login_cap.c revision 1.9 1 1.9 itojun /* $NetBSD: login_cap.c,v 1.9 2000/10/12 00:28:33 itojun Exp $ */
2 1.1 mjl
3 1.1 mjl /*-
4 1.1 mjl * Copyright (c) 1995,1997 Berkeley Software Design, Inc. All rights reserved.
5 1.1 mjl *
6 1.1 mjl * Redistribution and use in source and binary forms, with or without
7 1.1 mjl * modification, are permitted provided that the following conditions
8 1.1 mjl * are met:
9 1.1 mjl * 1. Redistributions of source code must retain the above copyright
10 1.1 mjl * notice, this list of conditions and the following disclaimer.
11 1.1 mjl * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 mjl * notice, this list of conditions and the following disclaimer in the
13 1.1 mjl * documentation and/or other materials provided with the distribution.
14 1.1 mjl * 3. All advertising materials mentioning features or use of this software
15 1.1 mjl * must display the following acknowledgement:
16 1.1 mjl * This product includes software developed by Berkeley Software Design,
17 1.1 mjl * Inc.
18 1.1 mjl * 4. The name of Berkeley Software Design, Inc. may not be used to endorse
19 1.1 mjl * or promote products derived from this software without specific prior
20 1.1 mjl * written permission.
21 1.1 mjl *
22 1.1 mjl * THIS SOFTWARE IS PROVIDED BY BERKELEY SOFTWARE DESIGN, INC. ``AS IS'' AND
23 1.1 mjl * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 mjl * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 mjl * ARE DISCLAIMED. IN NO EVENT SHALL BERKELEY SOFTWARE DESIGN, INC. BE LIABLE
26 1.1 mjl * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 mjl * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 mjl * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 mjl * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 mjl * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 mjl * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 mjl * SUCH DAMAGE.
33 1.1 mjl *
34 1.1 mjl * BSDI login_cap.c,v 2.13 1998/02/07 03:17:05 prb Exp
35 1.1 mjl */
36 1.6 ad
37 1.6 ad #include <sys/cdefs.h>
38 1.6 ad #if defined(LIBC_SCCS) && !defined(lint)
39 1.9 itojun __RCSID("$NetBSD: login_cap.c,v 1.9 2000/10/12 00:28:33 itojun Exp $");
40 1.6 ad #endif /* LIBC_SCCS and not lint */
41 1.1 mjl
42 1.1 mjl #include <sys/types.h>
43 1.1 mjl #include <sys/stat.h>
44 1.1 mjl #include <sys/time.h>
45 1.1 mjl #include <sys/resource.h>
46 1.1 mjl
47 1.4 mjl #include <ctype.h>
48 1.1 mjl #include <err.h>
49 1.1 mjl #include <errno.h>
50 1.1 mjl #include <fcntl.h>
51 1.1 mjl #include <limits.h>
52 1.1 mjl #include <login_cap.h>
53 1.1 mjl #include <paths.h>
54 1.1 mjl #include <pwd.h>
55 1.1 mjl #include <stdio.h>
56 1.1 mjl #include <stdlib.h>
57 1.1 mjl #include <string.h>
58 1.1 mjl #include <syslog.h>
59 1.1 mjl #include <unistd.h>
60 1.7 ad #include <util.h>
61 1.1 mjl
62 1.6 ad static void setuserpath(login_cap_t *, char *);
63 1.6 ad static u_quad_t multiply(u_quad_t, u_quad_t);
64 1.6 ad static u_quad_t strtolimit(char *, char **, int);
65 1.6 ad static u_quad_t strtosize(char *, char **, int);
66 1.6 ad static int gsetrl(login_cap_t *, int, char *, int type);
67 1.6 ad static int setuserenv(login_cap_t *);
68 1.6 ad static int isinfinite(const char *);
69 1.1 mjl
70 1.1 mjl login_cap_t *
71 1.6 ad login_getclass(char *class)
72 1.1 mjl {
73 1.9 itojun char *classfiles[2];
74 1.1 mjl login_cap_t *lc;
75 1.1 mjl int res;
76 1.1 mjl
77 1.9 itojun if (secure_path(_PATH_LOGIN_CONF) == 0) {
78 1.9 itojun classfiles[0] = _PATH_LOGIN_CONF;
79 1.9 itojun classfiles[1] = NULL;
80 1.9 itojun } else {
81 1.9 itojun classfiles[0] = NULL;
82 1.9 itojun }
83 1.1 mjl
84 1.1 mjl if ((lc = malloc(sizeof(login_cap_t))) == NULL) {
85 1.1 mjl syslog(LOG_ERR, "%s:%d malloc: %m", __FILE__, __LINE__);
86 1.1 mjl return (0);
87 1.1 mjl }
88 1.1 mjl
89 1.1 mjl lc->lc_cap = 0;
90 1.1 mjl lc->lc_style = 0;
91 1.1 mjl
92 1.1 mjl if (class == NULL || class[0] == '\0')
93 1.1 mjl class = LOGIN_DEFCLASS;
94 1.1 mjl
95 1.1 mjl if ((lc->lc_class = strdup(class)) == NULL) {
96 1.1 mjl syslog(LOG_ERR, "%s:%d strdup: %m", __FILE__, __LINE__);
97 1.1 mjl free(lc);
98 1.1 mjl return (0);
99 1.1 mjl }
100 1.9 itojun
101 1.9 itojun /*
102 1.9 itojun * Not having a login.conf file is not an error condition.
