs[cnt].width_arg != -1)
308 /* Extract the field width from an argument. */
309 specs[cnt].info.width = args_value[specs[cnt].width_arg].pa_int;
311 if (specs[cnt].info.width < 0)
312 /* If the width value is negative left justification is selected
313 and the value is taken as being positive. */
315 specs[cnt].info.width = -specs[cnt].info.width;
316 specs[cnt].info.left = 1;
320 if (specs[cnt].prec_arg != -1)
322 /* Extract the precision from an argument. */
323 specs[cnt].info.prec = args_value[specs[cnt].prec_arg].pa_int;
325 if (specs[cnt].info.prec < 0)
326 /* If the precision is negative the precision is omitted. */
327 specs[cnt].info.prec = -1;
330 /* Check for a user-defined handler for this spec. */
331 function = (__printf_function_table == NULL ? NULL :
332 __printf_function_table[specs[cnt].info.spec]);
334 if (function != NULL)
335 use_function: /* Built-in formats with helpers use this. */
337 int function_done;
338 unsigned int i;
339 const void *ptr[specs[cnt].ndata_args];
341 /* Fill in an array of pointers to the argument values. */
342 for (i = 0; i < specs[cnt].ndata_args; ++i)
343 ptr[i] = &args_value[specs[cnt].data_arg + i];
345 /* Call the function. */
346 function_done = (*function) (s, &specs[cnt].info, ptr);
348 /* If an error occured don't do any further work. */
349 if (function_done < 0)
350 return -1;
352 done += function_done;
354 else
355 switch (specs[cnt].info.spec)
357 case '%':
358 /* Write a literal "%". */
359 outchar ('%');
360 break;
361 case 'i':
362 case 'd':
364 long long int signed_num;
366 /* Decimal integer. */
367 base = 10;
368 if (specs[cnt].info.is_longlong)
369 signed_num = args_value[specs[cnt].data_arg].pa_long_long_int;
370 else if (specs[cnt].info.is_long)
371 signed_num = args_value[specs[cnt].data_arg].pa_long_int;
372 else if (!specs[cnt].info.is_short)
373 signed_num = args_value[specs[cnt].data_arg].pa_int;
374 else
375 signed_num = args_value[specs[cnt].data_arg].pa_short_int;
377 is_neg = signed_num < 0;
378 num = is_neg ? (- signed_num) : signed_num;
379 goto number;
382 case 'u':
383 /* Decimal unsigned integer. */
384 base = 10;
385 goto unsigned_number;
387 case 'o':
388 /* Octal unsigned integer. */
389 base = 8;
390 goto unsigned_number;
392 case 'X':
393 /* Hexadecimal unsigned integer. */
394 case 'x':
395 /* Hex with lower-case digits. */
396 base = 16;
398 unsigned_number:
399 /* Unsigned number of base BASE. */
401 if (specs[cnt].info.is_longlong)
402 num = args_value[specs[cnt].data_arg].pa_u_long_long_int;
403 else if (specs[cnt].info.is_long)
404 num = args_value[specs[cnt].data_arg].pa_u_long_int;
405 else if (!specs[cnt].info.is_short)
406 num = args_value[specs[cnt].data_arg].pa_u_int;
407 else
408 num = args_value[specs[cnt].data_arg].pa_u_short_int;
410 /* ANSI only specifies the `+' and
411 ` ' flags for signed conversions. */
412 is_neg = 0;
413 specs[cnt].info.showsign = 0;
414 specs[cnt].info.space = 0;
416 number:
417 /* Number of base BASE. */
419 char work[BUFSIZ];
420 char *const workend = &work[sizeof(work) - 1];
421 register char *w;
423 /* Supply a default precision if none was given. */
424 if (specs[cnt].info.prec == -1)
