1 /* Copyright (C) 1991, 92, 93, 94, 95, 96 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. */
20 * ANSI Standard: 4.10 GENERAL UTILITIES <stdlib.h>
28 /* Get size_t, wchar_t and NULL from <stddef.h>. */
30 #define __need_wchar_t
39 /* Returned by `div'. */
42 int quot
; /* Quotient. */
43 int rem
; /* Remainder. */
46 /* Returned by `ldiv'. */
49 long int quot
; /* Quotient. */
50 long int rem
; /* Remainder. */
54 /* The largest number rand will return (same as INT_MAX). */
55 #define RAND_MAX 2147483647
58 /* We define these the same for all machines.
59 Changes from this to the outside world should be done in `_exit'. */
60 #define EXIT_FAILURE 1 /* Failing exit status. */
61 #define EXIT_SUCCESS 0 /* Successful exit status. */
64 /* Maximum length of a multibyte character in the current locale.
65 This is just one until the fancy locale support is finished. */
69 /* Convert a string to a floating-point number. */
70 extern double atof
__P ((__const
char *__nptr
));
71 /* Convert a string to an integer. */
72 extern int atoi
__P ((__const
char *__nptr
));
73 /* Convert a string to a long integer. */
74 extern long int atol
__P ((__const
char *__nptr
));
76 /* Convert a string to a floating-point number. */
77 extern double strtod
__P ((__const
char *__nptr
, char **__endptr
));
80 /* Likewise for `float' and `long double' sizes of floating-point numbers. */
81 extern float strtof
__P ((__const
char *__nptr
, char **__endptr
));
82 extern __long_double_t strtold
__P ((__const
char *__nptr
, char **__endptr
));
85 /* Convert a string to a long integer. */
86 extern long int strtol
__P ((__const
char *__nptr
, char **__endptr
,
88 /* Convert a string to an unsigned long integer. */
89 extern unsigned long int strtoul
__P ((__const
char *__nptr
,
90 char **__endptr
, int __base
));
92 #if defined (__GNUC__) && defined (__USE_BSD)
93 /* Convert a string to a quadword integer. */
94 extern long long int strtoq
__P ((__const
char *__nptr
, char **__endptr
,
96 /* Convert a string to an unsigned quadword integer. */
97 extern unsigned long long int strtouq
__P ((__const
char *__nptr
,
98 char **__endptr
, int __base
));
99 #endif /* GCC and use BSD. */
102 /* The internal entry points for `strtoX' take an extra flag argument
103 saying whether or not to parse locale-dependent number grouping. */
105 extern double __strtod_internal
__P ((__const
char *__nptr
,
106 char **__endptr
, int __group
));
107 extern float __strtof_internal
__P ((__const
char *__nptr
, char **__endptr
,
109 extern __long_double_t __strtold_internal
__P ((__const
char *__nptr
,
110 char **__endptr
, int __group
));
111 extern long int __strtol_internal
__P ((__const
char *__nptr
, char **__endptr
,
112 int __base
, int __group
));
113 extern unsigned long int __strtoul_internal
__P ((__const
char *__nptr
,
114 char **__endptr
, int __base
,
117 extern long long int __strtoq_internal
__P ((__const
char *__nptr
,
118 char **__endptr
, int __base
,
120 extern unsigned long long int __strtouq_internal
__P ((__const
char *__nptr
,
126 #if defined (__OPTIMIZE__) && __GNUC__ >= 2
127 /* Define inline functions which call the internal entry points. */
129 extern __inline
double strtod (__const
char *__nptr
, char **__endptr
)
130 { return __strtod_internal (__nptr
, __endptr
, 0); }
131 extern __inline
long int strtol (__const
char *__nptr
,
132 char **__endptr
, int __base
)
133 { return __strtol_internal (__nptr
, __endptr
, __base
, 0); }
134 extern __inline
unsigned long int strtoul (__const
char *__nptr
,
135 char **__endptr
, int __base
)
136 { return __strtoul_internal (__nptr
, __endptr
, __base
, 0); }
139 extern __inline
float strtof (__const
char *__nptr
, char **__endptr
)
140 { return __strtof_internal (__nptr
, __endptr
, 0); }
141 extern __inline __long_double_t
strtold (__const
char *__nptr
, char **__endptr
)
142 { return __strtold_internal (__nptr
, __endptr
, 0); }
146 extern __inline
long long int strtoq (__const
char *__nptr
, char **__endptr
,
148 { return __strtoq_internal (__nptr
, __endptr
, __base
, 0); }
149 extern __inline
unsigned long long int strtouq (__const
char *__nptr
,
150 char **__endptr
, int __base
)
151 { return __strtouq_internal (__nptr
, __endptr
, __base
, 0); }
154 extern __inline
double atof (__const
char *__nptr
)
155 { return strtod (__nptr
, (char **) NULL
); }
156 extern __inline
int atoi (__const
char *__nptr
)
157 { return (int) strtol (__nptr
, (char **) NULL
, 10); }
158 extern __inline
long int atol (__const
char *__nptr
)
159 { return strtol (__nptr
, (char **) NULL
, 10); }
160 #endif /* Optimizing GCC >=2. */
164 /* Convert N to base 64 using the digits "./0-9A-Za-z", least-significant
165 digit first. Returns a pointer to static storage overwritten by the
167 extern char *l64a
__P ((long int __n
));
169 /* Read a number from a string in base 64 as above. */
170 extern long int a64l
__P ((const char *));
174 /* Return a random integer between 0 and RAND_MAX inclusive. */
175 extern int rand
__P ((void));
176 /* Seed the random number generator with the given number. */
177 extern void srand
__P ((unsigned int __seed
));
181 #include <sys/types.h> /* we need int32_t... */
183 /* These are the functions that actually do things. The `random', `srandom',
184 `initstate' and `setstate' functions are those from BSD Unices.