103 1.9 itojun * The individual routines deal reasonably with missing
104 1.9 itojun * capabilities and use default values.
105 1.9 itojun */
106 1.9 itojun if (classfiles[0] == NULL)
107 1.9 itojun return(lc);
108 1.1 mjl
109 1.8 itojun if ((res = cgetent(&lc->lc_cap, classfiles, lc->lc_class)) != 0) {
110 1.1 mjl lc->lc_cap = 0;
111 1.1 mjl switch (res) {
112 1.1 mjl case 1:
113 1.1 mjl syslog(LOG_ERR, "%s: couldn't resolve 'tc'",
114 1.1 mjl lc->lc_class);
115 1.1 mjl break;
116 1.1 mjl case -1:
117 1.1 mjl if ((res = open(classfiles[0], 0)) >= 0)
118 1.1 mjl close(res);
119 1.1 mjl if (strcmp(lc->lc_class, LOGIN_DEFCLASS) == NULL &&
120 1.1 mjl res < 0)
121 1.1 mjl return (lc);
122 1.1 mjl syslog(LOG_ERR, "%s: unknown class", lc->lc_class);
123 1.1 mjl break;
124 1.1 mjl case -2:
125 1.1 mjl syslog(LOG_ERR, "%s: getting class information: %m",
126 1.1 mjl lc->lc_class);
127 1.1 mjl break;
128 1.1 mjl case -3:
129 1.1 mjl syslog(LOG_ERR, "%s: 'tc' reference loop",
130 1.1 mjl lc->lc_class);
131 1.1 mjl break;
132 1.1 mjl default:
133 1.1 mjl syslog(LOG_ERR, "%s: unexpected cgetent error",
134 1.1 mjl lc->lc_class);
135 1.1 mjl break;
136 1.1 mjl }
137 1.1 mjl free(lc->lc_class);
138 1.1 mjl free(lc);
139 1.1 mjl return (0);
140 1.1 mjl }
141 1.1 mjl return (lc);
142 1.1 mjl }
143 1.1 mjl
144 1.4 mjl login_cap_t *
145 1.6 ad login_getpwclass(const struct passwd *pwd)
146 1.4 mjl {
147 1.4 mjl return login_getclass(pwd ? pwd->pw_class : NULL);
148 1.4 mjl }
149 1.4 mjl
150 1.1 mjl char *
151 1.6 ad login_getcapstr(login_cap_t *lc, char *cap, char *def, char *e)
152 1.1 mjl {
153 1.1 mjl char *res;
154 1.1 mjl int status;
155 1.1 mjl
156 1.1 mjl errno = 0;
157 1.1 mjl
158 1.2 mjl if (!lc || !lc->lc_cap)
159 1.1 mjl return (def);
160 1.1 mjl
161 1.1 mjl switch (status = cgetstr(lc->lc_cap, cap, &res)) {
162 1.1 mjl case -1:
163 1.1 mjl return (def);
164 1.1 mjl case -2:
165 1.1 mjl syslog(LOG_ERR, "%s: getting capability %s: %m",
166 1.1 mjl lc->lc_class, cap);
167 1.1 mjl return (e);
168 1.1 mjl default:
169 1.1 mjl if (status >= 0)
170 1.1 mjl return (res);
171 1.1 mjl syslog(LOG_ERR, "%s: unexpected error with capability %s",
172 1.1 mjl lc->lc_class, cap);
173 1.1 mjl return (e);
174 1.1 mjl }
175 1.1 mjl }
176 1.1 mjl
177 1.1 mjl quad_t
178 1.6 ad login_getcaptime(login_cap_t *lc, char *cap, quad_t def, quad_t e)
179 1.1 mjl {
180 1.1 mjl char *ep;
181 1.1 mjl char *res, *sres;
182 1.1 mjl int status;
183 1.1 mjl quad_t q, r;
184 1.1 mjl
185 1.1 mjl errno = 0;
186 1.2 mjl if (!lc || !lc->lc_cap)
187 1.1 mjl return (def);
188 1.1 mjl
189 1.1 mjl switch (status = cgetstr(lc->lc_cap, cap, &res)) {
190 1.1 mjl case -1:
191 1.1 mjl return (def);
192 1.1 mjl case -2:
193 1.1 mjl syslog(LOG_ERR, "%s: getting capability %s: %m",
194 1.1 mjl lc->lc_class, cap);
195 1.1 mjl errno = ERANGE;
196 1.1 mjl return (e);
197 1.1 mjl default:
198 1.1 mjl if (status >= 0)
199 1.1 mjl break;
200 1.1 mjl syslog(LOG_ERR, "%s: unexpected error with capability %s",
201 1.1 mjl lc->lc_class, cap);
202 1.1 mjl errno = ERANGE;
203 1.1 mjl return (e);
204 1.1 mjl }
205 1.1 mjl