425 specs[cnt].info.prec = 1;
427 /* Put the number in WORK. */
428 w = _itoa (num, workend + 1, base, specs[cnt].info.spec == 'X');
429 w -= 1;
430 if (specs[cnt].info.group && grouping)
431 w = group_number (w, workend, grouping, thousands_sep);
432 specs[cnt].info.width -= workend - w;
433 specs[cnt].info.prec -= workend - w;
435 if (num != 0 && specs[cnt].info.alt && base == 8
436 && specs[cnt].info.prec <= 0)
438 /* Add octal marker. */
439 *w-- = '0';
440 --specs[cnt].info.width;
443 if (specs[cnt].info.prec > 0)
445 /* Add zeros to the precision. */
446 specs[cnt].info.width -= specs[cnt].info.prec;
447 while (specs[cnt].info.prec-- > 0)
448 *w-- = '0';
451 if (num != 0 && specs[cnt].info.alt && base == 16)
452 /* Account for 0X hex marker. */
453 specs[cnt].info.width -= 2;
455 if (is_neg || specs[cnt].info.showsign || specs[cnt].info.space)
456 --specs[cnt].info.width;
458 if (!specs[cnt].info.left && specs[cnt].info.pad == ' ')
459 PAD (' ');
461 if (is_neg)
462 outchar ('-');
463 else if (specs[cnt].info.showsign)
464 outchar ('+');
465 else if (specs[cnt].info.space)
466 outchar (' ');
468 if (num != 0 && specs[cnt].info.alt && base == 16)
470 outchar ('0');
471 outchar (specs[cnt].info.spec);
474 if (!specs[cnt].info.left && specs[cnt].info.pad == '0')
475 PAD ('0');
477 /* Write the number. */
478 while (++w <= workend)
479 outchar (*w);
481 if (specs[cnt].info.left)
482 PAD (' ');
484 break;
486 case 'e':
487 case 'E':
488 case 'f':
489 case 'g':
490 case 'G':
492 /* Floating-point number. This is handled by printf_fp.c. */
493 extern printf_function __printf_fp;
494 function = __printf_fp;
495 goto use_function;
498 case 'c':
499 /* Character. */
500 if (!specs[cnt].info.left)
502 --specs[cnt].info.width;
503 PAD (' ');
505 outchar ((unsigned char) args_value[specs[cnt].data_arg].pa_char);
506 if (specs[cnt].info.left)
507 PAD (' ');
508 break;
510 case 's':
512 static const char null[] = "(null)";
513 size_t len;
515 str = args_value[specs[cnt].data_arg].pa_string;
517 string:
519 if (str == NULL)
521 /* Write "(null)" if there's space. */
522 if (specs[cnt].info.prec == -1
523 || specs[cnt].info.prec >= (int) sizeof (null) - 1)
525 str = null;
526 len = sizeof (null) - 1;
528 else
530 str = "";
531 len = 0;
534 else if (specs[cnt].info.prec != -1)
536 /* Search for the end of the string, but don't search
537 past the length specified by the precision. */
538 const char *end = memchr (str, '\0', specs[cnt].info.prec);
539 if (end)
540 len = end - str;
541 else
542 len = specs[cnt].info.prec;
544 else
545 len = strlen (str);
547 specs[cnt].info.width -= len;
549 if (!specs[cnt].info.left)
550 PAD (' ');
551 outstring (str, len);
552 if (specs[cnt].info.left)
553 PAD (' ');
555 break;
557 case 'p':
558 /* Generic pointer. */
560 const void *ptr;
561 ptr = args_value[specs[cnt].data_arg].pa_pointer;
562 if (ptr != NULL)
564 /* If the pointer is not NULL, write it as a %#x spec. */
565 base = 16;
566 num = (unsigned long long int) (unsigned long int) ptr;
567 is_neg = 0;
568 specs[cnt].info.alt = 1;
569 specs[cnt].info.spec = 'x';
570 specs[cnt].info.group = 0;
571 goto number;