185 The `rand' and `srand' functions are required by the ANSI standard.
186 We provide both interfaces to the same random number generator. */
187 /* Return a random long integer between 0 and RAND_MAX inclusive. */
188 extern int32_t __random
__P ((void));
189 /* Seed the random number generator with the given number. */
190 extern void __srandom
__P ((unsigned int __seed
));
192 /* Initialize the random number generator to use state buffer STATEBUF,
193 of length STATELEN, and seed it with SEED. Optimal lengths are 8, 16,
194 32, 64, 128 and 256, the bigger the better; values less than 8 will
195 cause an error and values greater than 256 will be rounded down. */
196 extern __ptr_t __initstate
__P ((unsigned int __seed
, __ptr_t __statebuf
,
198 /* Switch the random number generator to state buffer STATEBUF,
199 which should have been previously initialized by `initstate'. */
200 extern __ptr_t __setstate
__P ((__ptr_t __statebuf
));
202 extern long int random
__P ((void));
203 extern void srandom
__P ((unsigned int __seed
));
204 extern __ptr_t initstate
__P ((unsigned int __seed
, __ptr_t __statebuf
,
206 extern __ptr_t setstate
__P ((__ptr_t __statebuf
));
208 #if defined (__OPTIMIZE__) && __GNUC__ >= 2
209 extern __inline
long int random (void)
210 { return __random(); }
211 extern __inline
void srandom (unsigned int __seed
)
212 { __srandom(__seed
); }
213 extern __inline __ptr_t
initstate (unsigned int __seed
,
214 __ptr_t __statebuf
, size_t __statelen
)
215 { return __initstate (__seed
, __statebuf
, __statelen
); }
216 extern __inline __ptr_t
setstate (__ptr_t __statebuf
)
217 { return __setstate (__statebuf
); }
218 #endif /* Optimizing GCC >=2. */
220 #ifdef __USE_REENTRANT
221 /* Reentrant versions of the `random' family of functions.
222 These functions all use the following data structure to contain
223 state, rather than global state variables. */
227 int32_t *fptr
; /* Front pointer. */
228 int32_t *rptr
; /* Rear pointer. */
229 int32_t *state
; /* Array of state values. */
230 int rand_type
; /* Type of random number generator. */
231 int rand_deg
; /* Degree of random number generator. */
232 int rand_sep
; /* Distance between front and rear. */
233 int32_t *end_ptr
; /* Pointer behind state table. */
236 extern int __random_r
__P ((struct random_data
*__buf
, int32_t *__result
));
237 extern int random_r
__P ((struct random_data
*__buf
, int32_t *__result
));
238 extern int __srandom_r
__P ((unsigned int __seed
, struct random_data
*__buf
));
239 extern int __initstate_r
__P ((unsigned int __seed
, __ptr_t __statebuf
,
240 size_t __statelen
, struct random_data
*__buf
));
241 extern int __setstate_r
__P ((__ptr_t __statebuf
, struct random_data
*__buf
));
243 extern int srandom_r
__P ((unsigned int __seed
, struct random_data
*__buf
));
244 extern int initstate_r
__P ((unsigned int __seed
, __ptr_t __statebuf
,
245 size_t __statelen
, struct random_data
*__buf
));
246 extern int setstate_r
__P ((__ptr_t __statebuf
, struct random_data
*__buf
));
247 #endif /* __USE_REENTRANT. */
248 #endif /* Use BSD. */
252 /* System V style 48-bit random number generator functions. */
254 /* Data structure for communication with thread safe versions. */
257 unsigned short int X
[3]; /* Current state. */
258 unsigned short int a
[3]; /* Factor in congruential formula. */
259 unsigned short int c
; /* Additive const. in congruential formula. */
260 unsigned short int old_X
[3]; /* Old state. */
261 int init
; /* Flag for initializing. */
264 /* Return non-negative, double-precision floating-point value in [0.0,1.0). */
265 extern double drand48
__P ((void));
266 extern int drand48_r
__P ((struct drand48_data
*__buffer