206 1.5 mjl if (isinfinite(res))
207 1.1 mjl return (RLIM_INFINITY);
208 1.1 mjl
209 1.1 mjl errno = 0;
210 1.1 mjl
211 1.1 mjl q = 0;
212 1.1 mjl sres = res;
213 1.1 mjl while (*res) {
214 1.1 mjl r = strtoq(res, &ep, 0);
215 1.1 mjl if (!ep || ep == res ||
216 1.1 mjl ((r == QUAD_MIN || r == QUAD_MAX) && errno == ERANGE)) {
217 1.1 mjl invalid:
218 1.1 mjl syslog(LOG_ERR, "%s:%s=%s: invalid time",
219 1.1 mjl lc->lc_class, cap, sres);
220 1.1 mjl errno = ERANGE;
221 1.1 mjl return (e);
222 1.1 mjl }
223 1.1 mjl switch (*ep++) {
224 1.1 mjl case '\0':
225 1.1 mjl --ep;
226 1.1 mjl break;
227 1.1 mjl case 's': case 'S':
228 1.1 mjl break;
229 1.1 mjl case 'm': case 'M':
230 1.1 mjl r *= 60;
231 1.1 mjl break;
232 1.1 mjl case 'h': case 'H':
233 1.1 mjl r *= 60 * 60;
234 1.1 mjl break;
235 1.1 mjl case 'd': case 'D':
236 1.1 mjl r *= 60 * 60 * 24;
237 1.1 mjl break;
238 1.1 mjl case 'w': case 'W':
239 1.1 mjl r *= 60 * 60 * 24 * 7;
240 1.1 mjl break;
241 1.1 mjl case 'y': case 'Y': /* Pretty absurd */
242 1.1 mjl r *= 60 * 60 * 24 * 365;
243 1.1 mjl break;
244 1.1 mjl default:
245 1.1 mjl goto invalid;
246 1.1 mjl }
247 1.1 mjl res = ep;
248 1.1 mjl q += r;
249 1.1 mjl }
250 1.1 mjl return (q);
251 1.1 mjl }
252 1.1 mjl
253 1.1 mjl quad_t
254 1.6 ad login_getcapnum(login_cap_t *lc, char *cap, quad_t def, quad_t e)
255 1.1 mjl {
256 1.1 mjl char *ep;
257 1.1 mjl char *res;
258 1.1 mjl int status;
259 1.1 mjl quad_t q;
260 1.1 mjl
261 1.1 mjl errno = 0;
262 1.2 mjl if (!lc || !lc->lc_cap)
263 1.1 mjl return (def);
264 1.1 mjl
265 1.1 mjl switch (status = cgetstr(lc->lc_cap, cap, &res)) {
266 1.1 mjl case -1:
267 1.1 mjl return (def);
268 1.1 mjl case -2:
269 1.1 mjl syslog(LOG_ERR, "%s: getting capability %s: %m",
270 1.1 mjl lc->lc_class, cap);
271 1.1 mjl errno = ERANGE;
272 1.1 mjl return (e);
273 1.1 mjl default:
274 1.1 mjl if (status >= 0)
275 1.1 mjl break;
276 1.1 mjl syslog(LOG_ERR, "%s: unexpected error with capability %s",
277 1.1 mjl lc->lc_class, cap);
278 1.1 mjl errno = ERANGE;
279 1.1 mjl return (e);
280 1.1 mjl }
281 1.1 mjl
282 1.5 mjl if (isinfinite(res))
283 1.1 mjl return (RLIM_INFINITY);
284 1.1 mjl
285 1.1 mjl errno = 0;
286 1.1 mjl q = strtoq(res, &ep, 0);
287 1.1 mjl if (!ep || ep == res || ep[0] ||
288 1.1 mjl ((q == QUAD_MIN || q == QUAD_MAX) && errno == ERANGE)) {
289 1.1 mjl syslog(LOG_ERR, "%s:%s=%s: invalid number",
290 1.1 mjl lc->lc_class, cap, res);
291 1.1 mjl errno = ERANGE;
292 1.1 mjl return (e);
293 1.1 mjl }
294 1.1 mjl return (q);
295 1.1 mjl }
296 1.1 mjl
297 1.1 mjl quad_t
298 1.6 ad login_getcapsize(login_cap_t *lc, char *cap, quad_t def, quad_t e)
299 1.1 mjl {
300 1.1 mjl char *ep;
301 1.1 mjl char *res;
302 1.1 mjl int status;
303 1.1 mjl quad_t q;
304 1.1 mjl
305 1.1 mjl errno = 0;
306 1.1 mjl
307 1.2 mjl if (!lc || !lc->lc_cap)
308 1.1 mjl return (def);
309 1.1 mjl
310 1.1 mjl switch (status = cgetstr(lc->lc_cap, cap, &res)) {
311 1.1 mjl case -1:
312 1.1 mjl return (def);
313 1.1 mjl case -2:
314 1.1 mjl syslog(LOG_ERR, "%s: getting capability %s: %m",
315 1.1 mjl lc->lc_class, cap);
316 1.1 mjl errno = ERANGE;
317 1.1 mjl return (e);