573 else
575 /* Write "(nil)" for a nil pointer. */
576 str = "(nil)";
577 /* Make sure the full string "(nil)" is printed. */
578 if (specs[cnt].info.prec < 5)
579 specs[cnt].info.prec = 5;
580 goto string;
583 break;
585 case 'n':
586 /* Answer the count of characters written. */
587 if (specs[cnt].info.is_longlong)
588 *(long long int *)
589 args_value[specs[cnt].data_arg].pa_pointer = done;
590 else if (specs[cnt].info.is_long)
591 *(long int *)
592 args_value[specs[cnt].data_arg].pa_pointer = done;
593 else if (!specs[cnt].info.is_short)
594 *(int *)
595 args_value[specs[cnt].data_arg].pa_pointer = done;
596 else
597 *(short int *)
598 args_value[specs[cnt].data_arg].pa_pointer = done;
599 break;
601 case 'm':
603 extern char *_strerror_internal __P ((int, char *buf, size_t));
604 str = _strerror_internal (errno, errorbuf, sizeof errorbuf);
605 goto string;
608 default:
609 /* Unrecognized format specifier. */
610 function = printf_unknown;
611 goto use_function;
614 /* Write the following constant string. */
615 outstring (specs[cnt].end_of_fmt,
616 specs[cnt].next_fmt - specs[cnt].end_of_fmt);
619 return done;
623 /* Handle an unknown format specifier. This prints out a canonicalized
624 representation of the format spec itself. */
626 static int
627 printf_unknown (s, info, args)
628 FILE *s;
629 const struct printf_info *info;
630 const void **const args;
632 int done = 0;
633 char work[BUFSIZ];
634 char *const workend = &work[sizeof(work) - 1];
635 register char *w;
637 outchar ('%');
639 if (info->alt)
640 outchar ('#');
641 if (info->group)
642 outchar ('\'');
643 if (info->showsign)
644 outchar ('+');
645 else if (info->space)
646 outchar (' ');
647 if (info->left)
648 outchar ('-');
649 if (info->pad == '0')
650 outchar ('0');
652 if (info->width != 0)
654 w = _itoa (info->width, workend + 1, 10, 0);
655 while (++w <= workend)
656 outchar (*w);
659 if (info->prec != -1)
661 outchar ('.');
662 w = _itoa (info->prec, workend + 1, 10, 0);
663 while (++w <= workend)
664 outchar (*w);
667 if (info->spec != '\0')
668 outchar (info->spec);
670 return done;
673 /* Group the digits according to the grouping rules of the current locale.
674 The interpretation of GROUPING is as in `struct lconv' from <locale.h>. */
676 static char *
677 group_number (char *w, char *workend, const char *grouping,
678 wchar_t thousands_sep)
680 int len;
681 char *src, *s;
683 /* We treat all negative values like CHAR_MAX. */
685 if (*grouping == CHAR_MAX || *grouping < 0)
686 /* No grouping should be done. */
687 return w;
689 len = *grouping;
691 /* Copy existing string so that nothing gets overwritten. */
692 src = (char *) alloca (workend - w);
693 memcpy (src, w + 1, workend - w);
694 s = &src[workend - w - 1];
695 w = workend;
697 /* Process all characters in the string. */
698 while (s >= src)
700 *w-- = *s--;
702 if (--len == 0 && s >= src)
704 /* A new group begins. */
705 *w-- = thousands_sep;
707 len = *grouping++;
708 if (*grouping == '\0')
709 /* The previous grouping repeats ad infinitum. */
710 --grouping;
711 else if (*grouping == CHAR_MAX || *grouping < 0)
713 /* No further grouping to be done.