, double *__result
));
267 extern double erand48
__P ((unsigned short int __xsubi
[3]));
268 extern int erand48_r
__P ((unsigned short int __xsubi
[3],
269 struct drand48_data
*__buffer
, double *__result
));
270 /* Return non-negative, long integer in [0,2^31). */
271 extern long lrand48
__P ((void));
272 extern int lrand48_r
__P ((struct drand48_data
*__buffer
, long *__result
));
273 extern long nrand48
__P ((unsigned short int __xsubi
[3]));
274 extern int nrand48_r
__P ((unsigned short int __xsubi
[3],
275 struct drand48_data
*__buffer
, long *__result
));
276 /* Return signed, long integers in [-2^31,2^31). */
277 extern long mrand48
__P ((void));
278 extern int mrand48_r
__P ((struct drand48_data
*__buffer
, long *__result
));
279 extern long jrand48
__P ((unsigned short int __xsubi
[3]));
280 extern int jrand48_r
__P ((unsigned short int __xsubi
[3],
281 struct drand48_data
*__buffer
, long *__result
));
282 /* Seed random number generator. */
283 extern void srand48
__P ((long __seedval
));
284 extern int srand48_r
__P ((long __seedval
, struct drand48_data
*__buffer
));
285 extern unsigned short int *seed48
__P ((unsigned short int __seed16v
[3]));
286 extern int seed48_r
__P ((unsigned short int __seed16v
[3],
287 struct drand48_data
*__buffer
));
288 extern void lcong48
__P ((unsigned short int __param
[7]));
289 extern int lcong48_r
__P ((unsigned short int __param
[7],
290 struct drand48_data
*__buffer
));
292 /* Internal function to compute next state of the generator. */
293 extern int __drand48_iterate
__P ((unsigned short int __xsubi
[3],
294 struct drand48_data
*__buffer
));
295 #endif /* __USE_SVID. */
298 /* Allocate SIZE bytes of memory. */
299 extern __ptr_t malloc
__P ((size_t __size
));
300 /* Re-allocate the previously allocated block
301 in __ptr_t, making the new block SIZE bytes long. */
302 extern __ptr_t realloc
__P ((__ptr_t __ptr
, size_t __size
));
303 /* Allocate NMEMB elements of SIZE bytes each, all initialized to 0. */
304 extern __ptr_t calloc
__P ((size_t __nmemb
, size_t __size
));
305 /* Free a block allocated by `malloc', `realloc' or `calloc'. */
306 extern void free
__P ((__ptr_t __ptr
));
309 /* Free a block. An alias for `free'. (Sun Unices). */
310 extern void cfree
__P ((__ptr_t __ptr
));
311 #endif /* Use misc. */
313 #if defined(__USE_GNU) || defined(__USE_BSD) || defined(__USE_MISC)
315 #endif /* Use GNU, BSD, or misc. */
318 /* Allocate SIZE bytes on a page boundary. The storage cannot be freed. */
319 extern __ptr_t valloc
__P ((size_t __size
));
323 /* Abort execution and generate a core-dump. */
324 extern void abort
__P ((void)) __attribute__ ((__noreturn__
));
327 /* Register a function to be called when `exit' is called. */
328 extern int atexit
__P ((void (*__func
) (void)));
331 /* Register a function to be called with the status
332 given to `exit' and the given argument. */
333 extern int on_exit
__P ((void (*__func
) (int __status
, __ptr_t __arg
),
337 /* Call all functions registered with `atexit' and `on_exit',
338 in the reverse of the order in which they were registered
339 perform stdio cleanup, and terminate program execution with STATUS. */
340 extern void exit
__P ((int __status
)) __attribute__ ((__noreturn__
));
343 /* Return the value of envariable NAME, or NULL if it doesn't exist. */
344 extern char *getenv
__P ((__const
char *__name
));
347 /* The SVID says this is in <stdio.h>, but this seems a better place. */
348 /* Put STRING, which is of the form "NAME=VALUE", in the environment.
349 If there is no `=', remove NAME from the environment. */
350 extern int putenv
__P ((__const
char *__string
));
354 /* Set NAME to VALUE in the environment.