318 1.1 mjl default:
319 1.1 mjl if (status >= 0)
320 1.1 mjl break;
321 1.1 mjl syslog(LOG_ERR, "%s: unexpected error with capability %s",
322 1.1 mjl lc->lc_class, cap);
323 1.1 mjl errno = ERANGE;
324 1.1 mjl return (e);
325 1.1 mjl }
326 1.1 mjl
327 1.1 mjl errno = 0;
328 1.1 mjl q = strtolimit(res, &ep, 0);
329 1.1 mjl if (!ep || ep == res || (ep[0] && ep[1]) ||
330 1.1 mjl ((q == QUAD_MIN || q == QUAD_MAX) && errno == ERANGE)) {
331 1.1 mjl syslog(LOG_ERR, "%s:%s=%s: invalid size",
332 1.1 mjl lc->lc_class, cap, res);
333 1.1 mjl errno = ERANGE;
334 1.1 mjl return (e);
335 1.1 mjl }
336 1.1 mjl return (q);
337 1.1 mjl }
338 1.1 mjl
339 1.1 mjl int
340 1.6 ad login_getcapbool(login_cap_t *lc, char *cap, u_int def)
341 1.1 mjl {
342 1.2 mjl if (!lc || !lc->lc_cap)
343 1.1 mjl return (def);
344 1.1 mjl
345 1.1 mjl return (cgetcap(lc->lc_cap, cap, ':') != NULL);
346 1.1 mjl }
347 1.1 mjl
348 1.1 mjl void
349 1.6 ad login_close(login_cap_t *lc)
350 1.1 mjl {
351 1.1 mjl if (lc) {
352 1.1 mjl if (lc->lc_class)
353 1.1 mjl free(lc->lc_class);
354 1.1 mjl if (lc->lc_cap)
355 1.1 mjl free(lc->lc_cap);
356 1.1 mjl if (lc->lc_style)
357 1.1 mjl free(lc->lc_style);
358 1.1 mjl free(lc);
359 1.1 mjl }
360 1.1 mjl }
361 1.1 mjl
362 1.7 ad #define R_CTIME 1
363 1.7 ad #define R_CSIZE 2
364 1.7 ad #define R_CNUMB 3
365 1.1 mjl
366 1.1 mjl static struct {
367 1.1 mjl int what;
368 1.1 mjl int type;
369 1.1 mjl char * name;
370 1.1 mjl } r_list[] = {
371 1.7 ad { RLIMIT_CPU, R_CTIME, "cputime", },
372 1.7 ad { RLIMIT_FSIZE, R_CSIZE, "filesize", },
373 1.7 ad { RLIMIT_DATA, R_CSIZE, "datasize", },
374 1.7 ad { RLIMIT_STACK, R_CSIZE, "stacksize", },
375 1.7 ad { RLIMIT_RSS, R_CSIZE, "memoryuse", },
376 1.7 ad { RLIMIT_MEMLOCK, R_CSIZE, "memorylocked", },
377 1.7 ad { RLIMIT_NPROC, R_CNUMB, "maxproc", },
378 1.7 ad { RLIMIT_NOFILE, R_CNUMB, "openfiles", },
379 1.7 ad { RLIMIT_CORE, R_CSIZE, "coredumpsize", },
380 1.1 mjl { -1, 0, 0 }
381 1.1 mjl };
382 1.1 mjl
383 1.1 mjl static int
384 1.6 ad gsetrl(login_cap_t *lc, int what, char *name, int type)
385 1.1 mjl {
386 1.1 mjl struct rlimit rl;
387 1.1 mjl struct rlimit r;
388 1.1 mjl char name_cur[32];
389 1.1 mjl char name_max[32];
390 1.1 mjl
391 1.1 mjl sprintf(name_cur, "%s-cur", name);
392 1.1 mjl sprintf(name_max, "%s-max", name);
393 1.1 mjl
394 1.1 mjl if (getrlimit(what, &r)) {
395 1.1 mjl syslog(LOG_ERR, "getting resource limit: %m");
396 1.1 mjl return (-1);
397 1.1 mjl }
398 1.1 mjl
399 1.1 mjl #define RCUR r.rlim_cur
400 1.1 mjl #define RMAX r.rlim_max
401 1.1 mjl
402 1.1 mjl switch (type) {
403 1.7 ad case R_CTIME:
404 1.1 mjl RCUR = login_getcaptime(lc, name, RCUR, RCUR);
405 1.1 mjl RMAX = login_getcaptime(lc, name, RMAX, RMAX);
406 1.1 mjl rl.rlim_cur = login_getcaptime(lc, name_cur, RCUR, RCUR);
407 1.1 mjl rl.rlim_max = login_getcaptime(lc, name_max, RMAX, RMAX);
408 1.1 mjl break;
409 1.7 ad case R_CSIZE:
410 1.1 mjl RCUR = login_getcapsize(lc, name, RCUR, RCUR);
411 1.1 mjl RMAX = login_getcapsize(lc, name, RMAX, RMAX);
412 1.1 mjl rl.rlim_cur = login_getcapsize(lc, name_cur, RCUR, RCUR);