714 Copy the rest of the number. */
716 *w-- = *s--;
717 while (s >= src);
718 break;
722 return w;
725 #ifdef USE_IN_LIBIO
726 /* Helper "class" for `fprintf to unbuffered': creates a temporary buffer. */
727 struct helper_file
729 struct _IO_FILE_plus _f;
730 _IO_FILE *_put_stream;
733 static int
734 _IO_helper_overflow (s, c)
735 _IO_FILE *s;
736 int c;
738 _IO_FILE *target = ((struct helper_file*) s)->_put_stream;
739 int used = s->_IO_write_ptr - s->_IO_write_base;
740 if (used)
742 _IO_size_t written = _IO_sputn (target, s->_IO_write_base, used);
743 s->_IO_write_ptr -= written;
745 return _IO_putc (c, s);
748 static const struct _IO_jump_t _IO_helper_jumps =
750 _IO_helper_overflow,
751 _IO_default_underflow,
752 _IO_default_xsputn,
753 _IO_default_xsgetn,
754 _IO_default_read,
755 _IO_default_write,
756 _IO_default_doallocate,
757 _IO_default_pbackfail,
758 _IO_default_setbuf,
759 _IO_default_sync,
760 _IO_default_finish,
761 _IO_default_close,
762 _IO_default_stat,
763 _IO_default_seek,
764 _IO_default_seekoff,
765 _IO_default_seekpos,
766 _IO_default_uflow
769 static int
770 buffered_vfprintf (s, format, args)
771 register _IO_FILE *s;
772 char const *format;
773 _IO_va_list args;
775 char buf[_IO_BUFSIZ];
776 struct helper_file helper;
777 register _IO_FILE *hp = (_IO_FILE *) &helper;
778 int result, to_flush;
780 /* Initialize helper. */
781 helper._put_stream = s;
782 hp->_IO_write_base = buf;
783 hp->_IO_write_ptr = buf;
784 hp->_IO_write_end = buf + sizeof buf;
785 hp->_IO_file_flags = _IO_MAGIC|_IO_NO_READS;
786 hp->_jumps = (struct _IO_jump_t *) &_IO_helper_jumps;
788 /* Now print to helper instead. */
789 result = _IO_vfprintf (hp, format, args);
791 /* Now flush anything from the helper to the S. */
792 if ((to_flush = hp->_IO_write_ptr - hp->_IO_write_base) > 0)
794 if (_IO_sputn (s, hp->_IO_write_base, to_flush) != to_flush)
795 return -1;
798 return result;
801 #else /* !USE_IN_LIBIO */
803 static int
804 buffered_vfprintf (s, format, args)
805 register FILE *s;
806 char const *format;
807 va_list args;
809 char buf[BUFSIZ];
810 int result;
812 s->__bufp = s->__buffer = buf;
813 s->__bufsize = sizeof buf;
814 s->__put_limit = s->__buffer + s->__bufsize;
815 s->__get_limit = s->__buffer;
817 /* Now use buffer to print. */
818 result = vfprintf (s, format, args);
820 if (fflush (s) == EOF)
821 result = -1;
822 s->__buffer = s->__bufp = s->__get_limit = s->__put_limit = NULL;
823 s->__bufsize = 0;
825 return result;
829 /* Pads string with given number of a specified character.
830 This code is taken from iopadn.c of the GNU I/O library. */
831 #define PADSIZE 16
832 static const char blanks[PADSIZE] =
833 {' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' '};
834 static const char zeroes[PADSIZE] =
835 {'0','0','0','0','0','0','0','0','0','0','0','0','0','0','0','0'};
837 ssize_t
838 __printf_pad (s, pad, count)
839 FILE *s;
840 char pad;
841 size_t count;
843 const char *padptr;
844 register size_t i;
846 padptr = pad == ' ' ? blanks : zeroes;
848 for (i = count; i >= PADSIZE; i -= PADSIZE)
849 if (PUT (s, padptr, PADSIZE) != PADSIZE)
850 return -1;
851 if (i > 0)
852 if (PUT (s, padptr, i) != i)
853 return -1;
855 return count;
857 #undef PADSIZE
858 #endif /* USE_IN_LIBIO */