miscbltin.c revision 1.50 1 1.50 kre /* $NetBSD: miscbltin.c,v 1.50 2022/04/16 14:26:26 kre Exp $ */
2 1.13 cgd
3 1.1 cgd /*-
4 1.7 jtc * Copyright (c) 1991, 1993
5 1.7 jtc * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Kenneth Almquist.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.32 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 cgd * may be used to endorse or promote products derived from this software
20 1.1 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 cgd * SUCH DAMAGE.
33 1.1 cgd */
34 1.1 cgd
35 1.19 christos #include <sys/cdefs.h>
36 1.1 cgd #ifndef lint
37 1.13 cgd #if 0
38 1.14 christos static char sccsid[] = "@(#)miscbltin.c 8.4 (Berkeley) 5/4/95";
39 1.13 cgd #else
40 1.50 kre __RCSID("$NetBSD: miscbltin.c,v 1.50 2022/04/16 14:26:26 kre Exp $");
41 1.13 cgd #endif
42 1.1 cgd #endif /* not lint */
43 1.1 cgd
44 1.1 cgd /*
45 1.47 andvar * Miscellaneous builtins.
46 1.1 cgd */
47 1.1 cgd
48 1.23 christos #include <sys/types.h> /* quad_t */
49 1.23 christos #include <sys/param.h> /* BSD4_4 */
50 1.8 jtc #include <sys/stat.h>
51 1.14 christos #include <sys/time.h>
52 1.14 christos #include <sys/resource.h>
53 1.9 jtc #include <unistd.h>
54 1.27 christos #include <stdlib.h>
55 1.9 jtc #include <ctype.h>
56 1.28 christos #include <errno.h>
57 1.14 christos
58 1.1 cgd #include "shell.h"
59 1.1 cgd #include "options.h"
60 1.1 cgd #include "var.h"
61 1.1 cgd #include "output.h"
62 1.1 cgd #include "memalloc.h"
63 1.1 cgd #include "error.h"
64 1.39 christos #include "builtins.h"
65 1.1 cgd #include "mystring.h"
66 1.45 kre #include "redir.h" /* for user_fd_limit */
67 1.1 cgd
68 1.20 kleink #undef rflag
69 1.1 cgd
70 1.1 cgd
71 1.1 cgd
72 1.1 cgd /*
73 1.35 dsl * The read builtin.
74 1.47 andvar * Backslashes escape the next char unless -r is specified.
75 1.1 cgd *
76 1.1 cgd * This uses unbuffered input, which may be avoidable in some cases.
77 1.35 dsl *
78 1.35 dsl * Note that if IFS=' :' then read x y should work so that:
79 1.35 dsl * 'a b' x='a', y='b'
80 1.35 dsl * ' a b ' x='a', y='b'
81 1.35 dsl * ':b' x='', y='b'
82 1.35 dsl * ':' x='', y=''
83 1.35 dsl * '::' x='', y=''
84 1.35 dsl * ': :' x='', y=''
85 1.35 dsl * ':::' x='', y='::'
86 1.35 dsl * ':b c:' x='', y='b c:'
87 1.1 cgd */
88 1.1 cgd
89 1.12 cgd int
90 1.31 christos readcmd(int argc, char **argv)
91 1.12 cgd {
92 1.1 cgd char **ap;
93 1.1 cgd char c;
94 1.20 kleink int rflag;
95 1.1 cgd char *prompt;
96 1.35 dsl const char *ifs;
97 1.1 cgd char *p;
98 1.1 cgd int startword;
99 1.1 cgd int status;
100 1.1 cgd int i;
101 1.35 dsl int is_ifs;
102 1.35 dsl int saveall = 0;
103 1.1 cgd
104 1.20 kleink rflag = 0;
105 1.1 cgd prompt = NULL;
106 1.20 kleink while ((i = nextopt("p:r")) != '\0') {
107 1.1 cgd if (i == 'p')
108 1.30 christos prompt = optionarg;
109 1.1 cgd else
110 1.20 kleink rflag = 1;
111 1.1 cgd }