413 1.1 mjl rl.rlim_max = login_getcapsize(lc, name_max, RMAX, RMAX);
414 1.1 mjl break;
415 1.7 ad case R_CNUMB:
416 1.1 mjl RCUR = login_getcapnum(lc, name, RCUR, RCUR);
417 1.1 mjl RMAX = login_getcapnum(lc, name, RMAX, RMAX);
418 1.1 mjl rl.rlim_cur = login_getcapnum(lc, name_cur, RCUR, RCUR);
419 1.1 mjl rl.rlim_max = login_getcapnum(lc, name_max, RMAX, RMAX);
420 1.1 mjl break;
421 1.1 mjl default:
422 1.1 mjl return (-1);
423 1.1 mjl }
424 1.1 mjl
425 1.1 mjl if (setrlimit(what, &rl)) {
426 1.1 mjl syslog(LOG_ERR, "%s: setting resource limit %s: %m",
427 1.1 mjl lc->lc_class, name);
428 1.1 mjl return (-1);
429 1.1 mjl }
430 1.1 mjl #undef RCUR
431 1.1 mjl #undef RMAX
432 1.1 mjl return (0);
433 1.1 mjl }
434 1.1 mjl
435 1.4 mjl static int
436 1.6 ad setuserenv(login_cap_t *lc)
437 1.4 mjl {
438 1.4 mjl char *stop = ", \t";
439 1.4 mjl int i, count;
440 1.4 mjl char *ptr;
441 1.4 mjl char **res;
442 1.4 mjl char *str = login_getcapstr(lc, "setenv", NULL, NULL);
443 1.4 mjl
444 1.8 itojun if (str == NULL || *str == '\0')
445 1.4 mjl return 0;
446 1.4 mjl
447 1.4 mjl /* count the sub-strings */
448 1.4 mjl for (i = 1, ptr = str; *ptr; i++) {
449 1.4 mjl ptr += strcspn(ptr, stop);
450 1.4 mjl if (*ptr)
451 1.4 mjl ptr++;
452 1.8 itojun }
453 1.4 mjl
454 1.4 mjl /* allocate ptr array and string */
455 1.4 mjl count = i;
456 1.8 itojun res = malloc(count * sizeof(char *) + strlen(str) + 1);
457 1.4 mjl
458 1.8 itojun if (!res)
459 1.4 mjl return -1;
460 1.4 mjl
461 1.4 mjl ptr = (char *)res + count * sizeof(char *);
462 1.4 mjl strcpy(ptr, str);
463 1.4 mjl
464 1.4 mjl /* split string */
465 1.4 mjl for (i = 0; *ptr && i < count; i++) {
466 1.4 mjl res[i] = ptr;
467 1.4 mjl ptr += strcspn(ptr, stop);
468 1.4 mjl if (*ptr)
469 1.4 mjl *ptr++ = '\0';
470 1.8 itojun }
471 1.4 mjl
472 1.4 mjl res[i] = NULL;
473 1.4 mjl
474 1.4 mjl for (i = 0; i < count && res[i]; i++) {
475 1.4 mjl if (*res[i] != '\0') {
476 1.6 ad if ((ptr = strchr(res[i], '=')) != NULL)
477 1.4 mjl *ptr++ = '\0';
478 1.4 mjl else
479 1.4 mjl ptr = "";
480 1.4 mjl setenv(res[i], ptr, 1);
481 1.4 mjl }
482 1.4 mjl }
483 1.4 mjl
484 1.5 mjl free(res);
485 1.4 mjl return 0;
486 1.4 mjl }
487 1.4 mjl
488 1.1 mjl int
489 1.6 ad setclasscontext(char *class, u_int flags)
490 1.1 mjl {
491 1.1 mjl int ret;
492 1.1 mjl login_cap_t *lc;
493 1.1 mjl
494 1.1 mjl flags &= LOGIN_SETRESOURCES | LOGIN_SETPRIORITY | LOGIN_SETUMASK |
495 1.1 mjl LOGIN_SETPATH;
496 1.1 mjl
497 1.1 mjl lc = login_getclass(class);
498 1.1 mjl ret = lc ? setusercontext(lc, NULL, 0, flags) : -1;
499 1.1 mjl login_close(lc);
500 1.1 mjl return (ret);
501 1.1 mjl }
502 1.1 mjl
503 1.1 mjl int
504 1.6 ad setusercontext(login_cap_t *lc, struct passwd *pwd, uid_t uid, u_int flags)
505 1.1 mjl {
506 1.1 mjl login_cap_t *flc;
507 1.1 mjl quad_t p;
508 1.1 mjl int i;
509 1.1 mjl
510 1.1 mjl flc = NULL;
511 1.1 mjl
512 1.3 mjl if (!lc)
513 1.3 mjl flc = lc = login_getclass(pwd ? pwd->pw_class : NULL);
514 1.1 mjl
515 1.1 mjl /*
516 1.1 mjl * Without the pwd entry being passed we cannot set either
517 1.1 mjl * the group or the login. We could complain about it.