355 If REPLACE is nonzero, overwrite an existing value. */
356 extern int setenv
__P ((__const
char *__name
, __const
char *__value
,
359 /* Remove the variable NAME from the environment. */
360 extern void unsetenv
__P ((__const
char *__name
));
363 /* Execute the given line as a shell command. */
364 extern int system
__P ((__const
char *__command
));
367 /* Shorthand for type of comparison functions. */
368 #ifndef __COMPAR_FN_T
369 #define __COMPAR_FN_T
370 typedef int (*__compar_fn_t
) __P ((__const __ptr_t
, __const __ptr_t
));
374 typedef __compar_fn_t comparison_fn_t
;
377 /* Do a binary search for KEY in BASE, which consists of NMEMB elements
378 of SIZE bytes each, using COMPAR to perform the comparisons. */
379 extern __ptr_t bsearch
__P ((__const __ptr_t __key
, __const __ptr_t __base
,
380 size_t __nmemb
, size_t __size
,
381 __compar_fn_t __compar
));
383 /* Sort NMEMB elements of BASE, of SIZE bytes each,
384 using COMPAR to perform the comparisons. */
385 extern void qsort
__P ((__ptr_t __base
, size_t __nmemb
, size_t __size
,
386 __compar_fn_t __compar
));
389 /* Return the absolute value of X. */
390 extern int abs
__P ((int __x
)) __attribute__ ((__const__
));
391 extern long int labs
__P ((long int __x
)) __attribute__ ((__const__
));
394 /* Return the `div_t' or `ldiv_t' representation
395 of the value of NUMER over DENOM. */
396 /* GCC may have built-ins for these someday. */
397 extern div_t div
__P ((int __numer
, int __denom
)) __attribute__ ((__const__
));
398 extern ldiv_t ldiv
__P ((long int __numer
, long int __denom
)) __attribute__ ((__const__
));
402 /* Convert floating point numbers to strings. The returned values are
403 valid only until another call to the same function. */
405 /* Convert VALUE to a string with NDIGIT digits and return a pointer to
406 this. Set *DECPT with the position of the decimal character and *SIGN
407 with the sign of the number. */
408 char *ecvt
__P ((double __value
, int __ndigit
, int *__decpt
, int *sign
));
410 /* Convert VALUE to a string rounded to NDIGIT decimal digits. Set *DECPT
411 with the position of the decimal character and *SIGN with the sign of
413 char *fcvt
__P ((double __value
, int __ndigit
, int *__decpt
, int *sign
));
415 /* If possible convert VALUE to a string with NDIGIT significant digits.
416 Otherwise use exponential representation. The resulting string will
417 be written to BUF. */
418 char *gcvt
__P ((double __value
, int __ndigit
, char *__buf
));
420 /* Reentrant version of the functions above which provide their own
422 int ecvt_r
__P ((double __value
, int __ndigit
, int *__decpt
, int *sign
,
423 char *__buf
, size_t __len
));
424 int fcvt_r
__P ((double __value
, int __ndigit
, int *__decpt
, int *sign
,
425 char *__buf
, size_t __len
));
429 /* Return the length of the multibyte character
430 in S, which is no longer than N. */
431 extern int mblen
__P ((__const
char *__s
, size_t __n
));
432 /* Return the length of the given multibyte character,
433 putting its `wchar_t' representation in *PWC. */
434 extern int mbtowc
__P ((wchar_t * __pwc
, __const
char *__s
, size_t __n
));
435 /* Put the multibyte character represented
436 by WCHAR in S, returning its length. */
437 extern int wctomb
__P ((char *__s
, wchar_t __wchar
));
439 #if defined (__OPTIMIZE__) && __GNUC__ >= 2
440 extern __inline
int mblen (__const
char *__s
, size_t __n
)
441 { return mbtowc ((wchar_t *) NULL
, __s
, __n
); }
442 #endif /* Optimizing GCC >=2. */
445 /* Convert a multibyte string to a wide char string. */
446 extern size_t mbstowcs
__P ((wchar_t * __pwcs
, __const
char *__s
, size_t __n
));
447 /* Convert a wide char string to multibyte string. */
448 extern size_t wcstombs
__P ((char *__s
, __const
wchar_t * __pwcs
, size_t __n
));
452 /* Determine whether the string value of RESPONSE matches the affirmation
453 or negative response expression as specified by the LC_MESSAGES category
454 in the program's current locale. Returns 1 if affirmative, 0 if
455 negative, and -1 if not matching. */
456 extern int rpmatch
__P ((__const
char *__response
));
462 #endif /* stdlib.h */