112 1.35 dsl
113 1.1 cgd if (prompt && isatty(0)) {
114 1.1 cgd out2str(prompt);
115 1.1 cgd flushall();
116 1.1 cgd }
117 1.35 dsl
118 1.6 cgd if (*(ap = argptr) == NULL)
119 1.1 cgd error("arg count");
120 1.35 dsl
121 1.1 cgd if ((ifs = bltinlookup("IFS", 1)) == NULL)
122 1.35 dsl ifs = " \t\n";
123 1.35 dsl
124 1.1 cgd status = 0;
125 1.35 dsl startword = 2;
126 1.1 cgd STARTSTACKSTR(p);
127 1.1 cgd for (;;) {
128 1.1 cgd if (read(0, &c, 1) != 1) {
129 1.1 cgd status = 1;
130 1.1 cgd break;
131 1.1 cgd }
132 1.1 cgd if (c == '\0')
133 1.1 cgd continue;
134 1.35 dsl if (c == '\\' && !rflag) {
135 1.35 dsl if (read(0, &c, 1) != 1) {
136 1.35 dsl status = 1;
137 1.35 dsl break;
138 1.35 dsl }
139 1.1 cgd if (c != '\n')
140 1.1 cgd STPUTC(c, p);
141 1.1 cgd continue;
142 1.1 cgd }
143 1.1 cgd if (c == '\n')
144 1.1 cgd break;
145 1.35 dsl if (strchr(ifs, c))
146 1.35 dsl is_ifs = strchr(" \t\n", c) ? 1 : 2;
147 1.35 dsl else
148 1.35 dsl is_ifs = 0;
149 1.35 dsl
150 1.35 dsl if (startword != 0) {
151 1.35 dsl if (is_ifs == 1) {
152 1.35 dsl /* Ignore leading IFS whitespace */
153 1.35 dsl if (saveall)
154 1.35 dsl STPUTC(c, p);
155 1.35 dsl continue;
156 1.35 dsl }
157 1.35 dsl if (is_ifs == 2 && startword == 1) {
158 1.35 dsl /* Only one non-whitespace IFS per word */
159 1.35 dsl startword = 2;
160 1.35 dsl if (saveall)
161 1.35 dsl STPUTC(c, p);
162 1.35 dsl continue;
163 1.35 dsl }
164 1.35 dsl }
165 1.35 dsl
166 1.35 dsl if (is_ifs == 0) {
167 1.35 dsl /* append this character to the current variable */
168 1.35 dsl startword = 0;
169 1.35 dsl if (saveall)
170 1.35 dsl /* Not just a spare terminator */
171 1.35 dsl saveall++;
172 1.35 dsl STPUTC(c, p);
173 1.1 cgd continue;
174 1.1 cgd }
175 1.35 dsl
176 1.35 dsl /* end of variable... */
177 1.35 dsl startword = is_ifs;
178 1.35 dsl
179 1.35 dsl if (ap[1] == NULL) {
180 1.35 dsl /* Last variable needs all IFS chars */
181 1.35 dsl saveall++;
182 1.1 cgd STPUTC(c, p);
183 1.35 dsl continue;
184 1.1 cgd }
185 1.35 dsl
186 1.35 dsl STACKSTRNUL(p);
187 1.35 dsl setvar(*ap, stackblock(), 0);
188 1.35 dsl ap++;
189 1.35 dsl STARTSTACKSTR(p);
190 1.1 cgd }
191 1.1 cgd STACKSTRNUL(p);
192 1.35 dsl
193 1.35 dsl /* Remove trailing IFS chars */
194 1.35 dsl for (; stackblock() <= --p; *p = 0) {
195 1.35 dsl if (!strchr(ifs, *p))
196 1.35 dsl break;
197 1.35 dsl if (strchr(" \t\n", *p))
198 1.35 dsl /* Always remove whitespace */
199 1.35 dsl continue;
200 1.35 dsl if (saveall > 1)
201 1.35 dsl /* Don't remove non-whitespace unless it was naked */
202 1.35 dsl break;
203 1.35 dsl }
204 1.1 cgd setvar(*ap, stackblock(), 0);
205 1.35 dsl
206 1.35 dsl /* Set any remaining args to "" */
207 1.1 cgd while (*++ap != NULL)
208 1.1 cgd setvar(*ap, nullstr, 0);
209 1.1 cgd return status;
210 1.1 cgd }
211 1.1 cgd
212 1.1 cgd
213 1.1 cgd
214 1.12 cgd int