518 1.1 mjl */
519 1.1 mjl if (pwd == NULL)
520 1.1 mjl flags &= ~(LOGIN_SETGROUP|LOGIN_SETLOGIN);
521 1.1 mjl
522 1.1 mjl if (flags & LOGIN_SETRESOURCES)
523 1.1 mjl for (i = 0; r_list[i].name; ++i)
524 1.1 mjl if (gsetrl(lc, r_list[i].what, r_list[i].name,
525 1.1 mjl r_list[i].type))
526 1.1 mjl /* XXX - call syslog()? */;
527 1.1 mjl
528 1.1 mjl if (flags & LOGIN_SETPRIORITY) {
529 1.1 mjl p = login_getcapnum(lc, "priority", 0LL, 0LL);
530 1.1 mjl
531 1.1 mjl if (setpriority(PRIO_PROCESS, 0, (int)p) < 0)
532 1.1 mjl syslog(LOG_ERR, "%s: setpriority: %m", lc->lc_class);
533 1.1 mjl }
534 1.1 mjl
535 1.1 mjl if (flags & LOGIN_SETUMASK) {
536 1.1 mjl p = login_getcapnum(lc, "umask", (quad_t) LOGIN_DEFUMASK,
537 1.1 mjl (quad_t) LOGIN_DEFUMASK);
538 1.1 mjl umask((mode_t)p);
539 1.1 mjl }
540 1.1 mjl
541 1.1 mjl if (flags & LOGIN_SETGROUP) {
542 1.1 mjl if (setgid(pwd->pw_gid) < 0) {
543 1.1 mjl syslog(LOG_ERR, "setgid(%d): %m", pwd->pw_gid);
544 1.1 mjl login_close(flc);
545 1.1 mjl return (-1);
546 1.1 mjl }
547 1.1 mjl
548 1.1 mjl if (initgroups(pwd->pw_name, pwd->pw_gid) < 0) {
549 1.1 mjl syslog(LOG_ERR, "initgroups(%s,%d): %m",
550 1.1 mjl pwd->pw_name, pwd->pw_gid);
551 1.1 mjl login_close(flc);
552 1.1 mjl return (-1);
553 1.1 mjl }
554 1.1 mjl }
555 1.1 mjl
556 1.1 mjl if (flags & LOGIN_SETLOGIN)
557 1.1 mjl if (setlogin(pwd->pw_name) < 0) {
558 1.1 mjl syslog(LOG_ERR, "setlogin(%s) failure: %m",
559 1.1 mjl pwd->pw_name);
560 1.1 mjl login_close(flc);
561 1.1 mjl return (-1);
562 1.1 mjl }
563 1.1 mjl
564 1.1 mjl if (flags & LOGIN_SETUSER)
565 1.1 mjl if (setuid(uid) < 0) {
566 1.1 mjl syslog(LOG_ERR, "setuid(%d): %m", uid);
567 1.1 mjl login_close(flc);
568 1.1 mjl return (-1);
569 1.1 mjl }
570 1.4 mjl
571 1.4 mjl if (flags & LOGIN_SETENV)
572 1.4 mjl setuserenv(lc);
573 1.1 mjl
574 1.1 mjl if (flags & LOGIN_SETPATH)
575 1.1 mjl setuserpath(lc, pwd ? pwd->pw_dir : "");
576 1.1 mjl
577 1.1 mjl login_close(flc);
578 1.1 mjl return (0);
579 1.1 mjl }
580 1.1 mjl
581 1.1 mjl static void
582 1.6 ad setuserpath(login_cap_t *lc, char *home)
583 1.1 mjl {
584 1.1 mjl size_t hlen, plen;
585 1.1 mjl int cnt = 0;
586 1.1 mjl char *path;
587 1.1 mjl char *p, *q;
588 1.1 mjl
589 1.1 mjl hlen = strlen(home);
590 1.1 mjl
591 1.1 mjl p = path = login_getcapstr(lc, "path", NULL, NULL);
592 1.1 mjl if (p) {
593 1.1 mjl while (*p)
594 1.1 mjl if (*p++ == '~')
595 1.1 mjl ++cnt;
596 1.1 mjl plen = (p - path) + cnt * (hlen + 1) + 1;
597 1.1 mjl p = path;
598 1.1 mjl q = path = malloc(plen);
599 1.1 mjl if (q) {
600 1.1 mjl while (*p) {
601 1.1 mjl p += strspn(p, " \t");
602 1.1 mjl if (*p == '\0')
603 1.1 mjl break;
604 1.1 mjl plen = strcspn(p, " \t");
605 1.1 mjl if (hlen == 0 && *p == '~') {
606 1.1 mjl p += plen;
607 1.1 mjl continue;
608 1.1 mjl }
609 1.1 mjl if (q != path)
610 1.1 mjl *q++ = ':';
611 1.1 mjl if (*p == '~') {
612 1.1 mjl strcpy(q, home);
613 1.1 mjl q += hlen;
614 1.1 mjl ++p;
615 1.1 mjl --plen;
616 1.1 mjl }
617 1.1 mjl memcpy(q, p, plen);
618 1.1 mjl p += plen;
619 1.1 mjl q += plen;
620 1.1 mjl }
621 1.1 mjl *q = '\0';
622 1.1 mjl } else
623 1.1 mjl path = _PATH_DEFPATH;
624 1.1 mjl } else
625 1.1 mjl path = _PATH_DEFPATH;
626 1.1 mjl if (setenv("PATH", path, 1))
627 1.1 mjl warn("could not set PATH");
628 1.1 mjl }
629 1.1 mjl
630 1.1 mjl /*
631 1.1 mjl * Convert an expression of the following forms
632 1.1 mjl * 1) A number.