215 1.31 christos umaskcmd(int argc, char **argv)
216 1.12 cgd {
217 1.8 jtc char *ap;
218 1.49 kre mode_t mask;
219 1.1 cgd int i;
220 1.8 jtc int symbolic_mode = 0;
221 1.8 jtc
222 1.8 jtc while ((i = nextopt("S")) != '\0') {
223 1.8 jtc symbolic_mode = 1;
224 1.8 jtc }
225 1.1 cgd
226 1.8 jtc INTOFF;
227 1.8 jtc mask = umask(0);
228 1.8 jtc umask(mask);
229 1.8 jtc INTON;
230 1.8 jtc
231 1.8 jtc if ((ap = *argptr) == NULL) {
232 1.8 jtc if (symbolic_mode) {
233 1.8 jtc char u[4], g[4], o[4];
234 1.8 jtc
235 1.8 jtc i = 0;
236 1.8 jtc if ((mask & S_IRUSR) == 0)
237 1.8 jtc u[i++] = 'r';
238 1.8 jtc if ((mask & S_IWUSR) == 0)
239 1.8 jtc u[i++] = 'w';
240 1.8 jtc if ((mask & S_IXUSR) == 0)
241 1.8 jtc u[i++] = 'x';
242 1.8 jtc u[i] = '\0';
243 1.8 jtc
244 1.8 jtc i = 0;
245 1.8 jtc if ((mask & S_IRGRP) == 0)
246 1.8 jtc g[i++] = 'r';
247 1.8 jtc if ((mask & S_IWGRP) == 0)
248 1.8 jtc g[i++] = 'w';
249 1.8 jtc if ((mask & S_IXGRP) == 0)
250 1.8 jtc g[i++] = 'x';
251 1.8 jtc g[i] = '\0';
252 1.8 jtc
253 1.8 jtc i = 0;
254 1.8 jtc if ((mask & S_IROTH) == 0)
255 1.8 jtc o[i++] = 'r';
256 1.8 jtc if ((mask & S_IWOTH) == 0)
257 1.8 jtc o[i++] = 'w';
258 1.8 jtc if ((mask & S_IXOTH) == 0)
259 1.8 jtc o[i++] = 'x';
260 1.8 jtc o[i] = '\0';
261 1.8 jtc
262 1.8 jtc out1fmt("u=%s,g=%s,o=%s\n", u, g, o);
263 1.8 jtc } else {
264 1.8 jtc out1fmt("%.4o\n", mask);
265 1.8 jtc }
266 1.1 cgd } else {
267 1.25 christos if (isdigit((unsigned char)*ap)) {
268 1.49 kre int range = 0;
269 1.49 kre
270 1.8 jtc mask = 0;
271 1.8 jtc do {
272 1.8 jtc if (*ap >= '8' || *ap < '0')
273 1.48 kre error("Not a valid octal number: '%s'",
274 1.49 kre *argptr);
275 1.8 jtc mask = (mask << 3) + (*ap - '0');
276 1.49 kre if (mask & ~07777)
277 1.49 kre range = 1;
278 1.8 jtc } while (*++ap != '\0');
279 1.49 kre if (range)
280 1.49 kre error("Mask constant '%s' out of range", *argptr);
281 1.8 jtc umask(mask);
282 1.8 jtc } else {
283 1.16 christos void *set;
284 1.8 jtc
285 1.26 itohy INTOFF;
286 1.26 itohy if ((set = setmode(ap)) != 0) {
287 1.26 itohy mask = getmode(set, ~mask & 0777);
288 1.26 itohy ckfree(set);
289 1.26 itohy }
290 1.26 itohy INTON;
291 1.26 itohy if (!set)
292 1.36 christos error("Cannot set mode `%s' (%s)", ap,
293 1.36 christos strerror(errno));
294 1.26 itohy
295 1.8 jtc umask(~mask & 0777);
296 1.14 christos }
297 1.14 christos }
298 1.46 kre flushout(out1);
299 1.46 kre if (io_err(out1)) {
300 1.46 kre out2str("umask: I/O error\n");
301 1.46 kre return 1;
302 1.46 kre }
303 1.14 christos return 0;
304 1.14 christos }
305 1.14 christos
306 1.14 christos /*
307 1.14 christos * ulimit builtin
308 1.14 christos *
309 1.14 christos * This code, originally by Doug Gwyn, Doug Kingston, Eric Gisin, and
310 1.14 christos * Michael Rendell was ripped from pdksh 5.0.8 and hacked for use with
311 1.14 christos * ash by J.T. Conklin.