633 1.1 mjl * 2) A number followed by a b (mult by 512).
634 1.1 mjl * 3) A number followed by a k (mult by 1024).
635 1.1 mjl * 5) A number followed by a m (mult by 1024 * 1024).
636 1.1 mjl * 6) A number followed by a g (mult by 1024 * 1024 * 1024).
637 1.1 mjl * 7) A number followed by a t (mult by 1024 * 1024 * 1024 * 1024).
638 1.1 mjl * 8) Two or more numbers (with/without k,b,m,g, or t).
639 1.1 mjl * seperated by x (also * for backwards compatibility), specifying
640 1.1 mjl * the product of the indicated values.
641 1.1 mjl */
642 1.6 ad static u_quad_t
643 1.6 ad strtosize(char *str, char **endptr, int radix)
644 1.1 mjl {
645 1.1 mjl u_quad_t num, num2;
646 1.1 mjl char *expr, *expr2;
647 1.1 mjl
648 1.1 mjl errno = 0;
649 1.1 mjl num = strtouq(str, &expr, radix);
650 1.1 mjl if (errno || expr == str) {
651 1.1 mjl if (endptr)
652 1.1 mjl *endptr = expr;
653 1.1 mjl return (num);
654 1.1 mjl }
655 1.1 mjl
656 1.1 mjl switch(*expr) {
657 1.1 mjl case 'b': case 'B':
658 1.1 mjl num = multiply(num, (u_quad_t)512);
659 1.1 mjl ++expr;
660 1.1 mjl break;
661 1.1 mjl case 'k': case 'K':
662 1.1 mjl num = multiply(num, (u_quad_t)1024);
663 1.1 mjl ++expr;
664 1.1 mjl break;
665 1.1 mjl case 'm': case 'M':
666 1.1 mjl num = multiply(num, (u_quad_t)1024 * 1024);
667 1.1 mjl ++expr;
668 1.1 mjl break;
669 1.1 mjl case 'g': case 'G':
670 1.1 mjl num = multiply(num, (u_quad_t)1024 * 1024 * 1024);
671 1.1 mjl ++expr;
672 1.1 mjl break;
673 1.1 mjl case 't': case 'T':
674 1.1 mjl num = multiply(num, (u_quad_t)1024 * 1024);
675 1.1 mjl num = multiply(num, (u_quad_t)1024 * 1024);
676 1.1 mjl ++expr;
677 1.1 mjl break;
678 1.1 mjl }
679 1.1 mjl
680 1.1 mjl if (errno)
681 1.1 mjl goto erange;
682 1.1 mjl
683 1.1 mjl switch(*expr) {
684 1.1 mjl case '*': /* Backward compatible. */
685 1.1 mjl case 'x':
686 1.1 mjl num2 = strtosize(expr+1, &expr2, radix);
687 1.1 mjl if (errno) {
688 1.1 mjl expr = expr2;
689 1.1 mjl goto erange;
690 1.1 mjl }
691 1.1 mjl
692 1.1 mjl if (expr2 == expr + 1) {
693 1.1 mjl if (endptr)
694 1.1 mjl *endptr = expr;
695 1.1 mjl return (num);
696 1.1 mjl }
697 1.1 mjl expr = expr2;
698 1.1 mjl num = multiply(num, num2);
699 1.1 mjl if (errno)
700 1.1 mjl goto erange;
701 1.1 mjl break;
702 1.1 mjl }
703 1.1 mjl if (endptr)
704 1.1 mjl *endptr = expr;
705 1.1 mjl return (num);
706 1.1 mjl erange:
707 1.1 mjl if (endptr)
708 1.1 mjl *endptr = expr;
709 1.1 mjl errno = ERANGE;
710 1.1 mjl return (UQUAD_MAX);
711 1.1 mjl }
712 1.1 mjl
713 1.6 ad static u_quad_t
714 1.6 ad strtolimit(char *str, char **endptr, int radix)
715 1.1 mjl {
716 1.5 mjl if (isinfinite(str)) {
717 1.1 mjl if (endptr)
718 1.1 mjl *endptr = str + strlen(str);
719 1.1 mjl return ((u_quad_t)RLIM_INFINITY);
720 1.1 mjl }
721 1.1 mjl return (strtosize(str, endptr, radix));
722 1.5 mjl }
723 1.5 mjl
724 1.5 mjl static int
725 1.5 mjl isinfinite(const char *s)
726 1.5 mjl {