312 1.14 christos *
313 1.14 christos * Public domain.
314 1.14 christos */
315 1.14 christos
316 1.14 christos struct limits {
317 1.14 christos const char *name;
318 1.40 christos const char *unit;
319 1.14 christos char option;
320 1.50 kre int8_t cmd; /* all RLIMIT_xxx are <= 127 */
321 1.50 kre unsigned short factor; /* multiply by to get rlim_{cur,max} values */
322 1.14 christos };
323 1.14 christos
324 1.50 kre #define OPTSTRING_BASE "HSa"
325 1.50 kre
326 1.14 christos static const struct limits limits[] = {
327 1.14 christos #ifdef RLIMIT_CPU
328 1.50 kre { "time", "seconds", 't', RLIMIT_CPU, 1 },
329 1.50 kre #define OPTSTRING_t OPTSTRING_BASE "t"
330 1.50 kre #else
331 1.50 kre #define OPTSTRING_t OPTSTRING_BASE
332 1.14 christos #endif
333 1.14 christos #ifdef RLIMIT_FSIZE
334 1.50 kre { "file", "blocks", 'f', RLIMIT_FSIZE, 512 },
335 1.50 kre #define OPTSTRING_f OPTSTRING_t "f"
336 1.50 kre #else
337 1.50 kre #define OPTSTRING_f OPTSTRING_t
338 1.14 christos #endif
339 1.14 christos #ifdef RLIMIT_DATA
340 1.50 kre { "data", "kbytes", 'd', RLIMIT_DATA, 1024 },
341 1.50 kre #define OPTSTRING_d OPTSTRING_f "d"
342 1.50 kre #else
343 1.50 kre #define OPTSTRING_d OPTSTRING_f
344 1.14 christos #endif
345 1.14 christos #ifdef RLIMIT_STACK
346 1.50 kre { "stack", "kbytes", 's', RLIMIT_STACK, 1024 },
347 1.50 kre #define OPTSTRING_s OPTSTRING_d "s"
348 1.50 kre #else
349 1.50 kre #define OPTSTRING_s OPTSTRING_d
350 1.14 christos #endif
351 1.44 gson #ifdef RLIMIT_CORE
352 1.50 kre { "coredump", "blocks", 'c', RLIMIT_CORE, 512 },
353 1.50 kre #define OPTSTRING_c OPTSTRING_s "c"
354 1.50 kre #else
355 1.50 kre #define OPTSTRING_c OPTSTRING_s
356 1.14 christos #endif
357 1.14 christos #ifdef RLIMIT_RSS
358 1.50 kre { "memory", "kbytes", 'm', RLIMIT_RSS, 1024 },
359 1.50 kre #define OPTSTRING_m OPTSTRING_c "m"
360 1.50 kre #else
361 1.50 kre #define OPTSTRING_m OPTSTRING_c
362 1.14 christos #endif
363 1.14 christos #ifdef RLIMIT_MEMLOCK
364 1.50 kre { "locked memory","kbytes", 'l', RLIMIT_MEMLOCK, 1024 },
365 1.50 kre #define OPTSTRING_l OPTSTRING_m "l"
366 1.50 kre #else
367 1.50 kre #define OPTSTRING_l OPTSTRING_m
368 1.14 christos #endif
369 1.41 christos #ifdef RLIMIT_NTHR
370 1.50 kre { "thread", "threads", 'r', RLIMIT_NTHR, 1 },
371 1.50 kre #define OPTSTRING_r OPTSTRING_l "r"
372 1.50 kre #else
373 1.50 kre #define OPTSTRING_r OPTSTRING_l
374 1.41 christos #endif
375 1.14 christos #ifdef RLIMIT_NPROC
376 1.50 kre { "process", "processes", 'p', RLIMIT_NPROC, 1 },
377 1.50 kre #define OPTSTRING_p OPTSTRING_r "p"
378 1.50 kre #else
379 1.50 kre #define OPTSTRING_p OPTSTRING_r
380 1.14 christos #endif
381 1.14 christos #ifdef RLIMIT_NOFILE