727 1.5 mjl static const char *infs[] = {
728 1.5 mjl "infinity",
729 1.5 mjl "inf",
730 1.5 mjl "unlimited",
731 1.5 mjl "unlimit",
732 1.5 mjl NULL
733 1.5 mjl };
734 1.5 mjl const char **i;
735 1.5 mjl
736 1.8 itojun for (i = infs; *i; i++) {
737 1.5 mjl if (!strcasecmp(s, *i))
738 1.5 mjl return 1;
739 1.5 mjl }
740 1.5 mjl return 0;
741 1.1 mjl }
742 1.1 mjl
743 1.1 mjl static u_quad_t
744 1.6 ad multiply(u_quad_t n1, u_quad_t n2)
745 1.1 mjl {
746 1.1 mjl static int bpw = 0;
747 1.1 mjl u_quad_t m;
748 1.1 mjl u_quad_t r;
749 1.1 mjl int b1, b2;
750 1.1 mjl
751 1.1 mjl /*
752 1.1 mjl * Get rid of the simple cases
753 1.1 mjl */
754 1.1 mjl if (n1 == 0 || n2 == 0)
755 1.1 mjl return (0);
756 1.1 mjl if (n1 == 1)
757 1.1 mjl return (n2);
758 1.1 mjl if (n2 == 1)
759 1.1 mjl return (n1);
760 1.1 mjl
761 1.1 mjl /*
762 1.1 mjl * sizeof() returns number of bytes needed for storage.
763 1.1 mjl * This may be different from the actual number of useful bits.
764 1.1 mjl */
765 1.1 mjl if (!bpw) {
766 1.1 mjl bpw = sizeof(u_quad_t) * 8;
767 1.1 mjl while (((u_quad_t)1 << (bpw-1)) == 0)
768 1.1 mjl --bpw;
769 1.1 mjl }
770 1.1 mjl
771 1.1 mjl /*
772 1.1 mjl * First check the magnitude of each number. If the sum of the
773 1.1 mjl * magnatude is way to high, reject the number. (If this test
774 1.1 mjl * is not done then the first multiply below may overflow.)
775 1.1 mjl */
776 1.1 mjl for (b1 = bpw; (((u_quad_t)1 << (b1-1)) & n1) == 0; --b1)
777 1.1 mjl ;
778 1.1 mjl for (b2 = bpw; (((u_quad_t)1 << (b2-1)) & n2) == 0; --b2)
779 1.1 mjl ;
780 1.1 mjl if (b1 + b2 - 2 > bpw) {
781 1.1 mjl errno = ERANGE;
782 1.1 mjl return (UQUAD_MAX);
783 1.1 mjl }
784 1.1 mjl
785 1.1 mjl /*
786 1.1 mjl * Decompose the multiplication to be:
787 1.1 mjl * h1 = n1 & ~1
788 1.1 mjl * h2 = n2 & ~1
789 1.1 mjl * l1 = n1 & 1
790 1.1 mjl * l2 = n2 & 1
791 1.1 mjl * (h1 + l1) * (h2 + l2)
792 1.1 mjl * (h1 * h2) + (h1 * l2) + (l1 * h2) + (l1 * l2)
793 1.1 mjl *
794 1.1 mjl * Since h1 && h2 do not have the low bit set, we can then say:
795 1.1 mjl *
796 1.1 mjl * (h1>>1 * h2>>1 * 4) + ...
797 1.1 mjl *
798 1.1 mjl * So if (h1>>1 * h2>>1) > (1<<(bpw - 2)) then the result will
799 1.1 mjl * overflow.
800 1.1 mjl *
801 1.1 mjl * Finally, if MAX - ((h1 * l2) + (l1 * h2) + (l1 * l2)) < (h1*h2)
802 1.1 mjl * then adding in residual amout will cause an overflow.
803 1.1 mjl */
804 1.1 mjl
805 1.1 mjl m = (n1 >> 1) * (n2 >> 1);
806 1.1 mjl
807 1.1 mjl if (m >= ((u_quad_t)1 << (bpw-2))) {
808 1.1 mjl errno = ERANGE;
809 1.1 mjl return (UQUAD_MAX);
810 1.1 mjl }
811 1.1 mjl
812 1.1 mjl m *= 4;
813 1.1 mjl
814 1.1 mjl r = (n1 & n2 & 1)
815 1.1 mjl + (n2 & 1) * (n1 & ~(u_quad_t)1)
816 1.1 mjl + (n1 & 1) * (n2 & ~(u_quad_t)1);
817 1.1 mjl
818 1.1 mjl if ((u_quad_t)(m + r) < m) {
819 1.1 mjl errno = ERANGE;
820 1.1 mjl return (UQUAD_MAX);
821 1.1 mjl }
822 1.1 mjl m += r;
823 1.1 mjl
824 1.1 mjl return (m);
825 1.1 mjl }
826