382 1.50 kre { "nofiles", "descriptors", 'n', RLIMIT_NOFILE, 1 },
383 1.50 kre #define OPTSTRING_n OPTSTRING_p "n"
384 1.50 kre #else
385 1.50 kre #define OPTSTRING_n OPTSTRING_p
386 1.14 christos #endif
387 1.14 christos #ifdef RLIMIT_VMEM
388 1.50 kre { "vmemory", "kbytes", 'v', RLIMIT_VMEM, 1024 },
389 1.50 kre #define OPTSTRING_v OPTSTRING_n "v"
390 1.50 kre #else
391 1.50 kre #define OPTSTRING_v OPTSTRING_n
392 1.14 christos #endif
393 1.14 christos #ifdef RLIMIT_SWAP
394 1.50 kre { "swap", "kbytes", 'w', RLIMIT_SWAP, 1024 },
395 1.50 kre #define OPTSTRING_w OPTSTRING_v "w"
396 1.50 kre #else
397 1.50 kre #define OPTSTRING_w OPTSTRING_v
398 1.14 christos #endif
399 1.33 christos #ifdef RLIMIT_SBSIZE
400 1.50 kre { "sbsize", "bytes", 'b', RLIMIT_SBSIZE, 1 },
401 1.50 kre #define OPTSTRING_b OPTSTRING_w "b"
402 1.50 kre #else
403 1.50 kre #define OPTSTRING_b OPTSTRING_w
404 1.33 christos #endif
405 1.50 kre { NULL, NULL, '\0', 0, 0 }
406 1.14 christos };
407 1.50 kre #define OPTSTRING OPTSTRING_b
408 1.14 christos
409 1.14 christos int
410 1.31 christos ulimitcmd(int argc, char **argv)
411 1.14 christos {
412 1.17 tls int c;
413 1.19 christos rlim_t val = 0;
414 1.14 christos enum { SOFT = 0x1, HARD = 0x2 }
415 1.45 kre how = 0, which;
416 1.14 christos const struct limits *l;
417 1.14 christos int set, all = 0;
418 1.14 christos int optc, what;
419 1.14 christos struct rlimit limit;
420 1.14 christos
421 1.14 christos what = 'f';
422 1.50 kre while ((optc = nextopt(OPTSTRING)) != '\0')
423 1.14 christos switch (optc) {
424 1.14 christos case 'H':
425 1.45 kre how |= HARD;
426 1.14 christos break;
427 1.14 christos case 'S':
428 1.45 kre how |= SOFT;
429 1.14 christos break;
430 1.14 christos case 'a':
431 1.14 christos all = 1;
432 1.14 christos break;
433 1.14 christos default:
434 1.14 christos what = optc;
435 1.14 christos }
436 1.14 christos
437 1.14 christos for (l = limits; l->name && l->option != what; l++)
438 1.14 christos ;
439 1.14 christos if (!l->name)
440 1.28 christos error("internal error (%c)", what);
441 1.14 christos
442 1.14 christos set = *argptr ? 1 : 0;
443 1.14 christos if (set) {
444 1.14 christos char *p = *argptr;
445 1.14 christos
446 1.14 christos if (all || argptr[1])
447 1.28 christos error("too many arguments");
448 1.45 kre if (how == 0)
449 1.45 kre how = HARD | SOFT;
450 1.45 kre
451 1.14 christos if (strcmp(p, "unlimited") == 0)
452 1.14 christos val = RLIM_INFINITY;
453 1.14 christos else {
454 1.15 jtc val = (rlim_t) 0;
455 1.14 christos
456 1.45 kre while ((c = *p++) >= '0' && c <= '9') {
457 1.45 kre if (val >= RLIM_INFINITY/10)
458 1.50 kre error("%s: value overflow", *argptr);
459 1.45 kre val = (val * 10);
460 1.45 kre if (val >= RLIM_INFINITY - (long)(c - '0'))
461 1.50 kre error("%s: value overflow", *argptr);
462 1.45 kre val += (long)(c - '0');
463 1.45 kre }
464 1.14 christos if (c)
465 1.50 kre error("%s: bad number", *argptr);
466 1.45 kre if (val > RLIM_INFINITY / l->factor)
467 1.50 kre error("%s: value overflow", *argptr);
468 1.14 christos val *= l->factor;
469 1.14 christos }
470 1.45 kre } else if (how == 0)
471 1.45 kre how = SOFT;
472 1.45 kre
473 1.14 christos if (all) {
474 1.14 christos for (l = limits; l->name; l++) {
475 1.14 christos getrlimit(l->cmd, &limit);
476 1.45 kre out1fmt("%-13s (-%c %-11s) ", l->name, l->option,
477 1.45 kre l->unit);
478 1.14 christos
479 1.45 kre which = how;
480 1.45 kre while (which != 0) {
481 1.45 kre if (which & SOFT) {
482 1.45 kre val = limit.rlim_cur;
483 1.45 kre which &= ~SOFT;
484 1.45 kre } else if (which & HARD) {
485 1.45 kre val = limit.rlim_max;
486 1.45 kre which &= ~HARD;
487 1.45 kre }
488 1.45 kre
489 1.45 kre if (val == RLIM_INFINITY)
490 1.45 kre out1fmt("unlimited");
491 1.45 kre else {
492 1.45 kre val /= l->factor;
493 1.18 christos #ifdef BSD4_4
494 1.45 kre out1fmt("%9lld", (long long) val);
495 1.18 christos #else
496 1.45 kre out1fmt("%9ld", (long) val);
497 1.18 christos #endif
498 1.45 kre }
499 1.45 kre out1fmt("%c", which ? '\t' : '\n');
500 1.14 christos }
501 1.14 christos }
502 1.46 kre goto done;
503 1.14 christos }
504 1.14 christos
505 1.43 christos if (getrlimit(l->cmd, &limit) == -1)
506 1.43 christos error("error getting limit (%s)", strerror(errno));
507 1.14 christos if (set) {
508 1.28 christos if (how & HARD)
509 1.28 christos limit.rlim_max = val;
510 1.14 christos if (how & SOFT)
511 1.14 christos limit.rlim_cur = val;
512 1.14 christos if (setrlimit(l->cmd, &limit) < 0)
513 1.28 christos error("error setting limit (%s)", strerror(errno));
514 1.45 kre if (l->cmd == RLIMIT_NOFILE)
515 1.45 kre user_fd_limit = sysconf(_SC_OPEN_MAX);
516 1.14 christos } else {
517 1.14 christos if (how & SOFT)
518 1.14 christos val = limit.rlim_cur;
519 1.14 christos else if (how & HARD)
520 1.14 christos val = limit.rlim_max;
521 1.14 christos
522 1.14 christos if (val == RLIM_INFINITY)
523 1.14 christos out1fmt("unlimited\n");
524 1.14 christos else
525 1.14 christos {
526 1.14 christos val /= l->factor;
527 1.18 christos #ifdef BSD4_4
528 1.29 lukem out1fmt("%lld\n", (long long) val);
529 1.18 christos #else
530 1.18 christos out1fmt("%ld\n", (long) val);
531 1.18 christos #endif
532 1.8 jtc }
533 1.1 cgd }
534 1.46 kre done:;
535 1.46 kre flushout(out1);
536 1.46 kre if (io_err(out1)) {
537 1.46 kre out2str("ulimit: I/O error (stdout)\n");
538 1.46 kre return 1;
539 1.46 kre }
540 1.1 cgd return 0;
541 1.1 cgd }
542